Example Transport Engineering Guide (TEG): Alcatel Litespan-2000 and Central Office applications.

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1 Example ransport Engineering Guide (EG): Alcatel Litespan-2000 and Central Office applications. BOC-EG-1200 Section able of Contents Page DS Data Sheet (weight, footprint, power, heat, timing, alarms/rm, DF blocks, CLEI) 2 1 Overview 3 2 Equipment requirements elay rack and system layouts Mechanized Loop est, Pair Gain est Controller and Metallic est Pair routines 8 5 System connection details (except VF/DS0) System VF/DS0 connection and DF block layout/pair count/wiring color code Issue evisions Date 1 Original release of Bill Oakes Engineering Guideline for Alcatel Litespan. September 30, evise into Word format. August 16, 2007 Acronyms: American Wire Gauge (AWG), Battery Distribution Fuse Board (BDFB), Central Office (CO), Channel Bank (CB), Common Control (CC), Competitive Local Exchange Carrier (CLEC), Digital Cross connect Systemelectronic (DCS), Digital Loop Carrier (DLC), Digital System Cross connect-manual (DSX), Distributing Frame (DF), Enclosed Network Extension-/CEV/Hut/Prem (ENE), Fiber Distribution Frame (FDF), Network Element (NE), eceive (X), Support Engineering Guide (SEG), ransaction Language 1 (L1), ransmit (X), Universal Fuse and Alarm Panel (UFAP), Universal Fuse and Power Panel (UFPP), Voice Frequency (VF). Bill Oakes elecom Consultants (BOC) bill.oakes@att.net, Copyright All rights reserved. 1

2 BOC-EG-1200 Data Sheet: he preface section of all BOC-EGs is a data sheet that provides quick view information for weight, relay rack footprint, peak (LIS 2)/nominal (LIS 1) power amperage, heat dissipation wattage, timing, alarms/remote management, DF block and CLEI code requirements. he data shown is an ultimate condition (relay rack fully loaded with equipment as designed in associated BOC-EG). Even though many relay rack deployments are partially equipped, BOC recommends basing initial space/engineering planning on ultimate data since existing rack layouts typically grow to conclusion without follow-up involvement by planning personnel. Category Weight Footprint Peak/LIS 2 amperage at 42.6V Nominal/LIS 1 amperage at 52V Heat dissipation iming (BIS) Data sheet for CO Alcatel Litespan DLC relay rack equirement emarks 370 pounds per otal for Alcatel factory assembled Litespan rack (relay rack, power rack panel, baffles and fully loaded banks). 31" wide x 12" deep per rack See remarks See remarks See remarks 2 BIS CC per system 31" wide (26" rack plus 2.5" spacers on both sides) with 5" deep front and 2" deep rear guard boxes. G-303 system is 1 rack. -57 system is 2 or 3 adjacent racks amps for Primary rack amps for Primary rack amps for 4 channel bank Expansion rack. 8.4 amps for Primary rack. 8.9 amps for Primary rack. 7.6 amps for 4 channel bank Expansion rack. 393 watts for Primary rack. 417 watts for Primary rack. 356 watts for 4 channel bank Expansion rack. Primary rack requires one set of primary and secondary BIS Composite Clock (CC) outputs. No BIS connection for Expansion racks. Alarms emote management DF blocks CLEI codes (see BOC-SEG-0600 section 4) None 1 Ethernet or S232 L1 per system 7 or 21 per system SLMMA903 SBMFAA0A Alarms for all power panels (Primary rack and any Expansion racks) integrated into Primary rack L1 remote management. Primary rack only. No remote management connection for Expansion racks. Ethernet is first choice method. S232 is alternate second choice. Each Channel Bank (CB) has 225 DF pairs (224 active, 1 dead). G-303 systems (Primary rack with 3 CB) have 675 pairs and require seven 100 pair DF blocks. -57 systems (Primary rack with 3 CB plus 6 more CB in Expansion racks) have 2025 pairs and require twenty-one 100 pair DF blocks). See BOC-SEG-0300 section 2 or 8. If the DF is Conventional, blocks mount on vertical side. Litespan Litespan

3 BOC-EG Overview: his EG supports CO applications only. Alcatel Litespan is a Digital Loop Carrier (DLC) system designed to transport signals between CO and ENE locations using OC3 or OC12 spans. Litespan-2000 systems use OC3 fiber transport and have an ultimate DOP side capacity of 2025 VF/DS0 pairs (2016 active, 9 dead), 84 DS1 circuits or any combination up to the OC3 rate. If the span is dual OC3 multi-point (one CO Litespan with two sets of OC3 fiber serving two ENE Litespans at separate locations), 168 DS1s can be cabled but the VF/DS0 pairs are still limited to ENE Litespans collect regular and ADSL customer circuits but group them into separate OC3 fiber sets for transport to the CO. egular OC3 fiber from the ENE connects to a CO Litespan for distribution of DS1 and VF/DS0 circuits. ADSL OC3 fiber from the ENE enters the CO vault and then runs to an FDF panel for cross connect to a DSL Aggregator (Ciena for example) that separates the ADSL circuits on a per Service Provider/elco/CLEC basis. Litespan-2012 systems use OC12 fiber transport (four OC3 channels). One OC3 channel is associated with the 2012 system itself and has the same function/capacity limits as 2000 system regular OC3 (2025 VF/DS0, 84 DS1 or any combination up to OC3 rate). Each of the other three OC3 channels can be used to transport regular OC3 (from separate 2000 systems at the same ENE), ADSL OC3 (for 2012 system itself or separate 2000 system at same ENE) or three DS3 circuits from external equipment (mux in same ENE or adjacent Cell site for example). DLCs can be elcordia -57 Universal (ENE VF/DS0 lines interface with CO switch via DF terminated derived pairs), G-303 Integrated (ENE lines interface with CO switch via DSX-1/DCS terminated DS1 circuits) or Mixed (mixture of Universal and Integrated). o provide flexibility for cross connecting ENE special service circuits to the CO switch, all G-303 designated Litespan systems are Mixed (have derived pairs cabled to DF). Each CO Litespan system has a Common Control (CC) shelf for administrative functions and fiber connections to one (single point-to-point span) or two (dual multi-point span) ENE Litespans. Channel Bank (CB) shelves are used for DS1 (56 circuits) and/or VF/DS0 (224 active pairs, 1 dead pair) connections. Primary racks are factory assembled with one CC and three CB shelves. Expansion racks are factory assembled with four CB shelves or two CB shelves (two more CB can be field mounted on a follow-up job per section 2 part G). G-303 systems consist of one Primary rack (section 3 figure 3A or 3B). -57 systems consist of one Primary rack plus two (figure 3E) or six (figure 3F) CBs mounted in adjacent Expansion racks (figure 3C or 3D). If -57 Expansion racks are anticipated but not added on the initial job, floor space must be reserved adjacent to the Primary rack (left or right side) due to the control cable length limit (180 inches maximum) between CC and CB shelves. CB shelves come equipped with connectorized pigtails to mate with external DS1 (also known as Wideband or WB) and VF/DS0 (also known as Narrowband or NB) cables. Each CB shelf has six 25 pair WB pigtail connectors (X and X pairs 1-20, 21-40, 41-56) and nine 25 pair NB pigtail connectors (total of 224 active, 1 dead). Since future service needs are typically undetermined at the time of initial installation, most Service Providers/elcos require full or partial dual cabling for Primary rack CB1 and CB2 (WB to DSX-1 and NB to DF even though both cannot be used at same time for a given card position on shelf). WB pigtails on Expansion rack CBs usually serve no purpose (equipped on all CBs for ordering simplicity only). 3

