30
YASKAWA
TOEPC71061732E HV600 Drive Installation & Primary Operation
Think about line voltage drop before you select wire gauges. Select wire gauges that drop the voltage by 2% or less of
the rated voltage. Increase the wire gauge and the cable length when the risk of voltage drop increases. Calculate line
voltage drop with this formula:
Line voltage drop (V) =
× wire resistance (Ω/km) × wiring distance (m) × motor rated current (A) × 10
-3
.
Precautions during Wiring
Use ter1 and - to connect a regenerative converter or regenerative unit.
Wire Gauge and Torque Specifications for UL Listing
WARNING
Electrical Shock Hazard. Make sure that the protective ground wire complies with technical standards and local
safety regulations. The IEC/EN 61800-5-1:2007 standard specifies that you must wire the power supply to automatically de-
energize when the protective ground wire disconnects. You can also connect a protective ground wire that has a minimum cross-
sectional area of 10mm
2
(copper wire) or 16 mm
2
(aluminum wire). For drive models on which you cannot use a protective ground
wire of 10 mm
2
or more, install two protective ground wires that have the same cross-sectional area. If you do not obey the
standards and regulations, it can cause serious injury or death. The leakage current of the drive will be more than 3.5 mA.
Refer to
Three-Phase 208 V Class Wire Gauges and Torques on page 30
and
Three-Phase 480 V Class Wire Gauges
for the recommended wire gauges and tightening torques of the main circuit terminals.
Note:
The recommended wire gauges are based on drive continuous current ratings with 75 °C (167 °F) 600 V class copper wire. Assume these
conditions:
•
Ambient temperature: 40 °C (104 °F) or lower
•
Wiring distance: 100 m (3281 ft) or shorter
•
Normal Duty Rated current value
Three-Phase 208 V Class Wire Gauges and Torques
Model
Terminals
Recommended Gauge
AWG, kcmil
Applicable Gauge
(IP20 Applicable Gauge
AWG, kcmil
Wire Stripping
mm
Terminal Screw
Size and Shape
Tightening Torque
N
∙
m (in
∙
lb)
2011
R/L1, S/L2, T/L3
14
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
U/T1, V/T2, W/T3
14
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
-, +1
14
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
12
14 - 8
-
M5
2.0 - 2.5
(17.7 - 22.1)
2017
R/L1, S/L2, T/L3
12
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
U/T1, V/T2, W/T3
10
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
-, +1
10
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
10
14 - 8
-
M5
2.0 - 2.5
(17.7 - 22.1)
2024
R/L1, S/L2, T/L3
10
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
U/T1, V/T2, W/T3
8
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
-, +1
8
14 - 8
10
M4
1.5 - 1.7
(13.5 - 15)
10
14 - 8
-
M5
2.0 - 2.5
(17.7 - 22.1)