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Internal Distribution Only; all rights reserved Status 01/16 © Unify Z3-HP4-05/1 Replaces Status 02/14 Technical Information HiPath 4000, Project Planning Documentation Chapter 3: Guidelines Applications and Networks HiPath 4000 Hardware from Version 2.0 Note: Additional information relevant to this document is available on the PDT homepage. Since this information often needs to be changed and updated at short notice, this document only contains references to the appropriate documents. The documents concerned are, currently: 1. HiPath 4000 Line Card Table 2. Additional Information on the Marketing Structure of the HiPath 4000 Power Supply 3. Information on the Patch-Panels for HiPath 4000 These documents are listed under: https://www.g-dms.com/livelink/livelink.exe/open/28618924 Particularly for upgraded systems, the additional information contained in the documents Z3-HP4-16 (Version V5) and Z3-HP4-05e (Version V6) are relevant.

Transcript of HiPath 4000 Hardware from Version 2 - ecs.unify.com

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Technical Information HiPath 4000, Project Planning Documentation

Chapter 3: GuidelinesApplications and Networks

HiPath 4000 Hardware from Version 2.0

Note: Additional information relevant to this document is available on the PDT homepage. Since this information often needs to be changed and updated at short notice, this document only contains references to the appropriate documents. The documents concerned are, currently:

1. HiPath 4000 Line Card Table

2. Additional Information on the Marketing Structure of the HiPath 4000 Power Supply

3. Information on the Patch-Panels for HiPath 4000

These documents are listed under:

https://www.g-dms.com/livelink/livelink.exe/open/28618924

Particularly for upgraded systems, the additional information contained in the documents Z3-HP4-16 (Version V5) and Z3-HP4-05e (Version V6) are relevant.

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Technical Information HiPath 4000, Project Planning Documentation

Chapter 3: GuidelinesApplications and Networks

1 Specific Information on the Hardware from HiPath 4000 V2.0

This document only describes the specific changes, new parts and restrictions of the HiPath 4000 hardware from version 2.0 onwards, relative to the HiPath 4000 V1.0 hardware. This means that this document must be considered to be a sup-plement of the HiPath 4000 V1.0 Hardware Specification. Hardware components, complexes and rules that are taken over unchanged from HiPath 4000 V1.0 are not additionally described here. HiPath 4000 Versions 5 and 6 are also based on the hardware of the HiPath 4000 V2.0, but have additional specifications described in the documents Z3-HP4-16 (Version V5) and Z3-HP4-05e (Version V6).

1.1 General Information

Short Description of the Hardware Characteristics and Changes as of HiPath 4000 V2.0:

1.1.1 Host

Changes introduced with HiPath 4000 V2.0:

> From HiPath 4000 V2.0 on, original systems are delivered with a new Common Control Shelf unit in 19" rack design, based on a compact PCI bus platform (cPCI). The standard UP and UPR peripheral shelf boxes of the HiPath 4000 V1.0 hardware can continue to be ordered (16 + 1 card slots). A new 19" rack-mount peripheral shelf, the AP 3700 (separate release), which offers 13 card slots, can be ordered as an alternative, so that the entire HiPath 4000 switch hardware (common control and peripheral shelves) can be ordered in 19" rack-mount design, if required.

> The central control shelf is connected to the peripheral shelves by a LAN cable connection. All the peripheral shelves of a HiPath 4000 V2.0 switch require the new LTU controller LTUCA.

> All original HiPath 4000 systems from V2.0 are fully scalable from 1 to 15 peripheral shelves, so the former two basic system types HiPath 4300 and HiPath 4500 (under Version V1.0) are no longer differentiated.

> For systems with up to 7 UP/UPR shelves, the standard control option is "simplex", although a "duplex" option may also be ordered, if required. For systems with more than 7 UP/UPR shelves, the duplex control option is mandatory.

> The available power supply options are the same as for the HiPath 4000 V1.0: non-redundant or redundant shelf power supply, battery manager and external -48V power supply.

> The software protection concept of the HiPath 4000 versions V2.0 through V5 is based on a SIM card, although HiPath 4000 V1.0 systems upgraded to these later HiPath 4000 versions will continue to use a dongle hardware key instead of the SIM card for hardware reasons. From HiPath 4000 Version 6 onwards, these hardware-based protection mechanisms have been discontinued, as the systems are licensed through the CLS (Central License Server).

> HiPath 4000 V1.0 upgrades to HiPath 4000 V2.0/V3.0/V4 do not require any changes to the central control hardware (except additional memory modules). This type of upgrade is a pure software upgrade.

> Further cPCI shelves can be added to the basic system configuration of an original HiPath 4000 V2.0/V3.0 system (with cPCI control shelf), to provide integrated server functions for HiPath 4000 applications based on OEM processor boards or cards. The supported services and hardware are defined by the Product Management for the Applications concerned. Any OEM hardware must be obtained locally.

> A new STMI2 card has been developed for the HiPath IP Gateway functions HG3530, HG3550 and HG3570. The two available variants of this card now provide up to 60 or 120 channels. In some cases, only a reduced number of B-channels is actually available for use, depending on the ordered variant.

> For an STMI2 used as an HG3530, with 60 or 120 channels, the HiPath 4000 systems now allow "overbooking". This is a new feature that permits up to 240 IP subscribers to be configured, despite the fact that it is only physically possible for 60 or 120 to be actively telephoning at any one time.

Changes introduced with HiPath 4000 V3.0:

> Based on the STMI2 card introduced with HiPath 4000 V2.0, HiPath 4000 V3.0 saw the introduction of the HG 3540 IP gateway for SIP-based interactive communication control using IP network connections, with both subscriber phone and trunk routing ("trunking") functions.

> Also based on the STIMI2 card, the HG3530 and HG3550 gateways are now offered with an IP security option.

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> The Cordless SLC16 cards and BS2 base stations are no longer supported in HiPath Cordless Enterprise V3, and older HiPath Cordless versions are no longer supported from HiPath 4000 V3.0 onward. For upgrades of older configura-tions, these components will need to be replaced by the SLC24 and BS4 respectively.

> The standard remote service access connection for HiPath 4000 new orders is now via a router, although the Insys TA or Insys modem are still available as alternative options.

Changes introduced with HiPath 4000 V4:

> Based on the new STMI4 card, a new HG 3500 V4 "Common Gateway" has been introduced, with one common soft-ware that covers all the functions of the previous gateways HG 3530, HG 3540, HG 3550 and HG 3570 for separate or mixed mode operation. The new HG 3500 gateway supports the following types of IP traffic: - HFA subscribers (HG 3530) - SIP subscribers (HG 3540) - IPDA inter-switch traffic (HG 3570) - IP-Trunking (HG 3550) - WAML functions (HG 3550)

> The delivery package of a new HiPath 4000 V4 switch includes an HDCF module (S30810-K2319-X320, with pre-installed software), which replaces the HDMO. The hard disk and compact flash card reader module is also part of the hardware delivery package for new deliveries of the CSAPE survivability unit.

1.1.2 IPDA

> Similarly to the STMI2, a new NCUI2 card was also introduced with HiPath 4000 V2.0, available in two variants, with 45 channels or with 90 channels. For this reason, the NCUI is no longer included in the basic hardware comple-ment of the IPDA Access Points. In addition, the configuration rules for IPDA locations changed, compared with Hipath 4000 V1.0. From HiPath 4000 V2.0 onward, a location may consist of exactly one access point. However, more than one "location" can be installed in the same rack or stack. A new PNOTE (AYP767) has been created in order to be able to define the installation hard-ware required for each stack or rack-mount access point/location ordered (e.g. roller platform, brackets, etc.).

> A new IPDA Access Point in 19" rack-mount design was also introduced with HiPath 4000 V2.0, the AP3700 IP (sep-arate release). A special "free-standing installation" kit may be ordered to allow the shelf to be set up independently of a rack, if required. The AP3500 IP is still available for orders on a project-specific basis, although the required 45-channel or 90-channel NCUI2 will still need to be ordered separately, in conformance with the HiPath 4000 V2.0/V3.0/V4 marketing structure.

> A new survivability feature was introduced with the AP3700 IP: "Survivability Unit for AP3700 IP", or CSAPE. The hardware comprises a cPCI Cassette with DSCXL processor, hard disk, MO drive/CF reader (as of HiPath 4000 V4) and power supply. The CSAPE ensures that the remote IPDA Access Points can continue functioning in the event of a failure of the host connection.

> A new IPDA controller card has been introduced with HiPath 4000 V4: the HG 3575 V4 (NCUI4). This card is also available in two different variants, either with 50 configurable channels or with 100. As with the NCUI2, the NCUI4 card must always be ordered separately (AYA417 for the 50-channel HG 3575 and AYA418 for the 100-channel HG3575 respectively).

Note: Two new IPDA solution variants have recently been introduced: the HiPath 4000 SoftGate (starting with SoftGate V5) and HiPath Access (from V6). For details, please refer to the relevant HiPath 4000 V5 and V6 documents.

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2 HiPath 4000 from V2.0 – Host System

Standard installation variants have been defined to help adapt the installations to the customer’s premises.

Attention: The installation variants are not room plans. All measurements are minimum dimensions in millimeters.

2.1 Installation Variant - A10, CSPCI Box Installed in Standard UCS Box, Stack 1

UP/UPR(L80XF/LTUW)

UP/UPR(L80XF/LTUW)

#) Cable duct (recommended size 110 × 60mm)

-> Cable reference points

= Basic system

UP/UPR 12(L80XF/LTUW)

Stack4

450

#)

MDF-HX6(1)

1305

MDF-HX6(n)

#)

Example: - System stacks are free-standing - UACD box(es) shown also required for use as battery manager - MDFHX6 wall-mounted

Stack1

UP/UPR 1(L80XF/LTUW)

UP/UPR (L80XF/LTUW)

#)

UP/UPR 15(L80XF/LTUW)

CSPCI Box(BP-CS-CPCI)

UP/UPR 3(L80XF/LTUW)

UCS(CSPCI)

UACD

UACD

Notes: - Central control box "CSPCI" installed in 1st box (UCS) in Stack 1; - LAN cables from CSPCI box to peripheral boxes in stacks 1 - 4; length of cables to LTUCA controllers are 2m / 5m / 10m; - Each stack installed on a roller platform; - Optional UACD box for AC/DC power and/or battery manager; - An "MDFHX6" is installed as a wall-mounted MDF solution, on the left or right of the system;

connecting cables laid out via cable ducts on floor or in sandwich floor; fixed-length cable units (24-pair CABLU, 5m or 10m) with braided shield or open-ended cables to specified length (max. 95m)

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2.2 Installation Variant - A11, CSPCI Box Installed in 19" Rack, Standard UP/UPR Peripheral Boxes

4 rack levels (4U)

UP/UPR(L80XF/LTUX)

UP/UPR 14(L80XF/LTUX)

UP/UPR 13(L80XF/LTUX)

Stack4Stack1

UP/UPR(L80XF/LTUX)

UP/UPR 4(L80XF/LTUX)

UP/UPR 1(L80XF/LTUX)

UP/UPR(L80XF/LTUX)

#)

19"

450

CSPCI Box(BP-CS-CPCI)

Example: - CSPCI box in 19" rack - UACD box(es) shown also required for use as battery manager - MDFHX6 wall-mounted

450

#)

MDF-HX6(1)

1305

MDF-HX6(n)

#)

#) Cable duct (rec. size 110 × 60mm)

-> Cable reference points

= Basic system

UACD

UACD

Notes: - Central control box "CSPCI" installed in 19" rack; - LAN cables from CSPCI box to peripheral boxes in stacks 1 - 4; max. length of cables to LTUCA controllers is 10m; - Each stack installed on a roller platform; - Optional UACD box for AC/DC power and/or battery manager; - An "MDFHX6" is installed as a wall-mounted MDF solution;

connecting cables laid out via cable ducts on floor or in sandwich floor; fixed-length cable units (24-pair CABLU, 5m or 10m) with braided shield or open-ended cables to specified length (max. 95m)

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2.3 Installation Variant - A12, CSPCI Box and Peripheral Shelves (AP 3700) in 19" Rack

Notes: - Central control box "CSPCI" installed in 19" rack; - LAN cables from CSPCI box to peripheral boxes in stacks 1 - 4; max. length of cables to LTUCA controllers is 10m; - Peripheral shelf boxes installed in 19" racks; - Optional UACD box for AC/DC power and/or battery manager; - An "MDFHX6" is installed as a wall-mounted MDF solution;

connecting cables laid out via cable ducts on floor or in sandwich floor; fixed-length cable units (24-pair CABLU, 5m or 10m) with braided shield or open-ended cables to specified length (max. 95m)

- Alternative: plug-in patch panel units may also be used (RJ45 cables can then be plugged directly into the backplane of the peripheral boxes).

ATTENTION: The specified measurements are only example values. For detailed measurement calculation rules please refer to section 6 "Rules for Planning and Installing HiPath 4000 Systems in 19" Racks".

SAPPE

SAPPE

SAPPE

SAPPE

Pow-.Distr.-Box

SAPPE

SAPPE

SAPPE

Pow-.Distr.-Box

CSPCI

Rack 1 Rack 4

• • • • • • • • • • •

CAB UACD

Battery ManagerOption AYG120

440

440

440

440

100

100

100

1960

170

SAPPE =hardware namefor AP3700

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2.4 Boxes

2.4.1 CSPCI Box, 19“ Rack-Mount Design

The CSPCI box is designed for installation in a standard 19" rack. However, a UCS box in standard HiPath design is also available, with which the central control box can be integrated in a standard Unify stack installation.

Dimensions:

Width = 440mm, Height = 170mm, Depth = 296mm

The height is equivalent to 4U (standard rack height units).

RF Shielding:

The assembled box, including its front panel, is a fully shielded, closed unit. Any empty slots must be covered with face plates.

Viewed from the front

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2.4.2 Hardware Complement of the CSPCI Box, Monoprocessor Control, S30807-U6625-X (Front View)

The monoprocessor control can be used up to a maximum of 7 peripheral shelves (UP, UPR or SAPPE).

1. The fans are a fixed item in the hardware complement of the CSPCI

2. The ACPCI is required for systems with non-redundant shelf power supply without battery manager, and without external -48V DC power supply. NOTE: The ACPCI is also required with redundant shelf power, in pure 19" rack-mount configurations! The DCPCI is required for systems with redundant shelf power supply, systems with external -48V DC power supply and systems with non-redundant shelf power supply with battery manager.

