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OWG000201 MSOFTX3000 Hardware Data Configuration ISSUE2.1

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MSFOFTX3000 Hardware DescriptionISSUE Huawei

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Page 1: OWG000201 MSOFTX3000 Hardware Data Configuration ISSUE2.1

HUAWEI TECHNOLOGIES CO., LTD. All rights reserved

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Internal

OWG000201 MSOFTX3000 Hardware

Data ConfigurationISSUE 2.1

Page 2: OWG000201 MSOFTX3000 Hardware Data Configuration ISSUE2.1

HUAWEI TECHNOLOGIES CO., LTD. Page 2All rights reserved

Upon completion of this course, you will be able to:

Understand the concept of Hardware Configuration

Grasp the process and method of Hardware Conf

Grasp the relations of the parameters in commands

Grasp how to check the results of hardware configuration

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References

MSOFTX3000 Operation Manual-Data

Configuration Manual

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HUAWEI TECHNOLOGIES CO., LTD. Page 4All rights reserved

Chapter 1 Related ConceptsChapter 1 Related Concepts

Chapter 2 Data ConfigurationChapter 2 Data Configuration

Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Chapter 4 Configuration ExampleChapter 4 Configuration Example

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Chapter 1 Related ConceptsChapter 1 Related Concepts

Section 1 Device NumberingSection 1 Device Numbering

Section 2 Data CollectionSection 2 Data Collection

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Device Numbering

Modular Logical Structure

MSoft3000

...

...

...BoardBoard

FrameFrame

ShelfShelfShelfShelf

MSOFTX3000MSOFTX3000

FrameFrame

BoardBoard

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Device Numbering

Shelf Number

MSOFTX3000 can be configured with a maximum of three shelves (cabinet), numbered from 0 to 2.

The shelf with the basic frame is Integrated Shelf, numbered as 0, which including two frames, BAM and iGWB.

Service Shelf can contain 4 Service Frame.

A shelf number should be consistent with the actual position of a shelf when configured, so that the system can generate correct alarm information if a failure occurs to the shelf during operation.

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Device Numbering

Frame Number

Frame is a Function Unit, including different boards to achieve one function. One Basic Frame and 9 Extension Frame in full data configuration.

The basic frame is numbered as 0 and the other frames are numbered from 1 to 9 from bottom upward

Basic Frame must to be configured. Extension Frame depends on capacity.

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Device Numbering

Frame numbers must be consistent with the hardware settings. You can set service processing frame numbers through the dual-in-line package (DIP) switch of the WSIU in the frame

WSIU DIP setting decided Frame No

offonOnoffonononon9

ononOnoffonononon8

offoffoffononononon7

onoffoffononononon6

OffonOffOnonononon5

Ononoffononononon4

OffoffOnononononon3

OnoffOnononononon2

OffonOnononononon1

OnonOnononononon0

12345678DIP SWFrame No

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Device Numbering

Slot Number

Slot Number

− A frame is designed to contain 21 boards numbered from 0 to 20. The front boards are numbered from left to right, and the back boards are numbered from right to left.

The relations between boards and slots

− The WSMUs (and back boards WSIUs) must be inserted in slots 6 and 8.

− The WALU must be inserted in front slot 16.

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Device Numbering

− The WHSC must be inserted in back slots 7 and 9, and front panels are installed in corresponding front slots.

− Each UPWR occupies two slots, and there are two front UPWR boards and two back UPWR boards. The slot numbers designated are 17 and 19.

− Other slots (0–5, 10–15) are inserted with service processing boards (including the WCCU, WCSU, WBSG, WIFM, WAFM, WCDB, WVDB, and WMGC).These slots are compatible with one another.

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Device Numbering

Module Number

MSOFTX3000 regards BAM, iGWB, and boards as modules, and numbers them accordingly from 0 to 255. 0 is for BAM, 1 is for iGWB, and the others are allocated to boards.