4 BOC-EG Equipment requirements: his section provides part number and mounting/usage details for equipment in Alcatel Litespan relay racks. Layouts are shown in figure 3A to 3F. he racks are factory assembled (see BOC-SEG-0600 section 9). A) Factory assembled Litespan-2000 Primary rack: See part E for rear guard box. Alcatel part number provides: 1 elect 12300KW201F Unequal Flange rack (7, 2 x 23 drilling, 5 front welded guard box). 1 Alcatel UFAP. 1 Alcatel CC shelf. 1 Alcatel CB shelf (internally wired with first VF/DS0 pair dead). 2 Alcatel CB shelves (internally wired with last VF/DS0 pair dead). 3 Alcatel Heat baffles. 1 Set of intra-rack wiring (CC/CB shelf power/chassis ground, CB shelf control cables to CC shelf). B) Factory assembled Litespan-2012 Primary rack: See part E for rear guard box. Alcatel part number provides: 1 elect 12300KW201F Unequal Flange rack (7, 2 x 23 drilling, 5 front welded guard box). 1 Alcatel Fan tray. 1 Alcatel CC shelf (includes UFAP). 1 Alcatel CB shelf (internally wired with first VF/DS0 pair dead). 2 Alcatel CB shelves (internally wired with last VF/DS0 pair dead). 3 Alcatel Heat baffles. 1 Set of intra-rack wiring (CC/CB shelf power/chassis ground, CB shelf control cables to CC shelf). C) Factory assembled Litespan-2000 or four CB Expansion rack: See part E for rear guard box and part F for control cables. Alcatel part number provides: 1 elect 12300KW201F Unequal Flange rack (7, 2 x 23 drilling, 5 front welded guard box). 1 Alcatel UFPP. 2 Alcatel CB shelves (internally wired with first VF/DS0 pair dead). 2 Alcatel CB shelves (internally wired with last VF/DS0 pair dead). 3 Alcatel Heat baffles. 1 Set of intra-rack wiring (CB shelf power/chassis ground). D) Factory assembled Litespan-2000 or two CB Expansion rack: See part E for rear guard box and part F for control cables. Alcatel part number provides: 1 elect 12300KW201F Unequal Flange rack (7, 2 x 23 drilling, 5 front welded guard box). 1 Alcatel UFPP. 1 Alcatel CB shelf (internally wired with first VF/DS0 pair dead). 1 Alcatel CB shelf (internally wired with last VF/DS0 pair dead). 1 Alcatel Heat baffle. 1 Set of intra-rack wiring (CB shelf power/chassis ground). E) ear guard box for Primary or Expansion rack: One 2 rear field mount guard box must be ordered as a separate item so that the footprint depth is 12 (5 front, 2 rear). See BOC-SEG

5 BOC-EG-1200 F) Control cables between factory assembled Expansion rack CB shelves and Primary rack CC shelf: wo Alcatel control cables must be ordered for each Expansion rack CB shelf. he last three digits of part number indicates cable length in inches. See section 5 part E for connection details and section 3 figure 3E, 3F for layouts. If Expansion rack is used as: system CB4-7 or CB4-5/4-5, provide two each , , , system CB8-9/8-9, provide eight system CB4-7 or CB4-5/4-5, provide two each , , , system CB8-9/8-9, provide eight If Expansion rack is used as: system CB8-9, provide four system CB4-5, provide two each , system CB8-9, provide four system CB4-5, provide eight , G) Field mounted CB shelves: As shown in figure 3E and 3F, middle Expansion racks are shared by two systems. When both systems are added on the same job, a four CB middle rack is used. If the second system is not added on the initial job, a middle rack is used. When the second system is added, lower CB shelf material must be provided and field mounted in the existing middle rack as follows: 1 Alcatel CB shelf (internally wired with first VF/DS0 pair dead). 1 Alcatel CB shelf (internally wired with last VF/DS0 pair dead). 2 Alcatel Heat baffles. When mounting these baffles, installation should verify continuity between the baffle ESD jack and rack ground. his may require removal of paint on the rack upright. 4 Alcatel control cables ( if system or if system). See section 5 part E amp GM fuses (see BOC-SEG-0500 section 14) for CB shelf output positions on Expansion rack UFPP. Each CB is factory equipped with five 12 AWG pigtail leads that should be connected by installation as follows: eturn lead (Black): o available B3 ground stud position on UFPP. ermination material (1 hole No.10 lug, nut and lock washer) provided in white bag attached to CB. Batt-A lead (ed): o available B1 position on UFPP. Batt-B lead (Orange): o available B2 position on UFPP. ransient Protection lead (White) and Logic Ground lead (Blue): o relay rack ground. ing terminals factory mounted on end of leads. Screws and star washers provided in white bag attached to CB. 5

6 3. elay rack and system layouts: BOC-EG-1200 GQ or 38 GQ or 38 GP or 37 GP or Universal GN or 36 GN or 36 Fuse and Alarm Panel GM or 35 GM or 35 GL or 34 GL or GK or 33 GK or 33 Common Control shelf GJ or 32 GJ or 32 (includes Fuse and Alarm GH or GH or 31 Panel) GG or 30 Common Control shelf GG or 30 GF or 29 GF or 29 GE or 28 GE or 28 GD or 27 GD or Fan ray GC or Heat baffle GC or Heat baffle GB or 25 GB or 25 GA or 24 GA or 24 EV or 23 EV or 23 EU or EU or E or 21 Channel Bank 1 E or 21 Channel Bank 1 ES or 20 ES or 20 E or 19 E or 19 EQ or 18 EQ or 18 EP or Heat baffle EP or Heat baffle EN or 16 EN or 16 EM or 15 EM or 15 EL or 14 EL or EK or 13 EK or 13 Channel Bank 2 Channel Bank 2 EJ or 12 EJ or 12 EH or 11 EH or 11 EG or 10 EG or 10 EF or Heat baffle EF or Heat baffle EE or 8 EE or 8 ED or 7 ED or 7 EC or 6 EC or 6 EB or EB or EA or 4 Channel Bank 3 EA or 4 Channel Bank 3 FA or 3 FA or 3 FB or 2 FB or 2 FC or 1 FC or 1 2 x 23 2 x 23 FIGUE 3A FIGUE 3B Layout for Alcatel factory assembled Litespan-2000 Primary rack. Use 2.5" spacers on both sides for cable management. Layout for Alcatel factory assembled Litespan-2012 Primary rack. Use 2.5" spacers on both sides for cable management. 6

