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CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH CUH
22
Signal Source
0
1
b
-b
C
-C
od
-od
oq
-oq
Implication
invalid signal
valid signal
Intelligent photoelectric sensing port signal
Switch sensor port signal
Control output port signal
Intelligent photoelectric sensing port signal is inverted
Switch sensor port signal is inverted
Control output port signal is inverted
Main power output port signal
Main power output port signal is inverted
The control of the main output and the control output is controlled by the
result of the logical relationship between the two signal sources.
Set the logic relationship of the two signal sources by setting the parameter
values of the advanced parameters Πd and Πq.
Select the following signals by setting the parameter values of the advanced
parameters E.d, Ed, E.q, Eq.
5.4.2 Control Output Signal Source and Logic Diagram
SDVC311 Series
Variable Frequency Digital Controller for Vibratory Feeder
SDVC311SMSEN_1.032023-08