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Page 1: Manuale DSlAM Nokia El.2

SURPASS hiX5625 R2.8

IP-DSLAM

Install G400/G400R/G400 2G/G400R 2G

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The information in this document is subject to change without notice and describes only the product defined in the introduction of this documentation. This documentation is intended for the use of Nokia Siemens Networks customers only for the purposes of the agreement under which the document is submitted, and no part of it may be used, reproduced, modified or transmitted in any form or means without the prior written permission of Nokia Siemens Networks. The documentation has been prepared to be used by professional and properly trained personnel, and the customer assumes full responsibility when using it. Nokia Siemens Networks welcomes customer comments as part of the process of continuous development and improvement of the documentation.

The information or statements given in this documentation concerning the suitability, capacity, or performance of the mentioned hardware or software products are given "as is" and all liability arising in connection with such hardware or software products shall be defined conclusively and finally in a separate agreement between Nokia Siemens Networks and the customer. However, Nokia Siemens Networks has made all reasonable efforts to ensure that the instructions contained in the document are adequate and free of material errors and omissions. Nokia Siemens Networks will, if deemed necessary by Nokia Siemens Networks, explain issues which may not be covered by the document.

Nokia Siemens Networks will correct errors in this documentation as soon as possible. IN NO EVENT WILL Nokia Siemens Networks BE LIABLE FOR ERRORS IN THIS DOCUMENTA-TION OR FOR ANY DAMAGES, INCLUDING BUT NOT LIMITED TO SPECIAL, DIRECT, INDI-RECT, INCIDENTAL OR CONSEQUENTIAL OR ANY LOSSES, SUCH AS BUT NOT LIMITED TO LOSS OF PROFIT, REVENUE, BUSINESS INTERRUPTION, BUSINESS OPPORTUNITY OR DATA,THAT MAY ARISE FROM THE USE OF THIS DOCUMENT OR THE INFORMATION IN IT.

This documentation and the product it describes are considered protected by copyrights and other intellectual property rights according to the applicable laws.

The wave logo is a trademark of Nokia Siemens Networks Oy. Nokia is a registered trademark of Nokia Corporation. Siemens is a registered trademark of Siemens AG.

Other product names mentioned in this document may be trademarks of their respective owners, and they are mentioned for identification purposes only.

Copyright © Nokia Siemens Networks 2008 - 2009. All rights reserved

f Important Notice on Product Safety Elevated voltages are inevitably present at specific points in this electrical equipment. Some of the parts may also have elevated operating temperatures.

Non-observance of these conditions and the safety instructions can result in personal injury or in property damage.

Therefore, only trained and qualified personnel may install and maintain the system.

The system complies with the standard EN 60950 / IEC 60950. All equipment connected has to comply with the applicable safety standards.

The same text in German:

Wichtiger Hinweis zur Produktsicherheit

In elektrischen Anlagen stehen zwangsläufig bestimmte Teile der Geräte unter Span-nung. Einige Teile können auch eine hohe Betriebstemperatur aufweisen.

Eine Nichtbeachtung dieser Situation und der Warnungshinweise kann zu Körperverlet-zungen und Sachschäden führen.

Deshalb wird vorausgesetzt, dass nur geschultes und qualifiziertes Personal die Anlagen installiert und wartet.

Das System entspricht den Anforderungen der EN 60950 / IEC 60950. Angeschlossene Geräte müssen die zutreffenden Sicherheitsbestimmungen erfüllen.

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Table of ContentsThis document has 98 pages.

Change History . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10

1 Protective Measures . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 111.1 General Notes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 111.2 Protection Against Excessive Contact Voltage . . . . . . . . . . . . . . . . . . . 111.3 Protection Against Escaping Laser Light . . . . . . . . . . . . . . . . . . . . . . . . 121.4 Protection Against Fire in Racks or Housings . . . . . . . . . . . . . . . . . . . . 121.5 Protection Against Hot Surfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 131.6 Components Subject to Electrostatic Discharge . . . . . . . . . . . . . . . . . . 131.7 Handling Modules (General) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 141.8 Handling Optical Fiber Connectors and Cables. . . . . . . . . . . . . . . . . . . 151.9 RoHS Requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 151.10 Declaration of CE Conformity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 161.11 WEEE Requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16

2 Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 172.1 G400, G400R, G400 2G and G400R 2G Shelf Mechanics . . . . . . . . . . 172.2 Shelf Integration. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 172.3 Items Supplied . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 182.4 Tools and Accessories. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 182.5 Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 182.6 Supplemental Documents . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19

3 Set up and Equip the Rack . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 203.1 Infrastructure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 203.2 Constructing the Rack . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 203.3 Equipping the Rack . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 223.3.1 Install a Subrack . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 223.3.2 Install the Splitter Chassis . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 253.3.3 Ground the Subrack. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 263.3.4 Install the AC/DC Converter. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 263.3.5 Install the Terminal Panel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26

4 Equipping the Shelves . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 284.1 Equipping of the Shelves G400 and G400 2G. . . . . . . . . . . . . . . . . . . . 284.2 Equipping of the Shelf G400R and G400R 2G . . . . . . . . . . . . . . . . . . . 29

5 Cable the Rack Power Supply . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 325.1 Cable the External DC Power to the Fuse Panel. . . . . . . . . . . . . . . . . . 325.2 Connect the AC/DC Converter hiX PS 48/30. . . . . . . . . . . . . . . . . . . . . 335.2.1 Connect the DC Fuse Panel and AC/DC Converter . . . . . . . . . . . . . . . 335.2.2 Connect the AC/DC Converter and AC Power Fuse Panel . . . . . . . . . . 335.2.3 Connect the AC Fuse Panel to AC Mains . . . . . . . . . . . . . . . . . . . . . . . 345.2.4 Connect the Control Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35

6 Cable the CXU and PM Interfaces. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 366.1 Overview CXU Interfaces. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36

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6.2 Connect the Uplink Interfaces. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 376.2.1 Optical Interfaces to Distributor. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 376.2.1.1 Optical and Electrical Interfaces on CXU_C . . . . . . . . . . . . . . . . . . . . . . 386.2.1.2 Connect Optical Interfaces of the CXU_C . . . . . . . . . . . . . . . . . . . . . . . 386.2.1.3 Connect Optical Interfaces of the CXU_C2/B21/B3 . . . . . . . . . . . . . . . . 396.2.2 Connect Electrical Ethernet Interfaces to Distributor . . . . . . . . . . . . . . . 406.2.3 Install a CWDM Ring Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . 406.3 Connect the Outband Interface. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 426.4 Overview of PM Interfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 436.5 Connect the Alarm Lines. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 436.6 Connect the Test- and Control Interfaces . . . . . . . . . . . . . . . . . . . . . . . . 446.7 Connect the External Reference Clock. . . . . . . . . . . . . . . . . . . . . . . . . . 47

7 Cable the Subscriber Interfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 487.1 Interface Unit IU_VDSL24. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 497.1.1 Connector Pin Assignment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 497.1.2 Pre-fabricated Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 507.1.3 Connect IU_VDSL24 and MDF. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 507.1.4 Connect IU_VDSL24 and Splitter Board. . . . . . . . . . . . . . . . . . . . . . . . . 507.1.5 Connect Splitter Board and MDF . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 517.1.6 Cabling Diagram of Shielded MDF Cable . . . . . . . . . . . . . . . . . . . . . . . . 527.1.7 Cabling Diagram of Unshielded MDF Cable . . . . . . . . . . . . . . . . . . . . . . 537.2 Interface Unit IU_VDSL48. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 547.2.1 Connector Pin Assignment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 547.2.2 Pre-fabricated Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 557.2.3 Connect IU_VDSL48 and MDF. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 557.2.4 Connect IU_VDSL48 and Splitter Board. . . . . . . . . . . . . . . . . . . . . . . . . 557.2.5 Connect Splitter Board and MDF . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 567.2.6 Cabling Diagram of Shielded MDF Cable . . . . . . . . . . . . . . . . . . . . . . . . 577.2.7 Cabling Diagram of Unshielded MDF Cable . . . . . . . . . . . . . . . . . . . . . . 587.3 Interface Unit IU_SHDSL48 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 597.3.1 Connector Pin Assignment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 597.3.2 Pre-fabricated Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 607.3.3 Connect IU_SHDSL48 and MDF . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 607.3.4 Connect IU_SHDSL48 and Dummy Splitters . . . . . . . . . . . . . . . . . . . . . 607.3.5 Cabling Diagram of Shielded MDF Cable . . . . . . . . . . . . . . . . . . . . . . . . 617.4 Interface Unit IU_ADSL72. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 627.4.1 Connector Pin Assignment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 627.4.2 Pre-fabricated Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 637.4.3 Connect IU_ADSL72 and MDF. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 637.4.4 Connect IU_ADSL72 and Splitter Chassis . . . . . . . . . . . . . . . . . . . . . . . 637.4.5 Connect Splitter Board and MDF . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 647.4.6 Cabling Diagram of Shielded MDF Cables . . . . . . . . . . . . . . . . . . . . . . . 657.4.7 Cabling Diagram of Unshielded MDF Cable . . . . . . . . . . . . . . . . . . . . . . 68

8 Subscriber Cabling for Vertical Shelves . . . . . . . . . . . . . . . . . . . . . . . . . 70

9 Finish the Installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 729.1 Insert the Fuses . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 72

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9.2 Examine the Installation. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 729.3 Power on the IP-DSLAM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 72

10 G400 Fan Units . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7310.1 Fan Replacement . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7310.2 Replace the Dust Filter Pad. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 74

11 Assembly Documents . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7511.1 DSL Mounting Sets . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7511.2 Pre-fabricated MDF Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7511.2.1 MDF Cables for 72-Port Interface Units. . . . . . . . . . . . . . . . . . . . . . . . . 7611.2.2 MDF Cables for 24/48-Port Interface Units . . . . . . . . . . . . . . . . . . . . . . 8111.3 Assembly of EPT Plug Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8311.3.1 Prepare the Cable . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8311.3.2 Mount the EPT Plug Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 84

12 Components for Projects with hiX 5625. . . . . . . . . . . . . . . . . . . . . . . . . 8812.1 Shelves . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8812.2 Central Switching Units . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8912.3 Interface Units . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8912.4 Optical SFP Modules and Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9012.5 CWDM Modules. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9112.6 Splitter Units . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9212.7 Power Modules . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9312.8 Fan Units . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9312.9 Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9412.10 Mounting Sets . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9612.11 Rack Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 96

13 Abbreviations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 97

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List of FiguresFigure 1 Power Rating Label. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11Figure 2 High Leakage Current. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12Figure 3 Warning Label According to IEC 60825/EN 60825. . . . . . . . . . . . . . . . . 12Figure 4 Warning Label for Class 1 Laser Equipment . . . . . . . . . . . . . . . . . . . . . 12Figure 5 Symbol Label for Hot Surfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13Figure 6 Text on Label for Hot Surfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13Figure 7 ESD Symbol . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13Figure 8 Prohibition Label According to DIN 4844-2. . . . . . . . . . . . . . . . . . . . . . . 14Figure 9 G400 Shelf (Example). . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18Figure 10 ETSI Rack Dimensions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21Figure 11 Protective Earth Symbol . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21Figure 12 Rack Configuration (Examples with G400) . . . . . . . . . . . . . . . . . . . . . . . 22Figure 13 Installation Measures of G400/G400 2G for ETSI Mounting. . . . . . . . . . 23Figure 14 Birds View of G400/G400 2G for ETSI Mounting . . . . . . . . . . . . . . . . . . 24Figure 15 Installation Measures of G400/G400 2G with Mounting Angels for 23” . 24Figure 16 Birds View of G400/G400 2G with Mounting Angles for 23’’. . . . . . . . . . 25Figure 17 Splitter Chassis-8 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25Figure 18 Fuse and Termination Panel. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27Figure 19 Installation Measures of G400/G400 2G with Mounting Angels for 23” . 28Figure 20 Front View of the Shelf G400R/G400R 2G (Example) . . . . . . . . . . . . . . 30Figure 21 Location of the Locking Screws . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31Figure 22 External Cabling of DC Fuse Panel . . . . . . . . . . . . . . . . . . . . . . . . . . . . 32Figure 23 AC/DC Converter hiX PS 48/30 (without Front Panel) . . . . . . . . . . . . . . 33Figure 24 AC Fuse Panel (Output Side) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 34Figure 25 AC Power Fuse Panel (Feeding Side) . . . . . . . . . . . . . . . . . . . . . . . . . . 35Figure 26 Interfaces of the CXU_C . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36Figure 27 Interfaces CXU_B21/_B3/_C2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 37Figure 28 SFP module for Gigabit Ethernet (GbE) . . . . . . . . . . . . . . . . . . . . . . . . . 37Figure 29 Examples for Using the Uplink-Interfaces on the CXU_C. . . . . . . . . . . . 38Figure 30 Cabling Diagram for CXU_C Board Redundancy . . . . . . . . . . . . . . . . . . 39Figure 31 Cabling Diagram for CXU_C2/B21/B3 Redundancy. . . . . . . . . . . . . . . . 39Figure 32 CWDM Ring Configuration of two IP-DSLAM . . . . . . . . . . . . . . . . . . . . . 40Figure 33 CWDM Pigtail Labeling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40Figure 34 ODF with Splice Cassette and CWDM Device . . . . . . . . . . . . . . . . . . . . 41Figure 35 RJ45-Connector “MGMT “ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 42Figure 36 External Interfaces of PM_R and PM_R 2G . . . . . . . . . . . . . . . . . . . . . . 43Figure 37 External Interfaces of PM_1R, PM_1R 2G and PM_UPL, PM_UPL 2G. 43Figure 38 Power Module PM_ONU 2G. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 43Figure 39 72-Pin Front Connector on Interface Unit Cards. . . . . . . . . . . . . . . . . . . 48Figure 40 Interface Unit IU_VDSL24. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 49Figure 41 Cabling the IU_VDSL24 to VDSL Splitter within Subrack. . . . . . . . . . . . 51Figure 42 Cabling the IU_VDSL24 to Splitter Chassis . . . . . . . . . . . . . . . . . . . . . . 51Figure 43 Interface Unit IU_VDSL48. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54Figure 44 Cabling the IU_VDSL48 to Splitter Chassis . . . . . . . . . . . . . . . . . . . . . . 56Figure 45 Interface Unit IU_SHDSL48 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59

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Figure 46 Interface Unit IU_ADSL72 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62Figure 47 Cabling the IU_ADSL72 to Splitter Chassis. . . . . . . . . . . . . . . . . . . . . . 64Figure 48 Rack Wiring with Vertically Installed Shelves (Example) . . . . . . . . . . . . 70Figure 49 Fan Unit . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 74Figure 50 DSL Mounting Set . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 75Figure 51 72-Pin Connector, Cable Exit at Pin1 . . . . . . . . . . . . . . . . . . . . . . . . . . 76Figure 52 72-Pin Connector, Cable Exit at Pin24 . . . . . . . . . . . . . . . . . . . . . . . . . 76Figure 53 Preparing an LF Cable. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 84Figure 54 Bar Equipped with Insulating Body . . . . . . . . . . . . . . . . . . . . . . . . . . . . 85Figure 55 Bar in the Assembly Tool . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 85Figure 56 Positioning of the Contact . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 86Figure 57 Single Wire in the Contact . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 86Figure 58 Attach the Single Wire . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 86

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List of TablesTable 1 Tools and Accessories . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18Table 2 Supplemental Documents for Installation . . . . . . . . . . . . . . . . . . . . . . . 19Table 3 Rack Type Measures . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20Table 4 Slot Allocation of the G400 Shelf . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29Table 5 Slot Allocation of the G400 2G Shelf . . . . . . . . . . . . . . . . . . . . . . . . . . . 29Table 6 Slot Allocation of the G400R . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30Table 7 Slot Allocation of the G400R 2G . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30Table 8 Contacts of RFI connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35Table 9 Front Access Interfaces of the CXU . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36Table 10 Pinout “MGMT “ Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 42Table 11 Pinout of Alarm Inputs and Outputs . . . . . . . . . . . . . . . . . . . . . . . . . . . 43Table 12 PM_ONU 2G: Pinout of Alarm Interface . . . . . . . . . . . . . . . . . . . . . . . . 44Table 13 Pinout “TAP” Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 45Table 14 Pinout “ENV.SENSOR” Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . 45Table 15 Pinout “TAP” Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 45Table 16 Pinout “HEX/PWM” Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 45Table 17 Pinout “HEX/I2C” Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 46Table 18 Pinout “CLI” Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 46Table 19 Pinout Ethernet Ports# 1 to 4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 46Table 20 Pinout “CLK1”/”CLK2” Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 47Table 21 Pinout of IU_VDSL24 Connector “LINE 1-24” . . . . . . . . . . . . . . . . . . . . 49Table 22 Pre-fabricated Cables for IU_VDSL24 . . . . . . . . . . . . . . . . . . . . . . . . . . 50Table 23 Cabling Diagram IU_VDSL24/Splitter Board --> MDF (Shielded) . . . . . 52Table 24 Cabling Diagram VDSL2-Splitter Board --> MDF (Unshielded) . . . . . . . 53Table 25 Pinout of IU_VDSL48 Connectors “LINE 1-24” and “LINE 25-48 . . . . . 54Table 26 Pre-fabricated Cables for IU_VDSL48 . . . . . . . . . . . . . . . . . . . . . . . . . . 55Table 27 Cabling Diagram IU_VDSL48/Splitter Board --> MDF (Shielded) . . . . . 57Table 28 Cabling Diagram VDSL2-Splitter Board --> MDF (Unshielded) . . . . . . . 58Table 29 Pinout of IU_SHDSL48 Connectors “LINE 1-24” and “LINE 25-48 . . . . 59Table 30 Pre-fabricated Cables for IU_SHDSL48 . . . . . . . . . . . . . . . . . . . . . . . . 60Table 31 Cabling Diagram IU_SHDSL48 --> MDF (Shielded) . . . . . . . . . . . . . . . 61Table 32 Pinout of IU_ADSL72 Connectors “LINE 1-36” and “LINE 37-72” . . . . . 62Table 33 Pre-fabricated Cables for IU_ADSL72 . . . . . . . . . . . . . . . . . . . . . . . . . . 63Table 34 Cabling IU_ADSL72/Splitter Board --> MDF (Shielded Cable 1) . . . . . . 65Table 35 Cabling IU_ADSL72/Splitter Board --> MDF (Shielded Cable 2) . . . . . . 66Table 36 Cabling Diagram Splitter Board --> MDF (Unshielded) . . . . . . . . . . . . . 68Table 37 Cables for Vertically Installed Shelves . . . . . . . . . . . . . . . . . . . . . . . . . . 71Table 38 MDF Cables for 72-Port Interface Unit . . . . . . . . . . . . . . . . . . . . . . . . . . 76Table 39 Type1 of Shielded MDF Cables for 72-Port Interface Units . . . . . . . . . . 77Table 40 Type2 of Shielded MDF Cables for 72-Port Interface Units . . . . . . . . . . 78Table 41 Wiring of Unshielded MDF Cables for 72-Port Interface Units . . . . . . . . 80Table 42 MDF Cables for 24/48-Port Interface Units . . . . . . . . . . . . . . . . . . . . . . 81Table 43 Wiring of Shielded MDF Cables for 24/48-Port Interface Units . . . . . . . 82Table 44 Wiring of Unshielded MDF Cables for 24/48-Port Interface Units . . . . . 83Table 45 Shelves . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 88

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Table 46 Central Switching Unit Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 89Table 47 Interface Units Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 89Table 48 Optical SFP and Cable Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 90Table 49 CWDM Module Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 91Table 50 Splitter Units Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 92Table 51 Power Modules . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 93Table 52 Fan Units . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 93Table 53 Cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 94Table 54 Mounting Sets . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 96Table 55 Rack Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 96

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Change History

Change History5. Update (31.08.2009)

Equipping the Shelves (4)

– Added: PM_ONU 2G

Cable the CXU and PM Interfaces (6)

– PM_ONU 2G added

Components for Projects with hiX 5625 (12)

– Added PM_ONU 2G

4. Update (30.06.2009)

3. Update (30.04.2009)

2. Update (28.02.2009)

1. Update (16.12.2008)

Initial release (28.11.2008)

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1 Protective Measures

1.1 General NotesThis Section contains requirements with regard to protection of people, equipment and environment.

All assembly, installation, operation and repair work may only be undertaken by service personnel.