3. Second power supply module only required for systems with redundant shelf power supply.

Hardware Part Numbers:

Unit Part Number Description HiPath 4000Version

Until Mid-2007:

HDMO S30810-K2310-X Holder and controller unit for hard drive and MO drive, with-out pre-installed system software

GER/IM: V2.0USA: V2.0/V3.0

HDMO S30810-K2310-X100 Holder and controller unit for hard drive and MO drive, with pre-installed system software for V3.0

GER/IM: V3.0

From Mid-2007:

HDCF S30810-K2319-X300 Holder and controller unit for hard drive and CF card reader, without pre-installed system software

GER/IM: V2.0USA: V2/V3/V4/V5

HDCF S30810-K2319-X310 Holder and controller unit for hard drive and CF card reader, with pre-installed system software for V3.0

GER/IM: V3.0

HDCF S30810-K2319-X320 Holder and controller unit for hard drive and CF card reader, with pre-installed system software for V4

GER/IM: V4

HDCF S30810-K2319-X330 Holder and controller unit for hard drive and CF card reader, with pre-installed system software for V5

GER/IM: V5

NOTE: From Mid-2007, the HCDF replaces the HDMO for all new system orders. Existing HDMO units do not need to be replaced, although a special order item (AYG130) is available for cus-tomers who wish to do so (e.g. for drive compatibility in networked systems).

MO Magneto-optical disk drive (IDE), 1·3 GB, fixed item in hard-ware complement of HDMO (S30810-K2310-X)

HD Hard disk drive (IDE), 40 GB/80GB, fixed item in hardware complement of HDMO (S30810-K2310-X or -X100) and HDCF (S30810-K2319-X300, -X310 or -X320)

CF CF card reader, fixed item in hardware complement of HDCF (S30810-K2319-X300, -X310, -X320 or -X330)

MO or CF

DSCXL (ADP/SWU)

HD

ACPCI orDCPCI

ACPCI orDCPCI

FAN

1)

FAN

1)

6

5

4

3

2

1

PowerSupply

2) 3)2)

HDMO or HDCF

SLOT Face Plates

C39165-A7070-B20

C39165-A7070-B20

C39165-A7070-B20

C39165-A7070-B22if right-hand slot is

left empty

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2.4.3 Hardware Complement of the CSPCI Box, Monoprocessor Control, S30807-U6625-X (Rear View)

Hardware part numbers:

DSCXL S30810-Q2311-X Processor unit, 256 MB on-board memory V2.0/V3.0

+ additional 256MB memory module (V20810-F7095-B290) V2.0/V3.0

+ additional 1GB memory module (V20810-F7095-B270) V4/V5 upgrades

DSCXL S30810-Q2311-X300 Processor unit, 1 GB on-board memory V4/V5 newsystems

NOTE: The DSCXL S30810-Q2311-X with hardware status D5 is not supported in HiPath 4000 V4/V5. For upgrades to V4 or V5, this processor unit must be replaced with the DSCXL S30810-Q2311-X300 with 1 GB on-board memory (1 × AYG133 must be ordered for monoprocessor systems).

ACPCI S30122-H7682-X1replacesS30124-X5166-X

Power supply module, AC/DC converter

DCPCI S30122-H7683-X1replacesS30124-X5167-X

Power supply module, DC/DC converter

Unit Part Number Description

RTM S30810-Q2312-X Rear Transition Module - SIU function - CONF function - MTS function (64 × PCM64) - DCL function (15 × HDLC)

MCM S30810-Q2313-X Or, from 11/2009: S30810-Q2313-X100

Management and Control Module - Alarm interface - PFT (ALUM) control - Input for front reference clock - Fan control

Unit Part Number Description HiPath 4000Version

RTM

MCM

r6

SLOT

r5

r4

r3

r2

r1

MCM

C39165-A7070-B21

Face Plates

C39165-A7070-B21

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2.4.4 Hardware Complement of the CSPCI Box, Duplex Control, S30807-U6625-X (Front View)

Duplex control is optional for systems up to a maximum of 7 peripheral shelves (UP, UPR or SAPPE), but mandatory for all HiPath 4000 systems with more than 7 shelves (UP, UPR or SAPPE).

1. The fans are a fixed item in the hardware complement of the CSPCI

2. The ACPCI is required for systems with non-redundant shelf power supply without battery manager, and without external -48V DC power supply. NOTE: The ACPCI is also required with redundant shelf power, in pure 19" rack-mount configurations! The DCPCI is required for systems with redundant shelf power supply, systems with external -48V DC power supply and systems with non-redundant shelf power supply with battery manager.

Hardware Part Numbers:

Unit Part Number Description HiPath 4000Version

Until Mid-2007:

HDMO S30810-K2310-X Holder and controller unit for hard drive and MO drive, with-out pre-installed system software

GER/IM: V2.0USA: V2.0/V3.0

HDMO S30810-K2310-X100 Holder and controller unit for hard drive and MO drive, with pre-installed system software for V3.0

GER/IM: V3.0

From Mid-2007:

HDCF S30810-K2319-X300 Holder and controller unit for hard drive and CF card reader, without pre-installed system software

GER/IM: V2.0USA: V2/V3/V4/V5

HDCF S30810-K2319-X310 Holder and controller unit for hard drive and CF card reader, with pre-installed system software for V3.0

GER/IM: V3.0

HDCF S30810-K2319-X320 Holder and controller unit for hard drive and CF card reader, with pre-installed system software for V4

GER/IM: V4

HDCF S30810-K2319-X330 Holder and controller unit for hard drive and CF card reader, with pre-installed system software for V5

GER/IM: V5

NOTE: From Mid-2007, the HCDF replaces the HDMO for all new system orders. Existing HDMO units do not need to be replaced, although a special order item (AYG130) is available for cus-tomers who wish to do so (e.g. for drive compatibility in networked systems).

MO Magneto-optical disk drive (IDE), 1·3 GB, fixed item in hard-ware complement of HDMO (S30810-K2310-X)

HD Hard disk drive (IDE), 40 GB/80GB, fixed item in hardware complement of HDMO (S30810-K2310-X or -X100) and HDCF (S30810-K2319-X300, -X310 or -X320)

CF CF card reader, fixed item in hardware complement of HDCF (S30810-K2319-X300, -X310, -X320 or -X330)

MO or CF

DSCXL (ADP)

HD

ACPCI orDCPCI

ACPCI orDCPCI

FAN

1)

FAN

1)

6

5

4

3

2

1

PowerSupply

2)2)

HDMO or HDCF

SLOT Face Plates

DSCXL (SWU A)

DSCXL (SWU B)

SF2X8

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2.4.5 Hardware Complement of the CSPCI Box, Duplex Control, S30807-U6625-X (Rear View)

Hardware part numbers:

SF2X8 S30810-Q2309-X LAN switch (Switch Fabric 2 × 8 Ports), for separate connec-tions to customer LAN and Atlantic LAN)

DSCXL S30810-Q2311-X Processor unit, 256 MB on-board memory V2.0/V3.0

+ additional 256MB memory module (V20810-F7095-B290) V2.0/V3.0

+ additional 1GB memory module (V20810-F7095-B270) V4/V5 upgrades

DSCXL S30810-Q2311-X300 Processor unit, 1 GB on-board memory V4/V5 newsystems

NOTE: The DSCXL S30810-Q2311-X with hardware status D5 is not supported in HiPath 4000 V4/V5. For upgrades to V4/V5, this processor unit must be replaced with the DSCXL S30810-Q2311-X300 with 1 GB on-board memory (3 × AYG133 must be ordered for duplex systems). The DSCXL S30810-Q2311-X plus 1 GB memory module (V20810-F7095-B270) can also be ordered in HiPath 4000 V4/V5 for monoprocessor switch upgrades to duplex control, but only if DSCXL S30810-Q2311-X is in the inventory (all three DSCXL processors must be of the same hardware type for compatibility reasons).

ACPCI S30122-H7682-X1replacesS30124-X5166-X

Power supply module, AC/DC converter

DCPCI S30122-H7683-X1replacesS30124-X5167-X

Power supply module, DC/DC converter

Unit Part Number Description

RTM S30810-Q2312-X Rear Transition Module - SIU function - CONF function - MTS function (64 × PCM64) - DCL function (15 × HDLC)

MCM S30810-Q2313-X Or, from 11/2009: S30810-Q2313-X100

Management and Control Module - Alarm interface - PFT (ALUM) control - Input for front reference clock - Fan control

Unit Part Number Description HiPath 4000Version

RTM

MCM

r6

SLOT

r5

r4

r3

r2

r1

MCM

C39165-A7070-B20

Face Plates

C39165-A7070-B20

RTM

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2.4.6 UP Box (L80XF Shelf)

The UP box introduced with HiPath 4000 V1.0 (S30805-G5408-X/-A, 16 + 1 card slots) will continue to be used with the CSPCI box in HiPath 4000 V2.0 systems without redundant shelf power supply, if a standard Unify stack architecture is required.

For a detailed description of the box and its hardware complement, please refer to the HiPath 4000 V1.0 hardware speci-fication (Z3-HP4-04 section 3.3.5).

2.4.7 UPR Box (LTUW Shelf)

The UPR box introduced with HiPath 4000 V1.0 (S30805-G5404-X/-A, 16 + 1 card slots) will continue to be used with the CSPCI box in HiPath 4000 V2.0 systems with redundant shelf power supply, if a standard Unify stack architecture is required.

For a detailed description of the box and its hardware complement, please refer to the HiPath 4000 V1.0 hardware speci-fication (Z3-HP4-04 section 3.3.6).

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2.4.8 SAPPE Box in 19" Rack-Mount Design (AP3700)

The SAPPE box (AP3700) is a peripheral shelf box in 19" rack-mount design. Together with the new CSPCI central con-trol box introduced with the HiPath 4000 V2.0, this allows an entire HiPath system to be installed in industry standard 19" racks. The maximum number of SAPPE boxes that can be connected to a CSPCI box is 15.

Dimensions: Width = 440 mm, Height = 490 mm, Depth = 430 mm The height is equivalent to 11U (standard rack height units).

Hardware complement of the SAPPE (AP3700), S30805-G5413-X

Attention: The range of supported / released line cards for the SAPPE is somewhat restricted, compared to the other peripheral box types. Please refer to the Line Card Table listed in section 5.

Key:

Slot Part Number Name Description

1 - 6 Slots for peripheral cards 1 - 6

7 S30810-Q2266-X LTUCA Line/Trunk Unit Controller Advanced Connected to CSPCI box via LAN cable

8 - 14 Slots for peripheral cards 7 - 13

1, 4, 8 and 11 (underneath)

S30122-H7686-X1 replacesS30122-H7686-X

LUNA2 Mains Power Converter (AC/DC and DC/DC Converter) Nominal input range 90 - 264 V AC or 42·5 - 58 V DC. Max. 4 power supply units required, depending on power require-ments of installed cards (n+1 redundancy calculated)

X214 (backplane)

S30122-H5929-XreplacesS30124-X5109-X

RGMOD Ringing Generator Module 10 VA apparent power, sufficient for 320 analog subscribers (SLCA) at 0·15 erlangs each. Adjustable output, possible settings: 75Vrms/25Hz (European Norm) 65Vrms/25Hz (Switzerland) 75Vrms/50Hz (France) 85Vrms/20Hz (USA/CAN)

LT

UC

A

PBC1

PBC2

PBC3

PBC4

PBC5

1 2 3 4 5 6 7 8 9 10 11 12 13 14

PBC9

PBC10

PBC11

PBC12

PBC13

PBC14

PBC15

PBC6

LUNA2 LUNA2LUNA2 LUNA2

PCM (2·048 Mbps)Highway A

PCM (2·048 Mbps)Highway F

HDLC (2.048 Mbps)

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Chapter 3: GuidelinesApplications and Networks

2.4.9 UACD Power Box

The UACD AC/DC Power Box introduced with the HiPath 4000 V1.0 can continue to be used with the CSPCI box in HiPath 4000 V2.0 and later systems. It is always required for redundant shelf power supply for systems with UPR boxes and/or for the battery manager option in systems with non-redundant shelf power and UP boxes.

In a pure 19" rack-mount configuration (CSPCI and AP3700 peripheral shelves) the UACD is not used for providing power redundancy in the shelves. Power supply redundancy in 19" rack configurations is achieved by means of a second PSU in the CSPCI shelf (ACPCI or DCPCI.) and an extra LUNA2 in addition to the calculated requirement in the AP3700 peripheral shelf (this means that, at best, a redundancy of n+1 can be achieved). In these cases, the UACD is only used in order to provide a battery management option, if required.

Due to the discontinuation of component parts and systems over the years, there are currently three different variants of the UACD in the field:

- UACD S30805-G5405-X Until around 01/2006 See Z3-HP4-04 section 3.4 for details - Emerson UACD, rack-mount From 01/2006 to 12/2011 See section 2.5.2.3 for details - Lineage Power UACD, rack-mount From 12/2011 See Z3-HP4-05e section 3.3.1 for details

The above dates refer to new system deliveries. Since neither of the above solutions are compatible with each other, expan-sion orders are only possible with the appropriate components of the original series. The configuration tools automatically determine the UACD type in use from the IBASE inventory data.

2.4.10 UDCD Power Box

The UDCD DC/DC Power Box introduced with the HiPath 4000 V1.0 can continue to be used with the CSPCI box in HiPath 4000 V2.0 and later systems. This power box is always required for systems with an external DC power supply via on-line batteries (USA/CAN only). For a detailed description of the box and its hardware complement, please refer to the HiPath 4000 V1.0 hardware speci-fication (Z3-HP4-04 section 3.4).

From around 03/2011, a new UDCD variant supplied by Lineage Power takes the place of the original solution with Zytron and Coleman components. For a detailed description, please refer to Z3-HP4-05e section 3.3.2.

The new variant will only be supplied for new system deliveries from March 2011 onwards. Since the previous solution is neither electrically nor mechanically compatible with the new one, expansion orders for systems equipped with the "old" UDCD solution are only possible with the appropriate components of the former series. The configuration tools auto-matically determine the UDCD type in use from the IBASE inventory data.

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Chapter 3: GuidelinesApplications and Networks

2.4.11 CSPCI (cPCI) Central Control Upgrade for Switches with CCDAX Control

This option was originally intended to avoid performance problems in older, upgraded HiPath 4000 systems or converted Hicom 300 systems with CCDAX control that arise from the increased performance requirements of the HiPath 4000 in version 4. For systems upgraded to HiPath 4000 V5 or V6, the conversion is mandatory, since these sysrtems only support the CSPCI central control.

Important:

> For hardware and electrical compatibility reasons, this upgrade possibility is restricted to the "600 ECS" stack archi-tecture (basic system AYG109).

