The following tables list the recommended and maximum possible cable connections at the line and motor ends for a single circuit connection (versions A and C) and a parallel circuit (version A).
The recommended cross-sections are based on the specified fuses. They are applicable for 3-wire cables manufactured out of copper with PVC insulation, routed horizontally in air and a permissible wire temperature of 70 °C (e.g. Protodur NYY or NYCWY) for an ambient temperature of 40 °C and individual routing.
When the conditions differ from those specified above (cable routing, cable grouping, ambient temperature), the appropriate correction factors according to IEC 60364-5-52 must be taken into account.
The SINAMICS Low Voltage Engineering Manual contains additional information and is available as a PDF file on the CD-ROM included with Catalog D 11.
Single circuit
Type rating
Converter
Line connection
Motor connection
Cabinet grounding
SINAMICS G150 Version A
Recommended cross-section 1)
Maximum conductor cross-section
M12 fixing screw
Recommended cross-section 1)
Maximum conductor cross-section
M12 fixing screw
M12 fixing screw
Comment
IEC
IEC
(Number of holes)
IEC
IEC
(Number of holes)
(Number of holes)
kW
6SL3710? ...
mm2
mm2
mm2
mm2
380 ... 480 V 3 AC
110
1GE32-1AA3
2x70
4x240
(2)
2x50
2x150
(2)
(2)
132
1GE32-6AA3
2x95
4x240
(2)
2x70
2x150
(2)
(2)
160
1GE33-1AA3
2x120
4x240
(2)
2x95
2x150
(2)
(2)
200
1GE33-8AA3
2x120
4x240
(2)
2x95
2x150
(2)
(2)
250
1GE35-0AA3
2x185
4x240
(2)
2x150
2x240
(2)
(2)
315
1GE36-1AA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
400
1GE37-5AA3
3x185
4x240
(2)
2x240
4x240
(2)
(10)
Cu busbar
450
1GE38-4AA3
4x150
8x240
(4)
3x185
4x240
(2)
(16)
Cu busbar
560
1GE41-0AA3
4x185
8x240
(4)
4x185
6x240
(3)
(18)
Cu busbar
500 ... 600 V 3 AC
110
1GF31-8AA3
120
4x240
(2)
95
2x150
(2)
(2)
132
1GF32-2AA3
2x70
4x240
(2)
120
2x150
(2)
(2)
160
1GF32-6AA3
2x95
4x240
(2)
2x70
2x185
(2)
(2)
200
1GF33-3AA3
2x120
4x240
(2)
2x95
2x240
(2)
(2)
250
1GF34-1AA3
2x185
4x240
(2)
2x120
4x240
(2)
(2)
315
1GF34-7AA3
2x185
4x240
(2)
2x150
4x240
(2)
(2)
400
1GF35-8AA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
500
1GF37-4AA3
3x185
8x240
(4)
2x240
6x240
(3)
(18)
Cu busbar
560
1GF38-1AA3
4x150
8x240
(4)
3x185
6x240
(3)
(18)
Cu busbar
660 ... 690 V 3 AC
75
1GH28?5AA3
50
4x240
(2)
35
2x70
(2)
(2)
90
1GH31-0AA3
50
4x240
(2)
50
2x150
(2)
(2)
110
1GH31-2AA3
70
4x240
(2)
70
2x150
(2)
(2)
132
1GH31-5AA3
95
4x240
(2)
70
2x150
(2)
(2)
160
1GH31-8AA3
120
4x240
(2)
95
2x150
(2)
(2)
200
1GH32-2AA3
2x70
4x240
(2)
120
2x150
(2)
(2)
250
1GH32-6AA3
2x95
4x240
(2)
2x70
2x185
(2)
(2)
315
1GH33-3AA3
2x120
4x240
(2)
2x95
2x240
(2)
(2)
400
1GH34-1AA3
2x185
4x240
(2)
2x120
4x240
(2)
(2)
450
1GH34-7AA3
2x185
4x240
(2)
2x150
4x240
(2)
(2)
560
1GH35-8AA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
710
1GH37-4AA3
3x185
8x240
(4)
3x150
6x240
(3)
(18)
Cu busbar
800
1GH38-1AA3
4x150
8x240
(4)
3x185
6x240
(3)
(18)
Cu busbar
1) The recommendations for the North American market in AWG or MCM must be taken from the appropriate NEC (National Electrical Code) and/or CEC (Canadian Electrical Code) standards..
Single circuit
Type rating
Converter
Line connection
Motor connection
Cabinet grounding
SINAMICS G150 Version C
Recommended cross-section 1)
Maximum conductor cross-section
M12 fixing screw
Recommended cross-section 1)
Maximum conductor cross-section
M12 fixing screw
M12 fixing screw
Comment
IEC
IEC
(Number of holes)
IEC
IEC
(Number of holes)
(Number of holes)
kW
6SL3710? ...
