Rockwell Automation GV3000/SE AC Drive Ver. 6.06 Hdwe Ref., Installation, and Troubleshooting Manual User Manual

Page 43

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Planning Before Installing

3-7

3.2.2.3 Recommended Control and Signal Wire Sizes

The recommended wire sizes to connect I/O signals to the terminal strip on the

Regulator board are shown in table 3.9. Recommended terminal tightening torque is

0.5 Newton-meters (4.5 in-lb). Operator controls can be up to 303 meters (1000 feet)

from the drive.

3.2.2.4 Recommended Motor Lead Lengths

To reduce line disturbances and noise, motor lead length should not exceed 76 meters

(250 feet) for any non-Reliance Electric motor or any non-inverter duty motor.

When total lead length exceeds 76 meters (250 feet), nuisance trips can occur caused

by capacitive current flow to ground. Note that these capacitively-coupled currents

should be taken into consideration when working in areas where drives are running. If

the motor lead length must exceed these limits, the addition of output line reactors or

other steps must be taken to correct the problem. Refer to table 3.11 for a list of

compatible reactors.

For Reliance Electric inverter duty motors, use the recommended lead lengths shown

in table 3.10 as a guideline.

Your application may be restricted to a shorter lead length due to:

the type of wire

the placement of wire (for example, in conduit or a cable tray)

the type of line reactor

the type of motor.

Figure 3.3 illustrates how to calculate motor lead lengths.

Table 3.9 – Recommended Terminal Strip Wire Sizes

Terminals

Wire Size

1 to 31

20 to 14 AWG, 2 to 0.5 mm

2

Figure 3.3 – How to Calculate Motor Lead Lengths

GV3000/SE

Drive

Motor

38 m (125’)

38 m (125’)

15 m (50’)

61 m (200’)

61 m (200’)

8 m (25’)

8 m (25’)

76 m (250’)

Motor

Motor

Motor

Motor

Motor

Motor

GV3000/SE

Drive

GV3000/SE

Drive

GV3000/SE

Drive

This example shows how to measure various motor configurations when the maximum motor lead length is 76 m (250 ft). Note that drives using

vector regulation can be connected to only one motor at a time.

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