> FDA configurations (Flex-Shelf Distributed Architecture with AP 3300 Fiber) are NOT supported! If desired, the FDA locations can be replaced with an IPDA configuration (IP Distributed Architecture with AP 3300 IP). Since this involves a lot of manual adjustment to the switch configuration inventory data and database, this option always requires project-specific approval by the product manager.

Order items for HiPath 4000 V4 or V5:

1 × per system: L30220-Y600-G305 "Performance Package CSPCI (cPCI Central Control), for 19-Inch Rack Installation" and 1 × per AP 3300 to be upgraded: L30220-Y600-G306 "LTUCA AP Controller Card, including LAN Cable" plus, optionally 1 × per system: L30220-Y600-G101 "Duplex Control Option for HiPath 4000 from V2 to V5" (if original system had duplex control AYG111 or if monoprocessor system is to be upgraded to duplex).

Order items for HiPath 4000 V6:

1 × per system: L30220-Y600-G308 "Performance Package CSPCI (cPCI Central Control) for HiPath 4000 V6, as CCDAX Replacement" and 1 × per AP 3300 to be upgraded: L30220-Y600-G306 "LTUCA AP Controller Card, including LAN Cable" plus, optionally 1 × per system: L30220-Y600-G312 "Duplex Control Option for HiPath 4000 V6 CSPCI System" (if original system had duplex control AYG111 or if monoprocessor system is to be upgraded to duplex).

AYG305 includes a manual with detailed instructions for the conversion (A30805-H5403-X-*-7432).

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Chapter 3: GuidelinesApplications and Networks

Index Quantity Part Number Description

1) 1 S30807-U6625-X CSPCI Box- CSPCI is installed in empty CCDAX box

2) max.15 S30810-Q2266-X LTUCA - Required 1 × per peripheral shelf, to replace original control cards LTUCE or LTUCX

3) max. 30 C39195-Z7211-A100 LAN Cable, 10m- Required 2 × per LTUCA for duplex control systems- Replaces original cables S30267-Z315-A18, -A30 and -A50

4) 1 C39195-A7944-B38 DC power line from junction box in CCDAX (X10) to Mate-N-Lock connection in CSPCI - Only if CSPCI powered from external DC source

or:5) 1 C39195-Z7001-C17 Mains power cord for AC mains connection, GER/IM

or:5) 1 C39195-Z7001-C10 Mains power cord for AC mains connection, USA/CAN

6) 1 C39195-Z7904-A25 ALIN cable to BAMX1 (use original cable of CCDAX)

7) 1 C39165-A7070-C27 Mounting profile, left

L80XF/LTUW

2)

L80XF/LTUW

2)

L80XF/LTUW

2)

CCDAXUACDX10

3)

4)

6) 5)

CSPCIMCM

RTM1)

9)

Install CSPCI in empty CCDAX box

7) 8)

Remove CCDAX backplane,with all central control cardsand power supply

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Use the screws that become available after removing the CCDAX backplane to fix the mounting profiles inside the empty CCDAX box. The screws for mounting the CSPCI are included in the CSPCI delivery package.

8) 1 C39165-A7070-B18 Mounting profile, right

9) n various Sundry cables already used for the CCDAX, e.g. - ASW - Clock (AICB, AECB)- LAN - V.24

Index Quantity Part Number Description

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Chapter 3: GuidelinesApplications and Networks

2.5 Power Supply

2.5.1 AC and DC Power Connections of the CSPCI Box

Connection to AC Mains Power

Connection to External DC Power Source

230V/115V

Bonding Connection

PFT(ALUM)/MDFS30267-Z317-A… (GER/IM)S30267-Z358-A… (USA/KAN)

MCM

RTM

Clock BoxS30267-Z304-A9/40AC Connection

C39195-A7985-B1

+DCIN/N-DCIN/L

RTM

Service PCC39195-A7602-B30 orC39195-A7602-B100

Mains Power Cord(GER/IM)(USA/KAN)

C39195-Z7001-C17

(BRA)C39195-Z7001-C97V42405-J1-A216

Bonding Connection

PFT(ALUM)/MDFS30267-Z317-A… (GER/IM)S30267-Z358-A… (USA/CAN)

RTM

Clock BoxS30267-Z304-A9/40

MCM+DCIN/N-DCIN/L

RTM

Service PCC39195-A7602-B30 orC39195-A7602-B100

ALIN CableC39195-Z7904-A25Fixed item in UACD

DC Connection to Stack 1Line is fixed item in DC connectionS30805-H5298-X14, installed in 1st stack

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2.5.2 Power Supply - System Power Options

2.5.2.1 AC Connection with Non-Redundant Shelf Power (UP Boxes)

Mains orUPS

Mains orUPS

CSPCI Box

LPC80

bulk

bulk

bulk

ta lk

talk

talk

PS

UP

PS

UP

PS

UP

LPC

80

LPC80

MDFHX6

FP E

bat

bat

bat

Stack 4

~

~

LPC80

bulk

bulk

bulk

ta lk

ta lk

talk

PS

UP

PS

UP

PS

UP

~

LPC80

LPC80

FPE/PE

bat

bat

bat

Stack 1

LPC80

bulktalk

PS

UPbat

~

~

~

~

Bonding(Equalizing)Conductor

-X12-X12

230/1 15V

UP

L80XF

UPL80XF

UPL80XF

UPL80XF

UPL80XF

UPL80XF

UPL80XF

MCM

C39334-Z7052-C22 Socket Strip (GER/IM)S30807-H6586-X NAPSK (USA/KAN)C39334-Z7052-C31 Socket Strip (BRA)

See section 2.5.1-48VMDF

~

-48VMDF

C39195-Z7001-C55 Mains Power Cord (GER/IM)V42405-J1-A216 Mains Power Cord (BRA)C39195-Z7001-C14 Mains Power Cord (USA/KAN)

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Chapter 3: GuidelinesApplications and Networks

2.5.2.2 AC Connection with Non-Redundant Shelf Power and Battery Manager (UP Boxes)

bulk

bulk

bulk

ta lk

ta lk

talk

PS

U P

PS

U P

PS

U P

bulk

bulk

bulk

talk

ta lk

ta lkPS

UP

PS

U P

PS

U P

CSPCI Box

-X14

bat

bat

bat

bat

bat

bat

MDFHX6

+ /- 48V

Stack 1 Stack 4

Bonding(Equalizing)Conductor

F PE/PE FPE/PE

-X1 1

UPL80XF

UPL80XF

UP

L80XF

UP

L80XF

UP

L80XF

UPL80XF

- X11

bulkta lk

PS

UP

UPL80XF

bat

See section2.5.1

ALIN Cable

MC M

L PC8 0

LPC8 0

LPC80

LPC8 0

L PC8 0

LPC80

L PC8 0

AC

UACD

to battery

LPC

LPC

BAMX1 BAMX2

PDPX2(1)

EBCCB(2)

EBCCB(1)

PDPX2(2)

1Bulk Talk

2 1 2BulkTalk

1 2 1 2

-X12

-48VMDF

-X12

-48VMDF

Mains Mains

C39334-Z7052-C22 Socket Strip (GER/IM)S3 0807-H65 86-X NAPSK (USA/CAN)C39334-Z7052-C31 Socket Strip (BRA)

C39195-A7944-B16 DC Line Stack 1 and 2C39195-A7944-B17 DC Line Stack 3 and 4

AC

DPX

C3919 5-Z70 01-C55 Mains Power Co rd (GER/IM)V4240 5-J1-A216 Mains Power Co rd (BRA)C3919 5-Z70 01-C14 Mains Power Co rd (USA/KAN)

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2.5.2.3 Emerson UACD Power Box for HiPath 4000 V2.0/V3.0/V4

From 01/2006 onwards, the UACD power box S30805-G5405-X has been replaced by a rack-mount variant supplied by Emerson. This applies to all HiPath 4000 V2.0/V3.0/V4 new system orders.

No fundamental changes were required to the existing marketing structure, since the basic dependencies on the ordered feature and PNOTE items continued to exist unchanged. The differences between the Emerson UACD and the "old" vari-ant are described below.

As for the "old" UACD, a maximum of two Emerson UACD power boxes will be possible per system, each of which can accomodate up to three LPC units. As before, each rectifier unit (LPC) will support a continuous load of 23A (heat emis-sion restriction).

In contrast to the Battery Management opotion for HiPath 4000 V2.0/V3.0 rack-mount systems with the "old" UACD, the additional battery charging power (as defined in AYP706) with the Emerson UACD is no longer restricted to 46A (2 rec-tifier units per system). With the Emerson UACD, up to 6 × 23A is now available per system.

Since the Emerson UACD is not compatible with the "old" UACD (apart from the different hardware design, the Emerson UACD is also electrically incompatible), systems that are already equipped with the "old" UACD or the PSDXE shelf (Hicom 600 ECX hardware) can only be expanded with the "old" components.

No changes are necessary at the "Feature Level" of the Sales Tools ("Expert" user interface), since the type of UACD delivered is stored in the PARK inventory data, and any system expansion orders will automatically include the correct hardware for the UACD variant in use, as required.

The battery charge voltage PNOTE AYP716 is no longer required for systems with the Emerson UACD, since this can be set directly on the Master Controller (between 44V and 59V).

The Emerson UACD has a "power share" connection between the two boxes (as the PSDXE has in the Hicom 300 ECX hardware). This means that, for "n+1" redundancy, only one extra rectifier unit needs to be calculated over and above the total requirement (as opposed to one extra LPC per UACD box).

The Emerson UACD is a 19" rack-mount unit (3U). For thermal reasons, a separate rack is required for the Emerson UACD box or boxes (maximum configuration of 2 UACD boxes per system), which must be provided locally.

For more detials, please consult the HiPath 4000 Service Manual:

https://www.g-dms.com/livelink/livelink.exe?func=ll&objId=28779007&objAction=KMOSSDownload

Front view of Emerson UACD:Height: 3U

Fuse/Circuit Breaker Panelmax. 1 × 200A, 4 ×40A

Master Controller (1st UACD) or Slave Controller (2nd UACD

Max. 3 Rectifiers (LPC) each with1500W / 48V, 23 amp. continuous load

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Rear View /Terminals

Earthingbracket

CAN busterminals

Mainsterminal

Batteryterminals

Distributionterminals

Earthingterminal

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Chapter 3: GuidelinesApplications and Networks

Rectifier GR90/1500W (EZY:S30050-K6383-X) Technical Data

General

Input values

Output values

Parameter Min. Typical Max. Unit

Ambient temperature Normal operation -5 +55 °C

Maximum values in operation -40 +75 °C

Storage -40 +70 °C

Input voltage Safe 0 320 V AC

Circuit insulation voltage Primary, to PE 4242 V DC

Secondary, to PE 2121 V DC

Parameter Min. Typical Max. Unit

Input voltage Rated 100 250 V AC

Maximum values in operation 85 290 V AC

Frequency 50 Hz 45 50 65 Hz

60 Hz 45 60 65 Hz

Dead time >15 ms

Fuse (s. b.) Internal 10 A

Current Normal operation <9 <13 A

Power-on peak A

Load power factor 230 V AC @ >40 % load 95 %

230 V AC @ >50 % load 98 %

230 V AC @ 100 % load 99 %

THD 230 V AC @ 50 % load 10 %

230 V AC @ 100 % load 5 %

Efficiency factor 230 V AC @ 50 to 100 % load 90 91 %

Parameter Min. Typical Max. Unit

Voltage Adjustable range -43 -58·5 V DC

Factory setting -53·9 -54·0 -54·1 V DC

Output power At 200 to 290 V AC prim. >1500 W

At 176 to 200 V AC prim. >1350 W

At 100 V AC prim. >750 W

Output current @ -54·0 V DC > 28 A

@ -44·0 V DC 34 A

@ short-circuit <36 A

Control accuracy (static)

Between 5 and 100 % load < 0·5@ 25 °C

%

Control accuracy (dynamic)

Per load change between 10 and 90% of full load. Recovery Time <10 ms

± 5% of the output voltage V DC

Ripple and noise Psophometer reading <2·0 mVrms

According to ETS 300 132-2 (range 25 Hz – 20 kHz)

<20 mVrms

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Block Diagram of UACD Connections

Power Connections to the System Racks or Stacks

The connections between the individual components (shelf boxes) in the racks remain unchanged, but the DC connection between the Emerson UACD and the racks or stacks has changed, as shown by the illustration and table below.

M: Master Sub-RackS: Slave Sub-RackR: RectifierB: Circuit Breakers 40A for DC lines to racks/stacks

100A optional (currently not in use) 180A for battery connection

LVD: Low-Voltage Disconnect

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Example: Power Connections between the Emerson UACD and a "Pure 19" Rack System"

Power Lines and Circuit Breakers of the Emerson UACD

Part Number Description Comment

C39195-A7944-B16 Line to stack/rack 1 and 2

1 × for every 2 UP boxes (+ CSPCI) in stacks 1 and 22 × per stack for stacks 1 and 2 if UPR boxes are installed

C39195-A7944-B17 Line to stack/rack 3 and 4

1 × per 2 UP boxes in stacks 3 and 42 × per stack for stacks 3 and 4 if UPR boxes are installed

C39195-A7556-B540 0V line 1 × for each C39195-A7944-B16/17 line as 0V return for UP/UPR stack systems2 × for every 2 SAPPE boxes (+CSPCI) in each rack (both incoming and return in these cases)

V39118-Z7180-A11 40A Circuit Breaker 2 × per stack if UPR boxes are installed1 × for every 2 UP / SAPPE boxes (+ CSPCI) in each stack/rack

V39118-Z7180-A13 180A Circuit Breaker For battery connection.1 × per UACD (master and slave)

Rack-> 3-> 4

MDF ..