7 BOC-EG-1200 GQ or 38 GQ or 38 GP or 37 GP or Universal Universal GN or 36 GN or 36 Fuse and Power Panel Fuse and Power Panel GM or 35 GM or 35 GL or 34 GL or 34 GK or 33 GK or 33 GJ or 32 GJ or 32 GH or GH or GG or 30 Channel Bank (EVEN) GG or 30 Channel Bank (EVEN) GF or 29 GF or 29 GE or 28 GE or 28 GD or 27 GD or 27 GC or Heat baffle GC or Heat baffle GB or 25 GB or 25 GA or 24 GA or 24 EV or 23 EV or 23 EU or EU or E or 21 Channel Bank (ODD) E or 21 Channel Bank (ODD) ES or 20 ES or 20 E or 19 E or 19 EQ or 18 EQ or 18 EP or Heat baffle EP or 17 EN or 16 EN or 16 EM or 15 EM or 15 EL or 14 EL or EK or 13 EK or 13 Channel Bank (EVEN) EJ or 12 EJ or 12 EH or 11 EH or 11 EG or 10 EG or 10 EF or Heat baffle EF or 9 EE or 8 EE or 8 ED or 7 ED or 7 EC or 6 EC or 6 EB or EB or 5 EA or 4 Channel Bank (ODD) EA or 4 FA or 3 FA or 3 FB or 2 FB or 2 FC or 1 FC or 1 2 x 23 2 x 23 FIGUE 3C FIGUE 3D Layout for Alcatel factory assembled Litespan-2000 or four channel bank Expansion rack. Use 2.5" spacers on both sides for cable management. Layout for Alcatel factory assembled Litespan-2000 or two channel bank Expansion rack. See section 2G. Use 2.5" spacers on both sides for cable management. CC <-- CB4 CC CC CB4 <-- CB8 CB4 CC CB1 <-- CB5 CB1 CB1 CB5 <-- CB9 CB5 CB1 CB2 CB4 --> CB2 CB2 CB6 CB8 --> CB6 CB2 CB3 CB5 --> CB3 CB3 CB7 CB9 --> CB7 CB3 FIGUE 3E Front view of 3 rack, 2 system Litespan-2000 or layout using shared figure 3C Expansion rack. Shared rack may be initially per figure 3D with lower CB3-4 added on subsequent job per section 2G. FIGUE 3F Front view of 5 rack, 2 system Litespan-2000 or layout using dedicated (CB4-7) and shared (CB8-9, CB8-9) figure 3C Expansion racks. Shared rack may be initially per figure 3D with lower CB8-9 added on subsequent job per section 2G. 7

8 BOC-EG Mechanized Loop est, Pair Gain est Controller and Metallic est Pair routines: A) Background: When customers report service problems, their line needs to be tested. In the late 1970s, the Bell System started to deploy SD2P Loop est Frame (LF) remote testing equipment (also known as ML-1). In 1981, next generation SD2P Loop est Systems (LS) were introduced (also known as ML-2). In 2001, ollgrade purchased the Lucent LF/LS product lines. ollgrade also developed their own Digital Measurement Node (DMN) version of this equipment for new testheads or replacement of old ML-1 systems. Around 1980 most Service Providers/elcos began to use CO-ENE Pair Gain (PG) systems (Lucent SLC-96 for example) for transporting customer lines on multiplexed copper pairs. Since ENE lines connect to the CO switch via derived (instead of direct local loop) pairs, SD Pair Gain est Controller (PGC) shelves were added to act as the PG-ML interface (CO switch Number est runks (N) could not be used). An industry standard 25 pair mult runs from the PGC to any CO PG systems (Lucent SLC, Nortel DMS-1, Alcatel Litespan, etc) that require this ENE test line method. Copper based PG systems transport the test circuit on separate CO-ENE Metallic est Pairs (MP). Fiber based PG systems usually insert the test circuit into their fiber overhead for CO-ENE transport. B) Alcatel Litespan methods: If the system is -57, PGC and MP circuits (section 5 part K and L) are cabled and two ollgrade MCU-D405 cards are placed in CB1 channel slots. A DF cross connect is made between Litespan MPs and VF/DS0 pairs associated with the CB1 D405 slots. his inserts MP circuits onto the Litespan CO-ENE overhead. If the system is G-303 Mixed, cabling is identical to -57 methods but the DF cross connect is now three way (Litespan MPs, Litespan VF/DS0 associated with D405 slots and CO switch Ns). his allows testing from the CO switch (for pure G-303 Integrated circuits) or PGC (for G-303 derived pairs) to be inserted onto the Litespan CO-ENE overhead. In the rare case of a pure G-303 system (no derived pairs), Litespan PGC and MP circuits are not cabled. wo ollgrade MCU-4496E cards are placed in a CO D4 Bank (channel slots already wired to DF, can be cross connected to CO switch Ns). he D4 DS1 circuit is DSX-1 cross connected to a Litespan DS1 which allows CO switch testing to be inserted onto the Litespan CO-ENE overhead. C) PGC mult limit: Since PGC shelves have only one connector ( figure 3) for CO PG systems, a mult cabling method is required. Some COs have a haphazard PG growth pattern that has SLCs on one floor, DMS1s on another floor and Litespan back on the SLC floor. his can cause a zigzag cable pattern that results in abnormally long PGC mult circuits. heoretically this should not be a problem since PGCs have a cable capacitance limit of.04 Microfarads which allows 1800 to 2000 feet of mult cabling (capacitance of 25 pair 24 AWG unshielded cables is about to Microfarads per foot). In actual practice, field reports indicate that the mult limit is significantly less than 1800 feet. When requested by Service Provider/elco personnel, engineering vendors should investigate the existing PGC mult route (review floor plans, office records, etc) and recable existing PG systems so the total mult length is reduced. his may involve the use of short CSI CA4XXXX or Cablcon XXX Bridge cables for connections (see BOC-SEG-0100 section 7 for manufacturer contacts). 8

