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FSAP 9800Full Service Access Platform
Hardware Manual
Version 3.0.0
ZTE CORPORATIONZTE Plaza, Keji Road South,Hi-Tech Industrial Park,Nanshan District, Shenzhen,P. R. China518057Tel: (86) 755 26771900Fax: (86) 755 26770801URL: http://ensupport.zte.com.cnE-mail: [email protected]
LEGAL INFORMATION
Copyright © 2006 ZTE CORPORATION.
The contents of this document are protected by copyright laws and international treaties. Any reproduction or distribution ofthis document or any portion of this document, in any form by any means, without the prior written consent of ZTE CORPO-RATION is prohibited. Additionally, the contents of this document are protected by contractual confidentiality obligations.
All company, brand and product names are trade or service marks, or registered trade or service marks, of ZTE CORPORATIONor of their respective owners.
This document is provided “as is”, and all express, implied, or statutory warranties, representations or conditions are dis-claimed, including without limitation any implied warranty of merchantability, fitness for a particular purpose, title or non-in-fringement. ZTE CORPORATION and its licensors shall not be liable for damages resulting from the use of or reliance on theinformation contained herein.
ZTE CORPORATION or its licensors may have current or pending intellectual property rights or applications covering the subjectmatter of this document. Except as expressly provided in any written license between ZTE CORPORATION and its licensee,the user of this document shall not acquire any license to the subject matter herein.
ZTE CORPORATION reserves the right to upgrade or make technical change to this product without further notice.
Users may visit ZTE technical support website http://ensupport.zte.com.cn to inquire related information.
The ultimate right to interpret this product resides in ZTE CORPORATION.
Revision History
Revision No. Revision Date Revision Reason
R1.0 08/05/2009 First edition
Serial Number: sjzl20097006
Contents
Preface...............................................................i
Cabinet..............................................................1Cabinet Overview ........................................................... 1
Cabinet Outline .......................................................... 1
Cabinet Configurations ................................................ 3
Cabinet Assembly Diagram .......................................... 5
Cabinet Components....................................................... 6
Power Distributor........................................................ 7
PWRS............................................................... 7
PWRC............................................................... 7
Fan Tray ................................................................... 7
3U Cable Rack............................................................ 8
Line Tester................................................................. 9
EPM Unit ..................................................................10
Technical Specifications ..................................................12
Shelf................................................................17Shelf Structure..............................................................17
Subscriber Shelf ........................................................17
Splitter Shelf.............................................................18
Backplane Structure.......................................................19
MDCA ......................................................................19
MDCE ......................................................................20
MDCF.......................................................................22
MTAN.......................................................................23
Shelf Configuration ........................................................24
Subscriber Shelf Configuration ....................................24
Mode 1 ............................................................25
Mode 2 ............................................................25
Splitter Shelf Configuration .........................................25
Inter-shelf Communication..............................................25
NE Cascading............................................................26
Test Cascading .........................................................27
Cards...............................................................29List of Cards .................................................................29
Card Description............................................................30
CSCA Card................................................................30
CSCE Card................................................................33
CSCM Card ...............................................................35
CSCT Card................................................................38
MSCT Card ...............................................................40
MSCX Card ...............................................................43
Ethernet Interface Sub-cards ......................................45
AINC Card ................................................................48
EINT Card ................................................................50
EINB Card ................................................................52
ATNG Card................................................................54
ASNV Card ...............................................................56
ISNV Card ................................................................57
VSNKC Card..............................................................60
STNG Card ...............................................................61
SSNG Card ...............................................................62
Splitter Cards............................................................64
EPN Card..................................................................69
GPNC Card ...............................................................71
LTN Card ..................................................................73
PDBX Card................................................................75
EPS Card..................................................................76
Figures ............................................................79
Tables .............................................................81
Glossary ..........................................................83
Preface
Purpose This manual provides the guidelines that support the operation ofFSAP 9800 (V3.0.0) Full Service Access Platform.
IntendedAudience
This document is intended for engineers and technicians who per-form operation activities on FSAP 9800 (V3.0.0) Full Service AccessPlatform.
Prerequisite Skilland Knowledge
To use this manual effectively, users should have a general under-standing of telecommunications technology. Familiarity with thefollowing is helpful:
� FSAP 9800 (V3.0.0) system and its various components
� Access Network (AN) technologies and Next Generation Net-work (NGN) technologies
What Is in ThisManual
This manual contains the following chapters:
Chapter Summary
Chapter 1, Cabinet Describes the cabinet and cabinet components.
Chapter 2, Shelf Describes the shelf structure, backplane, shelfconfiguration and inter-shelf communication.
Chapter 3, Cards Describes the FSAP 9800 cards.
RelatedDocumentation
The following documentation is related to this manual:
� FSAP 9800 (V3.0.0) Full Service Access Platform Documenta-tion Guide
� FSAP 9800 (V3.0.0) Full Service Access Platform TechnicalManual
� FSAP 9800 (V3.0.0) Full Service Access Platform Hardware In-stallation Manual
� FSAP 9800 (V3.0.0) Full Service Access Platform CommandManual (Volume I)
� FSAP 9800 (V3.0.0) Full Service Access Platform CommandManual (Volume II)
� FSAP 9800 (V3.0.0) Full Service Access Platform CommandManual (Volume III)
� FSAP 9800 (V3.0.0) Full Service Access Platform CommandManual (Volume IV)
� FSAP 9800 (V3.0.0) Full Service Access Platform OperationManual(CLI)
� FSAP 9800 (V3.0.0) Full Service Access Platform MaintenanceManual
� FSAP 9800 (V3.0.0) Full Service Access Platform OperationManual(Netnumen)
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FSAP 9800 Hardware Manual
How to Get inTouch
The following sections provide information on how to obtain sup-port for the documentation and the software.
If you have problems, questions, comments, or sugges-tions regarding your product, contact us by e-mail at [email protected]. You can also call our customer support centerat (86) 755 26771900 and (86) 800-9830-9830.
ZTE welcomes your comments and suggestions on the quality andusefulness of this document. For further questions, comments, orsuggestions on the documentation, you can contact us by e-mailat [email protected]; or you can fax your comments and sugges-tions to (86) 755 26772236. You can also browse our websiteat http://support.zte.com.cn, which contains various interestingsubjects like documentation, knowledge base, forum and servicerequest.
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C h a p t e r 1
Cabinet
Table of ContentsCabinet Overview ............................................................... 1Cabinet Components........................................................... 6Technical Specifications ......................................................12
Cabinet OverviewCabinet Outline
FSAP 9800 uses two cabinet types:
� 19D06H22 cabinet
Dimensions: 2200 mm×600 mm× 600 mm (Height × Width ×Depth)
� 19D06H16 cabinet
Dimensions: 1600 mm× 600 mm × 600 mm (Height ×Width× Depth)
Outline Figure 1 shows the 19D06H22 cabinet outline.
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FIGURE 1 19D06H22 CABINET
Figure 2 shows the 19D06H16 cabinet outline.
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FIGURE 2 19D06H16 CABINET
Cabinet Configurations
FSAP 9800 uses two cabinet types:
� 19D06H22
� 19D06H16
19D06H22 19D06H22 cabinet can be configured with a splitter shelf or withouta splitter shelf.
� Configured with the splitter shelf, one 19D06H22 cabinet canhold two subscriber shelves. A single shelf provides 1792 lines.
� Configured without the splitter shelf, one 19D06H22 cabinetcan hold three subscriber shelves. A single shelf provides 2688lines.