Rack 1 Rack 2

+-

- 48V +

-+

+-

- 48V +

FPE/PE FPE/PE

-+

2 x 16mm2

2 x16mm2

-+

AP3700

AP3700

AP3700

AP3700

AP3700 AP3700

AP3700

CSPCI

Ground Bar

- + DCDR

All lines 10mm2

§)

*) FPE lines must have a 10mm2 wire cross-section at minimum (standard: AWG 6) §) PE line connected here

*)

Battery

+ -

DCDR

- +

230/ 380V

UACD 1

- +

230/ 380V

UACD 2

§)

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2.5.2.4 External -48V DC Connection with Non-Redundant Shelf Power (UP Boxes)

withJumper

bulk

bulk

bulk

talk

talk

talk

PSUP

PSUP

PSUP

bulk

bulk

bulk

talk

talk

talk

PSUP

PSUP

PSUP

-48VMDF

CSPCI Box

-X14

DC Connection-48V

bat

bat

bat

bat

bat

bat

MDFHX6

+/-48V

Stack 1 Stack 4

-48VMDF

-X12 -X12

Bonding(Equalizing)Conductor

FPE/PE FPE/PE

DC Connection-48V

withJumper

-X11

UPL80XF

UPL80XF

UP

L80XF

UP

L80XF

UPL80XF

UPL80XF

-X11

bulktalk

PSUP

UPL80XF

bat

DC Connecting Cable C39195-A7954-B33

See section 2. 5.1

MCM

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2.5.2.5 AC Connection with Redundant Shelf Power (UPR Boxes)

bulk

bulk

bulk

talk

talk

PSUP

PSUP

PSUP

PSUP

PSUP

talk

PSUP

bulk

bulk

bulk

talk

talk

PSUP

PSUP

PSUP

PSUP

PSUP

talk

PSUP

-X12

-X15 -X15

Stack 1 Stack 4

FPE/PE

-48VMDF

-48VMDF

FPE/PE

CSPCI-Box

+/-48V

-X14

LTUWUPR

LTUWUPR

LTUWUPR

LTUWUPR

LTUWUPR

LTUWUPR

T

MDFHX6

Bulk1 2

UACD(2)

PDPX2Talk

1 2

EBCCB

Bulk1 2

PDPX2Talk

1 2

UACD(1)

to battery

LPC

LPC

LPC

LPC

ACDPX

ACDPX

AC

AC

-X11

PSUP

PSUP

bulktalk

-X12

LTUWUPR

-X11

-48V

-48V

See section 2.5.1

C39195-A7944-B16 DC Line Stack 1 and2C39195-A7944-B17 DC Line Stack 3 and4

ALIN Cable

MCM

to battery

Internally (on the system side of the UACD), the power supply is DC/DC

EBCCB

BAMX2

BAMX1

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Chapter 3: GuidelinesApplications and Networks

2.5.2.6 External -48V DC Connection with Redundant Shelf Power (UPR Boxes)

bulk

bulk

bulk

talk

talk

PSUP

PSUP

PSUP

PSUP

PSUP

talk

PSUP

bulk

bulk

bulk

talk

talk

PSUP

PSUP

PSUP

PSUP

PSUP

talk

PSUP

-X12

-X15 -X15

Stack 1 Stack 4

FPE/PE

-48VMDF

-48VMDF

FPE/PE

CSPCI Box

+/-48V

LTUWUPR

LTUWUPR

LTUWUPR

LTUWUPR

LTUWUPR

LTUWUPR

MDFHX6

-X11

PSUP

PSUP

bulktalk

-X12

LTUWUPR

-X11

MCM

DC Connection-48V

DC Connection-48V

DC Connecting Cable C39195-A7954-B33

See section 2.5.1

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2.5.2.7 System with AP3700 (SAPPE), AC Connection

CSPCI

RTM

SAPPE 1

LUNA2

LUNA2

LUNA2

LUNA2

SAPPE 3

SAPPE 2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

SAPPE 12

SAPPE13

SAPPE14

SAPPE 15

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

ACAC

CSPCI

RTM

SAPPE 1

LUNA2

LUNA2

LUNA2

LUNA2

SAPPE 3

SAPPE 2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

SAPPE 12

SAPPE13

SAPPE14

SAPPE 15

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

ACAC

19" Rack 4 19" Rack 1

Rear View

Socket Strip from Rack Manufacturer

C39195-Z7001-C17Mains Power Cord (GER/IM)

C39195-Z7001-C97Mains Power Cord (USA/KAN)

V42405-J1-A216Mains Power Cord (BRA)

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Chapter 3: GuidelinesApplications and Networks

2.5.2.8 System with AP3700 (SAPPE), DC Connection (Field Trial Solution)

LUNA2

LUNA2

LUNA2

LUNA2

CSPCI

RTM

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

SAPPE 12

SAPPE 13

SAPPE 15

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

DC + / - 48V

Bulk1 2

UACD (2)

BAMX2

PDPX2

Ta lk1 2

EBCCB

Bulk1 2

BAMX1

PDPX2

Ta lk1 2

EBCCB

UACD (1)

LPC

LPC

LPC

LPC

ACDPX

ACDPX

AC

AC

*-X10

*-X10

*-X10

*-X10

SAPPE 3

SAPPE 1

+ -

-+

-+

-+

-+

-+

C39195-A7944-B16/-B17

C39195-A7944-B33

C39195-A7944-B16

LUNA2

LUNA2

LUNA2

LUNA2

CSPCI

RTM

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

SAPPE 12

SAPPE 13

SAPPE 15

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

DC + / - 48V

Bulk1 2

UACD (2)

BAMX2

PDPX2

Ta lk1 2

EBCCB

Bulk1 2

BAMX1

PDPX2

Ta lk1 2

EBCCB

UACD (1)

LPC

LPC

LPC

LPC

ACDPX

ACDPX

AC

AC

*-X10

*-X10

*-X10

*-X10

SAPPE 3

SAPPE 1

+ -

-+

-+

-+

-+

-+

C39195-A7944-B16/-B17

C39195-A7944-B33

C39195-A7944-B16

Required for UACD(included in deliverypackage of UACD)

For ext. –48V connection

tobattery

tobattery

19" Rack 119" Rack 4

Rear View

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Chapter 3: GuidelinesApplications and Networks

2.5.2.9 System with AP3700 (SAPPE), DC Connection (Series)

FAN Unit

FAN Unit FAN Unit

DCDR

19" Rack 1

CSPCI

RTM

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

AP 3700

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

Rear View19" Rack 2...4

AP 3700

AP 3700

AP 3700

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

2)

3)

3)

3)

3)

(F)PE

DCDR

DC + / - 48V

2)

2)

DC + / - 48V

3)

2)

(-)(-)(-)(-)

6)

8)

8)

L1-L1-L1+L1+PE

Connectionwithout jumpered terminals or

with jumpered terminals

L1-L1-L1+L1+PE

FAN Unit

1)

1)

1)

3)

1)

*)

(+)(+)

*) Important:Separate (point-to-point) PE connection with external ground bar required for each rack. Fix lines securely with cable truss.

1) ... 12) Indices: see table in section 2.5.2.13

4)or12) 4a) 4)or12)

4a)

*)

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Chapter 3: GuidelinesApplications and Networks

2.5.2.10 DCDR Breaker Box Power and Fuse Connections

(-)(-)(+) (+)

DCDR Rear ViewS30122-K7698-X

16A fuse for3rd + 4th Box

16A fuse for1st + 2nd Box

10)

1A fuse forMDF

11)

X32 X30 X31 X29

X04 X02 X03 X01

Terminal Block

Terminal Block

1) 1)

2) 2)

10)

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Chapter 3: GuidelinesApplications and Networks

2.5.2.11 Overview of External Ground and 0V Connections for 19" Rack Installations

MDF ..

Rack 1 Rack 2

+-

- 48V +

-+

+-

- 48V +

FPE/PEFPE/PE

-+

2 x16mm2

2 x16mm2

-+

AP3700

AP3700

AP3700

AP3700

AP3700AP3700

AP3700

CSPCI

Ground Bar

-+DCDR

All lines10mm2

UACD 2

UACD 1

0V Bar

(Rear View)C39165-A7080-D1

~~

§)

*) FPE lines must have a 10mm2 wire cross-section at minimum (standard: AWG 6)

§) PE line connected here

*)

Battery+ -

DCDR

4a)

4)

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Chapter 3: GuidelinesApplications and Networks

2.5.2.12 -48V MDF Connection in AP 3700 Shelf

LU

FAN Unit

CSPCI

RTM

AP 3700

LUNA2

LUNA2

LUNA2

MCM

AC

7)

6)

(F)PE

3)

7)

HP 4000

-

MDFHX8/6

9)

Fuse PanelS30805-H5412-X10with 2 × 1A m.c.b.

*) Fuse panel can be installed in the following slots: SAPPE -> X101 - X106

*)

To SAPPE (AP3700) backplane:- connector X212

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Chapter 3: GuidelinesApplications and Networks

2.5.2.13 Key to the Diagrams in Sections 2.5.2.9 to 2.5.2.12 (Cable List)

Index Part Number Name/ Description

From To Comment

1) S30122-X8019-X4 (included in the delivery package of the DCDR)

Line 2 × +/- 48V

DCDR Rack terminal block (see index 8)

2) C39195-A7944-B56 (included 4 × in the delivery package of the DCDR)

Line +/- 48V

DCDR Fuses X01, X02, X32 and X31

CSPCI / AP3700 See connec-tion dia-gram

3) Installation Material (MOMAT)

Line 10mm2 AP3700 PE terminal Main PE terminal of rack

(F)PE

4) C39195-A7944-B16/17 (1 × -B16 line per two boxes in racks 1 and 2,1 × -B17 line per two boxes in racks 3 and 4)

Line UACD (1), (2), -48V, Bulk/Talk

Rack terminal block (see index 8)

4a) C39195-A7556-B540 0V line (1 required for each C39195-A7944-B16/17 line)

UACD ground bar Rack terminal block (see index 8)

5) C39195-A7488-B800 Line 35mm2 Rack, main PE termi-nal

External ground bar (F)PE

6) From rack manufacturer 230 V AC power socket strip

19" rack Building mains power connection

7) C39195-Z7001-C17 or C39195-Z7001-C191orC39195-Z7001-C97

Mains Power Cord CSPCI / AP 3700 19" rack socket strip GER/IM USA/CAN

BRA

8) S30122-X8018-X2 (included in the delivery package of the DCDR)

Terminal Block Installed in 19" Rack

9) C39195-A7240-B500 or C39195-A7240-B951

Line Fuse panel MDF

10) V39118-Z7180-A6 (automatically calculated by the tools: 1 × per AP3700)

16A m.c.b.

11) V39118-Z7180-A8 (automatically calculated by the tools: 2 × per DCDR)

1A m.c.b.

12) C39195-A7954-B33 Power Cable -48V DC source Rack terminal block (see index 8)

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2.5.2.14 Technical Data of the Power Supply and Distribution Units ACPCI, DCPCI and LUNA2

Attention: Preliminary Data

ACPCI DCPCI LUNA2Variety Parts List S30124-X5166-X S30124-X5167-X S30122-K7686-M1Application CSPCI Shelf in Host

CSAPE in AP3700 IPCSPCI Shelf in Host

CSAPE in AP3700 IPAP3700/AP3700 IP

Input

Voltage Range (AC) 90 – 264 V AC --- 90 – 264 V ACVoltage Range (DC) --- 36 – 72 V DC 42·5 - 58 V DCFrequency 47 – 63 Hz --- ?Rated Current 2·35 A @ 110 V AC 5·35 A @ 48 V DC 1·67 A @ 110 V ACNominal Power (at 230V AC) ca. 250 W --- ca. 220 WPower Factor 0·983 --- 0·896Efficiency 83·4 % @ 230 V AC 81·6 % @ 54 V DC 94·5 % @ 240 V ACSwitch-On Surge 12 A @ 264 V AC 2·96 A @ 60 V DC 4·72 A @ 264 V AC

Output

Power (typical/maximum) 176·3/228·9 W 176·3/228·9 W 172 WMax. Current

Nominal voltage/nominal current/max. current + 3·3 V/10·3/12·6 A + 3·3 V/10·3/12·6 A + 5 V/12 ANominal voltage/nominal current/max. current + 5·0 V/21·5/30·5 A + 5·0 V/21·5/30·5 A - 5 V/1·8 ANominal voltage/nominal current/max. current + 12 V/2·9 A + 12 V/2·9 A + 12 V/1·7 ANominal voltage/nominal current - 12 V/1·25 A

Nominal voltage/nominal current - 55V/2 A

Battery trickle-charge voltage/current

54·7 V/2 A53·5 V/2 A

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2.6 Cable Connections

2.6.1 CSPCI Cable Connections

1. LAN (male - male) Customer, Service, IPDA, Atlantic LAN

2. LAN (male - male) 8 × Customer, 2 × Service

3. ASW line for GER/IM (for "X" variant of MCM). Available lengths: 5m, 10m, 15m, 20m, 35m, 55m, 95m

4. ASW line for USA/CAN (for "X" variant of MCM). Available lengths: 5m, 10m, 15m, 20m

5. Two reference clock cables S30267-Z304-A9 are included in the AICB delivery (fixed items in variety parts list)

6. V.24 cable for terminal connection. Available lengths: 5m, 10m, 20m, 30m, 50m

7. Max. 15 LAN cables from RTM to LTUCA cards, in duplex systems same amount again from 2nd RTM. Available lengths: 0·7m, 2m, 5m, 10m (12m cable cannot be used for connection to LTUCA)

8. V.24 cable for modem connection. Available lengths: 5m, 10m

9. ALIN cable is fixed item in variety parts list of UACD

10. Available lengths: 0·7m, 2m, 5m, 10m, 12m.

11. ASW line for GER/IM (for "X100" variant of MCM). Available lengths: 10m, 20m, 55m, 95m

12. ASW line for USA/CAN (for "X100" variant of MCM). Available lengths: 10m, 15m

Slot Type/Card

1 / 2 / 5---- DSCXL ----

6SF2X8

Rear Connection--- RTM ---

Rear Connection--- MCM ---

Cable Connection Type (KAST)

LAN8port

V.24Null-

Modem

V.249 - 24-

pin

LAN8port

LAN8port

V.24Null-

Modem

Ref.Clock25/25

ALIN10-10

MDFASW

C30195-Z7211-A... 10) 7 ... 120 7 ... 120 7 ... 100

S30267-Z355-A.. 25 25

S30267-Z19-A... 30

S30267-Z317-A... 3) X

S30267-Z358-A... 4) X

C39195-Z7612-A... 11) X

C39195-Z7614-A... 12) X

S30267-Z304-A... 5) 9/40

S30267-Z314-A... 6) 50 .. 500

S30257-Z7752-A... 8) 50/100

S30257-Z7904-A25 9) X

fron

t cab

le

fron

t cab

le

fron

t cab

le

fron

t cab

le

rear

cab

le

rear

cab

le

rear

cab

le

rear

cab

le

rear

cab

le

Service Adapterfor

Modem/Terminal

2)1) ToLTUCA

7)

AICBAECB

MDF3) 4)

UACD/UDCD

Box

CSPCI

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2.6.2 CSPCI Cable Connections to the Peripheral Shelves

Connections between CSPCI and UP/UPR/SAPPE (AP3700)

In the case of the CSPCI central control shelf, the cable connection between the central control and the peripheral shelves is realized as a LAN connection to the LTUCA controller in each UP or UPR or SAPPE shelf box. The CSPCI connection now runs via a "Rear Transition Module", and is no longer a direct backplane connection as was formerly the case (e.g. CCDAX). In the peripheral shelf, the LAN cable is plugged into the front panel of the LTUCA.

