YASKAWA HV600 Manual page 202

Ac drive for hvac fan and pump applications
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2.3 b: Application
PID Control Applications
Table 2.24
shows applications for PID control.
Application
Speed Control
Pressure control
Flow control
Temperature control
Input Methods for the PID Setpoint
Use b5-01 [PID Mode Setting] to select how the PID setpoint is input to the drive.
When b5-01 = 1 [Standard], the frequency reference set in b1-01 [Frequency Reference Selection 1] will be the PID
setpoint, or the one of the values shown in
When b5-01 = 3 [Fref + PID Trim], one of the inputs in
Input Methods for the PID Setpoint
MFAI terminal A1
MFAI terminal A2
MEMOBUS/Modbus register 0006H
Note:
If you set two inputs for the PID setpoint, it will trigger operation error oPE07 [Analog Input Selection Error].
Entering the PID Feedback Value
You can use two methods to input the PID feedback value to the drive. One method uses a single feedback signal for
usual PID control. The other method uses two signals. The difference between those signals sets the deviation.
• Use One Feedback Signal
Use
Table 2.26
to select how the feedback signal is input to the drive for PID control.
PID Feedback Input Method
MFAI terminal A1
MFAI terminal A2
MEMOBUS/Modbus register 15FFH
• Use Two Feedback Signals and Calculate the Deviation from the Difference Between Those Signals
Use
Table 2.27
to select how the second feedback value is input to the drive. The drive calculates the deviation of
the second feedback value. Set H3-02 or H3-10 = 16 [Terminal A1/A2 Function Selection = Differential PID
Feedback] to enable the second feedback signal used to calculated the deviation.
PID Differential Feedback Input Method
MFAI terminal A1
MFAI terminal A2
202
Table 2.24 PID Control Applications
Control Content
• The drive uses a feedback signal for the machine speed,
and adjusts that speed to align with the target value.
The drive uses speed data from other machinery as the
target value to do synchronous control. The drive then
adds that target value to the feedback from the machine
it is operating to align its speed with the other
machinery.
The drive uses feedback from the actual pressure to hold
constant pressure.
The drive uses feedback from the actual flow to hold
constant flow.
The drive uses feedback from the actual temperature to
control a fan and hold constant temperature.
Table 2.25
will be the PID setpoint.
Table 2.25
Table 2.25 Input Methods for the PID Setpoint
Set H3-02 = C [Terminal A1 Function Selection = PID Setpoint].
Set H3-10 [Terminal A2 Function Selection] = C.
Sets MEMOBUS/Modbus register 000FH (Control Selection Setting) bit 1 to 1 (PID
setpoint input). Enters the PID setpoint to MEMOBUS/Modbus register 0006H (PID
setpoint, 0.01% units, signed).
Table 2.26 PID Feedback Input Method
Table 2.27 PID Differential Feedback Input Method
Tacho generator
Pressure sensor
Flow rate sensor
Thermocoupler, thermistor
will be the PID setpoint.
Setting Value
Setting Value
Set H3-02 = B [PID Setpoint].
Set H3-10 = B.
Enters the PID setpoint to MEMOBUS/Modbus register 15FFH (PID setpoint, 0.01%
units, signed).
Setting Value
Set H3-02 = 16.
Set H3-10 = 16.
YASKAWA TOEPYAIHV6002A HV600 Drive Programming
Sensors Used

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