Figure 3 shows the components in FSAP 9800 19D06H22 cabinet.
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FIGURE 3 COMPONENTS IN FSAP 9800 19D06H22 CABINET
19D06H16 19D06H16 cabinet can be configured with a splitter shelf or withouta splitter shelf.
� Configured with the splitter shelf, one 19D06H16 cabinet canhold one subscriber shelf. A single shelf provides 896 lines.
� Configured without the splitter shelf, one 19D06H22 cabinetcan hold two subscriber shelves. A single shelf provides 1792lines.
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Figure 4 shows the components in FSAP 9800 19D06H16 cabinet.
FIGURE 4 COMPONENTS IN FSAP 9800 19D06H16 CABINET
Cabinet Assembly Diagram
Figure 5 shows the cabinet assembly diagram.
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FIGURE 5 CABINET ASSEMBLY DIAGRAM
Cabinet ComponentsBesides cards, service shelf and splitter shelf, FSAP 9800 cabinethas the following components.
� Power distributor
� Fan tray
� 3U cable rack (only for FSAP 9800)
� Line tester (optional)
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Chapter 1 Cabinet
� EPM unit (optional)
Functions Table 1 lists these components’ functions.
TABLE 1 COMPONENTS
Name Functions
Powerdistributor
Supplies DC power
Fan tray Ventilates the shelf
3U cablerack
Wiring
Line tester Tests ADSL lines (optional)
EPM unit Monitors environment parameter and power supplies.It monitors the primary power, AC, secondary power,distribution frame alarm. It also monitors environmentfactors like smog, flood, theft, and temperature.
Power Distributor
Introduction FSAP 9800 supports two power distributors:
� PWRS
� PWRC
PWRS
PWRC
Fan Tray
Introduction Fan tray is used to ventilate the shelf.
Types There are three types of fan trays and they are same in appear-ance.
� Fan tray
� Fan tray (wide voltage range)
� Speed-regulation fan tray
Table 2 lists the fan trays.
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TABLE 2 FAN TRAYS
Name Function Connection Consumption
Fan tray Monitoring fansand indicatingfans status
To the EPS/EPM, then, tothe control andswitch card viaEPS/EPM
Fan tray (widevoltage range)
Monitoring fansand indicatingfans status.Supporting – 48V to -69 V
To the EPS/EPM, then, tothe control andswitch card viaEPS/EPM
Speed-regulation fantray
Monitoring fansand detectingtemperature.Adjusting fansspinning speedaccording toenvironmenttemperature
To the controland switch card
Consumption:66 W
Outline Fan tray dimensions are 43.6 mm×482.6 mm×360 mm(Height×Width×Depth).
Figure 6 shows the fan tray outline.
FIGURE 6 FAN TRAY OUTLINE
The socket with PWR on the panel is for DC power input. The RJ-45port with FAN on the panel is a monitoring port.
3U Cable Rack
Introduction The 3U cable rack is used for wiring.
Outline Its dimensions are 130.55 mm×482.6 mm ×188 mm(Height×Width×Depth).
Figure 7 shows the outline of a 3U cable rack.
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Chapter 1 Cabinet
FIGURE 7 3U CABLE RACK
Line Tester
Introduction Line tester tests different control and data lines.
Outline Its dimensions are 43 mm×431.8 mm×254 mm (Height ×Width× Depth).
Figure 8 shows the line tester outline.
FIGURE 8 LINE TESTER OUTLINE
Front Panel Figure 9 shows the front panel of a line tester. The RESET buttonon front panel is used to reset the tester.
FIGURE 9 FRONT PANEL
Back Panel Figure 10 shows the back panel of a line tester.
FIGURE 10 BACK PANEL
Table 3 lists the interfaces functions on the back panel.
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TABLE 3 INTERFACES ON THE BACK PANEL
Interface Functions
EXTERNAL(PORT1) Not used in this version
EQUIPMENT(PORT2) Not used in this version
ETHERNET Not used in this version
RS232/V.24(SERIAL) Connects to NE test control cables
Grounding mark Grounding protection
Ring Connects to NE test data cables
Tip Connects to NE test data cables
POWER(GND -48 V) Leads in –48 V DC
LED Indicators Table 4 lists the LED indicators.
TABLE 4 INDICATORS ON LINE TESTER
Name Color Status Meaning
Green ON Tester powersupply isworkingnormally.
POWER
- OFF Tester powersupply is faulty.
Green ON Tester isworking.
TESTING
- OFF Tester is instandby status.
ERROR Red ON Tester is faulty.
EPM Unit
Introduction An EPM unit monitors the environment parameters.
Outline The dimensions are 43.6 mm×482.6 mm×271 mm(Height×Width×Depth).
Figure 11 shows an EPM unit.
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FIGURE 11 EPM UNIT
Front Panel Figure 12 shows the front panel of an EPM unit.
FIGURE 12 EPM UNIT FRONT PANEL
Ports Description EPM front panel has several reserved and serial ports.
� Reserved ports are:
� Fan Hand
� Reserve Out1
� Reserve Out2
� Reserve In1
� Reserve In2
� Gard2
� Hum2
� Smoke2
� Liquid2
� Temp2
� 232-3
� Test
� 485-1
� 485-2
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� Environment monitoring ports are:
� Gard1
� Liquid1
� Temp1
� Hum1
� Smoke1
� Serial ports are:
� Port 232-2 connects to NE
� Port 232-0 and 232-1 connects to equipments like powersupply equipment, air-conditioners, and diesel machines.
Technical SpecificationsIntroduction The following technical specifications are introduced:
� Environment conditions
� Dimensions
� Weight
� System capacity
� Shelf power consumption
� Card power consumption
� Operation voltage
EnvironmentConditions
Table 5 lists the environment parameters.
TABLE 5 ENVIRONMENT PARAMETERS
Name Requirements
Ground-ing re-quire-ments
< 1 Ohm
Tempera-ture
-5 ºC ~ 45 ºC
Humidity 5% ~ 95%
Clean-ness
Dust concentration should not be electrically andmagnetically conductive and erosive and not more than 3× 104 grains/m3.
Lighting � Do not let sunshine enter the equipment room directlyto prevent circuit cards and other components fromaging and deforming.
� Keep average luminance within 150 Lx ~ 200 Lx,without flare.
� Light the equipment room by fluorescence lampsembedded in the ceiling.
� Equip the room with emergency lights.
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Name Requirements
Airpressure
70 kPa ~ 106 kPa
Airpollution
Do not expose the equipment in corrosive gas, such assulfured hydrogen, sulfur dioxide and ammonia oxide; andsmoke, such as oil solvent and smoke. Do not smoke inthe equipment room.
Dimensions Table 6 lists FSAP 9800 equipment dimensions.
TABLE 6 EQUIPMENT DIMENSIONS
Type Dimensions
Cabinet (19D06H22) 2200 mm × 600 mm × 600 mm(H × W × D)
Cabinet (19D06H16) 1600 mm × 600 mm × 600 mm(H × W × D)
9800 subscriber shelf 399.2 mm × 482.6 mm × 387.5mm (H × W × D)
9800 splitter shelf 399.2 mm × 482.6 mm × 387.5mm (H × W × D)
Control and switch card 366.7 mm × 25 mm × 345 mm(H × W × D)
Ethernet interface card 366.7 mm × 25 mm × 345 mm(H × W × D)
ATM interface card 366.7 mm × 25 mm × 345 mm(H × W × D)
DSL subscriber card 366.7 mm × 25 mm × 345 mm(H × W × D)
DSL splitter card 366.7 mm × 25 mm × 345 mm(H × W × D)
EPN card 366.7 mm × 25 mm × 345 mm(H × W × D)
GPNC card 366.7 mm × 25 mm × 345 mm(H × W × D)
PDBX 167.1 mm × 37 mm × 342.5 mm(H × W × D)
LTN 366.7 mm × 25 mm × 345 mm(H × W × D)
9800 subscriber backplane 436.6 mm × 395.2 mm (W × H)
9800 splitter backplane 436.6 mm × 395.2 mm (W × H)
Note: H – Height ; W – Width ; D – Depth
Weight 19D06H22 cabinet is 110 kg. 19D06H16 cabinet is 91 kg.