9 BOC-EG System connection details (see section 6 for VF/DS0): A) Power for Primary rack UFAP: Step 1 (Dual load redundant input feeders from BDFB): See BOC-SEG-0500 section 11 for BDFB fuse/feeder sizing responsibility and BOC-SEG-0700 section 9 for wire material. Provide 4 two hole lugs (No.10 studs on.625 centers) for input feeder connections (wire size determined by vendor based on job conditions). LIS 2 is 15.6 amps at 42.6V (see BOC-SEG-0500 section 2 for calculation). UFAP has internal 25 amp circuit breakers. B) Power for Primary rack CC shelf (UFAP component): Step 1 (Dual load redundant input feeders from BDFB): See BOC-SEG-0500 section 11 for BDFB fuse/feeder sizing responsibility and BOC-SEG-0700 section 9 for wire material. Provide 4 two hole lugs (No.10 studs on.625 centers) for input feeder connections (wire size determined by vendor based on job conditions). LIS 2 is 16.7 amps at 42.6V (see BOC-SEG-0500 section 2 for calculation). CC shelf has internal 40 amp circuit breakers. C) Power for Expansion rack UFPP: Step 1 (Dual load redundant input feeders from BDFB): See BOC-SEG-0500 section 11 for BDFB fuse/feeder sizing responsibility and BOC-SEG-0700 section 9 for wire material. Provide 4 two hole lugs (No.10 studs on.625 centers) for input feeder connections (wire size determined by vendor based on job conditions). LIS 2 is 12.8 amps at 42.6V (see BOC-SEG-0500 section 2 for calculation). LIS 2 based fully equipped Expansion rack (four CB) but also applies on two CB Expansion racks (eliminates reengineering of BDFB power feeders when lower CBs are added on future second system job). UFPP has internal 25 amp circuit breakers. D) Alarms for Expansion rack UFPP: Step 1 (Intra-system alarm connection): UFPP is factory wired at UFPP end with three pair cable harness that must be connected to the Primary rack UFAP (-2000 system) or CC shelf (-2012 system) B12 alarm wire wrap pins (the two choices shown below are for 1 st and 2 nd Expansion rack). his integrates UFPP alarms into the Primary rack L1 remote management signal (Primary rack UFAP alarms are internally integrated). Installation should connect Expansion rack UFPP alarm leads as follows: Black-1 lead from UFPP J4 pin E2 to B12 J2 pin B5 or B6. Green lead from UFPP J4 pin E3 to B12 J1 pin A5 or A6. ed lead from UFPP A Circuit Breaker COM pin to B12 J2 pin B2 or B3. Black-2 lead from UFPP A Circuit Breaker NC pin to B12 J1 pin A2 or A3. White lead from UFPP B Circuit Breaker COM pin to B12 J4 pin D2 or D3. Black-3 lead from UFPP B Circuit Breaker NC pin to B12 J3 pin C2 or C3. E) Control cables for Expansion rack CB shelf: Step 1 (connect control cables): For each Expansion rack CB shelf, connect two control cables (provided per section 2 part F or G) to the Primary rack CC shelf as follows: CB4 (CB J301 to CC J401, CB J302 to CC J402), CB5 (CB J301 to CC J501, CB J302 to CC J502), CB6 (CB J301 to CC J601, CB J302 to CC J602), CB7 (CB J301 to CC J701, CB J302 to CC J702), CB8 (CB J301 to CC J801, CB J302 to CC J802), CB9 (CB J301 to CC J901, CB J302 to CC J902). F) iming for Primary rack: Step 1 (run timing cables): See BOC-SEG-0100 section 9 for methods. un two single pair timing cables from CC shelf to CO BIS distribution equipment Composite Clock outputs. Connect primary pair to shelf J49 pin +2 (LX lead), J49 pin -6 (LY lead) and secondary pair to shelf J48 pin +2 (LX lead), J48 pin -6 (LY lead). Do not ground cables at CC shelf end (no capacitive ground feature). 9

10 BOC-EG-1200 G) iming for Primary rack: Step 1 (run timing cables): See BOC-SEG-0100 section 9 for methods. un two single pair timing cables from CC shelf to CO BIS distribution equipment Composite Clock outputs. Connect primary pair to shelf B14 pin A9 (LX lead), pin B9 (LY lead) and secondary pair to shelf B14 pin A12 (LX lead), pin B12 (LY lead). No connection required for B14 pin A13-A16, B13-B16 (Bridged CC) or A1-A8, B1-B8 (DS1 Input/Output). Step 2 (ground timing cables at Litespan end): Ground primary cable at B14 pin A10 and secondary cable at B14 pin A11 (CC shelf has capacitive ground feature). Step 3 (set timing jumpers): Installation should ensure that the B16 CC1 and CC2 timing jumpers are set in the EM position. H) Ethernet L1 remote management for or Primary rack: his is the first choice method for remote management (see part J for second choice S232 method if Ethernet hub equipment not available in CO). Step 1 (attach conversion cable): Each Primary rack includes one Alcatel conversion cable (50 pin female to J45 female) provided as part of a Litespan Getting Started Package (ordered by Service Provider/elco personnel). Attach 50 pin end of cable to factory wired P11 pigtail stub on rear side of CB1. his establishes an Ethernet 10BASE- circuit on the stub cable J45 connector (pin 1 is X+, pin 2 X-, pin 3 X+, pin 6 X-). Step 2 (external remote management cable): un electrical Ethernet cable with straight pinning (see BOC- SEG-0100 section 10) from Primary rack CB1 shelf rear side conversion cable J45 connector to CO emote management Ethernet hub equipment port. J) S232 L1 remote management for or Primary rack: his is an alternate second choice method for remote management (see part H for first choice Ethernet method). Step 1 (provide and attach conversion cable): Provide one Alcatel conversion Y cable (two 50 pin female to 25 pin S232 male). Attach dual 50 pin end of cable to factory wired P11 and P12 pigtail stubs on rear side of CB1. his establishes an S232 DE circuit on the stub cable 25 pin connector (pin 1 is SHIELD GND, pin 2 XD, pin 3 XD, pin 4 S, pin 5 CS, pin 6 DS, pin 7 SIG GND, pin 8 DCD, pin 15 XC, pin17 XC, pin 20 D, pin 22 I, pin 24 EC). Step 2 (external remote management cable): un Applied Innovation ( CAB181- XXX cable (-XXX denotes footage) from Primary rack CB1 shelf rear side conversion cable S232 connector to CO emote management AI Switch DP (X.25 synch) port. See BOC-SEG-0100 section 11. K) Pair Gain est Controller (PGC) for or Primary rack (see section 4): Step 1 (mult cable): See step 2 if direct cabling to PGC or XC is required. he UFAP or CC shelf (UFAP component) has a PGC board with J13 female and J14 male (even though designated J for jack) 50 pin connectors for PGC cables. hese two connectors are internally common (either one can be used for from/to mult connections). un a 25 pair 200A type cable (see BOC-SEG-0100 section 14) with male 90 degree connector on new Litespan system end and back-to-back male/female connector on other end. If preceding Pair Gain system (end of existing mult) is Litespan, use female side of back-to-back connector. If preceding Pair Gain system is ADC PG-Flex, Nortel DMS-1 or Lucent SLC, use male side of back-to-back connector. BOC recommends using a Cablcon XXX formed cable (see BOC-SEG-0100 section 7 for manufacturer contact, XXX indicates footage). Step 2 (direct cable): In rare cases, direct cabling (still 25 pair 200A type from Litespan J13 connector) may be required to a Lucent PGC or Extended est Controller (XC) shelf. If XC (7C figure 14), the cable must be 90 degree male on both ends (Cablcon XXX or Great Lakes XXX recommended). If PGC, the cable is 90 degree male at Litespan end (Cablcon XXX or Great Lakes XXX recommended) with a figure 3 PGC wire wrap connection per figure 5K below. 10

