Liebert Power Supply 130 kVA User Manual

U s e r M a n u a l – H ip u ls e  
Installation & Maintenance of Hipulse 130kVA Single phase 110V, Single & 1 + N System  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
Dear Customer,  
Please accept our thanks for giving us the privilege to serve you by choosing a  
Liebert make ‘UPS’.  
If this is your first Liebert UPS, we hope it is the beginning of a long relationship  
which delivers value to your organisation. If you already own and use a Liebert  
product, we are doubly honoured by your decision of continuing this relationship.  
It is our constant endeavor to partner you for the growth and success of your  
business. This philosophy is reflected in our Mission statement “To deliver value  
through Air & Power Quality solutions to achieve customer delight. Please do give  
us feedback to help us realize our Mission.  
Emerson Network Power (India) Private Limited  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
Rev. No.  
Revision details  
Date  
IM P O R T A N T  
Th is m a n u a l c o n ta in s in fo rm a tio n c o n c e rn in g th e in s ta lla tio n , o p e ra tio n a n d  
m a in te n a n c e o f th e Hip u ls e Un in te rru p tib le P o w e r S ys te m (UP S ) fo r th e s in g le m o d u le  
a n d o n e p lu s o n e S ys te m s .  
All re le va n t p a rts o f th e m a n u a l s h o u ld b e re a d p rio r to c o m m e n c in g in s ta lla tio n .  
Th e UP S m u s t b e c o m m is s io n e d b y a n e n g in e e r a p p ro ve d b y th e m a n u fa c tu re r (o r h is  
a g e n t) b e fo re b e in g p u t in to s e rvic e . Fa ilu re to o b s e rve th is c o n d itio n w ill in va lid a te  
a n y im p lie d w a rra n ty.  
Th e Hip u ls e UP S h a s b e e n d e s ig n e d fo r C o m m e rc ia l / In d u s tria l u s e o n ly.  
Th e Hip u ls e h a s n o t b e e n d e s ig n e d fo r d ire c t u s e in a n y life s u p p o rt a p p lic a tio n .  
If yo u e n c o u n te r a n y p ro b le m w ith th e p ro c e d u re s c o n ta in e d in th is m a n u a l yo u s h o u ld  
s e e k im m e d ia te a s s is ta n c e fro m Em e rs o n Ne tw o rk P o w e r (In d ia ) P vt. Ltd . S a le s O ffic e  
fro m w h o m th e e q u ip m e n t w a s p u rc h a s e d .  
Alte rn a tive ly c o n ta c t th e Em e rs o n  
Ne tw o rk P o w e r (In d ia ) P vt. Ltd C u s to m e r S e rvic e & S u p p o rt d e p a rtm e n t a t th e  
a d d re s s s h o w n b e lo w :  
EM ER S O N N ETW O R K P O W ER (IN D IA) P R IVATE LIM ITED  
P lo t No . C -2 0 , Ro a d No . 1 9  
W a g le In d u s tria l Es ta te  
Th a n e – 4 0 0 6 0 4 , INDIA  
P h o n e : (0 0 9 1 2 2 ) 2 5 8 0 7 0 0 0  
2 5 8 2 8 4 0 5  
Fa x  
: (0 0 9 1 2 2 ) 2 5 8 0 0 8 2 9  
2 5 8 2 8 3 5 8  
Em e rs o n Ne tw o rk P o w e r (In d ia ) P riva te Lim ite d p u rs u e s a p o lic y o f c o n tin u a l p ro d u c t  
d e ve lo p m e n t a n d re s e rve s th e rig h t to c h a n g e th e e q u ip m e n t w ith o u t n o tic e .  
@ C o p yrig h t 1 9 9 9 b y Em e rs o n Ne tw o rk P o w e r  
Un a u th o rize d re p ro d u c tio n p ro h ib ite d  
All rig h ts re s e rve d  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
R EG IS TER ED HEAD O F F IC E  
Emerson Network Power (India) Private Limited  
PLOT NO. C-20, ROAD NO. 19  
WAGLE INDUSTRIAL ESTATE  
THANE – 400 604 MAHARASHTRA, INDIA  
TELEPHONE: (00 91 22) 25807000/ 25828405 / 25802388  
FAX: (00 91 22) 25800829 / 25828358  
*** W ES T Z O N E ***  
M u m b a i  
Address:  
B-414, 424, Bhaveshwar Arcade, (opp. Shreyas cinema), LBS Road, Ghatkopar, Mumbai  
400 086  
Tel:  
Fax:  
91-22-2500 2318, 2500 2294, 2500 2437  
91-22-2500 2415  
P u n e  
Address:  
B/6, Shree Dwarka Co-op. Soc., Hare Krishna Mandir Path, Model Colony, Off. University  
Road, Pune 411 016  
91-20-2567 0709, 2567 6975  
91-20-400 4020  
Tel:  
Fax:  
B a ro d a  
Address:  
Tel:  
39 / 2, Arunodaya Soc., Alkapuri, Baroda 390 005  
91-265-231 4296 / 2330 383  
91-265-2343937  
Fax:  
N a g p u r  
Address:  
Tel:  
203, Ganga Apts, 13, Giripeth, Nagpur 400 010  
91-712-540 423  
Fax:  
91-712-540 423  
*** S O U TH Z O N E ***  
B a n g a lo re  
Address:  
No. 412, Jindal Center, 2nd Flr, 100 Fleet Road, Koramangalam, Opp. Sukhsagar Hotel,  
Bangalore - 95  
Tel:  
Fax:  
91-80-51135670 / 5770 / 5870  
91-80-2558 8546  
C h e n n a i  
Address:  
Tel:  
OMS Court, No. 1, Nathamuni Street, T., Nagar, Chennai 600 017  
91-44-2815 1063, 2815 2596, 712 4863, 713 4884, 713 4883  
91-44-2815 1442  
Fax:  
Ko c h in  
Address:  
Tel:  
"Nedumparambil", No. 1419/36, Kattakara Road, Kaloor, Kochin 682 017  
91-484-2341 985/86  
91-484-2341 986  
Fax:  
S e c u n d e ra b a d  
Address:  
Tel:  
Fax:  
1-1-40/1, 2nd floor, Vasavi Towers, S. D. Road, Secunderabad - 500 003  
91-40-27806774 / 5/ 6  
91-40-2780 6777  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
*** EAS T Z O N E ***  
Ko lk a tta  
Address:  
Tel:  
Fax:  
Jindal Towers, 21/1A/3, Darga Road, Kolkata - 700 017  
91-33-2289 0493 / 033 2289 0490  
91-33-2289 0492  
B h u b a n e s h w a r  
Address:  
Tel:  
69, Satya Nagar, Bhubaneshwar 751 007  
91-674-2520 778  
Fax:  
91-674-2520 778  
J a m s h e d p u r  
Address:  
Tel:  
Kashi Kunji, Road No. 2, Ground Floor, Contractors Areas, Bistupur, Jamshedpur 831 001  
91-657-2227 678  
91-657-2227 678  
Fax:  
*** N O R TH Z O N E ***  
N e w D e lh i  
Address:  
Tel:  
18/14, WEA, Pusa Lane, Karol Baug; New Delhi 110 005  
91-11-2582 4206 / 2582 4208 / 2582 4214 / 18  
91-11-2575 7601  
Fax:  
C h a n d ig a rh  
Address:  
Tel:  
SCO No. 272, Sector 32 -C & D, 1st Floor, Above Punjab and Sind Bank,Chandigarh.  
0172-5077531  
0172-5016531  
Fax:  
Lu c k n o w  
Address:  
Tel:  
213, 2nd Floor, Saran Chambers-II, 5, Park Road, Lucknow - 226 001 (U.P)  
91-522-2237174  
91-522-2239877  
Fax:  
G u w a h a ti  
Address :  
C/o. Ashok Bhasin, South Sarania, Ashram Road, (Near GMC Tax Office), Ulubari,  
Guwahati -  
781 007.  
Tel:  
Fax:  
91-361-2453270  
91-361-2453270  
(Updated: December 1, 2004)  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
Safety Procedure  
WARNING  
In a domestic environment, this product may cause radio interface in which case the  
user may be required to take additional measures.  
WARNING  
HIGH EARTH LEAKAGE CURRENT: EARTH CONNECTIONS IS ESSENTIAL  
BEFORE CONNECTING THE INPUT SUPPLY.  
This equipment must be earthed in accordance with local electrical codes.  
WARNING  
THIS UPS DOES NOT INCORPORATE AUTOMATIC BACKFEED  
PROTECTION. A WARNING LABEL MUST BE FITTED TO ALL EXTERNAL  
PRIMARY POWER ISOLATIONS STATING.  
INSULATE THE UNINTERRUPTIBLE POWER SYSTEM BEFORE WORKING  
ON THIS CIRCUIT.  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
GENERAL  
As with other types of high power equipment, dangerous voltages are present within  
the UPS and battery enclosure. The risk of contact with these is minimised as the live  
component parts are housed behind a hinged, lockable door. Further internal safety  
screens make the equipment protected to IP20 standards.  
No risk exists to any personnel when operating the equipment in the normal manner,  
following the recommended operating procedures.  
All equipment maintenance and servicing procedures involve internal access and  
should be carried out only by trained personnel.  
BATTERIES  
Battery manufacturers supply details of the necessary precautions to be observed  
when working on, or in the vicinity of a large bank of battery cells. These  
precautions should be followed implicitly at all times.  
Particular attention should be paid to the recommendations concerning local  
environmental conditions and the provision of protective clothing, first-aid and fire  
fighting facilities  
TEST EQUIPMENT  
When the battery is under charge, it is earth-referenced about its mid-point –e.g. if  
the battery s being charged at 460V the battery extremities will be at +230V and –  
230V with respect to neutral (earth). When using mains-powered test equipment  
such as oscilloscopes in the UPS voltage area, always use a differential mode of  
operation to disconnect the oscilloscope frame earth.  
PERSONNEL  
When working inside the UPS (trained personnel only) it is recommended that  
protection be worn to prevent eye damage, should an electric ware be struck by  
mishandling or severe electrical fault.  
Some of the power components are very heavy. If their removal is necessary, ensure  
that sufficient manpower is available; otherwise use adequate mechanical handling  
equipment.  
When working in the general area of the UPS where high voltages are present, a  
second person should be standing-by to assist and summon help in case of accident.  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
I N D E X  
1
General Introduction  
1
1
1
1
2
3
4
5
5
5
5
1.1  
Introduction  
1.2  
Design Concept  
Hipulse Module Design  
Bypass Supplies  
System control Philosophy  
ECOMODE (for single UPS)  
UPS Power Switch Configuration  
Battery circuit breaker  
1.2.1  
1.2.2  
1.2.3  
1.2.4  
1.2.5  
1.2.6  
1.2.7  
1.2.8  
Battery temperature compensation  
System Expansion  
2
Installation Procedure  
Introduction  
Environmental Considerations  
UPS location  
7
7
8
8
8
9
9
9
9
9
9
2.1  
2.2  
2.2.1  
2.2.2  
2.3  
2.3.1  
2.3.2  
2.3.3  
2.3.4  
2.3.5  
2.4  
Battery Location  
Mechanical Considerations  
System composition  
Moving the cabinets  
Clearances  
Fixing Magnetic Components  
Cable entry  
Preliminary Checks  
Installation Drawings  
10  
10  
2.5  
3
Installation (Electrical)  
Power Cabling  
System Configuration  
Cable rating  
General Notes  
Cable connections  
Safety earth  
Protective Devices  
Cabling procedure  
Control cables  
Battery Control  
Auxiliary Terminal Block X3 and X4 at UPS  
Emergency Stop  
13  
13  
13  
14  
14  
14  
14  
15  
16  
19  
19  
20  
21  
21  
3.1  
3.1.1  
3.1.2  
3.1.3  
3.1.4  
3.1.5  
3.1.6  
3.1.7  
3.2  
3.2.1  
3.2.2  
3.2.3  
3.2.4  
Back feed Protection  
4
4.1  
4.1.1  
4.1.2  
Operator Control and Display  
Introduction  
Operator Control Panel  
The Menu Options  
23  
23  
24  
27  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
5
Operating Instructions  
31  
31  
31  
31  
5.1  
Introduction  
5.1.1  
5.1.2  
General Notes  
Power switches  
5.2  
5.3  
5.4  
5.5  
Procedure for UPS Startup: without interrupting  
power to the load  
32  
34  
36  
38  
Procedure for UPS Startup: without power initially  
supplied to the load  
Procedure for Switching the UPS into Maintenance  
Bypass condition from Normal Operation  
Procedure for Switching the UPS ON from a  
Maintenance Power condition  
5.6  
5.7  
Procedure for completely Powering down the UPS  
38  
39  
Procedure for carrying out at Reset after a recognized  
controlled transfer to Bypass or EPO action  
5.8  
5.9  
Adding a single module to an existing system  
40  
41  
Procedure to completely switch ON/ OFF the UPS  
at the UPS Display control panel  
5.10  
Procedure to switch ON/ OFF the Inverter at UPS  
Display control panel  
43  
5.11  
5.12  
5.13  
Setting the Battery test  
44  
45  
45  
Language selection  
Changing the current Date and Time  
6
Battery Installation  
Introduction  
Safety  
47  
47  
47  
48  
49  
49  
49  
6.1  
6.2  
6.3  
6.4  
6.5  
6.5.1  
6.5.2  
6.6  
UPS Batteries  
Installation Design Considerations  
Battery Installation and Maintenance  
Temperature Considerations  
Battery Population  
Battery Protection  
Battery Cabinet and Racks  
Introduction  
Specification  
Battery racks  
Battery Installation  
Battery Circuit Breaker Boxes  
Battery Temperature Board  
49  
50  
50  
50  
50  
50  
52  
52  
54  
6.7  
6.7.1  
6.7.2  
6.7.3  
6.8  
6.9  
6.10  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
7
7.1  
7.2  
Display Panel Interpretation  
55  
55  
57  
LED Interpretation  
Display Panel Messages  
8
1 + N System  
63  
63  
65  
65  
65  
65  
65  
66  
66  
67  
67  
70  
8.1  
General  
8.2  
Installation Procedure  
Preliminary Checks  
Protective Devices  
Power Cables  
Control Cables  
Battery Control  
Emergency Stop  
Operating Instructions  
8.2.1  
8.2.2  
8.2.3  
8.2.4  
8.2.5  
8.2.6  
8.3  
8.3.1  
8.4  
System Start-up and Shutdown procedures (separate batteries)  
Display Panel Message Interpretation in ‘1+N’ System  
9
Specification  
71  
71  
71  
71  
72  
73  
74  
75  
9.1  
9.2  
9.3  
9.4  
9.5  
9.6  
9.7  
Conformity and Standard  
UPS Environmental  
UPS Mechanical Characteristics  
UPS Electrical Characteristics  
UPS Electrical Characteristics (DC Intermediate circuit)  
UPS Electrical Characteristics (Inverter Output)  
UPS Electrical Characteristics (Bypass Input Mains)  
10.  
ANNEXURE  
77  
79  
79  
81  
81  
81  
81  
81  
82  
82  
82  
82  
82  
10.1  
Remote Alarm Monitor  
10.1.1 Ram Connections  
10.2  
10.2.1 Introduction  
10.2.2 Termination  
10.2.3 Indication and Metering  
10.2.4 Protection  
Input Transformer Cubicle  
10.3  
Bypass Isolation Cubicle  
10.3.1 Introduction  
10.3.2 Termination  
10.3.3 Indication and Metering  
10.3.4 Protection  
---- x ---- x ----- x ---- x ----  
---- x ---- x ----- x ----  
---- x ---- x -----  
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CHAP TER 1  
G e n e r a l D e s c r ip t io n  
1.1  
In t r oduct ion  
Th e Hip u ls e Un in te rru p tib le P o w e r S u p p ly (UP S ) S ys te m is c o n n e c te d b e tw e e n  
a
c ritic a l lo a d , s u c h a s a c o m p u te r, a n d its th re e p h a s e m a in s p o w e r s u p p ly. Be in g  
d e s ig n e d to fu rn is h a w e ll re g u la te d 1 p h a s e o u tp u t p o w e r s u p p ly u n d e r a ll ra te d lo a d  
a n d in p u t s u p p ly c o n d itio n s , th e s ys te m o ffe rs th e u s e r th e fo llo w in g a d va n ta g e s :  
Increased power quality:  
Th e UP S h a s its o w n in te rn a l vo lta g e a n d fre q u e n c y re g u la to rs w h ic h e n s u re th a t its  
o u tp u t is m a in ta in e d w ith in c lo s e to le ra n c e s in d e p e n d e n t o f vo lta g e a n d fre q u e n c y  
va ria tio n s o n th e m a in s p o w e r lin e s .  
Increased noise rejection:  
By re c tifyin g th e in p u t a .c . p o w e r to d .c . p o w e r, a n d th e n c o n ve rtin g it b a c k to a .c .,  
a n y e le c tric a l n o is e p re s e n t o n th e in p u t m a in s s u p p ly lin e is e ffe c tive ly is o la te d fro m  
th e UP S o u tp u t, th e re fo re th e c ritic a l lo a d s e e s o n ly c le a n p o w e r.  
Power blackout protection:  
If th e m a in s p o w e r fa ils , th e UP S c o n tin u e s to p o w e r th e c ritic a l lo a d fro m its b a tte ry  
s o u rc e , le a vin g th e lo a d im m u n e fro m p o w e r d is tu rb a n c e s .  
1.2  
Des ign Con cept  
1.2.1  
Hipulse Module Design  
Th is s e c tio n d e s c rib e s a n in d ivid u a l m o d u le 's o p e ra tin g p rin c ip le s . Th e UP S b a s ic a lly  
o p e ra te s a s a n a .c . - d .c . - a .c . c o n ve rte r (s e e fig u re 1 -1 ). Th is firs t c o n ve rs io n s ta g e  
(fro m a .c . to d .c .) u s e s a 3 p h a s e , fu lly-c o n tro lle d S C R b rid g e re c tifie r to c o n ve rt th e  
in c o m in g m a in s s u p p ly in to a re g u la te d d .c . b u s b a r.  
UPS  
Output  
Supply  
(a.c.)  
(d.c.)  
(a.c.)  
Mains  
Supply  
STATIC  
SWITCH  
RECTIFIER  
INVERTER  
(d.c.)  
BATTERY  
Fig 1-1 : Single Module block diagram  
Th e d .c . b u s b a r p ro d u c e d b y th e re c tifie r p ro vid e s b o th b a tte ry c h a rg in g p o w e r -  
b e in g e q u ip p e d w ith a te m p e ra tu re c o m p e n s a te d b a tte ry c h a rg in g s ys te m , to p ro lo n g  
b a tte ry life - a n d p o w e r to th e in ve rte r s e c tio n - w h ic h u tilize s th e la te s t IGBT s w itc h in g  
p u ls e w id th m o d u la tio n (P W M) d e s ig n - a n d p ro vid e s th e s e c o n d c o n ve rs io n p h a s e ,  
i.e . re c o n ve rtin g th e d .c . b u s b a r vo lta g e b a c k in to a n a .c . vo lta g e w a ve fo rm .  
1
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Hipulse - Single Phase 1+N’ UPS System  
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Du rin g n o rm a l o p e ra tio n b o th th e re c tifie r a n d in ve rte r s e c tio n s a re a c tive a n d p ro vid e  
re g u la te d lo a d p o w e r w h ils t s im u lta n e o u s ly flo a t c h a rg in g th e b a tte ry. In th e e ve n t o f  
a m a in s p o w e r fa ilu re , th e re c tifie r b e c o m e s in o p e ra tive a n d th e in ve rte r is p o w e re d  
s o le ly fro m th e b a tte ry. C ritic a l lo a d p o w e r is m a in ta in e d u n d e r th e s e c o n d itio n s u n til  
b a tte ry is fu lly d is c h a rg e d , w h e re u p o n th e UP S s h u ts d o w n . Th e e n d o f b a tte ry  
d is c h a rg e is a s s u m e d w h e n th e b a tte ry vo lta g e fa lls b e lo w a p re s e t va lu e (i.e . 3 3 0 /  
3 4 0 V d .c . fo r a 4 0 0 V a .c . s ys te m ).  
Th e p e rio d fo r w h ic h th e lo a d c a n b e m a in ta in e d fo llo w in g a m a in s p o w e r fa ilu re is  
kn o w n a s th e S ys te m s Au to n o m y Tim e ’ a n d is d e p e n d e n t u p o n b o th th e b a tte ry A/Hr  
c a p a c ity a n d th e a p p lie d p e rc e n ta g e lo a d .  
1.2.2 Bypass Supplies  
Th e c irc u it b lo c k a n n o ta te d S ta tic S w itc h ’ in fig u re 1 -2 c o n ta in s a n e le c tro n ic a lly  
c o n tro lle d s w itc h in g c irc u it w h ic h e n a b le s th e c ritic a l lo a d to b e c o n n e c te d e ith e r to  
th e in ve rte r o u tp u t o r to a b yp a s s p o w e r s o u rc e via th e s ta tic b yp a s s lin e ’. Du rin g  
n o rm a l s ys te m o p e ra tio n th e lo a d is c o n n e c te d to th e in ve rte r a n d th e in ve rte r -s id e ’  
o f th e S ta tic S w itc h is c lo s e d ; b u t in th e e ve n t o f a UP S o ve rlo a d , o r in ve rte r fa ilu re , it  
is a u to m a tic a lly tra n s fe rre d to th e s ta tic b yp a s s s u p p ly lin e .  
Maintenance Bypass  
Isolator  
Maintenance Bypass Line  
Bypass Isolator  
Bypass  
Supply  
STATIC  
SWITCH  
Static Bypass Line  
UPS  
Output  
Supply  
Mains  
Supply  
STATIC  
SWITCH  
RECTIFIER  
INVERTER  
Input  
Isolator  
Output  
Isolator  
Battery  
Isolator  
BATTERY  
Fig 1-2 : UPS Power switches configuration  
To p ro vid e  
a
c le a n (n o -b re a k) lo a d tra n s fe r b e tw e e n th e in ve rte r o u tp u t a n d s ta tic  
b yp a s s lin e , th e s ta tic s w itc h a c tiva te s c o n n e c tin g th e lo a d to th e b yp a s s s u p p lie s . To  
a c h ie ve th is , th e in ve rte r o u tp u t a n d b yp a s s s u p p ly m u s t b e fu lly s yn c h ro n ize d d u rin g  
n o rm a l o p e ra tin g c o n d itio n s . Th is is a c h ie ve d th ro u g h th e in ve rte r c o n tro l e le c tro n ic s  
w h ic h m a ke th e in ve rte r fre q u e n c y tra c k th a t o f th e s ta tic b yp a s s s u p p ly p ro vid e d th a t  
th e b yp a s s re m a in s w ith in a n a c c e p ta b le fre q u e n c y w in d o w . Th e s yn c h ro n izin g  
w in d o w is p re -s e le c te d to 2 % o f n o m in a l fre q u e n c y, g ivin g a n a c c e p ta b le fre q u e n c y  
w in d o w ± 1 Hz.  
A m a n u a lly c o n tro lle d , Ma in te n a n c e Byp a s s ’ s u p p ly is a ls o in c o rp o ra te d in to th e UP S  
d e s ig n . Its p u rp o s e is to e n a b le th e c ritic a l lo a d to b e p o w e re d fro m th e m a in s  
(b yp a s s ) s u p p ly w h ile th e UP S is s h u t d o w n fo r ro u tin e m a in te n a n c e .  
Note: The load equipment is not protected from normal supply aberrations when operating on Bypass  
side or in the maintenance bypass mode  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
1.2.3  
System Control Philosophy  
Normal Operation  
Du rin g n o rm a l o p e ra tio n , i.e . w h e n th e UP S in p u t s u p p ly is p re s e n t a n d w ith in  
s p e c ific a tio n , b o th th e re c tifie r a n d in ve rte r s e c tio n s a re a c tive a n d th e s ta tic s w itc h is  
tu rn e d o n to c o n n e c t th e in ve rte r o u tp u t to th e c ritic a l lo a d b u s b a rs . Th e b a tte ry  
c irc u it b re a ke r is a ls o c lo s e d a n d th e b a tte ry is th e re fo re p e rm a n e n tly flo a t c h a rg e d a t  
th e d .c . b u s b a r vo lta g e le ve l.  
(1+N Parallel UPS System)  
Note: As the unit outputs are connected in parallel, the System checks that the inverter control circuits  
are perfectly synchronised with one another and with the Bypass Mains in terms of both frequency and  
phase and that they have the same output voltages. Current supplied to the load is automatically  
divided among UPSs. A warning message appears while synchronisation is in progress.  
A m o d u le 's s ta tic s w itc h c a n n o t c lo s e u n til th e s e c o n d itio n s a re s a tis fie d .  
Mains Failure  
If th e p o w e r m a in s h a s  
a
fa ilu re o r is o u t o f to le ra n c e th e re c tifie r w ill g o o ff  
a u to m a tic a lly, w h ile th e In ve rte r w ill c o n tin u e to o p e ra te o n p o w e r fro m th e b a tte ry fo r  
a p e rio d o f tim e w h ic h d e p e n d s o n th e lo a d a n d th e c a p a c ity o f th e b a tte ry. If th e  
m a in s s u p p ly h a s n o t re tu n e d w ith in th is tim e , th e In ve rte r w ill g o o ff a u to m a tic a lly a n d  
a n a la rm m e s s a g e w ill a p p e a r o n th e UP S o p e ra to r c o n tro l p a n e l d is p la y.  
C ritic a l lo a d w ill n o t b e in te rru p te d in th e e ve n t o f a d ro p o r re tu rn o f th e AC p o w e r  
m a in s .  
Return of power mains  
W h e n th e m a in s re tu rn w ith in th e re q u ire d to le ra n c e , th e Re c tifie r w ill s ta rt u p a g a in  
a u to m a tic a lly a n d g ra d u a lly (p o w e r w a lk in ), s u p p lyin g p o w e r to th e In ve rte r a n d  
re c h a rg in g th e b a tte ry a t th e s a m e tim e . Th e re w ill b e n o in te rru p tio n o f th e c ritic a l  
lo a d .  