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FSAP 9800 Hardware Manual
System Capacity Table 7 lists FSAP 9800 system capacity indices.
TABLE 7 SYSTEM CAPACITY INDICES
Type Quantity
ADSL2/2+ ports in a single shelf 896
VDSL2 ports in a single shelf 672
SHDSL ports in a single shelf 448
EPON ports in a single shelf 14
Using MDCA/MDCE backplane: 8GPON ports in a single shelf
Using MDCF backplane: 14
Shelf PowerConsumption
FSAP 9800 single shelf power consumption (with full configura-tion): 1500 W
Card PowerConsumption
Table 8 lists FSAP 9800 card power consumption.
TABLE 8 CARDS POWER CONSUMPTIONS
Card Power Consumption (Watts)
CSCA 33
CSCE 30
CSCM 31
CSCT 33
MSCT 45
MSCX 45
EINT 10
EINB 5
AINC 50
ATNG 45
ASNV 80
VSNKC 120
STNG 45
SSNG 34
ISNV 80
EPN 9
GPNC 45
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Card Power Consumption (Watts)
VNKN 0
PNVNA 0
PNVTA 3
INVNA 0
PNVNP 0
LTN 15
EPS 3
Operation Voltage Table 9 lists FSAP 9800 operation voltage.
TABLE 9 OPERATION VOLTAGE
Type Voltage
Rated voltage: -48 V DCDC operation voltage
Range: -57 V DC ~ -40 V DC
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C h a p t e r 2
Shelf
Table of ContentsShelf Structure..................................................................17Backplane Structure...........................................................19Shelf Configuration ............................................................24Inter-shelf Communication .................................................25
Shelf StructureFSAP 9800 has two shelves:
� Subscriber shelf
� Splitter shelf
Subscriber Shelf
Introduction FSAP 9800 subscriber shelf holds the control and switch cards, Eth-ernet interface cards, ATM interface cards, DSL subscriber cards,DSL splitter cards, EPON card, GPON card, power conversion andtest card, environment and power monitoring card .
Dimensions FSAP 9800 subscriber shelf dimensions are 399.2 mm×482.6mm×387.5 mm (Height×Width×Depth).
Figure 13 shows FSAP 9800 subscriber shelf structure.
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FIGURE 13 FSAP 9800 SUBSCRIBER SHELF
Splitter Shelf
Introduction FSAP 9800splitter shelf holds the DSL splitter cards, line-capturecontrol card, environment and power monitoring card.
Dimensions FSAP 9800 splitter shelf dimensions are 399.2 mm×482.6mm×387.5 mm (Height ×Width×Depth).
Figure 14 shows FSAP 9800 splitter shelf structure.
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Chapter 2 Shelf
FIGURE 14 FSAP 9800 SPLITTER SHELF
Backplane StructureFSAP 9800 (V3.0.0) subscriber shelf supports three backplanes:
� MDCA
� MDCE
� MDCF
FSAP 9800 (V3.0.0) splitter shelf supports one backplane: MTAN.
MDCA
Introduction MDCA is one of FSAP 9800 backplanes. MDCA backplane workswith the control and switch card CSCA/CSCE/CSCM/CSCT.
Functions The functions are as follows:
� Supports broad/narrowband integrated service access
� Mechanical support for all cards
� Power supply
� Service and management communication channels from thecontrol and switch card to other cards
� Power connections from the power card to other cards
Diagram Figure 15 shows MDCA diagram.
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FIGURE 15 MDCA BACKPLANE
Interfaces andSockets
Table 10 lists interfaces and sockets on an MDCA.
TABLE 10 INTERFACES AND SOCKETS ON MDCA
Socket andInterface
Type Description
TEST-1U (X21) RJ-45 Reserved
TEST-1D (X22) RJ-45 Reserved
TEST-2U (X24) RJ-45 Reserved
TEST-2D (X25) RJ-45 Reserved
CSV (X23) RJ-45 Reserved
-48 V POWER (X140,X138)
Socket Connects to -48 VDC
FAN POWER (X139) Socket Reserved
MDCE
Introduction MDCE is one of FSAP 9800 backplanes. MDCE backplane workswith the control and switch card CSCA/CSCE/CSCM/CSCT.
Functions The functions are as follows:
� Supports pure broadband service access
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� Mechanical support for all cards
� Power supply
� Service and management communication channels from thecontrol and switch card to other cards
� Power connections from the power card to other cards
Diagram Figure 16 shows MDCE backplane.
FIGURE 16 MDCE BACKPLANE
Interfaces andSockets
Table 11 lists interfaces and sockets on MDCE backplane.
TABLE 11 INTERFACES ON MDCE
Socket andInterface
Type Description
TEST 1/UPLINK 1(X21)
RJ-45 Reserved
DNLINK (X22) RJ-45 Reserved
CSV (X23) RJ-45 Reserved
FAN POWER (X139) Socket Reserved
-48 V POWER (X140,X138)
Socket Connects to -48 V DC
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MDCF
Introduction MDCF is one of FSAP 9800 backplanes. MDCF backplane workswith the control and switch card MSCT/MSCX.
Functions The functions are as follows:
� Supports larger bandwidth, each slot’s bandwidth reaching upto 4 GE. Provides two 10G interface uplink slots.
� Mechanical support for all cards
� Power supply
� Service and management communication channels from thecontrol and switch card to other cards
� Power connections from the power card to other cards
Diagram Figure 17 shows MDCF diagram.
FIGURE 17 MDCF BACKPLANE
Interfaces andSockets
Table 12 lists interfaces and sockets on an MDCF.
TABLE 12 INTERFACES AND SOCKETS ON MDCF
Socket andInterface
T-y-p-e
Description
TEST1/UPLINK1(X21)
R-J-45
Reserved
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Socket andInterface
T-y-p-e
Description
DNLINK1 (X22) R-J-45
Reserved
TEST2/UPLINK2(X16)
R-J-45
Reserved
DNLINK2 (X24) R-J-45
Reserved
CSV (X23) R-J-45
Reserved
FAN POWER (X139) S-o-c-k-et
Reserved
-48 V POWER (X140,X138)
S-o-c-k-et
Connects to -48 V DC
MTAN
Introduction MTAN is FSAP 9800 splitter shelf backplane.
Functions The functions are as follows:
� Mechanical support for cards
� Power supply
� Management communication channels from the control andswitch card to test control, splitter and line cards
Diagram Figure 18 shows an MTAN diagram.
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FIGURE 18 MTAN BACKPLANE
Shelf ConfigurationFSAP 9800 can hold a subscriber shelf and splitter shelf. The split-ter shelf is optional in configuration.
This topic describes shelf configurations, including:
� Subscriber shelf configuration
� Splitter shelf configuration
Subscriber Shelf Configuration
The subscriber shelf can be configured in two modes:
� Mode 1: Holding subscriber cards with built-in splitter cardsonly, implementing broadband data service and narrowbandvoice service access at the same time.