Back Board, WALU and UPWR have no module Number. Active-Standby Boards have the same Module Num. Load-sharing Boards have different one.

Module Number is used for distributing messages according to different number in inner system.

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Device Numbering

Module number starts from 2 according to board type. The module number of a board is unique in the system.

The numbering rules are as follows:

− WSMU module number: 2–21 (allocated automatically by the system)

− WCCU/WCSU module number: 22–101

− WCDB/WVDB module number: 102–131

− WMGC/WAFM/WIFM/WBSG/WSGU module number: 132–211

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Chapter 1 Related ConceptsChapter 1 Related Concepts

Section 1 Device NumberingSection 1 Device Numbering

Section 2 Data CollectionSection 2 Data Collection

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Data Collection

Frame/slot/E1 number of the WEPI providing clock

reference

Frame format of E1 port (DF/CRC4)

Balance mode of E1 port (balance or non-balance)

Link Type(64Kbit/s,2Mbit/s)IP address of the

router connecting to MSOFTX3000

IP address of FE port

Assist slotModule NumberFront/BackSlot numberFrame numberBoard Type

Column number Row number Site number Frame number Frame type

Note: The parameters in shadow need negotiate with opposite side

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Questions

How many layer has MSOFTX3000 in Modular

Logical Structure?

What are the numbering principle of Shelf,

Frame and Board?

What kinds of boards have module number?

Can the boards with the same module number

located in different frame?

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Answer

The modular structure of MSOFTX3000 include shelf, frame and board.

Numbers of Shelf, Frame and Board are from 0 according to principle from bottom to top, from left to right.

The boards of WSMU, WCCU, WCSU, WBSG, WAFM, WIFM, WSGU, WMGC, WCDB, WVDB have module number. The boards with the same module number can not located in different frame.

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Summary

The chapter emphasis on device structure,

numbering ruler and data collection.

SummarySummary

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Chapter 1 Related ConceptsChapter 1 Related Concepts

Chapter 2 Data ConfigurationChapter 2 Data Configuration

Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Chapter 4 Configuration ExampleChapter 4 Configuration Example

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ChapterChapter 2 Data Configuration2 Data Configuration

Section 1 General FlowSection 1 General Flow

Section 2 Add Shelf, Frame and BoardSection 2 Add Shelf, Frame and Board

Section 3 Add CDB FunctionSection 3 Add CDB Function

Section 4 Add FE Port InformationSection 4 Add FE Port Information

Section 5 Add E1 Port and CLK InformationSection 5 Add E1 Port and CLK Information

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General Flow

Add ShelfAdd Shelf

Add FrameAdd Frame

Add BoardAdd Board

Add WSGU/WCSU BRDAdd WSGU/WCSU BRD Add WCKI BRDAdd WCKI BRD Add WCDB BRDAdd WCDB BRD Add WIFM/WAF BRDAdd WIFM/WAF BRD

Add WEPI BRDAdd WEPI BRD

Set E1InformationSet E1Information

Set CLK Reference SRCSet CLK Reference SRC

Add CDB FunctionAdd CDB Function

Set IP/ATM Dispatch Ability Set IP/ATM Dispatch Ability

Set CPC InformationSet CPC Information

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Parameter relationship of commands

ADD SHF

[Shelf Number]

[Location Title]

[Position Number]

ADD FRM

[Frame Number]

[Shelf Number]

[Position Number]

ADD BRD

[Frame Number]

[Slot Number]

[Module Number]

[Board Type]

ADD EPICFG

[EPI Frame Number]

[EPI Slot Number]

ADD FECFG

[IFM Module Number]

[IP Address]

ADD CDBFUNC

[CDP Module Number]

[Function]

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ChapterChapter 2 Data Configuration2 Data Configuration

Section 1 General FlowSection 1 General Flow

Section 2 Add Shelf, Frame and BoardSection 2 Add Shelf, Frame and Board

Section 3 Add CDB FunctionSection 3 Add CDB Function

Section 4 Add FE Port InformationSection 4 Add FE Port Information

Section 5 Add E1 Port and CLK InformationSection 5 Add E1 Port and CLK Information