In the event of any injury (e.g. burns and acid burns) being sustained, seek medical help immediately. Generally, to avoid danger, the operator is instructed to read the desig-nated manual before beginning e.g. a maintenance task.

1.2 Protection Against Excessive Contact VoltageWhen dealing with the power supply, observe the safety measures described in the specifications of the European Norm EN 50110, Part 1 and Part 2 (operation of electrical installations) and the valid applicable national standards as VDE 0105 (operation of high-voltage equipment) Part 1, Section 9.3 (safety measures to be carried out) at all times. Be sure to follow local national regulations regarding the handling of high-voltage equipment.

Figure 1 shows the label on the subrack with information on the subrack power supply (limits for battery voltage and load current). ** Numerical values for load current. Check the power rating label for the actual value.

Figure 1 Power Rating Label

!Before unplugging/plugging of the DC plugs, the power supplies must be switched off. Otherwise there is a danger of electric arc hazard!

!The system can have several power supplies. Note that to switch off the power supply completely, you also have to switch off the redundant power supply. Switch off all con-cerned devices!

!Please pay attention also to the high leakage current.

A ground connection is essential before connecting the system to the telecommunica-tion network.

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Protective Measures

Figure 2 shows the label on the front side of the subrack with information that a high leakage current can occur if the subrack is not grounded.

Figure 2 High Leakage Current

1.3 Protection Against Escaping Laser LightIn order to avoid health risks, take care to ensure that any laser light escaping is not directed towards the eyes. Plug-in units equipped with laser light units may carry the laser symbol, but it is not required, see Figure 3. For operation in closed systems the laser light units comply with Laser class 1. Such units can be identified by an adhesive label as well as by a warning label, see Figure 4.

Figure 3 Warning Label According to IEC 60825/EN 60825

Figure 4 Warning Label for Class 1 Laser Equipment

1.4 Protection Against Fire in Racks or HousingsIf subracks are used in housing, the subracks must comply with the conditions for fire protection housing according to DIN EN 60950-1.

To comply with fire protection standards as defined in DIN EN 60950-1, a protective plate (C42165-A320-C684) must be fitted into the floor of ETSI and 19-inch standard racks. The rack must also meet the requirements of fire-resistant housing as defined in DIN EN 60950-1.

!Never look directly into the beam, not even with optical instruments.

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1.5 Protection Against Hot SurfacesIf temperatures higher than 70°C can be present on components inside the transmission equipment, following labels are attached to this equipment, see Figure 5 and Figure 6.

Figure 5 Symbol Label for Hot Surfaces

Figure 6 Text on Label for Hot Surfaces

1.6 Components Subject to Electrostatic Discharge

Figure 7 ESD Symbol

When packing, unpacking, touching, pulling out, or plugging in plug-in units bearing the ESD symbol, it is essential to wear a grounding bracelet. This ensures that the plug-in units are not subject to electrostatic discharge.

Under no circumstances should you touch the printed conductors or components of plug-in units. Take hold of plug-in units by the edge only.

Once removed, place the plug-in units in the conductive plastic sleeves intended for them. Keep or dispatch them in the special boxes or transport cases bearing the ESD symbol.

!Plug-in units bearing the symbol shown in Figure 7, are equipped with components subject to electrostatic discharge (ESD). Adhere to the relevant safety provisions.

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Protective Measures

Treat defective plug-in units with the same degree of care as new ones in order to avoid further damage.

Plug-in units in a closed and intact housing are protected in any case.

European Norm EN 50082-1 provides information on the proper handling of compo-nents which are subject to electrostatic discharge.

1.7 Handling Modules (General)To pull out or plug in plug-in units, use the front-mounted levers.

In shelters fans are used for cooling. To indicate positions where there is a danger of being caught up in a fan, following label is attached, see Figure 8.

Figure 8 Prohibition Label According to DIN 4844-2

When working with modules (plug-in units, subracks and shelters) the following points should be noted: • Existing ventilation equipment must not be changed. To ensure a sufficient air circu-

lation, the flow of air must not be obstructed.

• All slide-in units can be removed or inserted with the power still applied. To remove and insert the units you should use the two locking screws fitted to the front of the unit. A type label is fixed on the handhold above the locking screw on the bottom of the board providing information on the hardware and software version of the unit.

• A label with the words “HOT AREA” is fixed to hot surfaces. This indicates severe danger of injury.

• Shelters with a front door may only be operated when this door is closed.

You should therefore remove the front door before doing the necessary work and replace it once you have finished your work.

• When inserting and removing subracks and when transporting them, take their weight into consideration.

• Cables may never be disconnected by pulling on the cable. Disconnection/connec-tion may only be undertaken by pushing in/pulling out the connector involved.

!Beware of rotating parts.

!There is a danger of injury if the door is left open.

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1.8 Handling Optical Fiber Connectors and CablesOptical connectors are precision-made components and must be handled accordingly. To ensure faultless functioning, the following points must be observed: • Install protective caps on unplugged optical connectors under all circumstances to

protect against physical damage and dirt. • Before making connections, use isopropyl alcohol and non-fibrous cellulose to clean

the faces of the connectors. • Avoid impact stresses when handling connectors.

Physical damage to the faces of optical connections impair transmission quality (higher attenuation).

• Avoid a bend radius less than 30 mm for fiber optic links. • Mechanical damage to the surfaces of optical connectors impairs transmission

quality by higher attenuation.– For this reason, do not expose the connectors to impact and tensile load.– Once the protective dust caps have been removed, you must check the surfaces

of the optical fiber connectors to ensure that they are clean, and clean them if necessary. For cleaning, the C42334-A380-A926 optical fiber cleaning tool or a clean, lint-free cellulose cloth or a chamois leather is suitable. Isopropyl alcohol can be used as a cleaning fluid.

1.9 RoHS RequirementsNokia Siemens Networks considers the protection of the environment and the preserva-tion of natural resources as a major duty and thus undertakes great efforts to design its products to be environmental friendly. Therefore, as of July 1st, 2006, all contract products of Nokia Siemens Networks

• to which the RoHS (Restriction of Hazardous Substances) directive applies to • and which are put on the market within the countries where the RoHS requirements

are transposed into national law

are in compliance with the requirements of the RoHS.

Nokia Siemens Networks reserves the right to apply the exemptions to the RoHS requirements as set out in the Annex to the RoHS directive, in particular lead in solders for network infrastructure equipment for switching, signaling, transmission as well as network management for telecommunication.

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Protective Measures

1.10 Declaration of CE Conformityg The CE (Conformité Européenne) Declaration of Conformity for the product is ful-

filled only if all construction and cabling is undertaken in accordance with the manual and the documentation listed therein, e.g. installation instructions, cabling lists, etc.

1.11 WEEE RequirementsNokia Siemens Networks considers the protection of the environment and the preserva-tion of natural resources as a major duty.

This includes waste recovery with a view to reducing the quantity of waste for disposal and saving natural resources, in particular by treatment, recycling and recovering energy from waste electrical and electronic equipment (WEEE). Therefore Nokia Siemens Networks complies with its obligations as “producer” in terms of the WEEE directive for all its products

• to which the WEEE directive applies to • and which are put on the market within the countries where the WEEE requirements

are transposed into national law,

unless any deviant allocation of such obligations have been agreed between Nokia Siemens Network’s and its contractual partners. According to WEEE-requirements since August 13, 2005 such products are marked with the symbol of a crossed out wheeled bin with bar, indicating separate collection for electrical and electronic equip-ment, as shown below.

!Deviations from the specifications or unstipulated changes during construction, e.g. the use of cable types with lower shielding values is a violation of the CE requirements. In such cases, the conformity declaration is invalidated and the manufacturer is refused from responsibility. All liability passes immediately to those persons undertaking any unauthorized deviations.

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2 Overview

2.1 G400, G400R, G400 2G and G400R 2G Shelf MechanicsDue to different requirements of IP-DSLAM applications, the shelf is available in four variants: G400, G400 2G, G400R and G400R 2G.

All shelves can be installed in ETSI indoor racks or in 23” racks for ANSI approach (for example in a central switching center or a collocation facility) or in outdoor shelters (FTTC). Shelter applications are available on request.

The slots in the G400, G400 2G, G400R and G400R 2G are arranged horizontally, but the shelf itself can be mounted in the rack horizontally or vertically. For environmental conditions of each shelf please check the System Description.

The G400R and G400R 2G equipped with power modules PM_R resp. PM_R 2G are special variants with heat exchanger control in outdoor ONU applications.

All shelves are not compatible with requirements for ETSI shelves according to ETS 300 11935 4, because they need an enhanced mounting depth. For that, there are some restrictions for rack doors, see measurements below.

The shelf has the following mechanical characterisics: • Subrack size:

224 mm x 494 mm x 279 mm (h x w x d)224 mm x 533 mm x max 331 mm (h x w x d) included mounting brackets and cables

• Slot size (pitch): 25 mm • Air inlet: on the left side of the shelf (horizontal mounting) • Air outlet: on the right side of the shelf (horizontal mounting).

2.2 Shelf IntegrationThe shelf-based DSL access multiplexer (DSLAM) hiX 5625 based on the G400, G400R, G400 2G and G400R 2G shelves provide broadband interfaces for connection to the IP core network.

Each shelf has 2 slots for central switching (CXU) units and 4 slots for interface units (IU). The shelves can also be equipped with up to two IU_VDSL24 and two 24-port splitter units. The main difference between G400/G400R and G400 2G/G400R 2G consists of equipping with power modules and fan units. In addition the G400 2G/ G400R 2G can also be equipped with one central unit and 5 IUs.

g Empty slots must be fitted with blank panels!

This document describes installation in an ETSI rack and in a 23’’ rack. For further infor-mation about deploying G400, G400R, G400 2G and G400R 2G shelves refer to your project specific documentation.

Figure 9 shows an G400 shelf.

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Overview

Figure 9 G400 Shelf (Example)

2.3 Items SuppliedThe items supplied comprise the system components according to the project-specific documents.

2.4 Tools and AccessoriesThe tools and accessories are not included in the items supplied (see Table 1).

2.5 CablesYou can either assemble your own cable using the information supplied in the cable plans (see Section Assembly Documents), or you can purchase pre-fabricated cables (see also Table 53).

Designation Application

Tool case H89999-B511

(available from Customer Service)

Installing the subrack

Splicer for optical fibers e.g. FUSION SPLICER S46999-M7-A60

Splicing fiber-optic cables

IDC hand tool for 72pin ept connectors No. 894-305(installation instruction will be delivered too)

Mounting cables to ept connectors with IDC contacts. Not necessary if you use only pre-fabricated cables

Cable ties 4.8 x 186 Mounting the optical fibers in the splice cassette

Paper tissues and isopropyl alcohol Cleaning the glass fibers

Table 1 Tools and Accessories

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2.6 Supplemental DocumentsThe following table contains all supplemental documents:

g The asterisk (*) in the document number represents the issue number.

Designation Application

ETSI Rack Assembly S42021-A121-Z20-*-7683(see section Assembly Documents)

Rack, installation and securing.

Operating instructions for installing ept connectors with IDC contacts are provided with the IDC installation and repair tool (order number 894-305), see also section Assembly Docu-ments)

ept connector assembly

Transport systems installation documents. international A42020-S178-H1-3-7431

Various installation instructions

Operating instructions S46999-M7-B60, relating to fusion splicer S46999-M7-B60

Splicing of optical fibers; enclosed with splicer

Station plans

(project-specific documents)

Project-specific installation

Table 2 Supplemental Documents for Installation

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Set up and Equip the Rack

3 Set up and Equip the Rack

3.1 InfrastructureThe shelves can be mounted in ETSI racks or in 23” racks. The slots in the G400 and G400 2G are arranged horizontally. The shelves itself can be equipped horizontally or vertically.

The G400/R and G400/R 2G are special designed with heat exchanger control in outdoor ONU applications.

The dimensions of the racks are shown in Table 3.

Possible rack configurations are: • Rack row or • Back-to-back.

Additional components are needed to adapt the telecommunication equipment on the existing infrastructure.

The technical infrastructure is characterized by: • Power supply

The G400/R and G400/R 2G have to be supplied with 40.5 to 72.0 V. • Environmental conditions (see System Description SYD) • Short interconnections to other equipment.

3.2 Constructing the RackTo construct the rack:1. Erect and secure the rack.

g Be sure to consult the project-specific documents when positioning and securing the rack.

– Rack assembly instructions S42021-A121-Z20-*-7683– Transport systems assembly documents international A42020-S178-H1-*-7431

(if applicable)

Rack Type Height Width Depth

23” 2133.6 mm (84 in) 742.95 mm (29.25 in) -

ETSI 2200 mm 600 mm 300 mm

1) for the assembly two mounting angles are needed, see Figure 152) for the assembly no mounting angles are needed, see Figure 13

Table 3 Rack Type Measures

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Figure 10 ETSI Rack Dimensions2. Ground the rack.

The rack and the subracks must always be grounded. In unmeshed buildings, the rack is grounded by attaching it to a secure grounding source where indicated with the symbol in Figure 11. Be sure that it is tightly fastened with the screws provided.

Figure 11 Protective Earth Symbol

After the rack has been constructed, you can equip it.

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Set up and Equip the Rack

3.3 Equipping the RackAfter the rack is constructed, you can add the subrack(s) and the terminal panel.

The following components can be installed in the rack, see also Figure 12: • one terminal and fuse panel

The terminal and fuse panel must be mounted at the top of the rack. • up to three G400/R or G400/R 2G shelves

g There must be a space of 125 mm to 135 mm between the G400/R or G400/R 2G and the splitter shelf! The space between the highest shelf and the terminal and fuse panel must be at least 200 mm!

Figure 12 shows an examples for rack configuration.

Figure 12 Rack Configuration (Examples with G400)

3.3.1 Install a SubrackIn general, the subracks are installed horizontally in the rack according to the project-specific configuration documentation so that the fan is located on the left hand side. For special applications, the G400/R and G400/R 2G can also be installed vertically.Refer to the assembly documents for installing the G400/R or G400/R 2G subrack (see Chapter Assembly Documents).

The following procedure is valid for horizontal shelf mounting in rack:1. Fasten the brackets to the G400/R or G400/R 2G subrack by screwing the screws

into the press-in nuts in the mounting brackets, see Figure 15. Brackets are only needed for a 23” rack. The mounting brackets for an ETSI rack are already fixed with the shelf, see Figure 13.

Fuse and Terminal Panel

G400 shelf with

Splitter chassis 8

Terminal PanelFuse and

G400 shelf with

IU_ADSL72

G400 shelf with

Splitter chassis 8

IU_ADSL72

IU_VDSL24 andsplitter unit

G400 shelf withIU_VDSL24 andsplitter unit

G400 shelf withIU_VDSL24 andsplitter unit

Fuse and Terminal Panel

G400 shelf with

Splitter chassis 8

IU_VDSL24

Not used part ofsplitter chassis 8

G400 shelf with

Splitter chassis 8

IU_VDSL24

Not used part ofsplitter chassis 8

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2. Insert the cage nuts in the holes of the rack at the position where the subrack is to be installed.

3. To hold the subrack during installation, screw two screws (without washers) into the cage nuts at the position of the two keyholes below (use the upper keyholes for mounting in a 23’’ rack).

4. Hook the subrack onto these two screws via the key holes. 5. Insert the remaining four screws for the G400/R or G400/R 2G (with washers)

through the holes (2) into the cage nuts and tighten them, see Figure 13 and Figure 15.

6. Remove the two first inserted screws without washers. 7. Re-insert these two screws with washers into the keyholes and tighten them.

The following figures show the mounting conditions for G400/G400 2G in ETSI and in 23’’ racks.

Figure 13 Installation Measures of G400/G400 2G for ETSI Mounting

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Set up and Equip the Rack

Figure 14 Birds View of G400/G400 2G for ETSI Mounting

Figure 15 Installation Measures of G400/G400 2G with Mounting Angels for 23”

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Figure 16 Birds View of G400/G400 2G with Mounting Angles for 23’’

3.3.2 Install the Splitter ChassisThis section describes the installation of splitter chassis-8 as an example.

Figure 17 Splitter Chassis-8

1. To install the splitter chassis-8 in an ETSI rack, an additional rack mounting kit is required (C50165-A230-B143). Tighten the mounting brackets at the chassis.

2. Determine the position where the splitter chassis is to be installed in the rack.

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Set up and Equip the Rack

3. Insert cage nuts in the rail holes at desired position.4. Place the chassis, insert the screws and tighten them.

3.3.3 Ground the SubrackThe subrack must always be grounded. Following grounding methods are used for the G400/R or G400/R 2G: • In a rack the G400/R or G400/R 2G is grounded by screw connection with the

grounded rack. Pay attention to strong screw connections. • If the G400/R or G400/R 2G is used in a stand alone variant in unmeshed buildings,

the subrack must be grounded by attaching it to a secure grounding source where indicated with the symbol in Figure 11. Be sure that it is tightly fastened with the screws provided.

3.3.4 Install the AC/DC Converter g The steps are necessary if no external DC power feeding is provided to the rack.

1. In case of an AC/DC converter hiX PS 48/30 make sure that the all DIP switches of CAN bus are in OFF position (address 0).

2. Determine the position where the AC/DC converter is to be installed in the rack. 3. Insert cage nuts in the rail holes at desired position.4. Place the converter, insert the screws and tighten them.

3.3.5 Install the Terminal PanelThe G400/R or G400/R 2G requires separate circuit breakers in the rack’s terminal panel. To install the terminal panel:1. Use the ETSI system rack S42021-A121-Z20-*-7683 document for installing the

terminal panel (see Chapter Assembly Documents):2. Install the subrack terminal panel at the top of the rack.3. Be sure that circuit breakers are switched off or not installed in the DC fuse panel!4. Install the DC fuse panel.

Figure 18 shows the DC fuse and termination panel V50010-F1046-A5 (2 breakers).

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Figure 18 Fuse and Termination Panel

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Equipping the Shelves

4 Equipping the ShelvesAfter you have mounted the subracks in the rack, you can begin populating the subrack with plug-in units. The fan unit is already installed.

4.1 Equipping of the Shelves G400 and G400 2GThe shelf G400/G400 2G has 2 slots for central units and 4 slots for IUs. The 6 slots of G400 2G can also be used for one central unit and 5 IUs.

Additionally, each shelf contains two special slots for power modules. There are different power modules for G400 and G400 2G to be used, see Table 4 and Table 5.Also the fan units equipped on the left side of the shelf G400 and G400 2G are different.

Figure 19 Installation Measures of G400/G400 2G with Mounting Angels for 23”

The slot allocation of G400 is shown in Table 4.

!When inserting the plug-in units, observe the ESD requirements for protecting the units (see Chapter 1.6 Components Subject to Electrostatic Discharge).

When inserting the plug-in units into the subrack slots, be sure to insert them inside the slot guides

To preserve electromagnetic compatibility, empty slots must be covered with slot covers (common blank panel). In addition, all plug-in units must be secured using the locking screws located above and below the plug-in unit handles, see Figure 21.

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In ETSI applications, the G400 is equipped with two power modules, PM_1R ETSI and PM_UPL ETSI. When G400 is used for ANSI application, the power modules are PM_1R ANSI and PM_UPL_R ANSI. The power module PM_1R ETSI/ANSI contains the power path for the first power supply voltage.