� Mode 2: Holding subscriber cards without built-in splitters andsplitter cards together, implementing broadband data serviceand narrowband voice service access at the same time.
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Chapter 2 Shelf
Mode 1
Mode 2
Splitter Shelf Configuration
Introduction FSAP 9800 splitter shelf holds splitter cards.
Slot Distribution Figure 19shows the slot distribution in an FSAP 9800 splitter shelf.
FIGURE 19 FSAP 9800 SPLITTER SHELF SLOT DISTRIBUTION
� The slots corresponding to the power card slots of FSAP 9800subscriber shelf are for the line test card (LTN).
� Slots 2 ~ 8, Slot 10 and Slots 12 ~ 17 are for the splitter cards.
� Slot 9 and 11 are blank.
Note:
The introduction above does not mention the environment andpower monitoring card (EPS). If it is required to configure EPS,insert EPS in any slot except the slot for PDBX. If the splitter shelfis used, it is recommended to insert EPS in the slot for the switchand control card.
Inter-shelf CommunicationInter-shelf communication contains two parts:
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� NE cascading
� Test cascading
NE Cascading
Introduction FSAP 9800 provides different electrical and optical Ethernet portsfor uplink/ cascade. These ports are:
� 10 Mbps/100 Mbps/1000 Mbps Ethernet electrical ports for up-link/cascade
� 100 Mbps/100 Mbps optical ports for uplink/cascade
� 10GE optical port for uplink
Diagram Figure 20 shows NE cascading mode.
FIGURE 20 NES CASCADING
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Chapter 2 Shelf
Test Cascading
PDBX card provides two RJ-45 ports for NE test cascading. Theseports transmit data when several cascading NEs use one tester. Inthis mode, when several NEs are cascaded, their respective PDBXcards are also cascaded and line test functions are performed.
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C h a p t e r 3
Cards
Table of ContentsList of Cards .....................................................................29Card Description................................................................30
List of CardsFSAP 9800 system uses the following cards:
� Control and switch card
� CSCA
� CSCE
� CSCM
� CSCT
� MSCT
� MSCX
� Ethernet interface sub-cards
� OGFM
� OGFB
� TGFC
� SGFM
� SGFB
� SGFC
� SGFN
� SGFE
� Ethernet cards
� EINT
� EINB
� Subscriber cards
� ATNG
� ASNV
� ISNV
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� VSNKC
� STNG
� SSNG
� Splitter cards
� PNVNA
� PNVTA
� PNVNP
� INVNA
� VNKN
� ATM card
� AINC
� ATM sub-cards
� AICA
� IMCA
� PON cards
� EPN
� GPNC
� Other cards
� PDBX
� LTN
� EPS
Card DescriptionThis topic describes all cards used in FSAP 9800.
CSCA Card
Overview CSCA card is the core of control and switching in the system. Itprovides powerful switching capability and a series of ports on thebackplane. It supports Layer-2 version functions. CSCA does notsupport sub-cards.
Interfaces Table 13 lists interfaces on the panel of a CSCA card.
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Chapter 3 Cards
TABLE 13 CSCA PANEL INTERFACES
In-ter-face
Description
GE1–GE4
Optical interfaces
ET-H-M
100Base-TX Ethernet port; used for out-of-band NM anddebugging
CON Debugging console port
FAN Connected to the fan tray or EPM unit for monitoring
ET-H-T
Test interface port
Panel Description Figure 21 shows CSCA card front panel.
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FIGURE 21 CSCA PANEL
Table 14 lists LED indicators on a CSCA panel.
TABLE 14 CSCA PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ON Card is active.MAIN Green
OFF Card is standby.
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Name Color Status Meaning
ON Link isestablished.
GE1 – GE4 Green
OFF/Flashing Abnormalconnection.
Buttons There are two buttons on CSCA panel:
� RST: The RST button is used to reset the card.
� HOT-SWAP: The HOT-SWAP button is used to change over theactive and standby CSCA cards.
CSCE Card
Overview CSCE card is the core of control and switching in the system. Itprovides powerful switching capability and a series of ports on thebackplane. It supports Layer-2 version functions.
Interfaces CSCE supports upper and lower sub-cards, which provide inter-faces for uplink/cascade.
Table 15 lists interfaces on the panel of a CSCE card.
TABLE 15
In-ter-f-ace
Description
1 - 6 Electrical or optical interfaces
ET-H-M
100Base-TX Ethernet port; used for out-of-band NM anddebugging
CO-N
Debugging console port
FAN Connected to the fan tray or EPM unit for monitoring
ET-H-T
Test interface port
Panel Description Figure 22 shows CSCE card front panels.
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FIGURE 22 CSCE PANELS
Table 16 lists LED indicators on a CSCE panel.
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TABLE 16 CSCE PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ON Card is active.MAIN Green
OFF Card is standby.
ON Link isestablished.
L1 - L6 (opticalinterface linkindicators)
Green
OFF/Flashing Abnormalconnection.
ON Link isestablished.
Electricalinterface linkindicator
Green
OFF/Flashing Abnormalconnection.
Flashing The interface isreceiving/trans-mitting data.
Electricalinterface datareceiving/transmittingindicator
Yellow
OFF The interfaceis not receiv-ing/transmit-ting data.
Remarks: Both the electrical interface link indicator and electricalinterface data receiving/transmitting indicator are attached to therelevant RJ-45 socket.
Button There is a RST button on CSCE panel for resetting the card.
CSCM Card
Overview CSCM card is the core of control and switching in the system. Itprovides powerful switching capability and a series of ports on thebackplane. It supports Layer-3 version functions.
Interfaces CSCM supports upper and lower sub-cards, which provide inter-faces for uplink/cascade.
Table 17 lists interfaces on the panel of a CSCM card.
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TABLE 17 CSCM PANEL INTERFACES
In-te-rf-ace
Description
1 -6
Electrical or optical interfaces
ET-H-M
100Base-TX Ethernet port; used for out-of-band NM anddebugging
CO-N
Debugging console port
FAN Connected to the fan tray or EPM unit for monitoring
ET-H-T
Test interface port
Panel Description Figure 23shows CSCM card front panels.
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FIGURE 23 CSCM PANELS
Table 18 lists LED indicators on a CSCM panel.
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TABLE 18 CSCM PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ON Card is active.MAIN Green
OFF Card is standby.
ON Link isestablished.
L1 - L6 (opticalinterface linkindicators)
Green
OFF/Flashing Abnormalconnection.
ON Link isestablished.
Electricalinterface linkindicator
Green
OFF/Flashing Abnormalconnection.
Flashing The interface isreceiving/trans-mitting data.
Electricalinterface datareceiving/transmittingindicator
Yellow
OFF The interfaceis not receiv-ing/transmit-ting data.
Remarks: Both the electrical interface link indicator and electricalinterface data receiving/transmitting indicator are attached to therelevant RJ-45 socket.
Button There is a RST button on CSCM panel for resetting the card.
CSCT Card
Overview CSCT card is the core of control and switching in the system. Itprovides powerful switching capability and a series of ports on thebackplane. It supports Layer-2 version functions. It supports 16KMAC addresses
Interfaces CSCT supports upper and lower sub-cards, which provide inter-faces for uplink/cascade.
Table 19 lists interfaces on the panel of a CSCT card.