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Configure Shelf, Frame and Board

Parameters Relations

[Shelf Number][Location Title][Position Number][Row Number][Column Number]

ADD SHF

[Frame Number][Shelf Number][Position Number]

ADD FRM

[Frame Number][Slot Number][Location]

ADD BRD

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Configure Shelf, Frame and Board

ADD Shelf

MSOFTX3000 can be configured with up to three cabinets. Shelf number should be unique. One shelf can contain 1- 4 frames.

To list the properties of the specified shelf

If you expect to browse the properties of all shelves in the system, just set the parameter "shelf number" to "ALL".

LST SHF

To modify the properties of a shelf

You can use this command to modify the position (location title, position number, row number and column number) of a shelf.

MOD SHF

To remove an existing shelf from the system

Before removing a shelf, you must ensure that the related module, board and frame have been removed.

RMV SHF

To add shelf ADD SHF

DescriptionCommand

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Configure Shelf, Frame and BoardAdd Frame

Frame numbered as 0 is the basic frame, and the expansion frames are numbered from 1 to 9 from bottom upward. Before configuring the expansion frames, configure the basic frame firstly.

To display the information of a frameDSP FRM

To list the properties of the specified frame

If you expect to browse the properties of all frames in a shelf, just specify the parameter "frame number" to "ALL".

LST FRM

To modify the properties of a frame

You can use this command to modify the position information (shelf number and position number) of a frame.

MOD FRM

To remove an existing frame before removing a frame, you must ensure that the related module and board have been removed.

RMV FRM

To add a frameADD FRM

DescriptionCommand

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Configure Shelf, Frame and Board

Add Boards:

By default, when you add a frame with the ADD FRM command, the WSMU, WSIU, WHSC, WALU and UPWR of the frame will be configured automatically.

You need to manually configure such boards as the WCCU, WCCU, WCSU, WCDB, WVDB, WBSG, WSGU, WMGC, WIFM, WEPI, and WCKI.

To modify the message transfer part (MTP) link type (64 kbit/s by default) of the central processing board (CPC) on the WCSU, use the command MOD CPCCFG

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Configure Shelf, Frame and Board

commands related to board configuration.

To list the link type of the CPC sub-board on the WCSULST CPCCFG

To modify the link type of the CPC sub-board on the WCSUMOD CPCCFG

To display communication port stateDSP COMM

To reset a boardRST BRD

To switch over the active and standby boardsSWP BRD

To display the version information of a boardDSP BRDVER

To display the state of a boardDSP BRD

To list the configuration information of a boardLST BRD

To remove an existing boardRMV BRD

To add a boardADD BRD

DescriptionCommand

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ChapterChapter 2 Data Configuration2 Data Configuration

Section 1 General FlowSection 1 General Flow

Section 2 Add Shelf, Frame and BoardSection 2 Add Shelf, Frame and Board

Section 3 Add CDB FunctionSection 3 Add CDB Function

Section 4 Add FE Port InformationSection 4 Add FE Port Information

Section 5 Add E1 Port and CLK InformationSection 5 Add E1 Port and CLK Information

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Add WCDB FunctionFunctioning as the central database of MSOFTX3000, the WCDB stores all functional data like VLR agent functional data, gateway resource management data, outgoing trunk routing data, and so on.

MSOFTX3000 cannot operate normally without the WCDB.

Parameter :

Function :

CDP Module Number : WCDB Module Number(102~131)。

To remove function information of the WCDB RMV CDBFUNC

To add function information of the WCDB ADD CDBFUNC

DescriptionCommand

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ChapterChapter 2 Data Configuration2 Data Configuration

Section 1 General FlowSection 1 General Flow

Section 2 Add Shelf, Frame and BoardSection 2 Add Shelf, Frame and Board

Section 3 Add CDB FunctionSection 3 Add CDB Function

Section 4 Add FE Port InformationSection 4 Add FE Port Information

Section 5 Add E1 Port and CLK InformationSection 5 Add E1 Port and CLK Information

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Adding FE Port Information

Adding FE Port Information of WIFM

The WIFM interfaces MSOFTX3000 with IP network, and it also processes IP bottom-layer protocols.

