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Chapter 12 Description of Parameter Settings
CP2000
12.1-07-12
When the setting is too long, the control is stable but the control response is delayed. When the
setting is too short, the response is quick but the control may be unstable. Adjust the setting
according to the stability of the control and response times.
Slip Compensation Filter Time (V/F and SVC Control Mode)
Default: 0.100
Settings 0.001–10.000 sec.
Change the compensation response time with Pr.07-24 and Pr.07-25.
If you set Pr.07-24 and Pr.07-25 to 10 seconds, the compensation response is the slowest.
However, the system may be unstable if you set the time too short.
Torque Compensation Gain (V/F and SVC Control Mode)
Default: 0
Settings IM: 0–10 (when Pr.05-33=0)
PM: 0–5000 (when Pr.05-33=1 or 2)
Only applicable in IMVF and PMSVC control modes.
With a large motor load, a part of drive output voltage is absorbed by the short winding resistor;
therefore, the air gap magnetic field is insufficient. This causes insufficient voltage at motor
induction and results in excessive output current but insufficient output torque. Auto-torque
compensation can automatically adjust the output voltage according to the load and keep the air
gap magnetic fields stable to get the optimal operation.
In the V/F control, the voltage decreases in direct proportion when decreasing frequency. It
reduces the torque decrease at low speed due to the AC impedance while the DC resistor is
unchanged. The auto-torque compensation function increases the output voltage at low
frequency to get a higher start torque.
When the compensation gain is set too large, it may cause motor over-flux and result in a too
large output current, overheating the motor or triggering the protection function.
Slip Compensation Gain (V/F and SVC Control Mode)
Default: 0.00
(1.00 in SVC mode)
Settings 0.00–10.00
The induction motor needs constant slip to produce magnetic torque. It can be ignored at a
higher motor speed, such as rated speed or 2–3% of slip.
In operation, the slip and the synchronous frequency are in reverse proportion to produce the
same magnetic torque. The slip is larger with the reduction of synchronous frequency. The
motor may stop when the synchronous frequency decreases to a specific value. Therefore, the
slip seriously affects the motor speed accuracy at low speed.
In another situation, when you use an induction motor with the drive, the slip increases when the
load increases. It also affects the motor speed accuracy.
Use this parameter to set the compensation frequency, and reduce the slip to maintain the
synchronous speed when the motor runs at the rated current in order to improve the accuracy of
the drive. When the drive output current is higher than Pr.05-05 (No-load Current of Induction
Содержание CP2000 Series
Страница 3: ......
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...
Страница 78: ...Chapter 4 Wiring CP2000 4 7 4 2 1 SINK NPN SOURCE PNP Mode Figure 4 6 Figure 4 7 Figure 4 8 Figure 4 9...
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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...
Страница 176: ...Chapter 7 Optional Accessories CP2000 7 67 EMC filter model name B84143D0200R127 Figure 7 50...
Страница 182: ...Chapter 7 Optional Accessories CP2000 7 73 Wall Mounting Embedded Mounting...
Страница 197: ...Chapter 7 Optional Accessories CP2000 7 88 6 Installation complete...
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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 528: ...12 Description of Parameter Setting CP2000 12 1 11 1 11 Advanced Parameters Group 11 Advanced parameters are reserved...
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...
Страница 836: ...Chapter 16 PLC Function Applications CP2000 16 153...
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