11 J13 pin J13 pin J13 pin 26 IP-A W-BL 31 SLV-C -BL 36 LOK-A BK-BL 41 Spare Y-BL 46 Spare V-BL 1 ING-A BL-W 6 SLV-D BL- 11 LOK-B BL-BK 16 Spare BL-Y 21 Spare BL-V 27 IP-B W-O 32 OH-A -O 37 LOK-C BK-O 42 S ALM Y-O 47 SZ V-O 2 ING-B O-W 7 OH-B O- 12 LOK-D O-BK 17 -MAJ O-Y 22 SZ BY O-V 28 IP-C W-G 33 OH-C -G 38 Spare BK-G 43 Spare Y-G 48 Spare V-G 3 ING-C G-W 8 OH-D G- 13 Spare G-BK 18 Spare G-Y 23 Spare G-V 29 IP-D W-B 34 POC-A -B 39 Spare BK-B 44 Spare Y-B 49 Spare V-B 4 ING-D B-W 9 POC-B B- 14 Spare B-BK 19 Spare B-Y 24 Spare B-V 30 SLV-A W-S 35 POC-C -S 40 Spare BK-S 45 Spare Y-S 50 Spare V-S 5 SLV-B S-W 10 POC-D S- 15 Spare S-BK 20 Spare S-Y 25 Spare S-V J13 pin FIGUE 5K designations and color code for wire wrap of 25 pair cable from Litespan PGC board J13 connector to figure 3 on PGC shelf. J13 pin BOC-EG-1200 L) Metallic est Pairs (MP) for or Primary rack (see section 4): Step 1 (wire to DF): he UFAP or CC shelf (UFAP component) has a PGC board with six wire wrap pins on B8 J1. un one 24 AWG quad and one 24 AWG pair (see BOC-SEG-0700 section 8) from Litespan B8 (pin 1 for ip-1, 2 for ing-1, 3 for Inhibit-1, 4 for ip-2, 5 for ing-2, 6 for Inhibit-2) to a DF block location as designated by Service Provider/elco personnel. erminate and stencil leads on one DF block pin column in ip, ing, Inhibit sequence (-1 at bottom of column, see BOC-SEG-0300 section 5). M) Internal dial-up modem for or Primary rack: Step 1 (consult with Service Provider/elco): UFAP and CC shelves have an internal 212A, 1200 baud dial-up modem designed to provide occasional remote diagnostic capability by Alcatel s technical support group. o prevent unauthorized access, DF cross connect jumpers should be removed when testing has been completed. Engineering vendors should consult with Service Provider/elco personnel on the need for this feature (put up, take down routine for DF jumpers may be too cumbersome). Step 2 (wire to DF): If this feature is required, run one 24 AWG pair (see BOC-SEG-0700 section 8) from UFAP or CC shelf (UFAP component) B6 J21 pin B3 (ip) and B4 (ing) to a DF block location as designated by Service Provider/elco personnel. erminate and stencil leads on one DF block pin column (ip at bottom of column, see BOC-SEG-0300 section 5). N) CO-ENE span fiber for or Primary rack: Step 1 (consult with Service Provider/elco): Engineering vendors should consult with Service Provider/elco personnel about the number of CC shelf OC3C/OC12C span fiber circuits as described in section 1 (single circuit point-to-point using East slots or dual circuit multi-point using East and West slots?). Step 2 (fiber to FDF): If this feature is required, each circuit has four fiber conductors (work X/X Group A and protect X/X Group B) with SC connectors at the Litespan end. un the required number of fiber conductors (see BOC-SEG-0400) from CC shelf to FDF. P) Drop side channel OC3 fiber for Primary rack: Step 1 (consult with Service Provider/elco): Engineering vendors should consult with Service Provider/elco personnel on the need for this feature (three CC shelf drop side channels are optional, could be OC3 fiber or DS3 coax as described in section 1) and if protection fiber is required (since span is entirely within CO building). Step 2 (fiber to FDF): If this feature is required, each of the three channels has two (work only X/X Group 1A, 2A or 3A) or four (work/protect X/X Group 1A/1B, 2A/2B or 3A/3B) fiber conductors with SC connectors at the Litespan end. un the required number of fiber conductors (see BOC-SEG-0400) from CC shelf to FDF. 11

12 BOC-EG-1200 Q) Drop side channel DS3 coax for Primary rack: Step 1 (consult with Service Provider/elco): Engineering vendors should consult with Service Provider/elco personnel on the need for this feature (three CC shelf drop side channels are optional, could be OC3 fiber or DS3 coax as described in section 1, each channel can have up to three DS3 circuits). Step 2 (coax to DSX-3/DCS): If this feature is required, the CC shelf has a Broadband ermination Board (BB) for termination of up to nine DS3 X/X circuits (three Groups of three each). X/X factory stenciling on the BB refers to CO-ENE Line side transmission (X is signal received by Litespan from DSX-3/DCS and transmitted on Line side fiber, X is signal received by Litespan from Line side fiber and transmitted to DSX-3/DCS). un the required number of coax conductors from CC shelf BB to DSX-3 or DCS using 90 degree BNC connectors at the Litespan end (see BOC-SEG-0200). Group Circuit X (IN) X (OU) Group Circuit X (IN) X (OU) Group Circuit X (IN) X (OU) 1-1 J91 J J94 J J97 J J92 J J95 J J98 J J93 J J96 J J99 J89 FIGUE 5Q BB BNC designations. ) DS1 for or Primary and Expansion racks: Step 1 (consult with Service Provider/elco): Engineering vendors should consult with Service Provider/elco personnel about the number of DS1 circuits and which CB shelves are involved. Each CB shelf can have up to 56 DS1 circuits. As described in section 1, Primary rack CB1 and CB2 may be fully or partially dual cabled (DS1 and VF/DS0). It s possible (but unlikely) that Expansion rack CB shelves will need DS1 cabling (shelves are typically VF/DS0 only per section 6). Step 2 (cable to DSX-1/DCS): Each CB shelf has six rear side 25 pair DS1 connectors designated J1 (X 1-20), J2 (X 1-20), J3 (X 21-40), J4 (X 21-40), J5 (X 41-56) and J6 (X 41-56). If the CB is fully DS1 cabled, two 56 pair cables (one X, one X) should be used per BOC-SEG-0100 section 6 and 14. At the Litespan end, each cable will break out into three male connectorized legs (blue binder for 1-20, orange binder for 21-40, green binder for 41-56). If the CB is partially DS1 cabled, use sets of two 20 pair DS1 cables as required. Form the cable drain wire to pin 25 (Litespan CB internal ground) on one of the connectors (do not ground cable at DSX-1/DCS end). Figure 5 below shows the connector lead designations and color code. BOC recommends these factory formed cables (see BOC-SEG-0100 section 7 for manufacturer contacts). XXX indicates footage. 56 pair 26 AWG 1249C type: Each part number provides two 56 pair cables with three male connectorized legs (1-20, 21-40, 41-56) at the Litespan end. Drain wire is formed to pin 25 on one connector. Cablcon XXX, Conway CCI-C239-XXX or Great Lakes XXX. 56 pair 22 AWG 600C type: Each part number provides two 56 pair cables with three male connectorized legs (1-20, 21-40, 41-56) at the Litespan end. Drain wire is formed to pin 25 on one connector. Conway CCI-880-XXX, Great Lakes XXX or CSI CA2XXXX05J pair 26 AWG 1249C type: Each part number provides one 20 pair cable with one male connector at the Litespan end. Drain wire is formed to pin 25 on connector. Cablcon XXX or Conway CCI-C248-XXX. 20 pair 22 AWG 600C type: Each part number provides one 20 pair cable with one male connector at the Litespan end. Drain wire is formed to pin 25 on connector. Conway CCI-C446-XXX or CSI CA2XXXX139DSC1. 12