The following table shows the equipping for G400 2G:

The G400 2G has 6 slots available for plug-in units, see Table 5. A fan unit is equipped on the left side of the shelf in a special slot. The fan unit FAN_G400 DF 2G with dust filter or the fan unit FAN_G400 2G without dust filter can be equipped in the G400 2G.

In ETSI applications, the G400 2G is equipped with two power modules, PM_1R 2G and PM_UPL 2G ETSI. When G400 2G is used for ANSI application, the power modules are PM_1R 2G and PM_UPL_R 2G ANSI. The power module PM_1R 2G contains the power path for the first power supply voltage. Instead of PM_UPL 2G ETSI/ANSI, the PM_ONU 2G can be used.

4.2 Equipping of the Shelf G400R and G400R 2GThe shelf G400R/G400R 2G has 2 slots for central units and 4 slots for IUs. The 6 slots of G400R 2G can also be used for one central unit and 5 IUs.Additionally, each shelf contains a special slot for power modules. There are different power modules for G400R and G400R 2G to be used, see Table 6 and Table 7.Also the fan units equipped on the left side of the shelf G400R and G400R 2G are dif-ferent.

G400R/G400R 2G shelves equipped with PM_R/PM_R 2G are special designed for outdoor ONU applications. PM_R/PM_R 2G can control a heat exchanger which is

Fan G400 resp.Fan G400 with dust filter (DF)

Slot 201 IU #1

Slot 202 IU #2

Slot 203 CXU #A

Slot 204 CXU #B

Slot 205 IU #3

Slot 206 IU #4

Slot 207 PM_UPL ANSI/PM_UPL ETSI PM_1R

Table 4 Slot Allocation of the G400 Shelf

Fan G400 2G resp. Fan G400 2G with dust filter (DF)

Slot 201 IU #1

Slot 202 IU #2

Slot 203 CXU #A

Slot 204 CXU #B/ IU#5

Slot 205 IU #3

Slot 206 IU #4

Slot 207/208 PM_UPL 2G ETSI /PM_UPL 2G ANSI/PM_ONU 2G PM_1R 2G

Table 5 Slot Allocation of the G400 2G Shelf

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Equipping the Shelves

located in the ONU. Only one power supply path is used. Furthermore, special alarm connectors are available.

Figure 20 Front View of the Shelf G400R/G400R 2G (Example)

The slot allocation of G400R is shown in Table 6.

The slot allocation of G400R 2G is shown in the following table (Table 7):

G400 Fan resp.G400 Fan with dust filter (DF)

Slot 201 IU #4

Slot 202 IU #3

Slot 203 CXU #B

Slot 204 CXU #A

Slot 205 IU #2

Slot 206 IU #1

Slot 207 PM_R

Table 6 Slot Allocation of the G400R

G400 Fan 2G resp.G400 Fan 2G with dust filter (DF)

Slot 201 IU #1

Slot 202 IU #2

Slot 203 CXU #A

Slot 204 CXU #B/ IU#5

Slot 205 IU #3

Slot 206 IU #4

Slot 207 PM_R 2G

Table 7 Slot Allocation of the G400R 2G

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Figure 21 Location of the Locking Screws

After installing the subracks, route the cables to the terminal panel, to the optical distrib-utor and to the main distribution frame (see the following Chapters).

The subracks are grounded via the mounting screws (see Chapter 3.3.3 Ground the Subrack).

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Cable the Rack Power Supply

5 Cable the Rack Power SupplyPerform the following steps to connect the rack to power supply of station.

5.1 Cable the External DC Power to the Fuse Panel

To connect the DC terminal panel to power supply:

1. Route the DC power supply cable to the rack.2. Connect the station power supply (-48/60 VDC) to central feed point of the DC fuse

panel, see Figure 22 (back side view).

Figure 22 External Cabling of DC Fuse Panel

!Make sure the DC circuit breakers are switched OFF!

( + )

Feed pointFeed point for the

second power supply

( - ) ( + ) ( - )

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5.2 Connect the AC/DC Converter hiX PS 48/30 If the rack is DC-supplied, this section may be skipped.

g The rack has to be equipped with an AC fuse panel (V39118-Z4005-A302).

5.2.1 Connect the DC Fuse Panel and AC/DC ConverterTo connect DC fuse panel and AC/DC converter:

1. Dismantle the converter’s front panel.2. Connect the DC cable (S50028-B4000-S13) to central feed point of the DC fuse

panel (the brown wire to the “+” pole), see Figure 22.3. Guide the cable through the rack. Secure it with adequate insulation materials at the

rack.4. Connect the cable to “DC” connector at the AC/DC converter, see Figure 23.

Figure 23 AC/DC Converter hiX PS 48/30 (without Front Panel)

5.2.2 Connect the AC/DC Converter and AC Power Fuse PanelTo connect the AC/DC converter to AC fuse panel:

1. Connect the AC cable (S50028-B4000-S12) to “AC” connector at the AC/DC con-verter, see Figure 23.

2. Mount the front panel.3. Guide the cable through the rack. Secure it with adequate insulation materials at the

rack.4. Connect the cable to AC fuse panel, see Figure 24.

g The AC/DC converter must be fused through a breaker with rated nominal current of 16 A and C-characteristic.

!Make sure AC/DC converter and AC breaker are switched OFF!

533515

50 74

430

CAN bus address switch

AC input ON/OFF switch

Signal contacts DC output"Main"/"Fault"RFILEDs

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Cable the Rack Power Supply

Figure 24 AC Fuse Panel (Output Side)

5.2.3 Connect the AC Fuse Panel to AC Mains

To connect the AC fuse panel to AC power supply of station:

1. Route the AC mains cable to the rack.2. Cut the cable to length and prepare the wires.3. Connect the cable to feed point of the AC fuse panel, see Figure 25.

BNwire “L” of

the cable to

the AC/DC

converter

wire “L” of the

cable to the

second AC/DC

converter

wire “PE” of

the cables to

the AC/DC

converters

wire “N” of

the cables to

the AC/DC

converters

BNBU GN/YE

!When installing electrical equipment, basic safety precautions should always be fol-lowed. Connecting the rack to AC electrical power is a task requires an electrician.

Make sure all connections made are in accordance with the appropriated European Norm (EN) standards and any state/local regulations.

!Be sure that the external AC power supply is switched OFF!

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Figure 25 AC Power Fuse Panel (Feeding Side)

5.2.4 Connect the Control Interface The RFI connector provides the following signals and relay contacts:

To connect the external alarm signals, see Section 6.5 Connect the Alarm Lines.

Feed point for the

AC power supply

Contact Designation

1 free

2 PT 1000; ground; L+

3 PT 1000

4 free

5 Control line for parallel operation

6 TTL input, battery test mode (BTM)

7 TTL input, enhanced charge mode (ECM)

8 Ground; L+

9 Relays contact 2 (Mains failure)

10 Relays contact 1 (Failure 48 V voltage)

11 free

12 Common connection for relay contacts 1 and 2

Table 8 Contacts of RFI connector

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Cable the CXU and PM Interfaces

6 Cable the CXU and PM InterfacesThe necessary steps for wiring are described in the following Sections.

6.1 Overview CXU InterfacesThe interfaces of the shelves are shown in Table 9, Figure 26 and Figure 27.

Figure 26 Interfaces of the CXU_C

Name Function From/to Remarks

Optical GE Uplink i/f 4 x external optical GE interfaces CXU_B3CXU_B21CXU_CCXU_C2

Interface type individually selectable by small form-factor pluggable (SFP) equipping

Electrical GE/FE Uplink i/f 100/1000Base-T uplink interface RJ45 connectors

FE TMN 10/100Base-T interface for TMN access RJ45 connector.

RS232 debug Debug interface for service operation RJ45 connector

Table 9 Front Access Interfaces of the CXU

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Figure 27 Interfaces CXU_B21/_B3/_C2

SFPs for GE optical ports 1 to 4 are not part of the delivery. They have to be ordered and equipped separately.

6.2 Connect the Uplink InterfacesThe following procedures describe how to connect the uplink interfaces from the CXU to the IP access network.

6.2.1 Optical Interfaces to DistributorThe optical polarization mode dispersion function is implemented by SFP modules. The optical interface is accessible over connectors, which are parts of the SFP modules. Short and long haul versions are available by different suppliers, see Table 48. The SFP modules are unplugged in case of electrical interface utilization. Figure 28 shows an example of a SFP module.

Figure 28 SFP module for Gigabit Ethernet (GbE)

1) The “LNK" LEDs display the line link status of ports 1 to 4:

Link Up -> LED ON

Link Down -> LED OFF

2) The “ACT" LEDs show whether a transmit or receive activity is present on the Ethernet line.

The LED function is configurable, the default setting is to drive on the LED both for receive

and transmit activity presence.

optical/electrical GE-ports 1 to 4LED indication

power

minor alarm

major alarm

critical alarm

error

status of CXU

(green)

(yellow)

(red)

(red)

(red)

(green)

Color:

ACT-LED (yellow)2)

Console RS232

TMN 10/100Base-T

CRIT

MAJ

MIN

PWR

RUN

ERR

LED:

LNK-LED (green)1)optical SFP modules

Meaning:

SFP module

Rubber plug

Optical LC connectors

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6.2.1.1 Optical and Electrical Interfaces on CXU_CThe CXU_C can use altogether 4 interfaces, optically or electrically.

It can be:– all four optical interfaces– all four electrical interfaces– or mixed assembly (but not optical and electrical interface with the same number)

Figure 29 Examples for Using the Uplink-Interfaces on the CXU_C

6.2.1.2 Connect Optical Interfaces of the CXU_CUse this procedure when installing an optical connection to the CXU_C.

1. Cut the optical cables with duplex LC connector to length.2. Attach the LC connectors.3. Label and mark the cables.4. Route and stow the cable in the rack.5. Install the cables according to the cabling diagram and project-specific documents.

Use the connectors on the plug-in unit.– To support line redundancy and board redundancy, connect the working and

protecting lines directly to the working and protecting CXU_Cs.– To support board redundancy only, connect the working CXU_C with the

protecting CXU_C. Refer to the Figure 30 and project-specific documents.6. Connect the fiber optic cable to the distributor (see project-specific documents).

1

2

3

4

100/

1000

BT

GE

-opt

.

1

2

3

4

1-electrical

2-electrical

3-electrical

4-optical

1

2

3

4

100/

1000

BT

GE

-opt

. 2

3

4

1-optical

2-optical

3-optical

4-optical

1

2

3

4

100/

1000

BT

GE

-opt

.

1

2

3

4

1-electrical

2-electrical

3-electrical

4-electrical

1

2

3

4

100/

1000

BT

GE

-opt

. 2

3

4

1-optical

2-electrical

3-optical

4-electrical

1

Example 1: Example 2: Example 3: Example 4:

1

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Figure 30 Cabling Diagram for CXU_C Board Redundancy

6.2.1.3 Connect Optical Interfaces of the CXU_C2/B21/B3Use this procedure when installing an optical connection to the CXU_C2/B21/B3.

1. Cut the optical cables with duplex LC connector to length.2. Attach the LC connectors.3. Label and mark the cables.4. Route and stow the cable in the rack.5. Install the cables according to the cabling diagram and project-specific documents.

Use the connectors on the plug-in unit.– To support line redundancy and board redundancy, connect the working and

protecting lines directly to the working and protecting CXU_C2/B21/B3s.– To support CXU_C2/B21/B3 redundancy only, use optical combiners (splitter)

for the optical connections, see Figure 31 and project-specific documents.6. Connect the fiber optic cable to the distributor (see project-specific documents).

Figure 31 Cabling Diagram for CXU_C2/B21/B3 Redundancy

Por

ts

Protecting CXU_C2/B21/B3

GE-Uplink

GE-Uplink

Por

ts

Working CXU_C2/B21/B3

Optical combiner (splitter)

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6.2.2 Connect Electrical Ethernet Interfaces to DistributorUse this procedure when installing an electrical connection to CXU plug-in unit. Use the pre-assembled cables or adjust the cable lengths.

1. Cut the cables to length.2. Attach the RJ45 connectors.3. Label and mark the cables.4. Route and stow the cable in the rack.5. Install the cables according to the cabling diagram and project-specific documents.

Use the connector on the plug-in unit.6. Connect the cable to the distributor (see project-specific documents).

6.2.3 Install a CWDM Ring ConfigurationUp to eight IP-DSLAMs may be connected in a ring topology if single channels are cou-pled/uncoupled via optical splitter with different wavelengths. This configuration uses the technique of Coarse Wavelength Division Multiplexing (CWDM). Figure 32 illustrates the principle.

Figure 32 CWDM Ring Configuration of two IP-DSLAM

The used CWDM devices comprise two filters with LC connectors. Figure 33 provides information about pigtail labeling on the LC connector boots of the devices.

Figure 33 CWDM Pigtail Labeling

Port2Port1

Port3

Port2’Port3’

Port1’ with wavelength 2

CWDM devicewith wavelength1

CWDM device

IP-DSLAM 1CXU-SFP wavelength 1

IP-DSLAM 2CXU-SFP wavelength2

Port2Port1

Port3

Port2’Port3’

Port1’

Port1 - Com in Port2 - DropPort3 - Refl out Multifiber buffer tube

Port1’ - Com out (Common)Port2’ - Add Port3’ - Refl in (Reflection)

FO patch cord

Demultiplexer MultiplexerPort PortLabel LabelCom InDropRefl out

DCODYYDUP

Com OutAddRefl in

MCOMYYMUP

YY = 47 (1471 nm), 49 (1491 nm),

55 (1551 nm), 57 (1571 nm), 59 (1591 nm), 61 (1611 nm)

51 (1511 nm), 53 (1531 nm),

Com in Drop

Refl out

Com out Add

Refl in

Optical configuration

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Figure 34 shows the example of a configuration connecting an IP-DSLAM to CWDM ring.

Figure 34 ODF with Splice Cassette and CWDM Device

For the time being, do not fasten the optical distribution frame (ODF) to the rack.

To splice the fiber optic cables:1. Route the multifiber buffer tube in the rack.

g Cutting back the cable to length, at least 1600 mm should be added on to secure the fibers.

2. Prepare the multifiber buffer tube (cut back the fiber buffers to min. 1600 mm, separate the optical fibers, and clean them if necessary).

3. Fasten the multifiber buffer tube with cable ties at the strain relief of the splice cas-sette. Insert the fiber reserve into the splice cassette.

4. Prepare the pigtails.5. Secure the pigtails to the splice cassette and insert the fiber reserve.6. Splice the fibers and pigtails.

g To minimize optical link budget losses, refer to the fiber manufacturers recom-mended fiber splicing techniques.

7. Check the splices and secure the fiber splicing point carefully into the center of the splice organizer.

8. Close the ready spliced cassette, fix it on the ODF.9. Connect the LC cable plugs to the ODF patch field (rear side). 10. Secure the multifiber buffer tube with cable ties at the strain relief of ODF.

To install the CWDM devices:

Strain relief forpigtails

Strain relief forpatch cord

Pigtail

Port 1’Port 3’

Port 1Port 3

Port 2’

Port 2

Patch cord toCXU uplink port

Holding clamps

CWDM device

Strain relief formultifiber buffer tube

2 Splice cassettes, stacked

Mounting plateKnurled nut

Strain relief for multifiber buffer

Loose tube andpigtail reserve

Splicing organizer

Patch field LC/LC

tube

!Use caution when routing fiber optic cables and pigtails. Make sure the fibers are not overstretched or compressed. Avoid severe bending and routing over sharp edges. Use cable guiding material when possible to avoid wear on cable insulation.

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1. Fix each CWDM device with two clamps at the required position on mounting plate from ODF.

2. Insert the CWDM fiber reserves in the second splice cassette and fix the splice cassette on the ODF.

3. Connect the fibers to the patch field.4. Install the ODF in the rack.5. Connect the patch cord. Secure it with cable ties at the ODF.6. Guide the patch cord to the CXU and connect it.

g The wavelengths of the two CWDM devices and the SFP module on the con-nected CXU, must be identical. Observe the color marking on the optical com-ponents.

6.3 Connect the Outband InterfaceTo connect the 10/100Base-T outband TMN interface use a pre-fabricated CAT5 cable or assemble the cable as follows:

1. Cut the CAT5 cable to length.2. Crimp the RJ45 plugs on the cable.3. Label and mark the cable.4. Route and stow the cable in the rack.5. Connect the cable ends to the LCT (Local Craft Terminal) connector “MGMT” at the

CXU and the FE port of management system.

Figure 35 RJ45-Connector “MGMT “

Pin Signal

1 LCT_TD+ Transmit data+

2 LCT_TD- Transmit data-

3 LCT_RD+ Receive data+

4 NC --

5 NC --

6 LCT_RD- Receive data-

7 NC --

8 NC --

Table 10 Pinout “MGMT “ Connector

7654321 8

Status LED "ACT" Status LED "LINK"

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6.4 Overview of PM InterfacesFigure 36 shows the interfaces located on the power modules PM_R and PM_R 2G, and Figure 37 the interfaces on the power modules PM_1R, PM_1R 2G, PM_UPL as well as PM_UPL 2G.

Figure 36 External Interfaces of PM_R and PM_R 2G

Figure 37 External Interfaces of PM_1R, PM_1R 2G and PM_UPL, PM_UPL 2G

Instead of the PM_UPL 2G, the subrack may also be equipped with the power module PM_ONU 2G.

Figure 38 Power Module PM_ONU 2G

6.5 Connect the Alarm LinesThe alarm signals are transmitted via RJ45 connectors on the user plane of power module PM_UPL (2G) and PM_ONU 2G.

Power Module PM_UPL/PM_UPL 2GThe alarm inputs are electrical decoupled by opto-couplers, alarm outputs are potential-free relay contacts.

Test bus

Environment sensorAlarm interface

Power supply 48/60 V/max.40 AEthernet switch

I2C Heat exchanger

CLI console

CLK2 CLK1PWMSync. clock

Pin IN1-4 IN5-8 OUT1-3

1 ALARM_IN1 ALARM_IN5 ALARM_OUT1_A

2 ALARM_IN2 ALARM_IN6 ALARM_OUT1_B

Table 11 Pinout of Alarm Inputs and Outputs

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To install the alarm cables:

1. Label and mark the cables.2. Route and stow the cables in the rack.3. Connect the cables to the corresponding connectors :

• “IN1-4” and “IN5-8”: alarm-triggering sensors • “OUT1-3”: devices processing alarms from IP-DSLAM.

4. Connect the cables accordingly the project-specific documents to those devices that trigger/process the alarms.

Power Module PM_ONU 2GThe alarm signals of a remote alarm collector (ALCO) are transferred via I2C. The ALCO contains 1 and 2-wire alarm contacts which can be defined either closed-active or open-active. The voltage MUP is used as the return conductor for ground related alarm signals. The low active signal PRES_ALCO is used for signaling an installed cable con-nection to the ALCO.

6.6 Connect the Test- and Control InterfacesUse the following information to connect particular test and control interfaces according to the project-specific documents.

Power Module PM_UPL/PM_UPL 2G

• Over the RJ45 connector “TAP” (Test Access Point) may be accessed an internal 2-wire test-bus interconnecting all slots of the interface units. The TAP may be used

3 ALARM_IN3 ALARM_IN7 ALARM_OUT2_A

4 ALARM_IN4 ALARM_IN7 ALARM_OUT2_B

5 -- -- ALARM_OUT3_A

6 -- -- ALARM_OUT3_B

7 -- -- --

8 GND GND GND

Pin AL IF

1 P3V3_EXT

2 GND

3 I_DAT_ALCO

4 I_CLK_ALCO

5 PRES_ALCO

6 --

7 GND

8 MUP

Table 12 PM_ONU 2G: Pinout of Alarm Interface

Pin IN1-4 IN5-8 OUT1-3

Table 11 Pinout of Alarm Inputs and Outputs (Cont.)

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to check the status of subscriber lines. Note that the TAP interface does not have an overvoltage protection.

