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2.3.2 Options and wiring<br />
specifications<br />
MCCB/ MC/ Fuse<br />
• Warranty and replacement service does not apply to<br />
damage caused by the following conditions.<br />
1. MCCB or fuse is not installed, improperly installed, or<br />
improperly sized, and has resulted in VSD damage.<br />
2. MC or capacitor or surge absorber is installed between<br />
the VSD and the motor.<br />
<strong>VSA</strong> model <strong>VSA</strong>23 <strong>VSA</strong>48<br />
-01/-03 -04 -07 -10 002/004/005<br />
Fuse<br />
10 A<br />
300 VAC<br />
20 A<br />
300 VAC<br />
30 A<br />
300 VAC<br />
15A/600 VAC<br />
Main circuit terminal<br />
L1 L2 L3 PE<br />
T1 T2 T3<br />
PE<br />
Wire dimension<br />
(14AWG) 2.0mm 2<br />
Terminal screw<br />
M4<br />
Wire dimension<br />
(12 AWG) 3.5 mm 2<br />
Terminal screw<br />
M4<br />
Wire dimension (14 AWG) 2.0<br />
mm 2<br />
Terminal screw<br />
M4<br />
Signal terminal (TM2)<br />
1 to 12<br />
Wire dimension (#18 AWG) 0.75 mm 2 Terminal screw M3<br />
Use a single fuse for 1 L/N model. For 3 models, each L1/<br />
L2/L3 phase must be fused.<br />
• Please utilize three phase squirrel cage induction motor<br />
with appropriate capacity for VSD.<br />
• If the VSD is used to drive more than one motor, the<br />
total capacity must be smaller than the capacity of the<br />
AC drive. Additional thermal overload relays must<br />
installed in front of each motor.<br />
• Do not install phase advancing capacitors, LC, or RC<br />
components between VSD and motor.<br />
<strong>Emotron</strong> AB 01-3993-01r3 Mounting and installation of the <strong>VSA</strong> drive 11