TACSU - configuration of analog trunk circuits in the SWU

The AMO TACSU is used to configure analog trunk circuits in the SWU.

A maximum of 99 trunks can be created with one ADD command (parameter NO). The AMO allows the operator to activate trunks in conjunction with the action ADD-TACSU only (parameter INS). Trunks already configured are activated or deactivated using the AMO DSSU, the parameter OFFTYPE in the CHANGE command is only used to control automatic deactivation and re-activation in case of loadware change.

Trunks provided for outgoing and/or bothway traffic must be allocated to a trunk group by means of AMO TACSU (parameter TGRP). These trunk groups must first be assigned by means of AMO BUEND and after AMO TACSU run be allocated to a route code by means of AMO RICHT. It is possible to assign up to 2000 trunks to one trunk group (see AMO BUEND, parameter NO and AMO RICHT, table 4, max. number of trunks per route).
Trunks for incoming traffic only are not usually assigned to a trunk group or allocated a route code.

All trunks in a trunk group must match with respect to the following parameters:
COTNO, COPNO, DPLN, ITR, COS, LCOSV, LCOSD, COFIDX, DESTNO, NNO, ALARMNO, CARRIER, ZONE, LIN, CIDDGTS, CBMATTR, SRCGRP, CLASSM, DITIDX, DEVTYPE and DEV,
as well as all device-dependent parameters:
CDRINT, DGTPR, LWPAR, DGTPRT1, DGTPRT2, DGTPRT3, CIRCIDX, MFCVAR, SUPPRESS, DGTCNT, TESTNO, CCTINFO, DIALTYPE and DIALVAR
insofar as they are required for the device in question. These parameters are already appropriately set by the AMO to the degree possible.

The parameters PEN, CCT, INIGHT, TCCID, TRTBL, RULEIDX, ATNTYP and INS can be assigned to individual trunk circuits.

Cross Reference to Other AMOs:

AMO BCSU Board configuration, switching unit
The AMO BCSU configures modules for trunk circuits. The AMO BCSU configures circuit 0 of the module DIUC and circuit 0 and 32 of the DIUC64 module.
AMO BUEND Trunk group
The AMO BUEND prepares empty trunk groups for trunks and administers the memory size of the trunk groups
AMO COP Class of parameter for device handler
The AMO COP assigns line parameters which can be assigned to a trunk using the parameter COPNO.
AMO COSSU Classes of service
The AMO COSSU is used to assign classes of service LCR classes of service for voice and data and classes of external which can be allocated to trunks using the parameters COS, LCOSV and LCOSD.
AMO COT Class of trunk for call processing
The AMO COT assigns trunk parameters (see parameter COTNO)
AMO DIMSU Dimensioning of features, switching unit
The AMO DIMSU administers the data base layout for device and supplementary memories of the call processing system and device handler
AMO DSSU Device switch of switching unit
The AMO DSSU is used to put trunks into operation or to block them
AMO KNMAT Node data for networking
Assigning originating node numbers (fictitious) for trunk circuits seized in the incoming direction, which do not transmit an NNO (see parameter NNO).
AMO LWPAR Loadware parameters for networking modules
The AMO LWPAR assigns loadware parameters for analog networking trunks (see parameter LWPAR)
AMO MFCTA Administration of multifrequency code tables
Using the parameter MFCVAR, an MFC table is assigned to a trunk
AMO PRODE Protocol descriptor for networking
The AMO PRODE assigns protocol descriptions P1 to analog networking trunks.
AMO PTIME Timers for peripheral processing
Timers for peripheral processing can be modified using AMO PTIME. With the aid of parameter CIRCIDX timer blocks can be assigned to trunks.
AMO REFTA Entry of digital trunks in the reference clock table
The AMO REFTA enters circuit 0 of the module DIUC and circuit 0 and 32 of the module DIUC64 into the reference clock table.
AMO RICHT Routing (route code) for trunks
The AMO RICHT is used to assign an route code to trunk groups for outgoing/bothway traffic
AMO TTBL CDR tariff table
The AMO TTBL is used to assign a cost parameter which may be allocated to trunks for incoming traffic by parameters CARRIER and ZONE
AMO VADSU Administration of NMC alarms in the SWU
The AMO VADSU is used to assign alarms, which an be assigned to trunks (see parameter ALARMNO)
AMO ZAND Administration of central system data
The AMO ZAND is used to assign an own node number to the system (see parameter NNO)

Destination Processor: BP (Switching Unit)

Functions

ADD create circuit password class 2
CHANGE change circuit password class 2
DELETE delete circuit password class 2
DISPLAY display circuit password class 0
REGENERATE regenerate circuit password class 2

Procedure Overview

ADD-TACSU

ADD-TACSU [PEN=<number>], [NO=<number>], [COTNO=<number>], [COPNO=<number>], [DPLN=<number>], [ITR=<number>], [COS=<number>], [LCOSV=<number>], [LCOSD=<number>], [INIGHT=<key-num>], TGRP=<number>, [COFIDX=<number>], [CCT=<string>], [DESTNO=<number>], [NNO=<number>], [ALARMNO=<number>], [CARRIER=<number>], [ZONE=<param>], [LIN=<number>], [CIDDGTS=<param>], [CBMATTR=<param>], [SRCGRP=<number>], [CLASSMRK=<param>], [TCCID=<string>], [DITIDX=<number>], [TRTBL=<param>], [RULEIDX=<number>], [ATNTYP=<param>], [HMUSIC=<number>], [INS=<param>],
[DEVTYPE=TC],[DEV=<param>], [MFCVAR=<number>], [DGTPR=<key-num>], [SUPPRESS=<number>], [DGTCNT=<number>], [TESTNO=<number>], [CIRCIDX=<number>], [CDRINT=<number>], [CCTINFO=<number>], [DIALTYPE=<param>], [DIALVAR=<number>], [COEX=<number>], [SVCDOM=<number>];
[DEVTYPE=TC1],[DEV=<param>], [CDRINT=<number>], [DGTPR=<key-num>];
[DEVTYPE=TC2],[DEV=<param>], [CDRINT=<number>], [DGTPR=<key-num>], [CIRCIDX=<number>];
[DEVTYPE=NW],[DEV=<param>], [LWPAR=<number>];
[DEVTYPE=TT],[DEV=<param>], [DGTPRT1=<key-num>];
[DEVTYPE=TT1],[DEV=<param>], [DGTPRT1=<key-num>], [DGTPRT2=<key-num>], [CIRCIDX=<number>];
[DEVTYPE=TT2],[DEV=<param>], [DGTPRT1=<key-num>], [CIRCIDX=<number>], [SVCDOM=<number>];
[DEVTYPE=TT3],[DEV=<param>], [DGTPR=<key-num>], [CIRCIDX=<number>];
[DEVTYPE=TT4],[DEV=<param>], [DGTPRT1=<key-num>], [DGTPRT2=<key-num>], [DGTPRT3=<key-num>], [CIRCIDX=<number>];

The following correlations exist between parameters PEN and NO in the ADD command of AMO TACSU:

All trunks are assigned with the same parameters.

Parameter INS can be used to activate the trunk at the same time as the static data is written.

If NO > 1 is specified, for all modules except DIUC, DIUC64 and TMDN the AMO attempts to assign trunks to different modules, so that if one module fails not all trunks of the trunk group fail.

If the first trunk to be assigned is assigned to a PEN in a module other than a DIUC or DIUC64, none of the subsequent trunks will be assigned to a DIUC or DIUC64 either. However, if the first trunk to be assigned is assigned to a PEN on a DIUC or DIUC64, then all subsequent trunks will be assigned to a DIUC and DIUC64, too. This may result in partial assignment of the requested number of trunks, even if free PENs are still available for the specified device type. In these cases, the AMO must be called again in order to assign the remaining number of trunks, if desired.

The assignment of circuit numbers to telephone channels on DIUC and DIUC64 modules is shown in the tables below:

Tabelle 1: Assignment of Telephone Channels to Circuit No. on DIUC and DIUC64
DIUC
TELEPHONE- CHANNELS SATZ-NR. PBC-NR. EBPL
- 00n
1 1
2 2
3 3
4 4
5 5
6 6
7 7
8 161n+2
9 17
10 18
11 19
12 20
13 21
14 22
15 23
- 80n+1
16 9
17 10
18 11
19 12
20 13
21 14
22 15
23 241n+3
24 25
25 26
26 27
27 28
28 29
29 30
30 31
DIUC64
TELEPHONE- CHANNELS SATZ-NR.
- 0
1 1
2 2
3 3
29 29
30 30
- 31
31 33
32 34
33 35
58 60
59 61
60 62
- 63

The device types may also be added mixed on the same module.

If a trunk is to be configured on the module DIUC or DIUC64 and the circuit 0 of the DIUC or the circuit 0 (for cct-no. 1-30) and circuit 32 (for cct-no. 33-62) of the DIUC64 is not contained in the reference clock table, the AMO TACSU enters this circuit automatically into the reference clock table and outputs the PEN concerned in advisory H16. The entry takes place with PRI = 0 and BLOCK = N. These parameters may be changed using the AMO REFTA. (For TMDN boards the reference clock is entered by AMO BCSU)

Certain devices are parmeterized in the loadware. They can be devided into two groups:

  1. The parameter sets are handled with AMO PTIME (TYPE=TSAC or TYPE=REST) and can be allocated to TACSU trunks with the parameter CIRCIDX or COEX.
    For each of these devices (except TSAC), an initialized parameter set exists on the hard disk, which is automatically loaded into the data base when the device is configured, and is assigned with the parameter CIRCIDX.
    If the initialized parameter set does not suit the requirements, it can be modified with the aid of the AMO PTIME (see PTIME description).
  2. The parameter sets are handled with AMO LWPAR and can be allocated to TACSU trunks with the parameter LWPAR.
    In contrast to above, these parameter sets must be created with the AMO LWPAR before they can be assigned.
When assigning a trunk to to an empty or to no trunk group, LCOSV und LCOSD are mandatory. If the parameters COPNO, COTNO or LWPAR are omitted, the AMO reads recommended values from the DB. According to the number of values found the AMO reacts as follows:
Note : Missing of TGRP parameter will lead to phantom ringing problems in AC-Win Application. Therefore, this parameter must be filled in for PENs used by AC-Win.

When assigning a trunk to to a non-empty trunk group, all parameters except the trunk individual data PEN, CCT, INIGHT and INS are set like the other trunks in the group. If a different value is entered the command is rejected. Examples:

  1. Create the 5th trunk with CO number 722 (CO traffic, bothway) at PEN 1-2-13-05 with the following parameters: digit evaluation group 3; COT number 4; COP number 7; trunk group number 17; device = main station code; message to call charge registration after 3 pulses; COS 453.

