AMOs Siemens
AMOs
Contents1 Administration and Maintenance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31.1 Types of AMOs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31.2 Loading operational tasks . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 41.3 AMO Syntax. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
1.3.1 Structure of a command. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51.3.2 The parameters . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
2 Syntax for AMO Input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 72.1 Example of AMO Input. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 82.2 Selecting Important Verbs and Nouns . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
3 Protection of software features (codeword) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 113.1 Feature description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 113.2 Codeword variants. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 133.3 Codew description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 153.4 Service information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 163.5 Generation (example) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 173.6 HiPath 4000 V6 Licensing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 223.7 License Management in the HiPath 4000 Assistant V6. . . . . . . . . . . . . . . . . . . . . . . . 243.8 Relevant AMO . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27
4 AMOs in the User Area . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29
5 WABE - Digit Analysis . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 315.1 Structure of the DPLN . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 315.2 Overview DARs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 325.3 Overview of the CPS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 43
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6 VBZ - Internal Traffic Restrictions. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 47
7 COSSU - Classes of Service . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 49
8 TAPRO - Key Programming . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
9 SBCSU - Station and S0 Bus Configuration of SWU. . . . . . . . . . . . . . . . . . . . . . . 59
10 SCSU - Subscriber Configuration of Switching Unit . . . . . . . . . . . . . . . . . . . . . . . 63
11 Configuration of a Subscriber . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6511.1 UP0/E - subscriber . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6511.2 Configuration of an IP subscriber . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6911.3 Deletion of a Subscriber . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
12 SDAT - Administration of Individual Subscriber Attributes and General Subscriber Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 71
12.1 CHANGE-SDAT . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7112.1.1 Changing Attributes / Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7112.1.2 Changing General Subscriber Data (Branch DATA). . . . . . . . . . . . . . . . . . . 7112.1.3 Changing Subscriber Data (Branch DATA1). . . . . . . . . . . . . . . . . . . . . . . . . 71
12.2 DELETE-SDAT . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7212.3 DISPLAY-SDAT . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7212.4 REGENERATE-SDAT . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 72
13 BERUM - Class of Service Switchover . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 73
14 BERUZ - Times at which Class of Service Switchover is to Occur . . . . . . . . . . . 75
15 ZIEL - Destination Addresses for Stations. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7715.1 ADD-ZIEL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8015.2 DISPLAY-ZIEL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8015.3 REGENERATE-ZIEL . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 80
16 ACTDA - Activation of User Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 81
17 PERSI - Personal Identification . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 83
18 LRNGZ - List of Central Speed Dialing Numbers. . . . . . . . . . . . . . . . . . . . . . . . . . 85
19 ZRNGZ - Central Speed Calling Digit Series . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 87
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AMOs Siemens
1 Administration and Maintenance
1.1 Types of AMOs
TYPES of AMOs
ADMINISTRATION
MAINTENANCE
SYSTEM
REMOTE ADMIN. & MAINTENANCE
(TELE-SERVICE)
- Configuration of system peripherals
- Administration of features
- Administration of call charge registration parameters
- Initialization of traffic metering
- Trace and diagnostic evaluation (Debugger)- Blocking/unblocking of system units- Checking of system units
- Data file administration
- Access authorizations (passwords)
- Disk processing (CT, MT, HD)
- Memory update
- Date and time
- Database generation
- Documentation
- Transfer of fault messages
- Starting of AMOs
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1.2 Loading operational tasks
ADS Administration and Data Server HD Hard DiskAMC Administration and Maintenance
ControlI/O Input/Output
AMO Administration, Maintenance and Organization
LDU Logical Device Unit
BTT Operating Terminal MMI Man Machine Interpreter
SWU or CC
ADP
HD
SubsystemTables
SubsystemProgram
AMO y
AMO z
Overlay
AMC
Polycom CMA Desktop for Apple
zy
AMO x
Program
Polycom CMA Desktop for Apple
AMC
MMI LDU
OS free memory
zy
AMOx
Tables
I / O
Data
D
B
A
R
AMO x
PC
LAN or V24Asy IDE/SCSI
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1.3 AMO Syntax
The AMO (Administration, Maintenance and Organization) stands for administration and main-tenance tasks that are needed for setting up, managing, troubleshooting, maintaining and com-missioning the HiPath 4000 system.
It is primarily a script language that is checked for correct syntax by the system. Tips are stored to provide the user with helpful information.
Syntactically incorrect entries are rejected by the system and the AMO enters a so-called prompt status. It requests entry of the correct values.
Syntactically correct but functionally incorrect entries are not queried.
Thus, for example, all executive-secretary groups can be accidentally deleted by an uninten-tional command.
1.3.1 Structure of a command
> An AMO never asks whether you really want to delete everything.
VERBADDCHANGEDISPLAYSTARTSTOP
USW.
NOUN:SBCSU:PERSI:DATE:COPY:GEZAB:
USW.
The VERB, or the action that is to be executed, is separated from the command, the NOUN, by a minus sign.
Between the invocation and the following parameters, acolon is used as a separator from the parameters.
The NOUN can also be entered ina short format.
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1.3.2 The parameters
After the invocation command, the necessary parameters are entered.
Parameters can be numerical and alphanumerical values.
To set up a subscriber, you require the SBCSU command (Subscriber Bus Configuration Switching Unit) and the SETUP verb..
ADD-SBCSU:STNO=4711&4713&&4719,OPT=OPTI,PEN=1-1-25-12;,....................;
One option for administration is the keyword-oriented entry. The parameter(s) are named and entered, which can also result in chains linked with a "§".
Parameter&Parameter&& Parameter,
If you would like to set up the same devices multiple times, you can also create the link with "&&", in which case the execution is from value to value. Up to ten links are possible.
The individual parameters are separated by a comma.
In addition to the keyword-oriented entry, a position-oriented entry is also possible. In this case, you need to know the position of the parameters and comment out those that are not re-quired. A mixture of both parameter entry types is not possible.
ADD-SBCSU:4711&4713&&4719,OPTI,1-1-25-12;,,,,,,,,,,,;
A semicolon is always placed at the end of an entry. This is performed automatically by the sys-tem when the AMO is run through but can also take place during entry if no other entries are needed. If parameters are still missing after all, the AMO outputs a query. You can enter a "?" or "??" for each query. You are then given a tip.
Mandatory parameters
Selectable mandatory
Freely selectable pa-rameters
Parameters that the AMO needs in order to fulfill its function and that cannot be replaced by its own values. One example is the station number of a subscriber.
Parameters that must be set but that can be supple-mented through default values or own search en-tries.
Parameters that have optional functions.These are generally not entered.
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2 Syntax for AMO Input
COMMAND CODE: PARAMETER, PARAMETER ....;
ACTIVITY - FUNCTIONS PARAMETER NAME =PARAMETER VALUEVERB - NOUN orADD - AUN POSITION-DEPENDENT PARAMETER (VALUE)
( ) EXPLANATORY TEXT PASSAGES[ ] PARAMETER NAME and PARAMETER VALUE may be entered.< > Name of PARAMETER VALUE, all possible values are explained
separately..{ } Entry of at least one PARAMETER, rest optional: Separating COMMAND CODE and PARAMETER- Separating ACTIVITY and FUNCTIONS OF THE COMMAND CODE; END of AMO INPUT
PARAMETER NAME = PARAMETER VALUE
One of the given PARAMETER VALUES must be assigned to the PARAMETER NAME.
PARAMETER NAME = <PARAMETER VALUE>
An individual value, a string of individual values, or a group of individual values must be allocated to the PARAMETER NAME.
[PARAMETER NAME = <PARAMETER VALUE>]
Optional input of PARAMETER NAME, PARAMETER VALUE.
& & STRING of INDIVIDUAL VALUES && GROUP of INDIVIDUAL VALUESI OR GATING - one of the given parameters is entered up to the semicolon as
an alternative.
<number> PARAMETER consists of DECIMAL NUMBER(S)<param> PARAMETER VALUE consists of LETTERS A...Z, DIGITS 0...9<string> PARAMETER VALUE consists of CHARACTERS (all except ', ”)<key-num> PARAMETER VALUE consists of CHARACTERS 0...9, A...D, *, #<a-b-c...> PARAMETER VALUE consists of PARAMETER ARGUMENTS<identifier> PARAMETER VALUE consists of CHARACTERS (A...Z, 0...9)
1. character is a letter
<name> = <param>
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2.1 Example of AMO Input
Procedure Overview
Procedure Overview
Command Code Parameter
DISPLAY-PERSI TYPE =SYS;I TYPE = COPIN, [COPIN=<number>] ;I TYPE = MODULO ;I TYPE = NAME, [STNO=<number>] ;I TYPE = PIN, [PIN=<string>] ,[PINTYPE=<number>] ;I TYPE = STN, [STNO=<number>], PINTYPE=<string>] ;I TYPE = CCMS, [CCMSCD=<keynum>],[DPLN=<number>],[STNO=<number>] ;
Command Code Parameter
DISPLAY-SCSU [STNO]=<number>,e.g.ITYPE =COS, COSNO=<number>;
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2.2 Selecting Important Verbs and Nouns
The maximum number of inputs for the AMO for the verb (action)
VERB - NOUN
ADD - PERSICHAnge - PERSIDISplay - PERSIDELete - PERSIREGenerate - PERSITest - APSCopy - APSEXEC - UPDATSTArt - INFOSTOP - BELINDUMP - APSCOLLECT - SELSACTivate - DSSUDEACTivate - DSSUSWITCH - DSSM
● AMO - code explained in the BCSU example
B
B board
S subscriberL lineU unitD deviceC cabinetT trunkA attendant
C
C configuration(console)
S switch/subscriberD display
S U
SU switching unitSM server moduleVM voicemail module
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AMOs Siemens
3 Protection of software features (codeword)
3.1 Feature description
Features are sold in feature packages. Each package is allocated a marketing value. The fea-ture quantities purchased by a customer are encrypted as an alphanumeric "codeword".The new hardware, HiPath 4000 V2, features a SIM card on the DSCXL board (ADP). The don-gle used for existing hardware is upwards compatible. However, if the system is upgraded to Hipath 4000 V2.0 then a new codeword has to be installed.
New hardware: Old hardware:
The dongle or the SIM card and the codeword "tell" the system which feature packages and quantities were purchased by the customer. When the system is configured, a special plausi-bility check is used to ensure that the configuration data corresponds to the purchased features and quantities.
SIM card on the DSCXL board (ADP) Dongle for existing systems
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ComScendo CC-AP for AP Emergency
PNE
Voice com-pression IP Entry Agent
Protection of software features
Remote Survivability Cordless E
CODEWORD
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3.2 Codeword variants
In HiPath 4000 V2.0 and later, the CODEWORD will feature four variants:
1. Normal mode:This is the approved operating mode as implemented in HiPath 1.0. In normal mode, a codeword and licenses are requested for all relevant licenses in the database.