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TABLE 19 CSCT PANEL INTERFACES
I-nt-er-fa-ce
Description
1 -6
Electrical or optical interfaces
ET-H-M
100Base-TX Ethernet port; used for out-of-band NM anddebugging
C-ON
Debugging console port
FA-N
Connected to the fan tray or EPM unit for monitoring
ET-H-T
Test interface port
Panel Description Figure 24 shows CSCT card front panels.
FIGURE 24 CSCT PANELS
Table 20 lists LED indicators on a CSCT panel.
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TABLE 20 CSCT PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ON Card is active.MAIN Green
OFF Card is standby.
ON Link isestablished.
L1 - L6 (opticalinterface linkindicators)
Green
OFF/Flashing Abnormalconnection.
ON Link isestablished.
Electricalinterface linkindicator
Green
OFF/Flashing Abnormalconnection.
Flashing The interface isreceiving/trans-mitting data.
Electricalinterface datareceiving/transmittingindicator
Yellow
OFF The interfaceis not receiv-ing/transmit-ting data.
Remarks: Both the electrical interface link indicator and electricalinterface data receiving/transmitting indicator are attached to therelevant RJ-45 socket.
Button There is a RST button on CSCT panel for resetting the card.
MSCT Card
Overview MSCT card is a high-bandwidth control and switch card. It is thecontrol and switch core in the system. It supports Layer-3 versionfunction and narrowband service access.
Interfaces MSCT supports upper and lower sub-cards, which provide inter-faces for uplink/cascade.
Table 21lists interfaces on an MSCT panel.
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TABLE 21 MSCT PANEL INTERFACES
In-ter-face
Description
1 - 6 Electrical or optical interfaces
ET-H-M
10 M/100 M Ethernet electrical interface, used for out-of-bandNM
CON RS-232 serial port, used for debugging or hyper terminaloperation
FAN Connected to the fan tray or EPM unit for monitoring
ET-H-T
10 M/100 M Ethernet electrical interface, used for test
2MI-N
2 Mbps/2 MHz BITS clock interface (coaxial interface)
Panel Description Figure 25 shows MSCT panels.
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FIGURE 25 MSCT PANELS
Table 22 lists LED indicators on an MSCT panel.
TABLE 22 MSCT PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ON Card is active.MAIN Green
OFF Card is standby.
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Name Color Status Meaning
ON Link isestablished.
L1 - L6 (opticalinterface linkindicators)
Green
OFF/ Flashing Abnormalconnection.
ON Link isestablished.
Electricalinterface linkindicators
Green
OFF/ Flashing Abnormalconnection.
Flashing The interface isreceiving/trans-mitting data.
Electrical in-terface datareceiving/trans-mitting indica-tor
Yellow
OFF The interfaceis not receiv-ing/transmit-ting data.
Remarks: Both the electrical interface link indicator and electricalinterface data receiving/transmitting indicator are attached to therelevant RJ-45 socket.
Button There is a RST button on each MSCT panel for resetting the card.
MSCX Card
Overview MSCX card is a high-bandwidth control and switch card. It is thecontrol and switch core in the system. It supports Layer-3 versionfunction and narrowband service access. It provides 10GE opticalinterface.
Interfaces MSCX supports upper and lower sub-cards, which provide inter-faces for uplink/cascade.
Table 23 lists interfaces on an MSCX panel.
TABLE 23 MSCT PANEL INTERFACES
In-ter-face
Description
1–4 Electrical or optical interfaces
5 10GE optical interface
ET-H-M
10 M/100 M Ethernet electrical interface, used for out-of-bandNM
CON RS-232 serial port, used for debugging or hyper terminaloperation
FAN Connected to the fan tray or EPM unit for monitoring
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In-ter-face
Description
ET-H-T
10 M/100 M Ethernet electrical interface, used for test
2MIN 2 Mbps/2 MHz BITS clock interface (coaxial interface)
Panel Description Figure 26shows MSCX panels.
FIGURE 26 MSCX PANELS
Table 24 lists LED indicators on an MSCX panel.
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TABLE 24 MSCX PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ON Card is active.MAIN Green
OFF Card is standby.
ON Link isestablished.
L1 – L5(10G/GE opticalinterface linkindicators)
Green
OFF/ Flashing Abnormalconnection.
ON Link isestablished.
Electricalinterface linkindicators
Green
OFF/ Flashing Abnormalconnection.
Electricalinterface datareceiving/
Flashing The interface isreceiving/trans-mitting data.
transmittingindicator
Yellow
OFF The interfaceis not receiv-ing/transmit-ting data.
Remarks: Both the electrical interface link indicator and electricalinterface data receiving/transmitting indicator are attached to therelevant RJ-45 socket.
Button There is a RST button on each MSCX panel for resetting the card.
Ethernet Interface Sub-cards
Ethernet interface sub-cards are sub-cards used together with thecontrol and switch cards.
Table 25, Table 26 and Table 27 list the combination of control andswitch card’s Ethernet interface sub-cards.
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TABLE 25 COMBINATION OF CONTROL AND SWITCH CARD’SSUB-CARDS (CSCA/CSCE/CSCM/CSCT)
Upper Sub-card Lower Sub-card
SGF-M
100 M Ethernet 2-channeloptical interface sub-card
SGF-B
1000 M Ethernet 2-channeloptical interface sub-card
OGFM 100 M Ethernet4-channeloptical interfacesub-card
SGF-C
10/100/1000 M Ethernet2-channel electrical interfacesub-card
SGF-M
100 M Ethernet 2-channeloptical interface sub-card
SGF-B
1000 M Ethernet 2-channeloptical interface sub-card
OGFB 1000 M Ethernet4-channeloptical interfacesub-card
SGF-C
10/100/1000 M Ethernet2-channel electrical interfacesub-card
SGF-M
100 M Ethernet 2-channeloptical interface sub-card
SGF-B
1000 M Ethernet 2-channeloptical interface sub-card
TGFC 10/100/1000M Ethernet4-channelelectricalinterfacesub-card
SGF-C
10/100/1000 M Ethernet2-channel electrical interfacesub-card
SGF-M
100 M Ethernet 2-channeloptical interface sub-card
SGF-B
1000 M Ethernet 2-channeloptical interface sub-card
No sub-card
SGF-C
10/100/1000 M Ethernet2-channel electrical interfacesub-card
TABLE 26 COMBINATION OF CONTROL AND SWITCH CARD’SSUB-CARDS (MSCT)
Upper Sub-card Lower Sub-card
OGFM 100 M Ethernet4-channel opticalinterface sub-card
SGFB 1000 M Ethernet 2-channeloptical interface sub-card
OGFB 1000 M Ethernet4-channel opticalinterface sub-card
SGFB 1000 M Ethernet 2-channeloptical interface sub-card
TGFC 10/100/1000M Ethernet4-channel
SGFB 1000 M Ethernet 2-channeloptical interface sub-card
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Upper Sub-card Lower Sub-card
electrical interfacesub-card
SGFN 100 M Ethernet2-channel opticalinterface +10/100/1000M Ethernet2-channelelectrical interfacesub-card
SGFB 1000 M Ethernet 2-channeloptical interface sub-card
SGFE 1000 M Ethernet2-channel opticalinterface +10/100/1000M Ethernet2-channelelectrical interfacesub-card
SGFB 1000 M Ethernet 2-channeloptical interface sub-card
No sub-card SGFB 1000 M Ethernet 2-channeloptical interface sub-card
TABLE 27 COMBINATION OF CONTROL AND SWITCH CARD’SSUB-CARDS (MSCX)
Upper Sub-card Lower Sub-card
OGFM 100 M Ethernet 4-channel opticalinterface sub-card
10 G opticalmodule
OGFB 1000 M Ethernet 4-channel opticalinterface sub-card
10 G opticalmodule
TGFC 10/100/1000 M Ethernet 4-channelelectrical interface sub-card
10 G opticalmodule
SGFN 100 M Ethernet 2-channel opticalinterface + 10/100/1000 M Ethernet2-channel electrical interfacesub-card
10 G opticalmodule
SGFE 1000 M Ethernet 2-channel opticalinterface + 10/100/1000 M Ethernet2-channel electrical interfacesub-card
10 G opticalmodule
No sub-card 10 G opticalmodule
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Note:
10 G optical module is not a sub-card. It resides at the sub-cardplace.
AINC Card
Overview AINC is ATM interface card used in FSAP 9800 (V3.0.0). AINCprovides ATM interfaces for cascade or uplink. It supportsATM/E1/IMA access.
