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Lenze I/O system 1000 - Page 494

Lenze I/O system 1000
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Lenze · I/O system 1000 · Reference Manual · DMS 5.0 EN · 09/2016 · TD17 494
9 PROFINET communication
9.6 Parameterising analog I/Os
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Diagnostic data
Since this module does not support an alarm, the diagnostic data serve to provide information on
this module. In the event of an error the corresponding channel LED of the module is lit and the error
is entered in the diagnostic data.
The following errors are registered in the diagnostic data:
Configuration/parameterisation errors
Short circuit/overload (if parameterised)
Using SFB 52 you can access the diagnostic data of the module any time. Data set 1 has the
following structure:
Byte Bit 7 ... 0
0 Bit 0: Set in the case of module fault
Bit 1: Set in the case of internal error
Bit 2: Set in the case of external error
Bit 3: Set if channel error available
Bit 4: Set in the case of a missing external supply voltage
Bit 6: 0 (fixed)
Bit 7: Parameterisation error
1 Bit 3 ... 0: Module class, 0b0101: Analog module
Bit 4: Channel information available
Bit 7 ... 5: 0 (fixed)
20 (fixed)
30 (fixed)
4 Bit 6 ... 0: Channel type, 0x73: Analog output
Bit 7: 0 (fix)
5 Number of diagnostic bits output by the module per channel (here 0x08))
6 Number of channels of a module (here 0x04)
7 Bit 0: Channel error channel 1
Bit 1: Channel error channel 2
Bit 2: Channel error channel 3
Bit 3: Channel error channel 4
Bit 7 ... 4: 0 (fixed)
8 Channel-specific errors: channel 1:
Bit 0: Configuration/parameterisation error
Bit 2 ... 1: 0 (fixed)
Bit 3: Short circuit after M
Bit 7 ... 4: 0 (fixed)
9 Channel-specific errors: channel 2:
Bit 0: Configuration/parameterisation error
Bit 2 ... 1: 0 (fixed)
Bit 3: Short circuit after M
Bit 7 ... 4: 0 (fixed)
10 Channel-specific errors: channel 3:
Bit 0: Configuration/parameterisation error
Bit 2 ... 1: 0 (fixed)
Bit 3: Short circuit after M
Bit 7 ... 4: 0 (fixed)
11 Channel-specific errors: channel 4:
Bit 0: Configuration/parameterisation error
Bit 2 ... 1: 0 (fixed)
Bit 3: Short circuit after M
Bit 7 ... 4: 0 (fixed)
12 ... 15 0 (fixed)

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