2. Trial mode:This feature introduces a time-limited trial mode. When you activate trial mode, you can skip the license restrictions that are temporarily displayed. During this time, the AMOs work as if unrestricted licenses were available except that an advisory message is sent to the users if license restriction violations occur.
3. Emergency mode: The system activates the Emergency mode, in case of special situations. Special situations are:Validity of the Codeword is expired;Dongle resp. SIM card is missing;Codeword is missing;Dongle resp. SIM card does not match to Codeword;In the Emergency mode the AMO execution is blocked in the SWU. The only AMOs that can be executed are the AMO CODEW / DATE.
4. Escalated Emergency mode:The feature triggers an additional system operation restriction (it blocks the FEASU fea-ture) when the system is in escalation mode for an extended period of time. This restriction is known as escalation of the Emergency mode.
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CODEW variants with dongle in HiPath 4000 at V2.0
● In a network the network codeword from the Hipath 4000 Manager (LMT) is used. The original Codeword must be added previously in the system. The Network codeword then overwrites the Codeword on a daily basis. If this does not hap-pen then a 60 day test mode begins.
● The 30 Day Service-Dongle will no longer be given in Hipath4000 V2.0.
● The creation date is coded in the Codeword and is stored in the database, when the Code-word is added in the system. The possibility to add an older Codeword is blocked in this way.
TYPE Description Dongle Sim Card
TYPE 1 (Customer) standard: 2 x Test mode each for 30 days(then a new Codeword is required)
X X
TYPE 2 (Special) Via LMT (Licence Management Tool) with a time limit of 60 days or an agreed time limit
X X
Via LMT (Licence Management Tool) without a time limit
X X
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3.3 Codew description
Unit Description AMOs Parameter
COMSCENDO Counting/marketingper configured B channel/ana-log channel to:
– station (optiset = 1 B chan-nel; optiset E or optiPoint 500... with adapter = 2 B chan-nels; optiip = 1 B channel, butmax. 2 B channels per Up0E)or attendant console
ACSU ACTYPE=AC4/ACW2Q/ACW-MQ
BCSU TYPE=SIGNOFF
RCSU RECAPL=ACDR/ACDMUS/HMUSIC
SBCSU DVCFIG=ANAFAX/ANADTE/ANADEV/FAX/DTE/OPTIP500/OP-TISET/S0PP/S2PP/SET600/OPTIIP
SCSU DVCFIG=ANATE/ANATECM/AUXDIGI
SSC TYPE=GENANS/MSGR/EX-TANN/CC/VMXMWI
SBCSU ART=OPTIERW
– Trunk or tie(including ATM Networking)
TACSU DEVTYPE=TC/TC1/TC2/NW/TT/TT1/TT2/TT3/TT4
TDCSU DEV=S0COD/S0CONN/S1COD/S1CONN/S1PVC/S1SVC/LAN/S1PVCCO/S2COD/S2CONN/S2PVC/S2SVC/S2PVCCO/VCCOD/VCCONN/HG3550/CDG-CONN/CDGCOD/30/ATMS-VC/ATMPVC3/ATMPVC7/ATMPVC15/ATMPVC23/ATMPVC2X/ATMPVC30/ATMPVCCO
TSCSU DEV=CC/CCM/ANS/RA/RAS/DICT/SPKR/DOOR
CORDLESS E Counting/marketing of the acti-vation license per B channel (for example SLC16 to base station) irrespective of the operating software
SBCSU DVCFIG=BASE
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3.4 Service information
● The counters bear no relationship to the feature dimensioning values administered with the AMO DIMSU.
● For the purposes of software feature protection, "ComScendo" is the equivalent of "station" for the following components:
– Optiset E
– optiPoint 500 / optiPoint 400 / optiPoint 410
– ANATE
– ANATECM
– AUXDIGI
– Signed off TSI instead of signed off station
– PP (all S0/S2)
– FBUS (all call numbers)
● The dongle or the SIM card is immediately activated on startup.
● The validity of a codeword may be limited to a specific period. It is calculated in days from the creation date.
PNE Counting/marketing per VPN B channel configured from/to the board with PNEDIUS2 line type (use the AMO BGDAT to check the line type of a board)
TDCSU DEV=S2CONN
HIPATH PRO-CENTER ENTRY AGENT
Counting/marketing per active (logged in) agent
AGENT AGTID=<number>
HIPATH AP REMOTE SURVIVABILITY
Counting the IPDA survivability remote shelves for connections over ISDN (ID9206)(AMO SIPCO parameter SURV-NET)
APRT CONF=ROUTER/AP
CC-AP FORAP EMERGEN-CY
Counting/marketing per CC con-figured for AP Emergency
APESU DATA=CCAP
Unit Description AMOs Parameter
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● The expiry date is shown after each LOGON command or after the initial ADD command. You can also check the date with the DISPLAY-CODEW command.
● A new codeword is needed every time the purchased quantity is expanded.(Except "HIPATH AP VOICE COMPRESSION IP" where only the coding is dynamically changed (from G.729 to G.711) when the limit is reached.)The purchased quantity can be temporarily expanded in trial mode (see Section 1.2).
● An installed codeword only can be replaced by a new one. The creation date is saved in the codeword; the serial number is used for information purposes only.
● The codeword can be changed with the codeword tool.
● The hardware ID and codeword must match.
● In order to enter a codeword the date of the system must be valid.
● In the event of contractual violation, the user interface is disabled and you are prevented from starting any more SWU AMOs (for configuration).
● If the system prevents access although the codeword and dongle are valid, you can acti-vate the dongle with the following actions: unplug/plug in the dongle, enable line8 or per-form an A1 soft restart.
● Further information on the AMO CODEW can be found in the AMO description in theservice manual.
3.5 Generation (example)
● Add a codeword (dongle or SIM card must be inserted):
ADD-CODEW:CODEW1=W1RAZWX6HPK8HS5G39TKV6X9MKVAM9ENERJTVTZBDX34KFNHRUTP4GU1EC132N93,CODEW2=LJJ9MKK381DASTYEZNNU67366HMWAM33VVKKRKG7UHTDUGFWJN2PBBREGX;
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● Display counters for purchased quantities / configured quantities:
1. Customer Dongle / SIM (TYPE 1 - Codeword)
DISPLAY-CODEW;
H500: AMO CODEW STARDED
SALES UNIT COUNTERS
===================
CODEWORD: AFTKSB3CJYN4LKZN7GNWZH8TXH63M29A5GA2L2JN261LGKEA8CPHLZV5UGKHVPHP
XGRZDWDF83BG6BLE2U6LSP8GYS8VY5NADW88BUAE6RA58HXMD2N99TJSC9
VERSION : H205
SERIAL NUMBER: 7
HARDWARE ID : C6EB8F3B
ENTRY DATE : 22.02.2004
TRIAL MODE : NOT ACTIVATED
CONFIRMATION : 3706
+---------------------------------------------+-------+-------+-------+-------+
| | | | | |
| UNIT | CON- | USED | FREE |BLOCKED|
| | TRACT | | | |
+---------------------------------------------+-------+-------+-------+-------+
| COMSCENDO | 976 | 913 | 63 | |
| CORDLESS E | 0 | 0 | 0 | |
| PNE | 0 | 0 | 0 | |
| HIPATH PROCENTER ENTRY AGENT | 0 | 0 | 0 | |
| SIGNALING SURVIVABILITY | 0 | 0 | 0 | |
| CC-AP FOR AP EMERGENCY | 0 | 0 | 0 | |
+---------------------------------------------+-------+-------+-------+-------+
H07: THE TEST MODE IS AVAILABLE (ANOTHER) 2 TIMES.
AMO-CODEW-111 CODEWORD FOR ADMINISTRATION LOCK IN SWU
DISPLAY COMPLETED;
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AMOs Siemens
2. Dongle / SIM with TYPE 2 - Codeword
DISPLAY-CODEW;
DISPLAY-CODEW;
H500: AMO CODEW STARTED
SALES UNIT COUNTERS
===================
CODEWORD: 3SK2N24LR9RF4G9919DZL3GN8C8SVWTN7RX7BWNBCTLTZPGMZN9FBXP97RRFTT72
R283HCUX6LSJXW5YD147WGWTV9FXD2CZBSWN7RY63VL9R7ASMWJ546YM7R
VERSION : H205
SERIAL NUMBER: 0
HARDWARE ID : 7ED439FB
ENTRY DATE : 07.01.2004
VALID UNTIL : 17.12.2005
TRIAL MODE : NOT ACTIVATED
CONFIRMATION : 0
+---------------------------------------------+-------+-------+-------+-------+
| | | | | |
| UNIT | CON- | USED | FREE |BLOCKED|
| | TRACT | | | |
+---------------------------------------------+-------+-------+-------+-------+
| COMSCENDO | | 110 | | |
| CORDLESS E | | 0 | | |
| PNE | | 0 | | |
| HIPATH PROCENTER ENTRY AGENT | | 0 | | |
| SIGNALING SURVIVABILITY | | 0 | | |
| CC-AP FOR AP EMERGENCY | | 0 | | |
+---------------------------------------------+-------+-------+-------+-------+
H12: CURRENT CODEWORD IS A TYPE 2 CODEWORD.
AMO-CODEW-111 CODEWORD FOR ADMINISTRATION LOCK IN SWU
DISPLAY COMPLETED;
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AMOsSiemens
Trial mode
The purchased quantity can be temporarily expanded with trial mode.Trial mode is activated with CHANGE-CODEW. Utilization is not unlimited (maximum number specified in codeword, generally 2) and has a maximum utilization time (generally 30 days).
SWU administration is not disabled even if license violation is shown in trial mode ("!!!!!" in the "FREE" column). A mark that can be displaced with the AMO SDSU is applied to elements that exceed the license limit (stations, trunks, etc.). The number of units marked is also displayed in the AMO CODEW.
Trial mode is automatically terminated if not manually deactivated within the maximum time lim-it. When this happens, marked elements are disabled for security reasons and can only be en-abled if an appropriate codeword is set up.
No elements are marked or disabled for the features HIPATH PROCENTER ENTRY AGENT and HIPATH AP VOICE COMPRESSION IP. However, when trial mode ends, no agents above and beyond the license limits can log on and compressed connections cannot be set up.
Trial mode does not apply to the features HIPATH AP REMOTE SURVIVABILITY and CC-AP FOR AP EMERGENCY. The codeword’s license limit cannot be exceeded here.