Schematic Diagram (side view):

Basic Control/Shelf Cable Connections

The basic cable connections are set out below, and are always required for all system configuration types.

Duplex systems (option AYG101) require additional duplex cabling, as shown in the diagram on the following page.

C39195-Z7211-A...*) 20 20 20/50 20 50 50 50 50 50 50 50 50 50 50 50

Cable Plug Type CCA CCA CCA CCA CCA CCA CCA CCA CCA CCA CCA CCA CCA CCA CCA

UP/UPR Box 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

Slot/Position 073 073 073 073 073 073 073 073 073 073 073 073 073 073 073

CSPCI Slot RTM for mono systems

R1 R1 R1 R1 R1 R1 R1 R1 R1 R1 R1 R1 R1 R1 R1

CSPCI Slot RTM for duplex systems

R2 R2 R2 R2 R2 R2 R2 R2 R2 R2 R2 R2 R2 R2 R2

Cable Connection Type (KAST

LTU1

LTU2

LTU3

LTU4

LTU5

LTU6

LTU7

LTU8

LTU9

LTU10

LTU11

LTU12

LTU13

LTU14

LTU15

1st RTM

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Duplex Control/Shelf Cable Connections (in addition to basic connections)

*) If the CSPCI central control shelf is installed in a 19" rack (installation variant A11, AYP756 = 1), the 10-meter cable (C39195-Z7211-A100) will always be used for the internal connections.

If the system has SAPPE (AP3700) shelf boxes, the topmost box in the first rack will already need a 5m cable.

2.6.3 MDF Cabling

The MDF cable connections follow the same rules as for the HiPath 4500 V1.0.

Only 24-pair braided shield CABLU (cable units) or open-end cables are available via the standard order process. Cards that require connections to the MDF are indicated by the appropriate value in the "WP" (wire pairs) column of the Line Card Table (see HiPath 4000 V1.0 Hardware Specification, Z3-HP4-04, Section 7.2).

The MDF cable units (CABLU) or open-end cables are plugged into the backplane connectors of the slots in the shelf that contain the cards that require an MDF connection. Please refer to the slot plans of the shelf types concerned (L80XF, LTUW or SAPPE).

Project planning support for the MDF cables is provided by the Configuration Tool for the German and IM markets only. All Champ connector cables for the USA/CAN market must be ordered/provided locally, the only exception being the ASW line.

Standard MDF Cable Connections with CABLU for MDFHX6, S30805-U5276-X

The standard MDF cable connections are carried out with so-called cable units, or "CABLU". These come factory-equipped with the shelf backplane connector at one end and a 24-pair splitting strip at the MDF end. A CABLU has a stan-dard length of 10m.

S30269-Z163-A100 CABLU, 24 wire pairs, braided shield, 10m

Older line card types without integrated overvoltage protection each require a special adapter (CABLUE, Part Number S30807-K6192-X). These cards are indicated by an "X" in the "CABLUE?" column of the Line Card Table (see HiPath 4000 V1.0 Hardware Specification, Z3-HP4-04, Section 7.2). This does not apply for USA/CAN.

ASW Line GER/IM for MCM variant S30810-Q2313-X: only included in delivery if AYP748=1. S30267-Z317-A100 ASW line, 10m

ASW Line GER/IMfor MCM variant S30810-Q2313-X100: only included in delivery if AYP748=1. C39195-Z7612-A100ASW line, 10m

C39195-Z7211-A...*) 20 20 20/50 20 50 50 50 50 50 50 50 50 50 50 50

Cable Plug Type CCB CCB CCB CCB CCB CCB CCB CCB CCB CCB CCB CCB CCB CCB CCB

UP/UPR Box 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

Slot/Position 073 073 073 073 073 073 073 073 073 073 073 073 073 073 073

CSPCI Slot R5 R5 R5 R5 R5 R5 R5 R5 R5 R5 R5 R5 R5 R5 R5

Cable Connection Type (KAST

LTU1

LTU2

LTU3

LTU4

LTU5

LTU6

LTU7

LTU8

LTU9

LTU10

LTU11

LTU12

LTU13

LTU14

LTU15

2nd RTM

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ASW Line USA/CAN for MCM variant S30810-Q2313-X: always included in delivery. C39195-Z7614-A100ASW line, 10m

ASW Line USA/CAN for MCM variant S30810-Q2313-X100: always included in delivery. C39195-Z7614-A100ASW line, 10m

MDF Cable Connections with Open-End Cables

For non-HiPath main distribution frames, or for greater distances between the MDFHX6 and the system shelves, 24-pair open-end cables must be used instead of the CABLU. These do not come factory-equipped with the 24-pair splitting strips for the MDF., and are available in different lengths, up to a maximum of 95m.

S30267-Z196-A... Open-end cable, 24 wire pairs, braided shield.Available lengths: 15m, 25m, 35m, 55m, 95m

C39104-A7001-D1 Set Conductive Copper Tape 1 × per 16 open-end cables (not for SWZ)

Older line card types without integrated overvoltage protection each require a special adapter (CABLUE, Part Number S30807-K6192-X). These cards are indicated by an "X" in the "CABLUE?" column of the Line Card Table (see HiPath 4000 V1.0 Hardware Specification, Z3-HP4-04, Section 7.2). This does not apply for USA/CAN.

ASW Line GER/IM for MCM variant S30810-Q2313-X: only included in delivery if AYP748=1, length defined with PNOTE AYP744

S30267-Z317-A... ASW line Available lengths: 5m, 10m, 15m, 20m, 35m, 55m, 95m

ASW Line GER/IM for MCM variant S30810-Q2313-X100:only included in delivery if AYP748=1, length defined with PNOTE AYP744

C39195-Z7612-A... ASW line Available lengths: 10m, 20m, 55m, 95m

ASW Line USA/CAN for MCM variant S30810-Q2313-X: always included in delivery. S30267-Z358-A... ASW line Available lengths: 5m, 10m, 15m, 20m

ASW Line USA/CAN for MCM variant S30810-Q2313-X100: always included in delivery. C39195-Z7614-A... ASW line Available lengths: 10m, 15m

2.7 Main Distribution Frames

No new MDF variants were introduced with HiPath 4000 V2.0, and none will be introduced with HiPath 4000 V3.0 or V4. For this reason, section 9 of the HiPath 4000 V1.0 Hardware Specification Z3-HP4-04 will remain valid.

The following MDF dependencies exist for HiPath 4000 new system orders for Version 2 or later:

*) The 19" Patch Panel is available in 2 different hardware variants: one with no further options and one suitable for installing a PFT (ALUM) relay and up to eight surge arresters (UESAG).

Product/ Configuration

MDF Type MDF Cable Connections Comment

HiPath 4000 with UP/UPR shelf boxes (stacks)

MDFHX6 CABLU, 10m or Open end cables, max. 95m

non-HiPath MDF Open end cables, max. 95m

HiPath 4000 with SAPPE (AP3700) shelf boxes (stacks)

NPPxx Plug-In Patch Panel

Patch cords must be provided locally (RJ45)

Also known as "Aggregator Patch Panel" (German term)

19“ Patch Panel*) Patch-Panel CABLU 2m/5m

MDFHX6 CABLU, 10m or Open end cables, max. 95m

non-HiPath MDF Open end cables, max. 95m

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3 IPDA

General Information

With the introduction of HiPath 4000 V2.0, the NCUI2/NCUI2+ card replaced the NCUI, and with the introduction of HiPath 4000 V4, this was, in turn, replaced by the NCUI4 for new orders. The NCUI controller cards are no longer included in the basic equipment of the IP access points; the two different variants of the NCUI2/NCUI2+ and the NCUI4 are marketed under separate feature numbers in each case, so they must always be ordered separately.

In addition, the configuration rules for IPDA locations have changed, compared with V1.0. From HiPath 4000 V2.0 onward, a location may consist of exactly one access point. However, more than one "location" can be installed in the same rack or stack, to serve the same site. A new PNOTE (AYP767) has been created in order to be able to define the installation hardware required for each stack or rack-mount access point/location ordered (e.g. roller platform, brackets, etc.).

When upgrading a HiPath 4000 V1.0 to V2.0 or V3.0, existing NCUI cards (S30810-Q2302-X/-X10) in existing loca-tions do not necessarily need to be exchanged for NCUI2/NCUI2+ cards, unless customers wish to take advantage of the additional features the NCUI2 offers.

When upgrading to HiPath 4000 V4, all NCUI cards (S30810-Q2302-X/-X10) or NCUI2 cards (S30810-Q2305-X5/-X10) in the existing IPDA locations of the configuration must be exchanged for the new NCUI4 card, as HiPath 4000 V4 does not support the older controller card types. Only the later NCUI2+ cards ( part numbers S30810-Q2305-X35/-X40) will continue to be supported. Excepted are the card issues 01 and 02 of NCUI2+. Exchange of these issues is mandatory.

The AP 3500 IP will continue to be marketed under HiPath 4000 V2.0/V3.0/V4, but with a project-specific release only.

A new IPDA Access Point in 19" rack-mount design is now also available, the AP3700 IP (separate release). A special "free-standing installation" kit may be ordered to allow the shelf to be set up independently of a rack, if required. In addi-tion, the AP3700 IP has a full remote survivability option, the "Survivability Unit for AP3700 IP", or CSAPE. The hard-ware comprises a cPCI Cassette with DSCXL processor, hard disk, MO drive/CF reader (as of HiPath 4000 V4) and power supply. The CSAPE ensures that the remote IPDA Access Points can continue functioning in the event of a failure of the host connection.

An IP access point based on an AP3500 IP cannot be expanded with an AP3700 IP at a later date (for technical reasons).

3.1 AP 3300 IP

For HiPath 4000 V2.0 and later versions, the NCUI2/NCUI2+/NCUI4 card must always be ordered separately. Otherwise, all the IPDA hardware descriptions and rules of the HiPath 4000 V1.0 Hardware Specification for this type of Access Point remain valid. Please refer to: Z3-HP4-04

- Section 4, IPDA - Section 7, Peripheral Line Cards - Section 8, Power Supply - Section 9, Main Distribution Frames

3.2 AP3500 IP / AP3505 IP

For HiPath 4000 V2.0 and later versions, the NCUI card must always be ordered separately. Otherwise, all the IPDA hard-ware descriptions and rules of the HiPath 4000 V1.0 Hardware Specification for this type of Access Point remain valid. Please refer to: Z3-HP4-04

- Section 4, IPDA - Section 7, Peripheral Line Cards - Section 8, Power Supply - Section 9, Main Distribution Frames

Since the introduction of the AP 3700 IP, orders for the AP 3500 IP require a project-specific release.

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3.3 AP3700 IP

3.3.1 SAPPB Box (AP3700 IP)

The SAPPB box (AP3700 IP) is an IPDA access point in 19" rack-mount design, for installation in industry standard 19" racks. The AP3700 IP replaces the AP3500/3505 IP solution for all HiPath 4000 new system orders, from Version 2.0 onwards.

Dimensions: Width = 440 mm, Height = 490 mm, Depth = 430 mm The height is equivalent to 11U (standard rack height units).

Hardware complement of the SAPPB (AP3700 IP), S30805-G5412-X:

Attention: The range of supported / released line cards for the SAPPB is somewhat restricted, compared to the standard peripheral box types. Please refer to the Line Card Table in section 5.

LUNA2 LUNA2

NC

UI

CPCI

LUNA2

PBC1

PBC2

PBC3

PBC4

PBC5

PBC9

PBC10

PBC11

PBC12

PCM (2.048 Mbps)Highway A

PCM (2.048 Mbps)Highway F

1 2 3 4 5 6 7 8 9 10

HDLC (2.048 Mbps)

cPC

I Cassette

(for Rem

ote Survivablity option)

CSAPE

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Key:

Slot Part Number Name Description

1 - 5 Slots for peripheral cards 1 - 5

6 S30810-Q2305-X5 / S30810-Q2305-X10 or S30810-Q2305-X35/ S30810-Q2305-X40 or S30810-Q2324-X / S30810-Q2324-X10/ S30810-Q2324-X11

NCUI2 NCUI2+ NCUI4

NBCS Control Unit IP, Version 2/Version 2+ Variants X5/X35 with 60 physical B-channels, Variants X10/X40 with 120 physical B-channels - 8 × PCM32 Highways - 1 × HDLC-Interface- 2 × 10/100 Base-T Fast Ethernet or NBCS Control Unit IP, Version 4 Variant X with 60 physical B-channels, variants X10/X11 120 physical B-channels. Variant X11 is a re-design of X10 due to the discontinuation of component parts by the supplier

7 - 10 Slots for peripheral cards 6 - 9

1, 4, and 8 (underneath)

S30122-H7686-X1replacesS30122-H7686-X

LUNA2 Mains Power Converter (AC/DC and DC/DC Converter) Nominal input range 90 - 264 V AC or 42·5 - 58 V DC. Max. 3 power supply units required, depending on power require-ments of installed cards (n+1 redundancy calculated)

X214 (backplane)

S30122-H5929-XreplacesS30124-X5109-X

RGMOD Ringing Generator Module 10 VA apparent power, sufficient for 320 analog subscribers (SLCA) at 0·15 erlangs each. Adjustable output, possible settings: 75Vrms/25Hz (European Norm) 65Vrms/25Hz (Switzerland) 75Vrms/50Hz (France) 85Vrms/20Hz (USA/CAN)

On right S30807-U6630-X CSAPE cPCI Cassette for Remote Survivability (option)

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3.3.2 Hardware of the CSAPE cPCI Cassette, S30807-U6630-X

Hardware for Remote Survivability option, ensures that the remote IPDA Access Points can continue functioning in the event of a failure of the host connection.

The CSAPE equipment and CPU performance rating is comparable with that of the HiPath 4300, which means that one CSAPE cPCI Cassette can support a maximum of 40 IPDA access points.

Hardware Part Numbers:

Unit Part Number Description HiPath 4000 Version

Until Mid-2007:

HDMO S30810-K2310-X Holder and controller unit for hard drive and MO drive, without pre-installed system software

From Mid-2007:

HDCF S30810-K2319-X300 Holder and controller unit for hard drive and CF card reader, without pre-installed system software

mandatory for V4

NOTE: From Mid-2007, the HCDF replaces the HDMO for all new system orders, and is mandatory for HiPath 4000 systems from V4. Existing HDMO units do not need to be replaced in V2.0 and V3.0, although a special order item (AYG130) is available for customers who wish to do so (e.g. for drive compatibility in networked systems).

