®
DW4020 Installation Guide
1031484-0001
Revision 3
October 24, 2002
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Declaration of Conformity
Standards to which Conformity is declared: FCC Part 15
This device complies with part 15 of the FCC Rules. Operation is subject to the following
two conditions:
(1) this device may not cause harmful interference, and (2) this device must accept any
interference received, including interference that may cause undesired operation.
Responsible Party’s name: Hughes Network Systems, Inc.
Address: 11717 Exploration Lane, Germantown, MD 20876
Telephone: 866-DIRECWAY (347-3292)
Trade Name: HUGHES
Type of Equipment:Satellite Transmit and Receive Modem, VSAT, Ethernet Appliance
Model Numbers:DW4-G1
Part Numbers: 3003618
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Contents
LED display
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Running the DW4020 installation software, commissioning, and
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Gateway LEDs flash, receive modem READY LED off or
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Gateway LEDs flash, receive modem READY LED off or
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Important safety information
For your safety and protection, read this entire manual before you
attempt to install the DW4020. In particular, read this safety
section carefully. Keep this safety information where you can
refer to it if necessary.
This section introduces the various types of warnings used in this
manual to alert you to possible safety hazards.
Types of warnings used
in this manual
DANGER
Indicates an imminently hazardous situation, which, if not
avoided, will result in death or serious injury.
WARNING
Indicates a potentially hazardous situation, which, if not
avoided, could result in death or serious injury.
CAUTION
Indicates a potentially hazardous situation, which, if not
avoided, may result in minor or moderate injury.
CAUTION
Indicates a situation or practice that might result in property
damage.
• Important safety information
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• Important safety information
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About this document
This manual describes installing and servicing the DIRECWAY
Scope and audience
®
DW4020 terminal. It addresses installers, network system
engineers, and network operators who install, commission,
operate, and maintain the system.
The DW4020 is installed by professional telecommunications
installers. This product cannot be installed by the end user.
Audience profile
There are four primary audiences:
• HNS Installers – at this time, only HNS installers will install
this product.
• Installer trainers, who prepare separate instructions for the
installers.
• Call center operators, who respond to user’s calls.
• Call center trainers, who train call center operators.
This manual is organized into the following chapters. Major
changes from Revision 1 are identified.
Organization and
updates
Chapter 1 - Introduction gives an overview of the DW4020 and its
components. The description of IP addressing is moved to an
appendix.
Chapter 2 - Installing the indoor equipment provides information
regarding installing and configuring the DW4020. The "modem"
method using Websetup is documented. The "manual" method
using the serial port is moved to an appendix.
Chapter 3 - The User Interface provides information about the
new browser-based interface. The interface reports performance
data and information for configuring operating systems network
settings.
Chapter 4 - DW4020 LEDs and troubleshooting described LED
activity and troubleshooting stratetgies.
There is also a safety summary, glossary, list of abbreviations and
acronyms, appendices, and index.
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This manual follows the typographical conventions shown below
to help clarify instructions:
Conventions
Example
Explanation
Indicates the names of command
buttons that execute an action.
Click Exit.
The system displays the following: Indicates all system messages
and prompts as the system
displays them.
Are you ready?
Indicates operator input.
Type exit
Indicates the names of fields on
windows.
Enter a value in the Time field.
Retrieve the following file:
O:\template\techman_r3
Indicates file names or file paths
referenced in the manual.
Indicates function or keyboard
keys. Press two keys
simultaneously—in this case, Alt
and V.
Press ALT+V to view the menu.
Indicates the names of menu bar
options on a software screen.
Select the Edit menu.
Indicates a menu/submenu
sequence for selecting an action
or option
Go to Edit → Spelling Checker
The installation of this product may also require the use of one of
the following antenna or outdoor unit manuals:
Related publications
• DIRECWAY Satellite Dish Installation Guide Model:
DW4000 Two-Way (HNS 1031362-0201)
• DIRECWAY Outdoor Unit Installation Guide DW 4000-098
DW 4000-120 (HNS 1032025-0001)
• .89/.98M Ku-Band Rx/Tx Series 1892/1982 Antenna System
Assembly Manual (Prodelin 4906-629)
• 1.2m Ku-Band Rx/Tx Series 1132 Antenna System
(Prodelin 4906-630)
Revision record
Revision
Rev 1
Date of issue
8/02/02
Scope
Production release
Rev 2
9/27/02
Incorporates Web commissioning
Rev 3
10/24/02
Documents change to Websetup
Welcome screen
• About this document
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Chapter 1
Introduction
This chapter addresses the following topics:
The DW4020 is designed to provide multiple computer
DW4020 purpose and
components
connections through a single DIRECWAY terminal. It is
®
• Receive modem (also sometimes referred to as the Indoor
Receive Unit (IRU))
• Transmit modem (also sometimes referred to as the Indoor
Transmit Unit (ITU))
• Gateway (GWH)
Note: Revision 1 of this manual referred to the DW4020 as the
"Gateway," and the Gateway as the "Gateway host." This
terminology has changed. Please use the terminology in this
manual.
Receive modem
Transmit modem
Gateway
Figure 1: The DW4020
Chapter 1 • Introduction
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These units, in combination with an antenna, provide satellite
connectivity for multiple local area network (LAN) hosts through
one DIRECWAY System. All the necessary software resides on
the Gateway, which serves as the router. Because the software is
on the Gateway, there is no need for a computer to run client
software, unlike previous versions of DIRECWAY.
Figure 1 illustrates the functionality of the DW4020 within a
DIRECWAY network. Note that the DW4020 is independent of
operating platforms. It can also be used with devices other than
computers, such as point-of-sale (POS) terminals or credit
verification devices.
POS terminal
or other device
Satellite
Inroute
Unix
Mac
PC
DIRECWAY
Network
Operations
Center (NOC)
Outroute
Linux
Antenna
Ethernet
Gateway
Internet
G-25080 F
08/27/02
Figure 2: Remote site with DW4020 installed
The part number label is located on the rear of the unit.
Table 1 shows the hardware characteristics of the DW4020.
Table 2 shows the physical characteristics of the unit.
Characteristics and
identification of
equipment
Table 3 shows the cable requirements for the unit. The cable
requirements are the same regardless of the type of antenna used.
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.
Table 1: DW4020 hardware characteristics
Characteristic
Main processor
Ethernet 10/100
DW4020
200Mhz
4 ports (switched)
RJ-45
Main Memory
Flash Memory
Serial Port
32MB
8MB
Asynchronous RS232
One USB 1.1 (Type A)
USB Port
Table 2: DW4020 physical characteristics
Characteristic
Value
Physical Dimensions
Height
Width
Depth
Weight
5.75 inches
6.5 inches
8.8 inches
4.0 lbs.
Electrical Requirements
Input line voltage
Input line frequency
Current Required
90 - 264 V ~ 2A max,
50-60 HZ AC
100 W typical
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Table 3: Cable requirements
Grounding and Cable Choice
Your choice of grounding scheme may affect your choice of cable. Note that meeting the
National Electrical Code grounding requirements is easier if you use RG-6 with quad shield.
However, you can also use standard RG-6 and ground according to the Code or the
instructions in the antenna installation manual.
Recommended cable specifications for One-Way and Two-Way Systems
Cable length from satellite Type of cable to be used
dish to DW4020
Receive
Transmit
Up to 300 ft.
RG6 with solid copper
center conductor
(CommScope 5729 or
equivalent)
RG6 with solid copper
center conductor
(CommScope 5729 or
equivalent)
300 ft. to 420 ft.
RG6 with solid copper
center conductor
(CommScope 5729 or
equivalent)
RG6 with solid copper
center conductor and quad
shield (CommScope 5781
or equivalent)
Important: A higher grade of cable can be used for an installation where a lower grade is
specified. For example, an RG6 cable with solid copper center conductor and quad shield
can be used for installations where the cable length is less than 300 ft. Never use a lower
grade of cable than specified. Be sure to record the grade of the cable used for your
installation. The grade is printed on the cable every few feet. Never use a cable which
does not have the manufacturers name and its grade clearly printed on it!
Important notes:
1. Coaxial cables with copper clad steel center conductor are
not recommended.
2. Do not use splitters.
3. Line amplifiers are required for Receive cable runs of more
than 150 ft.
4. If the Receive cable run length is less that 150 ft., then no line
amplifier is required. If the Receive cable run length is
greater than 150 ft., but less than 300 ft., then install a a line
amplifier in the Receive cable only, at a minimum of 25 ft.
and up to 30 ft. from the LNB.
5. A line amplifier can only be installed in the Receive cable,
not in the Transmit cable.
6. Line amplifier specification: Channel Master 5113 IFD or
equivalent.
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Chapter 2
Installing the indoor equipment
Together, the receive modem, the transmit modem, and the
System pre-installation
Gateway are called the DW4020 and sometimes referred to as the
indoor unit (IDU). The receive modem is also called the IRU; the
transmit modem is also called the ITU; and the Gateway is
sometimes called the GWH.
The three units must be stacked correctly to ensure proper heat
dissipation. The receive modem must be installed on top of the
transmit modem, which is in turn installed on top of the Gateway.
The installer laptop PC must fulfill the following requirements:
Installation PC requirements
• USB port
• Ethernet
• Dial-out modem
• Windows 98 or higher, with DHCP configured to
automatically accept IP addresses. See Appendix D.
The customer must have:
Customer installation
requirements
• A functioning Ethernet interface installed on at least one
computer. This is not necessary to commission the DW4020,
but you must ensure the customer can surf before you leave.
• Ethernet cables; as many as there are computers that will
connect to the DW4020.
• An analog phone line.
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There two ways to install the DW4020.
Two DW4020 installation
methods
• If an analog phone line is available, assemble and install the
system using the instructions in Installing the system using a
the one that will be used.
• If no analog phone line is available, you must configure the
DW4020 through the serial port. Follow the instructions in
Appendix C.
DW4020 installation is a 10-step process.
Summary of DW4020
installation process
1. Assemble the DW 4020 components.
2. Connect the DW4020 to the installer PC Ethernet and power
up the DW4020. Use surge protectors.
3. Connect the installer PC via USB and run Websetup to
establish operating parameters and commission.
4. Register the customer and select subscription options via
Websetup.
5. Record site ID and assigned IP address(es) for the customer
on the cover of the User Guide.
6. Transfer of parameter information to Gateway Host; Exit
Websetup.
7. Assemble and install the satellite antenna. Run cables from
the outdoor components to the indoor equipment. Clearly
label the receive and transmit coaxial cable at the antenna,
ground block, and indoor units connectors.
8. Complete pointing and ACP.
9. Disconnect installer PC and connect the Gateway to the
receive modem with the USB cable. Connect the customer
computer equipment to the Gateway via Ethernet cable.
10. Verify customer operation, information recorded on User
Guide cover, and receive and transmit cable labeling.
Optional: assist in customer computer configuration.
The DW4020 can be used with the HNS DW4000 74cm
Two-Way antenna. The DW4020 can also be used in conjunction
with 98cm, 1.2m, and 1.8m antennas. Refer to the manufacturer’s
antenna installation manual for instructions on how to install the
antenna. See the About section for a list of antenna installation
manuals. Follow all safety procedures. Cable requirements are on
Antenna installation
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CAUTION
A password from the authorized installer is required before
the National Operations Center will activate the system.
CAUTION
Professional installation and service of the antenna
assembly is required by the Federal Communications
Commission because the radio transmits radio frequency
energy.
• The two-way antenna assembly must be installed in a
location or manner not readily accessible to children.
• The two-way antenna assembly must be installed at
least 5 feet (1.5 meters) above ground level or any
nearby surface on which a person could sit or stand.
CAUTION
• The two-way satellite dish assembly emits radio
frequency energy when in the transmit mode.
• Unplug indoor power connection before performing
maintenance or adding upgrades to any satellite dish
components.
• To avoid risk of injury, do not place head or other body
parts between feed horn and reflector when system is
operational.
Prohibited area
(when operational)
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The installation software for the DW4020 is on a CD. The
software will enable you to register DW4020 customers. You
need a receive modem (IRU) to install the software on your
installer laptop PC.
Installing DIRECWAY
installation software on
installer laptop
Do not confuse the installation software with the software that is
downloaded to the Gateway via satellite during registration. The
DW4020 installation software enables you to register customers
and configure the DW4020 for operation. The software that
actually operates the DW4020 is downloaded during registration.
It is important to understand that there are three service options:
consumer, small office/home office, and enterprise. Each option
has its own registration server that appears in the Websetup
Welcome screen when you start Websetup to register a customer.
You must be careful to choose the correct option. If in doubt
consult the work order.
For example, if you are installing a DW4020 for a SOHO
customer, you would double-click on the registration server for a
SOHO installation. If you click on one of the other servers, you
will not be able to install the customer correctly.
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Do not connect USB cable to the receive modem until prompted.
You may use the cable that came with the unit, or a different cable
if you need a longer one.
Installing the software
1. Load the installer software CD into your laptop computer.
The installation wizard should appear. If it does not, select
Start→Run, browse to the CD drive, select it, and select
setup.exe.
Figure 3: Installation screen
2. Select Install Software. A Setup screen appears.
3. Select Next. An Agreement screen appears.
appears.
5. Connect the USB cable. The installation will complete and
are prompted for the location of your Windows .cab files,
enter the location or insert your Windows installation CD,
load the files, and re-insert the DIRECWAY installation CD.
If you continue to see the Device Install Status screen, try the
following:
– Unplug the USB cable and plug it in again.
– Verify you are using the correct power supply.
– Try a different cable.
– Troubleshoot your USB port.
– Try a different receive modem.
6. Select Exit.
Note: If you are using Windows XP as the installer laptop
operating system, the laptop may reboot after you attach the
USB cable. If this occurs, unplug the USB cable and repeat
the installation process after the laptop reboots.
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modem installation kit or inside the antenna box.
Installing the system
using a modem
If you are using Web commissioning, you must provide an
Ethernet cable to connect between the DW4020 and installer PC.
If Web commissioning is not available, you must provide a 9-pin
female/female (F/F) null modem serial cable. The serial cable can
be used to configure the DW4020 via the serial port. Appendix C
You will also need the installation work order. This is provided to
you by HNS.