● Activate trial mode:
CHANGE-CODEW:TRIAL=YES;
....(activated after consultation)
● Administration above and beyond the quantities purchased:
ADD-SCSU:STNO=4711,DVCFIG=ANATE;
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AMOs Siemens
● Display codeword the test mode is expired:
DISPLAY-CODEW;
DISP-CODEW;
H500: AMO CODEW STARTED
SALES UNIT COUNTERS
===================
CODEWORD: 3SK2N24LR9RF4G9919DZL3GN8C8SVWTN7RX7BWNBCTLTZPGMZN9FBXP97RRFTT72
R283HCUX6LSJXW5YD147WGWTV9FXD2CZBSWN7RY63VL9R7ASMWJ546YM7R
VERSION : H205
SERIAL NUMBER: 0
HARDWARE ID : 7ED439FB
ENTRY DATE : 18.12.2003
VALID UNTIL : 17.12.2004
TRIAL MODE : NOT ACTIVATED
CONFIRMATION : 0
+---------------------------------------------+-------+-------+-------+-------+
| | | | | |
| UNIT | CON- | USED | FREE |BLOCKED|
| | TRACT | | | |
+---------------------------------------------+-------+-------+-------+-------+
| COMSCENDO | 110 | 110 | !!!!! | 1 |
| CORDLESS E | | 0 | | |
| PNE | | 0 | | |
| HIPATH PROCENTER ENTRY AGENT | | 0 | | |
| SIGNALING SURVIVABILITY | | 0 | | |
| CC-AP FOR AP EMERGENCY | | 0 | | |
+---------------------------------------------+-------+-------+-------+-------+
H12: THE TEST MODE IS AVAILABLE (ANOTHER) ONCE.
AMO-CODEW-111 CODEWORD FOR ADMINISTRATION LOCK IN SWU
DISPLAY COMPLETED;
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3.6 HiPath 4000 V6 Licensing
A new license concept based on the HiPath License Management (HLM) is used. The SIM card is not used anymore.
A HiPath 4000 V6 Flex License pro Port for all HiPath 4000 subscriber and Trunking connec-tions is available: analog, digital, HFA, SIP, Cordless, PSTN and SIP Service Provider.
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AMOs Siemens
HiPath 4000 V6 Flex License
subscriber analog per user
digital per user
IP (HFA or SIP) per user
trunk analog per channel
TDM per channel
Cornet IP Trunk and SIP Trunk for HG3550 Common Gateway
per channel
SIP Trunk for HiPath 4000 SoftGate no license required
SIP Service Provider per channel
Mobility Cordless Enterprise per channel base station
HiPath 4000 V6 Basis and Survivability License
System Base License per system
HiPath 4000 V6 Duplex Control per system
IP Access Point Signaling Survivability per AP3x00IP
Survivability Unit (AP-Emergency) per AP-Emergency Server
SoftGate 50 Base License per SoftGate Server
SoftGate 50 package max. 50 User and max. 50 active connections
SoftGate 1000 Basis License per SoftGate Server
SoftGate 1000 package max. 1000 User and max. 256 active connections
OpenScape 4000 V6 CSTA connectivity
CSTA CSTA connectivity with SEN Application part of the HiPath 4000 V6 base packet
Packet 10 User for 3rd party Application part of the HiPath 4000 V6 base packet
Packet 100 User for 3rd party Application per CSTA Application Link
Unlimited Packet for 3rd party Application per CSTA Application Link
Table 3-1
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After a first configuration with the Portal automatically a „grace period“ license will be generat-ed. This license is valid for 30 days.
A customer license must be created with MAC address (e.g. eth0 of the DSCXL2 board) and L-number. The created „.lic file“ can be downloaded with the Assistant. The Assistant creates a Codew for the RMX.
3.7 License Management in the HiPath 4000 Assistant V6
With the menu „HiPath 4000 Assistant V6 --> Access Management --> License Management“ the license can be downloaded and displayed.
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AMOs Siemens
The link „Display installed license data“ shows the licenses in detail, e.g. duration of validity.
The link “Display Server MAC address“ display the possible MAC addresses for the creation of the licenses.
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The Link “Display license details“ shows the actual used license data.
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AMOs Siemens
In the menu „HiPath 4000 Assistant V6 --> Access Management--> Licence Management --> Tool“ you can get information about the licenses, e.g. alarms.
3.8 Relevant AMO
AMO Parameter Sprache/Language
Beschreibung/ Description
EINR-CODEW CODEW1 d Erster Teil des Codewortes
CODEW2 d Zweiter Teil des Codewortes
ADD-CODEW CODEW1 e First part of codeword
CODEW2 e Second part of codeword
AE-CODEW TESTMOD d Testmodus ein/ausschalten
CHANGE-CODEW TRIAL e Activate/deactivate trial mode
AB-SDSU LICMARK d Markierte Lizenz (im Testmodus)
LICBLOCK d Gesperrte Lizenez (Testmodus abgelaufen)
DISP-SDSU LICMARK e Marked License (in testmode)
LICBLOCK e Blocked License (testmode expired)
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AMOs Siemens
4 AMOs in the User Area
Messen-ger no.
STNNo.
ITR groupUser no.WABE group
List no. COS no.LCOS (V/D)
COSSUClasses of
service
LRNGZSPDC lists and
Speed dialing No.
VBZITR matrix
WABEDialing plan
TACSULine config.
individual night STN
VBZAITR matrixID card, IDcard reader
TGERSharing of
NV terminals
SSCSpecial Subscr.MESSENGER
ZRNGZSPDC
dest. callnumbers
HOTLNHotline/
Code blue Destinations
TAPROKey
programmingindiv.
BERUMCOSX
manually controlled
BERUZCOSX time
controlled
NAVARNight
options
SAHunt group
data
Secretary
STNNo.
RNGZ 1, 2
ITR groupCOSXgroup
SCSU / SBCSUPer STN No. personal and
device-related data
PERSIPersonal
identificationPIN / Name
ZIELDest. no. for MESSGR, FWD,
No.Redial, SPDI, DSS, Name, dest. key
RUFUMNumber mapping
combi-code
AUNCall pick-up
group
SDATAdministration of subscr.-related
features.
SXSUSTN
Exchange of Voice Terminals
CHESEExec./secretary
system
ZAND
ZANDE
TAPROStandard
RCSUAdding music
per user
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AMOsSiemens
AUN Call pick-up groups
BERUM Class-of-service changeover
BERUZ Class-of-service changeover times
CHESE Executive/secretary system (integrated outer office system)
COSSU Classes of service
HOTLN Destinations for HOTLINE/CODE BLUE
LRNGZ Lists for central number generator
NAVAR Administration of the stat. night variant data
PERSI Personal identification
RCSU Announcement devices in the SWU
RUFUM Number mapping
SA Hunt group
SBCSU Terminals and S0 bus configuration in the SWU
SCSU Configuration of users in the SWU
SDAT Administration of user-related features
SSC Configuration of special users
SXSU Reconfiguration of user voice terminals
TACSU Configuration of analog line ports
TAPRO Key programming for digital terminals
TGER User devices assignment
VBZ Internal traffic restriction (ITR) matrix
VBZA ITR for users with ID card readers
VBZGR ITR groups
WABE Dialing assessment
ZAND Central system data
ZANDE Central system data - extended
ZIEL Destination addresses for users
ZRNGZ Central number generator destinations
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AMOs Siemens
5 WABE - Digit Analysis
"Digit analysis" refers to the assignment of a digit analysis result (DAR) to a dialed digit se-quence or code. This assignment is dependent on the call progress state (CPS) and digit anal-ysis group or dial plan (DPLN). There are two types of digit analysis result: DARs with a specific dialing outcome (e.g. ’STN’; dialing result is station number), and DARs whose dialing outcome must be defined in other AMOs (e.g. ’CO’; the trunk routes which can be accessed via this DAR are defined with the AMO RICHT).
5.1 Structure of the DPLN
Digit Analysis is comprised of a general DPLN (WABE) part and one of 16 DPLN groups.
DPLN - General Part (valid for all dial plans)
Here are listed all codes for those digit analysis results (DAR) which are to be accessible for all stations (valid for all dial plans).
All stations (DAR=STN) must be listed here.
DIS-WABE:GEN;
Displays only the general part!
DPLN 0 DPLN 1 DPLN 2 . . .14 DPLN 15
Codes for digit analysis results (DAR) in this area are only accessi-ble for stations belong-ing to DPLN 1.
Station Number 4511 DIS-WABE:GEN,1;
Displays all DPLN entries for stations with DPLN 1.(DPLN general part and DPLN 1)
If STN is assigned to DPLN 1, SCSU/S(B)CSU must have parameter DPLN=1.
With this he gets access to all codes of the DPLN valid for all DPLN groups as well as the codes of DPLN 1.
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5.2 Overview DARs
General DARs
ALL All DAR´s
ACBK Activate callback
DCBK Delete callback or line queueing
ACOSX Activate cos changeover from station
DCOSX Deactivate cos changeover from station
ADND Activate do not disturb
DDND Deactivate do not disturb
ANSCO Answering device for central office
ANSINT Answering device, internal
APIN1 to APIN 15
Activate PIN for COPIN 1 to Activate PIN for COPIN 15
DPIN Deactivate PIN
AREM Activate reminder
DREM Deactivate reminder
ATND Attendant / internal operator code
ATNDDID Indial to attendant console
ATNDIND Individual attendant console
BABYLSNG Baby listening
BUZZ Alert (buzz) a target station
CDRACC CDR account code
CO Central office
CTDL Seize lines
DICT Dictation equipment
DIGIDAT DIGITE data input
DISUOFF Display suppression off
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AMOs Siemens
DISUON Display suppression on
DOORCL Query of the entrance telephone system
DOOROPEN Open via the entrance telephone system
DTE Code for DTE service for analog traffic via DIUC
DTED Code for DTE service for digital traffic via DIUC
DTMFCONV DTMF conversion when dailing to public network
EOVR Emergency override (feature emergency override/release)
EXTANS Interception by console in partner system
FAX Code for Fax service
GATEWAY Gateway
GENANS General answering / universal night answering
HOLD Call hold by an analog phone
KNOVR Camp on (knocking) / override
LNR Last number redial
MANDOWNL Manual downloading
MHFALGOF Logoff by a mobile HFA subscriber
MHFALGON Logon by a mobile HFA subscriber
NETRTE Auxiliary DAR for networking
NETW DAR for a voice feature in another node, route is automatically seized via DESTNO and the dialed digit sequence is repeated
NETWDTE DAR for a DTE feature in another node, route is automatically seized via DESTNO and the dialed digit sequence is repeated
NETWFAX DAR for a FAX feature in another node, route is automatically seized via DESTNO and the dialed digit sequence is repeated
NOPT Change of night switch option
OUTPULSE Outpulse specific digits on the line during call status for cut-through or suffix dialing in tie traffic
OWNNODE Code number for own node
PUEXT Acceptance (or pickup) of ext.consult call from remote system in simple tie trunk traffic
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RA Recorded announcement for a specific area
RELEASE Release (feature emergency override/release)
REMKY Reminder Key
RESDOWNl Reset of modified parameters by downloading the basic parameter sets (DCI)
SIGNOFF Sign off a line via terminal device (Autoset Relocate)
SIGNON Sign on a line via terminal device (Autoset Relocate)
SNR Stored number redial
SPD Change the speed (DCI)
SPDC1 Speed dialing central 1
SPDC2 Speed dialing central 2
SPDI Speed dialing individual
SPDIPROG Speed dialing individual programming code
SPLIT Split / alternating calls
STN Station
STNREL STN DAR for destination dependent release
TRACE Malicious call tracing
VOICECAL Voice call
WHISANN Whisper Announcement
DARs for call forwarding feature
for voice service
AFWDVCE Activate fixed call forwarding voice
DFWDVCE Deactivate fixed call forwarding voice
AFFWDVCE Program and activate fixed forwarding voice
DFFWDVCE Deactivate and delete fixed forwarding voice
for Fax service
AFWDFAX Activate call forwarding fax
DFWDFAX Deactivate call forwarding fax
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AFFWDFAX Program and activate fixed forwarding fax
DFFWDFAX Deactivate fixed forwarding fax
for DTE service
AFWDDTE Activate call forwarding DTE
DFWDDTE Deactivate call forwarding DTE
AFFWDDTE Activate fixed call forwarding DTE
DFFWDDTE Deactivate fixed call forwarding DTE
Activate via the attendant console
AFWDREM Activate call forwarding remote / follow me
DFWDREM Deactivate call forwarding remote / follow me
FWDREM Show call forwarding remote / follow me
Miscellaneous
AFWDDWD Activate call forwarding for DIGITE without display
FWDTERM Call forwarding for all STNs assoc. to terminal
FWDIGNOR Ignore call forwarding
DFWDEXT Deactivate call forwarding external
AFWDEXT Activate call forwarding external
DFWDINT
AFWDINT
Deactivate call forwarding internal
Activate call forwarding internal
AFWDEXIN Activate call forwarding internal
AFWDB Activate call forwarding busy
AFWDNA Activate call forwarding no answer
AFWDBNA Activate call forwarding busy or no answer
DSYSFWD Deactivate system call forwarding voice
ASYSFWD Activate system call forwarding voice
FFWDREMK Store call forwarding via remote by key
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DARs for call pickup feature
PU Call pickup
PUGDIS Display group pickup information on request
PUDIR Directed call pickup
DARs for call park feature
PARK Call park and retrieve to system slot
CALLPARK Call park for anate
DCPA Park a user at a specific user
SELFPA Park a user on one´s own line
RECONNPA Reconnect on held call
DARs for combi code feature
DTEDNE Combi code for DTE terminal with digital traffic via DIUC
DTENO Combi code for DTE terminal with analog traffic via DIUC
FAXNO Combi code for FAX terminal
DARs for hunting group feature
HUNT Hunting group (HT)
HTKY Hunt group key (on / off)
AHTVCE Add station to hunt group voice
DHTVCE Disassociate stn from hunt group, voice eqpt.
