his700 hw health check procedure v1

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hiS700 for SMART Ph. V8.0 for hiS700 HW Health Check Procedure for hiS700 STP V8.0 HW Health Procedure for hiS700 STP V8.0 Page 1 of 12 rev date 05-23-2014

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Page 1: HiS700 HW Health Check Procedure v1

hiS700 for SMART Ph. V8.0 for hiS700

HW Health Check Procedure

for hiS700 STP V8.0

HW Health Procedure for hiS700 STP V8.0 Page 1 of 12 rev date 05-23-2014

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TABLE of CONTENTS 1 HW introduction ........................................................................................................................... 3

1.1 Main Processor- MP Boards Description ............................................................................. 3

1.2 MP-OAM .................................................................................................................................. 4

1.3 ATM Switching network (ASN) Description ........................................................................ 4

1.4 AMXE ...................................................................................................................................... 5

1.5 ACCG ...................................................................................................................................... 5

1.6 ASMX ...................................................................................................................................... 5

2 Hardware block diagram of hiS700 ............................................................................................ 6

3 Health Check Procedure ............................................................................................................. 7

3.1 Health Check of the standby MP:SA .................................................................................... 7

3.2 Health Check of the master MP:SA ...................................................................................... 7

3.3 Health check of the standby MP:SM, MP:GTT, MP:IP ......................................................... 8

3.4 Health check of the master MP:SM, MP:GTT, MP:IP ........................................................... 8

3.5 Health Check of the ASN-ACCG-0 ........................................................................................ 9

3.6 Health check of the ASN-ACCG-1 ......................................................................................... 9

3.7 Health check of the AMXE-0 (AMX-no) ............................................................................... 10

3.8 Health check of the ACCG-no (AMX-no) ............................................................................ 10

3.9 Health check of the AMXE-1 (AMX-no) ............................................................................... 10

3.10 Health check of the ACCG-no (AMX-no) ......................................................................... 11

3.11 Health check of the MDDMP-0 ......................................................................................... 11

3.12 Health check of the MDDMP-1 ......................................................................................... 12

3.13 Health check of the MODMP-0 ......................................................................................... 12 drafted by: /Marchelle Santiago/Jeremy Kirk Chavez /05-21-2013

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1 HW introduction

1.1 Main Processor- MP Boards Description

The multi-purpose main processor (MP) boards are the key components of the SURPASS hiS 700m. SS7-specific functions (MTP/SCCP) as well as number portability function, measurements and statistic support and OAM capabilities are realized as software applications running at this common MP hardware platform. Due to the scalability of the multi-purpose main processor boards flexible adaptation to future requirements regarding message throughput and new features is possible.

The hardware of each MP module is duplicated and comprises two identical main processor unit (MPU) boards. The two main processor units (MPU) operate micro synchronously - i.e., each MPU processes the same sequence of commands in the same clock cycle. To guarantee this, both MPUs are initialized with identical states and all data are transmitted synchronously to the two MPUs. The state of each MPU is checked at every clock cycle. The result is transmitted to the other MPU via the cross link (XLink) and compared with the test data generated there.

If a hardware fault occurs in one of the two MPUs which leads to a loss of the micro synchronous parallel operation, both of them perform routine tests. Hardware fault detection functions ensures that the faulty MPU is taken out of operation. Once the faulty unit has been replaced, the new MPU must be synchronized. Each MPU is responsible for detecting its own faults and reporting them to the other MPU.

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1.2 MP-OAM

MP:OAM and MP:IP have an additional on-board 10/100BaseT Ethernet interface which is used as connection to IP network in order to provide the ability for SS7 over IP in case of MP:IP. In case of MP:OAM the Ethernet interface is used for the connection to a TMN (Management system Domain).

In addition, MP:OAM has a small computer system interface (SCSI) in order to support the connection of a magnetic disk device (MDD) and magneto-optical disk device (MOD). The MDD is a device used as an off-board mass storage with a capacity of 18 Gbyte. The MOD is used to enable loading of software and configuration data into the MP:OAM.

Fig.: MP-OAM

1.3 ATM Switching network (ASN) Description

The internal ATM switching network (ASN) interconnects the individual main processors (MP) and the line interface cards (LIC), when applicable, with each other.

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FIG.:ASN5

1.4 AMXE

The AMX consists of an ATM multiplexer, type E (AMXE) and an ASN controller and clock generator (ACCG).