Off-Battery  
If th e b a tte ry s ys te m o n ly is ta ke n o u t o f s e rvic e fo r m a in te n a n c e , it is d is c o n n e c te d  
fro m th e re c tifie r/ c h a rg e r a n d in ve rte rs b y m e a n s o f (a n ) e xte rn a l d is c o n n e c t  
b re a ke r(s ). Th e UP S s h a ll c o n tin u e to fu n c tio n a n d m e e t a ll o f th e s p e c ifie d s te a d y-  
s ta te p e rfo rm a n c e c rite ria , e xc e p t fo r th e p o w e r o u ta g e b a c k-u p tim e c a p a b ility.  
UPS Module fault  
In th e e ve n t o f a n In ve rte r fa u lt, th e S ta tic Tra n s fe r S w itc h w ill a u to m a tic a lly tra n s fe r  
th e lo a d o n to th e Byp a s s Ma in s w ith n o in te rru p tio n . In s u c h a n e ve n t, re q u e s t  
q u a lifie d te c h n ic a l a s s is ta n c e .  
(1+N Parallel UPS System)  
In th e e ve n t o f a fa u lt in a u n it, th e u n it's S ta tic Tra n s fe r S w itc h w ill a u to m a tic a lly  
e xc lu d e th e u n it fro m th e s ys te m . If th e s ys te m is s till c a p a b le o f p ro vid in g th e  
re q u ire d lo a d , th e re m a in in g u n its w ill c o n tin u e to s u p p ly th e lo a d w ith n o in te rru p tio n .  
W h e n th e u n its s till p re s e n t in th e s ys te m a re n o lo n g e r c a p a b le o f fu lfillin g p o w e r  
re q u ire m e n ts , th e lo a d w ill a u to m a tic a lly b e tra n s fe rre d o n to th e MS S Byp a s s Ma in s .  
Th e lo a d w ill b e tra n s fe rre d w ith n o in te rru p tio n if th e In ve rte rs a re s yn c h ro n is e d w ith  
th e n e tw o rk; if th is is n o t th e c a s e , th e re w ill b e a n in te rru p tio n la s tin g a b o u t 2 0  
m illis e c o n d s .  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
Overload  
In th e e ve n t o f a n o ve rlo a d a t th e In ve rte r o u tp u t w h ic h la s ts lo n g e r th a n th e typ ic a l  
tim e / c u rre n t (re fe r to C h a p te r 9 - S p e c ific a tio n s ), th e In ve rte r w ill s h u t d o w n a n d th e  
S ta tic Tra n s fe r S w itc h w ill a u to m a tic a lly tra n s fe r th e lo a d o n to th e MS S Byp a s s Ma in s  
w ith n o in te rru p tio n . If th e o ve rlo a d fa lls w ith in th e typ ic a l tim e / c u rre n t th a t h a s b e e n  
s p e c ifie d , th e lo a d w ill b e re tu rn e d to th e in ve rte rs w h e n th e p o w e r d ro p s to a le ve l  
w h ic h c a n b e s u p p o rte d b y th e n u m b e r o f a c tive u n its in th e s ys te m (p a ra lle l 1 + N).  
In th e e ve n t o f a s h o rt c irc u it in th e o u tp u t, th e lo a d w ill n o rm a lly b e tra n s fe rre d o n to  
th e MS S Byp a s s Ma in s , w h ic h w ill c a u s e th e In ve rte r to s h u t d o w n ; th is s w itc h is  
d e te rm in e d a b o ve a ll b y th e fe a tu re s o f th e p ro te c tive d e vic e s in u s e in th e s ys te m . In  
e ith e r c a s e , a n a la rm m e s s a g e w ill a p p e a r o n th e UP S o p e ra to r c o n tro l p a n e l d is p la y.  
(1+N Parallel UPS System)  
Th e c o n tro l lo g ic s ys te m c o n s ta n tly m o n ito rs lo a d re q u ire m e n ts a n d c o n tro ls th e  
p o w e r s u p p lie d b y th e UP S m o d u le s . In th e e ve n t th a t a n o ve rlo a d c o n d itio n is  
s u s ta in e d fo r g re a te r th a n a p re s e t tim e , th e lo a d w ill tra n s fe r to th e m a in s b yp a s s  
s u p p ly, w h e n th e n u m b e r o f a c tive m o d u le s a re u n a b le to s a tis fy lo a d re q u ire m e n ts .  
Th e lo a d re tu rn s to th e in ve rte r s u p p ly if th e p o w e r is re d u c e d it a va lu e th a t c a n b e  
s u s ta in e d b y th e n u m b e r o f a c tive m o d u le s in th e s ys te m .  
Maintenance Bypass  
A s e c o n d b yp a s s c irc u it c o n ta in e d in th e UP S c a b in e t, id e n tifie d a s th e 'Ma in te n a n c e  
Byp a s s ' lin e is in c lu d e d to e n a b le a 'ra w ' m a in s s u p p ly to b e m a d e a va ila b le to th e  
lo a d w h ile fa c ilita tin g  
a
s a fe w o rkin g e n viro n m e n t fo r c a rryin g o u t s c h e d u le d UP S  
s ys te m m a in te n a n c e o r tro u b le s h o o tin g . Th e c irc u it is m a n u a lly s e le c te d b y th e  
Ma in te n a n c e Byp a s s Is o la to r w h ic h c a n b e p a d lo c ke d in th e O FF p o s itio n .  
W ARNING  
The internal maintenance bypass must not be used when the UPS  
system is comprised of more than two UPS modules in parallel.  
C AUTIO N  
If an automatic circuit breaker device is not present in the input  
distribution panel, there remains a dangerously high voltage at the  
output busbars of the UPS module that is switched off  
1.2.4  
ECOMODE  
In th is o p e ra tin g m o d e th e S ys te m p re fe rs to p u t th e lo a d o n th e Byp a s s Ma in s , w ith  
th e In ve rte r o n s ta n d -b y. Th e lo a d is s w itc h e d o ve r to th e In ve rte r w h e n th e m a in s  
g o e s o u ts id e o f s ta n d a rd fre q u e n c y a n d vo lta g e va lu e s (o r th e va lu e s a s m o d ifie d  
u s in g th e o p e ra to r p a n e l w h e n s ta rtin g u p th e s ys te m ). Th e EC O MO DE c o n fig u ra tio n  
re q u ire s a d iffe re n t s e tu p in th e d e fa u lt m e n u c o n fig u ra tio n , w h ic h m a y b e p re p a re d in  
th e fa c to ry b e fo re s h ip m e n t o r d u rin g in s ta lla tio n b y p e rs o n n e l tra in e d in th e u s e o f th e  
S ys te m .  
Note: In order to operate in ECOMODE, UPSs must be provided with compatible software versions:  
Th e 'UP S Lo g ic ' c a rd m u s t b e release 9.0 o r la te r (th e S /W re le a s e o f th e c a rd s m a y b e  
re a d o n th e fro n t p a n e l d is p la y, re fe rrin g to S e c tio n 4 .1 .2 - O p e ra tin g In s tru c tio n s ).  
O p e ra tin g In s tru c tio n s in EC O MO DE a re th e s a m e a s th o s e d e s c rib e d in C h a p te r 5 ,  
e xc e p t th a t th e lo a d is n o rm a lly o n th e Byp a s s m a in s , th e Lo a d LED is n o rm a lly o n  
In ve rte r (5 ), a n d c o rre s p o n d in g a la rm m e s s a g e w ill b e re p la c e d w ith Lo a d o n Ma in s  
(6 ).  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
W ARNING  
In ECOMODE the load is not protected against mains distortion.  
1.2.5  
UPS Power Switch Configuration  
Fig u re 1 -2 illu s tra te s th e Hip u ls e UP S m o d u le in w h a t is kn o w n a s th e "S p lit Byp a s s "  
c o n fig u ra tio n . In th e S p lit Byp a s s c o n fig u ra tio n , th e s ta tic b yp a s s lin e is c o n n e c te d b y  
a s e p a ra te p o w e r s w itc h to a d e d ic a te d 'b yp a s s ' p o w e r s o u rc e w h ic h a ls o fe e d s th e  
m a in te n a n c e b yp a s s lin e . W h e re a s e p a ra te p o w e r s o u rc e is n o t a va ila b le th e Byp a s s  
(Q 2 ) a n d Re c tifie r in p u t s u p p ly c o n n e c tio n s w o u ld b e lin ke d to g e th e r.  
W ith th e e xc e p tio n o f m a in te n a n c e b yp a s s is o la to r, a ll th e is o la to rs s h o w n m u s t b e  
c lo s e d d u rin g n o rm a l UP S o p e ra tio n .  
1.2.6  
Battery circuit breaker  
Th e b a tte ry s h o u ld b e c o n n e c te d to th e d .c . b u s b a r th ro u g h a c irc u it b re a ke r fitte d  
in s id e th e b a tte ry c a b in e t o r lo c a te d a d ja c e n t to b a tte rie s w h e re a b a tte ry c a b in e t is  
n o t u s e d . Th is c irc u it b re a ke r is c lo s e d m a n u a lly, b u t it c o n ta in s a n u n d e rvo lta g e  
re le a s e c o il w h ic h e n a b le s it to b e trip p e d fro m th e UP S c o n tro l e le c tro n ic s fo llo w in g  
c e rta in d e te c te d fa u lts . It a ls o h a s a m a g n e tic trip fa c ility fo r o ve rlo a d p ro te c tio n .  
1.2.7  
Battery temperature compensation  
b a tte ry te m p e ra tu re c o m p e n s a tio n c irc u it. As th e  
Hip u ls e UP S S ys te m o ffe rs  
a
te m p e ra tu re in s id e th e b a tte ry c a b in e t a re a ris e s , th e d .c . b u s b a r vo lta g e re d u c e s in  
o rd e r to s u s ta in th e b a tte ry a t its o p tim u m c h a rg e vo lta g e . Th is m u s t b e u s e d in  
c o n ju n c tio n w ith th e b a tte ry s e n s o r b o a rd .  
1.2.8  
System Expansion  
If n e c e s s a ry, a s in g le -m o d u le s ys te m c a n b e e xp a n d e d to c a te r fo r a n in c re a s e d lo a d  
re q u ire m e n t b y a d d in g a d d itio n a l m o d u le s - u p to a m a xim u m o f s ix UP S m o d u le s c a n  
b e c o n n e c te d in p a ra lle l. S ys te m e xp a n s io n re q u ire s c h a n g e in th e S ETUP o f th e  
d is p la y p a n e l.  
Note: System expansion should be carried out only by trained service personal. The individual  
modules connected to the system must be of the same power rating  
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CHAP TER 2  
In s t a lla t io n P r o c e d u r e  
2.1  
In t r oduct ion  
W ARNING  
Do not apply electrical power to the UPS equipment before the  
arrival of the commissioning engineer.  
W ARNING  
The UPS equipment should be installed by a qualified engineer in  
accordance with the information contained in this chapter and all  
equipment not referred to this manual is shipped with the details its  
own mechanical and electrical installation.  
W ARNING - Ba tte ry Ha z a rd s  
· Special care should be taken when working with the batteries  
associated with this equipment. When connected together, the  
battery terminal voltage will exceed 400V DC, and is potential  
lethal.  
· Eye protection should be worn to prevent injury from accidental  
electrical arcs.  
· Remove rings, watches and all metal objects.  
· Only use tools with insulated handles.  
· Wear rubber gloves.  
· If a battery leaks electrolyte, or is otherwise physically damaged, it  
must be replaced, stored in container resistant to sulfuric acid and  
disposed of in accordance with local regulations.  
· If electrolyte comes into contact with the skin, the affected area  
should be washed immediately with water.  
NO TE  
The UPS System can be connected to an IT (isolated neutral) power  
system  
Th is s e c tio n d e s c rib e s th e UP S s ys te m s e n viro n m e n ta l re q u ire m e n ts a n d m e c h a n ic a l  
c o n s id e ra tio n s th a t m u s t b e ta ke n in to a c c o u n t w h e n p la n n in g th e p o s itio n in g a n d  
c a b lin g o f th e UP S e q u ip m e n t.  
Because every site has its peculiarities, it is not the aim of this chapter to provide step-by-step  
installation instructions, but to act as a guide as to the general procedures and practices that should be  
observed by the installing engineer.  
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2.2  
En vir on men t al con s ider at ion s  
2.2.1  
UPS location  
Th e UP S m o d u le s h o u ld b e lo c a te d in  
a
c o o l, d ry, c le a n -a ir e n viro n m e n t w ith  
a d e q u a te ve n tila tio n to ke e p th e a m b ie n t te m p e ra tu re w ith in th e s p e c ifie d o p e ra tin g  
ra n g e (s e e C h a p te r 9 - S p e c ific a tio n s ).  
All m o d e ls in th e Hip u ls e ’ UP S ra n g e a re c o o le d w ith th e a id o f in te rn a l fa n s . C o o lin g  
a ir e n te rs th e m o d u le th ro u g h ve n tila tio n g rills lo c a te d a t va rio u s p a rts o f th e c a b in e t  
a n d e xh a u s te d th ro u g h g rills lo c a te d o n th e b a c k o f UP S . W h e n th e c a b in e t is lo c a te d  
o n a ra is e d flo o r, a n d b o tto m c a b le e n try is u s e d , a d d itio n a l c o o lin g a ir a ls o e n te rs th e  
UP S via th e flo o r vo id . If n e c e s s a ry, a s ys te m o f e xtra c to r fa n s s h o u ld b e in s ta lle d to  
a id c o o lin g a ir-flo w , a n d  
a
s u ita b le a ir filtra tio n s ys te m u s e d w h e re th e UP S is to  
o p e ra te in a d irty e n viro n m e n t.  
Note 1: When batteries are cabinet-mounted adjacent to the UPS module, it is the battery which  
dictates the designed maximum ambient temperature, not the UPS.  
Note 2: Power losses from the System which may be used in an air conditioning system are intended  
for operation using the Inverter, as in the ECOMODE configuration they would be undersized.  
2.2.2  
Battery location  
Te m p e ra tu re is a m a jo r fa c to r in d e te rm in in g th e b a tte ry life a n d c a p a c ity. Ba tte ry  
m a n u fa c tu re rs q u o te fig u re s fo r a n o p e ra tin g te m p e ra tu re o f 2 0 o C . O p e ra tin g a b o ve  
th is te m p e ra tu re w ill re d u c e th e b a tte ry life , o p e ra tio n b e lo w th is te m p e ra tu re w ill  
re d u c e th e b a tte ry c a p a c ity. O n a n o rm a l in s ta lla tio n th e b a tte ry te m p e ra tu re is  
m a in ta in e d b e tw e e n 1 5 o C a n d 2 5 o C . Ba tte rie s s h o u ld b e m o u n te d in a n e n viro n m e n t  
w h e re th e te m p e ra tu re is c o n s is te n t a n d e ve n o ve r th e w h o le b a tte ry. Ke e p b a tte rie s  
a w a y fro m m a in h e a t s o u rc e s o r m a in a ir in le ts e tc .  
Th e b a tte rie s c a n b e m o u n te d in p u rp o s e -b u ilt b a tte ry c a b in e t, w h ic h is p o s itio n e d  
a d ja c e n t to th e UP S m o d u le . P e d e s ta ls a re re q u ire d fo r th e b a tte ry c a b in e ts w h e n  
th e y a re lo c a te d o n ra is e d flo o rs , in th e s a m e w a y a s fo r th e UP S c a b in e ts . If th e  
b a tte rie s a re ra c k-m o u n te d , o r o th e rw is e lo c a te d re m o te to th e m a in UP S c a b in e t, a  
b a tte ry c irc u it b re a ke r m u s t b e m o u n te d a s c lo s e a s p o s s ib le to th e b a tte rie s  
th e m s e lve s , a n d c o n n e c te d u s in g th e m o s t d ire c t ro u te p o s s ib le . A c u s to m ize d  
re m o te b a tte ry c irc u it b re a ke r b o x, c o n ta in in g th e c irc u it b re a ke r a n d its n e c e s s a ry  
c o n tro l b o a rd , is a ls o a va ila b le a s a s ta n d a rd o p tio n .  
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130 kVA - 110V  
2.3  
Mech an ical Con s ider at ion s  
2.3.1  
System composition  
A UP S s ys te m c a n c o m p ris e  
a
n u m b e r o f e q u ip m e n t c a b in e ts , d e p e n d in g o n th e  
in d ivid u a l s ys te m d e s ig n re q u ire m e n ts - e .g . UP S c a b in e t, Ba tte ry c a b in e t. In g e n e ra l,  
a ll th e c a b in e ts u s e d in a p a rtic u la r in s ta lla tio n a re o f th e s a m e h e ig h t a n d d e s ig n e d to  
b e p o s itio n e d s id e -b y-s id e to fo rm a n a e s th e tic a lly a p p e a lin g e q u ip m e n t u n it.  
2.3.2  
Moving the cabinets  
W ARNING  
Ensure that any lifting equipment that used in moving the UPS  
cabinet has sufficient lifting capacity.  
En s u re th a t th e UP S w e ig h t is w ith in th e d e s ig n a te d s u rfa c e w e ig h t lo a d in g  
(Kg /s q .c m .) o f a n y h a n d lin g e q u ip m e n t. S e e th e UP S s p e c ific a tio n fo r w e ig h t d e ta ils .  
Th e UP S c a b in e ts c a n b e m o ve d b y fo rk lift o r c ra n e . Fo r o p e ra tio n s w ith fo rk lift, it is  
n e c e s s a ry to re m o ve b o th th e fro n t, re a r (o r s id e ) g rille p a n e ls lo c a te d o n th e b a s e o f  
th e c a b in e t. To e n a b le th e c a b in e t to b e lifte d b y a c ra n e , re m o va b le liftin g b a rs , a re  
fitte d to th e to p o f th e c a b in e t.  
In th e e ve n tu a lity th a t th e e q u ip m e n t c a n n o t b e m o ve d b y fo rk lift o r c ra n e , th e n ro lle rs  
s h o u ld b e u s e d .  
2.3.3  
Clearances  
As Hip u ls e h a s n o ve n tila tio n g rills a t e ith e r th e s id e s o r th e re a r, n o c le a ra n c e s a re  
re q u ire d . Ba c k -a c c e s s is n o t a n e s s e n tia l re q u ire m e n t fo r m a in te n a n c e ; h o w e ve r,  
w h e re s p a c e p e rm its , a c le a ra n c e o f a p p ro xim a te ly 1 0 0 0 m m w ill e a s e a c c e s s to  
m a g n e tic c o m p o n e n t p a rts .  
Th is w ill a ls o e n s u re p ro p e r e xh a u s t fro m re a r.  
C le a ra n c e a ro u n d th e fro n t o f th e e q u ip m e n t s h o u ld b e s u ffic ie n t to e n a b le fre e  
p a s s a g e o f p e rs o n n e l w ith th e d o o rs fu lly o p e n e d .  
2.3.4  
Fixing magnetic components  
Afte r th e e q u ip m e n t is in p la c e , re m o ve th e tra n s p o rta tio n re s tra in ts th a t h o ld th e  
o u tp u t tra n s fo rm e r in p la c e .  
2.3.5  
Cable entry  
C a b le s c a n e n te r fo r Hip u ls e ’ UP S a n d b a tte ry c a b in e t e ith e r fro m b e lo w o r th ro u g h  
e ith e r s id e . S id e e n try is m a d e p o s s ib le b y re m o vin g b la n kin g p ie c e s fitte d in th e s id e  
p a n e l to re ve a l th e c a b le e n try h o le s . Th is c a b le e n try m e th o d a llo w s th e e q u ip m e n t  
to b e p o s itio n e d o n a s o lid flo o r w ith o u t th e n e e d fo r c a b le tre n c h in g a n d a llo w s  
c a b le s to p a s s fro m o n e m o d u le to th e o th e r w h e n p o s itio n e d s id e -b y-s id e .  
Note: When selecting the power cables for side entry to a module located on a solid floor,  
consideration must be given to the minimum permissible bending radius of the proposed cables to  
ensure that they can be fashioned to reach the UPS connection busbars.  
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130 kVA - 110V  
2.4  
Pr e l imin ar y Ch e cks  
Be fo re yo u in s ta ll th e UP S h a rd w a re yo u s h o u ld c a rry o u t th e fo llo w in g p re lim in a ry  
c h e c ks :  
1 . Ve rify th a t th e UP S ro o m s a tis fie s th e e n viro n m e n ta l c o n d itio n s s tip u la te d in th e  
e q u ip m e n t s p e c ific a tio n , p a yin g p a rtic u la r a tte n tio n to th e a m b ie n t te m p e ra tu re a n d  
a ir e xc h a n g e s ys te m .  
2 . Re m o ve a n y p a c ka g in g d e b ris , th e n vis u a lly e xa m in e th e UP S a n d b a tte ry  
e q u ip m e n t fo r tra n s it d a m a g e , b o th in te rn a lly a n d e xte rn a lly.  
d a m a g e to th e s h ip p e r im m e d ia te ly.  
Re p o rt a n y s u c h  
2.5  
In s t al l at ion Dr awin gs  
Th e fo llo w in g d ia g ra m s illu s tra te th e ke y m e c h a n ic a l c h a ra c te ris tic s o f th e va rio u s  
UP S s ys te m c a b in e ts  
Fig 2 -1 : O ve ra ll Ge n e ra l Arra n g e m e n t fo r 1 3 0 kVA S in g le P h a s e 1 1 0 V UP S w ith 6 P u ls e  
re c tifie r S in g le Mo d u le a n d ‘1 + N’  
Fig 2 -2 : C a b le e n try a n d Fo u n d a tio n d e ta ils fo r 1 3 0 kVA S in g le P h a s e 1 1 0 V UP S w ith 6  
P u ls e re c tifie r S in g le Mo d u le a n d ‘1 + N.  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
1000  
875  
AIR FLOW  
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F R O N T  
2
1
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3
1400  
842  
LEFT SIDE VIEW  
FRONT VIEW  
4
5
1
1600  
REAR VIEW  
TOP VIEW  
Note - All dimensions are in mm  
1. Removable grill for lifting with fork-lift truck  
2. Air inlet grill  
3. Removable grill – if using side cable entry  
4. Cooling fan assembly for Rectifier & Inverter  
5. Cooling fan assembly for Transformers  
Fig 2-1: Overall General Arrangement for 130kVA Single Phase UPS  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
1400  
90  
570  
570  
90  
40  
A. CABLE ENTRY DETAILS  
42.5  
90  
1315  
1220  
Dia 14.0 Holes  
1400  
FOUNDATION DETAILS  
Note: All dimensions are in mm  
Fig 2-2 : Cable entry and Foundation details for 130 kVA Single Phase UPS  
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CHAP TER 3  
In s t a lla t io n ( E le c t r ic a l)  
Th e UP S re q u ire s b o th “P o w e r” a n d “C o n tro l” c a b lin g o n c e it h a s b e e n m e c h a n ic a lly  
in s ta lle d . All C o n tro l c a b le s , w h e th e r s c re e n e d o r n o t, s h o u ld b e ru n s e p a ra te fro m  
th e P o w e r c a b le s in m e ta l c o n d u its o r m e ta l d u c ts w h ic h a re e le c tric a lly b o n d e d to th e  
m e ta lw o rk o f th e c a b in e ts to w h ic h th e y a re c o n n e c te d .  
3.1  
Power Cabl in g  
W ARNING  
Before cabling-up the UPS, ensure that you are aware of the location  
and operation of the external isolators that connect the UPS input/  
bypass supply to the mains distribution panel.  
Check that these supplies are electrically isolated, and post any  
necessary warning signs to prevent their inadvertent operation.  
Fo r c a b le e n try, re fe r to s e c tio n 2 .3 .5  
3.1.1 System Configuration  
Th e p o w e r c a b le s o f th e s ys te m m u s t b e s ize w ith re s p e c t to th e fo llo w in g d e s c rip tio n :  
Module input cables  
Th e m o d u le in p u t c a b le s m u s t b e s ize d fo r th e m a xim u m in p u t c u rre n t, in c lu d in g th e  
m a xim u m b a tte ry re c h a rg e c u rre n t, g ive n in th e ta b le 3 -1 , w ith re s p e c t to th e m o d u le  
ra tin g a n d th e in p u t a .c . vo lta g e .  
Module Bypass and Output cables  
Th e Byp a s s a n d O u tp u t c a b le s m u s t b e s ize d fo r th e n o m in a l o u tp u t c u rre n t, g ive n in  
th e ta b le 3 .1 , w ith re s p e c t to th e m o d u le ra tin g a n d th e o u tp u t a .c . vo lta g e .  
Battery cables  
Ea c h UP S m o d u le h a s its o w n b a tte ry, w h ic h is c o n n e c te d u s in g tw o c a b le s , o n e  
p o s itive a n d o n e n e g a tive . Th e b a tte ry c a b le s m u s t b e s ize d fo r th e b a tte ry d is c h a rg e  
c u rre n t a t th e e n d -o f-d is c h a rg e vo lta g e , a s g ive n in th e ta b le 3 -1 , w ith re s p e c t to th e  
m o d u le ra tin g .  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
3.1.2  
Cable rating  
NOMINAL CURRENT (Amps)  
3 Phase Input Mains with full  
UPS  
Rating  
(kVA)  
Battery at minimum  
Battery Voltage  
battery re-charge  
(less 5% for 12 pulse)  
1 Phase Output at full load  
380V  
400V  
415V  
110V  
115V  
120V  
380V  
400V  
415V  
30  
40  
50  
60  
80  
120  
130  
150  
63  
84  
60  
80  
58  
77  
96  
115  
151  
223  
238  
275  
272  
364  
454  
545  
727  
1090  
1181  
1363  
260  
349  
434  
521  
695  
1043  
1130  
1304  
250  
334  
416  
500  
666  
1000  
1083  
1250  
83  
80  
77.5  
103  
129  
155  
206  
310  
336  
387  
110  
137  
164  
219  
329  
357  
412  
106  
133  
159  
213  
319  
346  
399  
105  
126  
165  
245  
259  
300  
100  
119  
157  
233  
247  
285  
Table 3-1 UPS Module cabinet power cable rating  
3.1.3  
General Notes  
Th e fo llo w in g a re g u id e lin e s o n ly a n d s u p e rs e d e d b y lo c a l re g u la tio n s a n d c o d e s o f  
p ra c tic e w h e re a p p lic a b le :  
1 . Th e n e u tra l c o n d u c to r s h o u ld b e s ize d s a m e a s th e o u tp u t/ b yp a s s c u rre n t.  