The WIFM dispatches messages to the WBSG for further processing according to the IP address and port number in IP packets.

To list FE port information of the WIFM LST FECFG

To modify FE port information of the WIFM MOD FECFG

To remove FE port information of the WIFM RMV FECFG

To add FE port information (IP address) of the WIFM ADD FECFG

DescriptionCommand

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ChapterChapter 2 Data Configuration2 Data Configuration

Section 1 General FlowSection 1 General Flow

Section 2 Add Shelf, Frame and BoardSection 2 Add Shelf, Frame and Board

Section 3 Add CDB FunctionSection 3 Add CDB Function

Section 4 Add FE Port InformationSection 4 Add FE Port Information

Section 5 Add E1 Port and CLK InformationSection 5 Add E1 Port and CLK Information

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Add E1/CPC Information

E1 port data and clock data are both equipment data, and will be configured when MSOFTX3000 provides MTP links to connect a SS7 signaling network.

When adding EPICFG, the WEPI must have been added and the front board should be WCSU or WSGU.

To list E1 information of the WEPI LST EPICFG

To remove E1 information of the WEPI RMV EPICFG

To modify E1 information of the WEPI MOD EPICFG

To add E1 information of the WEPI ADD EPICFG

DescriptionCommand

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Add E1/CPC Information

Modify CPC Information:

Two CPC Boards will be automatically added when adding WCSU/WSGU.

The link type of them are 64K or 2M, Which can be changed by command

of “MOD CPCCFG”.

To display the information of CPC BoardLST CPCCFG

To modify CPC information of CPC BoardMOD CPCCFG

DescriptionCommand

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Set Clock Source Information

Clock Reference

When setting WCKI board, the Clock source can be GPS, BITS, Line input(E1).

Clock Work Mode can be auto and manual.

To list clock reference source information LST CKICFG

To set clock reference source SET CKICFG

DescriptionCommand

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Set Clock Source Information

Clock Reference

Clock Level : Set it to stratum-2 clock or stratum-3 clock :

Auto: The WCKI will automatically select the clock reference source( GPS, BITS1,BITS2,LINE CLOCK1,LINE CLOCK2 ) with the highest priority.

Manual: The WCKI will lock the specified clock reference source.

clock reference sources of BITS:

− CLK_2M: E1(2 Mbit/s)

− CLK_E1: 2M(2 MHz)

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Locking Clock Reference Source through E1

In the clock planning, MSOFTX3000 can lock the line clocks provided by

external devices. Such devices as MGW, HLR and PSTN can provide

stable stratum-3 or higher clock sources.

Configuration Steps:

ADD BOSRC4: Extract clock reference data from WEPI

ADD EPICFG3: Add E1 information

SET CKICFG2: Set clock reference source

ADD BRD1: Add WEPI and WCKI

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Locking Clock Reference Source through BITS

MSOFTX3000 serves as the clock reference source and connects to Building Integrated Timing Supply System (BITS). The WCKI can output stable stratum-2 clock signal to synchronize other equipment.

Steps:

ADD EPICFG3: Add E1 information

SET CKICFG2: Set clock reference source

ADD BRD1: Add WEPI and WCKI

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Question

What are the basic steps of MSOFTX3000 hardware data configuration?

Which boards can be automatically added after adding one frame?

How to make it take effect after finishing data configuration in LOF mode.

What preparation need to be done before adding E1 information?

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Answer

The basic steps are , ADD SHF-》ADD FRM-》ADD BRD-》Configure DATA.

After adding one frame, WSMU,WALU and UPWR are automatically added.

