3-20
3.3.3. Wiring and EMC guidelines
For effective interference suppression, do not route power and control cables in the same
conduit or trunking
To prevent radiated noise, motor cable should be put in a metal Conduit. Alternatively an
armored or shielded type motor cable should be used
Motor cable and signal lines of other control equipment should be at the least 30 cm
apart
For effective suppression of noise emissions the cable armor or shield must be grounded
at both ends to the motor and the inverter ground. These connections should be as short
as possible
L1(L)
L3(N)
1.
Protective Earth Conductor. Conductor size for
enclosure & Back plate must comply with the
local electrical standards. Min 10mm²
2.
Back plate. Galvanised steel (Unpainted)
3.
Ferrite core / Output reactor ferrite cores can
be used to reduce radiated noise due to long
motor cables. If ferrite core is used loop motor
wires, 3 times round the core. Install core as
close to the inverter as possible. Output
reactors provide additional benefit of reducing
dv/dt for protection of motor windings.)
4.
Metal Cable clamp. no more than 150mm from
the inverter.
Note:
If no enclosure & back plate is used then connect
the cable shield by a good 360 degree termination
to the Inverter output terminal E.
5.
Screened (Shielded four core cable)
6.
Separate Protective Earth wire, routed outside
motor cable separated be at least 100mm.
Note:
This is the preferred method specially for large
output cables and long length.
Multi-core screened (3 core & protective earth)
can be used for small power and short length
7.
Connect the cable shield by a good 360º
termination and connect to the motor
protective earth terminal. This link must be as
short as possible.
8.
Motor Earth terminal(Protective Earth)
Содержание E510-201-SH
Страница 1: ......
Страница 20: ...3 6 NEMA1 Step1 Remove the terminal cover Step2 Wire Re install the cover Step3 Put the terminal cover back ...
Страница 27: ...3 13 3 2 3 External View 3 2 3 1 IP20 NEMA 1 a 200V 0 5HP 1HP 400V 1HP 2HP 200V 2HP 3PH IP20 NEMA1 ...
Страница 28: ...3 14 b 200V 2HP 1 3PH 200V 3HP 20HP 400V 3HP 25HP IP20 NEMA1 ...
Страница 29: ...3 15 c 200V 25HP 400V 30HP d 200V 30HP 40HP 400V 40HP 75HP ...
Страница 47: ...3 33 Frame2 Three phase 200V 3HP Frane 5 6 Three 200V 25HP Frame 5 6 Three phase 200V 30HP 40HP ...
Страница 49: ...3 35 Frame 5 Three phase 400V 30HP Frame 6 Three phase 400V 40HP 50HP Frame 6 Three phase 400V 60HP 75HP ...
Страница 51: ...3 37 3 5 Standard Wiring 10V AI1 AI2 AGND E P P ...
Страница 72: ...4 6 4 1 4 Example of keypad operation Example 1 Modifying parameters ...
Страница 74: ...4 8 4 1 5 Operation control ...
Страница 206: ...4 140 Acceleration Deceleration calculation of mode 2 ...
Страница 310: ...4 244 P mode output i1 PQ1 I1 OFF ON OFF ON OFF ON OFF i1 is the inverse logic of I1 i1 Q1 ON OFF ON OFF ...
Страница 316: ...4 250 6 Timer mode 6 FLASH Timer mode 2 7 Timer mode 7 FLASH Timer mode 3 ...
Страница 424: ...REVISIONS Date Manual Number Revision May 2017 4KA72X645T01 First edition ...
Страница 425: ......