2 . Th e e a rth c o n d u c to r s h o u ld b e s ize d fo r c a rryin g fa u lt c u rre n t fo r a tle a s t 3 to 5  
s e c o n d s o r a s g u id e d b y lo c a l e le c tric a l ru le s .  
3 . C o n s id e ra tio n s h o u ld b e g ive n to th e u s e o f p a ra lle le d s m a lle r c a b le s fo r h e a vy  
c u rre n ts , a s th is c a n e a s e in s ta lla tio n c o n s id e ra b ly.  
4 . W h e n s iz in g b a tte ry c a b le s , a m a xim u m vo lt d ro p o f 3 V d .c . is p e rm is s ib le a t th e  
c u rre n t ra tin g s g ive n in Ta b le 3 -1 .  
3.1.4  
Cable Connections  
Th e re c tifie r in p u t, b yp a s s , o u tp u t a n d b a tte ry p o w e r c a b le s (a ll re q u ire lu g typ e  
te rm in a tio n s ) a n d a re c o n n e c te d to b u s b a rs s itu a te d b e lo w th e p o w e r is o la to r  
s w itc h e s - a s s h o w n in fig u re 3 .1 fo r 8 0 kVA a n d fig 3 .2 fo r 1 2 0 /1 6 0 / 2 0 0 kVA.  
A te rm in a l b lo c k X3 is u s e d fo r c o n n e c tin g th e c o n tro l c a b le s to th e b a tte ry c irc u it  
b re a ke r a n d a s e c o n d te rm in a l b lo c k X4 is u s e d fo r th e e xte rn a l e m e rg e n c y s to p  
fa c ility, e xte rn a l O FF in ve rte r, e xt. Byp a s s , e tc . th e s e a re fe m a le s p a d e typ e  
c o n n e c tio n s (Fa s t-o n 6 .3 x 0 .8 ) a n d a re d e s c rib e d la te r in S e c tio n 3 .2  
3.1.5  
Safety earth  
Th e s a fe ty e a rth b u s b a r is lo c a te d b e tw e e n th e Byp a s s a n d O u tp u t p o w e r s u p p ly  
c o n n e c tio n s a s s h o w n in th e fig u re 3 .1 . Th e s a fe ty e a rth c a b le m u s t b e c o n n e c te d to  
th e e a rth b u s b a r a n d b o n d e d to e a c h c a b in e t in th e s ys te m .  
All c a b in e ts a n d c a b le tru n kin g s h o u ld b e e a rth e d in a c c o rd a n c e w ith lo c a l  
re g u la tio n s .  
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130 kVA - 110V  
W ARNING  
Failure to follow adequate earthing procedures can result in electric  
shock hazard to personnel, or the risk of fire, should an earth fault  
occur.  
3.1.6  
Protective devices  
Fo r s a fe ty re a s o n s , it is n e c e s s a ry to in s ta ll, e xte rn a l to th e UP S , c irc u it b re a kin g  
p ro te c tive d e vic e s in th e in p u t a .c . s u p p ly a n d to w a rd s th e b a tte ry. Give n th a t e ve ry  
in s ta lla tio n h a s its o w n c h a ra c te ris tic s , th is c h a p te r p ro vid e s g e n e ra l u s e fu l  
in fo rm a tio n e n g in e e rs , w ith kn o w le d g e o f o p e ra tin g p ra c tic e s , o f re g u la to ry s ta n d a rd s ,  
a n d o f th e e q u ip m e n t to b e in s ta lle d .  
Re ctifie r and bypas s inputs :  
P ro te c tio n a g a in s t e xc e s s ive o ve r c u rre n ts a n d s h o rt c irc u its  
Th e s e in p u ts m u s t b e p ro te c te d , in s ta llin g s u ita b le p ro te c tive d e vic e s a t th e  
d is trib u tio n p a n e l o f th e in c o m in g m a in s u p p ly, c o n s id e rin g th a t th e p ro te c tio n s h o u ld  
d is c rim in a te w ith o ve rlo a d c a p a c ity o f th e s ys te m (s e e C h a p te r 9 : S p e c ific a tio n -  
Ele c tric a l C h a ra c te ris tic s ).  
Split Bypass :  
In th e c a s e o f a s p lit b yp a s s b e in g u s e d , s e p a ra te p ro te c tive d e vic e s s h o u ld b e  
in s ta lle d in th e in c o m in g m a in s d is trib u tio n p a n e l.  
Th e p ro te c tive d e vic e s m u s t b e s e le c te d fo r th e n o m in a l in p u t c u rre n t, w ith re s p e c t to  
th e UP S ra tin g a n d th e in p u t a .c . s u p p ly vo lta g e a s g ive n in ta b le 3 -1 .  
Protection against earth faults (RCD devices):  
In th e e ve n t o f a d iffe re n tia l (RC D) d e vic e b e in g in s ta lle d u p s tre a m o f th e in p u t s u p p ly,  
o n e m u s t ta ke in to a c c o u n t tra n s ie n t a n d s te a d y s ta te e a rth le a ka g e c u rre n ts th a t a re  
p ro d u c e d d u rin g s ta rt-u p o f th e UP S .  
Th e p re s e n c e o f a n RFI s u p p re s s io n filte r in s id e th e UP S , d e te rm in e s a re s id u a l e a rth  
c u rre n t g re a te r th a n 3 .5 m A a n d le s s th a n 1 0 0 0 m A.  
Re s id u a l c u rre n t circ u it b re a ke rs (RC C B) m u s t b e s e n s itive to d .c . u n id ire c tio n a l p u ls e  
(c la s s A) in th e n e tw o rk a n d in s e n s itive to tra n s ie n t c u rre n t p u ls e s .  
Th e y a re id e n tifie d b y th e s ym b o ls re s p e c tive ly.  
Th e s e is o la to rs m u s t h a ve a n a ve ra g e s e n s itivity, p o s s ib le a d ju s ta b le b e tw e e n 0 .3 a n d  
1 A.  
It is re c o m m e n d e d th a t th e s e le c tivity w ith e ve ry d iffe re n tia l s w itc h b e ve rifie d b o th  
u p s tre a m o f th e in p u t d is trib u tio n b o a rd a n d d o w n s tre a m (to w a rd s th e lo a d ).  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
Parallel 1+N:  
Us e o f d iffe re n tia l c irc u it b re a ke rs o n UP S u n it in p u ts in a c o n fig u ra tio n w ith s e p a ra te  
in p u ts a n d o n e b a tte ry fo r e a c h u n it re q u ire s in s ta lla tio n o f a c o m m o n d e vic e o n ly o n  
th e S ys te m Byp a s s Ma in s .  
Us e o f d iffe re n tia l c irc u it b re a ke rs o n UP S u n it in p u ts s h a rin g  
a
c o m m o n b a tte ry  
re q u ire s in s ta lla tio n o f d e vic e c o m m o n to a ll th e in p u t lin e s . If in p u ts a re c o n fig u re d  
fo r s e p a ra te m a in s , a c o m m o n d e vic e w ill a ls o b e re q u ire d fo r a ll S ys te m b yp a s s  
m a in s .  
UPS Battery:  
Th e UP S Ba tte ry is p ro te c te d b y m e a n s o f a c o n tro l c irc u it th a t o p e ra te s th e trip p in g  
m e c h a n is m o f a n a u to m a tic c irc u it b re a kin g d e vic e (h a vin g a va ria b le trip s e ttin g ).  
Th e trip p in g m e c h a n is m u s in g a n u n d e rvo lta g e re le a s e c o il th a t o p e ra te s o n a p re s e n t  
m in im u m vo lta g e le ve l.  
Th e c irc u it b re a ke r is e s s e n tia l fo r m a in te n a n c e o f th e b a tte ry a n d is n o rm a lly lo c a te d  
n e a r to th e b a tte ry in s ta lla tio n . Th e c h a ra c te ris tic s a n d o p e ra tio n o f th e a u to m a tic  
c irc u it b re a ke r a re g ive n in C h a p te r 6 .  
Output of the Sys te m :  
In th e e ve n tu a lity th a t a n e xte rn a l d is trib u tio n p a n e l is u s e d fo r lo a d d is trib u tio n , th e  
s e le c tio n o f p ro te c tive d e vic e m u s t p ro ve d d is c rim in a tio n w ith th o s e th a t a re u s e a t  
th e in p u t to th e UP S m o d u le .  
3.1.7  
Cabling procedure  
O n c e th e e q u ip m e n t h a s b e e n fin a lly p o s itio n e d a n d s e c u re d , c o n n e c t th e p o w e r  
c a b le s a s d e s c rib e d in th e fo llo w in g p ro c e d u re .  
S tu d y th e c o n n e c tio n d ia g ra m in th e fig u re s b e lo w .  
1 . Ve rify th a t th e UP S e q u ip m e n t is to ta lly is o la te d fro m its e xte rn a l p o w e r s o u rc e a n d  
a ll th e UP S p o w e r is o la to rs a re o p e n . C h e c k th a t th e s e s u p p lie s a re e le c tric a lly  
is o la te d , a n d p o s t a n y n e c e s s a ry w a rn in g s ig n s to p re ve n t th e ir in a d ve rte n t o p e ra tio n .  
2 . O p e n th e d o o r(s ) to th e UP S c a b in e t a n d re m o ve th e lo w e r p ro te c tive c o ve r to g a in  
a c c e s s to th e c o n n e c tio n s b a rs .  
3 . C o n n e c t th e s a fe ty e a rth a n d a n y n e c e s s a ry b o n d in g e a rth c a b le s to th e c o p p e r  
e a rth b u s b u s b a r lo c a te d o n th e flo o r o f th e e q u ip m e n t b e lo w th e p o w e r c o n n e c tio n s .  
Note: The earthing and neutral bonding arrangement must be in accordance with local and national  
codes practice  
Input Connections:  
4 . C o n n e c t th e a .c . in p u t s u p p ly c a b le s to th e in p u t b u s b a rs (U1 -V1 -W 1 te rm in a ls )  
a n d th e b yp a s s a .c . s u p p ly c a b le s to th e b yp a s s b u s b a rs (U3 - N3 te rm in a ls ) a n d  
tig h te n th e c o n n e c tio n s .  
ENS URE C O RREC T P HAS E RO TATIO N  
Output System Connections:  
5 . C o n n e c t th e s ys te m o u tp u t c a b le s b e tw e e n th e o u tp u t b u s b a rs (U2 - N2 te rm in a ls )  
a n d th e c ritic a l lo a d a n d tig h te n th e c o n n e c tio n s .  
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130 kVA - 110V  
W ARNING  
If the load equipment will not be ready to accept power on the arrival  
of the commissioning engineer then ensure that the system output  
cables are safely isolated at their ends.  
6 . C o n n e c t th e Ba tte ry c a b le s b e tw e e n th e UP S te rm in a ls (+ / -) a n d its a s s o c ia te d  
b a tte ry c irc u it b re a ke r. C o n n e c t s c re e n e d a u xilia ry c a b le s fro m e a c h b a tte ry c irc u it  
b re a ke r c o n tro l b o a rd to th e a u xilia ry te rm in a l b lo c k (X3 ) o f UP S o f th e ir m e ta l fra m e o f  
th e Ba tte ry b re a ke r m o u n te d in in p u t tra n s fo rm e r c u b ic le o r Ba tte ry c irc u it b re a ke r  
b o x (if u s e d ).  
As  
a
s a fe ty p re c a u tio n re m o ve th e b a tte ry fu s e in th e m o d u le u n til th e a rriva l o f  
c o m m is s io n in g e n g in e e r.  
O BS ERVE THE BATTERY C ABLE P O LARITY  
W ARNING  
Do not close the battery circuit breaker before the equipment has  
been commissioned.  
Input-module Parallel Connections:  
7 . 1 + N P a ra lle l UP S S ys te m : In s id e th e m o d u le th e re is a n P a ra lle l C o n n e c to rs Bo a rd  
m o u n te d o n th e le ft h a n d s id e . C o n n e c t o n e e n d o f th e in te rc o n n e c tin g rib b o n c a b le s  
to in te rfa c e c o n n e c to r (X1 ) o f th e firs t UP S m o d u le a n d th e o th e r e n d to c o n n e c to r (X2 )  
o f th e s e c o n d m o d u le , a n d s o to th e n e xt m o d u le u n til a c lo s e d lo o p is fo rm e d . (s e e  
fig 8 -2 ).  
Auxiliary Connections:  
8 . C o n n e c t th e a u xilia ry c a b le s o f a n y e xte rn a l in te rfa c e / s ig n a ls to th e re s p e c tive  
c o n n e c tio n s o f th e o u tp u t a u xilia ry te rm in a l b lo c k (X4 ).  
9 . Re fit th e lo w e r p ro te c tive c o ve r.  
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Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
Q3  
Q1  
Q2  
Q4  
Q1 - INPUT  
Q3 - MAINTENANCE  
BYPASS  
SUPPLY  
Q2 - BYPASS  
ISOLATOR  
Q4 - OUTPUT  
ISOLATOR  
Q3  
Q1  
X4  
X3  
Q2  
Q4  
+VE -VE U1 V1 W1 U3  
N3  
U2  
N2  
BATTERY  
INPUT  
BYPASS  
OUTPUT  
Fig 3-1 : Cable connections for 130 kVA 1Ph UPS  
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3.2  
Con t r ol cabl es  
3.2.1  
Battery Control  
Th e b a tte ry c irc u it b re a ke r is c o n tro lle d b y th e Ba tte ry C irc u it Bre a ke r C o n tro lle r Bo a rd  
w h ic h is lo c a te d w ith in th e In p u t Tra n s fo rm e r C u b ic le - o r a d ja c e n t to th e Ba tte ry  
C irc u it Bre a ke r w h e n th e b a tte rie s a re ra c k-m o u n te d . Th is b o a rd c o n tro ls th e c irc u it  
b re a ke rs u n d e rvo lts re le a s e c o il a n d a ls o p ro vid e s  
a
p a th fo r th e c irc u it b re a ke r  
a u xilia ry c o n ta c ts to s ig n a l th e c irc u it b re a ke r s ta tu s b a c k to th e UP S c o n tro l lo g ic . All  
th e c o n n e c tio n s b e tw e e n th e c o n tro lle r b o a rd a n d th e UP S m o d u le a re m a d e via th e  
Au xilia ry Te rm in a l Blo c k w h ic h is lo c a te d in th e b a s e o f th e UP S c a b in e t.  
1
2
3
4
5
B ATT E RY C IR C U IT  
B R EA K ER C O NT R O L L E R  
B O A R D  
Common  
I batt.  
Common  
Batt. Sw.  
Batt. trip  
6
7
8
9
AUXILIARY  
TERMINAL  
BLOCK  
10  
11  
12  
X1  
X3  
X4  
1
2
3
4
5
LOCATED IN  
1
2
3
4
5
6
7
8
9
Ext OFF Inv.  
Ext Sw. Out  
Ext EPO  
UPS  
CABINET  
LINKS  
Ext BYP  
Back feed  
Int EPO  
10  
11  
12  
Fig 3-2 : Auxiliary Terminal Block detail  
C o n n e c t th e b a tte ry c irc u it b re a ke r c o n tro l a n d te m p e ra tu re c o m p e n s a tio n c a b le s  
b e tw e e n th e UP S a u xilia ry te rm in a l b lo c k a n d b a tte ry c irc u it b re a ke r c o n tro lle r b o a rd  
a s s h o w n in fig u re 3-3 . Th e s e c a b le m u s t b e s h ie ld e d , s h ie ld s h o u ld b e c o n n e c te d a t  
p ro te c tive e a rth o f In p u t tra n s fo rm e r c u b ic le o r b a tte ry b re a ke r, n o t o f UP S .  
C AUTIO N  
If battery temperature compensation is not used the system must be  
de-activated by commissioning engineer.  
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130 kVA - 110V  
3.2.2  
Auxiliary Terminal Block X3 and X4 at UPS  
X3 terminal reference  
Reference label  
Common  
T Batt.  
Description  
2
3
4
5
6
Temperature sensor common (0V)  
Temperature sensor signal  
Common (0V)  
Common  
Batt. Sw.  
Bat Trp  
Battery circuit breaker trip control  
Battery circuit breaker trip control  
Note: The auxiliary cables of the battery must be screened and double insulated.  
The screen is connected to the earth of the battery cabinet or supporting rack.  
Use multiple-core shielded cables with a section of 0.5 to 1mm2  
Connect the cables with the Fast-on 6.3 x 0.8 mm terminals (female)  
X4 terminal reference  
Reference label  
Description  
Remotely provides control for switching off the inverter.  
Normally open contact.  
1-2  
Ext. OFF Inv  
Indication to be provided at the UPS to note the opening of an external  
module output isolator.  
Normally closed contact.  
If unused, leave the standard connectors in place.  
Remotely provides control for switching off the UPS using a remote  
emergency button.  
3-4  
5-6  
7-8  
Ext. Sw. Out  
Ext. EPO  
Normally closed contact.  
If unused, leave the standard connectors in place.  
Indication to be provided at the UPS to note the opening of an external  
maintenance bypass switch.  
Ext. BYP  
Normally closed contact.  
If unused, leave the standard connectors in place.  
Signal form the UPS to indicate a return flow of energy in the bypass mais.  
Normally open contact.  
9-10  
Back Feed  
Int. EPO  
Availability of a contact for switching off the UPS in the same way as the  
internal emergency off button.  
11-12  
Normally closed contact.  
Note: All auxiliary cables of terminal block X4 must be double insulated.  
The cross-sectional area of the auxiliary cables is from 0.5 to 1 mm2  
Connect the cables with the Fast-on 6.3 x 0.8 mm terminals (female)  
Maximum contact rating on auxiliary terminals: 50 Vdc @ 1 Amp.  
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130 kVA - 110V  
To Battery  
+
Sensor  
Temperature  
(Optional)  
3
2
1
X3  
X4  
X5  
X6  
X7  
X8  
X9  
V<  
X2  
X10  
+
BATTERY  
CIRCUIT  
1
2
3
4
5
BREAKER  
X1  
UPS CABINET  
X3  
1
2
Battery C.B.  
Controller  
3
4
5
6
7
8
9
10  
11  
12  
+
Fig 3-3: Battery Connection  
3.2.3  
Emergency Stop  
If a n e xte rn a l Em e rg e n c y S to p fa c ility is re q u ire d it is c o n n e c te d to te rm in a ls 5 & 6 o f  
th e Au xilia ry Te rm in a l Blo c k (X4 ) a n d c o n n e c t th e ‘n o rm a lly c lo s e d ’ re m o te s to p s w itc h  
b e tw e e n th e s e tw o te rm in a ls u s in g s h ie ld e d c a b le . If th is fa c ility is n o t u s e d th e n  
te rm in a ls 5 & 6 m u s t b e lin ke d -o u t a s s h o w n in Fig u re 3 -3 .  
Note: The Emergency Stop action within the UPS shuts down the rectifier, inverter and static bypass  
and trips the battery circuit breaker. It does not however internally disconnect the input mains supply.  
If required, this additional action can be facilitated by feeding the UPS input via a circuit breaker  
which can be tripped by a second contact of the Emergency Stop switch.  
Note: Terminals 11 and 12 of the Auxiliary Terminal Block (X4) are connected to a normally closed  
contact of the UPS Display Panel Emergency Stop button and go open circuit when the button is  
pressed. This output can be used as part of a wider Emergency Stop system to initiate an external  
action (such as tripping an external supply breaker)  
3.2.4  
Back Feed Protection  
Us in g a n a u xilia ry te rm in a l (p in s 9 -1 0 o f c o n n e c to r X4 ) th e UP S p ro vid e s a n o rm a lly  
o p e n c o n ta c t to b e u s e d fo r o p e n in g o f a n e xte rn a l c irc u it p ro te c tio n d e vic e , to p ro te c t  
th e o p e ra to r a g a in s t b a c k fe e d o f e n e rg y re s u ltin g fro m a s h o rt-c irc u it fa u lt o f th e  
Byp a s s lin e S C Rs . Th is a u xilia ry c o n ta c t c a n b e u s e d , fo r e xa m p le , in s e rie s w ith a n  
e xte rn a l lo w vo lta g e s o u rc e , in o rd e r to s u p p ly th e trip c o il o f a n a u to m a tic c irc u it  
b re a kin g d e vic e , lo c a te d u p s tre a m o f th e UP S Byp a s s m a in s in p u t. In th e ve n t o f  
e n e rg y b e in g b a c kfe e d th e a u xilia ry c irc u it w ill a c tiva te c lo s in g th e n o rm a lly o p e n  
c o n ta c t a n d a s a re s u lt o p e n in g o f th e e xte rn a l c irc u it-b re a kin g d e vic e ; th e UP S is  
d is c o n n e c te d fro m th e Byp a s s m a in s s u p p ly. Th e e le c tric a l c h a ra c te ris tic s o f th e  
a u xilia ry c o n ta c t a re 5 0 V (a .c . o r d .c .) @ 1 Am p .  
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CHAP TER 4  
O p e r a t o r C o n t r o l a n d D is p la y P a n e l  
4.1  
In t r oduct ion  
O n th e fro n t o f th e UP S th e re is a d is p la y a n d c o n tro l p a n e l, fro m w h ic h it is p o s s ib le to  
e a s ily ve rify th e s ta tu s o f th e UP S in c lu d e d a ll th e m e a s u re d p a ra m e te rs a n d a la rm s o f  
th e UP S a n d Ba tte ry. Th e o p e ra to r c o n tro l p a n e l is d ivid e d in to th re e fu n c tio n a l a re a s :  
Mim ic LED d is p la y’ a n d In ve rte r C o n tro l s w itc h ,  
‘O p e ra to r P a n e l’ a n d ‘LC D d is p la y’,  
Ba rg ra p h s e c tio n ’.  
As c a n b e s e e n th e le ft s e c tio n c o n s is ts o f LEDs w h ic h in d ic a te th e o p e ra tio n a l a n d  
a la rm s ta tu s o f th e s ys te m b y tu rn in g O N o r O FF o r b y fla s h in g O N/ O FF.  
Th e m id d le s e c tio n o f th e o p e ra to r c o n tro l a n d d is p la y p a n e l c o n s is ts o f a LC D (Liq u id  
C rys ta l Dis p la y) a n d its a s s o c ia te d s w itc h e s .  
Th e fo llo w in g fu n c tio n a l a re a (rig h t s e c tio n ) s h o w s th e va rio u s UP S lo a d a n d Ba tte ry  
c h a rg in g c o n d itio n s .  
HIPULSE  
%
MENU  
ESC  
ENTER  
INV  
Fig 4-1: UPS Operator Control / Display Panel  
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4.1.1  
Operator control panel  
Th e c o n tro l a n d d is p la y p a n e l LEd in d ic a tio n s a re illu s tra te d in fig u re 4 -2 a n d  
d e s c rib e d in th e fo llo w in g te xt:  
6
1
DISPLAY  
2
%
MENU  
3
ESC  
ENTER  
INV  
4
5
7
8
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
Fig 4-2: Single module operator control panel  
Mimic indications  
S ix LEDs m o u n te d o n a s in g le lin e d ia g ra m re p re s e n ts th e va rio u s UP S p o w e r p a th s  
a n d s h o w th e c u rre n t UP S o p e ra tio n s ta tu s :  
1 . Byp a s s s u p p ly h e a lth y  
Th is le d illu m in a te s w h e n th e b yp a s s a .c . in p u t p o w e r s w itc h is c lo s e d a n d th e in p u t  
s u p p ly is w ith in o f s e t va lu e n o m in a l vo lta g e (d e fa u lt ± 1 0 %)  
2 . In p u t s u p p ly h e a lth y a n d Re c tifie r is o p e ra tive .  
3 . Ba tte ry vo lta g e h e a lth y (i.e . b e tw e e n u n d e r - vo lta g e c u t-o ff’ a n d ‘o ve r - vo lta g e  
trip ’ le ve ls ).  
4 . In ve rte r o u tp u t h e a lth y.  
5 . Lo a d o n In ve rte r s ta tu s  
Th is le d illu m in a te s w h e n th e o u tp u t p o w e r s w itc h is c lo s e d a n d th e lo a d is c o n n e c te d  
to th e in ve rte r.  
6 . Lo a d o n Byp a s s s ta tu s .  
Th is le d illu m in a te s w h e n th e o u tp u t p o w e r s w itc h is c lo s e d a n d th e lo a d is c o n n e c te d  
to th e b yp a s s a .c . s u p p ly via th e s ta tic s w itc h .  
Inverter control switch  
7 . In ve rte r O N (O n ly fo r UP S a b o ve 8 0 kVA ra tin g ) - Ma n u a l in ve rte r s e le c tio n s w itc h .  
8 . In ve rte r LED - in ve rte r s ta tu s in d ic a to r c o n ta in e d w ith in th e s w itc h ic o n .  
Th e In ve rte r LED (ye llo w ) in d ic a te s w h e n th e In ve rte r is s w itc h e d O FF.  
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Menu Control switches  
Fo u r p u s h b u tto n s w itc h e s ES C a p e [9 ], DO W N [1 0 ], UP [1 1 ], ENTER [1 2 ], a re lo c a te d  
b e lo w th e LC D d is p la y a n d a re u s e d to n a vig a te a m e n u -d rive n UP S o p e ra tin g a n d  
c o n tro l s ys te m .  
Note: In addition to entering the day-to-day operating functions, the menu system is also used to set-up  
various UPS operating parameters during commissioning. A system of password protection is therefor  
used to limit the control functions accessible to the operator, whilst allowing full access to  
maintenance personnel. A full description of the available menus is provided in the appropriate User  
and Commissioning manuals.  