Power Module PM_ONU 2G

• At the connector “ENV.SENSOR”, a remote analog sensor measuring the ambient humidity may be connected (e.g. S50028-H100-S7). The sensor’s power feeding (<100 mA) is provided over this connector.

• Connector “TAP” (see above):

• The “HEX/PWM” interface may be used in ONU application to control a heat exchanger based on pulse-width modulation.

Pin Signal

1 TAP_A

2 TAP_B

3-8 --

Table 13 Pinout “TAP” Connector

Pin Signal

1 P5V_EXT

2 ANA_IN_1

3 ANA_IN_2

4 ANA_IN_3

5 --

6 --

7 --

8 GND

Table 14 Pinout “ENV.SENSOR” Connector

Pin Signal

1 TAP_A

2 TAP_B

3-8 --

Table 15 Pinout “TAP” Connector

Pin Signal

1 PWM_FAN_IN

2 PWM_FAN_OUT

3 GND

4 HEX_FAN_AL1_IN

Table 16 Pinout “HEX/PWM” Connector

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• The “HEX/I2C” interface may be used in ONU application to control a heat exchanger over I2C bus (for future use):

• Connector “CLI” (Command Line Interface) is a serial RS232 (TL1) interface that may be accessed for outband connections. It is connected internally to the active CXU. The interface can be connected to a dial-back modem for initial commissioning of the IP-DSLAM.

• 4-port 10/100 Base-T Ethernet switch

5 HEX_FAN_AL2_IN

6 HEX_FAN_AL1_OUT

7 HEX_FAN_AL2_OUT

8 PRES_HEX_PWM

Pin Signal

1 P3V3_EXT

2 GND

3 I_DAT_HEX

4 I_CLK_HEX

5 PRES_HEX

6 --

7 GND

8 --

Table 17 Pinout “HEX/I2C” Connector

Pin Signal

1 CON1_TL1

2 CON2_TL1

3 CLI_TX

4 GND

5 GND

6 CLI_RX

7 CON2_TL1

8 CON1_TL1

Table 18 Pinout “CLI” Connector

Pin Signal

1 TX+

Table 19 Pinout Ethernet Ports# 1 to 4

Pin Signal

Table 16 Pinout “HEX/PWM” Connector (Cont.)

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6.7 Connect the External Reference Clockg The connectors (RJ45) for external clock synchronization of an IP-DSLAM in 2G-

subrack are located on power module PM_ONU 2G.

For ANSI application, the interfaces “CLK1” and “CLK2” (BITS ) support dedicated non traffic carrying DS1/E1 or T3 clock signal (Sync1 or Sync2). The required clock mode for external synchronization is selected by coding the EOC_0…4 and LOOP signals.

Connect “CLK1”/“CLK2” to source generating the clock signal.

2 TX-

3 RX+

4 --

5 --

6 RX-

7 --

8 --

Pin Signal

Table 19 Pinout Ethernet Ports# 1 to 4 (Cont.)

Pin Signal

1 BITS1_A BITS2_A

2 BITS1_B BITS2_B

3-8 -- --

Table 20 Pinout “CLK1”/”CLK2” Connector

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7 Cable the Subscriber InterfacesBefore starting the subrack cabling, pay attention on the following guidelines: • When fully equipped, the cables from one plug-in unit can pass in front of another

one above or below it. Be sure to leave enough reserve in the cables so that the cables may be pushed aside when a plug-in unit has to be pulled from the subrack.Otherwise, the obstructing cables have to be temporarily disconnected while a problem plug-in unit is replaced, thereby interrupting broadband services to other customers.

• By constructional, thermal, and wire-technical reasons, all cables towards the MDF take course always over the top of rack.

• Air-inlet and air-outlet of the subrack must have a distance of at least 25 mm to installed neighboring components. This may be achieved e.g. through cable holders (C50165-A230-D8). Clearance is especially important when a fan unit is used with dust filter and measuring the air flow resistance.

• The cables should be routed in the left or right side of the rack. To cable evenly dis-tributed, the number of cables within the cable reservoirs on both sides of the rack should be approximately equal over all.

• Wherever applicable, the cables should be tied together and secured at the rack as well as cable holders mounted at subracks and splitter chassis.

• Avoid severe bending and routing over sharp edges. All cables are positively managed to a 30 mm minimum bend radius.

• The direction (pin1 or pin24) a cable exits the plug depends on the location where the splitters are installed. Section 11.2 Pre-fabricated MDF Cables contains infor-mation on design of used cables.

g Regarding the transmission characteristics and over-voltage protection, all types of IU_ADSL72, IU_VDSL24, and IU_VDSL48 are optimized to be used with splitters. The cabling of particular splitter boards installed in the rack is described together with the related xDSL interface unit. Otherwise, it is assumed that the splitters are located in the MDF.

The pin assignment of 72-pin connectors at interface unit cards shows the figure below.

Figure 39 72-Pin Front Connector on Interface Unit Cards

abc

1 24

!

Make sure pins of the connector are not bent when the cable is plugged in.

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7.1 Interface Unit IU_VDSL24The information in this section refer to the installation of the VDSL2 interface card IU_VDSL24 including the 24-port VDSL2 splitter board that is connected with it.

7.1.1 Connector Pin Assignment

Figure 40 Interface Unit IU_VDSL24

Connector for subscriber lines 1- 24Status LED

PinConnector LINE 1-24

A B C

1 NC NC NC

2 NC NC NC

3 NC NC NC

4 NC NC NC

5 NC NC NC

6 NC NC NC

7 NC NC NC

8 NC NC NC

9 BB_b24 BB_b23 BB_b22

10 BB_a24 BB_a23 BB_a22

11 BB_b21 BB_b20 BB_b19

12 BB_a21 BB_a20 BB_a19

13 BB_b18 BB_b17 BB_b16

14 BB_a18 BB_a17 BB_a16

15 BB_b15 BB_b14 BB_b13

16 BB_a15 BB_a14 BB_a13

17 BB_b12 BB_b11 BB_b10

18 BB_a12 BB_a11 BB_a10

19 BB_b9 BB_b8 BB_b7

20 BB_a9 BB_a8 BB_a7

21 BB_b6 BB_b5 BB_b4

22 BB_a6 BB_a5 BB_a4

23 BB_b3 BB_b2 BB_b1

24 BB_a3 BB_a2 BB_a1

Table 21 Pinout of IU_VDSL24 Connector “LINE 1-24”

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7.1.2 Pre-fabricated CablesTable 22 contains a matrix with order numbers of pre-fabricated cables that may be used for the connections between IU_VDSL24, splitter chassis and MDF. The star (*) at the number’s end stands for the cable length in meters that may be delivered. Further infor-mation on these cables can be found in the Sections 11.2 Pre-fabricated MDF Cables and 12.9 Cables.

7.1.3 Connect IU_VDSL24 and MDFUse a pre-fabricated shielded MDF cable (S50028-B1147-S*) and adjust the cable length, see Section 11.2.1 MDF Cables for 72-Port Interface Units:

1. Cut the cable to length.2. Attach connector for MDF side (splitter) to the cable.3. Label and mark the cable.4. Route and stow the cable in the rack towards the MDF.5. Plug the cable into the IU_VDSL24 connector “LINE 1-24”.6. Connect the cable to the MDF splitter (Table 23, project-specific documents).

7.1.4 Connect IU_VDSL24 and Splitter BoardThe IU_VDSL24 connector “LINE 1-24” can be connected to connector “xDSL 1-24” of the VDSL2 splitter board via pre-fabricated 1:1 cable as follows:

• If the splitter board is integrated in the subrack, use the DSL mounting set 1 (S50028-B1121-S8). g The splitter board must be plugged in the slot over the IU_VDSL24 to be con-

nected with it. Figure 41 shows the cabling with DSL mounting set 1.

IU_VDSL24LINE 1-24

Splitter boardin subrack

Splitter board in splitter chassis

MDF Broadband

MDF Narrowband

IU_VDSL24LINE 1-24

-- S50028-B1121-S8 S50028-B1130-S13 S50028-B1147-S*(Pin24)

--

Splitter boardin subrack

S50028-B1121-S8 -- -- S50028-B1147-S*(Pin24)

S50028-B1148-S*(S50028-B1147-S*)

(Pin24)

Splitter board in splitter chassis

S50028-B1130-S13 -- -- S50028-B1145-S*(Pin1)

S50028-B1146-S*(S50028-B1145-S*)

(Pin1)

MDF Broadband

S50028-B1147-S*(Pin24)

S50028-B1147-S*(Pin24)

S50028-B1145-S*(Pin1)

-- --

MDF Narrowband

-- S50028-B1148-S*(S50028-B1147-S*)

(Pin24)

S50028-B1146-S*(S50028-B1145-S*)

(Pin1)

-- --

Table 22 Pre-fabricated Cables for IU_VDSL24

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Figure 41 Cabling the IU_VDSL24 to VDSL Splitter within Subrack • If the splitter board is located in a separate splitter chassis, use the

DSL mounting set 13 (S50028-B1130-S13) for the rack cabling.Figure 42 shows an example of cabling with these DSL mounting sets.

Figure 42 Cabling the IU_VDSL24 to Splitter Chassis

7.1.5 Connect Splitter Board and MDFg When installing (preparing) cables, consider the position of cable exit regarding the

connector’s pinout:

• If both splitter board and IU_VDSL24 are equipped in the subrack, use an MDF cable with cable exit at Pin24 position, see Figure 41.

• If the splitter board is located in a separate splitter chassis, use an MDF cable with cable exit at Pin1 position, see Figure 42.

Use a shielded MDF cable to connect the broadband lines (“LINE 1-24”). To cable the connector “POTS/ISDN 1-24” to the MDF, unshielded cable may be used:

1. Cut the cables to length.2. Label and mark the cables.3. Route and stow the cables in the rack towards the MDF.4. Plug the broadband cable into connector “LINE 1-24” at the VDSL2 splitter board.

LINE 1-24

LINE 1-24POTS/ISDN 1-24xDSL 1-24

Subrack

Mounting set S50028-B1121-S8

towards MDF

Rack

Cable types and lengths according to:- S50028-B1147-S*- S50028-B1148-S*

1

2

LINE 1-24

LINE 1-24

LINE 1-24POTS/ISDN 1-24 xDSL 1-24

LINE 1-24POTS/ISDN 1-24 xDSL 1-24 1

2

3

4

1

2

LINE 1-24POTS/ISDN 1-24 xDSL 1-24

LINE 1-24POTS/ISDN 1-24 xDSL 1-24

Cable types and lengthsaccording to:- S50028-B1145-S*- S50028-B1146-S*

towards MDF

Mounting set:S50028-B1130-S13

Splitter chassis-8

Subrack

Rack

5...

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5. Plug the narrowband cable into connector “POTS/ISDN 1-24” at the VDSL2-splitter board.

6. Connect the cables to the MDF (Table 24, Table 23, project-specific documents).

7.1.6 Cabling Diagram of Shielded MDF CableTable 23 contains the cabling diagram to be used for the direct connection between IU_VDSL24 and MDF (splitters), and cabling the splitter board with MDF.

The shielded cables may also be used for narrowband-connections between VDSL2-splitter board (“POTS/ISDN 1-24”) and MDF.

Cable 09YS(St)CH 24x2x0.4/0.8 ConnectorLine 1-24

MDF BroadbandSubscriber lines 1-24

Unit Color of insulation a b

a-Wire b-Wire a-Wire b-Wire

Unit 1rd

1 wh bu C24 C23 BB_a1 BB_b1

tq vt B24 B23 BB_a2 BB_b2

2 wh og A24 A23 BB_a3 BB_b3

tq vt C22 C21 BB_a4 BB_b4

3 wh gn B22 B21 BB_a5 BB_b5

tq vt A22 A21 BB_a6 BB_b6

4 wh bn C20 C19 BB_a7 BB_b7

tq vt B20 B19 BB_a8 BB_b8

Unit 2wh

5 wh bu A20 A19 BB_a9 BB_b9

tq vt C18 C17 BB_a10 BB_b10

6 wh og B18 B17 BB_a11 BB_b11

tq vt A18 A17 BB_a12 BB_b12

7 wh gn C16 C15 BB_a13 BB_b13

tq vt B16 B15 BB_a14 BB_b14

8 wh bn A16 A15 BB_a15 BB_b15

tq vt C14 C13 BB_a16 BB_b16

Unit 3bn

9 wh bu B14 B13 BB_a17 BB_b17

tq vt A14 A13 BB_a18 BB_b18

10 wh og C12 C11 BB_a19 BB_b19

tq vt B12 B11 BB_a20 BB_b20

11 wh gn A12 A11 BB_a21 BB_b21

tq vt C10 C9 BB_a22 BB_b22

12 wh bn B10 B9 BB_a23 BB_b23

tq vt A10 A9 BB_a24 BB_b24

Shielding continuity wire and braided shield Ground Ground

Table 23 Cabling Diagram IU_VDSL24/Splitter Board --> MDF (Shielded)

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7.1.7 Cabling Diagram of Unshielded MDF CableTable 24 contains the cabling diagram to be used for the unshielded narrowband con-nection between VDSL2-splitter board (“POTS/ISDN 1-24”) and MDF.

Cable S-Y(St)H 25x2x0.4 ConnectorPOTS/ISDN 1-24

MDF NarrowbandSubscriber lines 1-24

Color of insula-

tion

Unit Colors of paira b

a-Wire b-Wire a-Wire b-Wire

wh 1 bu bu C24 C23 NB_a1 NB_b1

bu ye B24 B23 NB_a2 NB_b2

bu gn A24 A23 NB_a3 NB_b3

bu bn C22 C21 NB_a4 NB_b4

bu bk B22 B21 NB_a5 NB_b5

2 ye bu A22 A21 NB_a6 NB_b6

ye ye C20 C19 NB_a7 NB_b7

ye gn B20 B19 NB_a8 NB_b8

ye bn A20 A19 NB_a9 NB_b9

ye bk C18 C17 NB_a10 NB_b10

3 gn bu B18 B17 NB_a11 NB_b11

gn ye A18 A17 NB_a12 NB_b12

gn gn C16 C15 NB_a13 NB_b13

tq bn B16 B15 NB_a14 NB_b14

gn bk A16 A15 NB_a15 NB_b15

4 bn bu C14 C13 NB_a16 NB_b16

bn ye B14 B13 NB_a17 NB_b17

bn gn A14 A13 NB_a18 NB_b18

bn og C12 C11 NB_a19 NB_b19

bn bk B12 B11 NB_a20 NB_b20

5 bk bu A12 A11 NB_a21 NB_b21

bk ye C10 C9 NB_a22 NB_b22

bk gn B10 B9 NB_a23 NB_b23

bk bn A10 A9 NB_a24 NB_b24

bk bk NC NC

Shielding continuity wire Ground Ground

Table 24 Cabling Diagram VDSL2-Splitter Board --> MDF (Unshielded)

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7.2 Interface Unit IU_VDSL48The information in this section refer to the installation of the VDSL2 interface card IU_VDSL48 including the 24-port VDSL2 splitter boards that are connected with it.

7.2.1 Connector Pin Assignment

Figure 43 Interface Unit IU_VDSL48

Connector forsubscriber lines 25-48

Connector forsubscriber lines 1-24Status LED

LINE 25-48

IUV

DS

L_48

LINE 1-24

PinConnector LINE 1-24 Connector LINE 25-48

A B C A B C

1 NC NC NC NC NC NC

2 NC NC NC NC NC NC

3 NC NC NC NC NC NC

4 NC NC NC NC NC NC

5 NC NC NC NC NC NC

6 NC NC NC NC NC NC

7 NC NC NC NC NC NC

8 NC NC NC NC NC NC

9 BB_b24 BB_b23 BB_b22 BB_a48 BB_a47 BB_a46

10 BB_a24 BB_a23 BB_a22 BB_b48 BB_b47 BB_b46

11 BB_b21 BB_b20 BB_b19 BB_a45 BB_a44 BB_a43

12 BB_a21 BB_a20 BB_a19 BB_b45 BB_b44 BB_b43

13 BB_b18 BB_b17 BB_b16 BB_a42 BB_a41 BB_a40

14 BB_a18 BB_a17 BB_a16 BB_b42 BB_b41 BB_b40

15 BB_b15 BB_b14 BB_b13 BB_a39 BB_a38 BB_a37

16 BB_a15 BB_a14 BB_a13 BB_b39 BB_b38 BB_b37

17 BB_b12 BB_b11 BB_b10 BB_a36 BB_a35 BB_a34

18 BB_a12 BB_a11 BB_a10 BB_b36 BB_b35 BB_b34

19 BB_b9 BB_b8 BB_b7 BB_a33 BB_a32 BB_a31

20 BB_a9 BB_a8 BB_a7 BB_b33 BB_b32 BB_b31

21 BB_b6 BB_b5 BB_b4 BB_a30 BB_a29 BB_a28

22 BB_a6 BB_a5 BB_a4 BB_b30 BB_b29 BB_b28

23 BB_b3 BB_b2 BB_b1 BB_a27 BB_a26 BB_a25

24 BB_a3 BB_a2 BB_a1 BB_b27 BB_b26 BB_b25

Table 25 Pinout of IU_VDSL48 Connectors “LINE 1-24” and “LINE 25-48

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7.2.2 Pre-fabricated CablesTable 26 contains a matrix with order numbers of pre-fabricated cables that may be used for the connections between IU_VDSL48, splitter chassis and MDF. The star (*) at the number’s end stands for the cable length in meters that may be delivered. Further infor-mation on these cables can be found in the Sections 11.2 Pre-fabricated MDF Cables and 12.9 Cables.

7.2.3 Connect IU_VDSL48 and MDFUse two pre-fabricated shielded MDF cables (S50028-B1147-S*) and adjust the cable lengths, see Section 11.2.1 MDF Cables for 72-Port Interface Units:

1. Cut the cables to length.2. Attach connectors for MDF side (splitters) to the cables.3. Label and mark the cables.4. Route and stow the cables in the rack towards the MDF.5. Plug the cables into IU_VDSL48 connectors “LINE 1-24” and “LINE 25-48”.6. Connect the cables to the MDF splitters (Table 27, project-specific documents).

7.2.4 Connect IU_VDSL48 and Splitter BoardThe IU_VDSL48 connectors “LINE 1-24” and “LINE 25-48” can be connected 1:1 each to the connector “xDSL 1-24” of its appropriate VDSL2-splitter board via the DSL mounting set 13 (S50028-B1130-S13).

Figure 44 shows an example of cabling with DSL mounting set 13.

IU_VDSL48LINE 1-24/LINE25-48

Splitter chassis MDF Broadband

MDF Narrowband

IU_VDSL48LINE 1-24/LINE 25-48

-- S50028-B1130-S13 S50028-B1147-S*(Pin24)

--

Splitter chassis S50028-B1130-S13 -- S50028-B1145-S*(Pin1)

S50028-B1146-S*(S50028-B1145-S*)

(Pin1)

MDF Broadband

S50028-B1147-S*(Pin24)

S50028-B1145-S*(Pin1)

-- --

MDF Narrowband

-- S50028-B1146-S*(S50028-B1145-S*)

(Pin1)

-- --

Table 26 Pre-fabricated Cables for IU_VDSL48

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Figure 44 Cabling the IU_VDSL48 to Splitter Chassis

1. Label and mark the cables.2. Route and stow the cables in the rack towards the splitter chassis.3. Plug the cables into IU_VDSL48 connectors “LINE 1-24” and “LINE 25-48”.4. Plug the other cable sides into connectors “xDSL 1-24” at the splitter boards which

belong to the IU_VDSL48.

7.2.5 Connect Splitter Board and MDFUse shielded MDF cables to connect the broadband lines (“LINE 1-24”). To cable the connectors “POTS/ISDN 1-24” to the MDF, unshielded cables may be used:

1. Cut the cables to length.2. Label and mark the cables.3. Route and stow the cables in the rack towards the MDF.4. Plug the broadband cable into connector “LINE 1-24” at the VDSL2-splitter board.5. Plug the narrowband cable into connector “POTS/ISDN 1-24” at the VDSL2-splitter

board.6. Connect the cables to the MDF (Table 28, Table 27, project-specific documents).