AHTFAX Add station to hunt group fax
DHTFAX Disassociate station from hunt group, fax eqpt.
AHTDTE Add station to hunt group DTE
DHTDTE Disassociate stn from hunt group, DTE eqpt.
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DARs for code calling feature
(Single code calling / multiple code calling)
CCKY Code calling key
CCDIS Code calling display with code
CCMEETME Code calling meet me with code
CCSTN Code calling station A with code
CCVCE Code calling for voice with code
CCSURG Code calling urgent search with code
CCS Code calling normal search with code
CCANS Code calling answer
CCSCD Code calling search with code
CCSN Code calling search normal
CCMANS Code calling answer to multi task page attempt
CCMSURG Code calling multiple paging urgent
CCMS Code calling multiple task paging normal
DARs for tie traffic feature
(network / wide features)
TIE Tie line access
TIEATND Analogue tie line, special seizure type
SCONSCO Sat. connection in consultation hold from CO
SCONSI Sat. connection in consult hold from internal
SAT Extend indial or trunk call to satellite system
DARs for IP Distributed Architecture (IPDA) feature
FRCALTRT Force alternate route
INCALTRT Incoming alternate route
NOEC CLC without echo cancellation for encrypted calls
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DARs for key function assignment
KYPROG Key programming on digite
KNOVRKY Knocking / Camp on, override key
DNDKY Do not disturb
IUSEKY Show line key i use key
FWDKY Call forwarding key
MSGRKY Messenger key (CHESE)
MBKY Mailbox key
DAKY Non-Voice key
VCRKY Voice call reject key
VCKY Voice call key
DSSKY Direct station select key
EXHOLDKY Exclusive hold key
HOLDKY Hold key
CONFKY Conference key
TOGGLEKY Toggle key
NAMEKY Name key
PARKKY Park key
PRIVKY Privacy key
CONSKY Consultation key
CBKKY Callback key
RCTOFFKY Ringer cutoff key
HTKY Hunt group key (on / off)
FLASHCD Equivalent flash signal code
STKY Start key / output
RLSKY Release / Cancel key
TRNSKY Call transfer key
TIMEKY Time / date key
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LNRKY Last number redial key
SNRKY Saved number redial key
DARs for answering machine functions
MBON Mailbox LED on
MBOFF Mailbox LED off
VMOWN Access to own voice mailbox
VMFOR Access to other user´s voice mailbox
MWACT Message waiting activation
MWANS Message waiting answer
MWCAN Message waiting cancel by terminating party
MWCANORI Message waiting cancel by originating party
DARs for broadcast functions
BROADCST speaker call - one way broadcast
COMGRP COM group call
COMSPK COM group speaker call - two way
SPKRCALL Speaker call - one way
DARs for conference features
CONFKY Conference key
CONF Establish conference / add party to conference
RMCONFLP Remove last party from conference
RMCONFP1to RMCONFP8
Remove party at position 1 from conference up toRemove party at position 8 from conference
DARs for MLPP features
FLASH MLPP flash call
FLASHOV MLPP Flash Override call (high level)
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IMMED MLPP immediate call
PRTY MLPP priority call (low level)
DSNR MLPP dsn routine
DARs for call center features
ACC Account code
ACDWORK Agent work
ACDSHMSG Short message
ACDLOGON Agent logon
ACDLOGOF Agent logoff
ACDEMMSG Emergency message
ACDNAV Agent not available
ACDPGS Primary group status
ACDPQS Primary queue status
ACDSGS Secondary group status
ACDSQS Secondary queue status
ACDAV Agent available
CAFDFWD CAF deactivate forwarding of RCG
CAFAFWD CAF activate forwarding of RCG
CAFGROFF CAF group logoff
CAFGRNAV CAF group not available
CAFGRAV CAF group available
CAFLOGOF CAF agent logoff
CAFNAV CAF agent not available
CAFAV CAF agent available
MONSLNT Silent monitoring
MONTONE Tone monitoring
RCG Route control group number
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DARs for key functionality feature
IUSEKY Show line key i use key
EXHOLDLKY Exclusive hold key
HOLDKY Hold key
KEYPADIE Keypad IE
TOGGLEKY Toggle Key
APRIV Activate privacy
DPRIV Deactivate privacy
PRIVKY Privacy key
CONSKY Consultation key
CBKKY Callback key
RCTOFFKY Ringer cutoff key
RLSKY Release / Cancel key
TRNSKY Call transfer key
LNRKY Last number redial key
SNRKY Saved number redial key
DARs for national features
PROT Override protection (Belgium)
ASTN Check a Station number in the case of transit
CALLPARK Call park for anate
OPROVR Demand to override by CO operator in call status
DCPA Park a user at a specific user
SELFPA Park a user on one own line
RECONNPA Reconnect on held call
RERING Ring partner again
CTDL Line seizure for cut through or suffix dailing in tie traffic
OUTPULSE Suffix transmission of digits on the line during call status for cut through or suffix dailing in tie traffic
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DARs for the Optiset API feature
WSS Start workstation session
DARs for service functions
FLTRACE Activate the flag trace
FREQTEST Test the DTMF and MFC transmitters
CTLS Controlled Trunk and Line Selection
HWTEST Start the HW test of the terminal (optiset)
TESTLN Test line
TESTTONE Connect test tone transmitter for 800hz test
COMBO Combination test (transmission test termination)
LOOPBACK Loopback test (transmission test termination)
MILLWAT Milliwatt test (transmission test termination)
SILENCE Silence test (transmission test termination)
PRITEST Primary rate test line loopback
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5.3 Overview of the CPS
Possible AMO values: 0 - 22 (from Version V 2.3 --» V 3.x )
0 Auxiliary CPS for networking (DAR NETRTE)
1 Suffix dialing (station / attendant)
2 Switching of in-house call at attendant console
3 Switching of central office call at attendant console
4 Prefix dialing at attendant console
5 Prefix dialing by station
6 CO incoming DID
7 IDN connection from CO incoming DID
8 Consultation of station user from in-house call
9 Consultation of a station user from CO call
10 Incoming station line traffic
11 Incoming tie line traffic
12 Incoming link traffic
13 Seizure from satellite PABX for data traffic
14 CHECK mode on attendant console
15 CHECK mode on HICOM terminal
16 Seizure in private network
17 Seizure during consultation in private network
18 Single code calling device: code digits in suffix dialing
19 Expiration of time supervision
20 Function assignment to key on HICOM terminal
21 Used only in USA
22 Consultation of station user from conference
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Associated pairs for simultaneous processing are listed in Table 5-1 and pairs for sequential processing in Table 5-2. Digit analysis results AFWDVCE, ADND and ACOSX can also be used as 'feature toggling' digit analysis results. Thus, in the case of these digit analysis results, it is no longer necessary to handle them in pairs with the corresponding deactivation digit analysis results.
There are more features connected to special DARs, e.g. there are only decimal digits allowed with DAR STN or FLASHCD, also only 1 digit is allowed for DAR FLASHCD
Add simultaneously
DAR 1 DAR 2
AFWDREM DFWDREM
AFWDDTE DFWDDTE
AFWDFAX DFWDFAX
AFFWDDTE DFFWDDTE
AFFWDFAX DFFWDFAX
AFFWDVCE DFFWDVCE
ACBK DCBK
AHTDTE DHTDTE
AHTFAX DHTFAX
AHTVCE DHTVCE
AREM DREM
VMOWN VMFOR
MBON MBOFF
Table 5-1 Digit analysis result pairs
Must be entered in sequence
Enter first Enter second
SPDC1 SPDC2
CCS CCSURG
CCMS CCMSURG
Table 5-2 DAR pairs for sequential processing
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Function:
● ADD Assign digit analysis results
● CHA Change digit analysis results
● DISPLAY Delete digit analysis results
● DEL Display digit analysis results
● REG Regenerate digit analysis results
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6 VBZ - Internal Traffic Restrictions
The internal traffic restriction matrix regulates communications among the traffic groups (ITR groups). Stations and trunks are combined into ITR groups which have an identical traffic re-striction matrix, i.e. which have the same traffic restrictions to other ITR groups.
Relations between ITR groups can be set up and changed as desired with the ITR matrix.
Only a portion of the total communications of the switching unit is regulated with the ITR matrix. The matrix is only queried when the dialing outcome is a station (also master station in a hunt group).
The following traffic relations between two groups are possible:
● A = allowed
● D = denied
Thus directional traffic restrictions between two ITR groups can also be regulated.
The traffic relation within one group must always be allowed. For that reason, the diagonal line of the matrix may not be altered (always contains the entry "A").
A second static matrix is used to regulate traffic relations between card users and card readers. This matrix is administrated by the AMO VBZA.