Note: From the Display panel menu it is possible to select one of the following languages: English,  
French, Italian, Spanish, German, Dutch. The sequence is Default window > FUNCTION > ENTER  
PASSWORD > PANEL SETUP > LANGUAGE  
9 . ES C P re s s in g th e ES C AP E c a n c e ls th e m o s t re c e n t a c tio n s ;  
i.e . w h e n s e le c tin g o p tio n s it re tu rn s th e p rvio u s w in d o w to th e LC D.  
w h e n s e ttin g p a ra m e te rs , it e xits th e w in d o w w ith o u t s a vin g th e n e w s e ttin g s .  
1 0 . MENU Ú Th e DO W N p u s h b u tto n m o ve s a c u rs o r d o w n th e LC D o ve r th e o p tio n s  
o ffe re d o n c e rta in w in d o w s , a n d c h a n g e s th e h ig h lig h te d p a ra m e te r va lu e s in o th e rs .  
1 1 . MENU Ù Th e UP p u s h b u tto n m o ve s a c u rs o r u p th e LC D o ve r th e o p tio n s o ffe re d  
o n c e rta in w in d o w s , a n d m o ve a re c ta n g u la r c u rs o r to th e n e xt d ig it o n th e rig h t w h e n  
c h a n g in g p a ra m e te r va lu e s in o th e rs ;  
1 2 ENTER P re s s in g ENTER, w h e n s e le c tin g o p tio n s , d is p la ys th e n e xt w in d o w ;  
Th e n e xt w in d o w is d e te rm in e d b y th e o p tio n w h ic h h a s b e e n s e le c te d in th e p re s e n t  
w in d o w . W h e n s e le c tin g n e w p a ra m e te rs its s a ve s th e n e w p a ra m e te rs .  
1 3 W a rn in g in d ic a to r - Th e re d LED w ith th e Ala rm S ile n c e s w itc h illu m in a te s w h e n a  
W ARNING a la rm is d is p la ye d o n th e LC D m e s s a g e s c re e n , a n d is n o rm a lly  
a c c o m p a n ie d b y a n a u d ib le a la rm .  
1 4 . Ala rm S ile n c e S w itc h - P re s s in g th e Ala rm S ile n c e s w itc h c a n c e ls th e a u d ib le  
a la rm b u t le a ve s th e w a rn in g m e s s a g e d is p la y u n til th e in a p p ro p ria te c o n d itio n is  
re c tifie d .  
Operator Panel and LCD Display  
1 5 . LC D Dis p la y  
Th e LC D d is p la y is c a p a b le o f s h o w in g fo u r ro w s o f 2 0 c h a ra c te rs : th e to p ro w  
d is p la ys th e UP S w a rn in g a n d a la rm m e s s a g e s a n d th e lo w e r ro w in d ic a te th e  
s e le c te d m e te re d p a ra m e te rs .  
Du rin g n o rm a l o p e ra tio n th e to p lin e o f th e LC D p a n e l s h o w s th e g e n e ra l UP S S ta tu s  
(e .g . NO RMAL O P ERATIO N) a n d th e b o tto m lin e w ill in d ic a te th e c u rre n t tim e a n d d a te  
- th is is kn o w n a s th e De fa u lt S c re e n ’. P re s s in g th e ES C a p e b u tto n [9 ] c h a n g e s th e  
d is p la ye d in fo rm a tio n to in d ic a te th e C o m m u n ic a tio n P o rt s ta tu s (if c o n n e c te d ) a n d  
th e ve rs io n o f th e s o ftw a re fitte d to th e UP S c o n tro l b o a rd s .  
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P re s s in g th e ENTER b u tto n [1 2 ] fro m th e De fa u lt S c re e n g ive s th e o p e ra to r a c c e s s to  
th e Me a s u re m e n ts ’ m e n u w h ic h fa c ilita te s a c c e s s to th e fo llo w in g m e a s u re m e n ts :  
Output Parameters  
- O u tp u t Vo lta g e (L-N)  
- O u tp u t C u rre n t (L-N c u rre n t d is p la ye d in Am p e re s o r a s a % Lo a d )  
- O u tp u t P o w e r (d is p la ye d in kW o r kVA)  
- O u tp u t Fre q u e n c y (o f in ve rte r a n d b yp a s s m a in s )  
Input Parameters  
- In p u t Vo lta g e (L-N fo r Byp a s s in p u t)  
Battery Parameters  
- Ba tte ry Vo lta g e  
- Ba tte ry C u rre n t  
- Ba tte ry C h a rg e (in %)  
Temperature  
- Te m p e ra tu re (°C ) a t c ritic a l p o in ts  
Bargraph Selection  
Th is fo llo w in g fu n c tio n a l a re a s h o w s th e va rio u s UP S lo a d a n d b a tte ry c h a rg in g  
c o n d itio n s .  
1 6 . Lo a d Ba tte ry  
Th e a m b e r le d s itu a te d a t th e b e g in n in g o f th e % Au to n o m y b a rg ra p h illu m in a te s  
w h e n th e b a tte ry vo lta g e h a s d is c h a rg e d to 1 .8 V /c e ll a n d in d ic a te s th a t th e b a tte ry is  
a p p ro a c h in g its lo w vo lta g e c u t-o ff p o in t a n d th e UP S w ill s h o rtly s h u td o w n .  
1 7 . % Ba tte ry s ta te Au to n o m y tim e b a rg ra p h  
W h e n th e b a tte ry is b e in g c h a rg e d (n o rm a l) th e s ix le d s illu m in a te p ro g re s s ive ly to  
in d ic a te th e s ta te o f b a tte ry c h a rg e a s a p e rc e n ta g e o f a c h a rg e . W h e n th e b a tte ry is  
d is c h a rg in g (b a tte ry o n -lo a d ) th e b a rg ra p h fu n c tio n c h a n g e s to p ro vid e a n in d ic a tio n  
o f th e re m a in in g b a tte ry a u to n o m y tim e , e a c h s te p in d ic a te a p p ro xim a te ly 2 m in u te s .  
W ith a fu lly c h a rg e d b a tte ry a ll five LEDs a re illu m in a te d in d ic a tin g g re a te r th a n 1 0  
m in u te s re m a in in g , a s th e a u to n o m y fa lls b e lo w th is tim e th e LEDs w ill e xtin g u is h in  
s te p s s ta rtin g fro m th e rig h t-h a n d e n d .  
1 8 . % Lo a d b a rg ra p h  
Th e s ix le d s illu m in a te p ro g re s s ive ly to in d ic a te th e a p p lie d lo a d a s a p e rc e n ta g e o f  
th e ra te d m a xim u m c u rre n t in c re a s in g in 2 0 % s te p s to 1 0 0 % o f fu ll lo a d w h e n a ll five  
a re illu m in a te d .  
1 9 . O ve rlo a d  
Th e a m b e r LED s itu a te d a t th e e n d o f th e % Lo a d b a rg ra p h illu m in a te s if th e a p p lie d  
lo a d e xc e e d s 1 0 0 % o f m o d u le s ra te d o u tp u t c u rre n t.  
a c c o m p a n ie d b y a n a u d ib le a la rm a a la rm m e s s a g e .  
Th is in d ic a tio n w ill b e  
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............................................  
............................................  
............................................  
............................................  
Emergency  
Stop (EPO)  
............................................  
............................................  
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Fig 4 - 3: EPO on UPS module  
2 0 . Em e rg e n c y S to p  
o p e ra tio n .  
-
h o u s e d b e n e a th  
a
s a fe ty c o ve r to p re ve n t in a d ve rte n t  
W h e n th e e m e rg e n c y s to p s w itc h is p re s s e d it d is a b le s th e s ta tic s w itc h b lo c k e n tire ly  
(s o re m o vin g lo a d p o w e r). It a ls o d is a b le s th e re c tifie r a n d in ve rte r, a n d trip s th e  
b a tte ry c irc u it b re a ke r. Un d e r n o rm a l c irc u m s ta n c e s it d o e s n o t re m o ve UP S in p u t  
p o w e r s in c e th is a p p lie d th ro u g h a m a n u a lly c o n tro lle d e xte rn a l is o la to r; h o w e ve r, if  
th e UP S in p u t s u p p ly is c o n n e c te d via a c irc u it b re a ke r h a vin g a n e le c tric a l trip fa c ility,  
a n o th e r s e c tio n o f e m e rg e n c y p o w e r o ff c a n b e u s e d to d rive th e e xte rn a l c irc u it  
b re a ke rs trip .  
4.1.2  
The Menu Options  
A m a p o f th e ro u te s to th e o p tio n s o ffe re d b y th e m e n u is p ro vid e d in fig u re b e lo w .  
O p tio n s in c lu d e w in d o w s w h ic h s h o w s ta tu s in fo rm a tio n a n d w in d o w s w h ic h p e rm it  
d a ta to b e e n te re d , o r p a ra m e te rs fo r e q u ip m e n t c o n tro l to b e s e t. Th e m e n u m a p  
s h o w s th a t th e ro u te p a s s fro m th e m a in m e n u th ro u g h d iffe re n t in te rm e d ia te  
w in d o w s to re a c h th e o p tio n ta rg e te d . Th e d ia g ra m s h o w s e a c h o f th e w in d o w s in th e  
fo rm a t in w h ic h it a p p e a rs o n th e LC D s c re e n . Th e in itia lizin g , d e fa u lt & m a in m e n u  
w in d o w s a re d e s c rib e d b e lo w .  
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E
NORMAL OPERATION  
or. for  
RECTIF. SWITCH OPEN  
OUTPUT SWITCH OPEN  
INV.: UNSYNCHRONIZED  
MODEM TYPE :  
M-TECH.1932-ZDX  
MODEM STATUS :  
NOT CONNECTED  
SW VERSION  
E
E
PANEL  
UPS LOGIC  
V 02.0  
V 01.0  
instanc  
11:15.50  
01.02.98  
11:15.50  
01.02.98  
e
>MEASUREMENT  
FUNCTION  
MAINTENANCE  
SETUP  
<
>OUTPUT  
INPUT  
BATTERY  
<
>VOLTAGE  
CURRENT  
POWER  
<
OUTPUT :  
VOLTAGE [Vrms]  
[Vrms]  
L-N  
XXX  
TEMPERATURE  
FREQUENCY  
CURRENT:  
[AMPS]  
L-N  
XXXX  
LOAD :  
[%]  
L
XXX  
REAL POWER :  
[KW]  
B
XXX  
APP. POWER  
[KVA]  
L
XXX  
FREQUENCY :  
INVERTER  
BYPASS  
[Hz]  
XX.X  
XX.X  
OUTPUT  
>INPUT  
BATTERY  
TEMPERATURE  
INPUT:  
VOLTAGE  
L-N  
<
<
<
[Vrms]  
XXX  
OUTPUT  
INPUT  
>BATTERY  
TEMPERATURE  
BATTERY:  
VOLTAGE  
CURRENT  
CHARGE  
XXX [V]  
XXXX [A]  
XXX [%]  
OUTPUT  
INPUT  
BATTERY  
>TEMPERATURE  
TEMPERATURE:  
Tc xxx.x  
Ta xxx.x  
To xxx.x  
Tb xxx.x  
WRITE  
MOVE  
SAVE  
EXIT  
FUNCTION  
INPUT PASSWORD  
????????  
PRESS DOWN KEY  
PRESS ENTER KEY  
WRITE  
MOVE  
INPUT PASSWORD  
????????  
SAVE  
EXIT  
MAINTENANCE  
E
PRESS ESCAPE KEY  
WRITE  
MOVE  
SAVE  
EXIT  
SETUP  
INPUT PASSWORD  
????????  
Fig 4 - 4: Map of screen display available to operator  
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LCD Display Panel Messages  
Initializing Window  
Afte r firs t c onne c ting p owe r to the UPS a nd c los ing  
the b yp a s s A.C. inp ut p owe r s witc h, the  
INITIALIZATION m e s s a g e will a p p e a r on the LCD  
s c re e n. It p e rs is ts for a b out five s e c ond s while the  
c ontrol firm wa re is loa d e d a nd the unit p e rform s a  
EMERSON NETWORK POWER  
3PH-1PH  
UPS  
s e lf-te s t.  
It is followe d b y  
a
wind ow s howing  
va rious m e s s a g e s with the tim e a nd d a te on the  
b ottom line .  
RECTIF. SWITCH OPEN  
BATTERY SWITCH OPEN  
OUTPUT SWITCH OPEN  
W he n the p owe r s witc he s a nd b a tte ry c irc uit  
b re a ke r ha ve b e e n c los e d a nd the inve rte r ha s  
s ta b ilize d th e wind ow will c ha ng e to the d e fa ult  
wind ow.  
hh.mm.ss  
dd.mm.yy  
Default Window  
NORMAL OPERATION  
The m e s s a g e s hown b e low, will b e s e e n on the  
d e fa ult wind ow whe ne ve r the UPS is op e ra ting  
norm a lly.  
hh.mm.ss  
dd.mm.yy  
The top line s d is p la y the UPS op e ra tiona l s ta tus  
a nd ind ic a te s a la rm c ond itions whe n the y oc c ur;  
a nd line four norm a lly s hows the tim e a nd d a te .  
M0DEM TYPE  
M-TECH.1932-ZDX  
MODEM STATUS  
NOT CONNECTED  
Info Window  
From De fa ult W ind ow, p re s s ing the ES C ke y,  
inform a tion a b out the m od e m p rog ra m m e d in  
m e m ory a nd its c onne c tion a re s hown on d is p la y.  
Pre s s ing a g a in the ES C ke y, s oftwa re re le a s e a re  
s ho wn, b o th on UPS b oa rd a nd on Pa ne l b oa rd ;  
this fe a ture is us e ful up g ra d ing S W for ne xt  
ve rs ions a nd to know e xa c tly fe a ture s of p re s e nt  
re le a s e .  
Pre s s ing a g a in ES C ke y it g oe s b a c k to De fa ult  
W ind ow.  
Main Menu Window  
The m a in m e nu is s e le c te d from the De fa ult  
W ind ow b y p re s s ing the ENTER ke y:  
The four wind ows a c c e s s e d from the Ma in Me nu  
offe r furthe r op tions , whic h a re d e s c rib e d in the  
re le va nt c ha p te rs of this m a nua l.  
The MEAS UREMENT op tion g ive s a c c e s s to  
wind ows whic h s how the p re s e nt va lue s of  
p a ra m e te rs s uc h a s inp ut & outp ut volta g e s a nd  
c urre nt, loa d , e tc . The s e p a ra m e te rs a re us e ful  
whe n d e te rm ining the s ta te of UPS or the c a us e of  
a la rm s , a nd a re d e s c rib e d in m ore d e ta il b e low.  
>MEASUREMENT  
FUNCTION  
<
MAINTENANCE  
SETUP  
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Th e FUNC TIO N, MAINTENANC E a n d S ETUP o p tio n s a ll re q u ire a p a s s w o rd w h ic h is  
s e t b y th e c o m m is s io n in g e n g in e e r. Th is m a n u a l d o e s n o t p ro vid e s e rvic in g  
in s tru c tio n s a n d th e o p tio n s a c c e s s e d fro m th e s e s w in d o w s a re th e re fo re n o t s h o w n  
o n th e m e n u m a p in fig u re 4 -4 . O n ly tra in e d s e rvic e e n g in e e rs s h o u ld b e a u th o riz e d  
w ith a p a s s w o rd .  
In a n y c a s e FUNC TIO N, MAINTENANC E a n d S ETUP o p tio n s c a n b e re a d b u t is n o t  
p o s s ib le to c h a n g e th e m w ith o u t p a s s w o rd .  
Option Selection Mode  
If a w in d o w fro m w h ic h o p tio n s c a n b e s e le c te d is d is p la ye d , a p a ir o f in d ic a to r a rro w s  
a p p e a r a t th e e xtre m itie s o f th e lin e .  
Th e UP / DO W N p u s h b u tto n s m o ve th e s e u p a n d d o w n th e s c re e n o ve r th e o p tio n s .  
W h e n th e a rro w s p o in t a t a c h o s e n o p tio n , p re s s ENTER to d is p la y th e n e xt w in d o w .  
P re s s ES C to re tu rn th e p re vio u s w in d o w to th e s c re e n .  
Alarm / Warning Messages  
Th e Ala rm a n d W a rn in g m e s s a g e s a re s h o w n o n th e th re e u p p e r lin e s o f th e d is p la y.  
Th e ALARM in d ic a to r (re d ) a n d a u d ib le w a rn in g a c c o m p a n y a ll Ala rm m e s s a g e s .  
Th e re is  
a
d e fa u lt s e le c tio n fo r e ve ry m e s s a g e a n d c o rre s p o n d in g m o d e o f re d  
in d ic a to r (O FF, O N, FLAS HING) a n d b u zze r s o u n d (O FF, O N INTERMITTENT, S INGLE  
S O UND)  
Th e d e fa u lt m o d e c a n b e c h a n g e d a c c o rd in g to p a rtic u la r n e e d s o f th e p la n t, a P C  
a n d c o m m u n ic a tio n p ro g ra m a re n e e d e d .  
Th e Ala rm a n d W a rn in g m e s s a g e s a re d e ta ile d in C h a p te r 7 - Dis p la y P a n e l  
In te rp re ta tio n s o f th is m a n u a l.  
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CHAP TER 5  
O p e r a t in g In s t r u c t io n s  
5.1  
In t r oduct ion  
Th e UP S c a n b e c o n s id e re d to b e in o n e o f th re e o p e ra tin g c o n d itio n s :  
Normal operation  
All re le va n t p o w e r s w itc h e s a n d c irc u it b re a ke rs c lo s e d , th e lo a d is p o w e re d b y th e  
UP S .  
Shutdown  
All p o w e r s w itc h e s a n d c irc u it b re a ke rs o p e n - n o lo a d p o w e r.  
On Static Bypass  
Th e lo a d p o w e r is s u p p lie d th ro u g h th e m a in s s ta tic b yp a s s lin e . Th is m a y b e  
c o n s id e re d a s a n in te rm e d ia te o p e ra tin g c o n d itio n b e in g u tilize d fo r th e p u rp o s e o f  
lo a d tra n s fe rs b e tw e e n in ve rte r a n d m a in te n a n c e b yp a s s o r s u p p ly u n d e r a b n o rm a l  
o p e ra tin g c o n d itio n s .  
ECOMODE  
All th e re le va n t p o w e r s u p p ly s w itc h e s a n d th e b a tte ry s w itc h a re o ff, a n d th e lo a d is  
fe d b y th e Byp a s s Ma in s th ro u g h th e UP S S ta tic Tra n s fe r S w itc h , w h ile th e In ve rte r  
re m a in s o n s ta n d -b y.  
Th is c h a p te r c o n ta in s in s tru c tio n s w h ic h e n a b le yo u to s w itc h b e tw e e n th e th re e  
a b o ve c o n d itio n s , to c a rry o u t a RES ET a fte r a fa u lt tra n s fe r a n d h o w to s w itc h O FF th e  
in ve rte r.  
5.1.1  
General notes  
Note1: All the user controls and indicators mentioned in these procedures are identified in chapter 1.  
Some of diagrams are repeated here to assist in understanding the procedures.  
Note2: The audible alarm may annunciate at various points in these procedures. It can be cancelled  
at any time by pressing the ‘Alarm Reset’ push-button.  
Note3: The Hipulse UPS System incorporates an optional automatic boost charge facility which can  
be used in systems containing conventional flooded lead-acid batteries. If this type of battery  
is used in your installation you may notice that the battery charger voltage may be greater  
than its nominal (432V d.c. for 380V a.c., 446V d.c. for 400V a.c. and 459V d.c. for 415V a.c.  
system) when the mains supply returns from a prolonged outage. This is the normal response  
of the boost charge facility; the charger voltage should return to normal after a few hours.  
5.1.2  
Power Switches  
Th e UP S c a n b e s e p a ra te d b y m e a n s o f p o w e r s w itc h e s , m o u n te d in s id e th e c a b in e t  
a n d a c c e s s ib le a fte r o p e n in g th e fro n t d o o r, w h ic h h a s a ke y.  
Th e lo c a tio n o f th e UP S p o w e r s w itc h e s is s h o w n in Fig u re 5 -1 . Th e U P S m o d u le  
p o w e r s w itc h e s a re :  
o
o
o
Q 1 - In p u t MC C B: c o n n e c ts th e UP S w ith h e m a in s s u p p ly.  
Q 2 - Byp a s s Is o la to r: c o n n e c ts th e UP S w ith th e b yp a s s s u p p ly.  
Q 3  
-
Ma in te n a n c e Byp a s s Is o la to r (P a d lo c ke d ) p e rm its s u p p ly o f th e lo a d  
d ire c tly b y th e b yp a s s lin e fo r m a in te n a n c e o f th e UP S m o d u le .  
The internal maintenance bypass must not be used when the UPS system is comprised of more  
than two UPS modules in parallel.  
o
Q 4 - O u tp u t Is o la to r: c o n n e c ts th e o u tp u t o f th e UP S to th e lo a d .  
Note: The battery interrupter is not expected inside of the UPS and should be installed in the proximity  
of the respective battery bank.  
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5.2  
Pr ocedur e f or UPS St ar t -up: wit h out in t er r upt in g power  
t o t h e l oad  
Th is p ro c e d u re w ill d e s c rib e  
h o w to s ta rt th e UP S a n d th e  
h o w to tra n s fe r th e lo a d fro m  
th e  
e xte rn a l  
m a in te n a n c e  
Maint.  
Bypass  
Q3  
b yp a s s to th e UP S in ve rte r. It is  
a s s u m e d th a t th e in s ta lla tio n is  
c o m p le te , th e s ys te m h a s b e e n  
c o m m is s io n e d b y a u th o rize d  
p e rs o n n e l a n d th e  
p o w e r is o la to rs a re c lo s e d .  
Re fe r to Fig 5 -1 fo r  
e xte rn a l  
Q1  
Q2  
Q4  
c o rre s p o n d in g is o la to rs Q 1 to  
Q 4 , a n d Fig 5 -2 O p e ra to r  
C o n tro l P a n e l fo r va rio u s LEDs  
a n d Dis p la y in d ic a tio n s .  
Input  
Supply  
Bypass  
Isolator  
Output  
Isolator  
Fig 5 - 1: Location of Power Isolators  
6
1
2
DISPLAY  
%
MENU  
3
ESC  
ENTER  
INV  
4
5
7
8
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
Fig 5 - 2: Operator Control Panel  
ENS URE C O RREC T P HAS E RO TATIO N  
1. Clos e Q3 Ma inte na nc e Byp a s s s witc h a nd  
e xte rna l s witc h (ins id e Ma inte na nc e Byp a s s ) to  
lo a d .  
2. Clos e the outp ut p owe r s witc h Q4 a nd the  
Byp a s s p owe r s witc h Q2.  
Initializing Window:  
EMERSON NETWORK POWER  
Afte r firs t c onne c ting p owe r to the UPS a nd c los ing  
the is ola tor, this m e s s a g e will a p p e a r on the LCD  
s c re e n. It p e rs is ts for a b out five s e c ond s while the  
c ontrol firm wa re is loa d e d b y a s c re e n s howing  
va rious m e s s a g e s with the tim e a nd d a te on the  
b ottom line .  
3PH-1PH  
UPS  
The Mod ule Mim ic ind ic a tors Byp a s s s up p ly  
he a lthy (1) a nd a fte r 20 s e c ond s Loa d on Byp a s s  
(6) will fla s h a nd re d le d (13) will illum ina te .  
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Th e Dis p la y w in d o w w ill s h o w th e p re s e n t s ta tu s  
o f th e UP S  
RECTIF. SWITCH OPEN  
BATTERY C.B. OPEN  
MANUAL BYPASS CLOSED  
3. Clos e the Re c tifie r inp ut p owe r s witc h Q1.  
hh.mm.ss  
dd.mm.yy  
Note:  
In ECOMODE the message 'LOAD ON BYPASS' will not  
appear.  
LOAD ON BYPASS  
MANUAL BYPASS CLOSED  
INV. OFF  
4. W a it for 20 s e c ond s the n c los e the b a tte ry c irc uit  
b re a ke r. This is loc a te d ins id e the b a tte ry c a b ine t  
(if us e d ) or is othe rwis e loc a te d a d ja c e nt to the  
b a tte ry ra c ks .  
hh.mm.ss  
dd.mm.yy  
The Mod ule Mim ic ind ic a tor (3) Ba tte ry una va ila b le  
s hould e xting uis h. S e ve ra l LEDs on the Ba tte ry  
s ta te of c ha rg e b a rg ra p h will illum ina te s howing the  
b a tte ry s ta te of c ha rg e .  
The re c tifie r will ‘wa lk-in’ a nd s ta b ilize a t floa t the  
volta g e .  
5. Op e n the Ma inte na nc e Byp a s s p owe r s witc h Q3  
a nd fit loc k.  
The Mod ule m im ic ind ic a tor Loa d on b yp a s s (6)  
will fla s h a m b e r.  
The Dis p la y wind ow will s how the p re s e nt s ta tus of  
the UPS .  
LOAD ON BYPASS  
INV.: OFF  
6. Afte r 5 s e c ond s the Mod ule Mim ic LEDs will  
c ha ng e s o tha t the Loa d on inve rte r (5) will lig ht  
s te a d y g re e n a nd the Loa d on Byp a s s (6) will  
e xting uis h.  
hh.mm.ss  
dd.mm.yy  
Note: In ECOMODE the Load on Mains led (6) stays on  
while the Load on inverter led (5) is off.  
The m e s s a g e s hown b e low, will b e s e e n on the  
De fa ult s c re e n whe ne ve r the UPS is op e ra ting  
norm a lly.  
NORMAL OPERATION  
hh.mm.ss  
dd.mm.yy  
The UPS is operating normally with its  
Inverter supplying the load  
ECOMODE: The following m e s s a g e will a p p e a r in  
the d e fa ult s c re e n whe ne ve r the UPS is op e ra ting  
on ECOMODE. The loa d is s up p lie d b y the Byp a s s  
Ma ins .  