    Input:

     ADD-TACSU:PEN=1-2-13-05,DPLN=3,ITR=8,COTNO=4,COPNO=7,TGRP=17,
    CCT="722 AW 5",DEVTYPE=TC1,DEV=MOSIG,CDRINT=3,COS=453;

    Output:

     H01:  TRUNK ASSIGNED AT PEN 01-02-013-05
    H02: TRUNK RELEASED FOR CALL PROCESSING
  2. Create 3 more trunks starting free pen search at PEN 1-1-13-0, do not put into service.

    Input:

    ADD-TACSU:PEN=1-1-13-0,NO=3,TGRP=17,INS=N;

    Output:

     H01:  TRUNK ASSIGNED AT PEN  01-02-079-00
    H01: TRUNK ASSIGNED AT PEN 01-04-043-00
    H01: TRUNK ASSIGNED AT PEN 01-02-079-01

CHANGE-TACSU

CHANGE-TACSU PEN=<number>, [COTNO=<number>], [COPNO=<number>], [DPLN=<number>], [ITR=<number>], [COS=<number>], [LCOSV=<number>], [LCOSD=<number>], [INIGHT=<key-num>], [TGRP=<number>], [COFIDX=<number>], [CCT=<string>], [DESTNO=<number>], [NNO=<number>], [ALARMNO=<number>], [CARRIER=<number>], [ZONE=<param>], [LIN=<number>], [CIDDGTS=<param>], [CBMATTR=<param>], [SRCGRP=<number>], [CLASSMRK=<param>], [TCCID=<string>], [DITIDX=<number>], [TRTBL=<param>], [RULEIDX=<number>], [ATNTYP=<param>], [HMUSIC=<number>], [OFFTYPE=<param>],
[DEVTYPE=TC],[DEV=<param>], [MFCVAR=<number>], [DGTPR=<key-num>], [SUPPRESS=<number>], [DGTCNT=<number>], [TESTNO=<number>], [CIRCIDX=<number>], [CDRINT=<number>], [CCTINFO=<number>], [DIALTYPE=<param>], [DIALVAR=<number>], [COEX=<number>], [SVCDOM=<number>], [DELSVCDM=<param>];
[DEVTYPE=TC1],[DEV=<param>], [CDRINT=<number>], [DGTPR=<key-num>];
[DEVTYPE=TC2],[DEV=<param>], [CDRINT=<number>], [DGTPR=<key-num>], [CIRCIDX=<number>];
[DEVTYPE=NW],[DEV=<param>], [LWPAR=<number>];
[DEVTYPE=TT],[DEV=<param>], [DGTPRT1=<key-num>];
[DEVTYPE=TT1],[DEV=<param>], [DGTPRT1=<key-num>], [DGTPRT2=<key-num>], [CIRCIDX=<number>];
[DEVTYPE=TT2],[DEV=<param>], [DGTPRT1=<key-num>], [CIRCIDX=<number>], [SVCDOM=<number>], [DELSVCDM=<param>];
[DEVTYPE=TT3],[DEV=<param>], [DGTPR=<key-num>], [CIRCIDX=<number>];
[DEVTYPE=TT4],[DEV=<param>], [DGTPRT1=<key-num>], [DGTPRT2=<key-num>], [DGTPRT3=<key-num>], [CIRCIDX=<number>];

All parameters are optional except for PEN. If the trunk to be changed is allocated to a trunk group, all the trunks in the trunk group are changed, with the exception of input for the parameters CCT, INIGHT.

Changes of the parameters COFIDX, CIRCIDX and LWPAR take effect only after these has been loaded at the trunk. In such cases AMO TACSU outputs a corresponding advisory. The loading will be started by deactivation and re-activation with loading with AMO DSSU or automatically during CHANGE-TACSU depending on device state and OFFTYPE:

  1. OFFTYPE=NL:
    The advisory message H04 reminds the user to reload the trunk.
  2. OFFTYPE=DC:
    The trunk is soft-locked an re-activated. If the trunk was not busy it is reloaded during re-activation. If the trunk was busy the user has to reload it (H04).
  3. OFFTYPE=DI:
    The trunk is soft-locked an re-activated in any case.

Example:

Allocate COFIDX 2 to the trunks at PENs 1-2-79-0, 1-2-79-1 and 1-4-43-0 (trunk group 31). All the trunks in the trunk group are changed.

Input:

 CHANGE-TACSU:PEN=1-2-79-0,COFIDX=2; 

Output:

 H03:  TRUNK AT PEN 01-02-079-00 CHANGED
H03: TRUNK AT PEN 01-04-043-00 CHANGED
H03: TRUNK AT PEN 01-02-079-01 CHANGED

DELETE-TACSU

DELETE-TACSU {(min 1) PEN=<number>, TGRP=<number>}, [OFFTYPE=<param>];

When deleting trunks from a trunk group, the operator must ensure that those trunk groups allocated a route code always contain at least one device entry (error F15).

Trunks must be deactivated before being deleted (either manually or via the AMO DSSU). A deactivation with prior blocking does not take effect until the trunk is no longer seized by call processing.
Depending on OFFTYPE the AMO reacts as follows : "

Example:

Delete all trunks in trunk group 7.

Input:

 LOESCHEN-TACSU:BUNR=7; 

Output:

 H29: TRUNK 1-1-121-0 DELETED 
H29: TRUNK 1-1-121-1 DELETED
H29: TRUNK 1-1-121-2 DELETED
F15: CANNOT DELETE LAST TRUNK 1-1-121-3 FROM TGRP 7
SINCE THE TRUNK GROUP IS ALLOCATED TO AT LEAST ONE ROUTE

DISPLAY-TACSU

DISPLAY-TACSU [PEN1=<number>], [PEN2=<number>], [DEV=<param>], [TYPE=<param>], [TGRP=<number>], [FORMAT=<param>];

The action DISPLAY-TACSU can be used to carry out the following functions: For PEN1 and PEN2 less than four parameter components may be input. Here too, the first value entered is always the LTG number, the second value entered is the LTU number, and the third value entered is the slot. This assures that all trunks of the unit in question are addressed, e.g. by entering two values all trunks of an LTU are addressed.

If neither PEN1 nor PEN2 are specified, the data for all trunks of the PABX are output (possibly restricted by the parameters DEV and TYPE). If PEN1 is specified, only those trunks identified by PEN1 are output. If PEN1 and PEN2 are specified, all trunks are output which are configured in the range between PEN1 and PEN2. If only PEN2 is specified all trunks up to PEN2 are output

FORMAT=L (default value) shows the trunks in table format sorted by DEV and PEN Die ausgegebenen Sätze sind nach GER sortiert und die Sätze zu einem Gerät sind nach LAGE sortiert.

FORMAT=M shows the common data of a trunk group only once. The trunk group data is followed by the trunk specific data PEN, CCT, INS and INIGHT.

FORMAT=S shows the specified trunks with PEN, DEV and CCT.

For TYPE=CONF the parameter FORMAT has no impact on output format.

Examples:

  1. Interrogation of all free PENs between 1-2 and 1-4-121-15.

    Input:

    DISPLAY-TACSU:PEN1=1-2,PEN2=1-4-121-15,TYPE=CFIG;

    Output:

     FREE PENS FOR WHICH A MODULE TO DEVICE MOSIG    HAS BEEN CONFIGURED: 
    1-4-13-0 1-4-13-1 1-4-13-2 1-4-13-3

    FREE PENS FOR WHICH A MODULE TO DEVICE DP HAS BEEN CONFIGURED:
    1-4-13-0 1-4-13-1 1-4-13-2 1-4-13-3
  2. Display all trunks with the parameters between 1-2-115-0 and 1-4-121-7.

    Input:

    DISPLAY-TACSU:PEN1=1-2-1-1,PEN2=1-4-121-07;

    Output:

        PEN     | 1-2-115-0    | 1-2-115-1    | 1-2-115-2    | 1-2-115-3    | 
    --------|--------------|--------------|--------------|--------------|
    DEVTYPE | TC1 | TC1 | TC1 | TC1 |
    DEV | MOSIG | MOSIG | MOSIG | MOSIG |
    COTNO | 0 | 0 | 0 | 0 |
    COPNO | 0 | 0 | 0 | 0 |
    DPLN | 0 | 0 | 0 | 0 |
    ITR | 0 | 0 | 0 | 0 |
    TGRP | 1 | 1 | 1 | 1 |
    COFIDX | 0 | 0 | 0 | 0 |
    CCT | 722 CB 5 | 722 CB 6 | | |
    DESTNO | 0 | 0 | 0 | 0 |
    INS | Y | Y | Y | Y |
    COS | 11 | 11 | 11 | 11 |
    LCOSV | | | | |
    LCOSD | | | | |
    INIGHT | | | | |
    NNO | 0 | 0 | 0 | 0 |
    ALARMNO | 2 | 2 | 2 | 2 |
    CARRIER | 1 | 1 | 1 | 1 |
    ZONE | EMPTY | EMPTY | EMPTY | EMPTY |
    CDRINT | 5 | 5 | 5 | 5 |
    DGTPR | | | | |
    WMUSIK | | | | |
    ---------------------------------------------------------------------

    PEN | 1-3- 13- 0 | 1-3- 13- 1 | 1-3- 19- 0 | 1-3- 19- 1 |
    --------|--------------|--------------|--------------|--------------|
    DEVTYPE | TT | TT | TT | TT |
    DEV | TSEMU | TSEMU | TSEMU | TSEMU |
    COTNO | 3 | 3 | 3 | 3 |
    COPNO | 2 | 2 | 2 | 2 |
    DPLN | 0 | 0 | 0 | 0 |
    ITR | 0 | 0 | 0 | 0 |
    TGRP | 4 | 4 | 25 | 25 |
    COFIDX | 0 | 0 | 0 | 0 |
    CCT | | | | |
    DESTNO | 0 | 0 | 0 | 0 |
    INS | Y | Y | Y | Y |
    COS | 1 | 1 | 1 | 1 |
    LCOSV | | | | |
    LCOSD | | | | |
    INIGHT | | | | |
    NNO | 0 | 0 | 0 | 0 |
    ALARMNO | 2 | 2 | 0 | 0 |
    CARRIER | 1 | 1 | 1 | 1 |
    ZONE | EMPTY | EMPTY | EMPTY | EMPTY |
    DGTPRT1 | | | | |
    HMUSIC | | | | |
    ---------------------------------------------------------------------
  3. Display all trunks of trunk group 7 in FORMAT M.