The features "controlled station restriction" and "controlled station restriction - group", as well as "controlled station-to-station restriction", do not affect the ITR matrix. For these features, a separate table exists, which is administrated by the AMO ACTDA.
The ITR matrix is created from the database and initialized with A (= allowed). As a result, an ADD branch for the AMO VBZ is not necessary.
Function:
E.g.: ITR-Gr 05 --> 03 allowed
ITR-Gr 03 --> 05 denied
● DISPLAY Interrogate the ITR matrix
● CHANGE Change the ITR matrix
● REGENERATE Regenerate the ITR matrix
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7 COSSU - Classes of Service
The classes of service contain combinations of authorizations and features and are assigned to one ore more stations (AMO-ACSU, AMO-SBCSU, AMO-SCSU resp. AMO-SSCSU). Class-es of service are also assigned to trunks for call traffic (AMO-TACSU, AMO-TDCSU resp. AMO-TSCSU).
Each class of service is divided into 3 services:
– Voice (VCE)
– Facsimile (FAX)
– Data Terminal (DTE)
Table 1 shows the COS authorizations, a description of the authorization, the service in which each authorization is applicable, and whether an autorization effects a station and/or a trunk. This table is only a compilation of classmarks. It does not allow you to establish cross-referenc-es between the different authorizations.
The -without direct trunk access- and -without tie trunk access- authorizations for the specified service are indicated by the fact that the direct trunk access and tie trunk access authorizations are not set for the corresponding service.
● COS 0 is not a valid class of service.
● LCR classes of service
Change, display, and regenerate LCR classes of service, each with up to 64 LCR authori-zations and LCR options (for example, LCR expensive route tone).
Sixty-four LCR classes of service are permanently configured, 32 of which are for voice, fax, and 32 of which are for data.
LCOSV=1 is initialized for the attendant console with all the authorizations. The others are initialized without contents and edited by means of the branch CHANGE
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Authoriza-tion
Description ServiceVCE.FAX .DTE
Application STA ...TRU
General Classmarks
ACTMAN Manual CDR Account Code possible X X X X
ANSYN Announcements with synchronized start of text
X X
APHOT Application hotline X X
ATRACE Automatic station number identification X X
BASIC Basic device authorization X X X
BDCP Disable selective call pickup X X
COIN Coinbox telephone X
COSXD Class-of-service changeover with code X X
CTLS Selective trunk and station dialing X X
DATA Non-voice data authorization X X
DICT Dictation authorization X X
DSSKEY KEY functionality with DSS key X X
DPSTN Dial pulsing X X X X
DSM Access to service module (DTE) X X
DNDOVR Override do not disturb X X
DIDBLK DID barring X X X X
FAX Access to service module (FAX) X X
GRPCAL Group call X X
HGICLD Hunt group code in call party number X X X X
HOT HOT Hotline X X X
INATCP International call in private network X X X X
LOCCPV Local connection in private network X X X X
MANOV Manual override X X
MB Mailbox (authorization to read mail) X X
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MTRACE Manual station number identification X X
NOARNO Ports to which recall is not permitted X X
NOCHRG Without call charges X X X
NOPTCD Change night service variant of an AC group via code
X X
NPINDP No pin for dailing pattern required X X
OFHKRC Off hook recall X X
PINAFM PIN Identification and Follow-Me in one step X X
RKOABS Absolute override/camp-on security X X
REVCHA Reception of a collect call X
RSVLN Access to reserved trunks X X
SPKR Loudspeaker announcement authorization X
SUBEPP Consulting party is responsible for call charg-es
X
SUTVA Station can transfer before answer X X
TOLLPV National call in private network X X X X
TRACE Automatic call trace X X
TRANSG Indirect access to private network X
TTT Transfer Trunk to Trunk X X X X
VCE Access to service module (Voice ) X X
General Country-Specific Authorizations
PRCO External party with priority X
PRCO1 External party 1 with priority X
PRISTN Station with priority X
TSUID External party identification X X X X
Call Forwarding
CFB Call forwarding on busy X X
Authoriza-tion
Description ServiceVCE.FAX .DTE
Application STA ...TRU
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CFNR Call forwarding on no reply X X
CFSWF Automatic changeover to fixed call forwarding after deactivating variable call forwarding
X X
FWDBAR Prevent call forwarding X X
FWDECA CF-EXT as a function of COS 1 / 2 X X
FWDEXT Extended call forwarding X
FWDNWK Call forwarding to exchange X
Emergency Override/Emergency Disconnect
AOBTR Autom. emergency override to busy trunk X X
REOVR Rejection of emergency override/disconnect X X
Direct Trunk Access and Tie Trunk Access Authorizations
NOCO Without direct trunk access X X X X
RTA Restricted trunk access X X X X
TA Unrestricted toll access authorization X X X X
NOTIE Without tie trunk access X X X X
RTIEA Restricted tie trunk access X X X X
TTCR11 Partial tie trunk access authorization 1 X X X X
TTCR12 Partial tie trunk access authorization 2 X X X X
TTCR13 Partial tie trunk access authorization 3 X X X X
TTCR14 Partial tie trunk access authorization 4 X X X X
TTCR15 Partial tie trunk access authorization 5 X X X X
TTCR16 Partial tie trunk access authorization 6 X X X X
TNOTCR Tie trunk access authorization X X X X X
EURO-ISDN Terminals
MSN Multiple Subscriber Number X X X X
MULTRA Multi-Trans (called terminal seized several times) X X X X
OVCAT Override Category X X X X
Authoriza-tion
Description ServiceVCE.FAX .DTE
Application STA ...TRU
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SPECAR Special arrangement X X X X
SUBCAL B is notified of A station number X X X X
SUBDB B is notified of default B station number X X X X
SUBMSN B is notified of MSN X X X X
Services on DSS1 - Multi-Device Connection
CCBS Completion of calls to busy subscribers X X X X
COLR Connected line identification restriction X X X X
CW Call waiting X X
MCIDM Malicious Call Identification - manual X X X
MCIDA Malicious Call Identification - automatic X X X
TP Subscriber not in call pickup group X
UUS1IM Implicit use of UUS1 service X X X
UUS3 Use of UUS3 service X X X
QSIG + DSS1 to the Public Exchange
FWDBAS Call forwarding programmed by another sub-scriber
X X X X
FWDDIR Activation, deactivation and display of incom-ing call forwarding
X X X X
FWDFAS Call forwarding programmed for another sub-scriber
X X X X
KIESIG Keypad IE signaling possible X X X X
Call Charge Identification for Data Selection
CDRATN Call detail recording at attendant console X X
CDRC Call detail recording central X
CDRINT Call detail recording of internal call X X X X
CDRSTN Call charge display during the call X X X X X
CDRS Call detail recording per station X X
Authoriza-tion
Description ServiceVCE.FAX .DTE
Application STA ...TRU
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Functions
Features for Public Telephones with Metering Pulses(these class marks can be released on a country specific basis only)
MTEQ Maintenance equipment X
PUPHON Public telephone X
SCRNCA Station with no charge party A X
SCRNCB SCRNCB Station with no charge party B X
SCRSPC Station with special call detail recording X
China
Service Documentation
Spain
Service Documentation
ANI outgoing GUS
Service Documentation
GUS Stufe 2&3
Service Documentation
● ADD Add a Class of Service
● CHANGE Change of Classes of Service
● DELETE Delete Classes of Service
● DISPLAY Display Classes of Service
● REGENERATE Regenerate Classes of Service
Authoriza-tion
Description ServiceVCE.FAX .DTE
Application STA ...TRU
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8 TAPRO - Key Programming
The AMO TAPRO is used for loading the programmable key functions of digital and IP voice terminals.
Various standard or individual key assignments can be loaded. The AMO TAPRO also allows individual key functions to be changed. Furthermore, the AMO is used for the administration of the standard key assignments. As Spirit IP Phones will be configured using the already existing opti-IP device configuration, the required TAPRO functionality to allow administration of Key Layouts for Spirit IP Phones (with or without Key System Functionality) is already present. TAP-RO is extended to delete information on which type of Electronic Key Label shall be used and which individual text shall be used for the Electronic Key Label
In the generation sequence, AMO TAPRO is called at two points in the batch: before AMO SBC-SU to change standard key assignments, and after AMO SBCSU/SSCSU to change individual keys
Functions
The AMO TAPRO can be used for the following terminal types:
● optiset E T3 / T8 / T12
● optiPoint 500 T8 / T12 / T19
● optiPoint 600 T19
● optiPoint 4x0 T8 / T12 / T19
● optiPoint WL2 professional
● OpenStage 10, 15, 20, 30, 40,60 and 80
● OpenClient
● as well as the various add-on terminal types
With the AMO TAPRO, it is not necessary to set up the standard key assignments, since all 127 for optiset valid standard assignments for each terminal type are already stored in the data-base. All terminals are allocated one of these standard assignments when they are first config-ured.
● The terminal will be not deactivated from the AMO TAPRO, exception deletion of DSS keys.
● If the terminal was deactivated before the processing, it remain deactivated.
● A standard key layout with add-on terminal can be assigned to a subscriber OPTISET with-out add-on terminal, but only the key functions of the basic terminal are accepted.
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● Zulässige Angaben und ihre Bedeutung
DISPLAY-TAPRO:TYPE=STN,STNO=7243;
+--------------+----+---------+------------------------------------------------+
| STATION |STD | DIGTYP | FUNCTION KEYS WHICH DIFFER FROM STANDARD |
+--------------+----+---------+------------------------------------------------+
| 7243 |101 | OPTISET | |
+--------------+----+---------+------------------------------------------------+
CHANGE-TAPRO:STD=101,DIGTYP=OPTIT19,KY09=DSS;
DISPLAY-TAPRO:TYPE=STN,STNO=7243;
+--------------+----+---------+------------------------------------------------+
| STATION |STD | DIGTYP | FUNCTION KEYS WHICH DIFFER FROM STANDARD |
+--------------+----+---------+------------------------------------------------+
| 7243 |101 | OPTISET | 9 DSS |
+--------------+----+---------+------------------------------------------------+
OptionsforSTD,STNO
Basic terminal(s) Add-onterminal(s)
No terminaltypespecified
STD Load new std. key layout for sp. basic terminal type
Load new standard key layout for add-on terminal
Error messageF03
STND Load new function for freely-prog., ind. keys at sp. STNs with sp. (basic) terminal type
Load new function for freely-programmable, in-div. keys at specified add-on terminal.
Load new function for freely prog., ind. keys at spec. terminals
STNO and STD
Load new standard key layout plus new functions for freely-prog., ind. keys at spec. STNs with spec. (basic) terminal type.
Error messageF05
Load new std. key layout at spec. STN and freely-prog. key functions at ba-sic terminal.
