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Allen-Bradley PowerFlex 70 Reference Manual

Allen-Bradley PowerFlex 70
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Start-Up 2-197
Figure 2.40 PowerFlex 700 Vector Control Option Startup (7)
Flux Vector Start Up (Start,Stop,I/O [2])
Start-Up
C.Analog Outputs
Enter choice for
Analog Out 1 Sel
Output Freq
6-47
Start-Up
C.Analog Outputs
Enter value for
Analog Out 1 Hi
10.000 Volt
x.xxxx < y.yyyy
Start-Up
C.Analog Outputs
Enter value for
Analog Out 1 Lo
0.0 Volt
x.xxxx < y.yyyy
6-53
Start-Up
B. Dig Outputs
Enter choice for
Digital Out 1 Sel
6-48
Start-Up
B. Dig Outputs
Enter value for
Dig Out 1 Level
6-49
Start-Up
B. Dig Outputs
Enter choice for
Digital Out 2 Sel
6-50
Start-Up
B. Dig Outputs
Enter value for
Dig Out 2 Level
6-51
Digital Out 2
Start-Up
B. Dig Outputs
Make a selection
<Digital Out 1>
Digital Out 2
Digital Out 3
Done
Done
Go to 6-1 (C.Anlg
Inputs)
Digital Out 1
Sel = ENUM
choice that
uses "Level"?
Digital Out 2
Sel = ENUM
choice that
uses "Level"?
No
Ye s
Ye s
6-30
Start-Up
C.Analog Outputs
Enter choice for
Signal Type
<Voltage>
Current
6-54
Start-Up
C.Analog Outputs
Make a selection
<Anlgl Out 1>
Anlg Out 2
Done
6-55
Start-Up
C.Analog Outputs
Enter choice for
Analog Out 2 Sel
Output Amps
6-31
Start-Up
C.Analog Outputs
Enter choice for
Signal Type
<Voltage>
Current
6-32
Start-Up
C.Analog Outputs
Enter value for
Analog Out 2 Hi
10.000 Volt
x.xxxx < y.yyyy
Start-Up
C.Analog Outputs
Enter value for
Analog Out 2 Lo
0.0 Volt
x.xxxx < y.yyyy
Go to 6-1 (D.
Done)
Start-Up
B. Dig Outputs
Enter choice for
Digital Out 3 Sel
Digital Out 3
Sel = ENUM
choice that
uses "Level"?
Start-Up
B. Dig Outputs
Enter value for
Dig Out 3 Level
Ye s
6-27
6-28
6-29
Analog 1 Analog 2
Start-Up
C. Anlg Inputs
The next two
steps scale a
high torque with
a high analog
value.
Torque Ref-
Anlg 1
Start-Up
C. Anlg Inputs
Enter value for
Torque Ref A Hi
100.0 %
x.x < y.y
Start-Up
C. Anlg Inputs
The next two
steps scale a
low torque with
a low analog
value.
Start-Up
C. Anlg Inputs
Enter value for
Torque Ref A Hi
100.0 %
x.x < y.y
Start-Up
C. Anlg Inputs
Enter value for
Analog In 2 Hi
10.0 V
x.xxxx < y.yyyy
Start-Up
C. Anlg Inputs
Enter value for
Analog In 2 Lo
10.0 V
x.xxxx < y.yyyy
6-33
6-34
6-35
6-36
6-37
6-38
6-39
6-40
6-41
6-42
6-43
6-44
6-45
6-46
Go to 6-1 (D.Anlg
Outputs)
Start-Up
C. Anlg Inputs
The next two
steps scale a
high torque with
a high analog
value.
Start-Up
C. Anlg Inputs
Enter value for
Analog In 1 Hi
10.0 V
x.xxxx < y.yyyy
Start-Up
C. Anlg Inputs
Enter value for
Torque Ref A Hi
100.0 %
x.x < y.y
Start-Up
C. Anlg Inputs
The next two
steps scale a
low torque with
a low analog
value.
Start-Up
C. Anlg Inputs
Enter value for
Analog In 1 Lo
10.0 V
x.xxxx < y.yyyy
Start-Up
C. Anlg Inputs
Enter value for
Torque Ref A Hi
100.0 %
x.x < y.y
Torque Ref-
Anlg 2
6-52
6-56
6-57
No
No
Digital Out 1 Digital Out 3
Start-Up
C. Anlg Inputs
Enter choice for
Input Signal
<Analog Input 1>
Analog Input 2
Start-Up
Enter choice for
Signal type:
<Voltage>
Current
Start-Up
C. Anlg Inputs
Enter choice for
Signal type:
<Voltage>
Current
Anlg 1 Anlg 2

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Allen-Bradley PowerFlex 70 Specifications

General IconGeneral
Input Voltage200-240V AC, 380-480V AC, 500-600V AC
Frequency Range0 - 400 Hz
Humidity5% to 95% non-condensing
Output Voltage0 to Input Voltage
Control MethodsSensorless Vector Control
CommunicationsEthernet/IP, DeviceNet, ControlNet
Protection FeaturesOvercurrent, Overvoltage, Undervoltage, Overtemperature, Ground Fault
Operating Temperature0°C to 50°C (32°F to 122°F)
Storage Temperature-40°C to 70°C (-40°F to 158°F)
Enclosure RatingIP20, NEMA Type 1

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