    Input:

    DISPLAY-TACSU:TGRP=7,FORMAT=M;

    Output:

     +------------------------- ANALOGE SAETZE (FORMAT=M) --------------------------+
    | TGRP = 4 DEV = TSILP DEVTYPE = TT |
    | DPLN = 0 ITR = 0 COPNO = 4 |
    | COTNO = 5 ALARMNO = 1 CARRIER = 1 |
    | ZONE = EMPTY NNO = DESTNO = 0 |
    | COS = 21 LCOSV = 1 LCOSD = 1 |
    | COFIDX = 1 DGTPRT1 = 1 |
    +--------------+--------------+--------+--------+------------------------------+
    | PEN | CCT | INS | INIGHT | |
    +--------------+--------------+--------+--------+------------------------------+
    | 1-15-121- 0 | ABC XYZ 12 | J | 123456 | |
    | 1-15-121- 1 | ABC XYZ 13 | N | | |
    | 1-15-121- 2 | ABC XYZ 14 | J | 345678 | |
    +--------------+--------------+--------+--------+------------------------------+
  4. Display all trunks with DEV=MOSIG in FORMAT S.

    Input:

    DISPLAY-TACSU:DEV=MOSIG,FORMAT=K;

    Output:

         ANALOG TRUNKS (FORMAT=S)          
    PEN DEV CCT
    1-15-121-0 MOSIG ABC XYZ 10
    1-15-121-1 MOSIG ABC XYZ 11
    1-15-121-2 MOSIG ABC XYZ 12

REGENERATE-TACSU

REGENERATE-TACSU [PEN1=<number>], [PEN2=<number>], [DEV=<param>], [TYPE=<param>], [TGRP=<number>], [FORMAT=<param>];

The function REGENERATE-TACSU is distinguished from the function DISPLAY-TACSU only by its output form.

Example:

Regenerate all trunks on module 1-1-97.

Input:

 REGE-TACSU:1-1-97; 

Output:

 ADD-TACSU:1-1-97-0,,18,0,0,0,11,1,1,,1,0, AMT - HKZ ,9,1-1-6,2,1,EMPTY,0,
NONE,NONE,1,EC&G711, ,0,GDTR,0,,Y,TC1,MOSIG,5,;
ADD-TACSU:1-1-97-1,,18,0,0,0,11,1,1,,1,0, AMT - HKZ ,9,1-1-6,2,1,EMPTY,0,
NONE,NONE,1,EC&G711, ,0,GDTR,0,,Y,TC1,MOSIG,5,;
ADD-TACSU:1-1-97-2,,18,0,0,0,11,1,1,,1,0, AMT - HKZ ,9,1-1-6,2,1,EMPTY,0,
NONE,NONE,1,EC&G711, ,0,GDTR,0,,Y,TC1,MOSIG,5,;
ADD-TACSU:1-1-97-3,,18,0,0,0,11,1,1,,1,0, AMT - HKZ ,9,1-1-6,2,1,EMPTY,0,
NONE,NONE,1,EC&G711, ,0,GDTR,0,,Y,TC1,MOSIG,5,;

Parameter description

ALARMNO Alarm number
Alarm 1, 2 and 4 may be associated only to CO trunks. The directional, logical alarms (8-519) wich are created with AMO VADSU may be associated only to tie trunks.
0
no alarm associated (default for tie trunks)
1
alarm for incoming CO trunks
2
alarm for outgoing and bothway CO trunks (default for CO trunks)
4
alarm for outgoing and bothway CO trunks, LNOVER delay (used in Italy)
8-519
existing directional, logical alarm for tie trunks (AMO VADSU, ANTYPE=DIR)
Type of Input: single value, optional
Possible Values: numeric, 0-2, 4, 8-519
ATNTYP Attenuation type (see AMO TREF)
for possible and default values for T1 trunks see table below, the parameter is ignored for other trunks.
LPSTR GRDSTR DID T1LPSTR T1GRDSTR T1DID T1EMI T1EMW T1EMD EMI EMW EMD
CO POSSSIBLE DEFAULT DEFAULT - -
COLOW DEFAULT - - - -
COLONG - POSSSIBLE POSSSIBLE - -
CTSAT - - - POSSSIBLE -
TO - - POSSSIBLE POSSSIBLE -
SATL - - POSSSIBLE POSSSIBLE POSSSIBLE
TIE - - POSSSIBLE DEFAULT DEFAULT
Type of Input: single value, optional
Possible Values: CO central office
COLONG central office long loop
COLOW central office low level
CTSAT combination tie-to-satellite
SATL satellite
TIE tie trunk
TO tandem office
CARRIER Network carrier (for cost calculation)
For the purpose of call detail recording for incoming calls, trunks may be allocated to cost parameters consisting of CARRIER and ZONE. CARRIER and ZONE, in combination, should be parameterized with AMO TTBL.
Type of Input: single value, optional
Possible Values: numeric, 1-9
CBMATTR Central byte manipulation attributes
Type of Input: single value, optional
Possible Values: AMC A/M conversion
EC128 Echo cancellation 128 ms
EC128AMC Echo cancellation 128 ms and AMC
EC64 Echo cancellation 64 ms
EC64AMC Echo cancellation 64 ms and AMC
NONE No one
CCT Trunk description for maintenance
The following structure is suggested for parameter CCT as customer service information:
1-7 numbermain station DN
tie-line number
8 trunk type e.g.C = CO
T = tie-trunk
S = satellite PABX
9 route typeO = outgoing
I = incoming
B = bothway
10-12 consecutive numbering within the route type
If several trunks are assigned using one command (NO > 1), all trunks receive the same trunk description. However, if the positions 9 to 12 are all numeric, this part is incremented for each trunk.

Using the AMO change function, the trunks can then be allocated to their own trunk description.

Note: The trunk description entered can be displayed on the attendant console by interrogating the line number.

Type of Input: single value, optional
Possible Values: text, up to 12 characters
CCTINFO Circuit-specific information
Type of Input: single value, optional
Possible Values: numeric, 0-255
CDRINT Limit for call charge registration integration
This value specifies how many call charge pulses have been collected by the device handler before they are forwarded to call charge registration.
Type of Input: single value, optional
Possible Values: numeric, 1-10
CIDDGTS Caller id blocking/unblocking digits
Type of Input: single value, optional
Possible Values: BOTH Allow both blocking and unblocking
NONE No one
SEND67 Allow caller ID blocking
SEND82 Allow caller ID unblocking
CIRCIDX Index to the block in the timer table to be loaded
must be a CIRCIDX created with AMO PTIME
Type of Input: single value, optional
Possible Values: numeric, 0-31
CLASSMRK DNIL classmarks
Type of Input: 0 to 5 single values, concatenated with &, optional
Possible Values: EC Echo cancellation
G711 Pulse Code Modulation G.711
G729A Voice Compression G.729A mandatory
G729AOPT Voice Compression G.729A optional
INIT Initial value
NONE No one
VAD Voice activity detection
COEX Impedance index
Impedance index programed for each trunk in AMO TACSU.
This is an index with only 16 values (and more than 16 values are required).
Parameter P12 (AMO PTIME, branch REST), will be used to program the extra impedance index.
Type of Input: single value, optional
Possible Values: numeric, 0-16
COFIDX Index of SICOFI data file to be loaded
Recommendations for declaring parameter COFIDX can be found in the service manual (modules section).
Type of Input: single value, optional
Possible Values: numeric, 0-7
COPNO Class of parameter
COP values SDL (start dial signal) and SACK (seizure acknowledge) should be set either together or not at all for device TSAUST.
ANS (line with answer) should be set only if value ANS (answer from the line) is set in the COT.
Type of Input: single value, optional
Possible Values: numeric, 0-255
COS Class of service for CO and inter-PABX traffic
Trunk access is necessary for seizure of a CO line via a tie line in that tie trunk to the main PABX circuit of that PABX the trunk circuit is configured.
Any non-voice authorizations set are of no significance here.
Type of Input: single value, optional
Possible Values: numeric, 1-1000
COTNO Class of trunk
ANS (answer from the line) should be set only if value ANS (line with answer) is set in the COP.
NTON (no tone) should be entered for MOSIG/DP devices.
The value IBSY (call forwarding to attendant if busy) may not be set for main PABX if KNOR (knocking override) is assigned in the remote system. If the value ANIC is set, then DIALTYPE=DIPA-DIPA must be entered.
Type of Input: single value, optional
Possible Values: numeric, 0-255
DELSVCDM Delete MLPP Service Domain
Type of Input: single value, optional
Possible Values: N no FALSE
NO no FALSE
Y yes TRUE
YES yes TRUE
DESTNO Destination system number
Type of Input: single value, optional
Possible Values: numeric, 0-254
DEV Device.
The table also shows the assigned device type
for device handler (DB_DH_DEV_TYP_…) and
call processing (DB_CP_DEVTYP_…), the allowed
board type(s) (DB_BD_…) and the assigned
operation mode (DB_EE_…).

DB_BD_TMBC and DB_BD_TMBC_NW are also known als TMBCT board.
The board type DB_BD_TMEMW is used both for Q2469-X ( TMEMUS ) and Q2092-X100, -X200 ( TMEMW ).