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Function
● CHANGE Change a standard key layout Change freely-programmable key layout
● DISPLAY Display standard and freely-programmable key layoutsDisplay standard key layouts Display freely-programmable key layouts
● REGENERIATE Regenerate standard and freely-programmable key layouts Regenerate standard key layouts Regenerate freely-programmable key layouts
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9 SBCSU - Station and S0 Bus Configuration of SWU
The AMO SBCSU configures terminal devices (stations) at S0 bus connections, S0 interfaces, Up0/E interfaces, IP interface and on the ATM switch. A maximum of one voice terminal may be assigned to an S0 bus. A maximum of three terminals with three different station numbers can be set up per Up0/E access. Apart from configuring stations, the AMO SBCSU offers the options of displaying, regenerating and changing the associated data, as well as cancelling sta-tion assignments.
The AMO SBCSU assigns all station combinations which contain the following terminals. All other station combinations are assigned with the aid of the AMOs SCSU or SSCSU.
● The following terminals are configured for the VOICE service:
– OPTISET: Digital telephone for Up0/E interface and CorNet-TS protocol
– OPTIP500: Digital telephone for Up0/E interface and CorNet-TS protocol
– OPTIIP: Digital telephone for IP interface and CorNet-TS protocol
– SET600: Digital telephone for S0 interface and EDSS1 (EURO-ISDN) or NI-BRI protocol
– ANADEV: Analog voice terminal(connected to Up0/E via terminal adapter a/b)
– Terminal equipment for Cordless Multicell Integration (CMI Version >= V2.2):BASE: CMI base station with Up0/E interface and CorNet-TS protocolRADIO: CMI mobile user with Up0/E interface and CorNet-TS protocolEXTLINE: CMI Extension connection with S0 interface and EDSS1 (EURO-ISDN) pro-tocol
– Voice terminal equipment with SIP or S0 or S2 interfaces
● The following terminals are configured for non-voice services only:
– API: Workstation protocol interface and CorNet protocol (DATA service)
– ANADEV: analog non-voice terminal (DTE and FAX)(connected to Up0/E via terminal adapter a/b)
● DTE:
– digital DTE with S0 interface, EDSS1 (EURO-ISDN) protocol
– digital DTE with U2B1Q interface, NI-BRI protocol
– digital DTE with V.24 interface (connected via terminal adapter), EDSS1 (EURO-ISDN) protocol
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– digital DTE with U2B1Q interface (connected via terminal adapter),NI-BRI protocol
– analog DTE (connected to S0 via terminal adapter a/b and modem)
● FAX:
– Group 2 and 3 (connected to S0 via terminal adapter a/b)
– Group 4, EDSS1 (EURO-ISDN) or NI-BRI??? protocol
● Non-voice terminal equipment with S0 or S2 interfaces, e.g. DP systems, LANs, Servers.
The type of non-voice terminal equipment for DTE and FAX connected to S0 (analog, digital S0, digital X.21) is not taken into account for the purpose of assignment in this AMO. In addition to the terminal name, only the protocol type parameter DPROT resp. FPROT must be declared. The terminal attributes, which are not relevant for assignment purposes, are determined when the terminal first responds to a polling message at the bus connection or the station line circuit.
The terminals are assigned to the following modules:SLMS (S0 interface) (to Hicom H V1.0)
STMD (S0 interface) (to Hicom H V1.0)
STMD2, STMD3 (S0 interface)
DIU-N2, DIU-N4 (S2 interface)
DIU-S2 (S2 interface)
SLMQ (ANSI-U interface)In the case of extremely long lines (from 1-2 km up to 9 km)
SLMQ3 (U2B1Q interface)
SLC16 / SLC24 (Up0/E interface)
SLMO, SLMO16, SLMO24, SLMOP, SLOP2
(Up0/E interface)
STHC, STHC2 (combination of STMD and SLMO, i.e. S0 as well as Up0/E interface)
STMA (IWU to the ATM switch)
STMI-HFA (HFA gateway version 1 to IP)
STMI2, STMI4 (HFA gateway version 2 to IP)
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Functions
● ADD Configuring the static and dynamic memories in the CC and the LTGs for the above-described device combinations as well as entering the static device data
● CHANGE Changing the static device data .
● DELETE Deleting specific service assignments or an entire station configura-tion
● DISPLAY Interrogating existing station configurations
● REGENERATE Regenerating existing station configurations
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10 SCSU - Subscriber Configuration of Switching Unit
AMO SCSU is used to configure ports for the connection of the following terminals:
● ANATE to SLMA, SLMA2, SLMA3, SLMA24, SLMAB, SLMAR, SLMAC, SLMAE
● Charge Metering ANATE (ANATECM) to SLMAR
● AUXDIGI to SLMB, SLMB4
The digital terminals at S0/Up0/UpoE such as SET600/OPTISET/OPTIP500 are set up using AMO SBCSU.
Special subscribers (e.g. Hicom Trading Board subscribers) are configured by AMO SSCSU.
Each STN number can be assigned personalized data such as names or personal identification numbers (PIN) using AMO PERSI.
AMO TGER is used to assign additional station numbers to non-voice terminals which have al-ready been assigned a number (AMO SCSU/SBCSU).
It is also possible to configure "virtual" ports for all device types which have not been assigned to a module but are configured in the same way as regular physical ports. Virtual ports are iden-tified as INS=FLOAT or INS=ACLSTN. These ports are used by any ID card user who identifies himself at another terminal by inserting his ID card or by keying in the PIN, and who then makes the call using the features of his virtual port such as classmarks, speed dialing digit series etc.. An ANATECM is not allowed to be configured as virtual port.
It is also possible to install a signed off fictive station by depicting INS=SIGNOFF. A signed off station can only be an ANATE. Signed off stations can be signed on
● by entering a PIN-Number and a key number at the specific terminal or
● by being signed on terminal by means of service staff
● by administration command (AMO DSSU)
Signed off stations can be added to communication groups such as pick up groups, hunting groups etc. This allows a complete preconfiguration of subscribers.
For "virtual" ports (e.g. INS=FLOAT) PEN-specific parameters (e.g. COFIDX) are ignored.
A suffix-dialing connection is required for connecting special facilities such as VMX servers. This connection is identified as SPEC=SUFDIAL and parameterized using the parameter DH-PAR.
For special stations (e.g. COMTEL) and for special country specific adaptions in SLMA1/SLMA2/SLMA3/SLMA24/SLMAB/SLMAR-Loadware parameterization can be done by using parameter DHPAR.
Some special subscribers like Voice Pagers etc. are configured using parameter SPEC.
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Functions
● ADD Configuring the static and dynamic memories in the CC and the LTGs for the above-described device combinations as well as entering the static device data
● CHANGE Changing the static device data .
● DELETE Deleting specific service assignments or an entire station configura-tion
● DISPLAY Interrogating existing station configurations
● REGENERATE Regenerating existing station configurations
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11 Configuration of a Subscriber
11.1 UP0/E - subscriber
Configuration of an optiPoint 500 subscriber with a description of the parameter and cross ref-erences to the related AMOs.
New subscriber number:Related AMO: WABEDAR=STN has to be reserved (R), destinationnumber (DESTNO) = 0
PEN:optional parameter, system is using thenext free PEN of a SLMO24/SLMOP, if theparameter PEN isn’t used. Related AMO: BCSU/SDSU
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Authorizations (COS)- and LCR-Authorizations (LCOS) classesLCOSV for service voiceLCOSD for service data1 for day authorization2 for night authorizationRelated AMOs:- for content:COSSU, SDAT- for LCR:LDPLN, LDAT
DPLN-group 0-15Standard=0Related AMO:WABE
ITR-group 0-15Standard=0Related AMO:VBZ
Secret station numberIf “yes” is selected, the setting of the AMOZAND instead of PERSI is used.Related AMOs:ZAND: ALLDATA2, DISPNUUM=XXXIf ONLYEXT is selected, it is possible to trans-mit an other number instead of the extensionnumber.Related AMO:KNMAT: MODCON=REPEXT
COSX-group 0-15Standard=0Related AMOs:BERUM, BERUZ for switchingFEASU: COSXCD, COSXDB, COSXKEY,COSXATND, COSXTWABE: DAR ACOSX/DCOSXPERSI: PIN for COPIN 7 for the STN
Speed Calling Individual0, 10, 20, 30 destinationsRelated AMOs:DIMSU: SPDIFEASU: SPDIWABE: KZP=SPDI and SPDIPROGZIEL
Central speed calling lists: 0-15SPDC1: table 1SPDC2: table 2“16” code for deletingRelated AMOs:LRNGZ, ZRNGZDIMSU: SPDCL, SPDCDFEASU: SPDCWABE: DAR SPDC1, SPDC2
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IDCRStation with identity card reader
Key layout standardStandard=0-127Related AMO:TAPRO
SecretarySubscriber is secretary of a “CHESE”executive-secretary groupRelated AMO:CHESE
Number of add-on devicesdependent of the device: 0-4
Station in serviceyes/no or signed off (no PEN is used)
Alarm number0: no alarm assigned8-519: number of directional alarm group520-583: number of personal alarm groupRelated AMOs:VADSU
Reject call back on busyAttention to parameter CBKBMAX in AMOSBCSU.
Related AMOs:FEASU: CBK, DCBB, DCBNOAZAND: ALLDATA, CBKNO(number of callbacks for a STN activated incase of busy or no answer)
Reject call back on no answerAttention to parameter CBKBMAX in AMOSBCSU.
Related AMOs:FEASU: CBK, DCBB, DCBNOAZAND: ALLDATA, CBKNO(number of callbacks for a STN activated incase of busy or no answer)
Max. number of callback1-5 or 99Attention to parameter RCBKB in AMO SBCSU Related AMOs:FEASU: CBK, DCBB, DCBNOAZAND: ALLDATA, CBKNO(number of callbacks for a STN activated incase of busy or no answer)
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HeadsetWITHIND Headset with HW indicationNOIND: Headset without HW indicationAttention to parameter HSKEY in AMO SBCSU
Function of the HS key (Head set key)NORMAL: HS key must be used for answerHSGIND: HS key for indication of the head setRelated AMO:TAPRO
Text selector for display
Related AMOs:ZAND: ALLDATA2, TEXTSELIn ACTIVE TEXTSEL up to 5 languages can beselected.An user should select the language with a key:TAPRO: key LANSELSDAT: Attribute LNGDYN or LNGSTAT
Callback on no answer is stored in the mail-boxAttention to parameter RCBKNA in AMO SBC-SU
Related AMOs:FEASU: CBK, DCBB, DCBNOAZAND: ALLDATA, CBKNO
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11.2 Configuration of an IP subscriber
An IP-device like e.g. optiPoint 400, optiPoint 410, optiPoint 420 and optiPoint 600 will be con-figured in principle like a UP0/E subscriber. Additional resp. other parameters will be shown in the next part.
IP: connected to a STMIIP2: connected to a STMI2
Password for IP login procedure.
Codec, used by the ResourceManager.
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11.3 Deletion of a Subscriber
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12 SDAT - Administration of Individual Subscriber Attributes and General Subscriber Data
The AMO SDAT can be used to administer subscriber-related attributes and features for the voice service. It can process subscribers who have been added with the AMO SCSU, SBCSU, or SBCSU.