The ATM multiplexer, type E (AMXE) is used as a concentrator stage to the ASN. Up to 32 peripheral ports are possible between the AMXE and the MPU. Each of the ports is connected to the AMXE via one STM-1-equivalent ATM interface (with 207 Mbit/s).

The AMXE contains the following functions:

• Control logic: The ACCG processor can identify the type of module and its version by reading the control register of the AMXE.

• Clock interface to/from ACCG

1.5 ACCG

The ASN controller and clock generator (ACCG) monitors and controls the ASN switching modules (AMXE). In addition, it provides the clock signal for the AMXE as well as for the peripheral units LIC and MPU. The peripheral control platform (PCP) in the ACCG controls the configuration, testing, OA&M and communications with the MPU. The ACCG also provides interfaces for monitoring the clock generation platform on-board and for indicating alarms.

1.6 ASMX

The ATM switching network (ASN5) contains the ATM switching and multiplexer module ASMX controlled by an ACCG.

The main features of the ATM switching and multiplexer module ASMX are switching, multiplexing and distributing of ATM cells between the peripheral modules, like line interface card (LIC) or main processor unit (MPU) and the ATM switching network core.

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2 Hardware block diagram of hiS700

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3 Health Check Procedure

3.1 Health Check of the standby MP:SA (assuming side-1 in hot standby status)

STATMP:MP=1 ;

All MP‘s must be „Unlocked/Enabled/Providing service/Cleared“ Diagnosis

Note: MDDMP side 1 should be in locked status!!

CONFMDDMP: Side=1,Administrative State= locked;

CONFMP:MP=1,Side=1,Admin. state=Locked, Hazard check=Yes;

DIAGMP: MP=1,Side=1,Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFMP:MP=1,Side=1,Admin. state= Unlocked, Hazard check=Yes;

CONFMDDMP: Side=1, Administrative State=unlocked;

After this last action it is imperative to wait for the following message (ca 10 minutes):

CONF MDDMP executed.

END !!

3.2 Health Check of the master MP:SA (assuming side-0 in providingService status)

STATMP:MP=1 ;

All MP‘s must be „Unlocked/Enabled/Providing service/Cleared“ Diagnosis

Note: MDDMP side 0 should be in locked status!!

CONFMDDMP: Side=0, Administrative State= locked;

CONFMP:MP=1,Side=0,Admin. state=Locked, Hazard check=Yes;

DIAGMP:MP=1,Side=0,Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

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CONFMP:MP=1,Side=0,Admin. state=Unlocked, Hazard check=Yes;

CONFMDDMP: Side=0, Administrative State=unlocked;

After this last action it is imperative to wait for the following message (ca 10 minutes):

CONF MDDMP executed.

END !!

3.3 Health check of the standby MP:SM, MP:GTT, MP:IP (assuming all side 1 in hotStandby status)

STATMP; (to check the status of the MP’s)

All MP‘s must be „Unlocked/Enabled/Providing service/Cleared“

DISPMP; (to check the load model of the MP’s) Diagnosis

CONFMP:MP=no, Side=1, Admin. state=Locked, Hazard check=Yes;

DIAGMP:MP=no, Side=1, Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFMP:MP=no, Side=x, Admin. state=Unlocked, Hazard check=Yes;

END !!

3.4 Health check of the master MP:SM, MP:GTT, MP:IP (assuming all side 0 in providingService status)

STATMP; (to check the status of the MP’s)

All MP‘s must be „Unlocked/Enabled/Providing service/Cleared“

DISPMP; (to check the load model of the MP’s) Diagnosis

CONFMP:MP=no, Side=0, Admin. state=Locked, Hazard check=Yes;

DIAGMP:MP=no, Side=0, Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFMP:MP=no, Side=0, Admin. state=Unlocked, Hazard check=Yes;

END !!

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3.5 Health Check of the ASN-ACCG-0

STATASN;

All units of the ASN must be „Unlocked/Enabled/Providing service/Cleared“

Diagnosis

CONFASN: Side=0,ACCG=1,ASN=1,Admin. state=Locked, Hazard check=No;

Note: Without ASN=1, the AMX is locked and automatically diagnosed too!!

CONFASN: Side=0,ACCG=1,Admin. state=Locked, Hazard check=No;

DIAGASN: Side=0,ACCG=1,Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFASN: Side=0,ACCG=1,Admin. state Unlocked, Hazard check=Yes;

CONFASN: Side=0,ACCG=1,ASN=1,Admin. state=Unlocked, Hazard check=Yes;

END !!