There are two sub-card sockets on AINC card. The upper one isfor AICA sub-card. The lower one is for IMCA sub-card.
� AICA provides two or four ATM 155M single-mode/multi-modeoptical interfaces.
� IMCA provides 16 IMA E1/T1 interfaces. There are two typesof IMCA sub-cards:
� IMCAC: IMCAC provides coaxial cable connector, connect-ing 75 ohm micro coaxial cable.
� IMCAT: IMCAT provides twisted pair connector, connecting120 ohm twisted pairs.
Interfaces Table 28lists interfaces on the panel of an AINC card.
TABLE 28 AINC PANEL INTERFACES
Interface Description
1 – 4 Ethernet optical interfaces
IMA (5 - 20) 16 IMA interfaces
Panel Description There is a RST button on AINC panel for resetting card.
Figure 27shows AINC panels.
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FIGURE 27 AINC PANELS
Table 29 lists LED indicators on an AINC panel.
TABLE 29 AINC PANEL INDICATORS
Name Color Status Meaning
ON Card is poweredON.
Green
Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
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Name Color Status Meaning
ON Link isestablished.
1–20 Green
OFF/Flashing Link is broken.
Remarks:
� When AICA is configured, indicators 1 to 4 are used.� When IMCA is configured, indicators 5 to 20 are used.
EINT Card
Overview EINT card is FSAP 9800 10G optical interface card. It provides 110 GE Ethernet interface for uplink.
Interfaces Table 30 lists interfaces on the panel of an EINT card.
TABLE 30 EINT PANEL INTERFACES
Interface Description
GE1 – GE4 Not used in this version.
XG 10G optical interface
Panel Description Figure 28 show EINT panel.
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FIGURE 28 EINT PANEL
Table 31 lists LED indicators on the EINT panel.
TABLE 31 EINT PANEL INDICATORS
Name Color Status Meaning
Flashing Card is workingnormally.
RUN Green
OFF CPLD is notburnt or card ispower OFF.
ON 10 GE PHY linkis established.
XG Green
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Name Color Status Meaning
OFF Abnormalconnection.
Flashing The interface isreceiving/trans-mitting data.
EINB Card
Overview EINB card is FSAP 9800 2GE/4GE optical interface card. It provides2 or 4 GE Ethernet interfaces for uplink.
Interfaces Table 32 lists interfaces on the panel of an EINB card.
TABLE 32 EINB PANEL INTERFACES
Interface Description
GE1 – GE4 GE optical interface
Panel Description Figure 29 show EINB card panel.
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FIGURE 29 EINB PANEL
Table 33 lists LED indicators on the EINB panel.
TABLE 33 EINB PANEL INDICATORS
Name Color Status Meaning
Flashing Card is workingnormally.
RUN Green
OFF CPLD is notburnt or card ispower OFF.
ON There aresignals.
G1 – G4 Green
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Name Color Status Meaning
OFF Abnormalconnection.
Flashing The interface isreceiving/trans-mitting data.
ATNG Card
Overview ATNG card is an ADSL2+ over POTS subscriber card (with test func-tion). It works together with remote ATU-R to provide 32-channelADSL2+ subscriber access.
Interfaces ATNG provides 32 ports for ADSL2+ subscribers on its front panel.Table 34 lists interface descriptions.
TABLE 34 ATNG PANEL INTERFACES
Na-me
Description
US-ER
32 ADSL2+ ports for connecting to subscribers
POT-S
POTS signal interface for connecting to PSTN exchange
Panel Description On an ATNG panel, there are:
� One LED indicator
� 32 link LED indicators
� Two sockets
� A reset button
Figure 30 shows an ATNG card panel.
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FIGURE 30 ATNG PANEL
Table 35 lists LED indicators on an ATNG panel.
TABLE 35 ATNG PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ON Link isestablished.
Link indicators Green
OFF Link is broken.
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ASNV Card
Overview ASNV card is an ADSL2+ over POTS subscriber card. It workstogether with remote ATU-R to provide 64-channel ADSL2+ sub-scriber access. The card has to work together with one of thefollowing splitter cards:
� PNVNA
� PNVTA
� PNVNA (for Europe)
Interfaces ASNV provides 64 ports for ADSL2+ subscribers on its front panel.Table 36 lists interface descriptions.
TABLE 36 ASNV PANEL INTERFACES
Na-me
Description
AD-SL2
Connected to the ADSL2 interface on the splitter card
AD-SL1
Connected to the ADSL1 interface on the splitter card
Panel Description Figure 31 shows the front panel of an ASNV card.
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FIGURE 31 ASNV PANEL
Table 37 lists the LED indicator on an ASNV panel.
TABLE 37 ASNV PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
ISNV Card
Overview ISNV card is an ADSL2+ over ISDN subscriber card. It works to-gether with remote ATU-R to provide 64-channel ADSL2+ over
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ISDN subscriber access. ISNV has to work together with the split-ter card INVNA.
Interfaces It provides 64 ports for ADSL2+ subscribers on its front panel.
Table 38 lists interface descriptions.
TABLE 38 ISNV PANEL INTERFACES
Na-me Description
AD-SL2
Connects to the ADSL2 interface on the splitter card
AD-SL1
Connects to the ADSL1 interface on the splitter card
Panel Description Figure 32 shows front panel of an ISNV card.
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FIGURE 32 ISNV CARD PANEL
Table 39 lists the LED indicator on an ISNV panel.
TABLE 39 ISNV PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
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VSNKC Card
Overview VSNKC card is a VDSL2 over POTS subscriber card. It works to-gether with remote VTU-R to provide 48-channel VDSL2 subscriberaccess. VSNKC has to work together with the splitter card VNKN.
Interfaces VSNKC has two VDSL interfaces on its front panel (VDSL1 andVDSL2), which provide 48 ports for VDSL2 subscriber access.
Panel Description Figure 33shows the front panel of a VSNKC card.
FIGURE 33 VSNKC PANEL
Table 40 lists the LED indicator on a VSNKC panel.
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TABLE 40 VSNKC PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
STNG Card
Overview STNG card is a SHDSL subscriber card. It works together withremote STU-R to provide 32-channel SHDSL subscriber access.
Interfaces STNG has a USER interface on its front panel, which provides 32ports for SHDSL subscribers.
Panel Description Figure 34 shows the front panel of a STNG card.
FIGURE 34 STNG PANEL
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Table 41 lists the LED indicator on a STNG panel.
TABLE 41 STNG PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
SSNG Card
Overview SSNG card is a SHDSL subscriber card. It works together withremote STU-R to provide 32-channel SHDSL subscriber access.