Type of Input: single value, optional
Possible Values: A3CISL CO circuit, 3wire, DC signaling, local, CIS TMLS
TMA_AMT
TM3W
SBETRA_A3_GUSLOC
DB_Y_DBC_A3GUSL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
A3CIST CO circuit, 3wire, DC signaling, toll, CIS TMLS
TMA_AMT
TM3W
SBETRA_A3_GUSTOL
DB_Y_DBC_A3GUST (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ANDIDLP1 2wire analog loop CO trunk TMLS
TMA_AMT
TM2LP (Q2159-X110)
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_DIDLP1
DB_Y_DBC_ANDIDLP1 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ANDIDLP2 2wire analog loop CO trunk TMLS
TMA_AMT
TM2LP (Q2159-X100)
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_DIDLP2
DB_Y_DBC_ANDIDLP2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ANDIOLP1 2wire analog loop CO trunk TMLS
TMA_AMT
TM2LP (Q2159-X120)
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_DIOLP1
DB_Y_DBC_ANDIOLP1 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ANMOSIG 2wire analog loop CO trunk, MOSIG TMLS
TMA_AMT
TM2LP (Q2159-X130 … -X200)
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_HKZ
DB_Y_DBC_ANHKZ (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BW bothway trunk circuit, pulse dial only, outgoing DTMF,without DID, MOSIG international TMLS
TMA_AMT
TMCOW, DIUC, DIUC64
SBETRA_GSR_LS
DB_Y_DBC_HKZU (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWA bothway trunk circuit, without DID/DDI, Brazil TMLS
TMA_AMT
TMCOW
SBETRA_HKZA
DB_Y_DBC_HKZA (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWALS70 digital bothway non-DID CO, ALS70 NDL TMLS
TMA_AMT
DIUC, DIUC64,TMBLN
SBETRA_HKZ_ALS70
DB_Y_DBC_HKZALS70 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWCHINA digital bothway indial CO, China (CSN1-R2) TMLS
TMA_AMT
DIUC, DIUC64
SEBTRA_IKZ_VRC_R2
DB_Y_DBC_IKZVRC (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWCISL bothway CO circuit, DIP, local, CIS TMLS
TMA_AMT
DIUC, DIUC64
SEBTRA_IKZ_GUSLOC
DB_Y_DBC_IKZGUSL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWCIST bothway CO circuit, DIP, toll, CIS TMLS
TMA_AMT
DIUC, DIUC64
SEBTRA_IKZ_GUSTOL
DB_Y_DBC_IKZGUST (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWCSK bothway CO circuit, DIP, Czechia and Slovakia TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_BWKCZ
DB_Y_DBC_IKZCSK (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWCSU bothway CO circuit, MOSIG, Czechia and Slovakia TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_BWUCZ
DB_Y_DBC_HKZCSU (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWDK bothway trunk circuit, DIP, Denmark TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_DK
DB_Y_DBC_IKZDK (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWEDG bothway CO circuit, earth calling, ground start TMLS
TMA_AMT
TMCOW
SBETRA_TMEDG_EC
DB_Y_DBC_ASEC (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWELS bothway CO circuit, MOSIG, with loop disconnection TMLS
TMA_AMT
TMCOW
SBETRA_TMELS
DB_Y_DBC_ASELS (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWELSC bothway CO circuit, MOSIG, release control (China) TMLS
TMA_AMT
TMCOW
SBETRA_TMELS_VRC
DB_Y_DBC_ASELSC (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWFIN digital bothway indial CO, R2, Finland TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_SF_R2
DB_Y_DBC_IKZSF (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWFS bothway trunk circuit, pulse dial only, outgoing DTMF, ground start TMFS_AMT
TMA_AMT
DIUC, DIUC64
SBETRA_FS_AMT
DB_Y_DBC_ASFS (ADD,DEVTYPE=TC2-Trunk circuit type 2 / CHANGE,DEVTYPE=TC2-Trunk circuit type 2 / DISPLAY / REGENERATE)
BWGR bothway trunk circuit, DIP, Greece TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_GRI
DB_Y_DBC_IKZGRI (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWGS bothway trunk circuit, pulse dial only, outgoing DTMF, with DID, F-criteria TMLS
TMA_AMT
TMCOW, DIUC, DIUC64
SBETRA_GSR_GS
DB_Y_DBC_ASGS (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWLD bothway CO circuit, loop start, disconnect clearing TMLS
TMA_AMT
TMCOW
SBETRA_TMEDG_DCL
DB_Y_DBC_ASDCL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWLG bothway CO circuit, loop start, guarded clearing TMLS
TMA_AMT
TMCOW
SBETRA_TMEDG_GCL
DB_Y_DBC_ASGCL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWLRS bothway CO circuit, SOCOTEL, without DID, France TMLS
TMA_AMT
TMCOW
SBETRA_HKZ_FR
DB_Y_DBC_ASLRS (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWLS bothway trunk circuit, pulse dial only, outgoing DTMF, loop start TMLS
TMA_AMT
TMACH, TMCOW
SBETRA_GSR_LS
DB_Y_DBC_ASLS (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWMDK bothway trunk circuit, MOSIG, Denmark TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_HKZ_DK
DB_Y_DBC_HKZDK (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWMFR bothway trunk circuit, pulse dial and DTMF outgoing and incoming, without DID, for France TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_HKZ_FR
DB_Y_DBC_HKZFR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWMSCH bothway trunk circuit, pulse dial only, outgoing DTMF, without DID TMLS
TMA_AMT
TMACH, DIUC, DIUC64
SBAHKZ_CH
DB_Y_DBC_HKZCH (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWPOL0 bothway CO trunk circuit, DIP, Poland TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_POLEN0
DB_Y_DBC_IKZPOL0 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWPOL1 bothway CO trunk circuit, DIP (inverse), Poland TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_POLEN1
DB_Y_DBC_IKZPOL1 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWRSA digital bothway indial CO, R2, South Africa TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_IKZ_RSA_R2
DB_Y_DBC_IKZRSA (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
BWSR bothway trunk circuit, pulse dial and DTMF-DID, with DID,silent reversal, for China TMLS
TMA_AMT
TMCOW
SBETRA_GSR_SR
DB_Y_DBC_ASSR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
CISCOMB bothway tie trunk, 2 Bit universal signaling, CIS (RURAL) TMLS
TMA_VERB
TMEMW2, DIUC, DIUC64
SBETRA_GUSCOMB
DB_Y_DBC_GUSCOMB (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
CISCOMB2 co/tie trunk, 2bit combined, CIS rural TMLS
TMA_VERB
TMEMW2
SBETRA_GUSCOMB2
DB_Y_DBC_GUSCOMB2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
CISIND bothway tie trunk, inductive line signaling, CIS (RURAL) TMLS
TMA_VERB
TMEMW (Q2092-X100,-X200), TMEMW2,DIUC, DIUC64
SBETRA_GUSIND
DB_Y_DBC_GUSIND (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
CISIND2 rural trunk, inductive combined, CIS TMLS
TMA_VERB
TMEMW2
SBETRA_GUSIND2
DB_Y_DBC_GUSIND2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
CISNORK2 rural trunk, continuous signaling, CIS, Norka TMLS
TMA_VERB
TMEMW (Q2092-X100,-X200), TMEMW2, DIUC, DIUC64
SBETRA_GUSNORKA
DB_Y_DBC_GUSNORKA (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
CISNORKA tie trunk, E&M NORKA signaling, CIS (RURAL) TMLS
TMA_VERB
TMEMW2
SBETRA_GUSNORKA2
DB_Y_DBC_GUSNORK2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DFADAS1 bothway tie trunk, 600/750 Hz signaling, CIS (ADASE) TMLS
TMA_VERB
TMSFP
SBETRA_DFADAS1
DB_Y_DBC_DFADAS1 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DFADASE bothway tie trunk, 1200/1600 Hz, CIS (ADASE) QS_TF
TMA_VERB
TMSFP
SBETRA_DFADASE
DB_Y_DBC_DFADASE (ADD,DEVTYPE=TT1-Tie trunk type 1 / CHANGE,DEVTYPE=TT1-Tie trunk type 1 / DISPLAY / REGENERATE)
DID Direct Inward Dialling TMLS
TMA_AMT
TMDID8
-
DB_Y_DBC_DID (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIDALS70 digital direct indial CO, ALS70 NDL,with DID, DIP and DTMF TMLS
TMA_AMT
DIUC, DIUC64, TMBLN
SBETRA_IKZ_ALS70
DB_Y_DBC_IKZALS70 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIDBELG digital direct indial CO, MFC-R2, with DID, Belgium TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DID_BELG_R2
DB_Y_DBC_DIDBELG (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIDIT digital direct indial CO, DIP, with DID, Italy TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DID_IT
DB_Y_DBC_DIDIT (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIDLRB direct indial CO circuit, MFC-R2, with DID, Brazil TMLS
TMA_AMT
TMLRB
SBETRA_DIDLRB
DB_Y_DBC_DIDLRB (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIDN2 digital direct indial, DIP, Finland TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DID_N2
DB_Y_DBC_DIDN2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIUCAPUL CR 25628: DIUN2, adjustment of signaling R2, DB-part TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DIUC_BRAS
DB_Y_DBC_DIUCAPUL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIUCBRAZ digital direct indial, 1 Bit signaling, Brazil TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DIUC_BRAS
DB_Y_DBC_DIUCBRAS (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIUCQ421 digital direct indial, 2 Bit signaling, Brasil TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DIUC_Q421
DB_Y_DBC_DIUCQ421 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DIUTYP3 digital direct indial, 2 Bit signaling, DIU Type 3 TMLS
TMA_AMT
DIUC, DIUC64
DB_EE_SBETRA_DIU_TYP3
DB_Y_DBC_DIUTYP3 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DODBELG digital direct outward dialing, DTMF, Belgium TMLS
TMA_AMT
DIUC, DIUC64
SEBTRA_DOD_BELG
DB_Y_DBC_DODBELG (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DODFR digital direct outward dialing, DIP and DTMF, France TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DOD_FR
DB_Y_DBC_DODFR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DODIT digital direct outward dialing, DIP and DTMF, Italy TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DOD_IT
DB_Y_DBC_DODIT (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DODN2 digital direct outward dialing, DIP and DTMF, Finland TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_DOD_N2
DB_Y_DBC_DODN2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DP dial pulse signaling IKZ
TMA_AMT
TMBD, DIUC, DIUC64
SBETRA_IKZ
DB_Y_DBC_IKZ (ADD,DEVTYPE=TC1-Trunk circuit type 1 / CHANGE,DEVTYPE=TC1-Trunk circuit type 1 / DISPLAY / REGENERATE)
EB5NAL bothway trunk circuit, EB5/NAL signaling, german Reichsbahn TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_EB5_NAL
DB_Y_DBC_EB5NAL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
EMCONT CO/tie trunk, E&M/PCM30, India TMLS
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EMCONT
DB_Y_DBC_EMCONT (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
EMCONT2 co/tie trunk, cont. sign. DIP, DTMF, MFC EMCONT2
TMA_VERB
TMEMW2
SBETRA_EMCONT2
DB_Y_DBC_EMCONT2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
EMD E&M tie line with delay signalling QS_EM
TMA_VERB
TMEMW (Q2469-X "TMEMUS")
SBETRA_EM_USA_D
DB_Y_DBC_EMD (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
EMDISC CO/tie trunk, E&M/PCM30, India TMLS
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EMDISC
DB_Y_DBC_EMDISC (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
EMDISC2 co/tie trunk, carrier freq., France EMDISC2
TMA_VERB
TMEMW2
SBETRA_EMDISC2
DB_Y_DBC_EMDISC2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
EMH E&M tie line with hoot&holler signalling QS_EM
TMA_VERB
TMEMW (Q2469-X "TMEMUS")
TMDN (BOS mode)

