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DRIVE PROGRAMMING 4-75
M12P22 VARSEL1 LO LIMIT
The maximum negative or minimum positive selector 1
output can limited by this parameter.
See M12P13 description.
R-W
Range: -100.0 to 100.0 %
Default: -100.0
M12P23 VAR SEL2 IN1 SRC
Enter the source for variable selector 2 input 1.
See M12P13 description.
Note: The scaling of the source parameter is such that
when it is at its maximum value, and M12P28 (VEL2 IN1
SCALE) = 1.000, the IN1 input to VAR SEL 2 is at 100 %.
R-W
Range: MXXPXX
Default: M00P00 (00.00)
M12P24 VAR SEL2 IN2 SRC
Enter the source for variable selector 2 input 2.
See M12P13 description.
Note: The scaling of the source parameter is such that
when it is at its maximum value, and M12P29 (VEL2 IN2
SCALE) = 1.000, the IN2 input to VAR SEL 2 is at 100 %.
R-W
Range: MXXPXX
Default: M00P00 (00.00)
M12P25 VAR SEL 2 MODE
Use to select the mode for the variable selector 2 as
defined below:
[0] SEL IN 1
Output = Input 1
[1] SEL IN 2
Output = Input 2
[2] ADD
Output = Input 1 + Input 2
[3] SUBTRACT Output = Input 1 – Input 2
[4] MULTIPLY
Output = (Input 1 x Input 2)/100.0
[5] DIVIDE
Output = (Input 1 x 100.0)/Input 2
[6] FILTERED
Output = Input 1/(M12P30 x S + 1)
[7] RAMPED
Output = Input 1 via ramp: M12P30 (sec)
[8] ABS VALUE Output = |(Input 1)|
in Mode [6] “S” in the equation is the Laplace identifier
and M12P30 is the time constant for the 1
st
order filter.
See M12P13 description.
R-W
Range: [0] to [8]
Default: [0] SEL IN 1
M12P26 VARSEL2 OUT DEST
Enter the destination for the output of the variable
selector 2
See M12P13 description.
Note: The scaling to the destination parameter is such
that when M12P27 (VAR SEL 2 OUTPUT) = 100.0 %, the
destination parameter will be set to its maximum value.
R-W
Range: MXXPXX
Default: M00P00 (00.00)
M12P27 VAR SEL 2 OUTPUT
This parameter monitors the result of the variable selector
2.
See M12P13 description.
R-O
Range: ±100.0%
Default:
M12P28 VSEL2 IN1 SCALE
Enter a value to scale the variable selector 2 input 1
parameter.
See M12P13 description.
R-W
Range: ±10.000
Default: 1.000
M12P29 VSEL2 IN2 SCALE
Enter a value to scale the variable selector 2 input 2
parameter.
See M12P13 description.
R-W
Range: ±10.000
Default: 1.000
Summary of Contents for PHOENIX EX
Page 1: ...INSTRUCTION MANUAL PHOENIX EX 3 TO 3500 HP VECTOR AC DRIVE ...
Page 12: ...1 8 INTRODUCTION END INTRODUCTION SECTION ...
Page 28: ...2 16 INSTALLATION AND WIRING Figure 2 3 Recommended Power Wiring ...
Page 32: ...2 20 INSTALLATION AND WIRING Figure 2 5 Control Logic and Signal Wiring ...
Page 56: ...Figure 4 2 Menu 1 Frequency Reference Limits and Filters 4 2 MENU AND PARAMETER DESCRIPTION ...
Page 57: ...Figure 4 3 Menu 2 Ramps MENU AND PARAMETER DESCRIPTION 4 3 ...
Page 58: ...Figure 4 4 Menu 3 Speed Input and Speed Loop 4 4 MENU AND PARAMETER DESCRIPTION ...
Page 59: ...MENU AND PARAMETER DESCRIPTION 4 5 Figure 4 5 Menu 4 Current Limits Torque Flux Control ...
Page 60: ...4 6 MENU AND PARAMETER DESCRIPTION Figure 4 6 Menu 5 Motor Control ...
Page 61: ...MENU AND PARAMETER DESCRIPTION 4 7 Figure 4 7 Menu 6 Operational Modes ...
Page 62: ...Figure 4 8 Menu 7 Analog Inputs and Outputs 4 8 MENU AND PARAMETER DESCRIPTION ...
Page 66: ...4 12 MENU AND PARAMETER DESCRIPTION Figure 4 12 Menu 11 Miscellaneous ...
Page 68: ...4 14 MENU AND PARAMETER DESCRIPTION Figure 4 14 Menu 12 Open Loop Brake Function 2 of 5 ...
Page 69: ...MENU AND PARAMETER DESCRIPTION 4 15 Figure 4 15 Menu 12 Closed Loop Brake Function 3 of 5 ...
Page 70: ...4 16 MENU AND PARAMETER DESCRIPTION Figure 4 16 Menu 12 Closed Loop Brake Function 4 of 5 ...
Page 71: ...MENU AND PARAMETER DESCRIPTION 4 17 Figure 4 17 Menu 12 Closed Loop Brake Function 5 of 5 ...
Page 73: ...Figure 4 19 Menu 14 PID Control Loop MENU AND PARAMETER DESCRIPTION 4 19 ...
Page 74: ...Figure 4 20 Menu 15 Position Control 1 of 2 4 20 MENU AND PARAMETER DESCRIPTION ...
Page 75: ...MENU AND PARAMETER DESCRIPTION 4 21 Figure 4 21 Menu 15 Position Control 2 of 2 ...
Page 76: ...Figure 4 22 Menu 17 2nd Motor Parameters 4 22 MENU AND PARAMETER DESCRIPTION ...
Page 153: ...APPENDIX A 3 Standard Drive with Manual Bypass Setup Diagram 2 of 2 ...
Page 155: ...APPENDIX A 5 Interconnect for Option Boards 3000 4040 120 3000 4050 120 ...
Page 156: ...APPENDIX A 6 Isolated Communication Card P N 3000 4135 with Jumper on Position 1 1 of 3 ...
Page 157: ...APPENDIX A 7 Isolated Communication Card P N 3000 4135 with Jumper on Position 2 2 of 3 ...
Page 158: ...APPENDIX A 8 Isolated Communication Card P N 3000 4135 3 of 3 Mounting Diagram ...
Page 162: ...APPENDIX A 12 Digital Encoder Card P N 3000 4140 1 3 of 3 Mounting Diagram ...
Page 164: ...APPENDIX A 14 I O Expansion Board 3000 4150 2 of 2 Mounting Diagram ...
Page 167: ...APPENDIX A 17 Digital Encoder 2 3000 4160 Page 3 of 3 Mounting Diagram ...
Page 168: ...APPENDIX A 18 THIS PAGE INTENTIONALLY LEFT BLANK ...