ABB REB670 Series Applications Manual page 353

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1MRK 505 370-UEN D
13.11.2
Application
Integer to boolean 16 conversion with logic node representation function (ITBGAPC) is used to
transform an integer into a set of 16 boolean signals. ITBGAPC function can receive an integer
from a station computer – for example, over IEC 61850–8–1. This function is very useful when
the user wants to generate logical commands (for selector switches or voltage controllers) by
inputting an integer number. ITBGAPC function has a logical node mapping in IEC 61850.
The Integer to Boolean 16 conversion with logic node representation function (ITBGAPC) will
transfer an integer with a value between 0 to 65535 communicated via IEC 61850 and
connected to the ITBGAPC function block to a combination of activated outputs OUTx where
1≤x≤16.
The values of the different OUTx are according to the Table 48.
If the BLOCK input is activated, it freezes the logical outputs at the last value.
Table 48: Output signals
Name of OUTx
OUT1
OUT2
OUT3
OUT4
OUT5
OUT6
OUT7
OUT8
OUT9
OUT10
OUT11
OUT12
OUT13
OUT14
OUT15
OUT16
The sum of the numbers in column "Value when activated" when all OUTx (1≤x≤16) are active
equals 65535. This is the highest integer that can be converted by the ITBGAPC function block.
13.12
Elapsed time integrator with limit transgression and
overflow supervision TEIGAPC
13.12.1
Identification
Function Description
Elapsed time integrator
Busbar protection REB670
Application manual
Type
Description
BOOLEAN
Output 1
BOOLEAN
Output 2
BOOLEAN
Output 3
BOOLEAN
Output 4
BOOLEAN
Output 5
BOOLEAN
Output 6
BOOLEAN
Output 7
BOOLEAN
Output 8
BOOLEAN
Output 9
BOOLEAN
Output 10
BOOLEAN
Output 11
BOOLEAN
Output 12
BOOLEAN
Output 13
BOOLEAN
Output 14
BOOLEAN
Output 15
BOOLEAN
Output 16
IEC 61850
IEC 60617
identificatio
identificatio
n
n
TEIGAPC
-
Value when
Value when
activated
deactivated
1
0
2
0
4
0
8
0
16
0
32
0
64
0
128
0
256
0
512
0
1024
0
2048
0
4096
0
8192
0
16384
0
32768
0
GUID-1913E066-37D1-4689-9178-5B3C8B029815 v3
ANSI/IEEE C37.2 device
number
-
Section 13
Logic
SEMOD158512-5 v7
347

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