Channel Digital Input Module Namur With Diagnostics And Output Process Data; Table 234: 8 Channel Digital Input Module Namur With Diagnostics And Output Process Data - WAGO 750-8215 Manual

I/o-system 750
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WAGO-I/O-SYSTEM 750
750-8215 PFC200; G2; 4ETH CAN USB
17.1.1.7
8 Channel Digital Input Module NAMUR with Diagnostics and Output
Process Data
750-439
The digital input module NAMUR provides via one logical channel 2 byte for the
input and output process image.
The signal state of NAMUR inputs DI1 ... DI8 is transmitted to the fieldbus
coupler/controller via input data byte D0.
The fault conditions are transmitted via input data byte D1.
The channels 1 ... 8 are switched on or off via the output data byte D1.
The output data byte D0 is reserved and always has the value "0".

Table 234: 8 Channel Digital Input Module NAMUR with Diagnostics and Output Process Data

Input Process Image
Input byte D0
Bit 7
Signal
status
DI 8
Channel 8
Input byte D1
Bit 7
Wire break
/short
circuit
Data bit
DI 8
Channel 8
Output Process Image
Output byte D0
Bit 7
0
Output byte D1
Bit 7
DI Off 8
Channel 8
*)
*) 0: Channel ON
1: Channel OFF
Bit 6
Bit 5
Signal
Signal
status
status
DI 7
DI 6
Channel 7
Channel 6
Channel 5
Bit 6
Bit 5
Wire break
Wire break
Wire break
/short
/short
circuit
circuit
Data bit
Data bit
DI 7
DI 6
Channel 7
Channel 6
Channel 5
Bit 6
Bit 5
0
0
Bit 6
Bit 5
DI Off 7
DI Off 6
Channel 7
Channel 6
Channel 5
*)
*)
Version 1.2.0, valid from FW Version 03.02.02(14)
Bit 4
Bit 3
Signal
Signal
status
status
DI 5
DI 4
Channel 4
Channel 3
Bit 4
Bit 3
Wire break
Wire break
/short
/short
circuit
circuit
Data bit
Data bit
Data bit
DI 5
DI 4
Channel 4
Channel 3
Bit 4
Bit 3
0
0
Bit 4
Bit 3
DI Off 5
DI Off 4
DI Off 3
Channel 4
Channel 3
*)
*)
Appendix 333
Bit 2
Bit 1
Signal
Signal
Signal
status
status
status
DI 3
DI 2
Channel 2
Channel 1
Bit 2
Bit 1
Wire break
Wire break
/short
/short
/short
circuit
circuit
circuit
Data bit
Data bit
DI 3
DI 2
Channel 2
Channel 1
Bit 2
Bit 1
0
0
Bit 2
Bit 1
DI Off 2
DI Off 1
Channel 2
Channel 1
*)
*)
Manual
Bit 0
DI 1
Bit 0
DI 1
Bit 0
0
Bit 0
*)

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