NORMAL OPERATION  
(ECOMODE)  
hh.mm.ss  
dd.mm.yy  
The UPS is operating in ECOMODE with the Bypass  
Mains supplying the load.  
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5.3  
Pr ocedur e f or UPS St ar t up wit h out power in it ial l y  
s uppl ied t o t h e l oad  
Th is p ro c e d u re s h o u ld b e fo llo w e d w h e n tu rn in g o n th e UP S fro m fu lly p o w e re d d o w n  
c o n d itio n i.e . w h e re th e lo a d is n o t b e in g in itia lly s u p p lie d a t a ll. It is a s s u m e d th a t th e  
in s ta lla tio n is c o m p le te , th e s ys te m h a s b e e n c o m m is s io n e d b y a u th o rize d p e rs o n n e l  
a n d th e e xte rn a l p o w e r is o la to rs a re c lo s e d . Re fe r to Fig 5 -1 & 5-2 fo r c o rre s p o n d in g  
is o la to rs Q 1 to Q 4 , a n d O p e ra to r c o n tro l P a n e l re s p e c tive ly.  
1. Op e n the UPS d oors to g a in a c c e s s to the m a in  
p owe r s witc he s .  
2. Clos e the Re c tifie r Powe r S witc h (Q1).  
The Mod ule Mim ic LEDs will ind ic a te inp ut s up p ly  
a .c . p re s e nt (2  
-s te a d y g re e n) a nd  
a fte r  
a p p roxim a te ly 20 s e c ond s the Inve rte r outp ut  
he a lthy (4- s te a d y g re e n) a nd Ba tte ry una va ila b le  
(3) will lig ht a nd a ls o re d le d (13) will illum ina te .  
The Dis p la y s c re e n will s how the following :  
Initializing Window:  
Afte r firs t c onne c ting p owe r to the UPS a nd c los ing  
the Q1 is ola tor, this m e s s a g e will a p p e a r on the  
LCD s c re e n. It p e rs is ts for a b out five s e c ond s  
while the c ontrol firm wa re is loa d e d . It is followe d  
b y a s c re e n s howing va rious m e s s a g e s with the  
tim e a nd d a te on the b ottom line .  
EMERSON NETWORK POWER  
3PH-1PH  
UPS  
BYPASS SWITCH OPEN  
BATTERY C.B. OPEN  
OUTPUT SWITCH OPEN  
Note: If input power is present but the display remains  
blank, then the Micro Controller is not working, please  
contact your dealer for advice.  
hh.mm.ss  
dd.mm.yy  
W ARNING  
The following action will apply power to load the  
equipment - Ensure that it is safe do so  
3. Clos e the UPS outp ut p owe r s witc h Q4.  
The Mod ule Mim ic LEDs will c ha ng e s o tha t the  
Loa d on Inve rte r (5 - s te a d y g re e n) a nd Ba tte ry  
una va ila b le (3) will lig ht a nd a ls o re d le d (13) will  
illum ina te .  
Note: In ECOMODE the Load on Inverter led (5) is off.  
BATTERY C.B. OPEN  
BYPASS SWITCH OPEN  
This d is p la y wind ow will s how:  
hh.mm.ss  
dd.mm.yy  
4. Clos e the Byp a s s inp ut p owe r s witc h Q2.  
Byp a s s inp ut le d (1-s te a d y g re e n) will lig ht, a fte r 20  
s e c ond s the inve rte r s ync hronis e s with the m a ins  
b yp a s s .  
BATTERY C.B. OPEN  
hh.mm.ss  
dd.mm.yy  
5. Be fore c los ing the b a tte ry c irc uit b re a ke r c he c k  
the d .c . b us b a r volta g e . From the a b ove wind ow  
p re s s the ENTER ke y:  
The Ma in Me nu W ind ow will d is p la y:  
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>MEASUREMENT  
FUNCTION  
<
S e le c t MEAS UREMENT a nd p re s s ENTER ke y.  
MAINTENANCE  
SETUP  
OUTPUT  
INPUT  
S e le c t BATTERY a nd d .c . b us b a r volta g e will b e  
d is p la ye d :  
>BATTERY  
TEMPERATURE  
<
If the volta g e ind ic a te d is s a tis fa c tory (432V d .c . for  
380V a .c . s ys te m , 446VV d .c . for 400V a .c . s ys te m  
a nd 459V d .c . for a 415V a .c . s ys te m ) p re s s the  
Es c a p e ke y re p e a te d ly until the d is p la y re turns to  
the orig ina l wind ow.  
BATTERY  
VOLTAGE  
CURRENT  
CHARGE  
446 [V]  
001 [A]  
000 [%]  
6. Ma nua lly c los e the b a tte ry c irc uit b re a ke r. This  
is loc a te d ins id e the b a tte ry c a b ine t (if us e d ) or is  
othe rwis e loc a te d a d ja c e nt to the b a tte ry ra c ks .  
The Mod ule Mim ic ind ic a tor (3) Ba tte ry una va ila b le  
s hould e xting uis h. S e ve ra l LEDs on the Ba tte ry  
s ta te of c ha rg e b a rg ra p h  
(17) will illum ina te  
s howing the b a tte ry s ta te of c ha rg e  
W he n the b a tte ry c irc uit b re a ke r ha s b e e n c los e d  
a nd the inve rte r ha s s ta b ilize d the s c re e n will  
c ha ng e to the d e fa ult wind ow.  
Default window:  
The m e s s a g e s hown b e low, will b e s e e n on the  
d e fa ult s c re e n whe ne ve r the UPS is op e ra ting  
norm a lly:  
NORMAL OPERATION  
hh.mm.ss  
dd.mm.yy  
The top line s d is p la y the UPS op e ra tiona l s ta tus  
a nd ind ic a te s a la rm c ond itions wh e n the y oc c ur;  
a nd line four norm a lly s hows the tim e a nd d a te .  
The UPS is operating normally with its  
Inverter supplying the load.  
ECOMODE:  
The following m e s s a g e will a p p e a r in the d e fa ult  
s c re e n whe ne ve r the UPS is op e ra ting in  
ECOMODE. The loa d is s up p lie d throug h Byp a s s  
Ma ins .  
NORMAL OPERATION  
(ECOMODE)  
hh.mm.ss  
dd.mm.yy  
The UPS is operating in ECOMODE with the Bypass  
Mains supplying the load.  
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5.4  
Pr ocedur e f or Swit ch in g t h e UPS in t o a Main t en an ce  
Bypas s con dit ion f r om n or mal oper at ion  
Th e firs t p a rt o f th is p ro c e d u re d e ta ils h o w to s e le c t th e In ve rte r O FF a n d p o w e r th e  
lo a d fro m th e b yp a s s m a in s via th e S ta tic S w itc h . Th is p ro c e d u re s h o u ld b e fo llo w e d  
to tra n s fe r th e lo a d fro m th e UP S in ve rte r o u tp u t to th e m a in te n a n c e b yp a s s s ys te m .  
Th is m a y b e re q u ire d d u rin g UP S m a in te n a n c e p ro c e d u re s .  
NO RMAL O P ERATIO N:  
Fo llo w th e p ro c e d u re b e lo w to tra n s fe r th e lo a d fro m th e o u tp u t to th e Ma in te n a n c e  
Byp a s s o f UP S .  
EC O MO DE:  
Fo llo w th e p ro c e d u re b e lo w to tra n s fe r th e lo a d fro m th e o u tp u t Ma in te n a n c e Byp a s s  
o f th e UP S .  
C AUTIO N  
The following window alls the operator to select the UPS  
inverter ON or OFF  
Before making this operation, read messages on display to be sure  
that bypass supply is regular and the inverter is synchronous with it,  
not to risk a short interruption in powering the load.  
IF YOUR ARE NOT SURE OF WHAT YOU ARE DOING  
- THEN DO NOT DO IT  
1. Pre s s the INV s witc h on the le ft s id e of the  
op e ra tor c ontrol p a ne l.  
2. Confirm this op e ra tion a s ins truc te d a t the  
d is p la y:  
WARNING! STOP  
INVERTER REQUESTED  
ENTER TO CONTINUE ¿  
ESC TO CANCEL  
Pre s s ENTER for 1 s e c ond to c onfirm INV OFF  
Pre s s ES C fo r 1 s e c o nd .  
3. If ENTER is p re s s e d :  
The Mod ule Mim ic ind ic a tor Loa d on Inve rte r (5)  
will e xting uis h a nd the Loa d on Byp a s s ind ic a tor (6)  
will fla s h a m b e r, a nd a ls o the re d le d (13) will fla s h  
a nd norm a lly will a c c om p a nie d b y a n a ud ib le  
a la rm .  
Pre s s ing the Ala rm S ile nc e S witc h c a nc e ls the  
a ud ib le a la rm b ut le a ve s the wa rning m e s s a g e  
d is p la ye d until the a p p rop ria te c ond ition is re c tifie d .  
4a ) NORMAL OPERATION:  
The UPS inve rte r will not s hut d own a nd the loa d  
will tra ns fe r to the Byp a s s s up p ly.  
The Mo d ule Mim ic ind ic a tor Loa d on Byp a s s (6)  
will fla s h a m b e r a nd the Loa d on Inve rte r (5)  
ind ic a tor will e xting uis h.  
Your load is now powered via the Static Bypass system.  
4 b ) ECOMODE:  
36  
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At this p oint the UPS inve rte r s top s b ut the loa d  
c ontinue s to b e s up p lie d b y the b yp a s s m a ins .  
The Loa d on Ma ins ind ic a tor lig ht (6) on the unit's  
s ynop tic p a ne l fla s he s ye llow, a nd the Loa d on  
Inve rte r ind ic a tor lig ht (5) g oe s off.  
Your load is now powered via the Static Bypass system  
5. Unfa s te n the loc k, re le a s e the inte rna l s a fe ty b a r  
a nd c los e the m a inte na nc e b yp a s s p owe r s witc h  
Q3. Op e n the Re c tifie r inp ut p owe r s witc h Q1, the  
Outp ut p owe r s witc h Q4, the b yp a s s p owe r s witc h  
Q2 a nd the Ba tte ry c irc uit b re a ke r. This is loc a te d  
ins id e the b a tte ry c a b ine t (if us e d ) or is othe rwis e  
loc a te d a d ja c e nt to the b a tte ry ra c ks . The unit will  
p owe r d own b ut the loa d will c ontinue to b e  
s up p lie d b y the m a nua l b yp a s s .  
W ARNING  
Wait 5 minutes for the internal D.C. busbar capacitors  
to discharge.  
W ARNING  
The following points will be live within the UPS:  
- Bypass a.c. input supply terminals.  
- Maintenance Bypass power switch.  
- Static Bypass power switch.  
- UPS output terminals.  
Input and Output terminals remain protected by a  
metallic cover.  
Your load is now powered from the maintenance bypass  
system and the UPS is completely shut down.  
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5.5  
Pr ocedur e f or Swit ch in g t h e UPS ON f r om a Main t en an ce  
Power con dit ion .  
Fo llo w th e p ro c e d u re fo r 'UP S s ta rtu p : w ith o u t in te rru p tin g p o w e r to th e lo a d ' re fe rrin g  
to th e p a ra g ra p h 5 .2 , s ta rt fro m p o in t n u m b e r 2 .  
5.6  
Pr ocedur e f or compl et el y power in g down t h e UPS  
Th is p ro c e d u re s h o u ld b e fo llo w e d to c o m p le te ly p o w e r d o w n th e UP S a n d LO AD. All  
p o w e r s w itc h e s , is o la to rs a n d c irc u it b re a ke rs w ill b e o p e n e d a n d th e re w ill b e n o lo a d  
p o w e r.  
C AUTIO N  
The following procedure will switch off all power to the load  
equipment.  
1. Op e n the Ba tte ry c irc uit b re a ke r a nd the Re c tifie r  
inp ut p owe r s witc h Q1.  
The Mod ule Mim ic ind ic a tor Loa d on Inve rte r (5)  
will e xting uis h a nd the Loa d on Byp a s s ind ic a tor (6)  
will fla s h a m b e r. The Ba tte ry not a va ila b le ind ic a tor  
(3) will lig ht a m b e r a nd the b a tte ry b a rg ra p h LED’s  
will a ll e xting uis h.  
The d is p la y wind ow will s how m e s s a g e s re fle c ting  
LOAD ON BYPASS  
the a c tions ta ke n (i.e . Loa d on Byp a s s ; Ba tte ry  
BATTERY C.B. OPEN  
Bre a ke r op e n ; Re c t. S witc h op e n; e tc ).  
RECTIF. SWITCH OPEN  
hh.mm.ss  
dd.mm.yy  
Note: In ECOMODE the message 'LOAD ON BYPASS'  
will not appear.  
2. Op e n the Outp ut p owe r s witc h Q4 a nd the  
b yp a s s p owe r s witc h Q2.  
All op e ra tor LED ind ic a tions a nd m e s s a g e s will  
e xting uis h a s the m a ins d rive n inte rna l p owe r  
s up p lie s d e c a y.  
3. To c om p le te ly is ola te the UPS from the a .c .  
s up p lie s , the m a in e xte rna l p owe r inp ut is ola tor  
(b oth is ola tors , whe re s e p a ra te s up p lie s a re  
p rovid e d for re c tifie r a nd b yp a s s ) s hould b e  
o p e ne d .  
On the primary input distribution panel, which is often  
located distant from the UPS area, a label should be  
posted advising service personnel that the UPS circuit is  
under maintenance.  
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W ARNING  
Wait 5 minutes for the internal D.C. busbar capacitors  
to discharge.  
The UPS is now completely powered down.  
IMP O RTANT  
The Maintenance Bypass Power switch may be  
operated at any time when the UPS is powered down  
to connect the load to the maintenance bypass supply  
if required.  
The load equipment is not protected from normal  
supply aberrations when operating in the  
maintenance bypass mode.  
5.7  
Pr ocedur e f or car r yin g out a RESET af t er a r ecogn ized  
con t r ol l ed t r an s f er t o bypas s or EPO act ion .  
W h e n th e n e c e s s a ry a c tio n to c o rre c t th e p ro b le m h a s b e e n ta ke n , th is p ro c e d u re  
s h o u ld b e fo llo w e d to re s to re th e UP S b a c k to its n o rm a l o p e ra tin g c o n d itio n fo llo w in g ,  
a c o n tro lle d tra n s fe r to b yp a s s o r w h e n th e Re m o te Em e rg e n c y P o w e r O ff h a s b e e n  
a c tiva te d .  
A re c o g n ize d c o n tro lle d tra n s fe r to b yp a s s is a c tiva te d b y th e fo llo w in g p ro b le m s :  
In ve rte r O ve rte m p e ra tu re , C u t-o ff O ve rlo a d , Ba tte ry O ve r vo lta g e , w h e n c o n fig u re d fo r  
m a n u a l re tu rn fro m b yp a s s o p e ra tio n (o n ly fo r s ys te m te s t).  
EMERGENCY STOP  
Pre s s the ENTER ke y.  
LOAD ON BYPASS  
INV: UNSYNCHRONISED  
Note: In ECOMODE the message 'LOAD ON BYPASS'  
will not appear.  
hh.mm.ss  
dd.mm.yy  
MEASUREMENT  
>FUNCTION  
MAINTENANCE  
SETUP  
S e le c t FUNCTION a nd p re s s ENTER ke y.  
<
W he n the PAS S W ORD ha s b e e n c om p le te d p re s s  
ENTER ke y.  
WRITE  
SAVE  
¿
MOVE  
EXIT ESC  
¯
ENTER PASSWORD  
00000000  
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BATTERY TEST  
GENERATOR  
S e le c t NEXT PAGE a nd p re s s ENTER ke y.  
PANEL SETUP  
>NEXT PAGE  
<
Pre s s the ENTER ke y.  
PROTOCOLS  
ON/OFF UPS CONTROLS  
RELOAD UPS DATA  
>RESET BUFFERS  
<
S e le c t RES ET ALARMS a nd p re s s ENTER ke y.  
RESET ALARM HISTORY  
RESET EVENT HISTORY  
RECTIFIER OFF  
>RESET ALARMS  
<
Re tu rn th e Dis p la y w in d o w to n o rm a l b y re p e a te d ly p re s s in g th e ES C AP E ke y b a c k  
th ro u g h th e va rio u s w in d o w s u n til th e d e fa u lt s c re e n is d is p la ye d .  
Th e s e o p e ra tio n s re s e ts th e lo g ic c irc u itry to e n a b le th e re c tifie r, in ve rte r a n d s ta tic  
s w itc h to o p e ra te n o rm a lly.  
Note: When the remote EPO switch has been activated it is necessary to manually close the battery  
circuit breaker.  
C AUTIO N  
When the EPO system incorporates a trip facility of the external input  
a.c. power supply circuit breaker, the RESET switch would have no  
affect on it. First close the external input a.c. supply circuit breaker,  
the UPS can be started in the normal manner, as the logic circuits will  
automatically reset on return of the power supplies.  
5.8  
Addin g a s in gl e modul e t o an exis t in g s ys t em  
Th is p ro c e d u re s h o u ld b e c a rrie d o u t o n ly b y tra in e d s e rvic e p e rs o n a l.  
40  
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5.9  
Pr ocedur e t o compl et el y s wit ch ON/ OFF t h e UPS at t h e  
UPS Dis pl ay Con t r ol Pan el :  
1. From the De fa ult wind ow, p re s s the ENTER ke y:  
the Ma in Me nu wind ow will d is p la y:  
MEASUREMENT  
>FUNCTION  
MAINTENANCE  
SETUP  
<
2. S e le c t FUNCTION a nd p re s s ENTER ke y:  
Be fore b e ing a llowe d into the FUNCTION wind ows  
you a re re q ue s te d to e nte r a p a s s word . This is  
a c hie ve d b y p re s s ing the UP a rrow ke y re p e a te d ly  
until the firs t d ig it d is p la ys the c ha ra c te r re q uire d ,  
you the n p re s s the DOW N a rrow ke y onc e to m o ve  
on to the s e c ond d ig it. This a c tion is re p e a te d for  
a ll e ig ht d ig its . W he n the PAS S W ORD ha s b e e n  
c om p le te d p re s s the ENTER ke y.  
WRITE  
¯ MOVE  
SAVE  
¿
EXIT ESC  
ENTER PASSWORD  
00000000  
C AUTIO N  
This operation gives the operator access to modify  
UPS's operating mode, it is advised that only trained  
qualified personnel should attempt to do that.  
3. You ha ve now a c c e s s to a ll func tion wind ows .  
BATTERY TEST  
GENERATOR  
Pre s s the DOW N a rrow ke y until the c urs ors ha ve  
s e le c te d NEXT PAGE – p re s s the e nte r ke y.  
PANEL SETUP  
>NEXT PAGE  
<
4. Pre s s the DOW N a rrow ke y until the c urs ors  
ha ve s e le c te d ON/OFF UPS CONTROL.  
MODEM CONNECTION  
>ON/OFF UPS CONTROL <  
RELOAD UPS DATA  
RESET BUFFERS  
Pre s s the e nte r ke y.  
C AUTIO N  
The following window allows the operator to select  
the UPS inverter ON or OFF, select the rectifier ON or  
OFF, select the rectifier to manual or float voltage and  
a switch OFF the line (bypass) voltage to the load.  
>INVERTER OFF  
BYPASS  
<
ON  
ON  
IF YOU ARE NOT SURE WHAT YOU ARE DOING,  
THEN DO NOT DO IT.  
RECTIFIER  
RECTIFIER  
MAN  
ROTATE  
START  
¿
NORMAL OPERATION:  
EXIT ESC  
5a . Ens ure INVERTER is s e le c te d b y the c urs ors  
a nd p re s s the ENTER ke y.  
INVERTER  
ON  
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The OFF s e le c tion will b e hig hlig hte d , us ing the UP  
a rrow ke y, rota te b e twe e n the s e le c tions offe re d (in  
this c a s e it will b e ON or OFF) s e le c t ON. Pre s s the  
ENTER ke y to e xe c ute your ord e r.  
Afte r a p p roxim a te ly 20 s e c ond s , the Mod ule Mim ic  
will c ha ng e s o tha t the Loa d on Inve rte r (5) will lig ht  
s te a d y g re e n a nd the Loa d on Byp a s s (6) will  
e xting uis h.  
6a . Re turn the Dis p la y wind ow to norm a l b y  
re p e a te d ly p re s s ing ES CAPE ke y b a c k throug h the  
va rious wind ows until the d e fa ult s c re e n is  
d is p la ye d .  
The UPS is operating normally with its  
Inverter supplying the load.  
ECOMODE:  
5 b . Ens ure BYPAS S is s e le c te d b y the c urs or a nd  
p re s s the ENTER ke y:  
>INVERTER OFF  
<
BYPASS  
ON  
ON  
The OFF s e le c tion will b e hig hlig hte d , us ing the UP  
a rrow ke y, rota te b e twe e n the s e le c tion offe re d (in  
this c a s e it will b e On or OFF) S e le c t ON. Pre s s the  
ENTER ke y to e xe c ute your ord e r.  
RECTIFIER  
RECTIFIER  
MAN  
ROTATE  
START  
¿
The Mod ule Mim ic LEDs will c ha ng e : Loa d on  
Ma ins (6) will c om e on a nd Loa d on Inve rte r (5) will  
g o out.  
EXIT ESC  
INVERTER  
ON  
6b . Re turn the Dis p la y wind ow to norm a l b y  
re p e a te d ly p re s s ing ES CAPE ke y b a c k throug h the  
va rious wind ows until the d e fa ult s c re e n is  
d is p la ye d .  
The UPS is operating in ECOMODE with  
Bypass Mains supplying the load.  
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5.10 Pr ocedur e t o s wit ch ON/OFF t h e in ver t er at UPS dis pl ay  
con t r ol pan el  
C AUTIO N  
This operation gives the operator access to modify UPS’’s operating  
mode, it is advised that only trained qualified personnel should  
attempt to do that.  
NORMAL OPERATION  
The d is p la y wind ow will s how the p re s e nt s ta tus of  
the UPS for norm a l op e ra tion.  
hh.mm.ss  
dd.mm.yy  
The d is p la y wind ow will s how the following s c re e n  
for the UPS running in ECOMODE.  
NORMAL OPERATION  
(ECOMODE)  
hh.mm.ss  
dd.mm.yy  
1 .Pre s s the INV s witc h on the le ft s id e of the  
op e ra tor c ontrol p a ne l.  
2 .Confirm this op e ra tion a s ins truc te d a t the  
d is p la y:  
WARNING! STOP  
INVERTER REQUESTED  
ENTER TO CONTINUE ¿  
ESC TO CANCEL  
Pre s s ENTER for 1 s e c ond to c onfirm INV OFF  
Pre s s ES CAPE for 1 s e c ond to e xit.  
3 .If ENTER is p re s s e d :  
The Mod ule Mim ic ind ic a tor Loa d on Inve rte r (5)  
will e xting uis h a nd the loa d on b yp a s s ind ic a tor (6)  
will fla s h a m b e r, a nd a ls o the re d le d (13) will lig ht  
a nd norm a lly will b e a c c om p a nie d b y a ud ib le  
a la rm . Pre s s ing the Ala rm S ile nc e S witc h c a nc e ls  
the a ud ib le a la rm . Pre s s ing the Ala rm S ile nc e  
S witc h c a nc e ls the a ud ib le , b ut le a ve s the wa rning  
m e s s a g e d is p la ye d until the a p p rop ria te c ond ition  
is re c tifie d .  
INV OFF VIA DISPLAY  
LOAD ON BYPASS  
hh.mm.ss  
dd.mm.yy  
Note: In ECOMODE the message ‘LOAD ON BYPASS’  
will not appear.  
4 .Pre s s the INV s witc h on the op e ra tor c ontrol  
p a ne l to s ta rt up the INVERTER.  
NORMAL OPERATION  
Afte r 20 s e c ond the Mod ule Mim ic LEDS will  
c ha ng e s o tha t the loc a l or the inve rte r (5) will lig ht  
s te a d y g re e n a nd the loa d on b yp a s s (6) will  
e xting uis h.  
NORMAL OPERATION  
hh.mm.ss  
dd.mm.yy  
Re turn to the norm a l wind ow.  
ECOMODE:  
NORMAL OPERATION  
(ECOMODE)  
The loa d on Mim ic le d (6) s ta ys on while the loa d  
o n inve rte r le d (5) will illum ina te .  
hh.mm.ss  
dd.mm.yy  
ECOMODE: The following m e s s a g e will a p p e a r in  
the d e fa ult s c re e n whe ne ve r the UPS is op e ra ting  
in ECOMODE. The loa d is s up p lie d b y the b yp a s s  
m a ins .  
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5.11 Set t in g t h e Bat t er y Tes t  
A s o ftw a re -c o n tro lle d b a tte ry fa c ility c a n b e in itia te d fro m th e O p e ra to r c o n tro l P a n e l  
o n a n ‘im m e d ia te ’ o r p e rio d ic ’ b a s is . Th is te s t tu rn s o ff th e re c tifie r a n d ru n s th e  
in ve rte r (a n d lo a d ) fro m th e b a tte ry fro m th e p re d e te rm in e d p e rio d . If th e b a tte ry  
vo lta g e fa lls b e lo w a n p re s e t m in im u m le ve l p rio r to th e te rm in a tio n o f th e te s t p e rio d  
a ‘BATTERY TES T FAILED’ a la rm is a n n u n c ia te d a n d th e re c tifie r is im m e d ia te ly tu rn e d  
o n to p re ve n t th e lo a d fro m tra n s fe rrin g to b yp a s s – a n d re c h a rg e th e b a tte ry. Th e s e  
in s tru c tio n s g ive n b e lo w in itia te s a n im m e d ia te b a tte ry te s t.  