LINE 1-24

LINE 1-24

LINE 1-24POTS/ISDN 1-24 xDSL 1-24

LINE 1-24POTS/ISDN 1-24 xDSL 1-24 1

2

3

4

1

2

LINE 1-24POTS/ISDN 1-24 xDSL 1-24

LINE 1-24POTS/ISDN 1-24 xDSL 1-24

Cable types and lengthsaccording to:- S50028-B1145-S*- S50028-B1146-S*

towards MDF

Mounting set:S50028-B1130-S13

Splitter chassis-8

Subrack

Rack

LINE 25-48

LINE 25-48

5...

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7.2.6 Cabling Diagram of Shielded MDF CableTable 27 contains the cabling diagram to be used for the connections between IU_VDSL48 and MDF (splitters), and cabling the VDSL2-splitter boards with MDF.

The shielded cables may also be used for narrowband-connections between the splitter boards (“POTS/ISDN 1-24”) and MDF.

Cable 09YS(St)CH 24x2x0.4/0.8 ConnectorLine 1-24/Line 25-48

MDF BroadbandSubscriber lines 1-24

MDF BroadbandSubscriber lines 25-48

Unit Color of insulation a b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

Unit 1rd

1 wh bu C24 C23 BB_a1 BB_b1 BB_a25 BB_b25

tq vt B24 B23 BB_a2 BB_b2 BB_a26 BB_b26

2 wh og A24 A23 BB_a3 BB_b3 BB_a27 BB_b27

tq vt C22 C21 BB_a4 BB_b4 BB_a28 BB_b28

3 wh gn B22 B21 BB_a5 BB_b5 BB_a29 BB_b28

tq vt A22 A21 BB_a6 BB_b6 BB_a30 BB_b30

4 wh bn C20 C19 BB_a7 BB_b7 BB_a31 BB_b31

tq vt B20 B19 BB_a8 BB_b8 BB_a32 BB_b32

Unit 2wh

5 wh bu A20 A19 BB_a9 BB_b9 BB_a33 BB_b33

tq vt C18 C17 BB_a10 BB_b10 BB_a34 BB_b34

6 wh og B18 B17 BB_a11 BB_b11 BB_a35 BB_b35

tq vt A18 A17 BB_a12 BB_b12 BB_a36 BB_b36

7 wh gn C16 C15 BB_a13 BB_b13 BB_a37 BB_b37

tq vt B16 B15 BB_a14 BB_b14 BB_a38 BB_b38

8 wh bn A16 A15 BB_a15 BB_b15 BB_a39 BB_b39

tq vt C14 C13 BB_a16 BB_b16 BB_a40 BB_b40

Unit 3bn

9 wh bu B14 B13 BB_a17 BB_b17 BB_a41 BB_b41

tq vt A14 A13 BB_a18 BB_b18 BB_a42 BB_b42

10 wh og C12 C11 BB_a19 BB_b19 BB_a43 BB_b43

tq vt B12 B11 BB_a20 BB_b20 BB_a44 BB_b44

11 wh gn A12 A11 BB_a21 BB_b21 BB_a45 BB_b45

tq vt C10 C9 BB_a22 BB_b22 BB_a46 BB_b46

12 wh bn B10 B9 BB_a23 BB_b23 BB_a47 BB_b47

tq vt A10 A9 BB_a24 BB_b24 BB_a48 BB_b48

Shielding continuity wire and braided shield Ground Ground Ground

Table 27 Cabling Diagram IU_VDSL48/Splitter Board --> MDF (Shielded)

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7.2.7 Cabling Diagram of Unshielded MDF CableTable 28 contains the cabling diagram to be used for the unshielded narrowband con-nection between the two VDSL2 splitter boards (“POTS/ISDN 1-24”) and MDF.

Cable S-Y(St)H 25x2x0.4 ConnectorPOTS/ISDN 1-24

MDF NarrowbandSubscriber lines 1-24

MDF NarrowbandSubscriber lines 25-48

Color of insula-

tion

Unit Colors of paira b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

wh 1 bu bu C24 C23 NB_a1 NB_b1 NB_a25 NB_b25

bu ye B24 B23 NB_a2 NB_b2 NB_a26 NB_b26

bu gn A24 A23 NB_a3 NB_b3 NB_a27 NB_b27

bu bn C22 C21 NB_a4 NB_b4 NB_a28 NB_b28

bu bk B22 B21 NB_a5 NB_b5 NB_a29 NB_b29

2 ye bu A22 A21 NB_a6 NB_b6 NB_a30 NB_b30

ye ye C20 C19 NB_a7 NB_b7 NB_a31 NB_b31

ye gn B20 B19 NB_a8 NB_b8 NB_a32 NB_b32

ye bn A20 A19 NB_a9 NB_b9 NB_a33 NB_b33

ye bk C18 C17 NB_a10 NB_b10 NB_a34 NB_b34

3 gn bu B18 B17 NB_a11 NB_b11 NB_a35 NB_b35

gn ye A18 A17 NB_a12 NB_b12 NB_a36 NB_b36

gn gn C16 C15 NB_a13 NB_b13 NB_a37 NB_b37

tq bn B16 B15 NB_a14 NB_b14 NB_a38 NB_b38

gn bk A16 A15 NB_a15 NB_b15 NB_a39 NB_b39

4 bn bu C14 C13 NB_a16 NB_b16 NB_a40 NB_b40

bn ye B14 B13 NB_a17 NB_b17 NB_a41 NB_b41

bn gn A14 A13 NB_a18 NB_b18 NB_a42 NB_b42

bn og C12 C11 NB_a19 NB_b19 NB_a43 NB_b43

bn bk B12 B11 NB_a20 NB_b20 NB_a44 NB_b44

5 bk bu A12 A11 NB_a21 NB_b21 NB_a45 NB_b45

bk ye C10 C9 NB_a22 NB_b22 NB_a46 NB_b46

bk gn B10 B9 NB_a23 NB_b23 NB_a47 NB_b47

bk bn A10 A9 NB_a24 NB_b24 NB_a48 NB_b48

bk bk NC NC

Shielding continuity wire Ground Ground Ground

Table 28 Cabling Diagram VDSL2-Splitter Board --> MDF (Unshielded)

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7.3 Interface Unit IU_SHDSL48The information in this section refer to the installation of the SHDSL interface card IU_SHDSL48.

g To meet existing configurations in which SHDSL is to be installed as next technol-ogy generation after ADSL, the running cables may further be used together with IU_SHDSL48 and two dummy-splitters.

7.3.1 Connector Pin Assignment

Figure 45 Interface Unit IU_SHDSL48

Connector forsubscriber lines 25-48

Connector forsubscriber lines 1-24Status LED

LINE 25-48

IUS

HD

SL48LINE 1-24

PinConnector LINE 1-24 Connector LINE 25-48

A B C A B C

1 NC NC NC NC NC NC

2 NC NC NC NC NC NC

3 NC NC NC NC NC NC

4 NC NC NC NC NC NC

5 NC NC NC NC NC NC

6 NC NC NC NC NC NC

7 NC NC NC NC NC NC

8 NC NC NC NC NC NC

9 BB_b24 BB_b23 BB_b22 BB_a48 BB_a47 BB_a46

10 BB_a24 BB_a23 BB_a22 BB_b48 BB_b47 BB_b46

11 BB_b21 BB_b20 BB_b19 BB_a45 BB_a44 BB_a43

12 BB_a21 BB_a20 BB_a19 BB_b45 BB_b44 BB_b43

13 BB_b18 BB_b17 BB_b16 BB_a42 BB_a41 BB_a40

14 BB_a18 BB_a17 BB_a16 BB_b42 BB_b41 BB_b40

15 BB_b15 BB_b14 BB_b13 BB_a39 BB_a38 BB_a37

16 BB_a15 BB_a14 BB_a13 BB_b39 BB_b38 BB_b37

17 BB_b12 BB_b11 BB_b10 BB_a36 BB_a35 BB_a34

18 BB_a12 BB_a11 BB_a10 BB_b36 BB_b35 BB_b34

19 BB_b9 BB_b8 BB_b7 BB_a33 BB_a32 BB_a31

20 BB_a9 BB_a8 BB_a7 BB_b33 BB_b32 BB_b31

21 BB_b6 BB_b5 BB_b4 BB_a30 BB_a29 BB_a28

22 BB_a6 BB_a5 BB_a4 BB_b30 BB_b29 BB_b28

23 BB_b3 BB_b2 BB_b1 BB_a27 BB_a26 BB_a25

Table 29 Pinout of IU_SHDSL48 Connectors “LINE 1-24” and “LINE 25-48

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7.3.2 Pre-fabricated CablesTable 30 contains a matrix with order numbers of pre-fabricated cables that may be used for the connections between IU_SHDSL48, MDF and (if necessary) splitter chassis con-taining dummies. The star (*) at the number’s end stands for the cable length in meters that may be delivered. Further information on these cables can be found in the Sections 11.2 Pre-fabricated MDF Cables and 12.9 Cables.

7.3.3 Connect IU_SHDSL48 and MDFUse two pre-fabricated shielded MDF cables (S50028-B1147-S*) and adjust the cable lengths, see Section 11.2.1 MDF Cables for 72-Port Interface Units:

1. Cut the cables to length.2. Label and mark the cables.3. Route and stow the cables in the rack towards the MDF.4. Plug the cables into the IU_SHDSL48 connectors “LINE 1-24” and “LINE 25-48”.5. Connect the cables to the MDF (Table 31, project-specific documents).

7.3.4 Connect IU_SHDSL48 and Dummy SplittersUse two mounting sets (S50028-B1130-S13):

1. Label and mark the cables.2. Route and stow the cables in the rack.3. Plug the cables into the IU_SHDSL48 connectors “LINE 1-24” and “LINE 25-48”.4. Connect the cables to dummy splitter boards.

24 BB_a3 BB_a2 BB_a1 BB_b27 BB_b26 BB_b25

PinConnector LINE 1-24 Connector LINE 25-48

A B C A B C

Table 29 Pinout of IU_SHDSL48 Connectors “LINE 1-24” and “LINE 25-48 (Cont.)

IU_SHDSL48LINE 1-24/LINE25-48

MDF Splitter chassis (dummy splitter)

IU_SHDSL48LINE 1-24/LINE 25-48

-- S50028-B1147-S*(Pin24)

S50028-B1130-S13

MDF S50028-B1147-S*(Pin24)

-- --

Splitter chassis (dummy splitter)

S50028-B1130-S13 -- --

Table 30 Pre-fabricated Cables for IU_SHDSL48

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7.3.5 Cabling Diagram of Shielded MDF CableTable 31 contains the cabling diagram to be used for the direct cable connections between IU_SHDSL48 and MDF.

Cable 09YS(St)CH 24x2x0.4/0.8 ConnectorLine 1-24/Line 25-48

MDF BroadbandSubscriber lines 1-24

MDF BroadbandSubscriber lines 25-48

Unit Color of insulation a b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

Unit 1rd

1 wh bu C24 C23 BB_a1 BB_b1 BB_a25 BB_b25

tq vt B24 B23 BB_a2 BB_b2 BB_a26 BB_b26

2 wh og A24 A23 BB_a3 BB_b3 BB_a27 BB_b27

tq vt C22 C21 BB_a4 BB_b4 BB_a28 BB_b28

3 wh gn B22 B21 BB_a5 BB_b5 BB_a29 BB_b28

tq vt A22 A21 BB_a6 BB_b6 BB_a30 BB_b30

4 wh bn C20 C19 BB_a7 BB_b7 BB_a31 BB_b31

tq vt B20 B19 BB_a8 BB_b8 BB_a32 BB_b32

Unit 2wh

5 wh bu A20 A19 BB_a9 BB_b9 BB_a33 BB_b33

tq vt C18 C17 BB_a10 BB_b10 BB_a34 BB_b34

6 wh og B18 B17 BB_a11 BB_b11 BB_a35 BB_b35

tq vt A18 A17 BB_a12 BB_b12 BB_a36 BB_b36

7 wh gn C16 C15 BB_a13 BB_b13 BB_a37 BB_b37

tq vt B16 B15 BB_a14 BB_b14 BB_a38 BB_b38

8 wh bn A16 A15 BB_a15 BB_b15 BB_a39 BB_b39

tq vt C14 C13 BB_a16 BB_b16 BB_a40 BB_b40

Unit 3bn

9 wh bu B14 B13 BB_a17 BB_b17 BB_a41 BB_b41

tq vt A14 A13 BB_a18 BB_b18 BB_a42 BB_b42

10 wh og C12 C11 BB_a19 BB_b19 BB_a43 BB_b43

tq vt B12 B11 BB_a20 BB_b20 BB_a44 BB_b44

11 wh gn A12 A11 BB_a21 BB_b21 BB_a45 BB_b45

tq vt C10 C9 BB_a22 BB_b22 BB_a46 BB_b46

12 wh bn B10 B9 BB_a23 BB_b23 BB_a47 BB_b47

tq vt A10 A9 BB_a24 BB_b24 BB_a48 BB_b48

Shielding continuity wire and braided shield Ground Ground Ground

Table 31 Cabling Diagram IU_SHDSL48 --> MDF (Shielded)

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7.4 Interface Unit IU_ADSL72The information in this section refer to the installation of ADSL2+-interface cards IU_ADSL72 including the 36-port splitter boards that is connected with it.

7.4.1 Connector Pin Assignment

Figure 46 Interface Unit IU_ADSL72

Connector forsubscriber lines 37-72

Connector forsubscriber lines 1-36Status LED

LINE 37-72

IUA

DS

L_72LINE 1-36

PinConnector LINE 1 - 36 Connector LINE 37 - 72

A B C A B C

1 BB_b36 BB_b35 BB_b34 BB_b72 BB_b71 BB_b70

2 BB_a36 BB_a35 BB_a34 BB_a72 BB_a71 BB_a70

3 BB_b33 BB_b32 BB_b31 BB_b69 BB_b68 BB_b67

4 BB_a33 BB_a32 BB_a31 BB_a69 BB_a68 BB_a67

5 BB_b30 BB_b29 BB_b28 BB_b66 BB_b65 BB_b64

6 BB_a30 BB_a29 BB_a28 BB_b66 BB_b65 BB_b64

7 BB_b27 BB_b26 BB_b25 BB_b63 BB_b62 BB_b61

8 BB_a27 BB_a26 BB_a25 BB_a63 BB_a62 BB_a61

9 BB_b24 BB_b23 BB_b22 BB_b60 BB_b59 BB_b58

10 BB_a24 BB_a23 BB_a22 BB_a60 BB_a59 BB_a58

11 BB_b21 BB_b20 BB_b19 BB_b57 BB_b56 BB_b55

12 BB_a21 BB_a20 BB_a19 BB_a57 BB_a56 BB_a55

13 BB_b18 BB_b17 BB_b16 BB_b54 BB_b53 BB_b52

14 BB_a18 BB_a17 BB_a16 BB_a54 BB_a53 BB_a52

15 BB_b15 BB_b14 BB_b13 BB_b51 BB_b50 BB_b49

16 BB_a15 BB_a14 BB_a13 BB_a51 BB_a50 BB_a49

17 BB_b12 BB_b11 BB_b10 BB_b48 BB_b47 BB_b46

18 BB_a12 BB_a11 BB_a10 BB_a48 BB_a47 BB_a46

19 BB_b9 BB_b8 BB_b7 BB_b45 BB_b44 BB_b43

20 BB_a9 BB_a8 BB_a7 BB_a45 BB_a44 BB_a43

21 BB_b6 BB_b5 BB_b4 BB_b42 BB_b41 BB_b40

22 BB_a6 BB_a5 BB_a4 BB_a42 BB_a41 BB_a40

23 BB_b3 BB_b2 BB_b1 BB_b39 BB_b38 BB_b37

24 BB_a3 BB_a2 BB_a1 BB_b39 BB_b38 BB_b37

Table 32 Pinout of IU_ADSL72 Connectors “LINE 1-36” and “LINE 37-72”

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7.4.2 Pre-fabricated CablesTable 33 contains a matrix with order numbers of pre-fabricated cables and the DSL mounting set that may be used for the connections between IU_ADSL72, splitter chassis and MDF. The star (*) at the number’s end stands for the cable length in meters that may be delivered. Further information on these cables can be found in the Sections 11.2 Pre-fabricated MDF Cables and 12.9 Cables.

g The MDF cables S50028-B1140-S* and S50028-B1142-S* may be delivered with two different types of stranding, wire color codes, and the shielding material.

7.4.3 Connect IU_ADSL72 and MDFUse two pre-fabricated shielded MDF cables (S50028-B1142-S*) and adjust the cable lengths, see Section 11.2.1 MDF Cables for 72-Port Interface Units:

1. Cut the cables to length.2. Attach connectors for MDF side (splitters) to the cables.3. Label and mark the cables.4. Route and stow the cables in the rack towards the MDF.5. Plug the cables into the IU_ADSL72 connectors “LINE 1-36” and “LINE 37-72”.6. Connect the cables to the MDF splitter (Table 34/Table 35, project-specific docu-

ments).

7.4.4 Connect IU_ADSL72 and Splitter ChassisThe IU_ADSL72 connectors “LINE 1-36” and “LINE 37-72” can be connected each to the connector “xDSL 1-36” of its appropriate ADSL2-splitter board via the DSL mounting set 13 (S50028-B1130-S13).

Figure 47 shows an example of cabling between IU_ADSL72 and splitter chassis-8 and further towards the MDF.

IU_ADSL72LINE 1-36/LINE 37-72

Splitter xDSL 1-36

SplitterLINE 1-36

SplitterPOTS/ISDN 1-36

MDF Broadband

MDF Narrowband

IU_ADSL72LINE 1-36/LINE 37-72

-- S50028-B1130-S13

S50028-B1142-S* (Pin24)

--

SplitterxDSL 1-36

S50028-B1130-S13

-- -- -- -- --

Splitter LINE 1-36

-- -- -- -- S50028-B1140-S* (Pin1)

--

Splitter POTS/ISDN 1-36

-- -- -- -- -- S50028-B1141-S*S50028-B1140-S*

(Pin1)

MDF Broadband

S50028-B1142-S* (Pin24)

-- S50028-B1140-S* (Pin1)

-- -- --

MDF Narrow-band

-- -- -- S50028-B1141-S*S50028-B1140-S*

(Pin1)

-- --

Table 33 Pre-fabricated Cables for IU_ADSL72

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Figure 47 Cabling the IU_ADSL72 to Splitter Chassis

1. Label and mark the cables.2. Route and stow the cables in the rack towards the splitter chassis.3. Plug the cables into IU_ADSL72 connectors “LINE 1-36” and “LINE 37-72”.4. Plug the other cable sides into connectors “xDSL 1-36” at the splitter boards which

belong to the IU_ADSL72.

7.4.5 Connect Splitter Board and MDFTo connect splitter board and MDF, use a shielded MDF cable (S50028-B1140-S*) for the broadband signals and a unshielded MDF cable (S50028-B1141-S*) for the narrow-band signals, see Section 11.2.1 MDF Cables for 72-Port Interface Units.

1. Cut the cables to length.2. Label and mark the cables.3. Route and stow the cables in the rack towards the MDF.4. Plug the broadband cable into connector “LINE 1-36” at the splitter board.5. Connect the cable to the MDF (Table 34/Table 35, project-specific documents)6. Plug the narrowband cable into connector “POTS/ISDN 1-36” at the splitter board.7. Connect the cable to the MDF (Table 36, project-specific documents).