13 CB shelf J5 X conn (Green binder) CB shelf J4 X conn (Orange binder) CB shelf J3 X conn (Orange binder) CB shelf J2 X conn (Blue binder) CB shelf J1 X conn (Blue binder) 26-1 W-BL BL BK-BL Y-BL 46 N/C BL-W 6-6 BL BL-BK BL-Y 21 N/C W-O O BK-O Y-O 47 N/C O-W 7-7 O O-BK O-Y 22 N/C W-G G BK-G Y-G 48 N/C G-W 8-8 G G-BK G-Y 23 N/C W-B B BK-B Y-B 49 N/C B-W 9-9 B B-BK B-Y 24 N/C W-S S BK-S Y-S 50 N/C S-W S S-BK S-Y 25 DAIN W-BL BL BK-BL Y-BL 46 N/C BL-W 6-6 BL BL-BK BL-Y 21 N/C W-O O BK-O Y-O 47 N/C O-W 7-7 O O-BK O-Y 22 N/C W-G G BK-G Y-G 48 N/C G-W 8-8 G G-BK G-Y 23 N/C W-B B BK-B Y-B 49 N/C B-W 9-9 B B-BK B-Y 24 N/C W-S S BK-S Y-S 50 N/C S-W S S-BK S-Y 25 DAIN W-BL BL BK-BL Y-BL 46 N/C BL-W 6-26 BL BL-BK BL-Y 21 N/C W-O O BK-O Y-O 47 N/C O-W 7-27 O O-BK O-Y 22 N/C W-G G BK-G Y-G 48 N/C G-W 8-28 G G-BK G-Y 23 N/C W-B B BK-B Y-B 49 N/C B-W 9-29 B B-BK B-Y 24 N/C W-S S BK-S Y-S 50 N/C S-W S S-BK S-Y 25 DAIN W-BL BL BK-BL Y-BL 46 N/C BL-W 6-26 BL BL-BK BL-Y 21 N/C W-O O BK-O Y-O 47 N/C O-W 7-27 O O-BK O-Y 22 N/C W-G G BK-G Y-G 48 N/C G-W 8-28 G G-BK G-Y 23 N/C W-B B BK-B Y-B 49 N/C B-W 9-29 B B-BK B-Y 24 N/C W-S S BK-S Y-S 50 N/C S-W S S-BK S-Y 25 DAIN W-BL BL BK-BL Y-BL 46 N/C BL-W 6-46 BL BL-BK BL-Y 21 N/C W-O O BK-O 42 Spare Y-O 47 N/C O-W 7-47 O O-BK 17 Spare O-Y 22 N/C W-G G BK-G 43 Spare Y-G 48 N/C G-W 8-48 G G-BK 18 Spare G-Y 23 N/C W-B B BK-B 44 Spare Y-B 49 N/C B-W 9-49 B B-BK 19 Spare B-Y 24 N/C W-S S BK-S 45 Spare Y-S 50 N/C S-W S S-BK 20 Spare S-Y 25 DAIN - 13 BOC-EG-1200 FIGUE 5 (continued on page 14) designations and color code for Litespan CB shelf DS1 connectors.

14 CB shelf J6 X conn (Green binder) BOC-EG W-BL BL BK-BL Y-BL 46 N/C BL-W 6-46 BL BL-BK BL-Y 21 N/C W-O O BK-O 42 Spare Y-O 47 N/C O-W 7-47 O O-BK 17 Spare O-Y 22 N/C W-G G BK-G 43 Spare Y-G 48 N/C G-W 8-48 G G-BK 18 Spare G-Y 23 N/C W-B B BK-B 44 Spare Y-B 49 N/C B-W 9-49 B B-BK 19 Spare B-Y 24 N/C W-S S BK-S 45 Spare Y-S 50 N/C S-W S S-BK 20 Spare S-Y 25 DAIN - FIGUE 5 (continued from page 13) designations and color code for Litespan CB shelf DS1 connectors. 6. System VF/DS0 connection and DF block layout/pair count/wiring color code: A) Cables: Each CB shelf has nine rear side 25 pair VF/DS0 connectors designated P1 to P9. On odd numbered CB shelves, the last P9 pair is dead. On even numbered CB shelves, the first P1 pair is dead. wo 100 pair (for P1-P4 and P5-P8) and one 25 pair (for P9) cables should normally be used for each shelf. If assignments require P1-P4 or P5-P8 to be split between two DF verticals, 25 pair cables should be used for those connectors. he 100 pair cables have four connectorized legs (blue binder for P1 or P5, orange binder for P2 or P6, green binder for P3 or P7, brown binder for P4 or P8). he cables should be 1107A type (see BOC-SEG-0100 section 8 and 14) with female connectors on the shelf end. At the shelf end, each cable must have a 3 foot long insulated drain wire that will be connected to relay rack ground by installation. BOC recommends these factory formed cables (see BOC- SEG-0100 section 7 for manufacturer contacts). XXX indicates footage. 100 pair: Cablcon XXX, Great Lakes XXX or CSI CA4XXX pair: Cablcon XXX, Great Lakes XXX or CSI CA4XXXX102SD1. B) Pair count: Litespan VF/DS0 pairs should be DF stenciled using a CO Switch Digital Loop Equipment (DLE) method called Carrier Controller Indentifier/Carrier Controller Port (CCI/CCP). his method designates each pair by it s shelf number, shelf slot number and slot pair number. Each CB shelf has 56 slots with 4 ip/ing circuits per slot for a total of 224 active pairs (DF termination includes 1 dead pair since CB has nine 25 pair connectors). For example, CB shelf 2, slot 17, pair 4 would be designated See figure 6A (odd numbered CBs) and 6B (even numbered CBs). C) DF block layout: Full -57 systems (nine CB shelves) require twenty-one 100 pair blocks. G-303 systems (three CB shelves) require seven 100 pair blocks. See BOC-SEG-0300 section 2 or 8 for block part numbers. If the DF is Conventional, blocks mount on the vertical side. Figure 6C (Conventional) and 6D (Cosmic) detail the layout. 14