MO Magneto-optical disk drive (IDE), 1·3 GB, fixed item in hardware com-plement of HDMO (S30810-K2310-X)

HD Hard disk drive (IDE), 40 GB/80GB, fixed item in hardware comple-ment of HDMO (S30810-K2310-X or -X100) and HDCF (S30810-K2319-X300)

CF CF card reader, fixed item in hardware complement of HDCF (S30810-K2319-X300)

HD

HD

/MO

or

HD

CF

DS

CX

L

AC

PC

I/D

CP

CI

MO

or

CF

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DSCXL S30810-Q2311-X Processor unit, 256 MB on-board memory V2.0/V3.0

+ additional 256MB memory module (V20810-F7095-B290) V2.0/V3.0

+ additional 1GB memory module (V20810-F7095-B270) V4/V5 upgrades

DSCXL S30810-Q2311-X300 Processor unit, 1 GB on-board memory V4/V5 newsystems

NOTE: The DSCXL S30810-Q2311-X with hardware status D5 is not supported in HiPath 4000 V4/V5. For upgrades to V4/V5, this processor unit must be replaced with the DSCXL S30810-Q2311-X300 with 1 GB on-board memory (1 × AYG133 must be ordered per CSAPE).

ACPCI S30122-H7682-X1relpacesS30124-X5166-X

Power supply module, AC/DC converter

OR

DCPCI S30122-H7683-X1replacesS30124-X5167-X

Power supply module, DC/DC converter

Unit Part Number Description HiPath 4000 Version

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3.4 Main Distribution Frames and MDF Cable Connections

No new MDF variants were introduced with HiPath 4000 V2.0, and none with HiPath 4000 V3.0 or V4. For this reason, section 9 of the HiPath 4000 V1.0 Hardware Specification Z3-HP4-04 will remain valid.

The following MDF dependencies exist for AP3700 IP orders under HiPath 4000 V2.0 and later versions:

*) The 19" Patch Panel is available in 2 different hardware variants: one with no further options and one suitable for installing a PFT (ALUM) relay and up to eight surge arresters (UESAG).

Product/ Configuration

MDF Type MDF Cable Connections Comment

AP3700 IP NPPxx Plug-In Patch Panel

Patch cords must be provided locally (RJ45)

Also known as "Aggregator Patch Panel" (German term)

19“ Patch Panel*) Patch-Panel CABLU 2m/5m

MDFHX8 CABLU, 5m/10m or Open end cables, max. 20m

non-HiPath MDF Open end cables, max. 20m

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4 Sundry Issues

4.1 Peripheral Cards

The master list of supported line cards for all current HiPath 4000 versions can be found at the address below.

https://www.g-dms.com/livelink/livelink.exe/open/28618924

Attention: The new AP3700 and AP3700 IP shelves only support a restricted range of the line cards. These are also shown in the master list.

New Cards Introduced With HiPath 4000 V2.0

- DIU2U S30810-Q2216-X 2 × PCM24 T1 (USA/CAN only)

- STMI2 (45/60 channels) S30810-Q2316-X for HG 3550, HG 3570, HG 3530 and HG 3540 (from V3.0)

- STMI2 (90/120 channels) S30810-Q2316-X10 for HG 3550, HG 3570, HG 3530 and HG 3540 (from V3.0)

- NCUI2 (45 channels) S30810-Q2305-X5 for AP 3300/3500/3700 IP

- NCUI2 (90 channels) S30810-Q2305-X10 for AP 3300/3500/3700 IP

Cards Supported in HiPath 4000 V2.0 and V3.0 But No Longer Marketed

- WAML S30810-Q2205-X Only affects router function

- DCF77 Time Signal Receiver

Cards No Longer Supported From HiPath 4000 V2.0 Onward

- DIUS2 S30810-Q2096-X200 Exception: can continue to be used in converted systems

- PSIO S30810-Q2139-X 6 × V.24

- SLC16 S30810-Q2151-X200/X300 Not allowed for original HiPath 4000 V2.0 systems (i.e., new orders as opposed to conversions).

Cards No Longer Supported From HiPath 4000 V3.0 Onward

- SLC16 S30810-Q2151-X200/X300 Not allowed in HiPath Cordless V3.0 and must be also: Base Station BS2 replaced in the course of system conversions or

upgrades.

Replacement:

- SLC24 S30810-Q2193-X200 Existing BS2 base stations must be replaced with BS4.

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4.2 Comparison of Analog Subscriber Line Modules

SLMA24 (SLMA2) (old)

SLMA3 < release 7 / SLMAC < release 6 (old)

SLMAC release –6 or later (old)

SLMAE (new)

SLMAR (new)

Part No. S30810-Q2246-X SLMA3 S30810-Q2191-X SLMAC S30810-Q2191-C

S30810-Q2191-C S30810-Q2225-X S30810-Q2199-X

Compati-ble for use in system versions

H300E V1.0, E V2.0, E V3.0, E V3.1, H300H V1.0 HiPath 4000 V1.0

H300E V3.0, E V3.1 H300H V1.0 HiPath 4000 V1.0 SLMAC (Clip) only for MAL und CHN

H300E V3.0, E V3.1 H300H V1.0 HiPath 4000 V1.0Released for all countries except Japan

up to HiPath 4000 V2.0

up to HiPath 4000 V2.0

Mixed configurations of SLMA245 and SLMA3 are permitted

Range of DC func-tions

Subscriber loop resistance 2x 750 ohms + device with 300 ohms Max. loop current < 41 mA Iloop for maximum loop resistance: 20 mA

Subscriber loop resistance 2x 500 ohms incl. device with 300 ohms Max. loop current 26 mA

Subscriber loop resistance 2x 750 ohms + device with 300 ohms Max. loop current 32 mA

Subscriber loop resistance 2x 750 ohms

Max. loop current 32 mA

Subscriber loop resistance 2x 1500 ohms Max. loop current 32 mA

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Ring cur-rent

Additional ring generator requiredRGE:10 VA power out-put65 V or 75 V with 25 Hz/50 HzRG-module:5 VA or 10 VA power output65 V or 75 V with 25 Hz, 75 V/50 Hz oder 85 V/20 Hz

25 Hz:GER, OES, SWZ, BEL, LUX, SPA, POR, GBR, NDL, BRA, ITL, POL, ARG, CHL, SIN, RSA, CHN, GRI, FIN, CRE, DAN, UNG, IRL, SWE, MEX, IND, THA, MAL 50 Hz: FKR 20 Hz: USA

Benchmark for dimensioning RGE/RG module:With 10 VA power output, approx. 320 analog subscribers can be operated with a traffic value of 0.15 Erl. (with-out group/parallel call). However, only one RGE/RG module is permitted for each shelf.

Asymmetrical ring current, related to Ground

Ring generator is integrated in the board. Configure using AMO ZAND.

25 Hz/45 Vrms: BRD, OES, SWZ, BEL, LUX, SPA, POR, GBR, NDL, BRA, ITL, POL, ARG, CHL, SIN, RSA, CHN, GRI, FIN, CRE, DAN, UNG, IRL, SWE, MEX, THA, MAL 50 Hz/45 VrmsFKR 20 Hz/45 VrmsUSA

Power output:35 REN for the entire board, Max per Port: 3 REN (GER/IM), 2 REN (USA)

Reference value for REN:Telephone with electromechanical ringer: 1 REN Telephone with electronic ringer: 0.1 – 0.4 REN

Symmetric ring current (a/b)

Ring generator is integrated in the board. Configure using AMO ZAND. 25 Hz/45 Vrms: BRD, OES, SWZ, BEL, LUX, SPA, POR, GBR, NDL, BRA, ITL, POL, ARG, CHL, SIN, RSA, CHN, GRI, FIN, CRE, DAN, UNG, IRL, SWE, MEX, THA, MAL 50 Hz/45 VrmsFKR 20 Hz/45 VrmsUSARemark:The ringer voltage is programmable and can be up to 42 Vrms.

Power output:35 REN for the entire board, Max per Port: 3 REN (GER/IM), 2 REN (USA)

Reference value for REN:Telephone with electromechanical ringer: 1 REN Telephone with electronic ringer: 0.1 – 0.4 REN

Symmetric ring current (a/b) i.e. devices which need an earth-related ringer aren't supported (e.g. ONS interfaces in USA).

Ring generator is integrated in the boardConfigure using AMO ZAND.

25/50 Hz/ 40-71 Vrms BRD, OES, SWZ, BEL, LUX, SPA, POR, GBR, NDL, BRA, ITL, POL, ARG, CHL, SIN, RSA, CHN, GRI, FIN, CRE, DAN, UNG, IRL, SWE, MEX, THA, MAL 50 Hz/45 VrmsFKR 20 Hz/45 VrmsUSARemark:The ringer voltage is programmable and can be up to 71Vrms balanced.

Power output:10 REN for the entire board, Max per Port: 3 REN (GER/IM), 2 REN (USA)

Reference value for REN:Telephone with electromechanical ringer: 1 REN Telephone with electronic ringer: 0.1 – 0.4 REN

Symetric and asym-metric ring are pos-sible

Ring generator is integrated in the board.External ring gener-ator is possible. Configure using AMO ZAND.

25/50 Hz/40-75 Vrms: BRD, OES, SWZ, BEL, LUX, SPA, POR, GBR, NDL, BRA, ITL, POL, ARG, CHL, SIN, RSA, CHN, GRI, FIN, CRE, DAN, UNG, IRL, SWE, MEX, THA, MAL 50 Hz/45 VrmsFKR 20 Hz/45 VrmsUSARemark:The ringer voltage is programmable and can be up to 71 Vrms balanced or 75V from external ring generator.Power output:7 REN for the entire board, 10REN if external ringMax per Port: 3 REN (GER/IM), 2 REN (USA)

Reference value for REN:Telephone with electromechanical ringer: 1 REN Telephone with electronic ringer: 0.1 – 0.4 REN

Symetric and asym-metric ring are pos-sible

SLMA24 (SLMA2) (old)

SLMA3 < release 7 / SLMAC < release 6 (old)

SLMAC release –6 or later (old)

SLMAE (new)

SLMAR (new)

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4.3 Line Card Distribution

The basic card distribution rules described in the HiPath 4000 V1.0 Hardware Specification (Z3-HP4.04, section 7.5) remain unchanged for HiPath 4000 systems from V2.0 onwards.

However, the classic definition of a "quarter shelf" as invariably having 4 card slots no longer applies to the AP3700 and AP3700 IP shelves. Given that the controller card divides a peripheral shelf into two halves, and the AP3700 and AP3700 IP shelves have an uneven number of standard card slots that is less than 16, it follows that a "quarter" shelf as described in the rules can also consist of three, two, or even just one card slot in these cases. The "quarter shelf" is therefore defined by the wiring, as shown by the crossover points of the highways in the "hardware complement" diagrams of the shelves concerned, earlier in this document. The "quarter shelves" are therefore counted from left to right, starting afresh in each shelf half, as follows:

For traffic calculation purposes, the same rules apply to all these quarter shelves, whether they consist of one, two, three or four slots.

4.4 Short Description of the TMANI Analog Trunk Module

> Part Number: S30810-Q2327-X100 with billing tone detection

> Part Number: S30810-Q2327-X101 without billing tone detection

> Part Number: S30810-Q2327-X182 Brazil only, without billing tone detection

> 8 analog Ports

> Supported from HiPath 4000 V3.0

> Supported by AP 3300, AP 3700, AP 3300 IP and AP 3700 IP

> No restrictions in quantity per shelf (for TM2LP only max. 3 or 5 were permitted, caused by -12V restrictions)

> No special card distribution rules, complies with the standard rules.

The TMANI is a new analog trunk module that replaces the analog trunk modules TM2LP and TMC16 in HiPath 4000. It is based on the TMANI board developed for the HiPath 3800.

Message-Waiting-Indication (MWI)

Comtel-3

MWI with glow lamps are sup-ported. RG S30810-Q2468-X must be used.Only permitted if UL1950 applies in the respective coun-try. It is not permit-ted in other coun-tries with other standards such as EN60950.

Comtel-3

MWI with glow lamps are not sup-ported.USA-model OPS interfaces are not supported.

Comtel-3

MWI with glow lamps are not sup-ported.USA-model OPS interfaces are not supported.

Comtel-3

MWI with glow lamps are sup-ported.USA-model OPS interfaces are not supported.

Comtel-3

MWI with glow lamps are sup-ported.USA-model OPS interfaces are sup-ported.

Shelf 1st Quarter 2nd Quarter Controller 3rd Quarter 4th Quarter

AP3700 Slots 1 - 4 Slots 5 - 6 Slot 7 Slots 8 - 11 Slots 12 - 13

AP3700 IP Slots 1 - 4 Slot 5 Slot 6 Slots 7 - 10 ---

SLMA24 (SLMA2) (old)

SLMA3 < release 7 / SLMAC < release 6 (old)

SLMAC release –6 or later (old)

SLMAE (new)

SLMAR (new)

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The TMANI supports the following line protocols:

> HKZ: same loop start protocol supported by TM2LP for the entire world

> DID Italy: DID protocol (Direct Inward Dial) supported by TM2LP for Italy

> DID Belgium: DID protocol supported by TM2LP for Belgium

> Ground for USA: ground start protocol supported by TMC16 for USA

> Loop for USA: loop start protocol supported by TMC16 for USA

> CAMA for USA: CAMA trunk protocol for emergency calls

In addition, the TMANI provides the following features:

> Clip Detection (Calling Line Identification Presentation)

> Busy Tone Detection

> Dial Tone Detection in TMANI board, not in SIU board

> DTMF Generation in TMANI board, not in SIU board

> DTMF Detection in TMANI board, not in SIU board

> MF CAMA Generation for emergency calls in E911 network (for caller identification)

Description of the new features:

> CLIP Detection: The TMANI can receive various calling line information from the exchange or central office (calling number, calling name, call type, etc.) and forward it to the HiPath 4000. Almost all on-hook CLIP protocols for DTMF or FSK are be supported. This is a new feature for HiPath 4000 - almost all (local and global) competitors are offering this feature.

> Busy Tone Detection: This feature detects the special tone sent by the exchange or CO when a subscriber outside the PBX releases a call (backward release). When the busy tone is detected, the call will be disconnected automatically. This is a new feature for HiPath 4000.

> MF CAMA Generation: This is required in order to comply with the CAMA protocol. The TMANI generates special multi-frequency digits to provide the caller identification necessary for emergency calls in the E911 network. This is a new feature for analog trunks in HiPath 4000.

Protocol TM2LP TMC16 TMANI

Loop Start HKZ x x

DID Italy x x

DID Belgium x x

Ground Start USA x x

Loop Start USA x x

CAMA for USA x

Feature TM2LP + SIU TMC16 + SIU TMANI

Clip Detection x

Busy Tone Detection x

Dial Tone Detection x x x

DTMF Generation x x x

DTMF Detection x x

MF CAMA Generation x

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> Dial Tone Detection*: Feature used to detect the dial tone sent by the exchange/CO when an analog connection is set up.

