Programming Your Application 1-51
690+ Series Frequency Inverter
Logic Func 15
OUTPUT [1369]
–
FALSE
FALSE – [1366] INPUT A
–
FALSE
–
[1367] INPUT B
–
FALSE
–
[1368] INPUT C
–
NOT(A)
–
[1370] TYPE
–
Logic Func 17
OUTPUT [1379]
–
FALSE
FALSE – [1376] INPUT A
–
FALSE
–
[1377] INPUT B
–
FALSE
–
[1378] INPUT C
–
NOT(A)
–
[1380] TYPE
–
Logic Func 19
OUTPUT [1389]
–
FALSE
FALSE – [1386] INPUT A
–
FALSE
–
[1387] INPUT B
–
FALSE
–
[1388] INPUT C
–
NOT(A)
–
[1390] TYPE
–
Logic Func 16
OUTPUT [1374]
–
FALSE
FALSE – [1371] INPUT A
–
FALSE
–
[1372] INPUT B
–
FALSE
–
[1373] INPUT C
–
NOT(A)
–
[1375] TYPE
–
Logic Func 18
OUTPUT [1384]
–
FALSE
FALSE – [1381] INPUT A
–
FALSE
–
[1382] INPUT B
–
FALSE
–
[1383] INPUT C
–
NOT(A)
–
[1385] TYPE
–
Logic Func 20
OUTPUT [1394]
–
FALSE
FALSE – [1391] INPUT A
–
FALSE
–
[1392] INPUT B
–
FALSE
–
[1393] INPUT C
–
NOT(A)
–
[1395] TYPE
–
Parameter Descriptions
INPUT A
Range: FALSE / TRUE
General purpose logic input.
INPUT B
Range: FALSE / TRUE
General purpose logic input.
INPUT C
Range: FALSE / TRUE
General purpose logic input.
TYPE
Range: Enumerated - see below
The operation to be performed on the three inputs to produce the output value. The operations
that can be selected are:
Enumerated Value : Type
0 : NOT(A)
1 : AND(A,B,C)
2 : NAND(A,B,C)
3 : OR(A,B,C)
4 : NOR(A,B,C)
5 : XOR(A,B)
6 : 0-1 EDGE(A)
7 : 1-0 EDGE(A)
8 : AND(A,B,!C)
9 : OR(A,B,!C)
10 : S FLIP-FLOP
11 : R FLIP-FLOP
OUTPUT
Range: FALSE / TRUE
The result of performing the selected operation on the inputs.