Fo r th e fo llo w in g te s t to b e m e a n in g fu l’ a s p a rt o f th e UP S c o m m is s io n in g p ro c e d u re ,  
th e b a tte rie s s h o u ld b e fu lly c h a rg e s p rio r to th e te s t b e in g c a rrie d o u t. Th e UP S  
re c tifie r s e c tio n m u s t b e th e re fo re a llo w e d to b e o p e ra te d w ith th e b a tte ry c o n n e c te d  
fo r s e ve ra l h o u rs to p ro vid e th e b a tte ry w ith a n a d e q u a te in itia l c h a rg e .  
C AUTIO N  
Do not continue with this procedure if the battery is not yet charged.  
1 . From the d e fa ult wind ow p re s s the ENTER ke y: the Ma in Me nu wind ow will d is p la y.  
2 . S e le c t FUNCTION a nd p re s s ENTER ke y.  
3 . W he n the p a s s word ha s b e e n c om p le te d p re s s the ENTER ke y.  
4 . S e le c t the BATTERY TES T a nd p re s s ENTER ke y.  
5 . Ve rify tha t the p a ra m e te rs e nte re d in the b a tte ry te s t s e t up m e nu a re a p p rop ria te . If  
not the n e nte r the c orre c t s e t up p a ra m e te rs (FUNCTION à BATTERY TES T à S ET  
UP)  
6 . Pre s s ES C ke y to re turn to the b a tte ry te s t m e nu s c re e n.  
7 . Us ing the UP’ m e nu b utton, s e le c t ‘YES ’ (Y), the n p re s s e nte r to initia te a n im m e d ia te  
b a tte ry te s t.  
8 . S te p b a c k to d e fa ult s c re e n, b y c ontinuous ly p re s s ing the ES C b utton a nd ve rify tha t  
the m e s s a g e : BATTERY UNDER TES T is d is p la ye d . The g re e n LED b a tte ry b a rg ra p h  
will ind ic a te the re m a ining b a tte ry tim e .  
Note: If the UPS is allowed to run in this condition the battery bargraph LED’s will progressively  
turn off the indicating the remaining autonomy time.  
9. The b a tte ry will b e te s te d for the s e le c te d DURATION’ tim e a fte r whic h the UPS will  
re ve rt to norm a l op e ra tion.  
Note: If the battery fails the test, the rectifier will immediately return to the float mode and the  
‘BATTERY: TEST FAILED’ alarm will be displayed on the default screen.  
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5.12 Lan guage Sel ect ion :  
If re q u ire d , s e le c t th e a p p ro p ria te la n g u a g e u s in g th e fo llo w in g p ro c e d u re .  
MEASUREMENT  
From De fa ult’ wind ow, p re s s ENTER ke y.  
>FUNCTION  
MAINTENANCE  
SETUP  
<
S e le c t the FUNCTION a nd p re s s the e nte r ke y.  
A p a s s word m us t b e e nte re d to g a in  
a
furthe r  
WRITE  
¯ MOVE  
SAVE  
¿
a c c e s s to ne xt m e nu. The initia l d e fa ult p a s s word  
of 00000000’ ne e d not b e c ha ng e d a t this p oint of  
tim e . Pre s s the e nte r ke y.  
EXIT ESC  
ENTER PASSWORD  
00000000  
BATTERY TEST  
GENERATOR  
S e le c t PANEL S ET UP a nd p re s s e nte r ke y.  
>PANEL SETUP  
NEXT PAGE  
<
<
>LANGUAGE  
TYPE 0000  
GROUP 1  
ENG  
S e le c t LANGUAGE a nd p re s s the ENTER ke y.  
MASTER  
UPS 1  
PASSWORD 00000000  
Us e th e UP p u s h b u tto n to ro ta te th ro u g h th e a va ila b le o p tio n s a n d s e le c t th e re q u ire d  
d e fa u lt la n g u a g e .  
S p a n is h .  
Th e o p tio n s a re : En g lis h , Ita lia n , Ge rm a n , Fre n c h  
,
Du tc h  
&
P re s s ENTER to a c c e p t a n d s to re th e la n g u a g e s e le c tio n , th e n s te p b a c k to th e  
d e fa u lt w in d o w b y re p e a te d ly p re s s in g ES C a s re q u ire d ; th e c u rre n t a la rm s s h o u ld  
n o w b e s to re d in th e s e le c te d la n g u a g e .  
Note: Ensure the data entered during the following procedures are r3cordded in the appropriate  
commissioning documentation.  
5.13 Ch an gin g t h e cur r en t Dat e an d Time  
1 . Fro m DEFAULT W INDO W , p re s s in g ENTER ke y, s e le c t MAINTENANC E > >  
ENTER> > P AS S W O RD> > ENTER> > s e le c t a n d e n te r th e lin e s h o w in g th e tim e a n d  
d a te .  
2 . P o s itio n th e c u rs o r o n th e ro w o n w h ic h th e d a te -tim e is d is p la ye d , a n d p re s s  
ENTER.  
3 . Us in g th e 'UP ' a n d 'DO W N' m e n u b u tto n s , e n te r th e c u rre n t tim e a n d d a te  
in fo rm a tio n .  
4 . P re s s ENTER to s a ve th e s e ttin g s , th e n p re s s ES C tw ic e to re tu rn to th e DEFAULT  
W INDO W .  
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C HAP TER 6  
B a t t e r y In s t a lla t io n  
6.1  
In t r oduct ion  
Th e UP S b a tte ry c o n s is ts o f b a tte ry b lo c ks c o n n e c te d in s e rie s to p ro vid e a n o m in a l  
d .c . in p u t vo lta g e fo r th e UP S in ve rte r. Th e re q u ire d Au to n o m y tim e ’ (th e tim e th a t  
b a tte ry c a n m a in ta in s u p p ly to th e lo a d in th e e ve n t o f a m a in s fa ilu re ) is lim ite d b y th e  
a m p e re h o u r s ize o f th e in d ivid u a l b a tte ry b lo c ks a n d in s o m e c a s e s it c o u ld m e a n  
s e ve ra l s trin g s a re c o n n e c te d in p a ra lle l.  
Us u a lly, w ith UP S in s ta lla tio n s in th e p o w e r ra n g e c o ve re d b y th e Hip u ls e ’ e q u ip m e n t,  
th e b a tte rie s a re c o n ta in e d in a p u rp o s e b u ilt b a tte ry c a b in e t w h ic h s its a lo n g s id e th e  
m a in UP S a n d th e Ba tte ry C irc u it Bre a ke r C o n tro lle r Bo a rd ( fo r a ll s ize s ).  
Th e b a tte ry c a b in e t c a n b e in s ta lle d in o n e o f th e fo llo w in g fo rm s :  
C o m p le te in s ta lla tio n c o m p ris in g th e b a tte ry c a b in e t, b a tte rie s a n d th e c irc u it b re a ke r.  
Ba tte ry c a b in e ts a n d b a tte ry c irc u it b re a ke r - w ith n o b a tte rie s .  
Ba tte ry c a b in e t o n ly – w ith n o b a tte rie s o r c irc u it b re a ke r.  
It is p o s s ib le to in s ta ll b a tte rie s o f va rio u s typ e s a n d c a p a c ity in th e c a b in e t to o b ta in  
h e re q u ire d a u to n o m y c h a ra c te ris tic s .  
It m u s t b e p o s s ib le to d is c o n n e c t th e b a tte ry fro m th e UP S m o d u le w h e n u n d e rta kin g  
m a in te n a n c e o r s e rvic e p ro c e d u re s . Th is is fa c ilita te d b y m e a n s o f a s u ita b ly ra te d  
c irc u it b re a ke r w h ic h m u s t b e lo c a te d a s c lo s e a s p o s s ib le to th e b a tte ry te rm in a ls ,  
a n d th e p o w e r a n d c o n tro l c a b le s c o n n e c te d to th e UP S u s in g th e m o s t d ire c t ro u te  
p o s s ib le . Th e c irc u it b re a ke r c a n b e s w itc h e d o ff m a n u a lly O N o r O FF, b u t s h o u ld a ls o  
c o n ta in a n u n d e r vo lta g e re le a s e m e c h a n is m (to b e e n e rg ize d b y th e UP S c o n tro l  
e le c tro n ic s ) a n d  
a
m a g n e tic trip fa c ility fo r o ve rlo a d p ro te c tio n w h ic h is u s e d in  
c o n ju n c tio n w ith b a tte ry c irc u it b re a ke r c o n tro lle r m o d u le .  
If m u ltip le s e ts o f b a tte rie s c o n n e c te d in p a ra lle l a re u s e d to in c re a s e b a tte ry  
a u to n o m y, th e e xte n s io n m u s t b e fitte d w ith a s e c tio n in g d e vic e to p e rm it w o rk to b e  
p e rfo rm e d o n o n e s e t o f b a tte rie s w ile th e o th e rs re m a in in s e rvic e .  
Fo r e xte rn a l b a tte ry a s s e m b ly, a c u s to m ize d Ba tte ry C irc u it Bre a ke r (th e fe a tu re s o f  
w h ic h d e p e n d o n th e s iz e s o f th e UP S ) in c lu d in g a Ba tte ry C irc u it C o n tro lle r Bo a rd  
(th e s a m e fo r a ll s ize s ) c a n b e p ro vid e d . Th is b o x is d e s ig n e d to b e e ith e r w a ll  
m o u n te d o r a s s e m b le d o n a fra m e , a n d is c o n n e c te d b e tw e e n th e UP S a n d th e  
b a tte ry. Re fe r to s e c tio n 6 .9 fo r m o re in fo rm a tio n .  
A c o m m o n b a tte ry c irc u it b re a ke r is a va ila b le fo r s ys te m s in c o rp o ra tin g tw o p a ra lle l  
UP S w ith a c o m m o n b a tte ry. It c o m p ris e s tw o s w itc h e s , w h ic h m a y b e u s e d to  
s e c tio n o n e UP S w h ile th e o th e r re m a in s a c tive . Re fe r to s e c tio n 8 .3 fo r m o re  
in fo rm a tio n .  
6.2  
Saf et y  
S p e c ia l c a re s h o u ld b e ta ke n w h ile w o rkin g o n b a tte rie s a s s o c ia te d w ith Hi-p u ls e UP S  
s ys te m e q u ip m e n t. W h e n a ll th e c e lls a re c o n n e c te d to g e th e r, th e b a tte ry te rm in a l  
vo lta g e w ill e xc e e d 4 0 0 V DC a n d is p o te n tia lly le th a l. A p rim a ry s a fe ty c o n s id e ra tio n  
is to p h ys ic a lly is o la te th e b a tte ry in s ta lla tio n fro m a ll b u t a p p ro p ria te ly q u a lifie d  
m a in te n a n c e p e rs o n n e l, w h ic h is b e s t a c h ie ve d b y lo c a tin g in a ke y lo c a ta b le c a b in e t  
o r a p u rp o s e d e s ig n e d , d e d ic a te d b a tte ry ro o m .  
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Th e fo llo w in g g e n e ra l b a tte ry s a fe ty p re c a u tio n s a n d W ARINGS s h o u ld b e o b s e rve d a ll  
th e tim e .  
C AUTIO N  
·
·
A battery can present risk of electric shock or burn from high short  
circuit currents.  
When connected in a string the voltage could be 460 V d.c. this  
voltage is potentially lethal always observe high voltage  
precautions.  
·
·
Only qualified personnel should install or service batteries.  
Eye protection should be worked to prevent from accidental  
electrical arcs.  
·
·
·
Only use tools with insulated handles.  
Wear rubber gloves and a rubber apron when handling batteries.  
If a battery leaks electrolyte, or is otherwise physically damaged, it  
should be placed in a container resistant to sulphuric acid and  
disposed of in accordance with legal regulations.  
If electrolyte comes into contact with the skin the affected area  
should be washed with plenty of clean water immediately.  
Batteries must be always disposed of according to local  
environmental laws.  
·
·
6.3 UPS Bat t er ies  
It is c o m m o n p ra c tic e in UP S in s ta lla tio n s to u s e va lve -re g u la te d c e lls . Th e te rm  
va lve re g u la te d ’ is u s e d c u rre n tly in p la c e o f e ith e r s e a le d ’ o r m a in te n a n c e fre e b o th  
o f w h ic h h a ve b e e n u s e d in th e p a s t.  
Va lve re g u la te d c e lls a re n o t ‘s e a le d ’ a n d w ill ve n t, p a rtic u la rly o n o ve rc h a rg e . Th e  
a m o u n t o f g a s g ive n o ff is le s s th a n fo r a flo o d e d c e ll b u t w h e n c o n s id e rin g th e d e s ig n  
o f th e b a tte ry in s ta lla tio n a llo w a n c e s m u s t b e m a d e fo r a d e q u a te ve n tila tio n a n d  
h e a tin g o f th e c e lls . Bo o s t c h a rg in g m u s t n o t b e a p p lie d to va lve re g u la te d c e lls , a s  
th is w ill c a u s e th e m to o ve rc h a rg e a n d s u b s e q u e n tly ve n t.  
S im ila rly, va lve re g u la te d c e lls c a n n o t b e re g a rd e d a s m a in te n a n c e fre e ’ a s th e y  
m u s t b e ke p t c le a n a n d th e ir c o n n e c tio n s c h e c ke d p e rio d ic a lly fo r tig h tn e s s a n d la c k  
o f c o rro s io n . It is n o t p o s s ib le to c h e c k th e c e lls ’ s p e c ific g ra vity d ire c tly b u t th e  
b a tte ry c a n b e c h e c ke d b y th e C S P G b a tte ry s e rvic e p ro g ra m m e , w h ic h c a n g ive a n  
in d ic a tio n o f fa u lty c e ll d e g ra d a tio n w ith in th e b a tte ry.  
Ba tte rie s a re fu lly c h a rg e d b e fo re d e live ry, h o w e ve r, s to ra g e a n d tra n s p o rta tio n tim e s  
m e a n th a t, in e vita b ly, s o m e c h a rg e is lo s t b y th e tim e th e b a tte ry is c o m m is s io n e d .  
All th e c e lls fo rm in g th e b a tte ry s h o u ld b e b ro u g h t to th e s a m e s ta te o f c h a rg e a n d  
re c h a rg e d w ith in 6 m o n th s o f th e fa c to ry c h a rg e .  
It is e s p e c ia lly im p o rta n t th a t th e b a tte ry is fu lly c h a rg e d b e fo re a tte m p tin g a w itn e s s  
te s t o f th e a u to n o m y tim e . Th is m a y re q u ire s e ve ra l d a ys to c o m p le te ; th e re fo re , a n y  
w itn e s s te s t c o n c e rn in g th e b a tte rie s s h o u ld ta ke p la c e o n ly a fte r th e b a tte ry h a s  
b e e n o n u n in te rru p te d flo a t c h a rg e fo r a t le a s t o n e w e e k.  
C e ll p e rfo rm a n c e typ ic a lly im p ro ve s a fte r a fe w w e e ks in s e rvic e o r a fte r tw o o r th re e  
d is c h a rg e / re c h a rg e c yc le s .  
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6.4  
In s t al l at ion des ign con s ider at ion s  
Note: Full safety instructions concerning the use and maintenance of UPS batteries are provided in  
the appropriate battery manufacturers’ manuals. The battery safety information contained in this  
section relates to the key considerations, which must be taken into account during the installation  
design process and might affect the design outcome depending on localized conditions.  
6.5  
Bat t er y in s t al l at ion an d main t en an ce  
6.5.1  
Temperature considerations  
Ba tte ry p e rfo rm a n c e d e p e n d s o n th e a m b ie n t b a tte ry te m p e ra tu re . C a p a c ity a n d  
a u to n o m y a re q u o te d fo r a n e w b a tte ry o p e ra tin g a t 2 0 o C . Ba tte ry c a p a c ity is  
in c re a s e d b y 1 % fo r e ve ry 1 o C in c re a s e in te m p e ra tu re u p to 2 5 o C . If a b a tte ry is  
u s e d a t a te m p e ra tu re a b o ve 2 5 o C , its life is re d u c e d ; c o n s e q u e n tly, its c a p a c ity a n d  
UP S a u to n o m y tim e w ill re d u c e m o re ra p id ly o ve r a p e rio d o f tim e . O p e ra tin g b e lo w  
2 0 o C w ill re d u c e th e b a tte ry c a p a c ity b y a p p ro xim a te ly 1 % -1 .5 % p e r 1 o C . Fo r  
e xa m p le if a b a tte ry d is c h a rg e te s t is a tte m p te d d u rin g th e m id d le o f w in te r w h e n th e  
a m b ie n t te m p e ra tu re is 5o C th e b a tte ry c a p a c ity w ill b e o n ly 7 7 .5 % o f its d e s ig n va lu e  
a n d w ill n o t s a tis fy its s p e c ifie d a u to n o m y tim e .  
Am b ie n t te m p e ra tu re , ve n tila tio n , s p a c in g , flo a t vo lta g e a n d rip p le c u rre n t a ll a ffe c t  
th e b a tte ry te m p e ra tu re . Un e ve n te m p e ra tu re d is trib u tio n th ro u g h th e b a tte ry s trin g  
w ill c a u s e th e vo lta g e d is trib u tio n to b e u n e ve n w h ic h c a n a ls o le a d to p ro b le m s - it is  
th e re fo re ve ry im p o rta n t to m a in ta in a n e ve n te m p e ra tu re a c ro s s th e w h o le b a tte ry  
c h a in . ‘Va lve re g u la te d ’ c e lls a re ve ry s e n s itive to te m p e ra tu re a n d s h o u ld b e  
o p e ra te d a t a te m p e ra tu re b e tw e e n 1 5 o C a n d 2 5 o C . To h e lp s u s ta in th is o p e ra tin g  
te m p e ra tu re ra n g e th e b a tte ry is n o rm a lly flo a t c h a rg e d a t 2 .2 5 V/c e ll. W h e n b a tte rie s  
a re c a b in e t m o u n te d a d ja c e n t to th e UP S m o d u le , it is th e b a tte ry w h ic h d ic ta te s th e  
d e s ig n e d m a xim u m a m b ie n t te m p e ra tu re , n o t th e UP S .– i.e . in th e c a s e o f va lve  
re g u la te d ’ c e lls th e a m b ie n t re g u la te d c e lls th e a m b ie n t ro o m te m p e ra tu re s h o u ld b e  
ke p t b e tw e e n 1 5 o C a n d 2 5 o C , a n d n o t b e tw e e n 0 o C a n d 4 0 o C (w h ic h is th e s p e c ifie d  
m a in e q u ip m e n t o p e ra tin g te m p e ra tu re ra n g e )  
Te m p e ra tu re e xc u rs io n s a re  
p e rm is s ib le fo r s h o rt p e rio d s o f tim e p ro vid e d th e a m b ie n t te m p e ra tu re d o e s n o t  
e xc e e d 2 5 o C .  
6.5.2  
Battery population  
Th e n o m in a l DC b u s vo lta g e , a n d th e re fo re b a tte ry flo a t vo lta g e , is s e t a c c o rd in g to  
th e m o d u le ’s ra te d in p u t/o u tp u t vo lta g e a n d u s u a lly s e t to p 4 3 2 Vd c (3 8 0 Va c ) 4 4 6 Vd c  
(4 4 0 Va c ) o r 4 5 9 Vd c (4 1 5 Va c ). Give n th a t th e d e s ire d c e ll flo a t vo lta g e is 2 .2 5 V, th is  
m e a n s th a t a d iffe re n t n u m b e r o f c e lls a re re q u ire d in e a c h c a s e . (S e e Ta b le 6 -1 ).  
Parameter  
Number of cells used (Standard)  
End-of-discharge voltage  
Float voltage  
380V  
192  
320  
400V  
198  
330  
415V  
204  
340  
432  
446  
459  
Table 6-1 – Battery population  
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6.6  
Bat t er y pr ot ect ion  
Th e b a tte ry is c o n n e c te d to th e UP S th ro u g h a c irc u it b re a ke r w h ic h is m a n u a lly  
c lo s e d a n d e le c tro n ic a lly trip p e d via th e UP S c o n tro l c irc u itry. If th e c e lls a re c a b in e t  
m o u n te d th is c irc u it b re a ke r is fitte d w ith in th e c a b in e t, h o w e ve r, if th e y a re ra c k  
m o u n te d (o r lo c a te d re m o te fro m th e m a in UP S c a b in e t) th e n th e b a tte ry c irc u it  
b re a ke r m u s t b e m o u n te d a s n e a r a s p o s s ib le to th e b a tte rie s th e m s e lve s , a n d th e  
p o w e r a n d c o n tro l c a b le s c o n n e c te d to th e UP S u s in g th e m o s t d ire c t ro u te p o s s ib le .  
Th e UP S e le c tro n ic c irc u itry w ill trip th e c irc u it b re a ke r if a n y o f th e fo llo w in g c o n d itio n s  
o c c u r:-  
1 . If th e d .c . b u s b a r d ro p s b e lo w 3 3 0 Vd .c . (th is w o u ld n o rm a lly o c c u r d u rin g  
m a in s fa ilu re w h e n th e b a tte ry a u to n o m y tim e h a s b e e n e xc e e d e d .  
a
2 . If th e re is a re c tifie r p ro b le m a n d th e d .c . b u s ris e s a b o ve (2 .4 5 V/c e ll e xc e e d e d  
o n th e b a tte ry).  
3 . If th e e m e rg e n c y s to p is o p e ra te d .  
To a c h ie ve th e re q u ire d a u to n o m y tim e , it m a y b e n e c e s s a ry to p a ra lle l th e b a tte ry  
s trin g s . In w h ic h c a s e , th e b a tte ry c irc u it b re a ke r s h o u ld b e p la c e d d o w n s tre a m o f a ll  
p a ra lle l b a tte ry s trin g s .  
Note: All equipment servicing procedures should be carried out by trained personnel only.  
6.7  
Bat t e r y Racks  
6.7.1  
Introduction  
Th e s e a re c u s to m b u ild fa b ric a te d ra c ks fo r ke e p in g th e b a tte rie s . Th e s e a re s im ila r  
in c o n s tru c tio n to Ba tte ry c a b in e ts e xc e p t fo r th e e xte rn a l c o ve rs . Th e re a re n o  
c o ve rs a n d b a tte rie s a re a llo w e d to c o o l n a tu ra lly.  
6.7.2  
Fitting the Batteries  
1 . In g e n e ra l, a m in im u m s p a c e o f 1 0 m m m u s t b e le ft o n a ll ve rtic a l s id e s o f th e  
b a tte ry b lo c k to p e rm it fre e a ir m o ve m e n t a ro u n d c e lls .  
2 . C le a ra n c e s h o u ld b e a llo w e d b e tw e e n th e to p o f th e c e lls a n d th e u n d e rs id e o f th e  
s h e lf a b o ve (th is is n e c e s s a ry fo r m o n ito rin g a n d s e rvic in g c e lls .  
3 . W h e n in s ta llin g th e b a tte rie s , p le a s e a lw a ys w o rk fro m th e b o tto m s h e lf u p w a rd s to  
p re ve n t ra in in g th e c e n te r o f g ra vity.  
6.7.3  
Connecting the Battery  
1 . All th e c a b in e ts / ra c ks m u s t b e e a rth e d a n d b o n d e d to g e th e r.  
2 . W h e n th e c a b in e t/ ra c k is in s ta lle d o n a ra is e d flo o r, th e b a tte ry p o w e r c a b le s a n d  
c irc u it b re a ke r c o n tro l c a b le s c a n b e ro u te d to th e UP S c a b in e t via th e flo o r o f th e  
c a b in e ts . If th e c a b in e ts a re lo c a te d a d ja c e n t to e a c h o th e r lo c a te d o n a s o lid flo o r  
th e s e c a b le s c a n b e p a s s e d b e tw e e n th e c a b in e ts via th e liftin g a p e rtu re s lo c a te d  
in th e lo w e r s id e s o f th e c a b in e ts  
3 . In g e n e ra l, it is re c o m m e n d e d th a t th e in te r-c o n n e c tin g c a b le s a re fitte d to th e  
b a tte rie s w ith in th e ir p a rtic u la r le ve l b e fo re fittin g th e in te r-le ve l c o n n e c tin g c a b le s ,  
fo llo w e d fin a lly b y th e c a b le s to th e c irc u it b re a ke rs .  
4 . An in s u la tin g s h ro u d s h o u ld b e fitte d c a b le s , fo llo w e d fin a lly b y th e c a b le s to th e  
c irc u it-b re a ke r.  
5 . W h e n c o n n e c tin g th e c a b le s b e tw e e n th e b a tte ry e xtre m itie s to th e c irc u it b re a ke r  
a lw a ys c o n n e c t th e c irc u it b re a ke r e n d o f th e c a b le firs t .  
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The b a tte ry c a b ine t a ls o ind ic a te s the p owe r a nd a uxilia ry c onne c tion c a b le s (3 m e te rs in  
le ng th) b e twe e n the c a b ine t a nd the UPS . Re fe r to s e c tion 3.3.1 to id e ntify c onne c tions .  
BATTERY SUPPLY  
TO UPS CABINET  
Figure 6-1: A typical arrangement of Batteries in a Battery Rack  
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6.8  
Bat t er y In s t al l at ion  
W h a te ve r th e typ e o f m o u n tin g s ys te m s e le c te d , fo llo w in g c o n d itio n s s h o u ld b e n o te d :  
Layout of the cells:  
W h a te ve r b a tte ry m o u n tin g s ys te m is u s e d , th e b a tte rie s s h o u ld b e la id o u t in s u c h a  
m a n n e r a s to m a ke s im u lta n e o u s c o n ta c t w ith tw o e xp o s e d live p a rts h a vin g  
a
p o te n tia l g re a te r th a n 1 5 0 V im p o s s ib le . W h e re th is is n o t p o s s ib le , in s u la te d te rm in a l  
s h ie ld s m u s t b e in s ta lle d a n d in s u la te d c a b le m u s t b e u s e d fo r c o n n e c tio n .  
Service platform:  
Th e s e rvic e p la tfo rm (o r d u c kb o a rd ) m u s t b e s lip -p ro o f, in s u la te d fro m th e flo o r a n d  
b e a t le a s t o n e m e te r w id e .  
Connections:  
All c o n n e c tio n s m u s t b e a s s h o rt a s p o s s ib le .  