After finishing data configuration in LOF mode, then format the data with FMT, and power off and on to load the data.

WCSU or WSGU, and WEPI should be added before configure E1 information.

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Summary

MSOFTX3000 consists of modular components,

including Shelf, Frame, and Board. The numbering

policy is the basis of hardware data configuration.

The basic steps of hardware configuration are , ADD

SHF-》ADD FRM-》ADD BRD-》Configure

DATA

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Chapter 1 Related ConceptsChapter 1 Related Concepts

Chapter 2 Data ConfigurationChapter 2 Data Configuration

Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Chapter 4 Configuration ExampleChapter 4 Configuration Example

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Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Section 1 Query Shelf, Frame and BoardSection 1 Query Shelf, Frame and Board

Section 2 Query Clock Reference SourceSection 2 Query Clock Reference Source

Section 3 Query E1, CPC settingSection 3 Query E1, CPC setting

Section 4 Query CDB FunctionSection 4 Query CDB Function

Section 5 Query IP ConfigurationSection 5 Query IP Configuration

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Query Shelf, Frame and Board

To list the shelf configuration information: LST SHF

To list the configurations of an existing frame : LST FRM

Example: List the information of frame 0.

LST FRM: FN=0;

To display board's state by frame :DSP FRM

Example: Display boards state of all frames.

DSP FRM:;

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Query Shelf, Frame and Board

To list the configuration of an existing board : LST BRD

Example: List all the available boards in Frame 0.

LST BRD: FN=0;

To display board state: DSP BRD

Example: Display board status of frame 9, slot 1, location

BB(BACK BOARD).

DSP BRD: FN=9, SN=1, PSN=BB;

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Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Section 1 Query Shelf, Frame and BoardSection 1 Query Shelf, Frame and Board

Section 2 Query Clock Reference SourceSection 2 Query Clock Reference Source

Section 3 Query E1, CPC settingSection 3 Query E1, CPC setting

Section 4 Query CDB FunctionSection 4 Query CDB Function

Section 5 Query IP ConfigurationSection 5 Query IP Configuration

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Query Clock Reference Source(1)

To list CKI configuration : LST CKICFG

Example: List CKI configuration.

LST CKICFG:;

To list slot positions of clock source connected with EPI : LST CLKSRC

Example: To list frame 1 slot position of clock source connected with EPI.

LST CLKSRC: FN=1;

To display the clock status of the board. including H.110 clock, 8K clock and 2M clock: DSP CLKSTAT

Example: Display the clock status of frame 0 slot 10, this board is WEPI board.

DSP CLKSTAT: FN=0, SN=10;

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Query Clock Reference Source(2)

To display lock phase of clock source: DSP CLKPHExample: Display clock phase of Frame 0.

DSP CLKPH: FN=0;

To display WCKI Board status of current clock reference

source: DSP BRD

Example: Display Frame 0, Slot 13, WCKI status:

DSP BRD: FN=0, SN=13, PSN=BB;

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Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Section 1 Query Shelf, Frame and BoardSection 1 Query Shelf, Frame and Board

Section 2 Query Clock Reference SourceSection 2 Query Clock Reference Source

Section 3 Query E1, CPC settingSection 3 Query E1, CPC setting

Section 4 Query CDB FunctionSection 4 Query CDB Function

Section 5 Query IP ConfigurationSection 5 Query IP Configuration

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Query E1, CPC Configuration

To query EPI configuration :LST EPICFG

Example: View EPI configuration; Frame 1, Slot 2

LST EPICFG: FN=1, SN=2;

To display EPI board state of E1 information :DSP BRD

Example: Display EPI board status of frame 0, slot 0, location BB (FRONT BOARD).

DSP BRD: FN=0, SN=0, PSN=BB;

To list CPC configuration :LST CPCCFG

Example: List CPC configuration of WCSU board which module is 22.