SBETRA_EM_HOOTHOLLER
DB_Y_DBC_EMH (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
EMI E&M tie line with immediate signalling QS_EM
TMA_VERB
TMEMW (Q2469-X "TMEMUS")
SBETRA_EM_USA
DB_Y_DBC_EMI (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
EMW E&M tie line with wink start signalling QS_EM
TMA_VERB
TMEMW (Q2469-X "TMEMUS")
SBETRA_EM_USA_W
DB_Y_DBC_EMW (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
GRDSTR CO ground start trunk TMGSR_GS
TMA_AMT
TMC16
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_GSR_GS
DB_Y_DBC_GRDSTR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ICF incoming trunk circuit, pulse dial and DTMF-DID, with DID, loop start potential TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_LSF
DB_Y_DBC_LSF (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ICLCH incoming trunk circuit, pulse dial and DTMF-DID, with DID TMLS
TMA_AMT
TMACH, DIUC, DIUC64
SBALSL_CH
DB_Y_DBC_LSLCH (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ICLFB incoming trunk circuit, pulse dial and DTMF-DID, blocking to CO, with potential TMLS
TMA_AMT
TMLSL, DIUC, DIUC64
SBALSL_SP_P
DB_Y_DBC_LSLP (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ICLIB incoming trunk circuit, pulse dial and DTMF-DID, blocking to CO, with line interrupt TMLS
TMA_AMT
TMLSL, DIUC, DIUC64
SBALSL_SP_U
DB_Y_DBC_LSLU (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ICLLP incoming trunk circuit, pulse dial and DTMF-DID, blocking to CO, low resistance TMLS
TMA_AMT
TMLSL, DIUC, DIUC64
SBALSL_SP_N
DB_Y_DBC_LSLN (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
ICN2 incoming trunk circuit, pulse dial and DTMF-DID, with DID, N2 criteria TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_N2S
DB_Y_DBC_N2S (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
LNSEL line selector TMLS
TMA_AMT
TMAU
SBAOE_AS_LW48
DB_Y_DBC_LW (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
LPSTR CO loop start trunk TMGSR_SR
TMA_AMT
TMC16
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_GSR_SR
DB_Y_DBC_LPSTR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
MAINEM E&M/VFSS trunk for main PABX, station line traffic, bothway NW_ANALOG
TMA_NW_ANALOG
TMEM_NW
SBETRA_TMEM_HA
DB_Y_DBC_HAEM (ADD,DEVTYPE=NW-Networking / CHANGE,DEVTYPE=NW-Networking / DISPLAY / REGENERATE)
MOSIG main station interface TMLS
TMA_VERB
TMBD, DIUC, DIUC64
SBETRA_HKZ
DB_Y_DBC_HKZ (ADD,DEVTYPE=TC1-Trunk circuit type 1 / CHANGE,DEVTYPE=TC1-Trunk circuit type 1 / DISPLAY / REGENERATE)
NDIDIT digital bothway non-DID CO, Italy TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_NDID_IT
DB_Y_DBC_NDIDIT (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
NDIDN2 digital incoming non-DID CO, Finland TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_NDID_N2
DB_Y_DBC_NDIDN2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
OB CO trunk circuit, OB signaling, Poland TMLS
TMA_VERB
DIUC, DIUC64, TMLBL, TMSFP, TMEMW (Q2092-X100,-X200),
SBETRA_OB
DB_Y_DBC_OB (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
OB2 CO trunk circuit, OB signaling, Poland TMLS
TMA_VERB
TMEMW2
SBETRA_OB2
DB_Y_DBC_OB2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
OGN2 outgoing trunk circuit, with N2 criteria IKZ
TMA_AMT
DIUC, DIUC64
SBETRA_N2G
DB_Y_DBC_N2G (ADD,DEVTYPE=TC1-Trunk circuit type 1 / CHANGE,DEVTYPE=TC1-Trunk circuit type 1 / DISPLAY / REGENERATE)
PRC2600 bothway trunk circuit, 2600 Hz signaling, China TMLS
TMA_AMT
TMSFP
SEBTRA_IKZ_VRC_2600
DB_Y_DBC_VRC2600 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
SATEM E&M/VFSS trunk for satellite PABX, station line traffic, bothway NW_ANALOG
TMA_NW_ANALOG
TMEM_NW
SBETRA_TMEM_UA
DB_Y_DBC_UAEM (ADD,DEVTYPE=NW-Networking / CHANGE,DEVTYPE=NW-Networking / DISPLAY / REGENERATE)
SFADASJ bothway tie trunk, 1600/2600 Hz signaling, CIS (ADASE) TMLS
TMA_VERB
TMSFP
SBETRA_SFADASJ
DB_Y_DBC_SFADASJ (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
SFCISL CO trunk circuit, 4wire, 2600 Hz signaling, local, CIS TMLS
TMA_AMT
TMSFP
SBETRA_SF_GUSLOC
DB_Y_DBC_SFGUSL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
SFCIST CO trunk circuit, 4wire, 2600 Hz signaling, toll, CIS TMLS
TMA_AMT
TMSFP
SBETRA_SF_GUSTOL
DB_Y_DBC_SFGUST (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
SFS incoming trunk circuit, supervisory frequency system TMLS
TMA_AMT
TMAU
SBAOE_AS_UEFS
DB_Y_DBC_UEFS (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
SOCFR (digital) SOCOTEL CO/TIE indial circuit, with DID, for France (COFIDX=0, from SP300-V3.2 PZFDCAS6); bothway trunk circuit, R2 signaling, for Switzerland (COFIDX=1, from SP300-V3.1 PZFDIUC3 and PZFDCAS3) and for Venezuela (COFIDX=0, from SP300-V3.1 other packages) TMLS
TMA_AMT
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_SOCOTEL_FR
DB_Y_DBC_SOCOTFR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
SOCSPA (digital) SOCOTEL CO/TIE indial circuit, with DID, Spain TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_SPA_SMF
DB_Y_DBC_SMFSPA (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
T1DID T1 emulating DID TMLS
TMA_AMT
TMDN (BOS mode)
-
DB_Y_DBC_T1DID (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
T1EMD T1 emulating delay signalling QS_EM
TMA_VERB
TMDN (BOS mode)
SBETRA_EM_USA_D
DB_Y_DBC_T1EMD (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
T1EMI T1 emulating immediate signalling QS_EM
TMA_VERB
TMDN (BOS mode)
SBETRA_EM_USA
DB_Y_DBC_T1EMI (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
T1EMW T1 emulating wink start signalling QS_EM
TMA_VERB
TMDN (BOS mode)
SBETRA_EM_USA_W
DB_Y_DBC_T1EMW (ADD,DEVTYPE=TT2-Tie trunk type 2 / CHANGE,DEVTYPE=TT2-Tie trunk type 2 / DISPLAY / REGENERATE)
T1GRDSTR T1 emulating ground start trunk TMGSR_GS
TMA_AMT
TMDN (BOS mode)
SBETRA_GSR_GS
DB_Y_DBC_T1GRDSTR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
T1LPSTR T1 emulating ground start trunk TMGSR_SR
TMA_AMT
TMDN (BOS mode)
SBETRA_GSR_SR
DB_Y_DBC_T1LPSTR (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
T1PLAR T1 emulating SIA/PLAR QS_EM
TMA_VERB
TMDN (BOS mode)
SBETRA_PLAR
DB_Y_DBC_T1PLAR (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TMANIBEL 2wire analog loop CO trunk TMLS
TMA_AMT
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_HKZ
DB_Y_DBC_TMANI_BEL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TMANIITL 2wire analog loop CO trunk TMLS
TMA_AMT
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_HKZ
DB_Y_DBC_TMANI_ITL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TMANIMSG 2wire analog loop CO trunk, MOSIG TMLS
TMA_AMT
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_HKZ
DB_Y_DBC_TMANI_HKZ (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TMANIUSG CO ground start trunk TMLS
TMA_AMT
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_HKZ
DB_Y_DBC_TMANI_USA (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TMANIUSL CO loop start trunk TMLS
TMA_AMT
TMANI (Q2327-X100)
TMANI-IM (Q2327-X101)
TMANI-BRA (Q2327-X182)