It can also be used to administer general data that is independent of any particular device.
12.1 CHANGE-SDAT
12.1.1 Changing Attributes / Features
When attributes are changed (added / removed), compatibility checks are carried out to test the following:
a) whether the attributes entered - or those already existing - are compatible with each other,
b) whether the attributes entered are compatible with the type of equipment belonging to the subscriber,
c) whether the attributes entered are compatible with special subscriber data
When attributes are added for ACD SUPERVISOR a check is carried out to establish whether there are sufficient purchased subscribers of this type.
When an ACD attribute is removed, a check is carried out to establish whether there are still ACD group relationships.
12.1.2 Changing General Subscriber Data (Branch DATA)
In this branch, it is possible to change general subscriber data that is independent of any device. This data consists of parameters that are processed in the AMO SBCSU and in the AMO SCSU and SSCSU.The checks correspond to the checks in the AMO with which the subscriber being changed was added.
12.1.3 Changing Subscriber Data (Branch DATA1)
In this branch, it is possible to change additional subscriber data. This data consists of param-eters that are processed with AMO SDAT only. AMO SBCSU, SCSU and SSCSU can not pro-cess this data.
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12.2 DELETE-SDAT
The action DELETE-SDAT can be used to delete specific subscriber attributes which were con-figured with CHANGE-SDAT, TYPE=DATA1.
PUBNUM
When deleting PUBNUM the parameters TON and NPI are deleted, too.
12.3 DISPLAY-SDAT
The action DISPLAY-SDAT results in the following:
1. In the branch SUBDATAthe general subscriber data and the subscriber-related attributes / features of a subscriber are output in tabular form.
2. In the branch SUBFINDsubscribers with a particular subscriber-related attribute / feature are output in tabular form.
3. In the branch SUBOVthe assigned device and the AMO used to add the subscriber are output in tabular form for the subscribers entered.
4. In the branch NNOFINDsubscribers with a particular NNO are output in tabular form.
12.4 REGENERATE-SDAT
The action REGENERATE-SDAT can be used to restrict the output to subscribers with particular subscriber-related attributes / features.
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AMOs Siemens
13 BERUM - Class of Service Switchover
Stations are allocated two classes of service (COS1 and COS2) in (COS1 = normal or day COS COS2 = alternative or night COS) in their line tables.The class of service are maintained by AMO COSSU and assigned to stations with the AMOs SCSU and SBCSU.An identifier (COS pointer) in the line tables indicates which COS is active.
AMO SCSU and AMO SBCSU subdivides the stations into COS switchover groups (COSX groups). This is performed in order to group stations so that a certain COS can be switched active for all of them.If no specific allocation has been made, a station belongs to COSX group 00. Stations with an active key switch (KEYSTN) are not changed over, but they are still assigned to a COSX group. The COSX groups are independent of other station groups formed on the basis of other fea-tures.
Switchover between the two classes of service can be performed from a station, from an atten-dant console, centrally using the AMO, via data channel and/or by means of a timed switchover.
a) COS Switchover from the Station
A station authorized for this type of switchover can switch over between the COSs us-ing the personal ID number (PIN) and a code for switchover using an active key switch (KEYSTN). As long as the alternative COS (COS2) is active, the user hears the special dial tone when he lifts the receiver. The station is assigned the authorization COSXCD (COS switchover by code) by AMO COSSU in order to be able to perform a switchover using the PIN. The PIN (maximum of 12 digits) is defined by the AMO PERSI.
b) COS Switchover from the Attendant Console (ATND)
Switchover of the normal COS of the COSX groups to an alternative COS can be per-formed from every attendant console, including the night attendant console (performed with the task BEZUM).
c) COS Switchover by AMO
COS switchover for COSX groups of stations can be performed using the AMO BERUM.
d) COS switchover using a data processing system (DVA) is implemented via a data channel.
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e) Automatic COS Switchover
The COS switchover for COSX groups can be carried out automatically at a specific, definable time. This time is defined using the AMO BERUZ (time table for times at which class of service switchover is to occur). Switchover is carried out by the task BEZUM.
Priorities for COS Switchover
The last COS switchover performed for a station is always in effect, regardless of where this change was carried out (from the station, from the attendant console or automatically).
Function:
CHANGE-BERUM;
DISPLAY-BERUM:
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AMOs Siemens
14 BERUZ - Times at which Class of Service Switchover is to Occur
Stations (configured by AMO SCSU and AMO SBCSU) are allocated two classes of service COS1 and COS2) in their line tables. A class of service contains the authorizations of a station. An identifier (COS pointer) in the line tables indicates which COS is active, i.e. which of the sta-tion’s authorizations are currently activated; this is usually COS1. AMO SCSU and AMO SBCSU subdivides stations into COS switchover groups. This is per-formed in order to group stations so that a certain COS can be switched active for all of them. The COSX groups are independent of other station groups formed by other features. If no specific allocation has been made, a station belongs to COSX group 0. Stations with an active key switch (KEYSTN) are not switched over, but they are still assigned to a COSX group.
The classes of service can be switched over from a station, from an attendant console, y means of AMO BERUM, via data channel, and/or by means of a timed switchover.
Switchover at a fixed Time (timed Switchover) A table is created in the database, in which the following data is entered for each day of the week and for each COS switchover group:
● A time at which COS1 is switched to active (COS1T),
● A time at which COS2 is switched to active (COS2T),
● A program switch indicating whether the displayed switchover to COS1 is to be carried out on that day (COS1),
● A program switch indicating whether the displayed switchover to COS2 is to be carried out on that day (COS2).
AMO BERUZ administrates this table. (The switchover is carried out with the task BEZUM.)
MON(1) TUE(2) WED(3) THU(4) FRI(5) SAT(6) SUN(7)
COSX 006.5515.40off/on
06.5515.40off/on
06.5515.40on/on
06.5515.40on/on
06.5515.40on/on
00.0000.00off/off
00.0000.00off/off
COSX 106.5515.40on/on
06.5515.40on/on
06.5515.40on/on
06.5515.40on/on
06.5515.40on/on
00.0012.00on/on
00.0012.00off/off
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
COSX1500.0000.00off/off
00.0000.00off/off
00.0000.00off/off
00.0000.00off/off
00.0000.00off/off
00.0000.00off/off
00.0000.00off/off
(COSX = Class of service switchover group)
Table 14-1
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Function:
ADD-BERUZ:
DISPLAY-BERUZ:
REGENERATE-BERUZ:
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AMOs Siemens
15 ZIEL - Destination Addresses for Stations
This AMO is used to enter, interrogate or regenerate destinations in the database (DB) for the following features:
● Call forwarding - fixed (FWD)
● Messenger Call (MSGR)
● Direct station select keys (DSS)
● Name/repertory key (NAME)
● Individual speed dialling (SPDI)
● Saved Number Redial (SNR)
● Attendant Console Direct Destination Select keys (DDS)
● Destinations for the BUZZ Feature
AMO-ZIEL is also used to add, delete, interrogate or regenerate for:
● dialing external servers to deposit messages
● identifying external servers when retrieving messages with the START key
Call forwarding - fixed
Two forwarding variants are possible:
● STATION forwarding can be added or deleted by AMO ZIEL or by the subscriber, and activated or deactivated by the subscriber or by AMO ACTDA.
● SYSTEM forwarding is a new forwarding typeAdding and deleting destinations is only possible by AMO ZIEL, whereby different destina-tions can be entered for different forwarding types (eg.busy, no response), immaterial, if the incoming call is internal or external. The forwarding can be activated or deactivated by AMO ACTDA, or by the subscriber using the relevant codes.
● Call forwarding on no responseThe fixed call forwarding destinations do not act ad destinations for call forwarding on no response any more. These can be added as fixed destinations for forwarding type CFNR (no response) or CFB (busy) in the SYSTEM forwarding (AMO ZIEL), and activated by AMOACTDA, or can be added and activated as variable forwarding (CFNR or CFB) (AMO ACTDA).
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Fixed destinations can be created for each service. This AMO however does not activate or de-activate forwarding. Destinations can be entered in the services VCE (voice), FAX and DTE. Destinations for devices working to the DSS1 protocol can only be activated as variable for-warding destinations by AMO ACTDA.Destinations can be entered for all created STNOs (station numbers) with the exception of at-tendant terminals, irrespective of whether or not the station concerned has any terminal devic-es.
The following diversion types can be used:
for SYSTEM forwarding
● CFU (Call Forward Unconditional)
● CFB (Call Forward Busy)
● CFNR (Call Forward No Reply)
● CFDND (Call Forward Do Not Disturb)
for STATION forwarding
● CFU (Call Forward Unconditional)
Messenger Call
The members of an integrated executive/secretary system can have a messenger call key on their voice terminal for which a fixed destination can be entered. This destination can also be pro-grammed at the administration and maintenance terminal. Only analog stations are permitted.
Direct station select keys
Direct station select (DSS) keys can be assigned to all terminals. The key functions for OPTISET and Optipoint 500 are defined with the help of the AMO TAPRO. Only internal destinations are possible (analog telephone, digital voice terminal, and personal attendant call number). In addition to entering the destination in the database, the AMO ZIEL also enters partner infor-mation for the destination station (controls the lamps in the DSS key).
Name/repertory key
The key functions for the OPTISET and Optipoint 500 are defined with the help of the AMO TAPRO. Destinations can only be entered after the key functions have been defined. The des-tination entry may be any combination of digits comprising a maximum of 22 characters. Destination entries may be protected against changing and deleting by the destination terminal user, using parameter PROTECT=YES. Changing or deleting by AMO will be possible further-more.Name/repertory keys of OPTISET / Optipoint 500 add on terminals have two levels to store des-tination entries. A level can be selected by entering a value for parameter LEVEL.
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AMOs Siemens
Individual speed dialling
Stations that are permitted to use the SPDI are provided an SPDI list when created by means of AMO SBCSU. Stations with an analog telephone, a voice terminal, mobile users (without a device, but with a separate terminal connection), and DTE stations may use the SPDI. Voice terminals can also used name/repertory keys and DSS keys.
Saved Number Redial
Each analog telephone and voice terminal can store a dialed number with up to 22 digits for redial. The destination can be any combination of digits (0-9,*,#,A,B,C,D).
Attendant Console Direct Destination Select keys
Each attendant console has 42 destination (DDS) keys
● 40 destinations via the destination keys
● 2 destinations via R1, R2 keys (trunk group keys for reserving lines).
The destinations are entered into a storage area that can hold up to 42 The configuration is carried out when the attendant console is created by means of AMO AC-SU. The destination keys write memory locations 1-40, while the trunk group keys R1 and R2 are always defined at locations 41 and 42.
Destinations for the BUZZ Feature
The buzz feature allows a user to alert (buzz) a predefined keyset or DFT (optiset and optiPoint 500) by pressing the BUZZ key or by keying an access code. Voice communication is not pos-sible. Buzz causes the target keyset or DFT to be alerted and the originator’s station number to be displayed for two seconds. The buzz target (destination) and the originator must be locat-ed in the same node.
