X20 system modules • Other functions • X20CM4810
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X20 system User's Manual 3.10
4.26.2.5.3 Function model 1 - Fast master
The characteristic values calculated by the module are streamed to the master every 300 ms via FlatStream. If the
streamed data is not collected by the next transfer, the measured characteristic values are lost. For this reason,
the maximum cycle time must be observed for an error-free evaluation.
With this function model, it is also possible to use an additional FlatStream to read data buffers (time signal and
FFT spectrum) from the module.
Analog inputs are provided as cyclic data points. The AsVib library provides support for the user when using SGC
CPUs.
This function model can only be used on
Ethernet-based masters
. However, it must be ensured that FlatStream
handling is implemented on the master and that the module changes the data in the FlatStream in every X2X cycle.
4.26.2.5.3.1 Register of function model 1 - Fast master
Read
Write
Register
Name
Data type
Cyclic
Acyclic
Cyclic
Acyclic
General registers
Index * 2 + 2
ActSpeed0N (Index N = 1 bis 4)
UINT
●
1310
UINT
●
526
UINT
●
0
UINT
●
●
514
UINT
●
0
UINT
●
Analog input functions
Index * 2
AnalogInput0N (Index N = 1 bis 4)
INT
●
1330
UINT
●
570
UINT
●
2
UINT
●
Index * 4 + 22
AnalogInputSamples0N (Index N = 1 bis 4)
UINT
●
1298
UINT
●
546
UINT
●
Index * 4 + 1310 SamplesAnalogInput0N (Index N = 1 bis 4)
UINT
●
Index * 4 + 526 SamplesAnalogInput0NRead (Index N = 1 bis 4)
UINT
●
Characteristic values - minimum and maximum values
2690
UINT
●
Index * 8 + 3588 CrestRawMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2948 CrestRawMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3332 Iso10816Max0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2692 Iso10816Min0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3556 KurtosisRawMax0N (Index N = 1 bis 4)
DINT
●
Index * 8 + 2916 KurtosisRawMin0N (Index N = 1 bis 4)
DINT
●
Index * 8 + 3492 PeakHighFrequencyMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2852 PeakHighFrequencyMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3684 PeakRawMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3044 PeakRawMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3428 RmsAccEnvelopeMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2788 RmsAccEnvelopeMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3364 RmsAccRawMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2724 RmsAccRawMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3524 RmsHighFrequencyMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2884 RmsHighFrequencyMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3652 RmsRawMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3012 RmsRawMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3460 RmsVelEnvelopeMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2820 RmsVelEnvelopeMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3396 RmsVelRawMax0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 2756 RmsVelRawMin0N (Index N = 1 bis 4)
UDINT
●
Index * 8 + 3620 SkewnessRawMax0N (Index N = 1 bis 4)
DINT
●
Index * 8 + 2980 SkewnessRawMin0N (Index N = 1 bis 4)
DINT
●
Frequency configuration
1302
UINT
●
550
UINT
●
1306
UINT
●
558
UINT
●
526
UINT
●
554
UINT
●
522
UINT
●
566
UINT
●
518
UINT
●
562
UINT
●
Frequency bands
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