SBETRA_AN_HKZ
DB_Y_DBC_TMANI_USL (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TMLRUD bothway tie trunk, R2, with DID, India TMLS
TMA_VERB
TMLR
SBETRA_TMLR_UD
DB_Y_DBC_TMLRUD (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TSAUST tie-trunk, dc loop, Australian version QS_SCH
TMA_VERB
TMLR
SBAOE_QS_SCHL_AUS
DB_Y_DBC_QSAUS (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSBR tie-trunk, branch line TMLS
TMA_VERB
TMAU
SBAOE_AS_ABZS
DB_Y_DBC_QSABZ (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TSC bothway tie-trunk for carrier frequency, (pulse signaling with high-level operation) QS_TF
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_TF
DB_Y_DBC_QSTF (ADD,DEVTYPE=TT4-Tie trunk type 4 / CHANGE,DEVTYPE=TT4-Tie trunk type 4 / DISPLAY / REGENERATE)
TSC3 bothway tie trunk, carrier freq., Germany, Italy QS_TF
TMA_VERB
TMEMW2
SBETRA_TF3
DB_Y_DBC_QSTF3 (ADD,DEVTYPE=TT1-Tie trunk type 1 / CHANGE,DEVTYPE=TT1-Tie trunk type 1 / DISPLAY / REGENERATE)
TSC4 bothway tie trunk, carrier freq., France, Italy QS_TF
TMA_VERB
TMEMW2
SBETRA_TF4
DB_Y_DBC_QSTF4 (ADD,DEVTYPE=TT1-Tie trunk type 1 / CHANGE,DEVTYPE=TT1-Tie trunk type 1 / DISPLAY / REGENERATE)
TSC5 bothway tie trunk, carrier freq., Poland QS_TF
TMA_VERB
TMEMW2
SBETRA_TF5
DB_Y_DBC_QSTF5 (ADD,DEVTYPE=TT1-Tie trunk type 1 / CHANGE,DEVTYPE=TT1-Tie trunk type 1 / DISPLAY / REGENERATE)
TSC6 bothway tie trunk, carrier freq., Switzerland QS_TF
TMA_VERB
TMEMW2
SBETRA_TF6
DB_Y_DBC_QSTF6 (ADD,DEVTYPE=TT1-Tie trunk type 1 / CHANGE,DEVTYPE=TT1-Tie trunk type 1 / DISPLAY / REGENERATE)
TSC7 bothway tie trunk, carrier freq., reserve QS_TF
TMA_VERB
TMEMW2
SBETRA_TF7
DB_Y_DBC_QSTF7 (ADD,DEVTYPE=TT4-Tie trunk type 4 / CHANGE,DEVTYPE=TT4-Tie trunk type 4 / DISPLAY / REGENERATE)
TSC8 bothway tie trunk, carrier freq., reserve QS_TF
TMA_VERB
TMEMW2
SBETRA_TF8
DB_Y_DBC_QSTF8 (ADD,DEVTYPE=TT1-Tie trunk type 1 / CHANGE,DEVTYPE=TT1-Tie trunk type 1 / DISPLAY / REGENERATE)
TSD tie-trunk, line dialing TMLS
TMA_VERB
TMAU
SBAOE_AS_LW48
DB_Y_DBC_QSLW (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TSEMCOF bothway tie-trunk for carrier frequency,operation with low-level and continuous signal (earth off idle) to C1 (Cailho earth return) and C2 (E&M, 6-wire) QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EM_C_OFF
DB_Y_DBC_QSEMCOF (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSEMCON bothway tie-trunk for carrier frequency, operation with low-level and continuous signal (earth on idle) to C1 (Cailho earth return) and C2 (E&M, 6-wire) QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EM_C_ON
DB_Y_DBC_QSEMCON (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSEMCONT bothway co/tie-trunk for carrier frequency, continuous sign. DIP, DTMF QS_EM
TMA_VERB
TMEMW2
SBETRA_QSEMCONT
DB_Y_DBC_QSEMCONT (ADD,DEVTYPE=TT2-Tie trunk type 2 / CHANGE,DEVTYPE=TT2-Tie trunk type 2 / DISPLAY / REGENERATE)
TSEMD bothway tie trunk circuit for carrier frequency, DC5, AC15, delay dial QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), TMSVF,DIUC, DIUC64
SBETRA_DC5_DD_GB
DB_Y_DBC_QSEMDD (ADD,DEVTYPE=TT2-Tie trunk type 2 / CHANGE,DEVTYPE=TT2-Tie trunk type 2 / DISPLAY / REGENERATE)
TSEMHUN bothway tie trunk circuit, E&M, carrier frequency, Hungary TMLS
TMA_VERB
TMEMW (Q2092-X100,-X200), TMEMW2, DIUC, DIUC64
SBETRA_TF_UNG
DB_Y_DBC_TFUNG (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TSEMHUN2 co/tie trunk, carrier freq., Hungary TMLS
TMA_VERB
TMEMW (Q2092-X100,-X200)
SBETRA_TFUNG2
DB_Y_DBC_TFUNG2 (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
TSEMI bothway tie trunk circuit for carrier frequency, DC5, AC15,immediate dial QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), TMSVF, DIUC, DIUC64
SBETRA_DC5_ID_GB
DB_Y_DBC_QSEMID (ADD,DEVTYPE=TT2-Tie trunk type 2 / CHANGE,DEVTYPE=TT2-Tie trunk type 2 / DISPLAY / REGENERATE)
TSEML bothway tie-trunk for carrier frequency, E&M, (operation with low-level and continuous signal for converter with loop start signaling in remote PABX QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EM_SCHL
DB_Y_DBC_QSEMSCH (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSEML1 bothway tie-trunk for carrier frequency, E&M, operation with low-level and signaling to CEPTT-L1) QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), TMSVF,DIUC, DIUC64
SBETRA_EM_CEPT_L1
DB_Y_DBC_QSEML1 (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSEMU bothway tie-trunk for carrier frequency, E&M, (univ. continuous signal for low-level operation) QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EM_ALLG
DB_Y_DBC_QSEMAL (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSEMUSD bothway tie-trunk for carrier frequency,operation with low-level and continuous signal for US standard with delay dialling QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EM_USA_D
DB_Y_DBC_QSEMUSD (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSEMUSI bothway tie-trunk for carrier frequency, operation with low-level and continuous signal for EVU interface or US standard with immediate dialling QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EM_USA
DB_Y_DBC_QSEMUSI (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSEMUSW bothway tie-trunk for carrier frequency, operation with low-level and continuous signal for US standard with wink start QS_EM
TMA_VERB
TMEMW (Q2092-X100,-X200), DIUC, DIUC64
SBETRA_EM_USA_W
DB_Y_DBC_QSEMUSW (ADD,DEVTYPE=TT2-Tie trunk type 2 / CHANGE,DEVTYPE=TT2-Tie trunk type 2 / DISPLAY / REGENERATE)
TSIFD tie-trunk, dc loop with idle signal feed QS_SCH
TMA_VERB
TMLR
SBAOE_QS_SCHL_BRD
DB_Y_DBC_QSSPE (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSILP tie-trunk, dc loop with idle signal loop QS_SCH
TMA_VERB
TMLR
SBAOE_QS_SCHL_OE
DB_Y_DBC_QSSCH (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSRTT bothway tie-trunk, without DID; ground or flash to CO line; reduced tie-trunk traffic HKZ
TMA_AMT
TMFS,DIUC, DIUC64
SBETRA_FS_QV
DB_Y_DBC_QSFS (ADD,DEVTYPE=TT3-Tie trunk type 3 / CHANGE,DEVTYPE=TT3-Tie trunk type 3 / DISPLAY / REGENERATE)
TSSIM tie trunk, dc simultaneous dialing QS_SIM
TMA_VERB
TMBP
CIRC_DATA_NULL
DB_Y_DBC_QSSIM (ADD,DEVTYPE=TT-Tie trunk / CHANGE,DEVTYPE=TT-Tie trunk / DISPLAY / REGENERATE)
TSTFZ tie-trunk, german Reichsbahn TMLS
TMA_AMT
DIUC, DIUC64
SBETRA_TFZ
DB_Y_DBC_QSTFZ (ADD,DEVTYPE=TC-Trunk circuit / CHANGE,DEVTYPE=TC-Trunk circuit / DISPLAY / REGENERATE)
DEVTYPE Device type
The values of DEV require different sets of subsequent parameters. DEVTYPE is used to select the appropriate branch. See description of parameter DEV for all devices.
Type of Input: single value, optional
Possible Values: NW Networking
TC Trunk circuit
TC1 Trunk circuit type 1
TC2 Trunk circuit type 2
TT Tie trunk
TT1 Tie trunk type 1
TT2 Tie trunk type 2
TT3 Tie trunk type 3
TT4 Tie trunk type 4
DGTCNT Number of digits from the Central Office for lines with a fixed number of positions (closed numbering scheme)
If DGTCNT is = 0 , then SUPPRESS must be = 0.
If DGTCNT is > 0 , then SUPPRESS must be ≤ DGTCNT and DGTCNT - SUPPRESS + length (DGTPR) must be ≤ 6 .
If DGTCNT is > 0 , then at least as many digits must always be sent by the CO, because precisely that number of digits specified in DGTCNT is received by the device handler (DH) before the the dialing information is sent to call processing for evalution!
For call processing, the value DGTCNT - SUPPRESS + length (DGTPR) represents the number of digits that were dialed from the CO after conversion (= parameter for DPLN and may therefore be a maximum of 6). If this value is = 0, the partial dialing plan for networking is used; otherwise it is ignored.
In cases of DID with appended digits (open numbering scheme), SUPPRESS should be = 0 and DGTPR should not be entered; DGTCNT=0 (with partial dialing plan) or DGTCNT=1 (without partial dialing plan) must be set.
Dialed from CO (DGTCNT=4):4321
Suppressed (SUPPRESS=2):4321
Prefixed (DGTPR=123):12321
No. of digits for DPLN (4-2+3):←5→
Type of Input: single value, optional
Possible Values: numeric, 0-6
DGTPR Digit prefixing (incoming traffic)
Type of Input: single value, optional
Possible Values: 0-9,*,#,A-D, up to 6 characters
DGTPRT1 Digit prefixing for tie trunk traffic, normal seizure
Type of Input: single value, optional
Possible Values: 0-9,*,#,A-D, up to 6 characters
DGTPRT2 Digit prefixing for tie trunk traffic, switch seizure
Type of Input: single value, optional
Possible Values: 0-9,*,#,A-D, up to 6 characters
DGTPRT3 Digit prefixing for tie trunk traffic, in-house seizure
Type of Input: single value, optional
Possible Values: 0-9,*,#,A-D, up to 6 characters
DIALTYPE Dialing / addressing for incoming and outgoing traffic
The first value is the DIALTYPE for incoming traffic. The second value is the DIALTYPE for outgoing traffic.
DEV default valuefurther possible values
BW MOSIG-DIP, 0-0MOSIG-DTMF, 0-0MOSIG-MFC, 0-0MOSIG-DIP, 4-0MOSIG-DTMF, 4-0
BWEDG MOSIG-DTMF, 0-0MOSIG-DIP, 0-0MOSIG-MFC, 0-0MOSIG-DIP, 4-0MOSIG-DTMF, 4-0
BWELS MOSIG-DIP, 0-0MOSIG-DTMF, 0-0MOSIG-MFC, 0-0MOSIG-DIP, 4-0MOSIG-DTMF, 4-0
BWELSCMOSIG-DIP , 0-0MOSIG-DTMF, 0-0MOSIG-MFC, 0-0MOSIG-DIP, 4-0MOSIG-DTMF, 4-0
BWGS DIP-DIP, 0-0DTMF-DIP, 0-0MFC-DIP, 0-0
BWLD MOSIG-DTMF, 0-0MOSIG-DIP, 0-0MOSIG-MFC, 0-0MOSIG-DIP, 4-0MOSIG-DTMF, 4-0
BWLG MOSIG-DTMF, 0-0MOSIG-DIP, 0-0MOSIG-MFC, 0-0MOSIG-DIP, 4-0MOSIG-DTMF, 4-0
BWLRS MOSIG-DTMF, 0-0MOSIG-DIP, 0-0MOSIG-MFC, 0-0MOSIG-DIP, 4-0MOSIG-DTMF, 4-0
BWLS DIP-DIP, 0-0DTMF-DIP, 0-0MFC-DIP, 0-0
BWMSCHMOSIG-DIP, 1-0MOSIG-DIP, 1-0
BWSR DIP-DIP, 0-0DTMF-DIP, 0-0MFC-DIP, 0-0
ICF DIP-DIP, 0-0DTMF-DIP, 0-0MFC-DIP, 0-0
ICLCH DIP-DIP, 0-0MFC-DIP, 0-0
ICLFB DIP-DIP, 0-0MFC-DIP, 0-0
ICLIB DIP-DIP, 0-0MFC-DIP, 0-0
ICLLP DIP-DIP, 0-0MFC-DIP, 0-0
ICN2 DIP-DIP, 0-0DTMF-DIP, 0-0MFC-DIP, 0-0
LNSEL DIP-DTMF, 0-3DIP-DIP, 0-0
SFS DIP-DTMF, 0-4DIP-DIP, 0-0
TSBR DIP-DIP, 0-0DIP-MFC, 0-0
TSD DIP-DIP, 0-0DIP-DTMF, 0-0

Parameter verification: If MFC or DIPA is specified for DIALTYPE (incoming and/or outgoing), then MFCVAR ≠ 0 must be set (F46). MOSIG must not be specified for DIALTYPE for outgoing traffic (F45). If trunk parameter ANIC is set (AMO COT), then DIALTYPE=DIPA-DIPA must be specified (F47).