15 CB shelf P5 conn (Blue binder) CB shelf P4 conn (Brown binder) CB shelf P3 conn (Green binder) CB shelf P2 conn (Orange binder) CB shelf P1 conn (Blue binder) BOC-EG W-BL BL 36-3 BK-BL 41-4 Y-BL 46-1 V-BL BL-W 6-2 BL BL-BK 16-4 BL-Y 21-1 BL-V W-O O 37-4 BK-O 42-1 Y-O 47-2 V-O O-W 7-3 O O-BK 17-1 O-Y 22-2 O-V W-G G 38-1 BK-G 43-2 Y-G 48-3 V-G 3-3 G-W 8-4 G G-BK 18-2 G-Y 23-3 G-V W-B B 39-2 BK-B 44-3 Y-B 49-4 V-B B-W 9-1 B B-BK 19-3 B-Y 24-4 B-V W-S S 40-3 BK-S 45-4 Y-S 50-1 V-S S-W 10-2 S S-BK 20-4 S-Y 25-1 S-V 26-2 W-BL BL 36-4 BK-BL 41-1 Y-BL 46-2 V-BL BL-W 6-3 BL BL-BK 16-1 BL-Y 21-2 BL-V W-O O 37-1 BK-O 42-2 Y-O 47-3 V-O O-W 7-4 O O-BK 17-2 O-Y 22-3 O-V W-G G 38-2 BK-G 43-3 Y-G 48-4 V-G 3-4 G-W 8-1 G G-BK 18-3 G-Y 23-4 G-V W-B B 39-3 BK-B 44-4 Y-B 49-1 V-B B-W 9-2 B B-BK 19-4 B-Y 24-1 B-V W-S S 40-4 BK-S 45-1 Y-S 50-2 V-S S-W 10-3 S S-BK 20-1 S-Y 25-2 S-V 26-3 W-BL BL 36-1 BK-BL 41-2 Y-BL 46-3 V-BL BL-W 6-4 BL BL-BK 16-2 BL-Y 21-3 BL-V W-O O 37-2 BK-O 42-3 Y-O 47-4 V-O O-W 7-1 O O-BK 17-3 O-Y 22-4 O-V W-G G 38-3 BK-G 43-4 Y-G 48-1 V-G 3-1 G-W 8-2 G G-BK 18-4 G-Y 23-1 G-V W-B B 39-4 BK-B 44-1 Y-B 49-2 V-B B-W 9-3 B B-BK 19-1 B-Y 24-2 B-V W-S S 40-1 BK-S 45-2 Y-S 50-3 V-S S-W 10-4 S S-BK 20-2 S-Y 25-3 S-V 26-4 W-BL BL 36-2 BK-BL 41-3 Y-BL 46-4 V-BL BL-W 6-1 BL BL-BK 16-3 BL-Y 21-4 BL-V W-O O 37-3 BK-O 42-4 Y-O 47-1 V-O O-W 7-2 O O-BK 17-4 O-Y 22-1 O-V W-G G 38-4 BK-G 43-1 Y-G 48-2 V-G 3-2 G-W 8-3 G G-BK 18-1 G-Y 23-2 G-V W-B B 39-1 BK-B 44-2 Y-B 49-3 V-B B-W 9-4 B B-BK 19-2 B-Y 24-3 B-V W-S S 40-2 BK-S 45-3 Y-S 50-4 V-S S-W 10-1 S S-BK 20-3 S-Y 25-4 S-V 26-1 W-BL BL 36-3 BK-BL 41-4 Y-BL 46-1 V-BL BL-W 6-2 BL BL-BK 16-4 BL-Y 21-1 BL-V W-O O 37-4 BK-O 42-1 Y-O 47-2 V-O O-W 7-3 O O-BK 17-1 O-Y 22-2 O-V W-G G 38-1 BK-G 43-2 Y-G 48-3 V-G 3-3 G-W 8-4 G G-BK 18-2 G-Y 23-3 G-V W-B B 39-2 BK-B 44-3 Y-B 49-4 V-B B-W 9-1 B B-BK 19-3 B-Y 24-4 B-V W-S S 40-3 BK-S 45-4 Y-S 50-1 V-S S-W 10-2 S S-BK 20-4 S-Y 25-1 S-V FIGUE 6A (continued on page 16) designations and color code for Litespan ODD CB shelf VF/DS0 connectors. 15

16 Dead CB shelf P9 conn CB shelf P8 conn (Brown binder) CB shelf P7 conn (Green binder) CB shelf P6 conn (Orange binder) BOC-EG W-BL BL 36-4 BK-BL 41-1 Y-BL 46-2 V-BL BL-W 6-3 BL BL-BK 16-1 BL-Y 21-2 BL-V W-O O 37-1 BK-O 42-2 Y-O 47-3 V-O O-W 7-4 O O-BK 17-2 O-Y 22-3 O-V W-G G 38-2 BK-G 43-3 Y-G 48-4 V-G 3-4 G-W 8-1 G G-BK 18-3 G-Y 23-4 G-V W-B B 39-3 BK-B 44-4 Y-B 49-1 V-B B-W 9-2 B B-BK 19-4 B-Y 24-1 B-V W-S S 40-4 BK-S 45-1 Y-S 50-2 V-S S-W 10-3 S S-BK 20-1 S-Y 25-2 S-V 26-3 W-BL BL 36-1 BK-BL 41-2 Y-BL 46-3 V-BL BL-W 6-4 BL BL-BK 16-2 BL-Y 21-3 BL-V W-O O 37-2 BK-O 42-3 Y-O 47-4 V-O O-W 7-1 O O-BK 17-3 O-Y 22-4 O-V W-G G 38-3 BK-G 43-4 Y-G 48-1 V-G 3-1 G-W 8-2 G G-BK 18-4 G-Y 23-1 G-V W-B B 39-4 BK-B 44-1 Y-B 49-2 V-B B-W 9-3 B B-BK 19-1 B-Y 24-2 B-V W-S S 40-1 BK-S 45-2 Y-S 50-3 V-S S-W 10-4 S S-BK 20-2 S-Y 25-3 S-V 26-4 W-BL BL 36-2 BK-BL 41-3 Y-BL 46-4 V-BL BL-W 6-1 BL BL-BK 16-3 BL-Y 21-4 BL-V W-O O 37-3 BK-O 42-4 Y-O 47-1 V-O O-W 7-2 O O-BK 17-4 O-Y 22-1 O-V W-G G 38-4 BK-G 43-1 Y-G 48-2 V-G 3-2 G-W 8-3 G G-BK 18-1 G-Y 23-2 G-V W-B B 39-1 BK-B 44-2 Y-B 49-3 V-B B-W 9-4 B B-BK 19-2 B-Y 24-3 B-V W-S S 40-2 BK-S 45-3 Y-S 50-4 V-S S-W 10-1 S S-BK 20-3 S-Y 25-4 S-V 26-1 W-BL BL 36-3 BK-BL 41-4 Y-BL 46-1 V-BL BL-W 6-2 BL BL-BK 16-4 BL-Y 21-1 BL-V W-O O 37-4 BK-O 42-1 Y-O 47-2 V-O O-W 7-3 O O-BK 17-1 O-Y 22-2 O-V W-G G 38-1 BK-G 43-2 Y-G 48-3 V-G 3-3 G-W 8-4 G G-BK 18-2 G-Y 23-3 G-V W-B B 39-2 BK-B 44-3 Y-B 49-4 V-B B-W 9-1 B B-BK 19-3 B-Y 24-4 B-V W-S S 40-3 BK-S 45-4 Y-S 50 V-S S-W 10-2 S S-BK 20-4 S-Y 25 S-V FIGUE 6A (continued from page 15) designations and color code for Litespan ODD CB shelf VF/DS0 connectors. 16