Interfaces SSNG has a USER interface on its front panel, which provides 32ports for SHDSL subscribers.
Panel Description Figure 35 shows the front panel of a SSNG card.
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FIGURE 35 SSNG PANEL
Table 42 lists the LED indicator on a SSNG panel.
TABLE 42 SSNG PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
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Splitter Cards
Overview Splitter card separates voice signals from service signals. It workstogether with service cards and transmits service signals to them.
Types FSAP 9800 has five types of splitter cards:
� PNVNA
� PNVTA
� PNVNP
� INVNA
� VNKN
Table 43 lists splitter cards and their interfaces.
TABLE 43 SPLITTER CARDS AND INTERFACES
Card Interface
PNVN-A
64 lines - USER interface; 64 lines - ADSL interface; 64 lines- PSTN interface
PNVTA 64 lines - USER interface; 64 lines - ADSL interface; 64 lines- PSTN interface
PNVNP 64 lines - USER interface; 64 lines - ADSL interface; 64 lines– PSTN (for Europe) interface
INVNA 64 lines - ISDN interface; 64 lines - ADSL interface; 64 lines- PSTN interface
VNKN 48 lines - USER interface; 48 lines – VDSL interface; 48 lines- PSTN interface
Interfaces Table 44 lists interfaces on splitter cards.
TABLE 44 SPLITTER CARD INTERFACES
Inter-face
Description
ADSL1/2
Connects to a USER line interface on an ADSL subscriber card(via ADSL subscriber card and splitter card).
VDSL1/2
Connects to a USER line interface on a VDSL subscriber card(via VDSL subscriber card and splitter card).
USER1/2
Connects to a distribution frame box (via subscriber lines)and transmits POTS and xDSL mixed signals to remoteterminal equipment.
PSTN1/2
Connects to a distribution frame box and receives POTSsignals from PSTN networks.
Panel Description Figure 36 shows a PNVNA card panel.
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FIGURE 36 PNVNA CARD PANEL
Figure 37 shows a PNVTA card panel.
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FIGURE 37 PNVTA CARD PANEL
Figure 38shows a PNVNP card panel.
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FIGURE 38 PNVNP CARD PANEL
Figure 39 shows an INVNA card panel.
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FIGURE 39 INVNA CARD PANEL
Figure 40 shows a VNKN card panel.
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FIGURE 40 VNKN CARD PANEL
EPN Card
Overview EPN card is Ethernet passive optical network card. It implementsEPON system functions at OLT side.
Interfaces EPN provides one EPON interface on its panel.
Panel Description EPN panel has a RST button for resetting card.
Figure 41 shows an EPN card panel.
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FIGURE 41 EPN CARD PANEL
Table 45 lists LED indicators on an EPN panel.
TABLE 45 EPNC PANEL INDICATORS
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
Green Flashing Link is estab-lished. Theport is receiv-ing/transmit-ting data.
ACT
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Name Color Status Meaning
Red ON Opticalinterface isnot connectedor link is notestablished.
Yellow ON Receive errorpackets fromONU.
GPNC Card
Overview GPNC card is Gigabit passive optical network card. It implementsGPON system functions at OLT side.
Interfaces Table 46 lists interfaces on the panel of GPNC card.
TABLE 46 GPNC PANEL INTERFACES
Name Description
1 GPON interface
2 GPON interface
Panel Description GPNC panel has a RST button for resetting card.
Figure 42 shows a GPNC panel.
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FIGURE 42 GPNC PANEL
Table 47 lists LED indicators on a GPNC panel.
TABLE 47 GPNC PANEL INDICATORS
Name Color Status Meaning
Red ON Card is faulty.
Green Flashing Card is runningnormally.
RUN
Yellow ON/Flashing Softwareversionproblem.
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Name Color Status Meaning
ON Link isestablished.
ACT1 (GPONoptical port 1indicator)
Green
OFF Opticalinterface isnot connectedor link is notestablished.
ON Link isestablished.
ACT2 (GPONoptical port 2indicator)
Green
OFF Opticalinterface isnot connectedor link is notestablished.
LTN Card
Overview LTN card is designed for FSAP 9800and it communicates with asplitter card via backplane. It controls splitter card to capture linesand lead out the captured subscriber lines from the front panel.These lines are provided to a tester.
Interfaces LTN can be powered via its front panel or backplane. FSAP 9800shelf provides –48 V power to the LTN card via 3-core socket onits front panel.
LTN has the following ports and interfaces:
� Debugging serial port
� Serial port for connecting to a tester
� Three network interfaces
� Two ports for test cascading
Table 48 lists socket and interfaces.
TABLE 48 SOCKET AND INTERFACES ON LTN CARD
Socket and Interface Descriptions
-48 V DC power socket Power supply
ETHA, ETHB, and ETHC Downloading versions,communications with testersand the control and switch card
SERT Connection to a tester
SERD Debugging serial port
TESTB Leading out subscriber lines fromcable pins 4/5
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Socket and Interface Descriptions
UPLINK, DNLINK NEs cascade and datatransmission when severalNEs use one tester.
Panel Description Figure 43 shows a LTN card panel.
FIGURE 43 LTN CARD PANEL
Table 49 lists the LED indicator on a LTN panel.
TABLE 49 LTN PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
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PDBX Card
Overview PDBX card provides power input and test power conversion func-tions. It is specially used for broadband access subscribers. Itsdimensions are 167.1 mm×37 mm×342.5 mm (Height ×Width×Depth).
Interfaces It provides an internal test bus, an external test bus, and a controlline interface. Table 50 lists interface descriptions.
TABLE 50 PDBX PANEL INTERFACES
Socket and Interface Descriptions
Power socket -48 V DC input, power for all cards
TEST/UPLINK, DNLINK Combined internal test bus,external test bus and test busfunctions
Panel Description Figure 44 shows a PDBX card panel.
FIGURE 44 PDBX CARD PANEL
Table 51 lists the LED indicator on a PDBX panel.
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TABLE 51 PDBX PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
EPS Card
Overview EPS is an environment power monitoring card. It also monitorsand controls fan tray. Its dimensions are 366.7 mm ×25 mm×170mm (Height×Width × Depth).
Interfaces On EPS panel, there are:
� One RUN LED indicator
� 14 RJ-45 sockets
� One 3-core PCB socket
Table 52 lists interface description.
TABLE 52 EPS PANEL INTERFACES
Name Interface Port Type Description
Temperaturesensor
Temp RJ-45 None
Humidity sensor Hum RJ-45 None
Smoke sensor Smoke RJ-45 None
Liquid sensor Liquid RJ-45 None
Guard sensor Guard RJ-45 None
Fan traymonitoringinterface 1
Fan1 RJ-45 Connects to fantray.
Fan traymonitoringinterface 2
Fan2 RJ-45 Connects to fantray.
Fan traymonitoringinterface 3
Fan3 RJ-45 Connects to fantray.
Digital trafficinput interface(Power Pmonitoring)
PowerP RJ-45 Power Pmonitoring
Digital trafficoutput interface
D_out RJ-45 None
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Name Interface Port Type Description
RS-232 port RS232 _0 RJ-45 Connects toCSC EPM serialport or speed-regulation fantray.
RS-232 port RS232_1 RJ-45 Connects toCSC EPM serialport or speed-regulation fantray.
RS-232 port RS232_2 RJ-45 Connects toCSC EPM serialport.
RS-232 (usedwhen ss1 andss2 are ON)
Connects toCSC EPM serialport or speed-regulation fantray.