Note: At some installation sites, the USB cable that comes with
the DW4020 may not be long enough to reach from the installer
PC to the DW4020. You may need a long USB cable.
Read this manual and obtain serial cable and installation work order
ual
an
This m
Install Spec
9-pin F-F serial cable
Install specification
Installation manual
Ethernet cable
These items are packaged in a small box inside your antenna box
Clips
Receive modem
Transmit modem
Gateway
AC cord
DC cord
Power supply
1031105-0001
USB cable
Power adapter
25-pin connector cable
Figure 6: Items required for installation
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The DW4020 uses a power supply with the part number P/N:
1031105-0001. The part number is on a sticker on the power
supply. Verify that you are using the correct power supply. Do not
use anything but the power supply supplied with the DW4020
system (1031105-0001).
The power supply
Be sure the power supply is labeled ADP 64AB B in the upper
CAUTION
• This unit’s performance may suffer if the wrong power
supply is used.
• This unit must be used with the power supply PN
1031105-0001.
• When power needs to be removed from the receive
modem, ALWAYS unplug the AC power cord from either
the wall outlet, surge protector, or power strip.
• NEVER pull the power cord from the back of the receive
modem. Doing so could damage the pins and also
cause a short in the system.
• Power supply with the part number 1031105-0001 is to
be used only in the United States and Canada.
• This unit must be used with 110-volt AC input.
• Other countries may have different standards and
requirements.
PN: 1031105-0001
ADP-64AB B
Figure 7: ADP-64AB B above bar code
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Follow the steps below and refer to the illustrations on page 13
some cables are connected to the installer laptop until
commissioning is complete. Then the DW4020 is connected to
the customer’s computer.
Assembling the
components, modem
installation method
Before beginning the installation, be sure that you have installed
page 9. In addition, confirm that DHCP is enabled to accept IP
addresses automatically on your installer laptop PC. See
CAUTION
• The components must be stacked in this order: Gateway
on bottom; transmit modem on top of Gateway; receive
• If the components are not stacked in the proper order, the
receive modem may overheat and malfunction.
• Do not block any ventilation openings. Do not install near
any heat sources such as radiators, heat registers,
ovens, stoves, or other apparatus (including amplifiers)
that produce heat.
• Recommended ventilation space around the top and
sides of the DW4020 assembly should be approximately 6
inches. Ventilation is necessary to avoid overheating.
1. Be sure the power supply is not plugged into a wall outlet,
surge protector, or power strip.
2. Lay two of the four clips on a table and mount the
then the transmit modem, then the receive modem.
3. Turn the component stack right side up and install the other
Note: The Gateway and the transmit modem have a hole at
the center of each of their four feet. There is a tab on the
bottom of each mounting clip, which snaps into place on the
Gateway when properly aligned over the hole.There is also a
tab in the middle of each mounting clip, which snaps into place
on the transmit modem when properly aligned over the hole.
4. Double-check that the components are installed in this order
from top to bottom: receive modem, transmit modem,
Gateway. See Figure 10.
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Figure 11. A USB cable connects the receive modem and the
installer PC; you may use a longer cable rather than the one
that is supplied if you wish. An Ethernet cable connects the
Gateway and the installer PC. A 25-pin connector cable
connects the transmit and receive modems. A power supply
adapter cable provides power to the Gateway and receive
modem. See Figure 11.
Installer laptop PC
Ethernet port
Ethernet cable
USB cable
Receive
modem
25-pin connector
cable
Transmit
modem
Power supply
adapter
Gateway
Four 10 Base - T/100 -
network ports
Figure 11: Attach interconnection cables
6. Attach the power supply cords to the power supply and to the
power adapter. Ensure that the power cord is tightly
connected to the power supply, receive modem, and Gateway.
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Installer laptop PC
Ethernet port
AC power
cord
Ethernet cable
USB cable
Receive
modem
Transmit
modem
Power
supply
Gateway
DC power
cord
Figure 12: Connect power cord
After you assemble the DW4020, connect it to the installer laptop
with Ethernet cable. Plug it into a 110 V wall outlet, power strip,
or surge protector. The Gateway LED display will cycle. The
cycle completes in less than a minute and follows this sequence:
Connect Ethernet,
power up, and read the
Gateway LED display
• Gateway STATUS LED is red until the power-on self-tests
are completed.
• Gateway READY LED blinks green because it is not yet
commissioned.
• Gateway STATUS LED blinks orange as it is not attached to
the receive modem.
Note: In countries outside North America, the DW4020 may be
plugged, with a physical adapter, directly into a 220 V outlet.
Different countries may have different standards and requirements.
Note: Whenever the LEDs do not function properly as described
below, check to be sure you have the correct power supply, PN
1031105-0001.
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The transmit and receive modems have their own LEDs, which
For more information on LEDs, troubleshooting, and LED
Note that normal Gateway operation alone doesn't imply normal
DW4020 operation. The installation and commissioning process
may not have been completed or software download (DLL) from
the Network Operations Center (NOC) may not have been
completed. Additional status information is available via the User
the LEDs on the receive and transmit modems. The modems’
LEDs.
Table 4: Gateway LED display
LED condition
STATUS LED
Power off
READY LED
Off
Power off or startup
diagnostics not yet run
successfully
Steady Green
Normal operation
Running software
downloaded from NOC;
successfully
commissioned
Blinking Orange
Contact between GWH Not applicable
and IRU over USB not
established; USB cable
not installed or some
other USB problem
Blinking Green
Steady Red
Not applicable
Power on tests
Not commissioned
Not applicable
1. Restart the PC so that the Gateway assigns it an IP address.
Or use the command ipconfig /renewfrom a DOS
command line prompt.
Obtain IP address and test
Ethernet connection
2. The embedded DHCP server assigns IP address =
192.168.0.2 to the PC. The DW4020 Address is set to
192.168.0.1.
3. Make sure the PC can communicate with the DW4020 over
the Ethernet connection. Enter Ping <192.168.0.1>at a
DOS prompt.
The receive and transmit modems have LEDs on their front
panels. Both modems have a green READY LED. The receive
modem has a green RX LED. The transmit modem has a green
The modems’ LEDs
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describes the basic states.
The LEDs may also indicate various conditions through blink
patterns. The numbers in brackets are the status codes discussed
If the modem does not appear to be functioning, check all cable
connections. If they are secure, cycle the power by unplugging
the power cord at the power supply and plugging it back in. A
number of conditions and corrective actions are described in
The READY LEDs should come on steady when the DW4020 is
powered up, commissioned, and when it is operating. The TX and
RX lights can also blink when the DW4020 is first powered up, or
when the DW4020 is power cycled. However, that blinking does
not indicate anything about their status.
Table 5: Basic Receive and Transmit Modem LED States
Ready OFF/RX OFF
Ready ON/RX Off
Ready ON/RX
blinking
Receive modem
Transmit modem
Modem not functioning Modem functioning, no Modem functioning,
data being received
data being received
Ready OFF/TX OFF
Ready ON/TX Off
Ready ON/TX blinking
Modem not functioning Modem functioning, no Modem functioning,
data being transmitted data being transmitted
The DW4020 is extremely reliable. If you find you cannot surf
the Internet or the DW4020 seems to have a problem, follow this
sequence of steps below to identify and fix the problem.
• Check whether the DW4020 LEDs are on or off. The LEDs
may indicate that a connection has become loose.
Reconnecting a cable or power cord may restore function.
• Check if the LEDs are blinking in a pattern. The LEDs can
blink in a pattern. The patterns correspond to the receive and
transmit status codes discussed in Transmit Status messages
discussion of the blinking LEDs.
• Check if the LEDs on the back of the Gateway or on or off.
The LAN ports on the back of the Gateway have LEDs. See
• Contact technical support. If the corrective actions described
solve the problem, contact technical support.
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Each of the four Ethernet ports on the DW4020 has two LEDs
associated with it. One LED is green and one is yellow. See
Ethernet port LEDs
The green LED will be on if power is applied to the DW4020 and
a 100baseT Ethernet device is connected to the corresponding
Ethernet port. Otherwise, the green LED will be off.
If the power is on and the light is off while a network device is
connected, then the device is a 10baseT device and the port is
autosensing.
The yellow LED will also be on when power is applied to the
DW4020. It will flash momentarily when there is LAN activity
on the corresponding Ethernet port.
Green LED
Yellow LED
Figure 13: Ethernet port LEDs
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The DW4020 installer’s computer software is basically
DIRECWAY 4.0 software with some functions, such as
interacting with a browser, removed. It is used to run Websetup
and commission the customer.
Running the DW4020
installation software,
commissioning, and
registering the
There are three registration servers, one each for consumer, small
office/home office, and enterprise. Before you select the
registration server, check the work order and confirm which
service option the customer has chosen.
customer
You will connect the installer laptop and receive modem, register
the customer, peak the satellite signal, connect the customer’s
DW4020, and confirm that they can surf the Internet.
1. Connect the receive modem to the installer laptop PC with
the USB cable.
2. Connect the installer laptop PC to an analog telephone line
or alternate connection to the Internet.
3. Select Start→Programs→Direcway Installer→Websetup. The
Welcome screen appears. Check the work order for the
service option and highlight the proper registration server.
The select Next. Follow the instructions on subsequent
screens; the instructions below will supplement the onscreen
instructions.
If the Welcome screen does not appear, the receive modem is
not connected to the PC or there is a problem with the receive
modem installation. Check cable connections. If cable
connections are not the problem, restart the PC. If that does
not solve the problem, call technical support.
Figure 14: Welcome screen; choose proper registration server
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5. Then Websetup will check for an existing connection to
WebACS. Websetup may bring up a dial-up connection if
necessary. See Figure 16.
Figure 15: Websetup - Detection
Figure 16: Dial up connection may be necessary
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Figure 17: Registration Connection - Authentication
6. Websetup will then authenticate the receive modem serial
number and enable it. See Figure 17.
7. Websetup then presents a series of forms to the user to
appearance of the forms may vary, and the forms’ content
may change from time to time. For example, a SOHO
different from a consumer screen.
Figure 18: Agreement
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Figure 19: Service Offerings
Figure 20: Registration
important. Make certain this information is recorded on
the cover of the customer’s User Guide. That way the
customer will have important information available
should their DW4020 not function and they need to call
technical support.
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8. After the customer enters registration information, write the
Figure 21: Enter ZIP code
10. Verify that the ZIP code shown matches the ZIP code for the
installation site. If not, correct it. Select Next. The Antenna
point it shows no signal strength or auto cross-pol checkbox.
11. Click through all pointing screens by selecting Next. Click
through until you reach the Websetup - Finish screen. You
will finish registration before peaking the signal.
Note: You must not disconnect the power cables before
12. When the Websetup-Finish screen appears, Websetup
receives a parameter file from the WebACS and transfers it to
the DW4020 over the Ethernet connection. If it is successful,
13. Select Finish. The unit is commissioned. A message may
appear telling you to connect and reconnect the USB cable.
Click OK. You do not need to do anything with the USB
cable at this time.
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In post-commissioning, you peak the satellite signal, attach the
DW4020 to the customer computer that has a functioning
Ethernet interface, and confirm the customer can surf the Internet.
Post-commissioning
1. Unplug the DW4020 power cord from the wall outlet or surge
protector.
Peak the satellite signal
2. Remove the phone line and network cable from the installer
laptop PC.
3. Remove the network cable from the Gateway and unplug the
USB cable from the receive modem.
4. Connect a long USB cable from the back of the receive
modem to the installer laptop PC.
5. Assemble and install the satellite antenna.
6. Place the outdoor pointing interface (OPI) in the receive
cable line if applicable.
7. Power on the DW4020.Select Start→Programs→DIRECWAY
Installer→Antenna Pointing. The Antenna Pointing - Antenna
8. Verify the ZIP code matches the antenna location and select
Next. The Antenna Pointing - Receiver screen appears. Check
the Longitude, Hemisphere, and Frequency values. See
Figure 25: Antenna Location; verify ZIP code
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Figure 26: Antenna Pointing - Receiver
9. Use the Elevation, Azimuth and Polarization values to adjust
the antenna to achieve maximum receive signal strength.
10. Select the ACP (auto cross-pol) checkbox. If it is not
available, wait five minutes; the system will update.
11. Select Next to go to the Antenna Pointing - Transmitter
Figure 27: Start manual cross-pol; pass and peak isolation
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12. Select the Manual fine pointing mode radio button.
13. Select Start Test. Adjust the antenna to achieve maximum
transmit isolation.
14. When the unit consistently passes the manual transmit test,
16. Then select the Automatic radio button and select Start Test
17. Make sure the test passes.
18. Select Exit after passing the test.
Figure 28: Manual cross-pol passed; select Stop Test
Figure 29: Auto cross-pol
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Figure 30: ACP passes; select Exit
1. Disconnect the USB cable from the installer’s PC.
2. Connect the receive modem to the Gateway using the USB
re-initialize and come back up in normal mode.
Connect to customer
computer and confirm
surfing
3. Connect the receive coaxial cable to the receive modem and
the transmit coaxial cable to the transmit modem. See
4. Plug the power cord into the wall outlet or surge protector.
5. Make sure that the READY LEDs on all three units are
STEADY GREEN. Make sure the transmit and receive cables
are clearly labeled at the connectors.
6. The DW4020 is now commissioned. Connect the customer’s
computer and the Gateway with Ethernet cable. See
Figure 31. If the computer has a functioning and properly
configured Ethernet interface, it will surf the Internet. If the
customer cannot surf, see the instructions below.
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If the customer cannot surf, configure your installer laptop so its
network properties match the customer’s. Refer to Appendix D for
exact instructions for setting your network properties. Then:
If the customer cannot surf
1. Start a Web browser on the installer laptop.
2. Enter the Gateway IP address in the browser URL location
bar and press Enter. If the DW4020 is functioning, the User
Interface appears.
3. Enter an URL for a known Web site, such as abc.com or
cnn.com. If it appears, the DW4020 is functioning and any
problem exists on the customers computer. The customer’s
network properties may not be configured properly, or there
may be some other system problem. They should consult the
User Guide for support information.
AC power
cord
Receive
modem
Transmit
modem
Power
supply
DC power
cord
Gateway
Ethernet cables
Short USB cable
Figure 31: Final cabling
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Chapter 3
The User Interface
In the Version 1.0 software, DW4020 status information was
available on menus accessed through the serial port via
Hyperterminal. In the Version 2.0 software, a browser-based User
Interface provides information about system status, system
configuration, online documentation, and firewall configuration.