Type of Input: 0 to 2 single values, concatenated with -, optional
Possible Values: DIP Dial pulsing / decadic signaling DB_WAHLART_LTG_IWV
DIPA Dial pulsing with ANI DB_WAHLART_LTG_IWVA
DTMF Dualtone multi-frequency signaling DB_WAHLART_LTG_MFV
MFC Multi-frequency code signaling DB_WAHLART_LTG_MFC
MFP1 Multi-frequency pulsed signaling no. 1 DB_WAHLART_LTG_MFP1
MFP2 Multi-frequency pulsed signaling no. 2 DB_WAHLART_LTG_MFP2
MFRP Multifrequency register signaling packet DB_WAHLART_LTG_MFRP
MFRS Multifrequency register signaling shuttle DB_WAHLART_LTG_MFRS
MOSIG Main station interface DB_WAHLART_LTG_HKZ
DIALVAR Further specification of dialing scheme under DIALTYPE
see parameter DIALTYPE
Type of Input: 0 to 2 single values, concatenated with -, optional
Possible Values: numeric, 0-255
DITIDX DIT table index
Type of Input: single value, optional
Possible Values: numeric, 0-512
DPLN Feature access group, dial plan group
Type of Input: single value, optional
Possible Values: numeric, 0-63
FORMAT Format of output
Type of Input: single value, optional
Possible Values: L Long (All data)
M Medium (All data in compact format)
S s : Short (PEN, DEV, CCT)
HMUSIC number of music on hold recording
Type of Input: single value, optional
Possible Values: numeric, 0-150
Default Value: 0
INIGHT Individual night station, i.e. per incoming line
Keyed numeral; use "*****" for "no night station"
"*****" bedeutet: Zuordnung der Einzelnachtstelle löschen
Type of Input: single value, optional
Possible Values: 0-9,*,#,A-D, up to 22 characters
INS In service of circuits/trunks/lines
Type of Input: single value, optional
Possible Values: N no FALSE
NO do not activate the trunk FALSE
Y yes TRUE
YES trunk released for call processing. Dependability activates the trunk, if possible. TRUE
ITR Internal traffic restriction group / closed user group
Type of Input: single value, optional
Possible Values: numeric, 0-63
LCOSD LCR class of service for data
Type of Input: single value, optional
Possible Values: numeric, 1-1000
LCOSV LCR class of service for voice
Type of Input: single value, optional
Possible Values: numeric, 1-1000
LIN Length of LIN for E911 services
Type of Input: single value, optional
Possible Values: numeric, 0-22
LWPAR loadware parameter
The value speicifes the number of the loadware paramater block used.
The loadware parameter tables are processed by the AMO LWPAR.
A check is made as to whether the specified loadware parameter block is assigned for the specified device type.
Type of Input: single value, optional
Possible Values: numeric, 0-78
MFCVAR MFC variant
This parameter is used to allocate an MFC variant to the trunk.

Input value 0 means: the trunk is operated with pulse DID.

Parameter MFCVAR is checked against COTNO.
MFCVAR=0: The COT must not contain the value MFC (line with MFC signaling).
MFCVAR≠0: The COT must contain the value MFC (line with MFC signaling).

Type of Input: single value, optional
Possible Values: numeric, 0-10
NNO node number of adjacent node - up to 3 parts: level2-level1-level0, level1-level0 or level0
level0: 0 to 999
level1: 0 to 253
level2: 0 to 29

The node number serves as identification of the adjacent node. Left-hand zeros may be omitted. Right-hand zeros identify arbitrary nodes of an area. A value x-0-x (x≠0) is not permitted. The NNO must have the same length as the system node number (parameter PNNO in AMO ZAND) and must be different to it.

Type of Input: 0 to 3 single values, concatenated with -, optional
Possible Values: numeric, 0-999
NO Number of trunks to be created
Type of Input: single value, optional
Possible Values: numeric, 1-99
OFFTYPE Type of deactivation during CHANGE or DELETE (see AMO DSSU)
Type of Input: single value, optional
Possible Values: DC deactivate conditionally
DI deactivate immediately
NL no locking done by AMO
PEN Port equipment number: LTG-LTU-slot-cir
Circuits are identified through the PEN. The four components reflect the hierarchical structure of the periprey, showing the position of the circuit in the system.
LTG 1 created LTG (AMO UCSU)
LTU 1-99 created LTU in HHS (1-15) or AP shelf (17-99) (AMO UCSU)
slot 1-121valid slot with created modules(AMO BCSU)
cir 0-62 valid circuit on the module

PENs for new circuits can be both specified by the operator and defaulted by the AMO (see Parameter NO)
The possible Line values depend on the module type and its functionality. They can be listed using DISP-BCSU: TYPE=PEN1 [,LTG=, LTU=, SLOT=, CCT=]; which will also output the actual PEN status (e.g. NOT CONNECTED)
Type of Input: 4 single values, concatenated with -, 1. parameter of a min-1-group (DELETE)
4 single values, concatenated with -, mandatory (CHANGE)
4 single values, concatenated with -, optional (ADD)
Possible Values: numeric, 0-121
PEN1 Port equipment number (Start PEN)
See parameter PEN for allowed values.
See the description of the function DISPLAY for details on how to use the parameters PEN1 and PEN2.
If neither PEN1 nor PEN2 is specified, all trunks are output.
If both PEN1 and PEN2 are specified, all trunks in the range between PEN1 and PEN1 are output (PEN2 must not be less than PEN1).
If only PEN1 is specified, only those trunks identified by PEN1 are output (if partially qualified, not one specific trunk, but all trunks of a LTG, LTG-LTU or LTG-LTU-SLOT).
Type of Input: 0 to 4 single values, concatenated with -, optional
Possible Values: numeric, 0-121
PEN2 Port equipment number (Stop PEN), see PEN1
Type of Input: 0 to 4 single values, concatenated with -, optional
Possible Values: numeric, 0-121
RULEIDX DID rule index
Type of Input: single value, optional
Possible Values: numeric, 0-20
SRCGRP Source Group
Type of Input: single value, optional
Possible Values: numeric, 0-255
SUPPRESS number of digits to be suppressed
The highest-value digits from the CO are disregarded, according to the number of digits to be suppressed. By combining options DGTPR and SUPPRESS, the first digits sent from the CO can be converted.
Type of Input: single value, optional
Possible Values: numeric, 0-6
SVCDOM MLPP Service Domain
Type of Input: 5 single values, concatenated with -, optional
Possible Values: numeric, 0-255
TCCID Telephone Company Circuit ID
Type of Input: single value, optional
Possible Values: text, up to 30 characters
TESTNO Line test program number
This parameter informs the device handler which requirement is to be used to define the response to the digit evaluation result TEST CONNECTION. At present, these line test programs are implemented:
1
Switzerland (default)
2
Belgium
3
France
4
Southafrica
5
Finland
6
Italy
7
UK
8
Netherlands
9
Spain
10
Portugal
11
China

For the use of line test program number see AMO DTIM1 parameter TEST1, TEST2, TEST3.

Note: The line test in accordance with FO (Telecommunications Regulations of the German Federal Post Office) is performed by means of a digit evaluation result during digit evaluation.

Type of Input: single value, optional
Possible Values: numeric, 1-99
TGRP Number of the trunk group to which the trunk is to be allocated Allocation of trunks to trunk groups can be deleted with TGRP=0 (in the CHANGE action)
Type of Input: single value, 2. parameter of a min-1-group (DELETE)
single value, mandatory (ADD)
single value, optional (CHANGE / DISPLAY / REGENERATE)
Possible Values: numeric, 0-512 (ADD / CHANGE / DISPLAY / REGENERATE)
numeric, 1-512 (DELETE)
TRTBL Translation table
Type of Input: single value, optional
Possible Values: DID direct inward dialling
GDTR general digit translation rule
TYPE Output type.
If the parameter is not specified, all the assigned trunks (activated and deactivated) are output.
Type of Input: single value, optional
Possible Values: A Activate
CFIG Circuits to be configured (DISPLAY)
D Deactivate
ZONE Tariff zone for time-based cost calculation
Type of Input: single value, optional
Possible Values: EMPTY empty zone DA_CG_ZT_NO_ENTRY
INC01 incoming 1 DA_CG_ZT_INCOME01
INC02 incoming 2 DA_CG_ZT_INCOME02
INC03 incoming 3 DA_CG_ZT_INCOME03
INC04 incoming 4 DA_CG_ZT_INCOME04
INC05 incoming 5 DA_CG_ZT_INCOME05
INC06 incoming 6 DA_CG_ZT_INCOME08
INC07 incoming 7 DA_CG_ZT_INCOME07
INC08 incoming 8 DA_CG_ZT_INCOME08
INC09 incoming 9 DA_CG_ZT_INCOME09

