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Chapter 12 Description of Parameter Settings
CP2000
12.1-08-5
system state. Using a suitable differential time can reduce overshoot and shorten adjustment
time; however, the differential operation increases noise interference. Note that a too large
differential causes more noise interference. In addition, the differential shows the change and
the output is 0 when there is no change. Note that you cannot use the differential control
independently. You must use it with the other two controllers for the PD controller or PID
controller.
Sets the D controller gain to determine the error change response. Using a suitable differential
time reduces the P and I controllers overshoot to decrease the oscillation for a stable system. A
differential time that is too long may cause system oscillation.
The differential controller acts on the change in the error and cannot reduce the interference. Do
not use this function when there is significant interference.
Upper limit of Integral Control
Default: 100.0
Settings 0.0
–
100.0%
Defines an upper bound for the integral gain (I) and therefore limits the master frequency. The
formula is: Integral upper bound = Maximum Output Frequency (Pr.01-00) x Pr.08-04 %.
An excessive integral value causes a slow response due to sudden load changes and may
cause motor stall or machine damage.
PID Output Command Limit
Default: 100.0
Settings 0.0
–
110.0%
Defines the percentage of the output command limit during the PID control. The formula is
Output Command Limit = Maximum Output Frequency (Pr.01-00 x Pr.08-05 %).
PID Feedback Value by Communication Protocol
Default: Read only
Settings -200.00%
–
200.00%
Use communication to set the PID feedback value when the PID feedback input is set to
communication (Pr.08-00 = 7 or 8).
PID Delay Time
Default: 0.0
Settings 0.0
–
35.0 sec.
PID Mode Selection
Default: 0
Settings 0: Serial connection
1: Parallel connection
0: Serial connection, use conventional PID control structure.
1: Parallel connection, the proportional gain, integral gain and derivative gain are independent.
You can customize the P, I and D value to fit your application.
Pr.08-20 determines the primary low pass filter time when in PID control. Setting a large time
constant may slow down the drive’s response rate.
Содержание CP2000 Series
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Страница 12: ...Chapter 1 Introduction CP2000 1 3 1 2 Model Name 1 3 Serial Number...
Страница 35: ...Chapter 1 Introduction CP2000 1 26 Digital Keypad KPC CC01 Figure 1 32...
Страница 36: ...Chapter 2 Installation CP2000 2 1 Chapter 2 Installation 2 1 Mounting Clearance 2 2 Flow and Power Dissipation...
Страница 42: ...Chapter 3 Unpacking CP2000 3 1 Chapter 3 Unpacking 3 1 Unpacking 3 2 The Lifting Hook...
Страница 72: ...Chapter 4 Wiring CP2000 4 1 Chapter 4 Wiring 4 1 System Wiring Diagram 4 2 Wiring...
Страница 77: ...Chapter 4 Wiring CP2000 4 6 Figure 4 5...
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Страница 171: ...Chapter 7 Optional Accessories CP2000 7 62 EMC Filter Dimension EMC filter model name EMF021A23A EMF014A43A Figure 7 45...
Страница 172: ...Chapter 7 Optional Accessories CP2000 7 63 EMC filter model name EMF018A43A Figure 7 46...
Страница 173: ...Chapter 7 Optional Accessories CP2000 7 64 EMC filter model name EMF056A23A EMF039A43A Figure 7 47...
Страница 174: ...Chapter 7 Optional Accessories CP2000 7 65 EMC filter model name KMF370A KMF3100A Figure 7 48...
Страница 175: ...Chapter 7 Optional Accessories CP2000 7 66 EMC filter model name B84143D0150R127 Figure 7 49...
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Страница 242: ...Chapter 8 Option Cards CP2000 8 5 Communication extension card Slot 1 CMC PD01 CMC DN01 CMC EIP01 EMC COP01 CMC PN01...
Страница 245: ...Chapter 8 Option Cards CP2000 8 8 I O Relay Card EMC D42A EMC D611A EMC R6AA EMC BPS01 EMC A22A...
Страница 247: ...Chapter 8 Option Cards CP2000 8 10 I O Relay Card EMC D42A EMC D611A EMC R6AA EMC BPS01 EMC A22A...
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Страница 277: ...Chapter 09 Specifications CP2000 9 12 575V 690V Figure 9 3 Altitude Derating Curve Figure 9 4...
Страница 279: ...Chapter 09 Specifications CP2000 9 14 230V 460V Advanced Control Pr 00 11 2 PM SVC Pr 05 33 1 2 Figure 9 7 Figure 9 8...
Страница 281: ...Chapter 09 Specifications CP2000 9 16 9 8 Efficiency Curve Figure 9 11 Figure 9 12...
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Страница 560: ...Chapter 12 Description of Parameter Settings CP2000 12 2 00 6 III PM SVC Carrier Start up Adjustment...
Страница 835: ...Chapter 16 PLC Function Applications CP2000 16 152 Step 3 Physical configuration CP2000 Step 4 Write to PLC program...
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