Access it if the DW4020 doesn’t seem to be functioning properly,
to find system information for configuring networks, or to check
system performance. Clicking on items highlighted in blue
displays help information or other documentation.
Note: The information about the DW4020 User Interface in this
manual is the same as that in the DW4020 User Guide (HNS
1032564-0001 Rev A). Each DW4020’s software is updated
periodically via satellite link. The updates should be reflected in
User Interface Help if they are not documented in the User Guide
or in this manual. Always refer to User Interface Help and the
latest revision of the User Guide, as well as this manual, for the
latest information about the User Interface and DW4020 software.
If at any time you are unable to access the User Interface, take the
steps below:
• Make sure the Gateway is powered up. The STATUS and
READY LEDs should be lit continuously. If they are not,
power cycle the DW4020 by unplugging the power cord from
the wall outlet or surge protector, waiting 10 seconds, and
plugging it back in. Refer to the Chapter 5 Troubleshooting
for more information.
• If the User Interface is still not accessible, check the Ethernet
cable connection from the computer to the DW4020. Check
that the power adapter is securely attached to the receive
modem and Gateway. Also check the computer’s network
configuration.
• If the User Interface is still not available, contact technical
support.
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How to access the User The User Interface is accessed through any browser, such as
Internet Explorer or Netscape. Follow the steps below to set up an
Interface
entry for the User Interface in a browser. The steps are written for
Internet Explorer or Netscape, but you can use a similar
procedure for any browser.
1. Go to Start→Programs→Internet Explorer (or Netscape). The
browser interface appears.
2. Place the cursor in the Internet Explorer Address bar or the
Netscape Location Bar.
3. Type the DW4020 IP Gateway address. The should have been
written this on the front of this manual when the installer
finished configuring the unit.
Figure 32. .
Figure 32: The User Interface Home screen
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The Home screen has system indicators across the top. There are
menu items in a column along the left. The system indicators
consist of the following:
The Home screen
• System Status reports the strength of the receive signal, the
status of the receive and transmit modems, and software
download status. If System Status is colored green, the
DW4020 is functioning properly. If there is a problem, it is
colored red and the word “PROBLEM” appears below
System Status. See Figure 33.
• Receive Statistics reports data on receive modem
functioning.
• Transmit Statistics reports data on transmit modem
functioning.
• System Information provides information such as the
Gateway IP address, subnet mask, site ID, and what features
are enabled.
Figure 33: System Status reports PROBLEM
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The System Status
indicator
Clicking on System Status will display a System Status screen.
Figure 34: System Status screen
The screen consists of the following fields.
• Signal Strength - indicates the signal quality factor (SQF),
which is the strength of the receive signal. If SQF is 30 or
below, the antenna must be repointed by a certified
professional installer.
• Transmit Status - indicates the status of the transmit modem.
• Receive Status - indicates the status of the receive modem.
• Software Download Status - indicates the status of the
downloading of software from the Network Operations
Center (NOC). If the DW4020 has been commissioned, this
message will generally indicate that software download has
been completed. Occasional updates are automatically
downloaded to the DW4020 from the NOC. The purpose of
these updates is to enhance DW4020 performance.
Remember that this software is not placed on the customer’s
computer, but on the DW4020. No action is required from
them. The software version number in the System
Information page indicates the current version of the
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If there is a problem with any of these four status elements, a red
exclamation mark will appear in the status field. In addition, if
there is a problem with the Transmit Status or Receive Status, an
error message and an error code will appear in blue. You can click
on the error message and an explanation of the error condition
tables below provide a more detailed explanation of status codes,
error messages, and corrective actions.
Figure 35: On-line help for status messages
The following messages may appear in the Transmit Status field.
The Comments section gives more information about each code,
and describes any possible corrective measures. See Figure 36 on
page 41 for corrective measure involving cables or the power
supply. Power cycling means to unplug the power cord from the
wall outlet or surge protector, wait 10 seconds, and plug it back
in.
Transmit Status messages
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If corrective measures do not solve a problem, contact technical
support.
TxCode 8 means the transmit modem is working properly. It is
the code you will see most of the time.
Note: Remember that IRU refers to the receive modem, and that
ITU refers to the transmit modem.
Table 6: Transmit status (TxCode) messages and corrective actions
Numeric
TxCode
Message Displayed
Comments
0
The transmitter is not
connected to the receiver
This status will occur only if the Indoor Transmit Unit (ITU) is not connected to
the Indoor Receive Unit (IRU). It can result for the following reasons:
• The 25-pin parallel cable is not properly connected to the Indoor Receive Unit
or Indoor Transmit Unit: Check the cable and make sure the ends are securely
fastened.
• Indoor Transmit Unit failure. The Indoor Transmit Unit has failed and may need
to be replaced.
1
The transmitter has been
disabled by the Network
Operations Center
This condition occurs when the transmitter is not enabled. A transmitter may be
disabled for short periods of time by the NOC for service or troubleshooting. It
may also be disabled if the user discontinues the satellite service. If this
condition persists, it can only be corrected by requesting that the unit be
enabled.
2
3
The transmitter has been
placed in test mode by the
Network Operations Center
This status requires no user action and this test usually completes in 15 minutes
or less. This condition occurs when the NOC places the transmitter into special
transmission modes to measure the performance of the transmitter. When in this
mode, the unit is unable to transmit normal user data to the NOC.
The transmitter is locking to
the receive carrier
This condition occurs during initial startup or when the receiver is locking to the
receive signal. It is normal for this condition to persist for up to 10 seconds. If this
condition
persists for more than 10 seconds, try disconnecting and reconnecting the
receiver coaxial cable and wait 10 seconds. If the situation still persists, then the
Indoor Transmit Unit may need to be replaced.
4
The transmitter is not
This condition indicates that something is not operating properly in the
responding to commands sent Receive/Transmit Unit configuration. Perform the following actions to attempt to
from the receiver
recover from this condition:
• Verify that the Indoor Receive and Transmit Units are securely connected with
a 25-pin parallel cable.
• Reset the IRU by unplugging the IRU power cord from the wall socket and then
plugging the power cord back into the wall socket. This will reset the Indoor
Receive and Transmit Units.
This condition could also be caused if the power supply is faulty. If this condition
cannot be resolved by following the steps listed above, then you may need to
replace the power supply, the Receive/Transmit unit cable and/or the Transmit
Unit.
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Table 6: Transmit status (TxCode) messages and corrective actions
5
6
The transmitter is not locked to No action is necessary if this condition occurs from time to time and quickly
the network timing
resolves itself. If this issue persists, it is likely due to a NOC-related service
issue. The condition may also be due to Indoor Transmit Unit failure; in rare
cases, the Transmit unit may fail and may have to be replaced.
The transmitter is not available Check your receive signal. This condition occurs when the Indoor Receive Unit is
because the receiver is not
detecting a signal or is not
locked to the correct
network
not receiving a good signal. The receiver must be locked to the correct network
in order for the transmitter to operate. If the receiver is not locked (no signal) or is
locked to the wrong network, the transmitter is unable to transmit data. Please
verify that you have a good signal strength by going to the Receive Statistics
page. This could also be caused by inclement weather.
7
The transmitter is not available This condition occurs when the transmitter is disabled for safety reasons. If this
because the satellite receiver
is not tuned for normal
operation
happens during installation or commissioning, the installer will close the Antenna
Pointing program and resolve the condition.
8
9
The transmitter is available
This is the normal operational state and indicates that the transmitter is ready to
transmit data.
The transmitter is adjusting for This condition typically occurs when the DW4020 is first commissioned or the
optimal network timing
first time it is used for data traffic. This must occur before the Indoor Transmit
Unit is able to transmit successfully. Typically, this process usually takes less
than a minute.
10
11
The transmitter is unable to
This condition indicates that the unit has stopped attempting to transmit user
communicate with the Network data because there were a number of failures in sending data to the NOC over
Operations Center
the satellite link. This could be the result of weather conditions causing lost
packets or return channel equipment failures in the NOC.
The transmitter is not available This condition indicates that the installed software version is not recent enough
because the receiver software to operate on the network. New software will be required from time to time due to
is out of date
network infrastructure and capability upgrades and in order to maintain network
efficiency and fix any known problems.The system will automatically update the
software version to ensure that you can enjoy uninterrupted operation. If you do
not use the DW4020 for a long period of time and miss the updates, you may
need to contact Customer Care.
12
13
The transmitter is not
receiving network control
messages from the Network
Operations Center
This condition indicates a NOC equipment outage. This may be a transient
condition and the system should recover automatically.
The transmitter is unable to
range because it cannot
communicate with the
Ranging is the process that adjusts the satellite transmitter timing and
power. The satellite transmitter conducts ranging as needed to ensure
that it can communicate successfully with the Network Operations
Center.This condition can indicate any of the following:
• The NOC is not receiving ranging information from the transmitter. This may
indicate a transmit problem at the NOC. This should get cleared in a few
minutes.
Network Operations Center
• The transmitter is unable to achieve enough transmit power to send ranging
information to the NOC. Make sure that the power supply is correct. The power
supply should be Part #1031105-0001.
• The transmitter is sending incorrect timing data because the wrong zip code or
latitude/longitude information was entered during installation.
• The outdoor transmitter unit (ODU)--that is, the antenna--is not operating
properly or is not properly connected to the ITU. Please ensure that the
transmit cable is securely fastened to the Transmit Unit.
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Table 6: Transmit status (TxCode) messages and corrective actions
14
The transmitter is not available This condition indicates that the transmitter is not operational because ranging
because ranging has failed
has failed. Ranging is the process that adjusts the satellite transmitter timing and
power. The satellite transmitter conducts ranging as needed to ensure that it can
communicate successfully with the Network Operations Center. The ranging
failure may happen due to the antenna becoming misaligned or if repeated
attempts to range do not succeed. This condition may also be caused due to
adverse weather conditions. In rare cases, this may also indicate NOC issues
but should clear within a few minutes.If the system was operational in the past
and you see these messages repeatedly, you can try to force range by
performing the Connectivity Test.
15
16
17
The transmitter is waiting for a This condition occurs if the system is busy adjusting power and timing for other
ranging request to be
processed by the Network
Operations Center
users. This process may take up to a minute or more.
The transmitter is waiting for a This condition occurs when the system is unable to provide transmit bandwidth.
transmit request to be
processed by the Network
Operations Center
This occurs when many users sign-on simultaneously. It should clear in a few
minutes automatically.
The satellite transmitter is
unable to obtain an available
transmission rate
This condition occurs if the transmitter cannot successfully range. Ranging is the
process that adjusts the satellite transmitter timing and power. The satellite
transmitter conducts ranging as needed to ensure that it can communicate
successfully with the Network Operation Center. A possible cause is that the
transmitter could not achieve enough power to transmit. This is likely caused
because the antenna is not accurately pointed. However, it may also be a
transmitter power problem. Check the power supply and make sure that it is Part
# 1031105-0001.
18
The transmitter is requesting a This condition can occur during installation when the Antenna Pointing program
transmit pointing test
on the installation computer requests that the transmitter perform a transmit
pointing test. This condition persists until the NOC responds that the transmitter
is either actively performing the pointing test or is queued to perform the test
when test resources become available in the NOC. This is a normal condition for
initial installation. The transmitter may also periodically go into this condition for
short periods of time (less than 5 seconds) to perform periodic transmit pointing
tests. These periodic tests are performed to ensure that the antenna is pointed
accurately.
19
20
The transmitter is queued for a This condition can occur during installation when the Antenna Pointing software
transmit pointing test
on the installation computer requests a transmit pointing test and the NOC has
responded that the transmitter is queued for the next available test time. It may
also occur when the transmitter is performing periodic background transmit
pointing tests at the same time that other users on the network have requested
tests. This is a normal state after initial installation.
The transmitter is performing a This condition occurs when one of the following tests are active:
transmit pointing test
• During installation, the Antenna Pointing software requests that the transmitter
perform a transmit pointing test. This condition will persist until the Antenna
Pointing software exits from the transmit pointing test mode.
• The DW4020 performs a periodic background transmit pointing test to make
sure that the antenna is still pointed correctly. This periodic test takes less than
5 seconds.
If the problem persists, try power-cycling the DW4020 by unplugging the wall
outlet and plugging it back in.
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Table 6: Transmit status (TxCode) messages and corrective actions
21
22
The transmitter is disabled
because a transmit pointing
test failed
This condition occurs when the transmitter fails a transmit pointing test. This
indicates that the transmitter did not meet the minimum specifications required.
This is likely due to an antenna installation problem. The antenna installer needs
to fine-point the antenna. The transmitter will not transmit until the transmit
pointing test passes.
The transmitter is disabled
pending a transmit pointing
test
This condition occurs when the transmitter is required to perform a periodic
background transmit pointing test, but has not been able to perform the test
within the time window required. The transmitter is expected to be in this
condition for no more than two minutes at random periodic intervals. This
condition can also occur after the transmitter is first powered on after it has been
powered off for more than a day. If the unit remains in this condition for more
than two minutes, then the automated transmit pointing components in the NOC
are likely experiencing problems. This condition should clear in a few minutes.
23
The transmitter is disabled
because a transmit pointing
test cannot be performed
This condition occurs when the transmitter cannot perform the transmit pointing
test when initially installed or when the transmitter is required to range. The
condition indicates that the NOC components needed to perform the transmit
pointing test are not operational.
AC power
cord
Receive
modem
Transmit
modem
Power
supply
DC power
cord
Gateway
Ethernet cables
T0091013
Figure 36: DW4020 connections
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CAUTION
Never unplug the power cord from the DW4020 while it is powered
on. Always disconnect the power cord from the power supply, wall
outlet, or surge protector.
The following messages may appear in the Receive Status field.
The Comments section gives more information about each code,
and describes any possible corrective measures. See Figure 36 on
page 41 for corrective measure involving cables or the power
supply. Power cycling means to unplug the power cord from the
wall outlet or surge protector, wait 10 seconds, and plug it back
in.
Receive Status messages
If corrective measures do not solve a problem, contact technical
support.
RxCode 5 means the receive modem is working properly. It is the
code you will see most of the time.