> DTMF Generation*: The TMANI can generate DTMF signals (digits) during outgoing calls.

> DTMF Detection*: The TMANI can detect DTMF digits in incoming calls (for DID protocols).

* The TMANI does not need a SIU for these functions, as it has on-board DTMF transmitters and receivers.

The TMANI also includes the general features of the previous line cards it replaces:

> Disconnection supervision for ground/loop start trunks

> Billing tone detectors: 12kHz/16kHz (only X100 variant, the 50Hz billing tone is not supported)

> Pulse dialling support (for rotary dial telephones)

Country-specific settings:

> Special ringback tone and dial tone cadences for each country

> Ground start / loop start hardware support for North American countries.

> Silent reversal is supported (can be switched on or off).

> Different CLIP protocol variants for different countries.

> No special hardware variants are planned for different countries.

4.5 DIUT2 Short Description

The DIUT2 card replaces the DIUN2 and DIU2U cards. The new card provides all the different functions in one: ISDN PRI (E1) or CAS connections for GER/IM (previously provided by DIUN2), as well as T1 connections with BOS or MOS/CVN for USA (previously provided by DIU2U).

The required function of the card is set with the aid of the FCTID parameter of the BCSU AMO when the generating batch is run in the switch. Mixed operation is not possible. For example, if FCTID=2 (CAS) is set, this applies to both ports/spans of the card.

Part Numbers: DIUT2 S30810-Q2226-X200

DIUN2 (predecessor) S30810-Q2196-X

DIU2U (predecessor) S30810-Q2216-X

Version Compatibility: DIUT2 is supported by the HiPath 4000 V3.0 and later software versions.

Functions: FCTID = 1 ISDN PRI (E1) (2 PCM30 connections per DIUT2)

FCTID = 2 CAS (2 PCM30 connections per DIUT2)

FCTID = 3 T1-BOS (1 PCM24 connection per DIUT2)

FCTID = 4 T1-MOS/CVN (2 PCM24 connections per DIUT2)

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Interfaces: 2 × Sub D 15-pin female connectors on the front panel, for the PCM30 or PCM24 connections, for the following cable units:

- 120-Ohms STP - 75-Ohms coaxial - 100-Ohms UTP (USA/Canada) - AMOM fiber adapter

The shelf traffic requirements of the DIUT2 card are calculated according to the standard card distribution rules, as described in the TI guideline Z3-HP4-04, chapter 7.4.

Further parameters of the DIUT2 card are described under:

https://www.g-dms.com/livelink/livelink.exe/open/28618924

Abbreviations:

CAS Channel Associated Signalling

MOS Message Oriented Signalling

BOS Bit Oriented Signalling

STP Shielded Twisted Pair

UTP Unshielded Twisted Pair

CVN Cornet-VN

4.6 Calculation Rules for the SIUX2/SIUX Cards

The rules for calculating the SIUX2/SIUX card requirements are basically the same as for HiPath 4000 V1.0. The only difference lies in the increased number of DTMF transmitters and receivers in the Rear Transition Module of the CSPCI Box and the NCUI2 (12 each). This results in a lower overall requirement of additional SIUX cards for DTMF, as shown in the new table in section 7.5 of Z3-HP4-04. Please note that this does not apply to HiPath 4000 V1.0 systems upgraded to HiPath 4000 V2.0 to V4, since these continue to use the original central control shelf.

4.7 Calculating the RG Module and RGE Card Requirements

There are no changes in the calculation method for RGMOD or RGE ringing generators compared with HiPath 4000 V1.0.

Please refer to the HiPath 4000 V1.0 Hardware Specification (Z3-HP4-04, Section 7.6).

4.8 Calculating the Power Load and LPC Requirements

The calculation method for the total system load has remained basically unchanged compared with HiPath 4000 V1.0. However, due to the new central control hardware, new power requirement values must be calculated for the basic system and its access points. Please refer to the relevant table in the HiPath 4000 V1.0 Hardware Specification (Z3-HP4-04, Sec-tion 8.2).

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4.8.1 Calculating the LUNA2 Requirements for the AP3700 and AP3700 IP

Rough Calculation

The following basic rules are based on a calculation of "n+1" redundancy, which means that one PSU slot must remain free for the additional LUNA2 required to provide the safety margin. In other words, the rules calculate up to 3 LUNA2 modules for an AP3700 and 2 LUNA2 modules for an AP3700 IP. In some cases, following these rules will therefore result in a less-than-optimum use of the available shelf slots.

Rule 1

A 2nd LUNA2 is required for 5 or more peripheral line cards.

Rule 2

A 3rd LUNA2 is required for 10 or more peripheral line cards (not relevant for AP3700 IP)

Rule 3

The presence of a high-power card (see table below) always requires an additional LUNA2 in all cases (over and above the requirements of rules 1 and 2)

Rule 4

The presence of more than 3 SLMO24 and/or SLMOP cards always requires an additional LUNA2 in all cases (over and above the requirements of rules 1, 2 and 3)

*) No longer available from November 2007, as component parts are no longer in supply. No replacement planned (exist-ing stocks can be used up).

4.8.2 Detailed Calculation (Method Implemented in Configuration Tool)

In addition to the traffic requirements of a card, the power supply requirements also play a part in calculating the distribu-tion of the line cards in the system. Depending on the various different types of line card that make up the overall system configuration, it is not always easy to make the 3 LUNA2 modules per AP3700, and particularly the 2 LUNA2 modules of an AP3700 IP, reliably cover the requirements of the cards that would ideally need to be installed in one shelf. To ensure a certain safety margin, redundancy of "n+1" is always calculated, which means that one PSU slot must remain free for an additional, redundant LUNA2. These detailed rules were developed in order to ensure that the optimum use is made of the available shelf capacity of a given configuration.

1. Rules for the Distribution of the Peripheral Line Cards

The following three parameters ensure an optimum line card distribution with regard to the shelf power supply require-ments. None of these three parameters must be exceeded.

"High Power Cards"

PBXXX S30810-Q6401-X

RG (for MWI) S30810-Q2468-X

RGKOR (no Configuration Tool support) S30810-Q2468-X100

RGE S30810-Q2258-X

RGMOD*) S30807-Q6141-X

RGMOD S30122-K5929-X

SLC16 S30810-Q2151-X300

SLC24 S30810-Q2193-X200

SLMY S30810-Q2816-X100

STMI2 S30810-Q2316-X/-X10

TRIMY S30810-Q2817-X100

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AP3700

AP3700 IP

Special Cases (in addition to above parameters):

TM2LP max. 5 cards per shelf due to high consumption in –12V operation

SLMAR max. 5 cards per shelf due to high power-on surge

2. Rules for Calculating the LUNA2 Power Supply Units

Once the optimum distribution of the line cards has been calculated according to the above parameters, the number of LUNA2 devices required for the shelf power can be calculated in each case, as follows:

*) Not allowed for AP3700 IP (n+1 redundancy)

The largest quantity of LUNA2 devices indicated by any one of the three parameters is always required, plus one for "redundancy".

4.8.3 Line Card Parameter Values for Calculating the LUNA2 Shelf Power Units

Please see the master line / trunk card list under https://www.g-dms.com/livelink/livelink.exe/open/28618924

4.9 Network Synchronization

No changes compared with HiPath 4000 V1.0. Please refer to the HiPath 4000 V1.0 Hardware Specification (Z3-HP4-04, Section 10).

4.10 Conversions and Upgrades

The following system types are no longer supported: - HiPath 4100 (AYG104): No longer supported as of HiPath 4000 V2.0 - HiPath 4300, 80CMX architecture (AYG105) No longer supported as of HiPath 4000 V3.0 - HiPath 4300, 80CMX-DSC architecture (AYG112) No longer supported as of HiPath 4000 V3.0 - HiPath 4300, 80CXE architecture (AYG109) No longer supported as of HiPath 4000 V6 - HiPath 4500, 600ECX architecture (AYG113) No longer supported as of HiPath 4000 V5 - HiPath 4500, 600ECS architecture (AYG109) No longer supported as of HiPath 4000 V5

unless CCDAX is replaced with CSPCI.

Parameter Max. total value for all line cards in one AP3700

P5V 36000 (mA)M48V total 6000 (mA)Power P5V+M48Vtotal 420000 (mW)

Parameter Max. total value for all line cards in one AP3700 IP

P5V 24000 (mA)M48V total 4000 (mA)Power P5V+M40Vtotal 280000 (mW)

Parameter 1 × LUNA2

2 × LUNA2

3 × LUNA2 *)

P5V ≤ 12000 ≤ 24000 ≤ 36000

M48V total ≤ 2000 ≤ 4000 ≤ 6000

Power P5V+M80Vtotal ≤ 140000 ≤ 280000 ≤ 420000

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Processor and Memory Requirements for Hicom 300 E/H Conversions to HiPath 4000 V2.0/V3.0/V4

Hard Disk Requirements in HiPath 4000 V4:

The minimum hard disk size required for HiPath 4000 V4 is 36 GB.

This means that an existing 18GB hard disk drive (S30122-X7423-X) in an upgraded system must be replaced with the current standard 73GB hard disk drive (S30124-H5018-X10).

The configuration tool takes this into account if the inventory data shows an inadequate HDD and automatically adds the required item to the upgrade hardware delivery package.

System Type (Architecture) Feature Processor / Memory Requirements

HiPath 4300 (80DSC/CXE) AYG108, AYG112

Processor unit replaced withDSCX, S30810-Q2261-X100

Memory requirement:1 × XDM76 256MB, S30122-X7673-X

HiPath 4300 (80CMX) AYG105 Processor unit replaced withDPC5, S30810-Q2270-X100

Memory requirement:1 × XDM76 256MB, S30122-X7673-X

HiPath 4500, Simplex Mono AYG109, AYG113

Processor unit replaced with1 × DPC5, S30810-Q2270-X100

Memory requirement:1 × XDM76 256MB, S30122-X7673-X

HiPath 4500, Dual and Duplex AYG109, AYG113

Processor units replaced with2 × DPC5, S30810-Q2270-X100 for Dual Processor Systems

or3 × DPC5, S30810-Q2270-X100 for Duplex Control Systems

Memory requirement:1 × BDM3A 128MB, S30807-Q6706-X for ADP Processor (not V4)1 × XDM76 256MB, S30122-X7673-X for ADP Processor (V4)1 × XDM76 256MB, S30122-X7673-X for CCA Processor

plus, for Duplex Control Systems1 × XDM76 256MB, S30122-X7673-X for CCB Processor

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4.10.1 Software Upgrades from HiPath 4000 V1.0 to V2.0, V3.0 and V4.0

For a software upgrade of a HiPath 4000 V1.0 system, only the additional memory and hard disk requirements need to be taken into account, as the processor performance of the HiPath 4000 V1.0 systems is adequate for later versions.

Hard Disk Requirements in HiPath 4000 V4:

The minimum hard disk size required for HiPath 4000 V4 is 36 GB.

This means that an existing 18GB hard disk drive (S30122-X7423-X) in an upgraded system must be replaced with the current standard 73GB hard disk drive (S30124-H5018-X10).

The configuration tool takes this into account if the inventory data shows an inadequate HDD and automatically adds the required item to the upgrade hardware delivery package.

4.10.2 Software Upgrades of HiPath 4000 Switches with cPCI Control (CSPCI)

The following processor and memory requirements need to be taken into account when upgrading HiPath 4000 switches with a CSPCI central control shelf to a later HiPath 4000 version:

System Type (Architecture) Feature Processor / Memory Requirements

HiPath 4300 (80DSC/CXE) AYG108, AYG112

1 × XDM76 256MB, S30122-X7673-X, unless already equipped with 256MB memory module

HiPath 4300 (80CMX) AYG105 1 × XDM76 256MB, S30122-X7673-X

HiPath 4500, Simplex Mono AYG109, AYG113

1 × XDM76 256MB, S30122-X7673-X, unless already equipped with 256MB memory module

HiPath 4500, Dual and Duplex AYG109, AYG113

1 × XDM76 256MB, S30122-X7673-X for CCA processorplus, for duplex control systems

1 × XDM76 256MB, S30122-X7673-X for CCB processor

plus, for upgrades to V4 only (for both dual and duplex control) 1 × XDM76 256MB, S30122-X7673-X for ADP processor unless DPC5 is already equipped with 256MB memory module

Upgrade Switch Item Number

Processor/RAM Requirements

HiPath 4000 V2.0 -> V3.0

AYG300 with/without AYG101

No changes required

HiPath 4000 mono V2.0/V3.0 -> V4/V5

AYG300 without AYG101

If equipped with DSCXL S30810-Q2311-X, hardware status D5: 1 × S30810-Q2311-X300 DSCXL with 1 GB on-board memory

Only if not equipped with DSCXL S30810-Q2311-X, hardware status D5: 1 × V20810-F7111-B290 1 GB memory module

HiPath 4000 duplex V2.0/V3.0 -> V4/V5

AYG300 with AYG101

If equipped with DSCXL S30810-Q2311-X, hardware status D5: 3 × S30810-Q2311-X300 DSCXL with 1 GB on-board memory

Only if not equipped with DSCXL S30810-Q2311-X, hardware status D5: 3× V20810-F7111-B290 1 GB memory module

CSAPE in AP3700 IP V2.0 -> V3.0

AYG254 No changes required

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Important

For upgrades to HiPath 4000 V4, the HDMO unit in the CSPCI cPCI central control (AYG300) and in any optional CSAPE remote survivability units (AYG254) must always be replaced by an HDCF (S30810-K2319-X300). The order item number of the HDCF is AYG130.

4.11 HTS

Please refer to Z3-HP4-04, section 12.

CSAPE in AP3700 IP V2.0/V3.0 -> V4/V5

AYG254 If equipped with DSCXL S30810-Q2311-X, hardware status D5: 1 × S30810-Q2311-X300 DSCXL with 1 GB on-board memory

Only if not equipped with DSCXL S30810-Q2311-X, hardware status D5: 1 × V20810-F7111-B290 1 GB memory module

Upgrade Switch Item Number

Processor/RAM Requirements

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5 Line Cards Supported by the AP3700 and AP3700 IP

Please see the master line / trunk card list under https://www.g-dms.com/livelink/livelink.exe/open/28618924

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6 Rules for Planning and Installing HiPath 4000 Systems in 19" Racks

6.1 Overview

6.1.1 Validity

The following rules apply to the installation of the CSPCI, AP3700 IP, AP3700 and DCDR units in industry standard 19" racks.