LST CPCCFG: FM=22, LOC=UPMC;

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Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Section 1 Query Shelf, Frame and BoardSection 1 Query Shelf, Frame and Board

Section 2 Query Clock Reference SourceSection 2 Query Clock Reference Source

Section 3 Query E1, CPC settingSection 3 Query E1, CPC setting

Section 4 Query CDB FunctionSection 4 Query CDB Function

Section 5 Query IP ConfigurationSection 5 Query IP Configuration

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Query CDB Function

To query the CDB Function information :LST CDBFUNC

Example: View the CDB Function configuration

information. LST CDBFUNC:;

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Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Section 1 Query Shelf, Frame and BoardSection 1 Query Shelf, Frame and Board

Section 2 Query Clock Reference SourceSection 2 Query Clock Reference Source

Section 3 Query E1, CPC settingSection 3 Query E1, CPC setting

Section 4 Query CDB FunctionSection 4 Query CDB Function

Section 5 Query IP ConfigurationSection 5 Query IP Configuration

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Query IP Link

To query the FE interface configuration information: LST FECFG

Example: List the configuration of module number 132.

LST FECFG: MN=132;

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Question

What is the difference between LST and DSP?

How to display the current clock reference source?

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Answer

LST Command is used to query static data in

Database. DSP command is used to query dynamic

data running in board.

We can use DSP BRD on WCKI board to query

current clock source information.

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summary

After finishing hardware data configuration, power

on and off to load data to host, then use query

command to check the configuration correct or not.

summarysummary

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Chapter 1 Related ConceptsChapter 1 Related Concepts

Chapter 2 Data ConfigurationChapter 2 Data Configuration

Chapter 3 Maintenance CommandsChapter 3 Maintenance Commands

Chapter 4 Configuration ExampleChapter 4 Configuration Example

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Hardware Data Configuration Example

Establish a new MSOFXT3000, one cabinet with base frame in position 2, boards’ details shown as below. WIFM board IP is 191.169.100.10, netmask is 255.255.0.0, Gateway is 191.169.1.2 .

WCDB

WCDB

0

0 1

WIFM

2

WIFM

3 4 5 6 7

WSMU

8 9 10

WIFM

11

WMGC

12

WMGC

13 14 15

1

WBFI

2

WBFI

3

WBAI

4

WBAI

5

WSIU

6

WHSC

7

WHSC

9

WSIU

8 10

WCKI

11 12 13 14 15

Backplane

Frontboards

Backboards

WBFI

WBFI

WAFM

WAFM

WCDB

WCDB

WCKI

WSMU

WIFM

WALU

16

UPWR

17 18 19 20

UPWR

16

UPWR

17 18 19 20

UPWR

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Hardware Data Configuration Example

There is a extension frame in position 3, boards’ details shown as below.

WCSU

WCSU

WEPI

WEPI

0

0 1

WCSU

2

WCSU

3 4 5 6 7

WSMU

8 9 10

WCCU

11

WVDB

12

WVDB

13 14 15

1

WEPI

2

WEPI

3

WEPI

4

WEPI

5

WSIU

6

WHSC

7

WHSC

9

WSIU

8 10 11 12 13 14 15

Backplane

Backboard

Frontboard

WCSU

WCSU

WBSG

WBSG

WSMU

WCCU

WALU

16

UPWR

17 18 19 20

UPWR

16

UPWR

17 18 19 20

UPWR

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Questions

If data configuration is fulfilled in off line mode, what

operation must be done after that? Why?

What kind of boards can be added automatically ?

Page 63: OWG000201 MSOFTX3000 Hardware Data Configuration ISSUE2.1

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Answer

Format the data, line on, power off and on to load

the data. It is used to change the format of data in

DB to load format, then send the bam data to the

host

Automatically adding board including : WSMU,

WSIU, WHSC, WALU, UPWR. WBFI can be

added after adding WIFM.

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Summary

The course introduces some concepts of hardware data configuration and the processes , as well as how to check the result . The last part is an example to show the detail of data configuration.

Hope everybody can make a good fundament on data configuration with this course.

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Thank You