Error Messages

F01
F01: PEN-ERROR; ONLY LTG 1 IS PERMISSIBLE
F02
F02: PEN-ERROR; PERMISSIBLE RANGE FOR LTU: 1-15 AND 17-99
F03
F03: PEN-ERROR; SLOT <slot> FORMALLY INCORRECT
F04
F04: SLOT-ERROR; PERMISSIBLE RANGE FOR CIRCUIT NUMBER: <min>-<max>
F05
F05: NO FURTHER TRUNKS CAN BE ASSIGNED IN THE PABX
F06
F06: LTG 1 NOT ASSIGNED
F07
F07: LTU @@ NOT ASSIGNED
F08
F08: THE TRUNK WITH PEN @@@@@@@@@@@@ IS ACTIVE
     REPEAT COMMAND WITH OFFTYPE=DI OR OFFTYPE=DC
     OR DEACTIVATE WITH AMO DSSU
F09
F09: THE TRUNK WITH PEN @@@@@@@@@@@@ IS ACTIVE
     REPEAT COMMAND LATER OR WITH OFFTYPE=DI
     OR DEACTIVATE IMMEDIATELY WITH AMO DSSU
F10
F10: TRUNK ALREADY ASSIGNED
F11
F11: TRUNK NOT ASSIGNED
F12
F12: NO FREE PEN FOUND FOR THIS DEVICE
F13
F13: REQUIRED CIRCUIT NOT CONFIGURED AT PEN @@@@@@@@@@@@
F15
F15: CANNOT DELETE LAST TRUNK @@@@@@@@@@@@ FROM TRKGRP @@@@@@
     SINCE THE TRUNK GROUP IS ALLOCATED TO AT LEAST ONE ROUTE
F18
F18: INSUFFICIENT MEMORY SPACE (AMO DIMSU: PARAMETER @@@@@@)
F20
F20: @@@@@@@@ @@@@@@ NOT ASSIGNED @@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@
F22
F22: THE PARAMETERS OF THE TRUNK DO NOT MATCH THE PARAMETERS OF
     THE OTHER TRUNKS IN THE TRUNK GROUP
F24
F24: TRUNK GROUP ALREADY FULL
Repair:Expand trunk group with AMO BUEND or configure new trunk group with the AMO BUEND and assign the identical route access code with the AMO RICHT
F25
F25: THE TRUNK GROUP CANNOT ACCOMMODATE ALL TRUNKS
Repair:see F24
F26
F26: DEVICE OR DEVICETYPE CANNOT BE CHANGED
Repair:Delete trunk and add it with desired DEV and DEVTYPE
F27
F27: DEVICE IS NOT PROCESSED BY THE AMO TACSU
F28
F28: PARAMETER MUST BE SPECIFIED
F33
F33: INADMISSIBLE DIGIT PREFIXING
F35
F35: SUPPRESS MAY NOT BE MORE THAN DGTCNT
F36
F36: THE VALUE "DGTCNT - SUPPRESS + LENGTH(DGTPR)" MAY NOT EXCEED 6
F37
F37: THE TRUNK PARAMETER MFC (AMO COT) MAY NOT BE ASSIGNED, IF MFCVAR = 0
F42
F42: PEN NOT SPECIFIED AT THE PHYSICAL MODULE LOCATION,
     POSSIBLE INPUT: @@@@@@@@@@@@ ?
F43
F43: REFERENCE CLOCK TABLE IS FULL
F44
F44: LWPAR @@ IS NOT PROVIDED FOR THE DEVICE @@@@@@@@
F45
F45: MOSIG MAY NOT BE SPECIFIED FOR DIALTYPE FOR OUTGOING TRAFFIC
F46
F46: IF MFX OR DIPA IS SPECIFIED FOR DIALTYPE (INCOMING AND/OR OUTGOING
     TRAFFIC) THEN MFCVAR > 0 MUST BE SET
F47
F47: IF COT PARAMETER ANIC IS SET THEN DIALTYPE=DIPA-DIPA MUST BE SPECIFIED
F48
F48: THE TIMER BLOCK UNDER CIRCIDX @@@ DOES NOT MATCH THE SPECIFIED DEVICE
F49
F49: NO CIRCIDX EXISTS FOR THE SPECIFIED DEVICE
     NO FREE TIMER BLOCK AVAILABLE
F50
F50: NO TIMER BLOCK ENTRY EXISTS FOR THE SPECIFIED DEVICE
F51
F51: CIRCIDX @@@ NOT ASSIGNED
F52
F52: LOADING TIMER BLOCK NOT POSSIBLE (FILE NOT CATALOGED)
F53
F53: PEN1 MUST NOT BE GREATER THAN PEN2
F55
F55: TRUNK PARAMETER ROPT (AMO COT) MAY ONLY BE SPECIFIED FOR CORNET_N TRUNKS
F56
F56: @@@@@@@@ @@@@@@ NOT IN PERMISSIBLE RANGE FROM @@@@@@ TO @@@@@@
F57
F57: THE LINE CANNOT BE ADDED;
     THE CONTRACTED NUMBER OF FLEX LICENSES @@@@@ IS REACHED.
     PLEASE USE DISP-CODEW FOR DISPLAY OF THE CONTRACTED FEATURE PACKAGES.
     PLEASE CONTACT YOUR SERVICE CENTER IF YOU WISH TO ADD MORE LINES.
     CHANGE-CODEW:TRIAL=YES MAY ACTIVATE A TIME LIMITED TRIAL MODE.
F59
F59: NNO AND THE OWN NODE NUMBER (AMO ZAND) HAVE DIFFERENT LEVELS
F61
F61: TRKGRP @@@@@ DOES NOT CONTAIN ANALOG TRUNKS.
F62
F62: THE TRUNK WITH PEN @@@@@@@@@@@@ DOES NOT BELONG TO TRKGRP @@@@@.
F63
F63: THE TRUNK WITH PEN @@@@@@@@@@@@ IS BUSY
     REPEAT COMMAND LATER OR WITH OFFTYPE=DI
     OR DEACTIVATE IMMEDIATELY WITH AMO DSSU
F64
F64: THE TRUNK WITH PEN @@@@@@@@@@@@ IS REFERENCE CLOCK GENERATOR
     (DEACTIVATION ALLOWED WITH AMO DSSU ONLY)
F65
F65: THE TRUNK WITH PEN @@@@@@@@@@@@ IS LAST POSSIBLE REFERENCE CLOCK GENERATOR
     (DEACTIVATION ALLOWED WITH AMO DSSU ONLY)
F66
F66: TGRP 0 IS NOT ALLOWED FOR DISPLAY WITH TYPE KON OR DEVTYPE
F67
F67: THE TRUNK GROUP DOES NOT CONTAIN THE SPECIFIED DEVICES
F68
F68: TRTBL must be DID for @@@@@@@@ devices.
F69
F69: RULEIDX is required for @@@@@@@@ devices.
F70
F70: ATNTYP @@@@@@ is not allowed for @@@@@@@@ devices.
F71
F71: LTU @@@@@@ is not suitable for @@@@@@@@ .
F72
F72: TRTBL MUST BE DID WHEN RULEIDX IS ENTERED.
F73
F73: TRTBL MUST BE GDTR WHEN RULEIDX IS NOT ENTERED.
F74
F74: NNO must not be the own physical node id (PNNO in AMO-ZAND).
F75
F75: THE VALUES FLASH, FLASHOV, ROUTINE, IMMED AND/OR PRTY CANNOT BE
     SELECTED TOGETHER
F76
F76: IT IS NOT ALLOWED TO CONFIGURE TRUNKS FOR TMDNH (BOS) BOARDS SINCE
     SUBSCRIBERS ARE ALREADY CONFIGURED ON IT.
F77
F77: MFCVAR value is not filled/copied  with a valid table by AMO-MFCTA
F100
F100: THE GIVEN ALARM NUMBER IS NOT VALID BECAUSE IT DOES NOT LEAD EITHER TO A
      LOGICAL ALARM OR THE ALARM TYPE DOES NOT MATCH DIR.
F101
F101: HMUSIC @@@ IS NOT YET ASSIGNED
      ( ADD-RCSU:RECAPL=HMUSIC, )

Advisory Messages

H01
H01: TRUNK <cct> ASSIGNED AT PEN <pen>
H02
H02: TRUNK RELEASED FOR CALL PROCESSING
H03
H03: TRUNK AT PEN @@@@@@@@@@@@ CHANGED
H04
H04: CHANGE OF LOADWARE DATA (COFIDX, CIRCIDX, LWPAR)
    WILL BE EFFECTIVE AFTER RELOAD WITH:
RESTART-DSSU:PEN,@@@@@@@@@@@@;
H05
H05: NO TRUNK FOUND
Cause:This message is output if nothing was found by the interrogate function
H11
H11: THE TRUNK WILL BE CREATED AS TIE TRUNK SINCE THE LINE PARAMETER TIE
     (AMO COP) IS SET
Cause:BWFIN and SOCFR trunks are used as tie trunk if the tie parameter is set
H12
H12: PARAMETER @@@@@@@@ WILL BE IGNORED
Cause:A parameter has been specified which is not required, e.g. COS for networking trunks
H13
H13: TRUNK PARAMETER ANS (AMO COT) DOES NOT MATCH LINE PARAMETER
     ANS (AMO COP); DEVIATION FROM STANDARD
H14
H14: FOR THIS DEVICE THE TRUNK PARAMETER NTON SHOULD BE ASSIGNED
     (AMO COT); DEVIATION FROM STANDARD
H15
H15: FOR THIS DEVICE TSAUST THE LINE PARAMETERS SDL AND SACK SHOULD
     BE ASSIGNED TOGETHER (AMO COP); DEVIATION FROM STANDARD
H16
H16: TRUNK AT PEN @@@@@@@@@@@@ ENTERED WITH PRIO=0 IN THE REFERENCE CLOCK TABLE
H17
H17: CONTROL PARAMETER DIALTYPE AND TRUNK PARAMETER MFC (AMO COT)!
H18
H18: TIMER BLOCK STORED AND ASSIGNED UNDER CIRCIDX @@@
H19
H19: NO SIU TYPE 3 FOR MFCVAR <mfcvar> FOUND IN LTU <ltu number|HHS>.
H20
H20: TIMER BLOCK ASSIGNED UNDER CIRCIDX @@@
H21
H21: CARRIER <carrier>, ZONE <zone> SHOULD BE PARAMETERIZED IN CDR (AMO TTBL)
H22
H22: PARAMETER KNNR HAS BEEN ADAPTED TO THE OWN NODE NUMBER (AMO ZAND)
     ADAPTED NNO: @@@@@@@@@@@
H23
H23: TRKGRP @@@@@ IS EMPTY.
H24
H24: TRKGRP @@@@@ DOES NOT CONTAIN ANALOG TRUNKS.
H28
H28: @@@@@@ @@@@@ HAS BEEN ASSIGNED.
Cause:A recommended value for COTNO, COPNO or LWPAR is assigned automatically, if exactly one value is defined for the device with AMO COP/COT/LWPAR
H29
H29: TRUNK @@@@@@@@@@@@ DELETED
H30
H30: ****** PLEASE NOTE : *************************************************
     THE CONTRACTED NUMBER OF FLEX LICENSES IS EXCEEDED.
     TRUNK <pen> HAS BEEN MARKED AS TRIAL ENTITY.
     IT WILL BE BLOCKED, IF TRIAL MODE EXPIRES WITHOUT SUFFICIENT LICENSES.
***************************************************************************
Cause:Trial mode is active and the license limit is exceeded. Therefore the trunk has been marked.
Marked entities will be locked at trial mode expiry, if sufficient licenses are missing.
Repair:To avoid locking, the license limit must not be exceeded at trial mode expiry.
H31
H31: PARAMETER OFFTYPE IGNORED AS LOADWARE IS NOT CHANGED.
H32
H32: THE TRUNK @@@@@@@@@@@@ IS NOT IN SERVICE, NO DEACTIVATION OCCURED
H34
H34: The automatic search for free PENs will take place in the HHS shelves
     and in access points with source group 1.
     The given source group @@@@@ will be applied to the configuration.
H35
H35: Trunk ID @@@@ is in use for another trunk.
H36
H36: TRTBL is ignored for @@@@@@@@ devices.
H37
H37: RULEIDX is ignored for @@@@@@@@ devices.
H38
H38: ATNTYP is ignored for <device> devices.
H39
H39: DEVICE REQUIRES SIU TYPE 5 OR 6. PLEASE CHECK.
H40
H40: THE PARAMETER DELSVCDM OVERRULES PARAMETER SVCDOM
     THEREFORE THE SERVICE DOMAIN HAS BEEN DELETED.