6.1.2 Components

6.1.2.1 AP3700 IP and AP3700

Box Dimensions: Width = 440 mm, Depth = 430 mm, Height = 455mm (without screw-in feet) The height is equivalent to 11U (standard rack height units).

Weight:

6.1.2.2 CSPCI

Box Dimensions: Width = 440mm, Depth = 296mm, Height = 170mm The height is equivalent to 4U (standard rack height units).

Weight:

Box/Equipment Kg Comment

AP3700 IP, Case (incl. power distribution rail + lines, feet, backplane) 16·5

Empty box

...plus line cards, 3 × LUNA2 and plug-in patch panels 30·6 Fully equipped

Survivability Unit, CSAPE Shelf (incl. covers + fan unit) 4·3

Empty box

...plus cards, PSU, ...) 8·6 Fully equipped

AP3700, Case (incl. power distribution rail + lines, feet, backplane) 15·0

Empty box

...plus line cards, 4 × LUNA2 and plug-in patch panels 34·1 Fully equipped

Box/Equipment Kg Comment

CSPCI, Case (incl. wiring, fans, backplane)

6·95

Empty box

...plus central units, 2 × power supply, face plates, 19" kit, mains power cord 12·9 Fully equipped

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6.1.2.3 DCDR

Use:

The DCDR is a DC power distribution box in 19" rack-mount design that relays the -48V DC system power from a central rack terminal block to the AP3700 (and CSPCI) shelves in the rack via a 16-amp. miniature circuit breaker in each case.

Box Dimensions: Width = 435mm, Depth = 205mm, Height = 90mm The height is equivalent to 2U (standard rack height units).

Weight: Approx. 4 kg, fully-equipped with mcb units.

Delivery Package:

The delivery package of the DCDR includes all the necessary power lines and the rack terminal block (see under variety parts list number S30122-K7698-X).

The fixing screws for the DCDR and the terminal block must be obtained separately, depending on the type of rack in use.

DCDR Breaker Panel:

Safety Notice:

The DCDR must always be installed above the CSPCI and the 9th and 13th AP3700 shelf boxes.

Technical Information:

- Nominal operating voltage 80 V DC (always 60 V DC for HiPath 4000) - Net current: 80A per side - Max. permitted rated current per mcb: 25A*) - Wire gauge of lead cable (cross-section): 35mm2

- Max. short-circuit current capacity: 3000 A

The configuration tool automatically calculates the number of 16-amp. circuit breakers required in the DCDR, depending on the size of the configuration. In addition, each DCDR comes equipped with two 1-amp. circuit breakers V39118-Z7180-A6 for external connections (e.g. MDF).

*) IMPORTANT! For the power connections to the CSPCI and the 9th and 13th AP3700 boxes only the standard, released 16-amp. mcb V39118-Z7180-A6 must be used.

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6.1.2.4 DC Junction Box S30805-H5298-X10 Status 4 (Temporary Solution)

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6.2 SAPPB, SAPPE and CSPCI Boxes in 19"Racks

6.2.1 Instructions for Installation in 19" Racks

Rack Requirements

The HiPath 4000 switch components can be installed in any commercial industry standard 19" rack designed to hold data and communication equipment. Since the system boxes are fully-enclosed units that already fulfill the requirements of the European EMC Directive, specially shielded racks are not necessary. However, since racks are available in a number of different designs, from open rack systems to fully-enclosed rack cabinets, some specific requirements of the HiPath 4000 systems must, nevertheless, be observed:

> Rack units must give front and rear access to the HiPath 4000 units installed.

> Rack units must provide at least 4 mounting profiles, for front and rear installation of HiPath 19" units.

> A minimum load bearing capacity of 40 kg is mandatory for any telescopic rails or rack shelves used for the SAPPE/AP3700 or SAPPB/AP3700 IP boxes. These must be obtained from the rack manufacturer.

> The rack height depends on the planned configuration, and must allow for heat dissipation and circulation, e.g. 47U for a full rack with 4×AP3700 + Fan Units (expansion rack, see examples).

> Standard rack widths of 700 or 800 mm should be used, and a minimum depth of 600 mm is recommended. A greater depth (e.g. 800 or even 900 mm) can provide advantages, such as easier cable layout and flexible unit installation from the front and the rear.

> The following rack components and accessories are always specific to the rack purchased, and must, therefore, always be obtained (ordered) from the rack manufacturer: - Installation material, e.g. holding screws for fixing the HiPath units in place - Rails and shelves (see above) - Wire/cable guide components - Power socket strips - Distribution boxes (junction boxes) and patch panels for LAN cable connections - Fan units, incl. connecting cables - Other accessories, e.g. side-mounting brackets, shelf panels (perforated/vented for adequate air circulation),

C profiles, etc.

> The minimum distance between two rows of racks should be the same as the rack width (rule-of-thumb).

Installation Requirements

Once you have decided on the basic rack design and layout, the following specific installation instructions must be observed for the HiPath units:

> Always use the 19" angle brackets supplied with the HiPath units to fix the units to the mounting profiles.

> Always ensure that the air circulation between the installed units guarantees an effective heat dissipation. Follow the examples in section 6.2.3.

> The CSPCI only requires 4U, but should always be installed at the bottom of the rack, with as much additional room for heat dissipation as possible, and ensuring that the air circulation is not obstructed in the rack in any way (air intake through left-hand fan, output through right-hand fan).

> An AP3700 or AP3700 IP always requires 11U in the rack: 10U for the actual unit and 1U free space above.

> No more than two AP3700 boxes may be installed in one rack without forced air circulation More than two always require a fan unit (1U)!

> The "expansion sequence" shown in the diagrams in section 6.2.3 should always be observed (this ensures that there is always one fan unit in a rack for every 2 AP3700 boxes).

> The fans must circulate the air evenly inside the rack units, and a minimum circulation volume requirement of 600 m3 / h must be ensured.

> If necessary, a second fan unit can be installed in the rack (e.g. for redundancy/backup)

> The minimum distance between the CSPCI and the 1st AP3700 is 2U; this must be observed at all times!

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> The rack units themselves should be chosen, equipped and installed to allow a maximum air circulation.

> For the mains power connection (230V or 115 V AC), socket strips must be provided in the racks according to the national requirements. Power requirements of CSPCI: 4A/115V 2A/230V Power requirements of AP 3700-IP: 6A/115V 3A/230V Power requirements of AP 3700: 8A/115V 4A/230V Power requirements of Survivability Unit:4A/115V 2A/230V Power requirements of Fan: see manufacturer’s specifications

> For systems connected to an external -48V DC source, the power connection must always lead via a 16amp fuse. For EMC reasons, all DC power lines must be shielded, on both sides.

> The protective earth connection of the system must be an equalized, bonded connection, i.e.: - All ground connections within a rack must lead to a central PE connection terminal (main PE terminal of rack) - All the main PE terminals of the racks must have a separate connection to a common, external ground bar

(minimum cross-section of the PE line is 10mm2).

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6.2.2 Rack Installation Examples for HiPath 4000 V2.0

6.2.2.1 AP 3700 IP / AP3700 Only, 25U-Rack

must be kept freemay be used

AP 3700 (1) AP 3700 (1)

01020304050607080910111213141516171819202122232425

DCDRDCDR

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6.2.2.2 CSPCI with AP 3700, 37U-Rack

AP 3700 (2)

AP 3700 (3)

HiPath 3700 (2)

CSPCI

010203040506070809101112131415161718192021222324252627282930313233343536

Lüfter / Fans

AP 3700 (1)

DCDR

AP 3700 (4)

HiPath 3700 (3)AP 3700 (5)

DCDR

37

must remain freemay be used

AP 3700 (1)... Expansion Sequence

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6.2.2.3 CSPCI with AP 3700, 42U-Rack

Lüfter / Fans redundant Lüfter / Fans redundant

Lüfter / Fans

AP 3700 (1)

AP 3700 (2)

AP 3700 (4)

CSPCI

0102030405060708091011121314151617181920212223242526272829303132333435363738394041

HiPath 3700 (3)AP 3700 (3) HiPath 3700 (3)AP 3700 (6)

Lüfter / Fans

AP 3700 (5)

DCDR DCDR

must remain freemay be used AP 3700 (1)... Expansion Sequence

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6.2.2.4 CSPCI with AP 3700, 47U-Rack

Lüfter / Fans

Lüfter / Fans redundant

Lüfter / Fans

AP 3700 (1)

AP 3700 (6)

AP 3700 (7)

AP 3700 (4)

CSPCI

0102030405060708091011121314151617181920212223242526272829303132333435363738394041424344454647

DCDR

AP 3700 (5)

AP 3700 (3)

AP 3700 (2)

DCDR

must remain freemay be used AP 3700 (1)... Expansion Sequence

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6.3 Power Supply Connections

6.3.1 AC Connection for 19" Rack

19" Rack 1

Rear View

19" Rack 2...4

*) Important:Separate (point-to-point) PE connection with external ground bar required for each rack. Fix lines securely with cable truss.

1) ... 6) Indices: see table in section 6.4

FAN Unit

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

6)

FAN Unit

FAN Unit

CSPCI

RTM

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

AP 3700

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

AP 3700

AP 3700

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

AC

2)

1)

AC

2)

1)

2)

6)

6)

6)

FAN Unit

*)

6)

2)

2)

*)

2)

2)

6)

6)

2)

*)(F)PE

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6.3.2 DC Connection for 19" Rack

6.3.2.1 DC Connection with DC Junction Box S30805-H5298-X10 Status 4 (Temporary Solution)

Lüfter / Fans redundant Lüfter / Fans redundant

Lüfter / Fans

AP 3700 (1)

AP 3700 (2)

AP 3700 (4)

CSPCI

0102030405060708091011121314151617181920212223242526272829303132333435363738394041

HiPath 3700 (3)AP 3700 (3) HiPath 3700 (3)AP 3700 (6)

Lüfter / Fans

AP 3700 (5)

Equipment per rack: - 2 × -> -X10 boxes with 2× 14A fuses (Si) - Example: - X10 affixed to front mounting profile!

Photo: - X10-4 affixed to rear mounting profile!

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-/+ 48V DC Connection with S30805-H5298-X10 Status 4 (continued)

19" Rack 1

Rear View

19" Rack 2...4

FAN UnitFAN Unit

FAN UnitFAN Unit

LUNA2

LUNA2

LUNA2

LUNA2

CSPCI

RTM

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

AP 3700

AP 3700

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

DC + / - 48V Source

4) or 5)

AP 3700

+ -

3) 3)

-+

-+

-+

6)

-+

0V 0V

6)6)

6)

*)

(F)PE

AP 3700

-+

LUNA2

LUNA2

LUNA2

LUNA2

AP 3700

-+

4) or 5)

6)

6)

6)

6) AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

-+

*)(F)PE

*) Important:Separate (point-to-point) PE connection with external ground bar required for each rack. Fix lines securely with cable truss.

1) ... 6) Indices: see table in section 6.4

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6.3.3 -48V DC Connection for 19" Rack with DCDR Breaker Panel (Series)

FAN Unit

FAN Unit FAN Unit

DCDR

19" Rack 1

CSPCI

RTM

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

AP 3700

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

Rear View19" Rack 2...4

AP 3700

AP 3700

AP 3700

AP 3700

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

LUNA2

MCM

7)

6)

6)

6)

6)

(F)PE

DCDR

DC + / - 48V

7)

7)

DC + / - 48V

6)

7)

(-)(-)(-)(-)

6)

10)

10)

L1-L1-L1+L1+PE

Connection without jumpered terminals or

with jumpered terminals

L1-L1-L1+L1+PE

FAN Unit

8)

8)

8)

6)

8)

*)

(+)(+)

*) Important:Separate (point-to-point) PE connection with external ground bar required for each rack. Fix lines securely with cable truss.

1) ... 10) Indices: see table in section 6.4

4)or 5) 4a) 4)or 5)

4a)

*)

Lines from UACD:+ = UACD ground bar - = -48V bulk/talk power

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DCDR Breaker Box Power and Fuse Connections

Overview of External Ground and 0V Connections for 19" Rack Installations

(-)(-)(+) (+)

DCDR Rear ViewS30122-K7698-X

16A fuse for3rd + 4th Box

16A fuse for1st + 2nd Box

1A fuse forMDF

X32 X30 X31 X29

X04 X02 X03 X01

Terminal Block

Terminal Block

1) 1)

2) 2)

MDF ..

Rack 1 Rack 2

+-

- 48V +

-+

+-

- 48V +

FPE/PEFPE/PE

-+

2 x16mm2

2 x16mm2

-+

AP3700

AP3700

AP3700

AP3700

AP3700AP3700

AP3700

CSPCI

Ground Bar

-+DCDR

All lines10mm2

UACD 2

UACD 1

0V Bar

(Rear View)C39165-A7080-D1

~~

§)

*) FPE lines must have a 10mm2 wire cross-section at minimum (standard: AWG 6)

§) PE line connected here

*)

Battery+ -

DCDR

4a)

4)

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Technical Information HiPath 4000, Project Planning Documentation

Chapter 3: GuidelinesApplications and Networks

6.4 Key to the Diagrams in Section 6.3 (Cable List)

Index Part Number Name/ Description

From To Comment

1) From rack manufacturer AC socket strip

For Brazil, the socket strip must conform to ANA-TEL specifica-tions (4 KV light-ning surge protection)

19" rack socket strip Building mains power connection

2) C39195-Z7001-C17 or C39195-Z7001-C97orV42405-J1-A216

Mains Power Cord

CSPCI / AP 3700 19" rack socket strip GER/IM USA/CAN

BRA

3) S30805-H5298-X10 with fixed item 2 × C39195-A7944-B57

DC Junction Box Line

19" Rack Fuse/CB 1+2 CSPCI / AP3700 +/- 48V DC temporary solution

4) C39195-A7944-B16/17 Line UACD (1), (2), -48V, Bulk/Talk

Racks 1 - 4 DC Junction Box -X10 or Rack terminal block (see index 10)

4a) C39195-A7556-B540 0V line UACD ground bar Rack terminal block (see index 10)

5) C39195-A7944-B33 Power Cable -48V DC source Rack (DC Junction Box -X10)

Temporary solution

6) Installation Material (MOMAT)

Line 10mm2 AP3700 PE terminal Main PE terminal in rack

(F)PE

7) C39195-A7944-B56 Line +/- 48V

DCDR Fuses X01, X02, X32 and X31

CSPCI / AP3700 Series solu-tion

8) S30122-X8019-X4 (from DCDR manufac-turer)

Line 2 × +/- 48V

DCDR Rack terminal block (see index 10)

Included in the delivery package

9) C39195-A7488-B800 Line Rack, main PE terminal External ground bar

10) S30122-X8018-X2 Terminal Block Installed in 19" Rack Included in the delivery package

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