Note: Remember that IRU refers to the receive modem, and that
ITU refers to the transmit modem.
Table 7: Receive code (RxCode) messages and corrective actions
Numeric
RxCode
Message Displayed
Comments
0
The receiver is not connected
Please make sure that the Indoor Receive Unit is connected to the
Gateway via the USB cable. If the cable is connected and you still
see this message, use the following steps for troubleshooting:
• Make sure the power supply is correct. The power supply should
be Part # 1031105-0001.
• Try power-cycling the DW4020 by unplugging the power cord
from the wall outlet and then plugging it back in.
• Try using a different USB cable.
• If none of the above resolve the issue, you may need to replace
the Indoor Receive Unit.
1
2
The receiver is in pointing mode
This condition indicates that the installer is performing antenna
pointing. In this mode, the transmitter is disabled for safety
reasons since the installer is working near the dish. If this occurs
during normal operation, try power-cycling the DW4020 by
unplugging the power cord from the wall outlet and then plugging
it back in.
The receiver is in factory or NOC mode
This status is for DW4020 testing purposes only. You should never
see it. If this occurs during normal operation, try power-cycling the
DW4020 by unplugging the power cord from the wall outlet and
then plugging it back in.
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Table 7: Receive code (RxCode) messages and corrective actions
3
The receiver is not locked to a signal
If the DW4020 had been operating previously, this status is
probably due to inclement weather conditions and will be
corrected when the weather improves. This condition can also
indicate that the IRU is unable to receive the signal from the NOC.
This is also associated with a signal level less than 30. This
occurs if there is a weather outage at the user location, a NOC
outage due to inclement weather or other reasons, a misaligned or
faulty antenna, or faulty cabling. If this keeps happening under
normal weather conditions, make sure the power supply is correct.
The power supply should be Part # 1031105-0001. If the power
supply is correct, try power-cycling the DW4020 by unplugging the
power cord from the wall outlet and then plugging it back in.
4
The receiver is locked to the wrong network This condition should only be seen during installation and occurs
when the receiver is locked to a signal, but the signal ID does not
match the ID that was assigned to the user during commissioning
or the ID that was entered by the installer during manual pointing.
If this occurs during normal operation, it may be due to the user
changing acquisition parameters, including frequency and/or
location of satellite, or the antenna becoming misaligned.
5
6
The receiver is operational
This is the normal operating state where the receiver is receiving
data from the NOC. Only when the receiver is in this state will the
transmitter operate correctly.
The receiver is not detecting a signal
This condition occurs when the IRU is not detecting any type of
radio signal from the antenna. This could indicate that the cabling
between the receiver and the antenna is faulty or that the receiver
itself is faulty. Check that the cables are firmly connected on the
DW4020. Also, make sure that the power supply is correct. The
power supply should be Part # 1031105-0001. Try power-cycling
the DW4020 by unplugging the power cord from the wall outlet
and then plugging it back in.
7
The receiver is locked to an unknown
network
This condition should only be seen during installation and occurs
when the receiver is locked to a signal but there is no DIRECWAY
Network ID on that signal. If this occurs during pointing or
commissioning, the antenna has not been pointed correctly. If it
occurs during normal operation, it may be due to the user
changing acquisition parameters, including frequency and/or
location of satellite, or the antenna becoming misaligned. The
former condition can be corrected by re-commissioning the site.
The latter requires an antenna repointing.
The Receive Statistics screen contains information about how
the receive modem is processing frames. It contains the following
fields. See Figure 37.
Receive Statistics
• Receive Status - displays receive modem status messages.
Click on Receive Status to view a list of receive status
messages. Click on a receive status message to learn more
about it.
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• Frames Received - displays the number of frames the receive
modem has received.
• Frames with Errors- displays the percentage of bad frames
received.
• Bad Key Frames - packets received over satellite that could
not be decrypted successfully. A non-zero value indicates
commissioning problems. (Clicking on the field will display
this definition in the Web interface.)
Figure 37: Receive Statistics screen
The Transmit Statistics screen contains information about how
the transmit modem is processing transmissions. It contains the
Transmit Statistics
• Transmit Status - displays receive modem status messages.
Click on Transmit Status to view a list of transmit status
messages. Click on a transmit status message to learn more
about it.
• Number of Successful Transmissions- displays the number of
successful transmissions.
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• Number of Failed Transmissions- number of times the ITU
failed to transmit data.
• Number of Packets Submitted for Transmission- number of
packets submitted to the transmit modem.
Figure 38: Transmit Statistics screen
System Information
The System Information screen displays a number of fields.
While all the information may be useful at some time, the most
important is discussed below.
Note: Print the System Information screen and give it to the
customer. It will be helpful should they need to call Customer
Care and not be able to access the User Interface.
• Gateway section
– Commissioned - displays whether the DW4020 is
commissioned.
– IP Address - use this as the default Gateway on the
computers connected to the DW4020.
– Subnet Mask - use this as the default Gateway on the
computers connected to the DW4020.
• Indoor Receive Unit (Receive Modem) section
– Serial number - needed to identify customer’s receive
modem when troubleshooting.
• Satellite Transponder section
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– Longitude - displays the satellite’s longitude.
– Receive Polarization - polarization orientation.
• Software Configuration section- WEB Acceleration, NAT,
and DHCP are enabled or disabled as per a customer’s
service offering and cannot be changed by the customer.
– Web Acceleration -Allows fast access to Internet
Web sites and high-speed data download from the Internet.
– Network Address Translation (NAT)- typically
used to allow multiple computers to share a single address
on the Internet. It also allows preconfigured remote
networks to be integrated easily with the DIRECWAY
network.
– Dynamic Host Configuration Protocol (DHCP)
if enabled, this simplifies the network configuration of the
computers. The computers just need to be set up to “Obtain
IP address automatically.”
– Firewall - can be enabled by the user and configured to
help deflect unwanted Internet traffic.
Figure 39: System Information; print and save this screen
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You may lose connectivity to a particular server due to the
Internet and/or the satellite network being heavily loaded or due
to the server being down. If possible, check connectivity to some
other server on the Internet to ensure it is not a server specific
problem. Follow the procedure below for troubleshooting:
The Connectivity Test
Menu
Use the Connectivity Test from the left pane to check
connectivity to the DIRECWAY NOC.
Network Operations Center
(NOC) Connectivity
Note: You may want to open a second browser window to be able
to access this help page while conducting the Connectivity Test.
1. Click on Connectivity Test on the left hand side of the User
2. Run the test. A message will appear, informing you if the test
was successful.
If the connectivity test succeeds, try pinging the NOC Router
Address from the computer. This address can be obtained
If this succeeds, skip to the Internet Connectivity test below.
If this fails, the default gateway is probably not set correctly
on the computer’s network settings. The default Gateway
should be the Gateway IP address. Fix this in the computer's
network settings and repeat the connectivity test.
If the test still fails, power-cycle the DW4020 by unplugging
the power cord from the wall outlet and plugging it back in. If
this doesn't fix the problem, call Customer Care.
If the connectivity test fails, check the DW4020 configuration
via the System Information page.
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Figure 40: Connectivity Test
Try pinging the DIRECWAY Internet server
(www.direcway.com).
Internet Connectivity
Note: If you are an enterprise customer and your enterprise has a
backbone connection to the Network Operations Center, the
DIRECWAY Internet server may not be accessible. In such a case,
you should try to ping your enterprise's Internet server.
If pinging succeeds, the problem is probably in the particular
server that you were trying to access or there may be a temporary
Internet or your enterprise's backbone connection outage. Please
try repeating the test after sometime.
If pinging fails, check your DNS Server settings in System
Information. If you are using the DIRECWAY DNS Server, make
sure the DNS Settings include the "198.77.116.8" address. If you
are a business customer contact your System Administrator.
If this problem persists, please contact Customer Care for further
assistance.
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The Firewall Menu
The User Interface enables customers to enable a firewall and
configure its rules. If they use the firewall, they must configure it
properly for maximum protection. They should be aware that
even an optimally configured firewall cannot be guaranteed to
keep out all potentially harmful traffic.
A discussion of the principles applied when setting up a firewall
is in the DW4020 User Guide (HNS 1032564-0001). There is
also a great deal of information in the FAQ section of the Web
interface Help menu.
Note: It is important to remember that the firewall checks
inbound packets only. If you want to check outbound packets,
you must obtain another firewall and install it on the network or on
selected hosts on the network.
The firewall allows configuration of up to 10 rules for blocking
packets received over the satellite link. Five port numbers or 5
protocol types in each rule. Which Source IP Addresses are
examined for each rule can also be specified. The table below lists
some common port numbers and protocols.
The Settings Menu
1. Open the User Interface and go to Home→Firewall→Settings.
2. Select the Enable Firewall checkbox to enable the firewall.
3. Determine which rule number you want to create or modify.
4. Select a rule type.
5. Select a port or protocol number.
6. Type the source IP address that you want the firewall to check
for.
7. You can leave the subnet mask set at 255.255.255.255. Set
the Subnet Mask to 0.0.0.0 if you would like to block access
from everywhere in a particular rule.
8. Click on the Save Configurations button to save the firewall
settings.
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Table 8: Port numbers and protocols
Port Number
Internet Application or Protocol
Echo
7
21
FTP control port
23
Telnet
25
Simple Mail Transfer Protocol (SMTP)
Domain Name Server (DNS)
Gopher
53
70
79
Finger
80
Hyper Text Transfer Protocol (HTTP)
Remote Telnet Service (RTELNET)
Post Office Protocol - Version 3 (POP3)
Network News Transfer Protocol (NNTP)
Internet Relay Chat (IRC)
107
110
119
6667
The Help Menu contains information about receive and transmit
modem status messages, the firewall, installation,
troubleshooting, and other topics. Review it to become familiar
with the User Interface and with the DW4020. Access it by
clicking on Help.
The Help Menu
Note: Print the answer to the entry in the User Interface
Troubleshooting page, “I am unable to access the DW4020 Web
interface. Ping doesn’t work also.” The information on this page
will help you if you cannot access the User Interface.
Figure 42: Help Menu
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myDIRECWAY
Customers can click on myDIRECWAY to go to
myDIRECWAY.com. Members get access to a variety of
interactive tools and can check usage online, test satellite speed,
manage passwords, and more.
myDirecway.com is not an installer resource.
Software updates and
the User Interface
The DW4020 software will be updated periodically to provide
access to new features and for performance enhancements. Any
updates that are not discussed in the User Guide can be found on
the What's New page in the DW4020 User Interface. The link to
this page will be available from the User Interface Home page
and also from the FAQ page.
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Chapter 4
DW4020 LEDs and troubleshooting
The DW4020 LEDs can provide information for troubleshooting
units that aren’t functioning at all, or don’t seem to be functioning
as well as they might. The LEDs can show modem or Gateway
operational status--whether they are connected, powered up, or
working at al. The LEDs can also blink in patterns that
correspond to the TxCode and RxCode discussed in The System
have LEDs that indicate their status.
The DW4020 LEDs
The receive modem has a RX and a READY LED. The transmit
modem has a TX and a READY LED. The Gateway has a
STATUS and READY LED.
Note: Whenever the LEDs do not function properly as described
below, check to be sure you have the correct power supply, PN
1031105-0001.
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This section describes the LEDs’ appearance during typical
DW4020 operation. It also describes their appearance when some
basic problem is occurring.
DW4020 LEDs status
When the DW4020 is powered on but not receiving or
READY LEDs are continuously lit. Both the Gateway LEDs are
continuously lit.
Normal operation, no
transmit or receive
Modems’ READY
LEDs continuously lit
Both Gateway LEDs
continuously lit
Figure 43: DW4020 normal operation, no data received or transmitted
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During normal DW4020 operation, the modems’ READY LEDs
are continuously lit, the RX and TX LEDs blink as they pass data,
and both the Gateway LEDs are continuously lit, as shown in
Normal operation, data
being sent and received
RX LED blinks as
modem passes
data; READY
LED on
continuously
TX LED blinks as
modem passes
data; READY
LED on
continuously
Gateway STATUS
and READY LEDs
continuously lit
Figure 44: Normal operation, data being sent and received
If the DW4020 is not operating normally and the receive
following steps:
Problem: receive modem
READY LED not on
• Check to make sure the power cord is securely attached to the
receive modem and plugged into the wall outlet or surge
receive modem READY led will come on when power is
restored.
• If securing the power cord does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the Receive modem READY LED still does not come on,
power cycle the DW4020 by unplugging the power cord from
the wall outlet or surge protector, waiting ten seconds, and
plugging it back in.
• If the problem persists, contact technical support.
Note: Often, if the receive modem READY LED is not lit, the
other modem LEDs will not be lit either.
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Receive modem READY LED
not lit. Note that in many
cases other modem LEDs
will not be lit either.
Figure 45: Receive modem READY LED not lit
AC power
cord
Receive
modem
Transmit
modem
Power
supply
DC power
cord
Gateway
Ethernet cables
T0091013
Figure 46: DW4020 power and cable connections
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If the transmit modem is not operating normally and its READY
Transmit modem READY
LED not lit
• Check that the receive modem READY LED is continuously
lit. If not, try the sequence in Problem: receive modem
• Check to make sure the power cord is securely attached to the
receive modem and plugged into the wall outlet or surge
transmit modem READY led may come on.
• If securing the power cord does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the transmit modem READY LED still does not come on,
power cycle the DW4020 by unplugging the power cord from
the wall outlet or surge protector, waiting ten seconds, and
plugging it back in.
• If the problem persists, contact technical support.
Receive modem READY LED
continuously lit, showing that it is
functioning
Transmit modem READY LED
not lit
Figure 47: Transmit modem READY LED not lit
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If the Gateway does not seem to be functioning and its LEDs are
not lit, and the receive modem READY LED blinks as shown in
Figure 48, take the following steps.
Gateway LEDs not lit
• Check to make sure the power cord is securely attached to the
Gateway and receive modem and plugged into the wall outlet
loose, the Gateway and receive modem READY LEDs will
come on when power is restored.
• If securing the power cord does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the Gateway READY LED still does not come on, power
cycle the DW4020 by unplugging the power cord from the
wall outlet or surge protector, waiting ten seconds, and
plugging it back in.
• If the problem persists, contact technical support.