Battery Protection Circuit Breaker:  
A b a tte ry c irc u it b re a ke r is g e n e ra lly in s ta lle d in a n e n c lo s u re o f th e w a ll c lo s e to th e  
b a tte ry in s ta lla tio n . Th e c o n n e c tio n o f th e c irc u it b re a ke r b o x a va ila b le fo r th e Hi-  
p u ls e is d e s c rib e d in th e fo llo w in g p a ra g ra p h .  
6.9  
Bat t er y cir cuit br eaker :  
Th e Ba tte ry c irc u it b re a ke r is fitte d in s id e th e In p u t Tra n s fo rm e r c u b ic a l a lo n g w ith its  
c o n tro l b o a rd a n d is u s e d to c o n n e c t th e b a tte ry to th e UP S in in s ta lla tio n s w h e re th e  
b a tte rie s a re n o t c o n ta in e d in th e s ta n d a rd b a tte ry c a b in e t.  
Us u a lly th e b re a ke r is fitte d a s c lo s e a s p o s s ib le to th e b a tte rie s . Fig u re 6 -3 s h o w s  
d e ta ils o f th e p o w e r a n d c o n tro l c a b le c o n n e c tio n s b e tw e e n th e c irc u it b re a ke r o r  
b a tte ry c a b in e t a n d th e UP S its e lf. Tw o m e th o d s o f c o n n e c tin g th e th re e p o le b a tte ry  
c irc u it b re a ke r a re illu s tra te d in fig u re 6-2 . Me th o d A s h o w s th e s p a re p o le b e in g u s e d  
to d ivid e th e b a tte ry b a n k in h a lf, th e re b y re d u c in g th e b a tte ry to ta l vo lta g e to h a lf  
w h e n th e c irc u it b re a ke r is o p e n d u rin g s e rvic in g e tc . Me th o d B c o n n e c ts th e s p a re  
p o le in s e rie s w ith th e p o s itive c o n n e c tio n , th e re b y p ro vid in g tw o s e ts o f c o n ta c ts in  
th e p o s itive lin e a s a n a d d e d s a fe ty p re c a u tio n .  
W h e n in s ta llin g  
th e  
b a tte ry  
c a b in e t re m o ve th e b a tte ry fu s e  
In th e UP S b e fo re m a kin g th e  
b a tte ry c irc u it b re a ke r p o w e r  
c o n n e c tio n s .  
+
+
+
+
96 Cells  
96 Cells  
+
+
+
+
96 Cells  
96 Cells  
A - Half potential switching method  
B - Double positive pole method  
Figure 6-2: Battery C/B layout of switching poles  
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A
Sensor  
Temperature  
(Optional)  
3
2
1
X3  
X4  
X5  
X6  
X7  
X8  
X9  
V<  
X2  
X10  
+
BATTERY  
CIRCUIT  
BREAKER  
1
2 3 4 5  
X1  
UPS CABINET  
X4  
1
2
3
4
5
6
Battery C.B.  
Controller  
7
8
9
10  
11  
12  
13  
14  
15  
16  
17  
+
B
Sensor  
Temperature  
(Optional)  
3
2
1
X3  
X4  
X5  
X6  
X7  
X8  
X9  
V<  
X2  
X10  
+
BATTERY  
CIRCUIT  
BREAKER  
1
2 3 4 5  
X1  
UPS CABINET  
X4  
1
2
3
4
5
6
Battery C.B.  
Controller  
7
8
9
10  
11  
12  
13  
14  
15  
16  
17  
+
Figure 6-3: Battery Control and Power Connections  
A – Half potential switching method  
B – Double positive pole method  
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6.10 Bat t er y t emper at ur e Boar d  
A
b a tte ry / s e n s o r c a rd s u p p lie d s e p a ra te ly fro m th e b a tte ry c irc u it b re a ke r is  
c o n n e c te d w ith th e UP S lo g ic th ro u g h th e b a tte ry c irc u it b re a ke r c a rd .  
W ith th is fe a tu re fitte d , th e n o m in a l flo a t vo lta g e s u p p lie d to th e b a tte ry is a d ju s te d s o  
a s to b e in ve rs e ly p ro p o rtio n a l to th e a m b ie n t b a tte ry c a b in e t /ro o m te m p e ra tu re .  
Th is p re ve n ts th e b a tte ry b e in g o ve r c h a rg e d a t h ig h a m b ie n t.  
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CHAP TER 7  
D is p la y P a n e l In t e r p r e t a t io n  
7.1  
LED In t er pr et at ion :  
Th e LED ite m n u m b e r re fe rs to d e ta ils s h o w n in th e fig u re 7 .1 b e lo w .  
6
1
DISPLAY  
2
%
MENU  
3
ESC  
ENTER  
INV  
4
5
7
8
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
Fig 7-1: Single module operator control panel  
LED N0.  
NORMAL INTERPRETATION – ACTION  
STATE  
1.  
ON  
If this green led is OFF, it signifies a problem with the Bypass input a.c.  
Check the following –  
1. Bypass input power switch Q2 is closed.  
2. Input Supply voltage is within 10% of nominal  
3. Power supply fuses are OK on the a.c. Power supply board will extinguish if either fuse is  
ruptured.  
If the above checks prove unsatisfactory then seek qualified assistance.  
If this led is OFF, a problem exists in the Input power supply or in a part of the rectifier. An alarm message  
is visible at the display.  
2.  
ON  
Check the following –  
1. The rectifier input isolator (Q1) is closed.  
2. The input voltage is within the limits of normal operation.  
3. The phase sequence of the mains input is correct.  
4. Verify that condition leading to an emergency stop has not happened, in which case a Reset  
must be carried out.  
If these checks do not give a positive result, request qualified assistance.  
If this yellow led is ON it signifies that the battery is not available. This could be due to the battery circuit  
breaker being open or that the d.c. busbar voltage is below the figures stated in the item(2) specified  
above.  
3.  
OFF  
The battery circuit breaker will open automatically if the d.c. voltage falls below these levels.  
Check the following –  
1. Check that the conditions for led(2) are satisfied.  
2. DC busbar voltage – if not above 320V, then carry out checks as for led(2) – mains rectifier  
failure above. If d.c. busbar voltage is above 320V but you are unable to close the battery  
circuit breaker then seek qualified assistance.  
3. Battery circuit breaker is closed.  
If the above checks prove unsatisfactory, then seek qualified assistance.  
4.  
ON  
If this green led is OFF, it signifies that the inverter is not producing its correct output voltage.  
Check the following –  
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1. If [OVERTEMPERATURE] or [OVERLOAD] alarm messages are active then (after allowing the  
UPS to cool / checking that the load current on the Bypass line is not excessive) use the  
procedure to carry out the reset (see Chapter 5 – Operating Instructions).  
2. Check that the conditions for led(2) are satisfied.  
3. Check that the Inverter led(8)- yellow – is OFF, otherwise follow Inverter switch ON procedure.  
4. Check that no conditions exist which will prevent switching the INV ON (e.g. PC command).  
5. Verify that condition leading to an emergency stop has not happened, in which case a Reset  
must be carried out.  
5.  
ON  
If this green led is OFF, then it signifies that the load has been transferred to the Static bypass supply. If  
this is an automatic change over it will be accompanied by a fault warning on the display panel. Take the  
appropriate actions for the display indication (see Display alarm message table 7-2).  
This led is mutually exclusive to led(5). If this amber led is ON, the load has been transferred to the  
Bypass mains supply. Verify the cause by following the alarm indications at the LCD display panel. If the  
above checks prove unsatisfactory then seek qualified assistance.  
This red led will flash ON and OFF and indicates that the UPS has detected fault, it will be accompanied by  
a message on the display panel, take the required actions for the display panel message (see Display  
alarm message table 7-2). This will be accompanied by an audible warning. Pressing the Alarm silence  
switch (14) stops the audible alarm, but leaves the warning message displayed until the appropriate  
condition is rectified.  
6.  
OFF  
OFF  
13.  
16.  
17.  
OFF  
N/A  
If this yellow led is ON it signifies that the battery voltage is low and that the end of battery discharge is  
near. This will be accompanied by audible warning.  
This is a bargraph indicating the battery charge state and would normally have four or five of the leds ON.  
When the unit runs on battery, this bargraph changes to give an indication of the time remaining on the  
battery.  
18.  
19.  
N/A  
OFF  
This is a bargraph indicating the % of the total load that is being applied to the system.  
If this yellow led is ON it signifies that the applied load has exceeded the maximum. It will be  
accompanied by all five load bargraph leds being ON (item 18), the Alarm warning indication flashing RED  
(item 13) and an OVERLOAD messages on the visual display. This will be accompanied by an audible  
warning. Reduce the load immediately.  
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7.2  
Dis pl ay Pan el Mes s ages  
Th e m e s s a g e d is p la ye d o n Hip u ls e c a n b e c a te g o rize d in to typ e s :-  
(a ) ALARM m e s s a g e s - th e s e a re m e s s a g e s w h ic h n e e d e d u rg e n t a tte n tio n a n d w a rn  
o f a UP S s h u td o w n o r im m in e n t s h u td o w n th e lo a d w o u ld n o rm a lly tra n s fe r to th e  
b yp a s s s u p p ly if it is a va ila b le . All a la rm m e s s a g e s a re a c c o m p a n ie d b y a n a u d ib le  
w a rn in g .  
(b ) W ARNING m e s s a g e s - th e s e a re th e m e s s a g e s g e n e ra te d to w a rn o r c o n firm to  
th e o p e ra to r o f a c tio n ta ke n (i.e . if th e re c tifie r a .c . in p u t s u p p ly p o w e r s w itc h w a s  
o p e n e d th e W a rn in g m e s s a g e w o u ld re a d REC TIF. S W ITC H O P EN).  
Th e fo llo w in g ta b le lis ts th e va rio u s m e s s a g e s d is p la ye d o n th e o p e ra to r p a n e l  
to g e th e r w ith a d e s c rip tio n o f th e ir in te rp re ta tio n .  
Sr. No. Display Message Alarm  
Interpretation  
1.  
EMERGENCY STOP  
This alarm indicates that the UPS was shut down by means of the  
local or remote (if fitted) Emergency Power Off push button (EPO)  
which is normally due to operation action – investigate the cause  
for pressing the button. If this button was not pressed then check  
the continuity of the circuit to the Remote switch, Customer  
connections, Auxiliary terminal block X4; pin 5 and 6; normally  
closed.  
2.  
3.  
4.  
5.  
INV. OFF  
The INV. OFF alarm is active whenever the inverter is not producing  
its correct output voltage, either because it has been switched OFF  
or due to an internal fault, it will normally be accompanied by one  
or more of the other inverter fault conditions.  
INV: OVERVOLTAGE  
Most of the inverter fault messages are self explanatory, however  
the WAVEFORM ERR informs the operator that the output voltage  
peak has flattened caused by an internal inverter problem and  
therefore the output will be out of limits.  
INV: UNDERVOLTAGE  
OUTPUT: NO VOLTAGE  
OUTPUT: WAVEFORM ERR  
INV. OVERTEMPER.  
Over temperature is sensed by a normally-closed thermostat (90°C  
operating) fitted to each inverter heat sink. If an over temperature  
condition arises, the audible alarm will accompany this message;  
the inverter stops and load transfers to Bypass after 3 minutes.  
OVERTEMP. SHUTDOWN  
This message informs the operator that the inverter has been  
switched OFF and that the load has been transferred ot Bypass due  
to an Inverter over temperature.  
6.  
OVERLOAD PRESENT  
The inverter overload has an inverse load/ time characteristic – i.e.  
it will accept 125% overload for 10 minutes and 150% overload for  
60 seconds. If this characteristic is exceeded the load transfers to  
the bypass supply, the inverter stops and the overload alarm  
annunciates. The [OVERLOAD PRESENT] alarm will annunciate as  
soon as the load exceeds 100% of the UPS rating, and the load will  
transfer to Bypass some time later, depending on the degree of  
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overload present.  
7.  
OVERLOAD SHUTDOWN  
OUTPUT SWITCH OPEN  
BYPASS SWITCH OPEN  
BATTERY C.B. OPEN  
This message informs the operator that the load has been  
transferred to bypass due to an inverter overload.  
8.  
This is a status alarm. The output switch must be selected  
‘CLOSED’ at all times except when operating on the Maintenance  
bypass supply.  
9.  
This is a status alarm. The bypass input switch must be closed all  
the times.  
10.  
11.  
12.  
This is a status indication only. Note that if the UPS is operating  
with the Battery circuit breaker open, and the mains power fails,  
then the UPS output will also fail together with load power, since  
the inverter has no battery backup.  
BATTERY: FUSE FAIL  
BATTERY: TEST FAILED  
This problem should be rectified as soon as possible. If the mains  
power fails then the UPS output will also fail together with load  
power, since there is no battery backup.  
The system has carried out a test of the battery. If this alarm is not  
accompanied by a [BATTERY C.B. OPEN] or [BATTERY: FUSE FAIL]  
message then a full check of the Battery bank is required.  
13.  
DC BUS: UNDERVOLTAGE  
When the inverter is operating on the battery this message is  
displayed on the condition when battery voltage has fallen below a  
preset value. If the input a.c. power cannot be restored, you should  
shut down your loads.  
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Battery discharge has continued beyond a preset value. The  
inverter will shut down, the system will attempt a transfer to bypass.  
If Bypass is not available, any load connected to the UPS will be  
without power.  
14.  
15.  
16.  
17.  
18.  
19.  
20.  
BATTERY: E.O.D.  
RECT. OFF  
The RECT. OFF alarm is active whenever the battery charger  
(rectifier) is not producing its correct output voltage. This can be  
caused by an operator selection to OFF, an Input supply failure, an  
open rectifier a.c. input power switch or an internal fault which may  
be accompanied by one of the fault conditions.  
RECT. SWITCH OPEN  
RECT. CURRENT LIMIT  
BATTERY: FUSE FAIL  
DC BUS: FAST OVERVOL  
Most of the rectifier fault messages are self explanatory however,  
the DC BUS: FAST OVERVOLTAGE message informs the operator  
the d.c. busbar voltage is too high.  
BYP. ABSENT  
INPUT FAILURE: input a.c. supply failed or out of specified  
acceptable range. Do not switch OFF the inverter while this  
indication is active or the load will lose its power.  
BYP. OVERVOLTAGE  
BYP. UNDERVOLTAGE  
BYP. FREQUENCY ERROR  
BYP. SCR FAILURE  
One or more of the static switch SCR’s has developed a fault. The  
bypass would not support the load in the event of a UPS failure,  
immediate action is required. Seek qualified assistance.  
BYP. PHASE ROT. ERROR  
MANUAL BYPASS CLOSED  
This message informs the operator that the input power lines have  
been cross-connected and the phases sequence is incorrect.  
This is a status warning that the load is being powered through the  
maintenance bypass line and is unprotected from mains supply  
aberrations.  
21.  
INV. UNSYNCHRONIZED  
This warns that the inverter is not synchronized with the bypass  
supply, which is normally due to a problem with the bypass supply  
being outside an acceptable frequency window. Do not switch OFF  
the inverter when this alarm is active or the load will experience a  
200 millisecond power break.  
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This is a status warning that the battery is discharging. It normally  
accompanies a [BYP: ABSENT] or [RECT: OFF] message.  
22.  
23.  
24.  
25.  
26.  
27.  
28.  
BATTERY ON LOAD  
AUTONOMY XXXX min  
BATTERY UNDER TEST  
BOOST TIME EXPIRED  
LOAD ON BYPASS  
The micro monitors the battery percentage capacity while on charge  
and the battery time remaining while on discharge. It calculates the  
time remaining as function of the discharge current against the  
programmed ampere-hour capacity of the battery. It will update the  
time remaining as the load is change.  
This message informs the operator that the system is carrying out a  
periodic battery test.  
This message is only applicable to systems which include the boost  
charge option, boost time charge elapsed set value, battery should  
be controlled by service personnel.  
This is a status warning that the load is being powered through the  
static bypass line and is unprotected from mains supply  
aberrations.  
This action is either selected by the operator or a fault condition,  
check for other fault messages.  
RECT: OFF  
RECT: OFF VIA DISPLAY  
This is a status message confirming that the rectifier has been  
selected off by the operator from either the front panel display or an  
external PC or by a switch on UPS microprocessor PCB.  
BYP: OFF  
This is a status message confirming that the bypass has been  
inhibited by the operator from either an external PC or by a switch  
on UPS microprocessor PCB.  
BYP: OFF VIA DISPLAY  
29.  
INV: OFF  
INV: OFF VIA DISPLAY  
This is a status message confirming that the inverter has been  
selected off by the operator from either the front panel display or an  
external PC or by a switch on UPS micro controller PCB.  
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This message informs the operator that the load has been  
transferred to the bypass more than eight times in one minute.  
After eight transfers the load will remain on bypass. This message  
could be initiated by a load causing the UPS to overload, it requires  
investigation.  
30.  
31.  
32.  
BYP: XFER COUNT BLOCK  
BATTERY: GROUND FALUT  
BACKFEED FAULT  
This message informs the operator that the battery is not longer  
isolated from ground and there is danger of electrocution.  
This message informs the operator that the failure of the bypass  
static devices has resulted in voltage being fed back to the bypass  
supply input.  
In a d d itio n to th e a b o ve m e s s a g e th e re a re a n u m b e r o f s o ftw a re a la rm s (i.e . BAD  
EEP RO M, BAC K-UP , BATTERY LO W e tc .) th a t w ill re q u ire a tte n tio n fro m a q u a lifie d  
s e rvic e e n g in e e r.  
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Ch a pt er 8  
1 + N S y s t e m  
8.1  
Gen er al  
Th e s ys te m c a n c o m p ris e o f u p to 6 UP S m o d u le s o f th e s a m e p o w e r ra tin g a n d  
c o n n e c te d in p a ra lle l w ith o u t th e n e e d fo r a c e n tra lize d m a in s s ta tic b yp a s s . In s te a d  
th e b yp a s s s ta tic s w itc h e s o f e a c h UP S s h a re th e lo a d w h e n th e s ys te m tra n s fe rs to  
th e m a in b yp a s s s u p p ly.  
Fro m  
a
‘p o w e r vie w p o in t, e a c h m o d u le is in te rn a lly id e n tic a l to th e s in g le m o d u le  
c o n fig u ra tio n . A 1 + N p a ra lle l s ys te m re q u ire s in ve rte r a n d b yp a s s s u p p lie s , in te r-  
m o d u le c o n tro l s ig n a ls to m a n a g e c u rre n t s h a rin g , s yn c h ro n izin g a n d b yp a s s  
s w itc h in g b e tw e e n th e m o d u le . In th e fig u re 8 -1 , th is is s h o w n a s th e in te r-m o d u le  
c o n tro l b u s , w h ic h is fa c ilita te d th ro u g h th e u s e o f m u lti-w a y rib b o n c a b le s c o n n e c te d  
b e tw e e n th e u n its o f th e s ys te m .  
W h e n th re e o r m o re m o d u le s a re to b e c o n n e c te d in p a ra lle l it is re c o m m e n d e d th a t  
in d u c ta n c e s h o u ld b e in s e rte d in th e s ta tic b yp a s s lin e . Th is c a n b e in s ta lle d in te rn a l  
to th e UP S a s a n o p tio n .  
Fo r e a c h m o d u le it is n e c e s s a ry to p ro g ra m th e d is p la y p a n e l w ith th e c o rre c t ra tin g  
a n d to id e n tify th a t th e in te rn a l s ta tic s w itc h is b e in g u s e d .  
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Maintenance Bypass  
Isolator Q3  
Maintenance Bypass Line  
Static Bypass Line  
Bypass Isolator Q2  
Output  
Isolator Q4  
DC Bus  
STATIC  
SWITCH  
RECTIFIER  
INVERTER  
Input  
Isolator Q1  
UPS 1  
Output  
Supply  
UPS MODULE 1  
3
4
X4  
Ext.  
Sw .  
Out  
Battery  
C.B. 1  
Inter Module  
Control Bus  
BATTERY 1  
Maintenance Bypass  
Isolator Q3  
Maintenance Bypass Line  
Static Bypass Line  
Bypass Isolator Q2  
Output  
Isolator Q4  
DC Bus  
STATIC  
SWITCH  
RECTIFIER  
INVERTER  
Input  
Isolator Q1  
UPS 2  
Output  
Supply  
UPS MODULE 2  
3
4
X4  
Ext.  
Sw .  
Out  
Battery  
C.B. 12  
Inter Module  
Control Bus  
BATTERY 2  
UPS 6  
Output  
Supply  
UPS MODULE 6  
Ext.  
Sw .  
Out  
I N P U T  
D I S T R I B U T I O N  
D I S T R I B U T I O N  
O F L O A D  
D I S T R I B U T I O N  
P A N E L  
Fig 8-1: '1+N' System block diagram with Separate Batteries  
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8.2  
In s t al l at ion pr ocedur e  
8.2.1  
Preliminary Checks  
Be s u re th a t a p a ra lle l kit is p re s e n t a n d fitte d in e a c h o f th e m o d u le s , a n d th a t th e  
m o d u le s a re o f th e s a m e ra tin g a n d w ith th e s a m e s o ftw a re a n d h a rd w a re re le a s e  
(s e e s e c tio n 4 .1 .2 In fo w in d o w )  
W ARNING  
Fitting of the parallel kits and board setting required to convert from  
Single Module to 1+ N must be made by qualified and trained  
personnel. This operation involves also setting of system with  
separate batteries or common batteries.  
8.2.2  
Protective Devices  
Re fe r to th e in s tru c tio n s s u p p lie d in C h a p te r 3 – Ele c tric a l In s ta lla tio n - S e c tio n 3 .1 .6 .  
8.2.3  
Power Cables  
In p u t Byp a s s a n d Re c tifie r, o u tp u ts o f m o d u le a s d e s c rib e d in C h a p te r 3 .  
8.2.4  
Control Cables  
Inter-module control  
Mo d u le s a re c o n n e c te d a s s h o w n in fig u re 8 -3 u s in g c o n n e c te d th e o th e r via P a ra lle l  
C o n n e c to r Bo a rd w ith s h ie ld e d 3 4 -w a y c a b le s .  
Th e s e c a b le s a re c o n n e c te d b e tw e e n th e N’ m o d u le s to p a s s c o n tro l s ig n a ls w h ic h  
g o ve rn m o d u le s yn c h ro n iza tio n , lo a d s h a rin g , b a tte ry c h a rg e c u rre n t s h a rin g (in a  
c o m m o n b a tte ry in s ta lla tio n ), lo a d tra n s fe r o p e ra tio n a n d o th e r g e n e ra l c o n tro l a n d  
a la rm fu n c tio n s . Th e s e s ig n a ls a re n e c e s s a ry to e n s u re c o rre c t s ys te m o p e ra tio n ,  
a n d b u ilt-in re d u n d a n c y a llo w s th e s ys te m to fu n c tio n if e ve r o n e o f th e N’ c a b le s  
b e c o m e s d is c o n n e c te d .  
C a b le s e n try is a s id e n tifie d in th e m e c h a n ic a l d ra w in g s in C h a p te r 2 .  
UPS Mo d u le 1  
UPS Mo d u le 2  
UPS Mo d u le 3  
UPS Mo d u le 4  
UPS Mo d u le 5  
UPS Mo d u le 6  
To Parallel PCB  
To Parallel PCB  
To Parallel PCB  
To Parallel PCB  
To Parallel PCB  
To Parallel PCB  
X3  
X3  
X3  
X3  
X3  
X3  
Parallel  
Connect.  
Board  
Parallel  
Connect.  
Board  
Parallel  
Connect.  
Board  
Parallel  
Connect.  
Board  
Parallel  
Connect.  
Board  
Parallel  
Connect.  
Board  
X1  
X2  
X1  
X2  
X1  
X2  
X1  
X2  
X1  
X2  
X1  
X2  
Fig 8-2: Connection of '1+N' system parallel single bus cables  
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8.2.5  
Battery Control  
Th e s ys te m is d e s ig n e d to o p e ra te w ith s e p a ra te b a tte ry c o n fig u ra tio n . In s ta lla tio n  
p ro c e d u re is s a m e a s fo r s in g le m o d u le .  
8.2.6  
Emergency Stop  
Th e e xte rn a l e m e rg e n c y s to p fa c ility is id e n tic a l to th a t d e s c rib e d fo r th e s in g le  
m o d u le s in s ta lla tio n th a t a n in d ivid u a l Em e rg e n c y S to p b u tto n is p ro vid e d fo r e a c h  
m o d u le .  
Auxiliary  
Terminal  
Block  
X4  
5
6
X4  
5
6
M o d u le  
1
Auxiliary  
Terminal  
Block  
M o d u le  
2
EP O P u s h B u tto n  
Fig 8-3: Connection of EPO Push Button  
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8.3  
Oper at in g In s t r uct ion  
S ta rtin g a n d s to p p in g th e 1 + N’ s ys te m is th e s a m e a s a s in g le m o d u le , h o w e ve r th e  
m o d u le ’s re s p o n s e d e p e n d s o n w h e th e r it is c o n fig u re d o n th e m e n u o f th e O p e ra to r  
C o n tro l P a n e l.  
8.3.1  
System Start-up and shutdown procedures (Separate Batteries)  
W ARNING  
If differential circuit breakers are used on UPS unit inputs, use a  
common device only on the system’s bypass mains. At the instant of  
electrical connection, the current may not be split instantaneously and  
this may cause the residual current circuit-breakers to trip separately.  
Th e s e o p e ra tio n s m u s t b e p e rfo rm e d o n e a t a tim e , p ro g re s s in g to th e n e xt s te p o n ly  
a fte r h a vin g c o m p le te d th e p re vio u s s te p o n b o th UP S m o d u le s .  
8.3.1.1 System Start-up  
Th is p ro c e d u re s h o u ld b e fo llo w e d w h e n tu n in g o n th e UP S fro m a fu lly p o w e re d d o w n  
c o n d itio n – i.e . w h e re th e lo a d is n o t b e in g in itia lly s u p p lie d a t a ll. It is a s s u m e d th a t  
th e in s ta lla tio n is c o m p le te , th e s ys te m h a s b e e n c o m m is s io n e d b y a u th o rize d  
p e rs o n n e l a n d th e e xte rn a l p o w e r is o la to rs a re c lo s e d .  