3.6 Health check of the ASN-ACCG-1

STATASN;

All units of the ASN must be „Unlocked/Enabled/Providing service/Cleared“

Diagnosis

CONFASN: Side=1,ACCG=1,ASN=1,Admin. state=Locked, Hazard check=Yes;

Note: Without ASN=1, the AMX is locked and automatically diagnosed too!!

CONFASN: Side=1,ACCG=1,Admin. state=Locked, Hazard check=Yes;

DIAGASN: Side=1,ACCG=1,Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFASN: Side=1,ACCG=1,Admin. state Unlocked, Hazard check=Yes;

CONFASN: Side=1,ACCG=1,ASN=1,Admin. state=Unlocked, Hazard check=Yes;

END !!

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3.7 Health check of the AMXE-0 (AMX-no)

STATAMX; Diagnosis

CONFAMX: Side=0,ACCG=no, AMX=1,Admin. state=Locked, Hazard check=No;

DIAGAMX: Side=0,ACCG=no, AMX=1,Kind of diagnosis=Complete diagnosis;

Note: DIAGAMX is only possible, if the dependent ACCG is unlocked/enabled!!

A positive result message must be output at the end of the diagnosis

END !!

3.8 Health check of the ACCG-no (AMX-no)

STATAMX;

The number of AMX depends on the installed database All units of the AMX must be „Unlocked/Enabled/Providing service/Cleared“ Diagnosis

CONFAMX: Side=0,ACCG=no, Admin. state=Locked, Hazard check=No;

DIAGAMX: Side=0,ACCG=no, Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFAMX: Side=0,ACCG=no, Admin. state=Unlocked, Hazard check=Yes;

CONFAMX: Side=0,ACCG=no, AMX=1,Admin. state=Unlocked, Hazard check=Yes;

END !!

3.9 Health check of the AMXE-1 (AMX-no)

STATAMX;

The number of AMX depends on the installed database All units of the AMX must be „Unlocked/Enabled/Providing service/Cleared“ Diagnosis

CONFAMX: Side=1,ACCG=no, AMX=1,Admin. state=Locked, Hazard check=Yes;

DIAGAMX: Side=1,ACCG=no, AMX=1,Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

END !!

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3.10 Health check of the ACCG-no (AMX-no)

STATAMX;

The number of AMX depends on the installed database All units of the AMX must be „Unlocked/Enabled/Providing service/Cleared“ Diagnosis

CONFAMX: Side=1,ACCG=no, Admin. state=Locked, Hazard check=Yes;

DIAGAMX: Side=1,ACCG=no, Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFAMX: Side=1,ACCG=no, Admin. state=Unlocked, Hazard check=Yes;

CONFAMX: Side=1,ACCG=no, AMX=1,Admin. state=Unlocked, Hazard check=Yes;

END !!

3.11 Health check of the MDDMP-0

STAMDDMP;

The status of both MDDMPs must be „Unlocked/Enabled/Providing service/Cleared“ Diagnosis

CONFMDDMP:MP=1,Side=0,Administrative State= locked, Label= No;

DIAGMDDMP:MP=1,Side=0,Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFMDDMP:MP=1,Side=0,Administrative State=unlocked, Label= No;

After this last action it is imperative to wait for the following message (ca 10 minutes):

CONF MDDMP executed.

END !!

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3.12 Health check of the MDDMP-1

STAMDDMP;

The status of both MDDMPs must be „Unlocked/Enabled/Providing service/Cleared“ Diagnosis

CONFMDDMP:MP=1,Side=1,Administrative State= locked, Label= No;

DIAGMDDMP:MP=1,Side=1,Kind of diagnosis=Complete diagnosis;

A positive result message must be output at the end of the diagnosis

CONFMDDMP:MP=1,Side=1,Administrative State=unlocked;

After this last action it is imperative to wait for the following message (ca 10 minutes):

CONF MDDMP executed.

END !!

3.13 Health check of the MODMP-0

STATMODMP: Side=0;

The status of the MODMP-0 must be „Unlocked/Enabled/Providing service/Cleared.“ It is demanded that a medium without write protection is inserted. Diagnosis

CONFMODMP: Side=0,Administrative State= locked, Label=No;

DIAGMODMP: Side=0,Kind of diagnosis=Complete diagnosis;

Note: DIAGMODMP is only possible, if MO is inserted!!

A positive result message must be output at the end of the diagnosis

CONFMODMP: Side=0,Administrative State=unlocked, Label=No;

END !!

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