Receive modem READY
LED blinks
Gateway LEDS are
not lit
Figure 48: Gateway LEDs not lit
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If the Gateway does not seem to be functioning and its STATUS
LED flashes amber, and the receive modem READY LED blinks
Gateway LEDs flash, receive
modem READY LED off or
flashing
• Check to make sure the USB cable is securely attached to the
loose, the Gateway and receive modem READY LEDs will
come on when it is reattached.
• If securing the USB cable does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the Gateway STATUS LED still does not come on
continuously, power cycle the DW4020 by unplugging the
power cord from the wall outlet or surge protector, waiting
ten seconds, and plugging it back in.
• If the problem persists, contact technical support.
Receive modem READY
LED blinks or is not lit
Gateway STATIS LED
blinks amber
Figure 49: Gateway STATUS LED blinks amber
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The DW4020 modems’ READY LEDs can blink in various
patterns. These patterns correlate to the status codes discussed in
access to the User Interface. It will be easier to find out what the
status of the DW4020 is via the interface than the LED status
blinking. The blink patterns are described below for your
information.
LED blinking indicating
status codes
Transmit
READYLED
Pattern
Corresponding transmit status messages
Off
On
4(or powered off)
8
1
2 Long,
1 Short
2 Long,
2 Short
2
2 Long,
3 Short
11
3
1 Long,
1 Short
1 Short
2 Short
3 Short
4 Short
5
10, 13, 14, 15,16, 21, 22, 23
6, 7
12, 17
Slow
9,18,19,20
Alternating
Fast
Alternating
The ITU interface testing – This is a continuous fast blinking pattern, with the Transmit LED being the
inverse of the Ready LED. No corresponding message.
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Receive
READY LED
Pattern
Corresponding receive status message
Fast
Alternating
Prior to downloading software– This is a continuous fast-blinking pattern, with the RX LED being the inverse
of the Ready LED. No corresponding message.
Slow
1
Alternating
On
5
1 Long,
1 Short
3,6
1 Long,
2 Short
4,7
1 Short
0
2
1 Long,
1 Short,
1 Long
Table 9: Receive modem READY LED blink patterns
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Each of the four Ethernet ports on the DW4020 has two LEDs
associated with it. One LED is green and one is yellow. See
Ethernet port LEDs
The green LED will be on if power is applied to the DW4020 and
a 100baseT Ethernet device is connected to the corresponding
Ethernet port. Otherwise, the green LED will be off.
If the power is on and the light is off while a network device is
connected, then the device is a 10baseT device and the port is
autosensing.
The yellow LED will also be on when power is applied to the
DW4020. It will flash momentarily when there is LAN activity
on the corresponding Ethernet port.
Green LED
Yellow LED
Figure 50: Ethernet port LEDs
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Glossary
D
H
Dotted decimal notation - An IP address
Host - In packet- and message-switching
consists of 32 bits. Rather than working with 32
bits at a time, it is a common practice to segment
the 32 bits of an IP address into four 8-bit fields
called octets. Each octet is converted to a
decimal number (the Base 10 numbering
system) in the range 0-255 and separated by a
period (a dot).
communications networks, the collection of
hardware and software that makes use of packet
or message switching to support user-to-user,
i.e., end-to-end, communications, interprocess
communications, and distributed data
processing. More simply, any computer that has
full two-way access to other computers on the
Internet.
Dynamic Host Configuration Protocol (DHCP) -
a communications protocol that lets network
administrators manage centrally and automate
the assignment of Internet Protocol (IP)
addresses in an organization's network.
I
Internet Assigned Numbers Authority (IANA) -
the organization that has overseen the allocation
of Internet Protocol addresses to Internet service
providers (ISPs).
.
E
Internet protocol (IP) - The method or protocol
by which data is sent from one computer to
another on the Internet. Each computer (known
as a host) on the Internet has at least one IP
address that uniquely identifies it from all other
computers on the Internet. The protocol within
TCP/IP that governs the breakup of data
messages into packets, routing the packets from
sender to destination network and station, and
reassembling the packets into the original data
messages at the destination.
Enterprise - an entity autonomously operating a
network using TCP/IP and in particular
determining the addressing plan and address
assignments within that network.
G
Gateway - the receive modem, the transmit
modem, and the Gateway host when cabled
together form the Gateway. Also called the
DW4020.
Internet service provider (ISP) - A business that
supplies Internet connectivity services to
individuals, businesses, and organizations.
Some ISPs are large national or multinational
corporations that offer access in many locations,
while others are limited to a single city or
region.
Gateway host - downloads code to the IRU,
performs PEP and decompression functions, and
monitors and controls the operation of the
IRU/ITU. In addition, the Gateway host
supports configuration, status monitoring, and
commissioning using a "dumb terminal"
connected to an asynchronous serial port.
• Glossary
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IP address - a 32-bit number that identifies each
sender or receiver of information that is sent in
packets across the Internet. An IP address has two
parts: the identifier of a particular network on the
Internet and an identifier of the particular device
(which can be a server or a workstation) within
that network. On the Internet itself - that is,
between the router that move packets from one
point to another along the route - only the network
part of the address is looked at.
R
Receive modem - downloads data from the
satellite. Also known as indoor receive unit
(IRU).
Router - a device or, in some cases, software in a
computer, that determines the next network
point to which a packet should be forwarded
toward its destination.
S
L
Signal quality factor (SQF) - an integer value
from 0-99 that indicates the strength of the
received satellite signal relative to noise.
Local area network (LAN) - a group of
computers and associated devices that share a
common communications line and typically
share the resources of a single processor or
server.
Subnet mask - a 32-bit value that is used to
distinguish the network ID from the host ID in
an arbitrary IP address. Each host on a network
requires a subnet mask.
N
National Operations Center - A place from
which a network is supervised, monitored, and
maintained.
T
TCP/IP internet protocol suite - the basic
communication language or protocol of the
Internet.
Network Address Translation - a method of
connecting multiple computers to the Internet
(or any other IP network) using one IP address.
TCP spoofing - technique of using local devices
to answer TCP overhead messages. Also known
as Turbo Internet.
P
Performance enhancing proxy (PEP) - modules
that provide TCP acceleration. PEP is used to
improve the performance of the Internet
protocols on network paths where native
performance suffers due to characteristics of a
link or subnetwork on the path.
Transmission control protocol (TCP) - a set of
rules (protocol) used along with the Internet
Protocol (IP) to send data in the form of
message units between computers over the
Internet. While IP takes care of handling the
actual delivery of the data, TCP takes care of
keeping track of the individual units of data
(called packets) that a message is divided into
for efficient routing through the Internet.
Private IP addressing - A computer on the
Internet is identified by its IP address. In order
to avoid address conflicts, IP addresses are
publicly registered with the Network
Information Centre (NIC). Computers on private
TCP/IP LANs however do not need public
addresses, since they do not need to be accessed
by the public. For this reason, the NIC has
reserved certain addresses that will never be
registered publicly. These are known as private
IP addresses.
Transmit modem - sends (uploads) data to the
satellite. Also known as indoor transmit unit
(ITU).
• Glossary
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Turbo Internet - A high-speed satellite link from
the Internet, allowing users to download
information at a very high rate. Turbo Internet
services provide asymmetric connections
between a customer PC and the Internet. This
enables users to download very large files at a
very high rate of speed.
• Glossary
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• Glossary
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Abbreviations and Acronyms
Abbreviation
Term
or Acronym
DHCP
GWH
IANA
IP
dynamic host configuration protocol
Gateway host
Internet Assigned Numbers Authority
Internet protocol
IRU
indoor receive unit
ISP
Internet service provider
indoor transmit unit
ITU
LAN
NAT
NMC
NOC
OPI
local area network
network address translation
network management center
network operations center
outdoor pointing interface
performance enhancing proxy
receive
PEP
RX
SDL
TCP
TCP/IP
TX
software download
transmission control protocol
transmission control protocol/Internet protocol
transmit
• Abbreviations and Acronyms
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• Abbreviations and Acronyms
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Appendix A
Lat/Long Decimals to Minutes Table
Use the following procedure to determine your latitude and
longitude decimal to minutes conversion.
1. Enter the whole number part of the site's longitude into the
VSAT Longitude in degrees field in the Configure Boot
Parameters screen.
2. Take the two digits immediately to the right of the longitude
decimal point (without doing any rounding) and use the chart
below to translate these two digits into the number of
minutes.
3. Enter the minutes number into the VSAT Longitude in minutes
field in the Configure Boot Parameters screen.
4. Repeat steps 1, 2, and 3 for the VSAT Latitude in degrees and
VSAT Latitude in minutes fields.
For example, if the site's coordinates are:
Longitude: 77.2395 deg. West
Latitude: 38.8351 deg. North
You should enter:
VSAT Longitude in degrees: 77
VSAT Longitude in minutes: 14
VSAT Longitude Hemisphere (0 = East, 1 = West) <1>: 1
VSAT Latitude in degrees: 38
VSAT Latitude in minutes: 50
VSAT Latitude Hemisphere (2 = North, 3 = South) <2>: 2
Appendix A • Lat/Long Decimals to Minutes Table
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Right of
Decimal
Right of
Decimal
Right of
Decimal
Minutes
Minutes
Minutes
.01
1
1
.36
22
22
23
23
24
25
25
26
26
27
28
28
29
29
30
31
31
32
32
33
34
34
35
35
36
37
37
38
38
39
40
40
41
41
42
.71
43
43
44
44
45
46
46
47
47
48
49
49
50
50
51
52
52
53
53
54
55
55
56
56
57
58
58
59
59
.02
.03
.04
.05
.06
.07
.08
.09
.10
.11
.12
.13
.14
.15
.16
.17
.18
.19
.20
.21
.22
.23
.24
.25
.26
.27
.28
.29
.30
.31
.32
.33
.34
.35
.37
.38
.39
.40
.41
.42
.43
.44
.45
.46
.47
.48
.49
.50
.51
.52
.53
.54
.55
.56
.57
.58
.59
.60
.61
.62
.63
.64
.65
.66
.67
.68
.69
.70
.72
.73
.74
.75
.76
.77
.78
.79
.80
.81
.82
.83
.84
.85
.86
.87
.88
.89
.90
.91
.92
.93
.94
.95
.96
.97
.98
.99
2
2
3
4
4
5
5
6
7
7
8
8
9
10
10
11
11
12
13
13
14
14
15
16
16
17
17
18
19
19
20
20
21
Appendix A • Lat/Long Decimals to Minutes Table
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Appendix B
The Internet and the DW4020
The Internet Protocol (IP) provides a format for moving packet
data from node to node. The IP enables data to move from
department to organization, to a region, across regions, to
destination organizations, and to departments. The IP layer serves
Internet protocol (IP)
and transmission
control protocol (TCP)
The transmission control protocol (TCP) verifies correct delivery
of data. TCP detects errors or lost data. TCP initiates
retransmission so that the data is eventually correctly received.
The use of these two protocols, together along with a suite of
other protocols, has been given the official name TCP/IP internet
protocol suite, or, more commonly TCP/IP.
Table 10: The Internet Protocol (IP) is the basis for other protocol layers
FTP – File Transfer Protocol
IP – multicast
• Reliable method for delivering files from a host
machine to remote personal computers
• Universal way to broadcast digital content to
multiple locations
• Takes maximum advantage of DIRECWAY
satellite star network topology
TCP – Transmission Control Protocol
UDP – User Datagram Protocol
• Session oriented protocol
verifies correct data delivery
• For delivering web pages and mission critical data
• Datagram oriented protocol
method for delivering short messages between
two points
• Basis of IP-multicast
IP – Internet Protocol
• Format for moving data from node to node
• Basis for all of the above protocols
• Becoming de facto standard for digital transmission – data, video and audio
• Widespread acceptance in the corporate world
Turbo Intranet™
Turbo Intranet is an HNS technique that increases the TCP
throughput across the satellite link. Turbo Intranet involves using
local devices to answer TCP overhead messages in the place of
distant devices. These devices efficiently send outroute data over
the spacelink and buffer the data for transfer to local hosts within
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their TCP limits, vastly increasing the overall throughput. This
technique is also known as TCP spoofing.
IP provides a method of constructing a network of networks
where computers and networks made by different manufacturers
and conforming to different standards can exchange information.
The IP is layered on top of vendor-specific protocols. The data to
be sent is divided into packets. IP directs each packet based on a
four-byte destination address, the IP address, in the IP packet
header.
IP addressing and the
DW4020
The Internet Assigned Numbers Authority (IANA) assigns ranges
of IP addresses to Internet Service Providers (ISPs), who assign
ranges to organizations, who are their customers. The
organizations, in turn, assign individual numbers within that
range to each of their networked computers.
In this way, every computer on a network, (each computer on a
network may also be referred to as a "host") is assigned a unique
number that identifies it and its network. Actually, the IP address
is assigned to the connection rather than to the computer itself.
However, it is assumed that the computers are not moved from
their respective connections. By convention, these IP addresses
are written by converting each byte (8 bits) into a decimal number
(0 to 255) and separating each byte by a period as in 192.77.43.4.
This format, called dotted decimal notation, is used to enter IP
addresses.
It is important to note that IANA defines an "enterprise" as an
entity autonomously operating a network using TCP/IP and in
particular determining the addressing plan and address
assignments within that network. Thus, in the context of TCP/IP,
installing networks or DW4020s, or assigning IP addresses, the
term enterprise refers to an organization defined in this way.
As an example of Internet address assignment, a small business
owner with four networked computers might apply to IANA or its
ISP for a “class C” network. In the IP address for a class C
network the first three bytes identify the network and the last byte
identifies the individual computer. The business owner is
assigned the numbers 192.77.43.*, where * represents a “wild
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card.” The business owner can then assign his individual
computer connections the numbers as shown in Figure 51.
Internet
address
192.77.43.4
192.77.43.5
192.77.43.2
192.77.43.3
Figure 51: IP addresses assigned to individual computer connections
A large organization like a university might apply for a class B
network, in which the first two bytes are assigned and the last two
bytes are available to the university to assign up to 64 thousand
computers in sub-network LANs. For example, the university
might be assigned a number like 170.15.*.*. The university, in
turn, could make assignments such as: 170.15.100.* = Physics
department LAN sub-network, 170.15.101.* = central library
LAN1 sub-network, and so on. It is a common practice to assign
the third byte to individual department LANs and the fourth byte
to individual computers within each department.