LINE 1-36

LINE 1-36POTS/ISDN 1-36 xDSL 1-36

Splitter chassis-8

LINE 37-72

LINE 1-36LINE 37-72

LINE 1-36POTS/ISDN 1-36 xDSL 1-36

LINE 1-36POTS/ISDN 1-36 xDSL 1-36

LINE 1-36POTS/ISDN 1-36 xDSL 1-36 1

2

3

4

5

6

7

8

1

2

MDF cable types and lengths according to:- S50028-B1140-S*- S50028-B1141-S*

Mounting set:S50028-B1130-S13Subrack

Rack

towards MDF

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7.4.6 Cabling Diagram of Shielded MDF CablesTable 34 contains the cabling diagram to be used for the direct cable connection between IU_ADSL72 and MDF (splitters), and to cable the 36-port splitter board with MDF.

The shielded cables may also be used for narrowband-connections between splitter board (“POTS/ISDN 1-36”) and MDF.

Shielded MDF Cable - Wire Colors 1

Cable 09YS(St)CH 36x2x0.4/0.8 ConnectorLine 1-36/Line 37-72

MDFSubscriber lines 1-36

MDF Subscriber lines 37-72

Unit Color of paira b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

Unit 1rd

1 wh bu C24 C23 BB_a1 BB_b1 BB_a37 BB_b37

tq vt B24 B23 BB_a2 BB_b2 BB_a38 BB_b38

2 wh og A24 A23 BB_a3 BB_b3 BB_a39 BB_b39

tq vt C22 C21 BB_a4 BB_b4 BB_a40 BB_b40

3 wh gn B22 B21 BB_a5 BB_b5 BB_a41 BB_b41

tq vt A22 A21 BB_a6 BB_b6 BB_a42 BB_b42

4 wh bn C20 C19 BB_a7 BB_b7 BB_a43 BB_b43

tq vt B20 B19 BB_a8 BB_b8 BB_a44 BB_b44

Unit 2wh

5 wh bu A20 A19 BB_a9 BB_b9 BB_a45 BB_b45

tq vt C18 C17 BB_a10 BB_b10 BB_a46 BB_b46

6 wh og B18 B17 BB_a11 BB_b11 BB_a47 BB_b47

tq vt A18 A17 BB_a12 BB_b12 BB_a48 BB_b48

7 wh gn C16 C15 BB_a13 BB_b13 BB_a49 BB_b49

tq vt B16 B15 BB_a14 BB_b14 BB_a50 BB_b50

8 wh bn A16 A15 BB_a15 BB_b15 BB_a51 BB_b51

tq vt C14 C13 BB_a16 BB_b16 BB_a52 BB_b52

Unit 3bn

9 wh bu B14 B13 BB_a17 BB_b17 BB_a53 BB_b53

tq vt A14 A13 BB_a18 BB_b18 BB_a54 BB_b54

10 wh og C12 C11 BB_a19 BB_b19 BB_a55 BB_b55

tq vt B12 B11 BB_a20 BB_b20 BB_a56 BB_b56

11 wh gn A12 A11 BB_a21 BB_b21 BB_a57 BB_b57

tq vt C10 C9 BB_a22 BB_b22 BB_a58 BB_b58

12 wh bn B10 B9 BB_a23 BB_b23 BB_a59 BB_b59

tq vt A10 A9 BB_a24 BB_b24 BB_a60 BB_b60

Table 34 Cabling IU_ADSL72/Splitter Board --> MDF (Shielded Cable 1)

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Shielded MDF Cable - Wire Colors 2

Unit 4ye

13 wh bu C8 C7 BB_a25 BB_b25 BB_a61 BB_b61

tq vt B8 B7 BB_a26 BB_b26 BB_a62 BB_b62

14 wh og A8 A7 BB_a27 BB_b27 BB_a63 BB_b63

tq vt C6 C5 BB_a28 BB_b28 BB_a64 BB_b64

15 wh gn B6 B5 BB_a29 BB_b29 BB_a65 BB_b65

tq vt A6 A5 BB_a30 BB_b30 BB_a66 BB_b66

16 wh bn C4 C3 BB_a31 BB_b31 BB_a67 BB_b67

tq vt B4 B3 BB_a32 BB_b32 BB_a68 BB_b68

SingleQuad 1

17 wh rt A4 A3 BB_a33 BB_b33 BB_a69 BB_b69

tq vt C2 C1 BB_a34 BB_b34 BB_a70 BB_b70

SingleQuad 2

18 wh ye B2 B1 BB_a35 BB_b35 BB_a71 BB_b71

tq vt A2 A1 BB_a36 BB_b36 BB_a72 BB_b72

Shielding continuity wire and braided shield

Ground

Cable 09YS(St)CH 36x2x0.4/0.8 ConnectorLine 1-36/Line 37-72

MDFSubscriber lines 1-36

MDF Subscriber lines 37-72

Unit Color of paira b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

Table 34 Cabling IU_ADSL72/Splitter Board --> MDF (Shielded Cable 1) (Cont.)

Cable S-2Y(St)(St)H 36x2x0.4/0.7 ConnectorLine 1-36/Line 37-72

MDFSubscriber lines 1-36

MDF Subscriber lines 37-72

Pair Wire colora b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

Unit 1wh

1 wh bu C24 C23 BB_a1 BB_b1 BB_a37 BB_b37

2 wh ye B24 B23 BB_a2 BB_b2 BB_a38 BB_b38

3 wh bn A24 A23 BB_a3 BB_b3 BB_a39 BB_b39

4 wh bk C22 C21 BB_a4 BB_b4 BB_a40 BB_b40

5 wh gn B22 B21 BB_a5 BB_b5 BB_a41 BB_b41

6 wh og A22 A21 BB_a6 BB_b6 BB_a42 BB_b42

7 wh gy C20 C19 BB_a7 BB_b7 BB_a43 BB_b43

8 wh vt B20 B19 BB_a8 BB_b8 BB_a44 BB_b44

Unit 2bu

1 wh bu A20 A19 BB_a9 BB_b9 BB_a45 BB_b45

2 wh ye C18 C17 BB_a10 BB_b10 BB_a46 BB_b46

3 wh bn B18 B17 BB_a11 BB_b11 BB_a47 BB_b47

4 wh bk A18 A17 BB_a12 BB_b12 BB_a48 BB_b48

5 wh gn C16 C15 BB_a13 BB_b13 BB_a49 BB_b49

6 wh og B16 B15 BB_a14 BB_b14 BB_a50 BB_b50

7 wh gy A16 A15 BB_a15 BB_b15 BB_a51 BB_b51

8 wh vt C14 C13 BB_a16 BB_b16 BB_a52 BB_b52

Table 35 Cabling IU_ADSL72/Splitter Board --> MDF (Shielded Cable 2)

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Unit 3ye

1 wh bu B14 B13 BB_a17 BB_b17 BB_a53 BB_b53

2 wh ye A14 A13 BB_a18 BB_b18 BB_a54 BB_b54

3 wh bn C12 C11 BB_a19 BB_b19 BB_a55 BB_b55

4 wh bk B12 B11 BB_a20 BB_b20 BB_a56 BB_b56

5 wh gn A12 A11 BB_a21 BB_b21 BB_a57 BB_b57

6 wh og C10 C9 BB_a22 BB_b22 BB_a58 BB_b58

7 wh gy B10 B9 BB_a23 BB_b23 BB_a59 BB_b59

8 wh vt A10 A9 BB_a24 BB_b24 BB_a60 BB_b60

Unit 4bn

1 wh bu C8 C7 BB_a25 BB_b25 BB_a61 BB_b61

2 wh ye B8 B7 BB_a26 BB_b26 BB_a62 BB_b62

3 wh bn A8 A7 BB_a27 BB_b27 BB_a63 BB_b63

4 wh bk C6 C5 BB_a28 BB_b28 BB_a64 BB_b64

5 wh gn B6 B5 BB_a29 BB_b29 BB_a65 BB_b65

6 wh og A6 A5 BB_a30 BB_b30 BB_a66 BB_b66

7 wh gy C4 C3 BB_a31 BB_b31 BB_a67 BB_b67

8 wh vt B4 B3 BB_a32 BB_b32 BB_a68 BB_b68

SinglePair

9 rd bu A4 A3 BB_a33 BB_b33 BB_a69 BB_b69

SinglePair

10 rd ye C2 C1 BB_a34 BB_b34 BB_a70 BB_b70

SinglePair

11 rd bn B2 B1 BB_a35 BB_b35 BB_a71 BB_b71

SinglePair

12 rd bk A2 A1 BB_a36 BB_b36 BB_a72 BB_b72

Shielding continuity wire and shield foils Ground

Cable S-2Y(St)(St)H 36x2x0.4/0.7 ConnectorLine 1-36/Line 37-72

MDFSubscriber lines 1-36

MDF Subscriber lines 37-72

Pair Wire colora b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

Table 35 Cabling IU_ADSL72/Splitter Board --> MDF (Shielded Cable 2) (Cont.)

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7.4.7 Cabling Diagram of Unshielded MDF CableTable 36 contains the cabling diagram to be used for the unshielded narrowband con-nection between splitter board and MDF.

Cable S-Y(St)H 36x2x0,4 ConnectorPOTS/ISDN 1-36

MDFSubscriber lines 1-36

MDF Subscriber lines 37-72

Color of insula-

tion

Unit Color of pair a b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

wh 1 bu bu C24 C23 NB_a1 NB_b1 NB_a37 NB_b37

bu ye B24 B23 NB_a2 NB_b2 NB_a38 NB_b38

bu gn A24 A23 NB_a3 NB_b3 NB_a39 NB_b39

bu bn C22 C21 NB_a4 NB_b4 NB_a40 NB_b40

bu bk B22 B21 NB_a5 NB_b5 NB_a41 NB_b41

2 ye bu A22 A21 NB_a6 NB_b6 NB_a42 NB_b42

ye ye C20 C19 NB_a7 NB_b7 NB_a43 NB_b43

ye gn B20 B19 NB_a8 NB_b8 NB_a44 NB_b44

ye bn A20 A19 NB_a9 NB_b9 NB_a45 NB_b45

ye bk C18 C17 NB_a10 NB_b10 NB_a46 NB_b46

3 gn bu B18 B17 NB_a11 NB_b11 NB_a47 NB_b47

gn ye A18 A17 NB_a12 NB_b12 NB_a48 NB_b48

gn gn C16 C15 NB_a13 NB_b13 NB_a49 NB_b49

gn bn B16 B15 NB_a14 NB_b14 NB_a50 NB_b50

gn bk A16 A15 NB_a15 NB_b15 NB_a51 NB_b51

4 bn bu C14 C13 NB_a16 NB_b16 NB_a52 NB_b52

bn ye B14 B13 NB_a17 NB_b17 NB_a53 NB_b53

bn gn A14 A13 NB_a18 NB_b18 NB_a54 NB_b54

bn bn C12 C11 NB_a19 NB_b19 NB_a55 NB_b55

bn bk B12 B11 NB_a20 NB_b20 NB_a56 NB_b56

5 bk bu A12 A11 NB_a21 NB_b21 NB_a57 NB_b57

bk ye C10 C9 NB_a22 NB_b22 NB_a58 NB_b58

bk gn B10 B9 NB_a23 NB_b23 NB_a59 NB_b59

bk bn A10 A9 NB_a24 NB_b24 NB_a60 NB_b60

bk bk C8 C7 NB_a25 NB_b25 NB_a61 NB_b61

Table 36 Cabling Diagram Splitter Board --> MDF (Unshielded)

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gy 6 bu bu B8 B7 NB_a26 NB_b26 NB_a62 NB_b62

bu ye A8 A7 NB_a27 NB_b27 NB_a63 NB_b63

bu gn C6 C5 NB_a28 NB_b28 NB_a64 NB_b64

bu bn B6 B5 NB_a29 NB_b29 NB_a65 NB_b65

bu bk A6 A5 NB_a30 NB_b30 NB_a66 NB_b66

7 ye bu C4 C3 NB_a31 NB_b31 NB_a67 NB_b67

ye ye B4 B3 NB_a32 NB_b32 NB_a68 NB_b68

ye gn A4 A3 NB_a33 NB_b33 NB_a69 NB_b69

ye bn C2 C1 NB_a34 NB_b34 NB_a70 NB_b70

ye bk B2 B1 NB_a35 NB_b35 NB_a71 NB_b71

8 gn bu A2 A1 NB_a36 NB_b36 NB_a72 NB_b72

Shielding continuity wire Ground

Cable S-Y(St)H 36x2x0,4 ConnectorPOTS/ISDN 1-36

MDFSubscriber lines 1-36

MDF Subscriber lines 37-72

Color of insula-

tion

Unit Color of pair a b

a-Wire b-Wire a-Wire b-Wire a-Wire b-Wire

Table 36 Cabling Diagram Splitter Board --> MDF (Unshielded) (Cont.)

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Subscriber Cabling for Vertical Shelves

8 Subscriber Cabling for Vertical ShelvesIn the example below (Figure 48), a subrack is vertically installed in neightbourhood of splitter chassis-8 with mounting set C50165-A230-D64. In the example, the G400R is shown, but the same cables can be used for other vertical mounted shelves.

Figure 48 Rack Wiring with Vertically Installed Shelves (Example)

Part numbers of used cables #1 to #3 are listed in Table 37.

Spl

itter

cha

ssis

-8

xDS

L 1-

36LI

NE

1-3

6P

OT

S/IS

DN

1-3

6

xDS

L

xDS

L

Bas

ic s

ubra

ck

LIN

E 1

-36

LIN

E 3

7-72

201 206

Installation

Wiring

to NB interfacesto MDF

S50028-B4000-T1Cabl eset #1

Cabl e #2

S50028B140-SxxCabl e #3

S50028-B1141-Sxx

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g The cables fit only on certain installation conditions!

The air inlet and air outlet of the shelf must have a distance to the neighbouring installed parts (wiring harness) > 26 mm. Additionally pay attention to a good air flow. (this demand is only for the employment of an exhaust module with dust filter + recognition of the air flow resistance).

Cable No. Part number Connector at Splitter Connection Comments

#1 S50028-B4000-T1 xDSL Splitter to xDSL IU Set of cables

#2 S50028-B1140-Sxx Line Splitter to MDF

#3 S50028-B1141-Sxx POTS/ISDN Splitter to MDF/external NB - unshielded

Table 37 Cables for Vertically Installed Shelves

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Finish the Installation

9 Finish the InstallationTo finish the installation perform the following tasks.

9.1 Insert the FusesThis step is only necessary if the DC fuse panel S42024-P123-A1 is installed.

1. Insert the DC circuit breaker(s) in the fuse panel. 2. Label the fuse panel accordingly.

9.2 Examine the InstallationThe whole mechanical and electrical installation of the subrack has to be checked before power-on the system:

• System rack, subrack, and plug-in units are installed properly. • The cooling air may circulate freely, air-inlet/air-outlet of the subrack are not

obstructed. • Screws, grounding the system rack and subrack to earth, are tightly fastened. • All cables are labeled and correctly connected or plugged. • The DC power supply (if used an AC/DC converter) is connected properly to the

subrack. • The operation voltage at the DC power input connector is within allowed range. • Cleanliness within the rack (no tools, installation garbage etc.).

9.3 Power on the IP-DSLAM1. Switch ON the circuit breaker to turn power-on the subrack (if installed, switch on the

AC/DC converter).2. The system performs a power on self-test. If the IP-DSLAM passes the self-test, it

boots. The “PWR” LEDs on plug-in units should be solid green to indicate that they are ready (PWR1 on PM_UPL 2G will only be illuminated if PM_1R 2G is installed).

Now, the IP-DSLAM based on described subrack is ready to be commissioned.

Further information are provided by the particular documents.

!The rated nominal current of the breaker depends on the power consumption of plug-in units the subrack is equipped with, see “System description SURPASS hiX 5622/25/30/35 R2.8”.

The circuit breaker to be used for this subrack may have a maximal rated nominal current of 10 A (G200), 16 A (G400) or 30 A (G600).

!Before installing a circuit breaker, verify the DC power is OFF (fuse removed, breaker tipped). Make sure each circuit breaker to be installed is also switched OFF.

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10 G400 Fan UnitsThe shelves G400/R and G400/R 2G contain a fan unit. The fan unit is located on the left side of the shelf. The fan unit contains 4 fans (size 80 mm x 80 mm x 38 mm). A power supply is part of the fan unit and is mounted inside the fan unit mechanics. The fan unit supply feeds the fans with a temperature controlled voltage from +10 V up to +27 V. The power supply module consists of a DC/DC converter with voltage control in the regulation loop.

There are different fan units available for G400/G400R and G400 2G/G400R 2G either with dust filter or without dust filter.

The power modules PM_UPL/PM_R or PM_UPL/PM_R 2G get the following information from the fan unit: • PID information • Alarm information (fan power loss, fan fail) to the PM_UPL/PM_R • Shelf temperature information to the fan unit supply to control the digital potentiom-

eter.

If the PM_UPL/PM_R is removed, the signal FAN_CTRL drives the fan unit supply the maximum fan voltage.

g The lifetime of the fans depends on the ambiance temperature. A faulty fan indicates itself by increasing the bearing noise level and a gradual rise of the temperature inside the subrack. To avoid an interruption of services, the replacement of the suspect fan is recommended when those symptoms occur.

10.1 Fan ReplacementThis section describes the fan unit replacement as a fan maintenance procedure.If a fan plug-in unit fails, you can replace it. You do not need to power down the subrack before you replace the plug-in unit.

To replace a fan unit:1. Remove the attachment screws of the fan unit.2. Pull out the fan unit at the handle and remove the fan unit3. Replace the old fan unit with the new fan unit.

Push in the new fan unit, until it engages.4. Screw on the attachment screws.

!The swap of a fan unit is not normally service affecting. If the fan unit is out of service too long, the subrack will begin to overheat and begin to shut down subscriber plug-in units. This interrupts broadband service, but not narrowband service.

.

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G400 Fan Units

Figure 49 Fan Unit

There is a sensor detecting the difference of air pressure on both sides of the dust filter in the fan unit S50028-B2141-A2. The difference of air pressure is a measure of the pol-lution of the dust filter. You can clean or replace the dust filter.

10.2 Replace the Dust Filter PadTo replace the dust filter of the fan unit, proceed as follows:1. Pull out the fan unit at the handle2. Remove the attachment screws of the cover for the dust filter.3. Replace the dust filter and set the cover for the dust filter in again.

Dust filter pads can be ordered with the ordering number C50165-A230-C485.4. Screw- on the attachment screws of the cover for the dust filter and push the fan unit

in, until it engages.5. Screw on the attachment screws of the fan unit.

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11 Assembly DocumentsNokia Siemens Networks offers a line of pre-fabricated MDF cables and DSL mounting sets. This section contains additional information may be used to adjust and assemble these cables. In any case, use always the cables that are suitable and approved for the particular application.

11.1 DSL Mounting SetsDSL mounting sets are shielded 1:1 cables used to connect xDSL interface units to splitter boards. They have attached IDC plugs at both ends.

Figure 50 shows the cable design.

Figure 50 DSL Mounting Set

The following DSL mounting sets are available:

• DSL Mounting Set 1 (S50028-B1121-S8)This set will be used to connect a VDSL2 interface unit to its splitter board if both are plugged in the same subrack.Cable exits: Pin x = 1, Pin y = 24, see Figure 50

• DSL Mounting Set 13 (S50028-B1130-S13)This set may be used if interface units (24/48/72-ports) are to be connected to separate splitter chassis.Cable exits: Pin x = 24, Pin y = 24

11.2 Pre-fabricated MDF CablesThe cable lengths of pre-fabricated MDF cable may be adapted as needed for the specific installation project. The following cables are available:

• MDF Cables for 72-Port Interface Units • MDF Cables for 24/48-Port Interface Units.

g In the following sections, the star (*) in part numbers stands for available cable lengths in meters. Further information about these cables are provided in Section 12.9 Cables.

Use the information provided in the tables below and Section 11.3 Assembly of EPT Plug Connectors to attach connectors on MDF side.