1.Op e n the UPS d oor(s ) to g a in a c c e s s to the m a in  
p owe r s witc he s .  
W ARNING  
The following action will apply power to the load  
equipment, ensure it is safe to do.  
2. Clos e the Byp a s s p owe r s witc h Q2  
The Mod ule Mim ic LEDs will ind ic a te Byp a s s  
s up p ly he a lthy (1-s te a d y g re e n) a nd the Loa d on  
b yp a s s (6 – fla s hing a m b e r).  
The d is p la y s c re e n will s how the following :  
EMERSON NETWORK POWER  
Initializing Window:  
Afte r firs t c onne c ting p owe r to the UPS a nd c los ing  
the Q2 is ola tor, this m e s s a g e will a p p e a r on the  
LCD s c re e n. It p e rs is ts for a b out five s e c ond s  
while the c ontrol firm wa re is loa d e d . It is followe d  
b y a s c re e n s howing va rious m e s s a g e s with the  
tim e a nd d a te on the b ottom line .  
3PH-1PH  
UPS  
RECTIF. SWITCH OPEN  
BATTERY C.B. OPEN  
Note: If input power is present but the display remains  
blank, then the Micro controller is not working, pleas  
contact your dealer for advice.  
MANUAL BYPASS CLOSED  
hh.mm.ss  
dd.mm.yy  
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3. Clos e the Re c tifie r inp ut p owe r s witc h Q1 a nd  
UPS outp ut p owe r s witc h Q4.  
BATTERY C.B. OPEN  
Afte r a p p roxim a te ly 20 s e c ond s the Mod ule Mim ic  
le d ’s will c ha ng e s o tha t the Loa d on inve rte r will  
lig ht (5-s te a d y g re e n) a nd the Loa d on b yp a s s (6)  
will e xting uis h. The d is p la y wind ow will s how:  
hh.mm.ss  
dd.mm.yy  
4. Be fore c los ing the b a tte ry c irc uit b re a ke r c he c k  
the d .c . b us -b a r volta g e . From the a b ove wind ow  
p re s s the ENTER ke y. The Ma in m e nu will d is p la y:  
>MEASUREMENT  
FUNCTION  
<
S e le c t MEAS UREMENT a nd p re s s ENTER ke y  
MAINTENANCE  
SETUP  
S e le c t BATTERY a nd the d .c . b us b a r volta g e will  
b e d is p la ye d .  
OUTPUT  
INPUT  
>BATTERY  
TEMPERATURE  
<
If the volta g e ind ic a te d is s a tis fa c tory (432V d .c . for  
380V a .c . s ys te m , 446V d .c . for 400V a .c . s ys te m ,  
a nd 459V d .c . for a 415V a .c . s ys te m ) p re s s the  
e s c a p e ke y re p e a te d ly until the d is p la y re turns to  
the orig ina l wind ow.  
BATTERY  
VOLTAGE  
CURRENT  
CHARGE  
446 [V]  
001 [A]  
000 [%]  
5. Ma nua lly c los e the b a tte ry c irc uit b re a ke r.  
The Mod ule Mim ic inid ic a tor (3) Ba tte ry una va ila b le  
s hould e xting uis h. S e ve ra l le d ’s on the Ba tte ry  
s ta te of c ha rg e b a rg ra p h (17) will illum ina te  
s howing b a tte ry s ta te of c ha rg e .  
W he n the b a tte ry c irc uit b re a ke r ha s b e e n c los e d  
a nd the inve rte r ha s s ta b ilize d the s c re e n will  
c ha ng e to the d e fa ult wind ow.  
Default window:  
The m e s s a g e s hown b e low, will b e s e e n on the  
d e fa ult s c re e n whe ne ve r the UPS is op e ra ting  
norm a lly.  
NORMAL OPERATION  
The top line s d is p la y the UPS op e ra tiona l s ta tus  
a nd ind ic a te s a la rm c ond itions whe n the y oc c ur;  
a nd the b ottom line s hows the tim e a nd d a y.  
hh.mm.ss  
dd.mm.yy  
The UPS is op e ra ting norm a lly with its inve rte r  
s up p lying the loa d .  
Follow the fore g oing p roc e d ure for the othe r UPS .  
For a s ys te m c onfig ure d in the 1+ N s ys te m ”, the  
N’ UPS m od ule s will s im ulta ne ous ly c ha ng e from  
“loa d on b yp a s s ” to “loa d on inve rte r” p rovid e d tha t  
a s uffic ie nt num b e r of m od ule s a re running , a nd  
o n-line , to s a tis fy the p owe r loa d re q uire m e nts .  
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8.3.1.2 Switching the system to maintenance bypass from normal operation  
W ARNING  
The internal maintenance bypass must not be used when the UPS  
system is comprised of more than two UPS modules in parallel.  
Fo llo w th e p ro c e d u re fo r th e s in g le UP S b y re fe rrin g to C h a p te r  
5
– O p e ra tin g  
In s tru c tio n s : P a ra g ra p h 5 .4 . Fo r a s ys te m c o n fig u re d in th e “1 + N s ys te m ”, th e  
c h a n g e o ve r fro m “lo a d o n in ve rte r ” to “lo a d o n b yp a s s ” w ill o c c u r o n ly w h e n th e  
o p e ra tio n d e s c rib e d in p o in t 3 h a s b e e n c o m p le te d o n b o th UP S m o d u le s .  
8.3.1.3 Switching the system ON from a maintenance power down condition.  
Fo llo w th e p ro c e d u re fo r s in g le UP S , re fe rrin g to C h a p te r 5 – O p e ra tin g In s tru c tio n s :  
P a ra g ra p h 5 .2 .  
8.3.1.4 Switching OFF and isolating one UPS while the other remains in service.  
1 . In s e q u e n c e , o p e n th e UP S is o la to rs Q 4 (o u tp u t), Q 1 (re c tifie r in p u t), Q 2 (b yp a s s  
in p u t).  
2 . O p e n th e c irc u it-b re a ke r in s id e th e b a tte ry c a b in e t.  
To c o m p le te ly is o la te th e UP S , o p e n th e a .c . p o w e r s u p p ly c irc u it-b re a ke r (b o th c irc u it  
b re a ke rs if s e p a ra te s u p p lie s a re p ro vid e d fo r th e re c tifie r a n d th e b yp a s s s u p p ly) a n d  
th e e o u tp u t c irc u it b re a ke r o n th e p o w e r d is trib u tio n s w itc h b o a rd .  
If in d ivid u a l UP S o u tp u t is o la tio n c irc u it-b re a ke r (a n d its a u xilia ry c o n ta c ts ) a re n o t  
in s ta lle d o n th e p o w e r d is trib u tio n s w itc h b o a rd , re m e m b e r th a t vo lta g e s u p p lie d b y  
th e o th e rs UP S w h ic h re m a in s in s e rvic e s till w ill b e p re s e n t o n th e o u tp u t te rm in a ls o f  
th e s h u td o w n UP S .  
W ARNING  
If individual UPS output isolation circuit-breaker are not installed on  
the power distribution switchboard, remember that voltage supplied  
by the others UPS remains in service will still be present on the output  
terminals of the shutdown UPS.  
Warning : Wait 5 minutes for the internal d.c. busbar  
capacitors to discharge.  
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8.3.1.5 Switching ON a UPS that was previously switched OFF and isolated from the system.  
1 . C lo s e th e c irc u it-b re a ke rs re la tive to th e s h u td o w n UP S th a t w e re p re vio u s ly  
o p e n e d o n th e p o w e r d is trib u tio n s w itc h b o a rd .  
2 . C lo s e th e s w itc h e s Q 1 (re c tifie r in p u t) a n d Q 2 (b yp a s s in p u t) o f th e UP S .  
3 . S e le c t th e MEAS UREMENT fu n c tio n fro m th e d is p la y o n th e m a in m e n u , th e n p re s s  
ENTER a n d s e le c t BATTTERY. P re s s ENTER a n d c h e c k th a t th e vo lta g e le ve l h a s  
re a c h e d th e ra te d va lu e (4 3 2 V o r 4 4 6 o r 4 5 9 in a c c o rd a n c e w ith n o . o f b a tte ry b lo c ks ).  
4 . C lo s e th e b a tte ry c irc u it-b re a ke r.  
5 . C lo s e th e UP S s w itc h Q 4 (o u tp u t), w a it a b o u t 2 0 s e c o n d s a n d c h e c k th e m e s s a g e  
NO RMAL O P ERATIO N a p p e a rin g o n th e d is p la y o p e ra to r p a n e l.  
8.3.1.6 Complete system shutdown  
Fo llo w th e p ro c e d u re d e s c rib e d in C h a p te r 5 - O p e ra tin g In s tru c tio n : p a ra g ra p h 5 .6  
b y w o rkin g o n s e ve ra l UP S m o d u le s .  
8.3.1.7 Complete system reset  
Fo llo w th e p ro c e d u re d e s c rib e d in C h a p te r 5 - O p e ra tin g In s tru c tio n : p a ra g ra p h 5 .7  
b y w o rkin g o n s e ve ra l UP S m o d u le s .  
8.4  
Dis pl ay Pan el mes s age in t er pr et at ion in '1+ N' Sys t em  
Th e a la rm s a re th e s a m e a s fo r th e s in g le m o d u le , a s g ive n in th e p re vio u s p a ra g ra p h ,  
w ith th e a d d itio n a l a la rm s :  
CODE  
DISPLAY ALARM MESSAGE  
INTERPRETATION  
44  
INV: PARALLEL ERROR  
The parallel board has detected a wrong sharing of the load and  
has blocked its inverter. Seek qualified assistance.  
46  
NR: INVERTERS NOT OK.  
The number of active inverters is below the preset capacity value.  
70  
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Ch a pt er 9  
S p e c ific a t io n  
Th is s p e c ific a tio n d e s c rib e re q u ire m e n ts fo r a n Un in te rru p tib le P o w e r S ys te m (UP S ).  
9.1  
Con f or mit y an d St an dar d  
Th e UP S h a s b e e n d e s ig n e d to c o n fo rm th e fo llo w in g s ta n d a rd s : IEC , EN  
9.2  
UPS En vir on men t al  
Th e UP S s h a ll b e a b le to o p e ra te u n d e r th e fo llo w in g e n viro n m e n ta l c o n d itio n s w ith o u t  
d a m a g e o r d e g ra d a tio n in e le c tric a l o p e ra tin g c h a ra c te ris tic s :  
Environmental Characteristics  
Rated Power  
Units  
kVA  
ºC  
%
m
130  
0 to 45 ºC  
= 90% at 31 ºC, Saliferrous, Humid  
= 1000m above sea level  
-25 to 70 ºC  
Operating Temperature  
Relative Humidity  
Altitude of operation  
Storage/ transport temperature  
ºC  
9.3  
UPS Mech an ical Ch ar act er is t ics  
Mechanical  
Characteristics  
Units  
130 kVA  
6 pulse  
Height  
Width  
Depth  
Ventilation  
Cable entry  
Protection  
mm  
mm  
mm  
-
-
IP  
1900  
1400  
925  
By internal intake fans  
Bottom  
41  
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9.4  
UPS El ect r ical Ch ar act er is t ics  
R E C T I F I E R I N P U T M A I N S  
I/P Ratings  
Units  
130 kVA  
6 pulse  
130  
Rated power  
kVA  
Vac  
Rated Mains  
Voltage 1  
Supply  
380 – 400 – 415 V  
Three phase without neutral  
Input voltage  
tolerance 2  
Frequency  
%
Hz  
± 10  
50 or 60  
± 5  
Input  
%
frequency tol.  
Rated input  
power 3  
Rated input  
current 3  
Maximum  
input power  
4
kVA  
A
143  
206.4  
178  
kVA  
Maximum  
input current  
4
A
257  
Duration of  
progressive  
power walk-in  
5
sec  
2 to 10  
1 = 380V or 415V set changing taps on auxiliary supply transformer  
2 = With mains at –15% and suggested battery elements the UPS maintains the output rated voltage at rated load  
but cannot guarantee float charge to battery; the battery does not discharge.  
3 = EN 50091-3 (1.4.39): UPS, rated load, input rated voltage 400V, no current to battery  
4 = EN 50091-3 (1.4.40): UPS, rated load or overload, input rated voltage 400V, battery on boost charge with  
maximum allowed current.  
5 = Set with jumper on Rectifier control board.  
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9.5  
UPS El ect r ical Ch ar act er is t ics (DC In t er mediat e Cir cuit )  
D. C. I N T E R M E D I A T E C I R C U I T  
Rated Power  
kVA  
130  
Voltage range for Inverter operation  
Vdc  
340 – 480  
Recommended number of  
Nos.  
Vdc  
Vdc  
190 (380 Vac)  
198 (400 Vac)  
204 (415 Vac)  
-
-
Lead-acid cells 1-2  
Ni-Cd cells 1-2  
320 (454.4 Vac)  
432 (380 Vac)  
446 (400 Vac)  
459 (415 Vac)  
Recommended float charge voltage  
2.25 V/cell (Lead Acid) 1  
1.42 V/cell (Ni-Cd) 1  
Recommended boost charge voltage  
2.40 V/cell (Lead Acid) 1  
454.4 Vac  
460 (380 Vac)  
475 (400 Vac)  
490 (415 Vac)  
1.55 V/cell (Ni-Cd) 1  
480 Vac  
Recommended end of discharge voltage Vdc  
1.67 V/cell (Lead Acid) 1  
320 (380 Vac)  
330 (400 Vac)  
340 (415 Vac)  
1.1 V/cell (Ni-Cd) 1  
340 Vac  
Recommended test voltage  
for Lead Acid 1  
Vdc  
365 (380 Vac)  
376 (400 Vac)  
388 (415 Vac)  
for Ni-Cd 1  
384 Vac  
Battery boost charge cycle 3  
-
Characteristics to DIN 41772I-U, boost to floating charge  
switching, with current measuring criterion plus control of  
charging time.  
Maximum boost charge duration 3  
Boost-float threshold current 3  
Ripple voltage superimposed 4  
min  
A
0-999  
0-99  
£2  
%
Note:  
1 = (According to rated voltage)  
2 = Factory set for rated 400V, different cells number and voltage per cell may be set by software and / or  
trimmers on Rectifier control board.  
3 = Set by software  
4 = Battery disconnected, RMS percentage value referred to DC voltage.  
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9.6  
UPS El ect r ical Ch ar act er is t ics (In ver t er Out put )  
I N V E R T E R O U T P U T  
130  
Rated Power  
kVA  
Rated mains voltage 1  
Vac  
380 - 400 - 415  
Three phase with neutral  
Frequency 2  
Hz  
50 to 60  
130  
KVA  
KW  
%
Rated Power at cosf = 0.8  
Rated Power at cosf = 1  
Overload  
104  
150% FOR 60 sec  
125% for 10 min  
110% for 1 hr  
Maximum non linear load  
-
allowed 3  
100% Pn  
± 1.5  
± 5  
Voltage stability, steady state test  
4
%
%
Voltage stability, transient test 5  
Maximum rate of change of  
Hz  
frequency 6  
/sec  
0.1  
Note:  
1 = Factory set 400V – 380V or 415V voltages with software setting  
2 = Factory set at 50Hz ; 60Hz with software setting.  
3 = EN50091-3 (1.4.58) crest factor 3.  
4 = EN50091-3 (4.3.4).  
5 = EN50091-3 (4.3.7) also for 0-100% load transient, restore time 20ms to ± 1%.  
6 = Factory set at 0.1Hz/ sec; upto 2 Hz/sec with software setting.  
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9.7  
UPS El ect r ical Ch ar act er is t ics (Bypas s In put Main s )  
B Y P A S S I N P U T M A I N S  
130  
Rated Power  
kVA  
Rated mains voltage 1  
Vac  
380 - 400 - 415  
Three phase with neutral  
1182  
Supply  
Rated Current:  
110 Vac  
A
Bypass voltage tolerance 2  
%
sec  
%
± 10  
10  
Delay time to recognize bypass  
voltage returned to window  
Inverter output voltage window  
± 10  
50 or 60  
Frequency 3  
Hz  
%
Input frequency tolerance 4  
± 2  
0.1  
Maximum frequency slew rate  
Current rating of neutral cable  
Protection, bypass line  
Overload  
Hz  
/sec  
1.5 x In  
To avoid series fuses, the bypass line should be protected using an  
external device should be sized to discriminate with the load  
protection.  
%
150% for 60 sec  
125% for 10 min  
110% for 1 hr  
Note:  
1 = Factory set 400V – 380V or 415V set changing taps on auxiliary supply transformer and with software setting  
2 = Other values 0-15% with software setting.  
3 = Factory set at 50Hz ; 60Hz with software setting.  
4 = Other values 1-9% with software setting.  
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1 0 .1 R e m o te Ala rm M o n ito r  
Th e Re m o te Ala rm Mo n ito r (RAM) Bo a rd c a n b e u s e d in c o n ju n c tio n w ith th e AS 4 0 0  
Ala rm s In te rfa c e Bo a rd to d is p la y th e UP S a la rm a n d s ta tu s in fo rm a tio n a t a re m o te  
s ta tio n to 1 0 0 m e te rs fro m th e UP S .  
Th e RAM, w h ic h c a n b e m o u n te d e ith e r h o rizo n ta lly o r ve rtic a lly c o n ta in s a m a in s -  
d rive n p o w e r s u p p ly fo r a la rm LED a n n u n c ia tio n a n d d is p la ys th e fo llo w in g w a rn in g s :  
Normal  
state  
Panel  
Colour  
Interpretation  
Inverter ON  
Green  
ON  
Normal operating condition indicating that the load is being supplied by the inverter.  
This is not an 'alarm’ indicator.  
Utility failure  
Battery low  
Red  
Red  
OFF  
OFF  
When lit, it indicates that the input bypass is out of tolerance or missing.  
When lit, it indicates that the battery voltage is below minimum or that the battery  
circuit breaker is open.  
Bypass ON  
Maintenance  
Red  
Red  
OFF  
OFF  
When lit, it indicates that the load is being fed from the bypass supply, possibly due  
to a UPS failure.  
When lit, it indicates that the UPS has been selected to operate on the maintenance  
bypass and load is unprotected.  
Alarm  
Red  
OFF  
This is a ‘common alarm’ and is lit when any of the red leds described above are lit  
Table A  
An a u d ib le w a rn in g a c c o m p a n ie s a n y o f th e a b o ve a la rm c o n d itio n s . Th is is , h o w e ve r,  
s u b je c t to a s h o rt tim e d e la y w h e n a c tiva te d in c o n ju n c tio n w ith th e 'Utility Fa ilu re ' a n d  
'Byp a s s O N' a la rm s , to p re ve n t th e w a rn in g b e in g a c tiva te d b y tra n s ie n t c o n d itio n s .  
P re s s in g th e 're s e t' p u s h -b u tto n c a n c e ls th e a u d ib le w a rn in g b u t th e a la rm in d ic a tio n s  
re m a in u n til th e c o n d itio n s is re c tifie d .  
10.1.1 RAM Connections  
P o w e r S u p p ly  
Th e RAM c o n ta in s a s in g le -p h a s e 2 2 0 -2 4 0 V AC m a in s -d rive n p o w e r s u p p ly. P o w e r is  
a p p lie d th ro u g h a s ta n d a rd th re e -p in m a in s c o n n e c to r lo c a te d in th e RAM b a c k p a n e l  
(p lu g p ro vid e d ) -u s e 3 -c o re 0 .5 m m c a b le (m in im u m ). Th e s u p p ly is ra te d a t  
a p p ro xim a te ly 4 W a tts a n d fu s e d a t 1 A.  
It is a d vis e d th a t th e p o w e r s u p p ly is ta ke n fro m th e UP S o u tp u t, o th e rw is e in th e  
e ve n t o f a m a in s fa ilu re th e RAM m a y b e in o p e ra tive .  
Ala rm c o n n e c tio n s  
A 9 p in D-typ e c o n n e c to r w ith s o ld e r p o in ts is p ro vid e d w ith th e RAM. Th is c o n n e c to r  
fits in to th e 9 p in s o c ke t o n th e b a c k o f th e RAM a n d s h o u ld b e c a b le d to th e In te rfa c e  
Bo a rd # 1 0 0 2 0 1 1 2 0 0 3 fitte d to th e UP S , u s in g 9 c o re , 0 .2 2 m m . (m in im u m ) s h ie ld e d  
c a b le a s s h o w n . Th e m a xim u m re c o m m e n d e d d is ta n c e is 1 0 0 m e te rs .  
Note: Operation of the RAM indicators, is achieved by feeding a voltage across the module Alarm  
Board relay contacts. No other connections should be made across the relay contacts used.  
79  
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X4  
# 100201120003  
15  
14  
RL –K1  
RL –K2  
RL –K3  
Bypass Failure  
Low Battery  
13  
12  
11  
10  
9
8
Load on Mains  
7
6
5
RL –K4  
RL –K5  
Load on Maintenance  
Bypass  
4
3
2
Load on Inverter  
1
220/240V AC  
50 Hz  
5
4
3
2
1
9
8
7
6
UPS  
Monitor  
Liebert  
UTILITY  
FAILURE  
INVERTER  
ON  
BATTERY  
LOW  
ALARM  
BYPASS  
MAINTENACE  
ON  
Figure 10.1: Remote Alarm Monitor connection details  
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10.2 INPUT TRANSFORMER CUBICLE  
10.2.1 Introduction  
Th e In p u t Tra n s fo rm e r C u b ic le is p la c e d in th e In p u t s u p p ly p a th o f th e UP S . It  
c o n s is t o f S ta r - S ta r O R De lta - S ta r tra n s fo rm e r o f ra te d  
c a p a c ity to p ro vid e  
Is o la tio n fro m th e In p u t Dis trib u tio n s u p p ly to th e UP S in p u t.. Th e C u b ic le a ls o  
c o n s is t o f Ba tte ry Bre a ke r w ith its Ba tte ry Trip P C B o f th e re s p e c tive UP S .  
10.2.2 Termination  
Th e In c o m in g S u p p ly fro m th e C u s to m e rs d is trib u tio n is fe d a s in p u t to th e In p u t  
Tra n s fo rm e r C u b ic le . Th e in c o m in g s u p p ly 3 p h ,4 w ire is fe d to RI ,S I,TI,NI te rm in a ls .  
Th e Ba tte ry Bre a ke r in p u t fro m th e UP S is fe d to + R1 , -R1 . Th e o u tp u t o f th e  
Tra n s fo rm e r c u b ic le is a va ila b le o n th e RU,S U,TU,NU te rm in a ls , th e Ba tte ry Bre a ke r  
o u tp u t is fe d to BATTERIES th ro u g h te rm in a ls + B ,-B te rm in a ls  
10.2.3 Indication & Metering  
LEDs a re u s e d to m o n ito r a va ila b ility o f In p u t vo lta g e b e fo re th e Is o la tio n Tra n s fo rm e r  
a n d a fte r th e Tra n s fo rm e r w h ic h a re s e e n o n th e Mim ic P a n e l.  
In c o m in g L-L vo lta g e a n d P h a s e c u rre n t is m e a s u re d u s in g Vo ltm e te r & C u rre n t m e te r  
w h ic h a re s e e n o n th e Mim ic P a n e l , A s e le c to r s w itc h S 1 is u s e d to s e le c t RY ,YB, BR  
Vo lta g e a n d R,Y,B P h a s e c u rre n ts  
10.2.4 Protection  
In c o m in g  
3
p o le  
MC C B  
is u s e d a s P ro te c tive De vic e b e fo re th e Is o la tio n  
tra n s fo rm e r, C o n tro l fu s e s a re u s e d fo r p ro te c tio n o f Vo ltm e te r a n d Fa n s C u b ic le  
Ba tte ry p a th MC C B is u s e d a s P ro te c tive De vic e in Ba tte ry p a th  
Utility s o c ke t is p ro vid e fo r s in g le p h a s e s u p p ly  
81  
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User Manual  
Hipulse - Single Phase 1+N’ UPS System  
130 kVA - 110V  
10.3 BYPASS ISOLATION CUBICLE  
10.3.1 Introduction  
Byp a s s Is o la tio n C u b ic le is p la c e d in th e Byp a s s in p u t p a th o f th e UP S . It c o n s is t o f  
VEE C o n n e c te d –Tra n s fo rm e r o f ra te d c a p a c ity to p ro vid e  
tra n s fo rm a tio n .  
3
p h a s e to  
1
p h a s e  
10.3.2 Termination  
Th e In c o m in g S u p p ly fro m th e C u s to m e rs d is trib u tio n is fe d a s in p u t to th e Byp a s s  
Is o la tio n C u b ic le . Th e in c o m in g s u p p ly 3 p h ,4 w ire is fe d to RI ,S I,TI,NI te rm in a ls .  
Th e o u tp u t o f th e c u b ic le is a va ila b le o n th e RU, NU te rm in a ls . w h ic h is fe d 1 p h a s e  
Byp a s s S u p p ly to th e UP S P a n e l.  
10.3.3 Indication & Metering  
LEDs a re u s e d to m o n ito r a va ila b ility o f In p u t vo lta g e b e fo re th e Ve e C o n n e c te d  
Tra n s fo rm e r a n d a fte r it ,w h ic h a re s e e n o n th e Mim ic P a n e l  
O u tp u t vo lta g e a n d P h a s e c u rre n t is m e a s u re d u s in g Vo ltm e te r & C u rre n t m e te r  
w h ic h a re s e e n o n th e Mim ic P a n e l .  
10.3.4 Protection  
In c o m in g 3 p o le MC C B is u s e d a s P ro te c tive De vic e b e fo re th e Ve e C o n n e c te d  
tra n s fo rm e r ,C o n tro l fu s e s a re u s e d fo r p ro te c tio n o f Vo ltm e te r.  
Utility s o c ke t is p ro vid e fo r s in g le p h a s e s u p p ly.  
82  
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