A very large entity might require a class A network that would
allow over 16 million individual IP address assignments. Table 11
gives the ranges of IP addresses IANA reserves for specific
purposes.
HNS customers have already acquired IP address ranges and
supply these as needed to HNS installers.
Note, however, that many organizations of various sizes now use
organizations do not need to assign a unique public IP address to
each computer (or "host") on their networks.
Table 11: IP Address ranges
Category
Lowest address
0.1.0.0
Highest address
126.0.0.0
Example or comment
9.*.*.* for IBM Corp.
Class A network
Class B network
Class C network
D – multicast
128.0.0.0
191.255.0.0
170.15.*.* – a university
192.77.43.* – small business
192.0.1.0
223.255.0.0
224.0.0.0
239.255.255.255
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As Internet use has increased, more and more IP addresses have
been assigned. There is not an infinite number of IP addresses,
and IANA is concerned that the supply of unique IP addresses
could be exhausted. One way to conserve IP addresses is to assign
them only to hosts that are designated as "public." Hosts that are
designated as "private" do not need unique IP addresses.
Private IP addresses
Types of hosts
IANA has created three categories of hosts:
Category 1: hosts that do not require access to hosts in other
enterprises or the Internet at large; hosts within this category
may use IP addresses that are unambiguous within an
enterprise, but may be ambiguous between enterprises.
Category 2: hosts that need access to a limited set of outside
services (e.g., E-mail, FTP, netnews, remote login) which can
be handled by mediating gateways (e.g., application layer
gateways). For many hosts in this category an unrestricted
external access (provided via IP connectivity) may be
unnecessary and even undesirable for privacy/security
reasons. Just like hosts within the first category, such hosts
may use IP addresses that are unambiguous within an
enterprise, but may be ambiguous between enterprises.
Category 3: hosts that need network layer access outside the
enterprise (provided via IP connectivity); hosts in the last
category require IP addresses that are globally unambiguous.
Hosts in categories 1 and 2 are private hosts. Hosts in Category 3
are public hosts. Hosts in categories 1 and 2 do not need to be
directly accessible from other networks. These hosts might
include airport arrival/departure displays, automatic teller
machines, or equipment at clerical positions. Thus, these private
hosts do not need unique IP address numbers. The IP addresses
private hosts are assigned need only be unique within the
network; they need not be directly accessible from other
networks.
In addition, for security reasons, many enterprises use application
layer gateways to connect their internal network to the Internet.
The internal network usually does not have direct access to the
Internet; thus, only one or more gateways are visible from the
Internet. In this case, the internal network can use non-unique IP
network numbers.
In short, there are many devices that can be connected on an
internal Internet or intranet that need never be assigned unique IP
addresses. In this way, IP addresses are conserved.
IANA has reserved the following three blocks of the IP address
space for private internets:
Private address space
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10.0.0.0
- 10.255.255.255 (10/8 prefix)
172.16.0.0
- 172.31.255.255 (172.16/12 prefix)
192.168.0.0 - 192.168.255.255 (192.168/16 prefix)
The first block is the "24-bit block," the second is the "20-bit
block," and to the third is "16-bit" block. Note that the first block
is nothing but a single class A network number, while the second
block is a set of 16 contiguous class B network numbers, and
third block is a set of 256 contiguous class C network numbers.
An enterprise that decides to use IP addresses out of these address
spaces can do so without any coordination with IANA or an
Internet registry. The address space can thus be used by many
enterprises. Addresses within this private address space will only
be unique within the enterprise, or the set of enterprises which
choose to cooperate over this space so they may communicate
with each other in their own private internet. An enterprise that
requests IP addresses for its external connectivity will never be
assigned addresses from the blocks defined above.
DW4020 customers who use private addressing must install a
router or switch between the DW4020 and their network. They
will also need to provide the installer with the LAN Gateway
address and, if applicable, the LAN subnet mask (see Configuring
the Gateway host in Chapter 3).
Private IP addressing and
DW4020 customers
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The DW4020 provides connectivity from a satellite network to
multiple computers.
DW4020s provide
connections
From the point of view of the individual computer user, the
DW4020 provides the link to the outside world. DW4020s direct
data traffic by inspecting the IP addresses. A DW4020 is assigned
two IP addresses, one in each network that it links.
Figure 52 illustrates a typical connection scheme for the
DW4020.
IRU
ITU
25 Pin
Connector
USB
GWH
From LAN
LAN IP Address: 170.15.100.1
Hub
DW4020
IP Address
170.15.99.1
LAN
Gateway
IP Address
170.15.xxx.yyy
IP Address
170.15.100.2
170.15.100.3
170.15.100.4
170.15.100.5
HNS Network Operations Center
(NOC)
Figure 52: Typical DW4020 connection scheme
The subnet mask defines the part of the IP address used to
identify computers on the same LAN from computers in other
departments or elsewhere in the world. Computers on the same
LAN can send messages directly to each other. Messages for
other LANs and the rest of the world need to be sent through a
router. In a scheme where the first three bytes identify the LAN
network, the subnet mask is 255.255.255.0. The decimal number
255 corresponds to the binary number 11111111. In IP address
notation, 0 is interpreted to mean “this.”
Subnet mask
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Appendix C
Installing the DW4020 Manually
The installation specification may direct you to install the
DW4020 using the serial port. You would connect the installer
laptop to the Gateway via the serial ports with a 9-pin female to
female (F/F) null modem serial cable. That cable is not included
with any DW4020 equipment.
Items needed for
installation
the modem installation kit or inside the antenna box. You must
provide a 9-pin female/female (F/F) null modem serial cable. The
serial cable is used to configure the DW4020 via the serial port.
You will also need the installation specification or work order.
This is provided to you by HNS.
Read this manual and obtain serial cable and installation work order
l
a
u
n
a
m
c
is
e
h
p
ll S
T
ta
s
In
9-pin F-F serial cable
Install specification
Installation manual
Ethernet cable
These items are packaged in a small box inside your antenna box
Clips
Receive modem
Transmit modem
Gateway
AC cord
DC cord
Power supply
1031105-0001
USB cable
Power adapter
25-pin connector cable
Figure 53: Items required for installation
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DW4020 users must use a power supply with the part number
P/N: 1031105-0001. The part number is on a sticker on the power
supply. Verify that you are using the correct power supply. Do not
use anything but the power supply supplied with the DW4020
system (1031105-0001).
The power supply
Be sure the power supply is labeled ADP 64AB B in the upper
right hand corner of the label, above the bar codes. See Figure 54.
CAUTION
• This unit’s performance may suffer if the wrong power
supply is used.
• This unit must be used with the power supply PN
1031105-0001.
• When power needs to be removed from the receive
modem, ALWAYS unplug the AC power cord from either
the wall outlet, surge protector, or power strip.
• NEVER pull the power cord from the back of the receive
modem. Doing so could damage the pins and also
cause a short in the system.
• Power supply with the part number 1031105-0001 is to
be used only in the United States and Canada.
• This unit must be used with 110-volt AC input.
• Other countries may have different standards and
requirements.
ADP-64AB B
PN: 1031105-0001
Figure 54: PN: 1031105-0001 and ADP-64AB B above bar code
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Follow the steps below and refer to the illustrations on page 80
assemble the components, you can plug in the power supply and
observe the LED display cycling, as explained in The DW4020
Assembling the
components
CAUTION
• The components must be stacked in this order: Gateway
on bottom; transmit modem on top of Gateway; receive
• If the components are not stacked in the proper order, the
receive modem may overheat and malfunction.
• Do not block any ventilation openings. Do not install near
any heat sources such as radiators, heat registers,
ovens, stoves, or other apparatus (including amplifiers)
that produce heat.
• Recommended ventilation space around the top and
sides of the DW4020 assembly should be approximately 6
inches. Ventilation is necessary to avoid overheating.
1. Write down the receive modem serial number. It is located
below the barcode on the back of the modem and is the
second portion of the line. (For example, R1CF4B21E -
00827500 would be Serial Number 827500.)
2. Be sure the power supply is not plugged into a wall outlet,
surge protector, or power strip.
3. Lay two of the four clips on a table and mount the
then the transmit modem, then the receive modem.
4. Turn the component stack right side up and install the other
Note: The Gateway and the transmit modem have a hole at
the center of each of its four feet. There is a tab on the bottom
of each mounting clip, which snaps into place on the Gateway
when properly aligned over the hole.There is also a tab in the
middle of each mounting clip, which snaps into place on the
transmit modem when properly aligned over the hole.
Note:
5. Double-check that the components are installed in this order
from top to bottom: receive modem, transmit modem,
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6. Connect the component interconnection cables. A short USB
cable connects the receive modem and the Gateway. A 25-pin
connector cable connects the transmit and receive modems. A
power supply adapter cable provides power to the Gateway
7. Connect the receive coaxial cable to the receive modem and
the transmit coaxial cable to the transmit modem (see
Power supply
adapter
Receive
modem
25-pin connector
cable
Transmit
modem
Gateway
USB cable
Figure 58: Attach interconnection cables
Receive
modem
Transmit
modem
Receive
cable
Gateway
Transmit cable
Figure 59: Attach coaxial cables
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8. Connect up to four Ethernet cables to the network ports on
cross-over Ethernet cable can be used. The four ports labeled
1 through 4 are Ethernet 10 Base - T/100 network ports. They
enable you to connect to other computers via an Ethernet
connection. (Reference UL 60950, Annex NAA, Subclause
reference 6, page 322.)
Network
cable
Receive
modem
Transmit
modem
Connect up
to four Ethernet
cables
Gateway
Four 10 Base - T/100 -Tx
network ports
T0091012
Figure 60: Attach network cables
9. Attach the power supply cords to the power supply and to the
power supply adapter. Ensure that the power cord is tightly
connected to the power supply, modem, and Gateway (see
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After you have assembled the DW4020, plug it into a 110 V wall
outlet, power strip, or surge protector. The Gateway LED display
than a minute.
Powering up and reading
the DW4020 LED display
Note: In countries outside North America, the DW4020 may be
plugged, with a physical adapter, directly into a 220 V outlet.
Different countries may have different standards and requirements.
The transmit and receive modems have their own LEDs, which
Note that normal Gateway operation alone doesn't imply normal
DW4020 operation. The installation and commissioning process
may not have been completed or software download (DLL) from
the Network Operations Center (NOC) may not have been
completed. Additional status information is available via the User
the LEDs on the receive and transmit modems (see
page 95).
Table 12: Gateway LED cycling at startup
LED condition
STATUS LED
Power off
READY LED
Off
Power off or startup
diagnostics not yet run
successfully
Steady Green
Normal operation
Running software
downloaded from NOC;
successfully
commissioned
Blinking Orange
Contact between GWH Not applicable
and IRU over USB not
established; USB cable
not installed or some
other USB problem
Blinking Green
Steady Red
Not applicable
Power on tests
Not commissioned
Not applicable
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The receive and transmit modems have LEDs on their front
panels. Both modems have a green READY LED. The receive
modem has a green RX LED. The transmit modem has a green
describes the basic states.
The DW4020 LEDs
The LEDs may also indicate various conditions through blink
patterns. Tables 7 and 8 explain these. The numbers in brackets
If the modem does not appear to be functioning, check all cable
connections. If they are secure, cycle the power by unplugging
the power cord at the power supply and plugging it back in. A
number of conditions and corrective actions are described below.
The READY LEDs should come on steadily when the DW4020 is
powered up and when it is operating. The TX and RX lights can
also blink when the DW4020 is first powered up, or when the
DW4020 is power cycled. However, that blinking does not
indicate anything about their status.
Table 13: Basic Receive and Transmit Modem LED States
Ready OFF/RX OFF
Ready ON/RX Off
Ready ON/RX
blinking
Receive modem
Transmit modem
Modem not functioning Modem functioning, no Modem functioning,
data being received
data being received
Ready OFF/TX OFF
Ready ON/TX Off
Ready ON/TX blinking
Modem not functioning Modem functioning, no Modem functioning,
data being transmitted data being transmitted
The DW4020 is extremely reliable. If you find you cannot surf
the Internet or the DW4020 seems to have a problem, follow this
sequence of steps below to identify and fix the problem.
• Check whether the DW4020 LEDs or on or off. The LEDs
may indicate that a connection has become loose.
Reconnecting a cable or power cord may restore function.
• Check if the LEDs are blinking in a pattern. The LEDs can
blink in a pattern. The patterns correspond to the receive and
transmit status codes discussed in Transmit Status messages
discussion of the blinking LEDs.
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• Check if the LEDs on the back of the Gateway or on or off.
The LAN ports on the back of the Gateway have LEDs. See
• Contact Customer Care. If the corrective actions described in
the problem, contact technical support.
The DW4020 LEDs
The receive modem has a RX and a READY LED. The transmit
modem has a TX and a READY LED. The Gateway has a
STATUS and READY LED.
Note: Whenever the LEDs do not function properly as described
below, check to be sure you have the correct power supply, PN
1031105-0001.
DW4020 LEDs status
This section describes the LEDs’ appearance during typical
DW4020 operation. It also describes their appearance when some
basic problem is occurring.
When the DW4020 is powered on but not receiving or
READY LEDs are continuously lit. Both the Gateway LEDs are
continuously lit.
Normal operation, no
transmit or receive
Modems’ READY
LEDs continuously lit
Both Gateway LEDs
continuously lit
Figure 63: DW4020 normal operation, no data received or transmitted
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During normal DW4020 operation, the modems’ READY LEDs
are continuously lit, the RX and TX LEDs blink as they pass data,
and both the Gateway LEDs are continuously lit, as shown in
Normal operation, data
being sent and received
RX LED blinks as
modem passes
data; READY
LED on
continuously
TX LED blinks as
modem passes
data; READY
LED on
continuously
Gateway STATUS
and READY LEDs
continuously lit
Figure 64: Normal operation, data being sent and received
If the DW4020 is not operating normally and the receive
following steps:
Problem: receive modem
READY LED not on
• Check to make sure the power cord is securely attached to the
receive modem and plugged into the wall outlet or surge
receive modem READY led will come on when power is
restored.