Observe always the position of cable exit regarding connection side of plug, see Figure 51 and Figure 52:

The 72-pin plug connector can be installed in both directions into the housing, according to the requirements of the rack wiring.

LF cable

Bonded label

S......

Pin x Pin y

Plug kit(cover side view)Plug kit

(bottom side view)

IDC (Insulation Displacement Connector)

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Assembly Documents

1. Shielding braid and parallel wire according to installation instruction 2. Cable exit (direction)

Figure 51 72-Pin Connector, Cable Exit at Pin1

Figure 52 72-Pin Connector, Cable Exit at Pin24

See Table 38 and Table 42 for application information.

11.2.1 MDF Cables for 72-Port Interface UnitsTable 38 contains the MDF cables that can be used to connect 72-port interface units and 36-port splitter boards to the MDF. These cables have attached a 72-pin IDC-con-nector at one side.

g There are two variants of shielded MDF cables S50028-B1140-S* and S50028-B1142-S* (different bundling, wire color codes, shielding materials).

1) Shielded braid and parallel wire2) Cable exit (direction)

72-core Shielded Unshielded

S50028-B1140-S* S50028-B1142-S* S50028-B1141-S*

Connection Splitter BB -> MDF IU BB-> MDF Splitter NB -> MDF

Cable exit Pin1 Pin24 Pin1

Table 38 MDF Cables for 72-Port Interface Unit

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Shielded MDF Cables - Type1

Cable 09YS(St)CH 36x2x0.4/0.8 72-Pin DIN Connector

Unit Unit Wire color a b

Pin a-Wire Pin b-Wire

Unit 1rd

1 wh bu C24 C23

tq vt B24 B23

2 wh og A24 A23

tq vt C22 C21

3 wh gn B22 B21

tq vt A22 A21

4 wh bn C20 C19

tq vt B20 B19

Unit 2wh

5 wh bu A20 A19

tq vt C18 C17

6 wh og B18 B17

tq vt A18 A17

7 wh gn C16 C15

tq vt B16 B15

8 wh bn A16 A15

tq vt C14 C13

Unit 3bn

9 wh bu B14 B13

tq vt A14 A13

10 wh og C12 C11

tq vt B12 B11

11 wh gn A12 A11

tq vt C10 C9

12 wh bn B10 B9

tq vt A10 A9

Unit 4ye

13 wh bu C8 C7

tq vt B8 B7

14 wh og A8 A7

tq vt C6 C5

15 wh gn B6 B5

tq vt A6 A5

16 wh bn C4 C3

tq vt B4 B3

SingleQuad 1

17 wh rd A4 A3

tq vt C2 C1

Table 39 Type1 of Shielded MDF Cables for 72-Port Interface Units

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Assembly Documents

Shielded MDF Cables - Type2

SingleQuad 2

18 wh ye B2 B1

tq vt A2 A1

Shielding continuity wire and braided shield Ground

Cable S-2Y(St)(St)H 36x2x0.4/0.7 72-Pin DIN Connector

Pair Wire colora b

a-Wire b-Wire

Unit 1wh

1 wh bu C24 C23

2 wh ye B24 B23

3 wh bn A24 A23

4 wh bk C22 C21

5 wh gn B22 B21

6 wh og A22 A21

7 wh gy C20 C19

8 wh vt B20 B19

Unit 2bu

1 wh bu A20 A19

2 wh ye C18 C17

3 wh bn B18 B17

4 wh bk A18 A17

5 wh gn C16 C15

6 wh og B16 B15

7 wh gy A16 A15

8 wh vt C14 C13

Unit 3ye

1 wh bu B14 B13

2 wh ye A14 A13

3 wh bn C12 C11

4 wh bk B12 B11

5 wh gn A12 A11

6 wh og C10 C9

7 wh gy B10 B9

8 wh vt A10 A9

Table 40 Type2 of Shielded MDF Cables for 72-Port Interface Units

Cable 09YS(St)CH 36x2x0.4/0.8 72-Pin DIN Connector

Unit Unit Wire color a b

Pin a-Wire Pin b-Wire

Table 39 Type1 of Shielded MDF Cables for 72-Port Interface Units (Cont.)

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Unit 4bn

1 wh bu C8 C7

2 wh ye B8 B7

3 wh bn A8 A7

4 wh bk C6 C5

5 wh gn B6 B5

6 wh og A6 A5

7 wh gy C4 C3

8 wh vt B4 B3

SinglePair

9 rd bu A4 A3

SinglePair

10 rd ye C2 C1

SinglePair

11 rd bn B2 B1

SinglePair

12 rd bk A2 A1

Shielding continuity wire and shield foils Ground

Cable S-2Y(St)(St)H 36x2x0.4/0.7 72-Pin DIN Connector

Pair Wire colora b

a-Wire b-Wire

Table 40 Type2 of Shielded MDF Cables for 72-Port Interface Units (Cont.)

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Assembly Documents

Unshielded MDF Cables

Cable S-Y(St)H 36x2x0.4 72-Pin DIN Connector

Wire color

Unit Ring color a b

Pin a-Wire Pin b-Wire

wh 1 bu bu C24 C23

bu ye B24 B23

bu gn A24 A23

bu bn C22 C21

bu bk B22 B21

2 ye bu A22 A21

ye ye C20 C19

ye gn B20 B19

ye bn A20 A19

ye bk C18 C17

3 gn bu B18 B17

gn ye A18 A17

gn gn C16 C15

tq bn B16 B15

gn bk A16 A15

4 bn bu C14 C13

bn ye B14 B13

bn gn A14 A13

bn og C12 C11

bn bk B12 B11

5 bk bu A12 A11

bk ye C10 C9

bk gn B10 B9

bk bn A10 A9

bk bk C8 C7

Table 41 Wiring of Unshielded MDF Cables for 72-Port Interface Units

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11.2.2 MDF Cables for 24/48-Port Interface UnitsTable 42 contains the MDF cables that may be used to connect 24/48-port interface units and 24-port splitter boards to the MDF. These cables have attached a 72-pin IDC-connector at one side.

gy 6 bu bu B8 B7

bu ye A8 A7

bu gn C6 C5

bu bn B6 B5

bu bk A6 A5

7 ye bu C4 C3

ye ye B4 B3

ye gn A4 A3

ye bn C2 C1

ye bk B2 B1

8 gn bu A2 A1

Shielding continuity wire Ground

Cable S-Y(St)H 36x2x0.4 72-Pin DIN Connector

Wire color

Unit Ring color a b

Pin a-Wire Pin b-Wire

Table 41 Wiring of Unshielded MDF Cables for 72-Port Interface Units (Cont.)

48-core Shielded Unshielded

S50028-B1145-S* S50028-B1147-S* S50028-B1146-S* S50028-B1148-S*

Connection Splitter BB -> MDF IU BB -> MDFSplitter BB-> MDF

Splitter NB -> MDF Splitter NB -> MDF

Cable exit Pin1 Pin24 Pin1 Pin24

Table 42 MDF Cables for 24/48-Port Interface Units

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Assembly Documents

Shielded MDF Cable

Cable 09YS(St)CH 24x2x0.4/0.8 72-Pin DIN Connector

Unit Unit Wire colora b

Pin a-Wire Pin b-Wire

Unit 1rd

1 wh bu C24 C23

tq vt B24 B23

2 wh og A24 A23

tq vt C22 C21

3 wh gn B22 B21

tq vt A22 A21

4 wh bn C20 C19

tq vt B20 B19

Unit 2wh

5 wh bu A20 A19

tq vt C18 C17

6 wh og B18 B17

tq vt A18 A17

7 wh gn C16 C15

tq vt B16 B15

8 wh bn A16 A15

tq vt C14 C13

Unit 3bn

9 wh bu B14 B13

tq vt A14 A13

10 wh og C12 C11

tq vt B12 B11

11 wh gn A12 A11

tq vt C10 C9

12 wh bn B10 B9

tq vt A10 A9

Shielding continuity wire and braided shield Ground

Table 43 Wiring of Shielded MDF Cables for 24/48-Port Interface Units

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Unshielded MDF Cable

11.3 Assembly of EPT Plug Connectors The following sections describe steps need to be performed in order to attach the EPT plug connectors (IDC variant) on 72-core/48-core LF cables.

11.3.1 Prepare the CableFigure 53 shows the required information to prepare the shielded LF cables.

Cable S-Y(St)H 25x2x0.4 72-Pin DIN Connector

Wire color

Unit Ring color a b

Pin a-Wire Pin b-Wire

wh 1 bu bu C24 C23

bu ye B24 B23

bu gn A24 A23

bu bn C22 C21

bu bk B22 B21

2 ye bu A22 A21

ye ye C20 C19

ye gn B20 B19

ye bn A20 A19

ye bk C18 C17

3 gn bu B18 B17

gn ye A18 A17

gn gn C16 C15

tq bn B16 B15

gn bk A16 A15

4 bn bu C14 C13

bn ye B14 B13

bn gn A14 A13

bn og C12 C11

bn bk B12 B11

5 bk bu A12 A11

bk ye C10 C9

bk gn B10 B9

bk bn A10 A9

bk bk NC NC

Shielding continuity wire Ground

Table 44 Wiring of Unshielded MDF Cables for 24/48-Port Interface Units

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Assembly Documents

Figure 53 Preparing an LF Cable

g To get information on how the wires of a specific LF cable are grouped into bundle units and how the units are marked by colored foil strip see the previous section.

1. Strip 150 mm of insulation from the end of the LF cable. 2. Fold back the inner side of the braided shield and the drain wire and cut the braided

shield to a length of 7 ±1 mm. Remove cable fillers and protection foils. 3. Fix the folded-back braided shield with copper foil. 4. Cut the wires to a length of 90 mm.

11.3.2 Mount the EPT Plug Connector The single wires are attached to the single contacts in the insulating body of the IDC connector with the help of the IDC assembly tool (IDC hand tool product number 894-305). Contact is made according to the principle of the cut-and-clamp technology.

The 72-pin connector has the following insulating bodies: – 2-row insulating body 181-3200 – 1-row insulating body 181-3100

The following bars are for use with the IDC assembly tool: – 2-row bar 72 pin – 1-row bar 72 pin

The single wires are attached to the contacts row by row:

A: Standard length see parts list

1) remove cable filler and foils, braided shield and drain wire inside out

2) MA =0.37 Nm +20% -10% for the 72-pin connector

3) Cable reducing parts adapting at cable outside diameter

3)

2)3 ±1

IDC-variant

1) 1) 150150

7 ±1

Braided shieldA Cable preparation for IDC-variant

Drain wire

Copper

foil

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Connect the WiresThe single wires are attached to the contacts row by row. However, depending on wire colors of the shielded cables delivered, there are differences in the order attaching the contact into the rows:

• Cables consisting of 4 bundle units with four single quads (unit 1 to 4) in which single wires are included with the colors turquoise and violet (e.g. S50028-B1142-S*, type1).– Make a note which of these individual wires belongs to which quad cable (by

marking the individual wires, for example). – Begin with row B. – Then attach the row C and row A wires. Remove the markings (if used).

• Other cable types, begin with row A. Then attach the wires of the other two rows.

1. Position the insulating body of the 72-pin connector in the proper bar (72 pin). It is important to press the insulating body completely into the bar.

Figure 54 Bar Equipped with Insulating BodyShould the insulating body not be completely pressed into the bar it could be damaged by the assembly tool.

2. Insert the bar equipped with the insulating body into the tool guide, see Figure 55.

Figure 55 Bar in the Assembly ToolThe bar is pushed forward till the contact which is to be attached is in front of the puncher. A spring-loaded ball latch ensures precise positioning of the contact with respect to the puncher.

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Assembly Documents

Figure 56 Positioning of the Contact3. Insert the single wire to be attached into the contact. Make sure of the correct

position and depth of the single wire in the contact!

Figure 57 Single Wire in the Contact4. If the wire has been inserted correctly, use the tool to attach the wire.

Figure 58 Attach the Single WireThe handle must be pressed all the way to the back so that the stop moves back automatically. This ensures that the wire is correctly attached to the IDC contact.

5. Once the wire is attached, manually push the bar into the next position. A spring-loaded ball latch ensures precise positioning of the bar and the insulating body with respect to the puncher.

6. Now attach all the other wires in this row. 7. Remove the bar with the insulating body from the tool. 8. Attach the wires for the other rows in the way described above. 9. Remove both the insulating bodies from the bars. 10. Check whether all the single wires are correctly attached to the contacts and that

there is no strain on the wires.

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Assemble the Connector

1. Check for correct continuity as specified by the wiring diagram.2. Press both insulating bodies together. 3. Place the lower part of the cable reduction together with the cable and the mounted

insulating bodies in the lower part of the connector housing. 4. Screw the cable clip and the stress resisting clip to the lower part of the cable reduc-

tion. 5. Place the insulating bodies and the wires in the lower part of the connector housing

in such a way that no wires can be trapped when the connector parts are screwed together.

6. Place the upper part of the cable reduction in the other part of the connector housing.

7. Screw both parts of the connector housing together. g Make sure that no wires are trapped and no short-to-ground occurs when the

connector parts are screwed together! 8. Label the connector.

Proper made connections fulfill the following values (according to DIN IEC 512 T.2):

• Electric strength: lead/lead 500 Veff, 50 Hz or lead/ground 500 VDC

• Insulation resistance: 20 M Ω .

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Components for Projects with hiX 5625

12 Components for Projects with hiX 5625

12.1 Shelves

Name Part Number Description

Shelf G400 S50028-B2140-A1 Shelf with front access, ETSI and ANSI applications- 2 slots: Central Switching Unit CXU_B21/B3/C/C2- 4 slots: Interface Units or 2 IUs and 2 splitter- 1 slot: PM_UPL and PM_1R- Fan G400 or Fan G400 DF (DF with dust filter)- For ETSI and 23" racksFor ETSI application are required:- PM_UPL_R ETSI and PM_1R ETSI- ETSI brackets are already mountedFor ANSI application in 23" rack are required:- PM_UPL ANSI and PM_1R ANSI- Mounting kit S50028-B2140-R4

Shelf G400R S50028-B2140-A2 Shelf with front access, ETSI, ANSI, with heat exchanger control in outdoor ONUs- 2 slots: Central Switching Unit CXU_B21/B3/C/C2- 4 slots: Interface Units or 2 IUs and 2 splitter- 1 slot: PM_R- Fan G400 or Fan G400 DF (DF with dust filter)For ETSI application are required - Mounting kit S50028-B2140-R1- PM_R ETSIFor ANSI application in 23" rack are required:- Mounting kit S50028-B2140-R3- PM_R ANSIFor application in RDAC are required:- Mounting kit S50028-B2140-R2- PM_R ANSI

Shelf G400 2G S50028-B3140-A1 G400 2G - hiX5625Shelf with front access, ETSI and ANSI applications- 2 slots: Central Switching Unit CXU_B21/B3/C- 4 or 5 slots:Interface Units or up to 3 IUs and 2 splitter - 1 slot: PM_1R 2G- 1 slot: PM_UPL 2G or PM_ONU 2G- Fan G400 2G or Fan G400 2G DF (DF with dust filter)- For ETSI and 23" racks - ETSI brackets are already mounted

Shelf G400R 2G S50028-B3140-A2 G400R 2G - hiX56258 slot shelf with front access, ETSI, ANSI, with heat exchanger control in outdoor ONUs- 1 or 2 slots: Central Switching Unit CXU_B21/B3/C- 4 or 5 slots:Interface Units or up to 3 IUs and 2 splitter- 1 slot: PM_R 2G Fan G400 2G or Fan G400 2G DF (DF with dust filter)For ETSI application are required - Mounting kit S50028-B2140-R1- PM_R ETSIFor ANSI application in 23" rack are required:- Mounting kit S50028-B2140-R3- PM_R ANSIFor application in RDAC are required:- Mounting kit S50028-B2140-R2- PM_R ANSI

Table 45 Shelves

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12.2 Central Switching Units

12.3 Interface Units

Dust filter G400 C50165-A230-C485 Dust filter G400 (replacement material)

Name Part Number Description

Table 45 Shelves (Cont.)

Name Part Number Description Maximum Quantity

CXU_B21 S50028-Q3120-B1 Central Switching Unit- 4 slot blank SFP or fixed 4x1 GigE uplinks interface- redundant 24 Gbps switching fabric- external synchronization- extended memory

2

CXU_B3 S50028-Q3121-A1 Central Switching Unit- 4x1 GigE uplinks interface- 4-slot blank SFP- redundant 24 Gbps switching fabric- external synchronization

2

CXU_C1) S50028-Q2030-A1 Central Switching Unit- 4-slot blank SFP or fixed 4-port GTX combo uplink interface- redundant 12 Gbps switching fabric

2

CXU_C2 S50028-Q3130-A1 Central Switching Unit- 4x1 GigE uplinks interface- 4-slot blank SFP- redundant 12 Gbps switching fabric- external synchronization

2

Table 46 Central Switching Unit Options1) with CXU_C, only 4 interface units can be equipped in any case

Name Part Number Description Maximum Quantity1)

Interface Units ADSL

IU_ADSL72-B1 (A ) S50010-M1498-B101 72-Port ADSL2+ Interface Unit (Annex A / POTS) (Infineon) 4/5

IU_ADSL72-B1 (B) S50010-M1499-B101 72-Port ADSL2+ Interface Unit (Annex B / ISDN) (Infineon) 4/5

IU_ADSL72-C1 (A ) S50010-M1498-C1 72-Port ADSL2+ Interface Unit (Annex A) with Convergate D and Geminax V1.3

4/5

IU_ADSL72-C1 (B) S50010-M1499-C1 72-Port ADSL2+ Interface Unit (Annex B) with Convergate D and Geminax V1.3

4/5

IU_ADSL72-D1 (A) S50010-M1498-D1 72-Port ADSL2+ Interface Unit (Annex A) with Convergate D and Geminax-Max V2.1, optimized hybrid

4/5

IU_ADSL72-D1 (B) S50010-M1499-D1 72-Port ADSL2+ Interface Unit (Annex B) with Convergate D and Geminax-Max V2.1, optimized hybrid

4/5

Table 47 Interface Units Options

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12.4 Optical SFP Modules and Cables

IU_ADSL72-ADL Annex I S50028-Q2038-A1 72-Port ADSL2+ Interface Unit (Annex I) (Infineon) ADL (all digital loop), wetting current support

4/5

Interface Units SHDSL

IU_SHDSL48.bis S50028-Q2029-A1 48-Port SHDSL Interface Unit (Conexant)bonding, bis and wetting current support

4/5

IU_SHDSL48-A2 S50028-Q2029-A2 48-port SHDSL Interface Unit (Infineon)- Annex A/B: standard mode ANSI/ETSI for 2.3 Mbps- Annex F/G: enhanced mode ANSI/ETSI for 5.7 Mbps (enhanced bit

rate + power)- SHDSL.bis acc. to THS requirements- Simultaneous support of 2-wire and 4-wire

4/5

IU_SHDSL48-A4 S50028-Q2029-A4 48-port SHDSL Interface Unit (Infineon)- Annex A/B: standard mode ANSI/ETSI for 2.3 Mbps- Annex F/G: enhanced mode ANSI/ETSI for 5.7 Mbps (enhanced bit

rate + power)- SHDSL.bis acc. to THS requirements- Simultaneous support of 2-wire and 4-wire- 8-queue-flat - current wetting support

4/5

Interface Units VDSL2

IU_VDSL24-A3 S50028-Q2028-A3 24-port VDSL2 Interface Unit (Infinion), VINAX M (up to 17 MHz) 4/5

IU_VDSL24P-A1 S50028-Q2027-A1 24-port VDSL2 Interface Unit VDSL2 over POTS 4/5

IU_VDSL48P-A1 S50028-Q2066-A1 48-port VDSL2 Interface Unit VDSL2 over POTS 4/5

IU_VDSL48-A2 S50028-Q2067-A2 48-port VDSL2 Interface Unit VDSL2 over ISDN splitterless operation enabled

4/5

Other Interface Units

IU_10x1G_sync S50028-Q2125-A1 Interface Unit, downlink with optical 10 x 1G interfaces with synchroni-zation

4/5

Blank Panel

Common Blank Panel C50117-A230-B328 Common blank panel (successor of -B130 and - B331) 7

1) with CXU_C, only 4 interface units can be equipped in any case

Name Part Number Description Maximum Quantity1)

Table 47 Interface Units Options (Cont.)