RS-232/RS-485port
RS-485 (usedwhen ss1 andss2 are OFF)
RJ-45
Connectsto speed-regulation fantray.
-48 V powersupply interface
Power 3-core PCBsocket
Cards powersupply
Note: ss1 and ss2 are ON/OFF switch on EPS card, controllingRS-232/RS-458 serial port.
Panel Description Figure 45 shows an EPS card panel.
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FIGURE 45 EPS CARD PANE
Table 53 lists the LED indicator on an EPS panel.
TABLE 53 EPS PANEL INDICATOR
Name Color Status Meaning
Green Flashing Card is workingnormally.
RUN
Red Flashing Card is faulty.
78 Confidential and Proprietary Information of ZTE CORPORATION
Figures
Figure 1 19D06H22 CABINET .............................................. 2
Figure 2 19D06H16 CABINET ............................................... 3
Figure 3 COMPONENTS IN FSAP 9800 19D06H22 CABINET....... 4
Figure 4 COMPONENTS IN FSAP 9800 19D06H16 CABINET....... 5
Figure 5 CABINET ASSEMBLY DIAGRAM ................................. 6
Figure 6 FAN TRAY OUTLINE................................................. 8
Figure 7 3U CABLE RACK ..................................................... 9
Figure 8 LINE TESTER OUTLINE............................................ 9
Figure 9 FRONT PANEL ........................................................ 9
Figure 10 BACK PANEL ........................................................ 9
Figure 11 EPM UNIT...........................................................11
Figure 12 EPM UNIT FRONT PANEL.......................................11
Figure 13 FSAP 9800 SUBSCRIBER SHELF.............................18
Figure 14 FSAP 9800 SPLITTER SHELF..................................19
Figure 15 MDCA BACKPLANE...............................................20
Figure 16 MDCE BACKPLANE ...............................................21
Figure 17 MDCF BACKPLANE ...............................................22
Figure 18 MTAN BACKPLANE ...............................................24
Figure 19 FSAP 9800 SPLITTER SHELF SLOT DISTRIBUTION....25
Figure 20 NES CASCADING.................................................26
Figure 21 CSCA PANEL .......................................................32
Figure 22 CSCE PANELS .....................................................34
Figure 23 CSCM PANELS.....................................................37
Figure 24 CSCT PANELS .....................................................39
Figure 25 MSCT PANELS .....................................................42
Figure 26 MSCX PANELS.....................................................44
Figure 27 AINC PANELS......................................................49
Figure 28 EINT PANEL ........................................................51
Figure 29 EINB PANEL........................................................53
Figure 30 ATNG PANEL .......................................................55
Figure 31 ASNV PANEL .......................................................57
Figure 32 ISNV CARD PANEL ...............................................59
Figure 33 VSNKC PANEL .....................................................60
Figure 34 STNG PANEL .......................................................61
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Figure 35 SSNG PANEL.......................................................63
Figure 36 PNVNA CARD PANEL ............................................65
Figure 37 PNVTA CARD PANEL .............................................66
Figure 38 PNVNP CARD PANEL.............................................67
Figure 39 INVNA CARD PANEL.............................................68
Figure 40 VNKN CARD PANEL ..............................................69
Figure 41 EPN CARD PANEL ................................................70
Figure 42 GPNC PANEL .......................................................72
Figure 43 LTN CARD PANEL.................................................74
Figure 44 PDBX CARD PANEL ..............................................75
Figure 45 EPS CARD PANE ..................................................78
80 Confidential and Proprietary Information of ZTE CORPORATION
Tables
Table 1 COMPONENTS ......................................................... 7
Table 2 FAN TRAYS ............................................................. 8
Table 3 INTERFACES ON THE BACK PANEL ............................10
Table 4 INDICATORS ON LINE TESTER..................................10
Table 5 ENVIRONMENT PARAMETERS ...................................12
Table 6 EQUIPMENT DIMENSIONS........................................13
Table 7 SYSTEM CAPACITY INDICES ....................................14
Table 8 CARDS POWER CONSUMPTIONS...............................14
Table 9 OPERATION VOLTAGE..............................................15
Table 10 INTERFACES AND SOCKETS ON MDCA .....................20
Table 11 INTERFACES ON MDCE ..........................................21
Table 12 INTERFACES AND SOCKETS ON MDCF .....................22
Table 13 CSCA PANEL INTERFACES ......................................31
Table 14 CSCA PANEL INDICATORS......................................32
Table 15 ..........................................................................33
Table 16 CSCE PANEL INDICATORS .....................................35
Table 17 CSCM PANEL INTERFACES......................................36
Table 18 CSCM PANEL INDICATORS .....................................38
Table 19 CSCT PANEL INTERFACES ......................................39
Table 20 CSCT PANEL INDICATORS .....................................40
Table 21 MSCT PANEL INTERFACES ......................................41
Table 22 MSCT PANEL INDICATORS......................................42
Table 23 MSCT PANEL INTERFACES ......................................43
Table 24 MSCX PANEL INDICATORS .....................................45
Table 25 COMBINATION OF CONTROL AND SWITCH CARD’S
SUB-CARDS (CSCA/CSCE/CSCM/CSCT) ................46
Table 26 COMBINATION OF CONTROL AND SWITCH CARD’S
SUB-CARDS (MSCT)...........................................46
Table 27 COMBINATION OF CONTROL AND SWITCH CARD’S
SUB-CARDS (MSCX) .........................................47
Table 28 AINC PANEL INTERFACES.......................................48
Table 29 AINC PANEL INDICATORS ......................................49
Table 30 EINT PANEL INTERFACES .......................................50
Table 31 EINT PANEL INDICATORS.......................................51
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Table 32 EINB PANEL INTERFACES .......................................52
Table 33 EINB PANEL INDICATORS ......................................53
Table 34 ATNG PANEL INTERFACES ......................................54
Table 35 ATNG PANEL INDICATORS .....................................55
Table 36 ASNV PANEL INTERFACES ......................................56
Table 37 ASNV PANEL INDICATOR .......................................57
Table 38 ISNV PANEL INTERFACES.......................................58
Table 39 ISNV PANEL INDICATOR .......................................59
Table 40 VSNKC PANEL INDICATOR......................................61
Table 41 STNG PANEL INDICATOR........................................62
Table 42 SSNG PANEL INDICATOR .......................................63
Table 43 SPLITTER CARDS AND INTERFACES.........................64
Table 44 SPLITTER CARD INTERFACES..................................64
Table 45 EPNC PANEL INDICATORS ......................................70
Table 46 GPNC PANEL INTERFACES ......................................71
Table 47 GPNC PANEL INDICATORS......................................72
Table 48 SOCKET AND INTERFACES ON LTN CARD .................73
Table 49 LTN PANEL INDICATOR .........................................74
Table 50 PDBX PANEL INTERFACES ......................................75
Table 51 PDBX PANEL INDICATOR .......................................76
Table 52 EPS PANEL INTERFACES.........................................76
Table 53 EPS PANEL INDICATOR ..........................................78
82 Confidential and Proprietary Information of ZTE CORPORATION
Glossary
ADSL- Asymmetric Digital Subscriber Loop
CSV- Circuit Swithched Voice
DSL- Digital Subscriber Line
EPON- Ethernet Passive Optical Network
GPON- Gigabit Passive Optical Network
ONU- Optical Network Unit
POTS- Plain Old Telephone Service
PSTN- Public Switched Telephone Network
SHDSL- Single-pair High Digital Subscriber Line
VDSL2- Very High Bit Rate Digital Subscriber Line 2
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