• If securing the power cord does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the Receive modem READY LED still does not come on,
power cycle the DW4020 by unplugging the power cord from
the wall outlet or surge protector, waiting ten seconds, and
plugging it back in.
• If the problem persists, contact technical support.
Note: Often, if the receive modem READY LED is not lit, the
other modem LEDs will not be lit either.
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Receive modem READY LED
not lit. Note that in many
cases other modem LEDs
will not be lit either.
Figure 65: Receive modem READY LED not lit
AC power
cord
Receive
modem
Transmit
modem
Power
supply
DC power
cord
Gateway
Ethernet cables
T0091013
Figure 66: DW4020 power and cable connections
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If the transmit modem is not operating normally and its READY
Transmit modem READY
LED not lit
• Check that the receive modem READY LED is continuously
lit. If not, try the sequence in Problem: receive modem
• Check to make sure the power cord is securely attached to the
receive modem and plugged into the wall outlet or surge
transmit modem READY led may come on.
• If securing the power cord does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the transmit modem READY LED still does not come on,
power cycle the DW4020 by unplugging the power cord from
the wall outlet or surge protector, waiting ten seconds, and
plugging it back in.
• If the problem persists, contact technical support.
Receive modem READY LED
continuously lit, showing that it is
functioning
Transmit modem READY LED
not lit
Figure 67: Transmit modem READY LED not lit
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If the Gateway does not seem to be functioning and its LEDs are
not lit, and the receive modem READY LED blinks as shown in
Figure 68, take the following steps.
Gateway LEDs not lit
• Check to make sure the power cord is securely attached to the
Gateway and receive modem and plugged into the wall outlet
loose, the Gateway and receive modem READY LEDs will
come on when power is restored.
• If securing the power cord does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the Gateway READY LED still does not come on, power
cycle the DW4020 by unplugging the power cord from the
wall outlet or surge protector, waiting ten seconds, and
plugging it back in.
• If the problem persists, contact technical support.
Receive modem READY
LED blinks
Gateway LEDS are
not lit
Figure 68: Gateway LEDs not lit
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If the Gateway does not seem to be functioning and its STATUS
LED flashes amber, and the receive modem READY LED blinks
Gateway LEDs flash, receive
modem READY LED off or
flashing
• Check to make sure the USB cable is securely attached to the
loose, the Gateway and receive modem READY LEDs will
come on when it is reattached.
• If securing the USB cable does not solve the problem, check
all cable connections. Tighten any that seem loose.
• If the Gateway STATUS LED still does not come on
continuously, power cycle the DW4020 by unplugging the
power cord from the wall outlet or surge protector, waiting
ten seconds, and plugging it back in.
• If the problem persists, contact technical support.
Receive modem READY
LED blinks or is not lit
Gateway STATIS LED
blinks amber
Figure 69: Gateway STATUS LED blinks amber
The DW4020 modems’ READY LEDs can blink in various
patterns. These patterns correlate to the status codes discussed in
access to the User Interface. It will be easier to find out what the
status of the DW4020 is via the interface than the LED status
LED blinking indicating
status codes
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blinking. The blink patterns are described below for your
information.
Transmit
READYLED
Pattern
Corresponding transmit status messages
Off
On
4(or powered off)
8
1
2 Long,
1 Short
2 Long,
2 Short
2
2 Long,
3 Short
11
3
1 Long,
1 Short
1 Short
2 Short
3 Short
4 Short
5
10, 13, 14, 15,16, 21, 22, 23
6, 7
12, 17
Slow
9,18,19,20
Alternating
Fast
Alternating
The ITU interface testing – This is a continuous fast blinking pattern, with the Transmit LED being the
inverse of the Ready LED. No corresponding message.
Receive
Corresponding receive status message
READY LED
Pattern
Fast
Alternating
Prior to downloading software– This is a continuous fast-blinking pattern, with the RX LED being the inverse
of the Ready LED. No corresponding message.
Slow
1
Alternating
On
5
1 Long,
1 Short
3,6
1 Long,
2 Short
4,7
1 Short
0
2
1 Long,
1 Short,
1 Long
Table 14: Receive modem READY LED blink patterns
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Each of the four Ethernet ports on the DW4020 has two LEDs
associated with it. One LED is green and one is yellow. See
Ethernet port LEDs
The green LED will be on if power is applied to the DW4020 and
a 100baseT Ethernet device is connected to the corresponding
Ethernet port. Otherwise, the green LED will be off.
if the power is on and the light is off while a network device is
connected, then the device is a 10baseT device and the port is
autosensing.
The yellow LED will also be on when power is applied to the
DW4020. It will flash momentarily when there is LAN activity
on the corresponding Ethernet port.
Green LED
Yellow LED
Figure 70: Ethernet port LEDs
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After the Gateway finishes the LED sequence, you will use a
laptop PC to communicate with the Gateway via a serial cable.
(You can also use a desktop PC.) You access the Boot Parameters
screen and set the parameters. You also point and cross-pol the
antenna. In order to complete the parameters, you will need your
installer ID and the information shown in Figure 80 on page 102.
Communicating with the
Gateway through the
serial port
1. Attach one end of a 9-pin F-F (female/female) null modem
serial cable to the serial port on your PC.
2. Attach the other end of the cable to the Gateway serial port
Connecting the Gateway
and laptop
Gateway serial
port
Figure 71: Location of Gateway serial port
3. Run Hyperterminal or a similar terminal emulation program
to access the Gateway software Main Menu. The first time
you do this, you configure the COM1 port’s properties and
save the connection as a Hyperterminal.htfile. For all
subsequent installs, you simply open the file.
Configuring Hyperterminal
or terminal emulation
program
Note: You can often find the Hyperterminal icon in the
Accessories subfolder in the Windows Start menu. If you cannot
find it there, go to Start→Find→Files or Folders and search for
Hyperterminal. Windows will find the Hyperterminal folder. Open
it and click on Hyperterminal.The program will run. If
Windows does not find Hyperterminal you must install it. Go to
Control Panel→Add/Remove Programs→ Add/Remove
Programs Properties and select the tab for the version of
Windows you use. Click the Communications checkbox. Click
Details to make sure the Hyperterminal checkbox is checked; if
it is not, check it and click OK. Click OK in the Add/Remove
Programs Properties box. Windows should install Hyperterminal.
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a. Select Start→Accessories→Hyperterminal and click on the
yellow phones icon is highlighted in blue. You will
establish a new connection.
Figure 72: Starting Hyperterminal
Figure 73: Connection Description window
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b. Enter DW4020in the New field.
c. Select OK. The Connect To window appears.
d. Select COM1from the Connect Using pull-down list (see
Figure 74: Connect To window
e. Select OK. The COM1 Parameters window appears.
f. Configure the Port Settings by selecting the parameters
– Bits per second (baud): 9600
– Data bits: 8
– Parity: none
– Stop bits: 1
– Flow control: none
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Figure 75: COM1 Properties window and pull-down menus
g. Select OK. The window disappears.
h. Select File→Save As. The Save As window appears.
i. Enter DW4020in the File name field and select Save. The
window disappears. Now you will simply be able to select
the DW4020.htfile when connecting the Gateway and the
laptop during future installs.
j. Select Call→Connect. The laptop will connect to the
Gateway.
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4. Press ENTER at the Hyperterminal prompt to display the
initial Install Console screen shown in Figure 76.
Figure 76: Initial Install Console screen
Note: For all future Gateway installations, use the DW4020.ht
file you saved to connect the Gateway and laptop. Start
Hyperterminal. Select File→Open→DW4020.ht. The Gateway
and laptop will connect.
5. Press ENTER to display the Main Menu shown in
Main Menu:
(a) Configure Boot Parameters
(b) Display Current Configuration
(c) Display Satellite Interface Statistics
(d) Display Active Routing Table
(f) Run Software Download Monitor
(h) Display Reset History
(i) Installation
(t) Run Final/Built-in Tests
(pc) (Parameter Clear)
(pw) (Parameter Write)
(rr) (Gateway Reset)
Clear Configuration
Write Configuration
Reset the Gateway
(rd) (Gateway Deconfigure) Force Download and
Acquire New Keys
Figure 77: BOOT ROM installer console Main Menu
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6. Enter c to display the Satellite Interface Statistics menu
Figure 78: Satellite Interface Statistics menu with Display
Satellite Interface Serial Number displayed
7. Enter c to display the satellite interface serial number (see
If the electronic serial number is different from the barcode
receive modem serial number, call the installer hotline for the
DW4020 series and request the serial number be corrected.
You must supply the Site/Master account number that can be
found on the work order. Also observe all cautions in the
Caution box below.
8. Enter Zto return to the Main Menu.
CAUTION
• You must confirm the receive modem electronic serial
number through the serial connection using
Hyperterminal when configuring the DW4020.
• If the electronic serial number is different from the
barcode receive modem serial number, call the installer
hotline for the DW4020 series and request the serial
number be corrected. You must supply the Site/Master
account number that can be found on the work order.
• Do not use any other receive modem at the site unless
instructed by HNS personnel. If the wrong modem is
brought to the pre-configured site, delays can occur due
to re-configuration issues in the NOC.
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Use Configure Boot Parameters to configure the Gateway for
outroute reception and downloading of software. For initial
installation, most parameters must be entered, except for VSAT
Return Path, which is always “Inroute.”
Configuring Boot
Parameters
Thus, you will need your installer ID, and you will need all
necessary information to enter data for the fields marked with an
provide or obtain the information; two asterisks means the
information is global for all installations. Refer to Appendix A
for information on how to determine how to convert
degrees/decimal values to degree/minutes values.
Note: Two good Web sites for determining your latitude and
longitude include: http://www.zipinfo.com/search/zipcode.htm
and http://www.census.gov/cgi-bin/gazetteer
Note: If you will be using the Outdoor Pointing Interface (OPI)
device, remember that the LNB 22KHz Switch parameter must be
set to "OFF" to enable the device. You may leave the parameter at
OFF for the rest of the installation. The instructions below
describe how to set parameters.
1. Enter aat the Main Menu prompt. Each parameter shown in
Figure 80 appears, one at a time, one line at a time.
For example, the first parameter to appear after you enter a is
.
VSAT Return Path (1 = Receive Only, 2 = Inroute, 3 = LAN) <2>:
Figure 79: VSAT Return Path Parameter
All the parameters are shown in the Display Current
entering bat the Main Menu prompt.
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Creation Date:
Feb 8 2002, 11:43:08
Current Gateway Image Executing:
IRU Software Version Number:
Main.bin
33
=======================================================================
Parameter
Value entered
Value in use
-------------------------------------- --------------
------------
VSAT Return Path:
**Inroute
**117
**0
**West
*77
*10
*West
*39
Inroute
117
0
West
77
10
West
39
10
Satellite Longitude in degrees:
Satellite Longitude in minutes:
Satellite Hemisphere:
VSAT Longitude in degrees:
VSAT Longitude in minutes:
VSAT Longitude Hemisphere:
VSAT Latitude in degrees:
VSAT Latitude in minutes:
VSAT Latitude Hemisphere:
Satellite Channel Frequency:
Receive Symbol Rate:
*10
*North
North
*11100 (x 100Khz) 11100 (x 100Khz)
*30000000 Sps
*Vertical
*On
30000000 Sps
Vertical
On
LNB Polarization:
LNB 22KHz Switch:
Filter Rolloff:
*20
20
LAN1 IP Address:
*66.82.56.50
66.82.56.50
LAN1 Subnet Mask:
*255.255.255.240 255.255.255.240
IP Gateway IP Address:
SDL Control Channel Multicast Address: *224.0.1.4
VSAT Management IP Address:
Default Router IP Address:
Main Menu (<?/CR> for options):
*66.82.24.154
66.82.24.154
224.0.1.4
10.0.0.0
*10.0.0.0
10.0.0.10
10.0.0.0
Figure 80: Display Current Configuration Screen
2. As each one-line parameter appears, enter the specific values
as defined in the installation specification for this customer or
as specified by HNS personnel and press ENTER. The next
parameter will then appear.
Type -and press ENTER at the prompt to go to the previous
parameter. You can also skip the remaining parameters by
typing \and pressing ENTER.
Note: The Default Router Address isn’t used in most cases
and doesn’t have to be configured. The VSAT Return Path
should be configured to "Inroute."
Note: The values in the examples are for illustrative
purposes only. Do not use them to configure the Gateway.
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3. When you have entered all parameters, return to the Main
Menu and enter pw. This saves the configuration parameters
to the flash memory. At this point, depending on the
parameters that were modified, the Gateway may reset.
4. A message Writing the configuration -are you
sure (y/n) appears. Enter y. At this point, depending on
the parameters that were modified, the Gateway should reset.
If it does not reset, enter rrto do a Gateway reset.
5. At the Main Menu prompt, enter bto display the current
configuration. The display is similar to the one shown in
installation or NOC specification.
After you have entered the boot parameters, use the Installation
Menu to receive and transmit point the antenna. Transmit
pointing uses both an automatic and manual mode.
The Installation Menu
The Outdoor Pointing Interface (OPI) device can also be used to
point an antenna used with a DW4020. Follow the instructions in
the Outdoor Pointing Interface Operating Instructions (HNS
1031832-0001).
Note: Remember that if you use the OPI, the LNB 22KHz
Switch parameter must be set to "OFF." You may leave the
parameter set at "OFF" for the rest of the installation.
Note: Remember that if you wish to exit the Installation Menu
and return to the Main Menu, you must type "Z" and press
ENTER. If you don’t you’ll remain in one of the Installation
submenus until you do so.
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CAUTION
• The two-way satellite dish assembly emits radio
frequency energy when in the transmit mode.
• Unplug indoor power connection before performing
maintenance or adding upgrades to any satellite dish
components.
• To avoid risk of injury, do not place head or other body
parts between feed horn and reflector when system is
operational.
Prohibited area
(when operational)
Antenna Pointing - Receiver This section describes how to verify adequate receive signal
reception, that is, with a signal quality factor (SQF) of over 30.
1. Enter iat the Main Menu prompt. The Installation Menu
or <CR>, which defaults to a valid installer ID, to access the
submenus. If automatic cross-polarization (ACP) is not
available, "Transmitter, Automatic (not
available" will appear in the menu.