17 CB shelf P5 conn (Blue binder) CB shelf P4 conn (Brown binder) CB shelf P3 conn (Green binder) CB shelf P2 conn (Orange binder) CB shelf P1 conn (Blue binder) Dead BOC-EG W-BL BL 36-2 BK-BL 41-3 Y-BL 46-4 V-BL 5 1 BL-W 6-1 BL BL-BK 16-3 BL-Y 21-4 BL-V W-O O 37-3 BK-O 42-4 Y-O 47-1 V-O O-W 7-2 O O-BK 17-4 O-Y 22-1 O-V W-G G 38-4 BK-G 43-1 Y-G 48-2 V-G 3-2 G-W 8-3 G G-BK 18-1 G-Y 23-2 G-V W-B B 39-1 BK-B 44-2 Y-B 49-3 V-B B-W 9-4 B B-BK 19-2 B-Y 24-3 B-V W-S S 40-2 BK-S 45-3 Y-S 50-4 V-S S-W 10-1 S S-BK 20-3 S-Y 25-4 S-V 26-1 W-BL BL 36-3 BK-BL 41-4 Y-BL 46-1 V-BL BL-W 6-2 BL BL-BK 16-4 BL-Y 21-1 BL-V W-O O 37-4 BK-O 42-1 Y-O 47-2 V-O O-W 7-3 O O-BK 17-1 O-Y 22-2 O-V W-G G 38-1 BK-G 43-2 Y-G 48-3 V-G 3-3 G-W 8-4 G G-BK 18-2 G-Y 23-3 G-V W-B B 39-2 BK-B 44-3 Y-B 49-4 V-B B-W 9-1 B B-BK 19-3 B-Y 24-4 B-V W-S S 40-3 BK-S 45-4 Y-S 50-1 V-S S-W 10-2 S S-BK 20-4 S-Y 25-1 S-V 26-2 W-BL BL 36-4 BK-BL 41-1 Y-BL 46-2 V-BL BL-W 6-3 BL BL-BK 16-1 BL-Y 21-2 BL-V W-O O 37-1 BK-O 42-2 Y-O 47-3 V-O O-W 7-4 O O-BK 17-2 O-Y 22-3 O-V W-G G 38-2 BK-G 43-3 Y-G 48-4 V-G 3-4 G-W 8-1 G G-BK 18-3 G-Y 23-4 G-V W-B B 39-3 BK-B 44-4 Y-B 49-1 V-B B-W 9-2 B B-BK 19-4 B-Y 24-1 B-V W-S S 40-4 BK-S 45-1 Y-S 50-2 V-S S-W 10-3 S S-BK 20-1 S-Y 25-2 S-V 26-3 W-BL BL 36-1 BK-BL 41-2 Y-BL 46-3 V-BL BL-W 6-4 BL BL-BK 16-2 BL-Y 21-3 BL-V W-O O 37-2 BK-O 42-3 Y-O 47-4 V-O O-W 7-1 O O-BK 17-3 O-Y 22-4 O-V W-G G 38-3 BK-G 43-4 Y-G 48-1 V-G 3-1 G-W 8-2 G G-BK 18-4 G-Y 23-1 G-V W-B B 39-4 BK-B 44-1 Y-B 49-2 V-B B-W 9-3 B B-BK 19-1 B-Y 24-2 B-V W-S S 40-1 BK-S 45-2 Y-S 50-3 V-S S-W 10-4 S S-BK 20-2 S-Y 25-3 S-V 26-4 W-BL BL 36-2 BK-BL 41-3 Y-BL 46-4 V-BL BL-W 6-1 BL BL-BK 16-3 BL-Y 21-4 BL-V W-O O 37-3 BK-O 42-4 Y-O 47-1 V-O O-W 7-2 O O-BK 17-4 O-Y 22-1 O-V W-G G 38-4 BK-G 43-1 Y-G 48-2 V-G 3-2 G-W 8-3 G G-BK 18-1 G-Y 23-2 G-V W-B B 39-1 BK-B 44-2 Y-B 49-3 V-B B-W 9-4 B B-BK 19-2 B-Y 24-3 B-V W-S S 40-2 BK-S 45-3 Y-S 50-4 V-S S-W 10-1 S S-BK 20-3 S-Y 25-4 S-V FIGUE 6B (continued on page 18) designations and color code for Litespan EVEN CB shelf VF/DS0 connectors. 17

18 CB shelf P9 conn CB shelf P8 conn (Brown binder) CB shelf P7 conn (Green binder) CB shelf P6 conn (Orange binder) BOC-EG W-BL BL 36-3 BK-BL 41-4 Y-BL 46-1 V-BL BL-W 6-2 BL BL-BK 16-4 BL-Y 21-1 BL-V W-O O 37-4 BK-O 42-1 Y-O 47-2 V-O O-W 7-3 O O-BK 17-1 O-Y 22-2 O-V W-G G 38-1 BK-G 43-2 Y-G 48-3 V-G 3-3 G-W 8-4 G G-BK 18-2 G-Y 23-3 G-V W-B B 39-2 BK-B 44-3 Y-B 49-4 V-B B-W 9-1 B B-BK 19-3 B-Y 24-4 B-V W-S S 40-3 BK-S 45-4 Y-S 50-1 V-S S-W 10-2 S S-BK 20-4 S-Y 25-1 S-V 26-2 W-BL BL 36-4 BK-BL 41-1 Y-BL 46-2 V-BL BL-W 6-3 BL BL-BK 16-1 BL-Y 21-2 BL-V W-O O 37-1 BK-O 42-2 Y-O 47-3 V-O O-W 7-4 O O-BK 17-2 O-Y 22-3 O-V W-G G 38-2 BK-G 43-3 Y-G 48-4 V-G 3-4 G-W 8-1 G G-BK 18-3 G-Y 23-4 G-V W-B B 39-3 BK-B 44-4 Y-B 49-1 V-B B-W 9-2 B B-BK 19-4 B-Y 24-1 B-V W-S S 40-4 BK-S 45-1 Y-S 50-2 V-S S-W 10-3 S S-BK 20-1 S-Y 25-2 S-V 26-3 W-BL BL 36-1 BK-BL 41-2 Y-BL 46-3 V-BL BL-W 6-4 BL BL-BK 16-2 BL-Y 21-3 BL-V W-O O 37-2 BK-O 42-3 Y-O 47-4 V-O O-W 7-1 O O-BK 17-3 O-Y 22-4 O-V W-G G 38-3 BK-G 43-4 Y-G 48-1 V-G 3-1 G-W 8-2 G G-BK 18-4 G-Y 23-1 G-V W-B B 39-4 BK-B 44-1 Y-B 49-2 V-B B-W 9-3 B B-BK 19-1 B-Y 24-2 B-V W-S S 40-1 BK-S 45-2 Y-S 50-3 V-S S-W 10-4 S S-BK 20-2 S-Y 25-3 S-V 26-4 W-BL BL 36-2 BK-BL 41-3 Y-BL 46-4 V-BL BL-W 6-1 BL BL-BK 16-3 BL-Y 21-4 BL-V W-O O 37-3 BK-O 42-4 Y-O 47-1 V-O O-W 7-2 O O-BK 17-4 O-Y 22-1 O-V W-G G 38-4 BK-G 43-1 Y-G 48-2 V-G 3-2 G-W 8-3 G G-BK 18-1 G-Y 23-2 G-V W-B B 39-1 BK-B 44-2 Y-B 49-3 V-B B-W 9-4 B B-BK 19-2 B-Y 24-3 B-V W-S S 40-2 BK-S 45-3 Y-S 50-4 V-S S-W 10-1 S S-BK 20-3 S-Y 25-4 S-V FIGUE 6B (continued from page 17) designations and color code for Litespan EVEN CB shelf VF/DS0 connectors. 18

19 BOC-EG Dead 2-Dead st Conventional block 2nd Conventional block 3rd Conventional block FIGUE 6C Conventional block layout for Alcatel Litespan CB shelf VF/DS0 pairs. hese examples of the 1st, 2nd, 3rd blocks assume that DF cabling starts with CB1. View is from block's front (jumper) side. 19

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