Synchronising to zero track or touch probe, Function library – Lenze EVS9332xS User Manual
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Function library
Function blocks
3.2.27
Digital frequency processing (DFSET)
3−78
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EDSVS9332S−EXT EN 2.0
3.2.27.3
Synchronising to zero track or touch probe
(
Stop!
If synchronisation via terminals X5/E4 and X5/E5 (C0532 = 2) is activated, there
must not be any other signal connections to the terminals. If you have selected a
basic configuration via C0005, the terminals are subject to a basic assignment.
The synchronisation mode can be selected in C0532.
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C0532 = 1, zero pulse
– Zero track of digital frequency input X9 and zero track by the feedback system set under
C0490 (not for resolver evaluation).
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C0532 = 2, touch probe
– Via terminals X5/E4 (actual pulse) and X5/E5 (setpoint pulse).
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C0532 = 3, zero pulse (setpoint) and touch probe (actual value)
– Setpoint pulses of digital frequency input X9 and actual pulses via the touch probe input at
terminal X5/E4.
)
Note!
For all three modes you can define a division factor for the actual pulses (code
C0531) and for the setpoint pulses (code C0535).
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Example: For C0531 = 10 only every tenth actual pulse is evaluated. The other 9
pulses are ignored.
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Lenze setting: C0531 = 1, C0533 = 3
Correction of the touch probe initiator (terminal X5/E5)
Delay times during the activation of the initiator cause a speed−dependent angular offset (e.g. during
positioning, synchronising). To compensate this angular offset, the response time [ms] of the
initiators is converted into an angular correction value depending on the setpoint speed and then
taken into account in the setpoint angle.
How to determine the angular correction value:
1. Use the below formula to convert the response time [ms] into a correction value [inc]:
Angular correction value in C0429 = 16384 × response time [ms]
– Please refer to the data sheet for the response time [ms] or contact the manufacturer of the
initiator.
2. Set the angular correction value for the angular offset in C0429.