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PID Setpoint Input Methods
When the PID control parameter b5-01 is set to 1 or 2, the frequency reference in b1-01 (or b1-15) becomes the PID setpoint.
If b5-01 is set to 3 or 4, then the PID setpoint can be input from one of the sources in the following table.
Table 5.6 PID Setpoint Sources
PID Setpoint Source
Settings
Analog Input A1
Set H3-02 = C
Analog Input A2
Set H3-10 = C
MEMOBUS/Modbus Register 0006H
Set Bit 1 in register 000FH to 1 and input the setpoint to register 0006H
Pulse Input RP
Set H6-01 = 2
Parameter b5-19
Set parameter b5-18 = 1 and input the PID setpoint to b5-19
Note:
A duplicate allocation of the PID setpoint input will result in an OPE alarm.
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PID Feedback Input Methods
Either one feedback signal can be input for normal PID control or two feedback signals can be input for controlling a differential
process value.
Normal PID Feedback
The PID feedback can be input from one of the sources listed below.
Table 5.7 PID Feedback Sources
PID Feedback Source
Settings
Analog Input A1
Set H3-02 = B
Analog Input A2
Set H3-10 = B
Pulse Input RP
Set H6-01 = 1
Note:
A duplicate allocation of the PID feedback input will result in an OPE alarm.
Differential Feedback
The second PID feedback signal for differential feedback can come from the sources listed below. The differential feedback
function is automatically enabled when a differential feedback input is assigned.
Table 5.8 PID Differential Feedback Sources
PID Differential Feedback Source
Settings
Analog Input A1
Set H3-02 = 16
Analog Input A2
Set H3-10 = 16
Note:
A duplicate allocation of the PID differential feedback input will result in an OPE alarm.
5.2 b: Application
YASKAWA ELECTRIC SIEP C710606 18F YASKAWA AC Drive – V1000 Technical Manual
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Parameter Details