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15.1 ADD-ZIEL
Example
A fixed call forwarding destination for diversion type CFNR to STNO 3101 for the VOICE service can be created for voice station 2100.
Input:
ADD-ZIEL:TYPE=FWD,SRCNO=2100,SI=VCE,DESTNOF=3101,DTYPE=CFNR,ITYPE=GEN,CFVAR=SYSTEM;
15.2 DISPLAY-ZIEL
Example
Interrogate the call forwarding destination for station 2100.
Input:
DISPLAY-ZIEL:TYPE=FWD,SRCNO=2100;
Output:
FWD SOURCE | SERVICE | DTYPE | ITYPE | CFVAR | DESTINATION -------+----------+-------+---------+---------+----------------------- 2100 | VCE | CFU | INT | SYSTEM | 3140
15.3 REGENERATE-ZIEL
Example
Regenerate the call forwarding destination for station 2100.
Input:
REGENERATE-ZIEL:TYPE=FWD,SRCNO=2100;
Output
ADD-ZIEL :FWD,2100,VCE,2100,VCE,3101,,CFNR,GEN,SYSTEM;
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AMOs Siemens
16 ACTDA - Activation of User Features
The AMO ACTDA is used to regenerate feature-specific data entered by a user via the terminal. The functions DISPLAY, REGENERATE, ADD and DELETE are implemented. The AMO en-ables these data to be saved while the software version (APS) is being changed.
Using the DISPLAY function, the user data recorded by ACTDA can be displayed on the admin-istration and maintenance terminal.
A command batch is generated with the REGENERATE function, based on the user data. This command batch is used for reinitializing the database.
The ADD function initializes the database with the user data.
The AMO ACTDA is used mainly for regenerating data. In addition, it can be used for test pur-poses.
In special cases it can be necessary to deactivate the activated call forwarding of a station. This function has been implemented in the branch DELETE.
TYPE Feature
STN DND Do-not-disturb
FWD Fixed call forwarding
Variable call forwarding
OPTISET individual optiset E / optipoint 500 settings
OUTHUNT switch out of hunt group
RCUTOFF Ringer Cutoff
REMIND Timed reminder
REPSECR Deputy for secretary
RNGXFER Ring transfer
VCR Voice call rejection
ATNDGR NOPT Night variant for ATNDGR
ITR DNDGR Group do-not-disturb function
ISTR Controlled station-to-station restriction
Controlled station-to-station restriction for all ISTR groups
MOBHFA MLOGOFF Logoff of mobile hfa-user
MLOGON Logon of mobile hfa-user
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Some user data is already administrated by other AMOs. These data are not additionally ad-ministrated by ACTDA.
Function:
ADD-ACTDA:
DELETE-ACTDA:
DISPLAY-ACTDA:
REGENERATE-ACTDA:
AMO Feature-specific data
CHESE Secretarial transfer function destinations
ZIEL Individual speed dialing numbers
Call numbers for stored number redial
Name/repertory key data for DIGITEs
DSS (direct station selection) destinations
Messenger call destinations
Name/repertory key data for ATNDs
TAPRO Store key functions for DIGITEs
BERUM Data for class-of-service changeovers (individual, group, all)
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AMOs Siemens
17 PERSI - Personal Identification
The AMO PERSI is used to administer personal data. The cross-reference to the person is in-variably established via the station number.
a) NamesEach station number can be assigned either one or several (any number of) names; the name entered first will be displayed on DIGITE displays. All other names are used for ETD functions. The name can also be made up of 2 parts:
1. Surname, simple or composite, e.g. Hr. Meier, Fr. Dr. Huber
2. Name, and additional information, e.g. Anna, Dept. A3The characters of the "surname" are separated from those of the "name" by means of a "*".
Digite display: The DIGITE has a 24-character display. The type of display, e.g. station number plus name or name only is defined by means of AMO ZAND, TYPE=ALLDATA, DISPMODE-MODE1 to MODE5 (see examples). There is no verification of the last name. The number of blanks between the station number and the name is exactly one.
Examples
Input: Dr. v. Ritter*MartinDisplayMODE1: 32857 DR. V. RITTER M.MODE2: 32857MODE3: DR. V. RITTER MARTINMODE4: DR. V. RITTERMODE5: # DR. V. RITTER
b) Organizational unitEach name can be assigned an organizational unit (for ETD functions).If a station number has not been assigned a name, no org. unit can be assigned.If station number has been assigned several names, but not everyone of these names has been assigned an organizational unit, the organizational unit which was assigned last is automatically assigned to the remaining names.
c) Personal identification number (PIN)The PIN is used for personal identification of a person to the system. Each station number can be assigned any number of PINs. The length of a particular PIN type is determined centrally. The PIN length may or may not be the same for the types of PINs described above. Each PIN (except COSXCD) must be unique throughout the system.
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The "class of PIN" (COPIN) is used for each PIN type in order to implement the PIN display feature and in order to distinguish between the different PIN types.The characteristics of the COPINs (1 through 15) are summarized in the so-called COPIN table in which the following default values are assigned to the type of PIN:
Function:
ADD-PERSI:
CHANGE-PERSI:
DELETE-PERSI:
DISPLAY-PERSI:
REGENERATE-PERSI
PINTYPE(COPIN)
PIN COTYPE PIN Meaning of a type of PIN
1 = PIN1 MOBILE Manual identification2 = PIN2 BUSLONG Identification of business calls (remains active until
manual deletion or timeout).3 = PIN3 BUSSHRT Identification of business calls4 = PIN4 PRIVSHRT Identification of private calls5 = PIN5 PCODE Identification of a project for a call (project code =
PCODE).6 = PINC PINCARD Identification by means of a magnetic/chip card which is
inserted into the card reader of the terminal.7 = COSXCD COSXCD Identification of users which are authorized to activate
COS changeover from the terminal.8 = SI SI Pin for service id9 = CDRAC PCODE CDR account code10 = PIN10 PCODE PIN for dialing pattern check11 = PIN11 MOBILE Manual identification12 = PIN12 MOBILE Manual identification13 = PIN13 MOBILE Manual identification14 = PIN14 MOBILE Manual identification15 = PIN15 MOBILE Manual identification
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AMOs Siemens
18 LRNGZ - List of Central Speed Dialing Numbers
The central speed dialing facility (SPDC) is used to simplify dialing. Long call numbers (desti-nation numbers) - usually external numbers - can be transmitted by means of a speed dialing number.
The allocation of speed dialing numbers to destination numbers is stored in the central speed dialing lists.
Up to 16 of these lists (0 to 15) can be set up, each with a maximum of 1000 speed dialing num-bers.
Each user can access up to 2 of these lists, which are allocated to him with parameters SPDC1 (List 1) and SPDC2 (LIST 2) of a subscriber AMO (e.g. AMO SCSU or SBCSU).
The AMO LRNGZ is used to set up the lists and to allocate speed dialing numbers to each of them. The allocation of destination numbers is carried out using AMO ZRNGZ.
The SPDC feature is accessed by dialing a code following the speed dialing number.
There are two versions of access.
a) Access of both lists via only one dialing code (digit analysis result SPDC1 in AMO WABE).
In this case the speed dialing numbers of the lists, allocated to the user (parameter SPDC1 and SPDC2 of the subscriber AMO) must be different, since it is the speed di-aling number which determines whether the 1st or 2nd list is dialed. The administrator of the switch has to take care of the so called „unambiguousness“ of the speed dialing number ranges. Because of the various combinations of speed dialing lists, allocated to the users (any two lists out of the available lists 0 to 15 can be allocated to any user), AMO LRNGZ is not able to check the unambiguousness.
In the case of 3 digit speed dialing numbers a user can access a maximum speed di-aling number range of 000 to 999, divided over the two allocated lists. Therefore with this version of access a user has access to maximum 1000 speed dialing numbers.
b) Access of both lists via 2 dialing codes (digit analysis results SPDC1 and SPDC2 in AMO WABE). Via dialing code of digit analysis result SPDC1, the user has access to the 1st list, allocated to the user (parameter SPDC1 of the subscriber AMO) and via dialing code of SPDC2 to the 2nd list (parameter SPDC2 of the subscriber AMO)
In this case the speed dialing numbers of the lists, allocated to the user can be the same, i.e. the speed dialing number ranges can overlap, since the Lists are accessed via the dialing code (digit analysis results SPDC1 and SPDC2 in AMO WABE) and not via the speed dialing number.
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In the case of 3 digit speed dialing numbers a user can access a maximum speed di-aling number range of 000 to 999 per list. Therefore with this version of access a user has access to maximum 2000 speed dialing numbers.
The AMO DIMSU is used to establish how many lists (parameter SPDCL) and destinations (pa-rameter SPDCD) can be set up in the system.
Function:
ADD-LRNGZ:
CHANGE-LRNGZ:
DELETE-LRNGZ:
DISPLAY-LRNGZ:
REGENERATE-LRNGZ
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AMOs Siemens
19 ZRNGZ - Central Speed Calling Digit Series
The central automatic dialer is a memory area of abbreviated numbers which is distributed among several lists. All system subscribers can access a maximum of two lists each.The speed dialing lists are created by AMO LRNGZ.
An abbreviated number is used to simplify dialing. Each abbreviated number can be assigned an unabbreviated number. The number of suffix dialing digits describes the number of digits in the unabbreviated number which are to be transmitted with a time lag during automatic suffix dialing.
DISPLAY-ZRNGZ:TYPE=SPDNO,LST=00,SPDNO=00&&49;
Output:
LST: 00 KRN-BEREICH: 00 BIS 49
KRN LRN NAWA NAME
00 00897221 ............1 .......SIEMENS MUENCHEN
02 003432564738 ... ..0 .......SPANIEN
03 0613111515 ..... ....0 .......KINODIENST MAINZ
Functions
● ADD
● DELETE
● DISPLAY
● REGENERATE
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Abbreviation Siemens
Abbreviation
This table shows some important abbreviations.
Abbreviation Definition
AADP Administration Daten Processor AMC Administration and maintenance controlAMO Administration and maintenance OrganizationAPI Application Interface
CCC Common Control;CMI Cordless Multicell Integration COS Class of Service;
DDBAR Data Base Access Routine / Datenbasis ZugriffsroutineDEE Data Terminal Equipment / DatenendeinrichtungDSCXL Data and Switch Processor for CompactPCI/LANDSS Digital Subscriber Signalling 1
EEDSS1 European Digital Signalling System No1 (Europ. D-Kanal Protokol)
IISDN Integrated System Design Network/
Diensteintegrierendes digitales Nachrichtennetz
LLDU Logical Device Unit
MMMI Man Machine Interface (Mensch Maschine Schnittstelle)
OOS Operating System / Betriebssystem
QQSIG ECMA-Standard für die Signalisierung am Q-Referenzpunkt;
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SSIP Session Initiation ProtocolSWU Switching Unit (or new Common Control CC)
VVINET Virtual Networking
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