Installation Menu:
(a) Antenna Pointing - Receiver
(b) Antenna Pointing - Transmitter, Automatic
(c) Antenna Pointing - Transmitter, Manual
(d) Verify Ranging
(z) Return to Main Menu
Figure 81: Installation Menu
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2. At the Installation Menu prompt, enter ato obtain antenna
pointing values and assigned satellite parameters. The
Figure 82: Antenna Pointing - Receiver
The SQF represents the strength of the received signal
relative to noise. SQF is an integer value between 0 and 99.
The SQF value is interpreted as follows:
– 0-29. The receive modem is not locked onto the desired
signal. The value increases as the Gateway receives
stronger signal power.
– 31-99. The receive modem is locked onto the desired
satellite signal.
– 30. The receive modem is locked onto a satellite signal, but
is waiting for a message confirming that it is locked to the
correct signal. An unchangeable value of 30 indicates that
the receive modem is locked onto a wrong signal.
3. If the SQF is less than 30, refine the antenna pointing to bring
the SQF over 40 and to as close to 99 as possible. The SQF
message updates automatically. There is a delay of up to 10
seconds between the displayed and the current SQF value.
4. If you cannot achieve a satisfactory SQF, take the steps below
in the order suggested until the situation is corrected.
a. Check for unobstructed view to the satellite.
b. Refine antenna aiming.
c. Check LNB polarization.
d. Check receive symbol rate.
e. Replace LNB.
f. Replace entire DW4020 unit.
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Antenna Pointing - Transmitter, The manual cross-polarization function can be used to adjust the
Manual antenna and peak the antenna’s transmit polarization for
maximum isolation. You can also use manual pointing to adjust
polarization after failing the automatic cross-polarization test.
1. Enter C at the Installation Menu prompt. The Antenna
Pointing - Transmitter, Manual screen appears.
Otherwise, the screen shows the current queue position until
the test can be run. When the Test Status field shows Active
the test can be run. The result of the test is shown in the
Result: field, where a transmitter isolation value is reported.
2. Make small, one-degree or less changes in polarization while
observing the transmitter isolation. Peak the transmitter to the
highest possible transmitter isolation value.
3. Press Enterto return to the Installation Menu.
Antenna Pointing - Transmitter, Automatic cross-polarization (ACP) is used for a rapid Pass/Fail
Automatic test of the antenna’s transmit polarization adjustment. If you pass
ACP the unit is enabled and no further antenna pointing is
needed.
1. Enter Bat the Installation Menu prompt. The Antenna
Pointing - Transmitter, Automatic screen appears.
Otherwise, the screen shows your current queue position until
the test can be run. (Sometimes a number of installers will be
pointing their antennas at the same time. You may have to
wait for the test to be run, and are placed in a queue until it
can be run.)
The result of the test is shown in the Result: field. PASS
means the transmit modem will be enabled and the system
should be operational. FAILmeans the transmit modem will
be disabled and the dish pointing needs to be checked.
2. Whether you pass or fail, press Enterto return to the
Installation Menu.
3. Enter zto return to the Main Menu.
4. At the Main Menu enter c. The Satellite Interface Statistics
5. Enter a. The Display Main Statistics screen appears. Confirm
the SQF is greater than 31 and that the transmitter is
available.
6. Enter zto return to the Main Menu.
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CAUTION
Any time you enter the DW4020 Installation Menu, the
transmitter is turned off for safety reasons. Do not enter "I"
to access the Installation Menu after this point unless
instructed to do so by a technician at the NOC.
Figure 83: Display Main Statistics
Range value Ranging may have to be initiated by the NOC to adjust for
differences in delay due to distance to the satellite. Check your
installation specification to see if this is necessary.
To learn if ranging is available and being used by the unit, enter d.
If it is available and used, SUCESSFULwill appear; if not, NEED
RANGING will appear.
Ranging must be done before you exit the Installation Menu.
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If the Gateway is configured correctly for outroute reception and
SQF is greater than 30, it will acquire the outroute. As soon as the
Gateway acquires the outroute, it begins to look for the Hub
Server in the data stream to perform software download.
Verifying software
download
1. To monitor software download (SDL) progress, enter f at the
Main Menu prompt to select Software Download Monitor.
2. The following message is displayed at the bottom of the
screen:
SDL Initialization complete. Awaiting first heartbeat msg.
This message is dynamically updated. It indicates that SDL
has started and is waiting to connect with the hub server.
Note: It may be 20 minutes before the first heartbeat message is
received.
3. If SDL does not progress beyond this message, check the
following:
• The SDL control channel’s multicast IP address
– Return to the Main Menu.
– Enter bto view the current configuration
– Check that the SDL Control Channel Multicast Address is
correct. If not, enter the correct address.
4. When the Gateway receives a message from the Hub Server,
the following message is displayed:
Received first heartbeat message.
5. If there is no progress beyond this message, check the return
path. When operating normally, the following message is
displayed:
Received File/Group message. Reconciling files...
MM loading...
IP loading...
...
All files downloaded. Notifying CFM.
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6. On successful download, the Gateway automatically resets to
reflect the new software. The new configuration takes effect.
Figure 84: Gateway reset
7. At the Main Menu prompt, select fto monitor SDL progress.
The following messages are displayed:
SDL Initialization complete. Awaiting first heartbeat msg.
Received first heartbeat message.
All files downloaded. No pending changes.
The DW4020 may now be hooked up to either a configured PC or
network.
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The DW4020 has no serviceable parts. However, you may be able
to debug units with help from the network operations center
(NOC). You access the menus below via the serial port, just as
when you set up the DW4020.
DW4020 status
information via the
serial port
You can verify that the DW4020 unit is receiving and processing
data by following the steps given below.
Verifying correct
DW4020 operation
1. Enter A at the Main Menu to access Satellite Interface
Statistics.
2. At the Satellite Interface Stats submenu enter Ato select
Display Main Statistics. In the display that appears (see
Figure 85), check if frames are being accepted.
Signal Quality Factor: <83>
Frames Received:
F-error:
<181>
<0>
Addresses Open:
<2>
Receive Status:
Transmit Status:
<The receiver is operational. (RxCode 5)>
<The transmitter is available. (TxCode 8)
Figure 85: Display Main Statistics
The Frames Received and F-error values indicate the
DW4020 is detecting frames and correctly receiving and
demodulating an outroute signal.
Note the Signal Quality Factor is also reported; if the SQF is
below 31, the antenna must be repointed.
The Receive Status and Transmit Status fields report whether
the receive and transmit modems are operational. If they are
not operational or available, antenna pointing is not possible.
The Rx and Tx codes have the same meanings as explained in the
LED flashing code tables above.
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At the Satellite Interface Statistics submenu enter B to select
Displaying traffic statistics
aam info
---------------------------------------------------------
state dpcmac ethmac key
------------------ -------- ------------ ----------------
ADDR_RESERVED (4) 5E6EEFEF 01005E6EEFEF 0000000000000000
ADDR_UNICAST (8) 0A0B36E3 02000A0B36E3 DFCFA55F949BA608
ADDR_CLOSED
MacAdrs
(5) 5E000104 01005E000104 0000000000000000
RxOk RxCrc RxLost BadKey
------------ ---------- ---------- ---------- ----------
000000000000 0000000000 0000000000 0000000000 0000000000
02000A0B36E3 0000000171 0000000000 0000000000 0000000000
01005E6EEFEF 0000000012 0000000000 0000000000 0000000000
030001000009 0000007651 0000000000 0000000000 0000000000
030001020000 0000000476 0000000000 0000000000 0000000000
030001010000 0000001419 0000000000 0000000000 0000000000
Figure 86: Display Traffic Statistics screen
To check performance enhancing proxy (PEP), at the Satellite
Interface Statistics submenu enter G to select Display PEP
Displaying PEP statistics
TCP Spoofing Flag
Rx PBP
:Disabled
:3
:0
:0
:0
:0
:0
:0
:0
Rx PBP Bad Checksum
Tx PBP
Rx TCP
Rx TCP Bad Checksum
Rx TCP Spoofed
Rx TCP SYN Unspoofed
Rx TCP Unspoofed
Priority
1
2
3
4
PBP Status
Closed
Closed
Closed
Closed
PBP Rx Pkts
PBP Tx Pkts
PBP Rx SACK
PBP Tx SACK
PBP Rx RST
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
PBP Tx RST
PBP Snd/Rcv Win
W2L limit/curr
L2W limit/curr
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
0/ 0
Figure 87: Display PEP Statistics screen
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The Final Test Menu is not used by installers. It is used at the
factory to ensure the various DW4020 components are functional.
The menu is shown below.
The Final Test Menu
Final Test Menu:
(a) LED Test Pattern
(b) Ethernet Ports Test
(c) Modem Signal Test
(d) USB Port Test
(g) Factory Information Read
(z) Return to Main Menu
Figure 88: Final Test Menu
This section describes some other options in the Main Menu.
Other options
Display active routing table
Menu Option (d) displays the current data in the Active
Main Menu (<?/CR> for options): d
Active Routing Table:
Entry Destination Network Gateway Address
Subnet Mask
Main Menu (<?/CR> for options):
Figure 89: Active Routing Table display
Reset history Menu Option (h) displays the reset history for the DW4020 as
displayed. Index 0 is the most recently logged reset.
Time of Reset :
Asserted at :
Reset Type
Reset Reason :
THU JAN 01 05:47:35 1970
t=tInterface ../../../source/sd/cim.c#1918:
Valid Software Reset
:
Manual reboot via Install Console rr command
Figure 90: Reset history
This data is read-only.
Note that you reset the DW4020 by typing rr at the Main Menu
prompt and pressing Enter. You can force the DW4020 to
download new software keys by typing rd and pressing Enter.
Reading factory information
Option (g) displays read-only information from the manufacturer.
This option automatically returns to the Final Test menu.
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Appendix D
Configuring the installer laptop for IP
addressing
This chapter explains how to configure your installer laptop PC
so that you can register the DW4020. All DW4020s come from
the factory with Dynamic Host Configuration Protocol (DHCP)
enabled. Therefore, your installer laptop PC must have DHCP
enabled and set to automatically obtain IP addresses..
1. On the client computer, go to Start→Settings→Control Panel
Note: On Windows ME computers, choose View All Control
Panel Options to see the Network icon.
Windows 98SE and ME
Figure 91: Control Panel
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Figure 92: Network window
3. Select the TCP/IP entry associated with Network Interface
Card (NIC) and then select Properties. The TCP/IP
4. In the IP Address tab, select Obtain an IP address
automatically.
5. Select the Gateway tab. Remove any installed gateways by
6. Select the Disable DNS radio button on the DNS
Configuration tab.
7. Select OK to accept the updates for the TCP/IP properties
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8. Select OK to close the list of network components. Windows
may request the installation CD-ROM to complete updating
the TCP/IP settings.
9. Restart the computer if it does not do so automatically.
Figure 93: TCP/IP Properties
Figure 94: Gateway tab
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1. On the client computer, go to Start→Settings→Control Panel
and double-click Network and Dial-up Connections.
Area Connection adapter must be listed. If it is not, the
network is not installed correctly.
Windows 2000
3. Right-click the Local Area Connection icon that represents
the network adapter that connects the computer to the
DW4020 and select Properties. The Local Area Connections
Properties window appears. See Figure 96.
4. Ensure that the Client for Microsoft Networks and Internet
Protocol (TCP/IP) are installed and checked. If NetBEUI is
installed, uninstall it.
Figure 95: Network and Dial-up Connections
Figure 96: Local Area Connection Properties
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5. Select Internet Protocol (TCP/IP). Be careful not to uncheck
the checkbox.
6. Select the Properties button. The Internet Protocol Properties
7. Ensure that both Obtain an IP Address Automatically and
Obtain DNS Server Address Automatically are selected. If
not, select them.
8. Select OK to close the open dialog boxes and finish the
configuration.
9. Restart the computer even if Windows does not require you to
do so. This will ensure that the network settings are
automatically reset.
Figure 97: Internet Protocol Properties
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1. Go to Start→Settings→Control Panel. Double-click the
Network and Dial-up Connections icon.
Windows XP
Note: If the Control Panel is in category view select Network and
Internet Connections then select Network Connections.
2. A list of network adapters will be displayed. A Local Area
Connection must be listed under LAN or High-Speed
Internet. If not, the network is not installed correctly. See
3. Right-click the Local Area Connection icon that represents
the Network adapter that connects the computer to the
Satellite Gateway and select Properties.
Note: If the Local Area Connection icon appears with a red X
then check your connections. The red X must not be present in
order for you to be successful.
4. Ensure that the Client for Microsoft Networks and Internet
Protocol (TCP/IP) are installed and checked. If NetBEUI is
Note: Be careful not to uncheck the Internet Protocol when you
select it
6. Ensure that both Obtain an IP address automatically and
Obtain DNS server address automatically options are
selected. If not, select them.
7. Select OK to close the open dialog boxes and finish the
configuration.
Restart the computer even if Windows does not require you to do
so to ensure that the network settings are automatically reset.
Figure 98: Network Connections
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Appendix E
Installation checklist
The following DW4020 components are installed:
Installation summary
and checklist
• Antennas (outdoor unit or ODU)
• Coaxial cable (IFL)
• DW4020
The main tasks required to install an DW4020 are summarized
below. For Web commissioning, the customer should have an
analog phone line and a functioning Ethernet interface.
Assemble the DW4020 components. These consist of the receive and transmit
modems, and the Gateway.
Connect the DW4020 to installer laptop PC Ethernet and power up DW4020.
Connect the installer laptop PC via USB and run Websetup to establish operating
parameters.
Register the end user and select subscription options via Websetup.
Record site ID, Gateway IP address, subnet mask, and service offering on cover
of User Guide.
Transfer of parameter information to Gateway. Exit Websetup.
Assemble and install the satellite antenna. Run cables from the outdoor components
to the indoor equipment. Clearly label the receive and transmit coaxial cable at the
antenna, ground block, and modem connectors.
Complete antenna pointing and auto cross-polarization (ACP).
Disconnect installer laptop PC and connect the Gateway to the receive modem
with USB cable. Connect the customer computer to the Gateway via Ethernet
cable.
Verify customer operation, information recorded on User Guide cover, and
receive and transmit cable labeling. Optional: assist in customer computer
configuration.
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Appendix E • Installation checklist
1031484-0001 Revision 2
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