Name Part Number Description Maximum Quantity

SFPs Small Form Factor Pluggable

GB-SX(550) Ethernet_850nm, VCSEL V50017-U362-K500 Gigabit Ethernet SX (multi mode, 550m, 850nm) temperature range: -5/+70 °C

4

GB-SX(550) Ethernet_850nm, VCSEL V50017-U365-K500 Gigabit Ethernet SX (multi mode, 550m, 850nm) temperature range: -40/+85 °C

4

GB-LX(10km) Ethernet_1310nm, FP V50017-U363-K500 Gigabit Ethernet LX (mono mode, 10km, 1310nm, LC connector) temperature range: -5/+70 °C

4

Table 48 Optical SFP and Cable Options

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12.5 CWDM Modules

GB-LX(10km) Ethernet_1310nm, FP V50017-U361-K500 Gigabit Ethernet LX (mono mode, 10km, 1310nm, LC connector) temperature range: -40/+85 °C

4

GB-LX(20km) Ethernet_1310nm, FP V50017-U366-K500 Gigabit Ethernet LX (mono mode, 20km, 1310nm, LC connector) temperature range: -40/+85 °C

4

GB-LX(40km) Ethernet_1310nm, DFB V50017-U367-K500 Gigabit Ethernet LX (mono mode, 40km, 1310nm, LC connector) temperature range: -40/+85 °C

4

GB-ZX(80km) Ethernet_1550nm, FP V50017-U368-K500 Gigabit Ethernet ZX (mono mode, 80km, 1550nm, LC connector) temperature range: -5/+70 °C

4

SFP GE 20 km V50017-U369-K500 SFP Mod.1.25GB Ethernet LX, 20 Km 1550nm, temp Range -5/+70 degr. C

4

SFP GE 80 km, outdoor V50017-U469-K500 SFP Mod. 1,25 GB Ethernet ZX, 80 Km, 1550 nm, mono mode, temp range -40/+85 degr. C

4

Dust Cover

Dustcover SFP C39334-Z98-C1 Dustcover SFP 8

Dustcover RJ45 C22334-Z8001-C2 Dustcover RJ45 8

Optical Cables/Coupler/Distributor

Optical coupler C39195-Z266-F1 Optical-Combiner (split 2:1), unidirectional; for 1310 or 1550 nm

8

Metal part (coupler holder) C50165-A230-B302 Metal part (coupler holder) for mounting within ODF C50165-A230-B92

2

ODF LC/PC C50165-A230-B92 ODF-16-LC/PC (ETSI), incl. 4 splice boxes; for 1 holder 2

Pigtail C39195-Z203-C901 Pigtail for connection to internal splicebox of ODF LC/PC 8

Patchcord C39195-Z281-L50 FO-PATCHCORD (DUPLEX) 5M LC/PC-LC/PC - for con-nection of SFP-module with ODF LC/PC

8

Name Part Number Description Maximum Quantity

Table 48 Optical SFP and Cable Options (Cont.)

Name Part Number Description Wavelenght Maximum Quantity

1.25 Gbps optical SFP on CXU V50017-U3447-K500 CWDM transceiver, outdoor, temp. range: -40° C to +85° C

Colour gray, wavelength 1471 nm 4

1.25 Gbps optical SFP on CXU V50017-U3449-K500 Colour violet, wavelength 1491 nm 4

1.25 Gbps optical SFP on CXU V50017-U3451-K500 Colour blue, wavelength 1511 nm 4

1.25 Gbps optical SFP on CXU V50017-U3453-K500 Colour green, wavelength 1531 nm 4

1.25 Gbps optical SFP on CXU V50017-U3455-K500 Colour yellow, wavelength 1551 nm 4

1.25 Gbps optical SFP on CXU V50017-U3457-K500 Colour orange, wavelength 1571 nm 4

1.25 Gbps optical SFP on CXU V50017-U3459-K500 Colour red, wavelength 1591 nm 4

1.25 Gbps optical SFP on CXU V50017-U3461-K500 Colour brown, wavelength 1611 nm 4

Table 49 CWDM Module Options

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12.6 Splitter Units

1.25 Gbps optical SFP on CXU V50017-Q2247-K822 CWDM splitter, outdoor, temp. range: -40° C to +85° C

Colour gray, wavelength 1471 nm 2

1.25 Gbps optical SFP on CXU V50017-Q2249-K822 Colour violet, wavelength 1491 nm 2

1.25 Gbps optical SFP on CXU V50017-Q2251-K822 Colour blue, wavelength 1511 nm 2

1.25 Gbps optical SFP on CXU V50017-Q2253-K822 Colour green, wavelength 1531 nm 2

1.25 Gbps optical SFP on CXU V50017-Q2255-K822 Colour yellow, wavelength 1551 nm 2

1.25 Gbps optical SFP on CXU V50017-Q2257-K822 Colour orange, wavelength 1571 nm 2

1.25 Gbps optical SFP on CXU V50017-Q2259-K822 Colour red, wavelength 1591 nm 2

1.25 Gbps optical SFP on CXU V50017-Q2261-K822 Colour brown, wavelength 1611 nm 2

Name Part Number Description Wavelenght Maximum Quantity

Table 49 CWDM Module Options (Cont.)

Name Part Number Description Maximum Quantity

Splitter chassis-4 4-slot splitter chassis for VDSL2 and ADSL/2/2+ splitters24 port or 36 port splitter

2

Splitter Chassis-8 S50028-B2048-A1 8-Slot splitter chassis. (horizontal type)24 port or 36 port splitter

2

Splitter-Chassis ETSI-RMK-8 C50165-A230-B14 Bracket for installing 8-slot splitter chassis in ETSI rack - (Rack Mounting Kit-8)

2

Mounting kit Splitter Chassis-6 ETSI S50028-B2070-R1 Mounting kit for splitter chassis-6, 19"/ETSI adapter 1

SPT-36-600 S50028-Q2050-A1 36-port splitter board 600 Ohm POTS 8

SPT-24-4B3T-C S50028-Q2057-A1 24-port splitter 4B3T CPT 2

SPT-36-600 S50028-Q2070-A1 36-port splitter board 600 Ohm POTS 8

SPT-36-600-BT S50028-Q2071-A1 36-port splitter board 600 Ohm POTS with 16 kHz billing tone

8

SPT-36-2B1Q S50028-Q2073-A1 36-port splitter board ISDN 2B1Q(135 Ohm) 8

SPT-36-4B3T S50028-Q2074-A1 36-port splitter board Combo ISDN 4B3T(150 Ohm) & ETSI POTS complex (220 Ohm + 820 Ohm// 115 nF)

8

SPT-36-ETSI S50028-Q2075-A1 36-port splitter board-. ETSI POTS complex (270 Ohm + 750 Ohm // 150 nF )

8

SPLT-Dummy-36 S50028-Q2079-A1 36-port dummy splitter line card used for specific configura-tions for ADSL2+ and SHDSL boards

8

SPLT-BP C50117-A230-B14 Splitter chassis blank panel 8

SPT-V24-ISDN-2B1Q S50028-Q6000-A1 VDSL2 splitter 24-port for ISDN 2B1Q 4

SPT-V24-POTS-600 S50028-Q6001-A1 VDSL2 splitter for POTS 600 Ohm 4

SPT-V24-POTS-ETSI S50028-Q6002-A1 VDSL2 splitter 24-port for POTS ETSI 4

Blank Panel Splitter C50117-A230-B438 Blank panel for splitter chassis (successor of -B140) 7

Table 50 Splitter Units Options

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12.7 Power Modules

12.8 Fan Units

Name Part Number Description G400 G400R G400 2G

G400R 2G

Max.Qty

PM_1R ETSI S50028-Q2108-A1 Power module, ETSI, T3, replaceable slide-in module, 1 DC interface

x 1

PM_1R ANSI S50028-Q2108-A2 Power module, ANSI, replaceable slide-in module, 1 DC interface

x 1

PM_UPL ANSI S50028-Q2109-A1 Power module with user plane, ANSI, 1 DC interface, alarm contacts, BITS, fan control

x 1

PM_R S50028-Q2110-A1 Power module with user plane for ONU appli-cation, ANSI, 1 DC interface, alarm contacts, fan control, Ethernet switch

x 1

PM_UPL 2G ETSI S50028-Q3107-A2 Power module with user plane, ETSI,1 DC interface, alarm inputs and outputs, MTA ports, fan control

x 1

PM_1R 2G S50028-Q3108-A1 Power module, ETSI and ANSI, replaceable slide-in module, 1 DC interface

x 1

PM_UPL 2G ANSI S50028-Q3109-A1 Power module with user plane, ANSI, 1 DC interface, alarm contacts, BITS, fan control

x 1

PM_R 2G ANSI S50028-Q3110-A1 Power module with user plane for ONU appli-cation, ANSI, 1 DC interface, alarm contacts, fan control, Ethernet switch

x 1

PM_R 2G ETSI S50028-Q3110-A2 Power module with user plane for ONU appli-cation, ETSI, 1 DC interface, alarm contacts, fan control, Ethernet switch

x 1

PM_ONU 2G S50028-Q3150-A1 Power module for supervision of ONU equip-ment, 1 DC interface, alarm supervision inter-faces, fan control, heat exchager control interface, Ethernet switch

x 1

Blank Panel PM_1R C50117-A230-B427 Blank panel for empty PM_1R slot 1

Table 51 Power Modules

Name Part Number Description G400 G400R G400 2G

G400R 2G

Max.Qty

FAN_G400 S50028-B2141-A1 Fan unit for shelf G400/R x x 1

FAN_G400 DF S50028-B2141-A2 Fan unit for shelf G400/R with dust filter x x 1

FAN_G400 2G S50028-B3141-A1 Fan unit for shelf G400/R 2G x x 1

FAN_G400 DF 2G S50028-B3141-A2 Fan unit for shelf G400/R 2G with dust filter x x 1

Filter pad C50165-A230-C485 Filter pad for dust filter replacement x x x x 1

Table 52 Fan Units

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12.9 Cables

Name Part Number Description Cable Length Max.Qty

MDF cables, shielded via splitter

MDF cable 10, shielded via splitter S50028-B1140-S10 For direct connection of 36 port splitter with MDF, connector on one side only, 36x2x0.4

10 m 8

MDF cable 15, shielded via splitter S50028-B1140-S15 15 m 8

MDF cable 20, shielded via splitter S50028-B1140-S20 20 m 8

MDF cable 30, shielded via splitter S50028-B1140-S30 30 m 8

MDF cable 40, shielded via splitter S50028-B1140-S40 40 m 8

MDF cable 50, shielded via splitter S50028-B1140-S50 50 m 8

MDF cable, unshielded via splitter

MDF cable 10, unshielded via splitter S50028-B1141-S10 For direct connection of 36 port splitter with MDF, connector on one side only, 36x2x0.4

10 m 8

MDF cable 15, unshielded via splitter S50028-B1141-S15 15 m 8

MDF cable 20, unshielded via splitter S50028-B1141-S20 20 m 8

MDF cable 30, unshielded via splitter S50028-B1141-S30 30 m 8

MDF cable 40, unshielded via splitter S50028-B1141-S40 40 m 8

MDF cable 50, unshielded via splitter S50028-B1141-S50 50 m 8

MDF cables, shielded via IU

MDF cable 10, shielded via IU S50028-B1142-S10 For direct connection of 72port IU with MDF, connector on one side only, 36x2x0.4

10 m 8

MDF cable 15, shielded via IU S50028-B1142-S15 15 m 8

MDF cable 20, shielded via IU S50028-B1142-S20 20 m 8

MDF cable 30, shielded via IU S50028-B1142-S30 30 m 8

MDF cable 40, shielded via IU S50028-B1142-S40 40 m 8

MDF cable 50, shielded via IU S50028-B1142-S50 50 m 8

MDF cables, shielded via splitter

MDF cable 10, shielded via splitter S50028-B1145-S10 For direct connection of splitter with MDF, connector on one side only, 24x2x0.4

10 m 8

MDF cable 15, shielded via splitter S50028-B1145-S15 15 m 8

MDF cable 20, shielded via splitter S50028-B1145-S20 20 m 8

MDF cable 30, shielded via splitter S50028-B1145-S30 30 m 8

MDF cable 40, shielded via splitter S50028-B1145-S40 40 m 8

MDF cable 50, shielded via splitter S50028-B1145-S50 50 m 8

MDF cables, unshielded via splitter

Table 53 Cables

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MDF cable 10, unshielded via splitter S50028-B1146-S10 for direct connection of 24/48port IU with MDF, connector on one side only, 24x2x0.4

10 m 8

MDF cable 15, unshielded via splitter S50028-B1146-S15 15 m 8

MDF cable 20, unshielded via splitter S50028-B1146-S20 20 m 8

MDF cable 30, unshielded via splitter S50028-B1146-S30 30 m 8

MDF cable 40, unshielded via splitter S50028-B1146-S40 40 m 8

MDF cable 50, unshielded via splitter S50028-B1146-S50 50 m 8

MDF cables, shielded via IU

MDF cable 10, shielded via IU S50028-B1147-S10 for direct connection of 24/48port IU with MDF, also for 24port splitter equipped in DSLAM shelf, connector on one side only,24x2x0.4

10 m 8

MDF cable 15, shielded via IU S50028-B1147-S15 15 m 8

MDF cable 20, shielded via IU S50028-B1147-S20 20 m 8

MDF cable 30, shielded via IU S50028-B1147-S30 30 m 8

MDF cable 40, shielded via IU S50028-B1147-S40 40 m 8

MDF cable 50, shielded via IU S50028-B1147-S50 50 m 8

Connectors type 2 C39228-Z1212-A716 Connector for connecting splitter or IU to MDF

- 4 connectors per IU_ADSL72/ IU_VDSL48 with splitter

- 2 connectors per IU_ADSL72/ IU_VDSL48 without splitter

- 2 connectors per IU_VDSL24 with splitter

- 1 connector per IU_VDSL24 without splitter

Cables between IU and splitter

DSL Mounting Set 1-5625 S50028-B1121-S8 Cable (with 72-pin connectors on both sides) from IU_VDSL24 to 24-port splitter in the same shelf

1 mounting set per splitter card

DSL Mounting Set 13-5625 S50028-B1130-S13 Cable between IU_VDSL24 and 24-port splitter equipped in splitter chassis

1 mounting set per splitter card

DSL Cable Set S50028-B4000-T1 Cable set between IU_xDSL and splitter shelf vertically mounted

1 cable set per shelf

Power cables

DC-cable 5625 S50028-B1108-S5 DC power cable , 3W3 - open, max. 20 A, if no fuse panel is available

3 m 2

Power cable S50028-B1108-S5 Power cable if power supply redun-dancy is supported

2

Name Part Number Description Cable Length Max.Qty

Table 53 Cables (Cont.)

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12.10 Mounting Sets

12.11 Rack Options

Name Part Number Description G400 G400R G400 2G G400R 2G M. Qty

Mounting set G400-ETSI S50028-B2140-R1 Adapter with cable guide for instal-lation of G400 in ETSI-rack

x 1

Mounting set G400R-23‘’ S50028-B2140-R3 Adapter with cable guide for G400R or G400R 2G in 23”-rack

x x 1

Mounting set G400-23‘’ S50028-B2140-R4 Adapter with cable guide for instal-lation G400 or G400 2G in 23”-rack

x x 1

Mounting set G400R-RDAC

S50028-B2140-R2 Adapter with cable guide for instal-lation G400R in RDAC

x x 1

Mounting set 4-slot splitter shelf ETSI

S50028-B2060-R1 Adapter with cable guide for 4-slot splitter shelf in ETSI-rack

1

Mounting set 6-slot splitter shelf ETSI

S50028-B2070-R1 Adapter with cable guide for 6-slot splitter shelf in ETSI-rack

Mounting set 8-slot splitter shelf ETSI

S50028-A230-B143 Adapter with cable guide for 8-slot splitter shelf in ETSI-rack

Cable guide 4-slot splitter shelf

C50165-A230-C810 Cable holder for ETSI rack mounting

2

Cable guide 6-slot splitter shelf

C50165-A230-C811

Cable guide 8-slot splitter shelf

C50165-A230-C406

Cable holder G400/G400R 23"

C50165-A230-C507 Cable holder for 23" rack mounting x x x x 1

Cable holderG400/G400R ETSI

C50165-A230-C512 Cable holder for ETSI rack mounting

x x x x 1

Table 54 Mounting Sets

Name Part Number Description Maximum Quantity

ETSI-rack 2.2 m, 300 mm S50010-R1006-A1 Rack ETSI, 300 mm deep, 2.2 meter height, including mounting field. -. front cabling usage without door only

1

ETSI-rack 2.2 m, 600 mm S50010-R1007-A1 Rack ETSI, 600 mm deep, 2.2 meter height including mounting field. -. front cabling usage without door only

1

Rear panel for ETSI rack C50117-A270-C13 Rear panel for ETSI rack-300mm 1

Fuse panel Power fuse panel (2 breakers 16 A / 2 feeder) for hiX 5625- 2 power cables included- To be used in case of power supply redundancy requested

1

Fuse panel Power fuse panel (1 breakers 16 A / 1 feeder) for hiX 5625 - 1 power cable included - Power supply redundancy not supported

1

Fuse Panel S42024-P123-A1 Power fuse panel with 6 slots (the 16 A-fuse V42278-Z52-A13 and the power cable S50028-B1108-S5 are ordered separatly)

1

Breaker 16 A V42278-Z52-A13 16-A-fuse (if power supply redundancy is supported - 2 else 1) 1 or 2

Table 55 Rack Options

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13 Abbreviations2B1Q Line code, Two Binary One Quaternary

4B3T Line code, Four Binary Three Temary

AC Alternating Current

ACI-E AccessIntegrator Ethernet

ADL All Digital Loop

ADSL2+ Asynchronous Digital Subscriber Line, Standard ITU-T G.992.5

ANSI American National Standards Institute

BB Broadband

BITS Building Integrated Timing Supply

CE Communauté Européenne, European Community

CLI Command Line Interface

CWDM Coarse Wavelength Division Multiplexing

CXU Central Switching Unit

DC Direct Current

DIN Deutsche Institut für Normung (German technical standards organisation)

DSL Digital Subscriber Line

DSLAM DSL Access Multiplexer

EMC Electro Magnetic Compatibility

EN European Norm

ESD Electrostatic Discharge

ETSI Europäisches Institut für Standardisierung der Telekommunikation

FE Fast Ethernet (100 Base-T, 100 Mbps)

FTTB Fiber to the Building

FTTC Fiber to the Curb

GE Gigabit Ethernet (1 Gbps)

IDC Insulation Displacement Connector

IEC International Electrotechnical Commission

IU Interface Unit

ISDN Integrated Services Digital Network

LCT Local Craft Terminal

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Abbreviations

LED Light Emitting Diode

MDF Main Distribution Frame

MTA Metallic Test Access

NB Narrowband

ODF Optical Distributen Frame

ONU Optical Network Unit

POTS Plain Old Telefon Service

PSTN Plain Switched Telephone Network

RJ45 Registered Jack 45

SFP Small Form Factor Pluggable

SHDSL Symmetric High Bit Rate Digital Subscriber Line

TMN Telecommunications Management Network

VDE Verband der Elektrotechnik, Elektronik und Informationstechnik e.V. (Association for Electrical, Electronic & Information Technologies)

VDSL2 Very High Speed Digital Subscriber Line, Standard ITU-T G.993.2

VoIP Voice over IP

xDSL All variants of DSL