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Use as motor cabling and as
brake resistor cabling
Use as input power cabling
Cable type
Yes with phase conductor smaller
than 10 mm
2
(8 AWG) Cu, or mo-
tors up to 30 kW (40 hp)
Yes
EMT
Four-conductor cabling in metal
conduit (three phase conductors
and PE). For example, EMT, or
four-conductor armored cable
Yes with motors up to 100 kW
(135 hp). A potential equalization
between the frames of motor and
driven equipment is required.
Yes
Shielded (Al/Cu shield or armor)
1)
four-conductor cable (three phase
conductors and a PE)
1) Armor may act as an EMC shield, as long as it provides the same performance as a concentric EMC shield of a
shielded cable. To be effective at high frequencies, the shield conductivity must be at least 1/10 of the phase
conductor conductivity. The effectiveness of the shield can be evaluated based on the shield inductance, which
must be low and only slightly dependent on frequency. The requirements are easily met with a copper or aluminum
shield/armor. The cross-section of a steel shield must be ample and the shield helix must have a low gradient. A
galvanized steel shield has a better high-frequency conductivity than a non-galvanized steel shield.
Not allowed power cable types
Use as motor cabling and as
brake resistor cabling
Use as input power cabling
Cable type
No
No
PE
Symmetrical shielded cable with
individual shields for each phase
conductor
■
Additional guidelines – North America
ABB recommends the use of metallic conduit for power wiring. ABB also recommends
the use of symmetrical shielded VFD cable between drive and motor(s).
84 Guidelines for planning the electrical installation
Summary of Contents for ACS580-04
Page 1: ... ABB GENERAL PURPOSE DRIVES ACS580 04 drive modules Hardware manual ...
Page 2: ......
Page 4: ......
Page 26: ...26 ...
Page 60: ...60 ...
Page 69: ...2 1 Tapping screw M6 12 Torx T30 Hex 9 N m 6 6 lbf ft Mechanical installation 69 10 ...
Page 72: ...72 ...
Page 100: ...100 ...
Page 120: ...120 ...
Page 128: ...2 7a 7b 5 3 3 7a 7b 8a 8b 8b 4 128 Installation example with full cabling panels option H381 ...
Page 133: ...Installation example with full cabling panels option H381 133 ...
Page 134: ...134 ...
Page 146: ...146 ...
Page 157: ...External control unit option P906 157 ...
Page 162: ...162 ...
Page 164: ...164 ...
Page 200: ...R10 standard configuration 200 Dimension drawings ...
Page 201: ...R10 with options E208 0H354 H356 H370 0H371 Dimension drawings 201 ...
Page 202: ...R10 with option B051 202 Dimension drawings ...
Page 203: ...R10 with options E208 H356 P906 Dimension drawings 203 ...
Page 204: ...R10 with options E208 0H371 H356 0H354 H370 P906 204 Dimension drawings ...
Page 205: ...R10 with options B051 P906 Dimension drawings 205 ...
Page 208: ...R11 standard configuration 208 Dimension drawings ...
Page 209: ...R11 with options E208 0H371 H356 0H354 H370 Dimension drawings 209 ...
Page 210: ...R11 with option B051 210 Dimension drawings ...
Page 211: ...R11 with options E208 H356 P906 Dimension drawings 211 ...
Page 212: ...R11 with options E208 0H371 H356 0H354 H370 P906 212 Dimension drawings ...
Page 213: ...R11 with options B051 P906 Dimension drawings 213 ...
Page 248: ...248 ...
Page 260: ...260 ...
Page 265: ...CHDI 01 115 230 V digital input extension module 265 ...
Page 266: ...266 ...
Page 272: ...272 CMOD 01 multifunction extension module external 24 V AC DC and digital I O ...
Page 278: ...278 ...
Page 280: ...280 ...