mm2
mm2
mm2
mm2
380 ... 480 V 3 AC
110
1GE32-1CA3
2x70
2x240
(1)
2x50
2x150
(1)
(2)
132
1GE32-6CA3
2x95
2x240
(1)
2x70
2x150
(1)
(2)
160
1GE33-1CA3
2x120
2x240
(1)
2x95
2x150
(1)
(2)
200
1GE33-8CA3
2x120
2x240
(1)
2x95
2x150
(1)
(2)
250
1GE35-0CA3
2x185
2x240
(1)
2x150
2x240
(1)
(2)
315
1GE36-1CA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
400
1GE37-5CA3
3x185
4x240
(2)
2x240
4x240
(2)
(8)
Cu busbar
450
1GE38-4CA3
4x150
8x240
(4)
3x185
4x240
(2)
(8)
Cu busbar
560
1GE41-0CA3
4x185
8x240
(4)
4x185
6x240
(3)
(10)
Cu busbar
500 ... 600 V 3 AC
110
1GF31-8CA3
120
2x240
(1)
95
2x150
(1)
(2)
132
1GF32-2CA3
2x70
2x240
(1)
120
2x150
(1)
(2)
160
1GF32-6CA3
2x95
2x240
(1)
2x70
2x185
(1)
(2)
200
1GF33-3CA3
2x120
2x240
(1)
2x95
2x240
(1)
(2)
250
1GF34-1CA3
2x185
4x240
(2)
2x120
4x240
(2)
(2)
315
1GF34-7CA3
2x185
4x240
(2)
2x150
4x240
(2)
(2)
400
1GF35-8CA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
500
1GF37-4CA3
3x185
8x240
(4)
2x240
6x240
(3)
(18)
Cu busbar
560
1GF38-1CA3
4x150
8x240
(4)
3x185
6x240
(3)
(18)
Cu busbar
660 ... 690 V 3 AC
75
1GH28?5CA3
50
2x240
(1)
35
2x70
(1)
(2)
90
1GH31-0CA3
50
2x240
(1)
50
2x150
(1)
(2)
110
1GH31-2CA3
70
2x240
(1)
70
2x150
(1)
(2)
132
1GH31-5CA3
95
2x240
(1)
70
2x150
(1)
(2)
160
1GH31-8CA3
120
2x240
(1)
95
2x150
(1)
(2)
200
1GH32-2CA3
2x70
2x240
(1)
120
2x150
(1)
(2)
250
1GH32-6CA3
2x95
2x240
(1)
2x70
2x185
(1)
(2)
315
1GH33-3CA3
2x120
2x240
(1)
2x95
2x240
(1)
(2)
400
1GH34-1CA3
2x185
4x240
(2)
2x120
4x240
(2)
(2)
450
1GH34-7CA3
2x185
4x240
(2)
2x150
4x240
(2)
(2)
560
1GH35-8CA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
710
1GH37-4CA3
3x185
8x240
(4)
3x150
6x240
(3)
(18)
Cu busbar
800
1GH38-1CA3
4x150
8x240
(4)
3x185
6x240
(3)
(18)
Cu busbar
1) The recommendations for the North American market in AWG or MCM must be taken from the appropriate NEC (National Electrical Code) and/or CEC (Canadian Electrical Code) standards.
Parallel cicuit
Type rating
Converter
Line connection
Motor connection
Cabinet grounding
SINAMICS G150 Version A
Recommended crosssection 1)
Maximum conductor cross-section
M12 fixing screw
Recommended crosssection 1)
Maximum conductor cross-section
M12 fixing screw
M12 fixing screw
Comment
IEC
IEC
(Number of holes)
IEC
IEC
(Number of holes)
(Number of holes)
kW
6SL3710? ...
mm2
mm2
mm2
mm2
380 ... 480 V 3 AC
630
2GE41-1AA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
710
2GE41-4AA3
3x185
4x240
(2)
2x240
4x240
(2)
(10)
Cu busbar
900
2GE41-6AA3
4x150
8x240
(4)
2x240
4x240
(2)
(16)
Cu busbar
500 ... 600 V 3 AC
630
2GF38-6AA3
2x185
4x240
(2)
2x150
4x240
(2)
(2)
710
2GF41-1AA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
1000
2GF41-4AA3
3x185
8x240
(4)
2x240
6x240
(3)
(18)
Cu busbar
660 ... 690 V 3 AC
1000
2GH41-1AA3
2x240
4x240
(2)
2x185
4x240
(2)
(2)
1350
2GH41-4AA3
3x185
8x240
(4)
3x150
6x240
(3)
(18)
Cu busbar
1500
2GH41-5AA3
4x150
8x240
(4)
3x185
6x240
(3)
(18)
Cu busbar
1750
2GH41-8EA3
2x4x150
2x8x240
(4)
2x3x185
2x6x240
(3)
(18)
Cu busbar
1950
2GH42-0EA3
2x4x150
2x8x240
(4)
2x3x185
2x6x240
(3)
(18)
Cu busbar
2150
2GH42-2EA3
2x4x150
2x8x240
(4)
2x3x185
2x6x240
(3)
(18)
Cu busbar
2400
2GH42-4EA3
2x4x150
2x8x240
(4)
2x3x185
2x6x240
(3)
(18)
Cu busbar
2700 2)
2GH42-7EA3
2x4x150
2x8x240
(4)
3x3x185
3x6x240
(3)
(18)
Cu busbar
Note: The recommended and maximum conductor cross-sections relate to the appropriate subsystem of the converter connected in parallel circuit.
1) The recommendations for the North American market in AWG or MCM must be taken from the appropriate NEC (National Electrical Code) and/or CEC (Canadian Electrical Code) standards.
2) The motor-side inverter comprises three Motor Modules connected in parallel.
Minimum motor cable lengths for operation with power units connected in parallel
When using power units connected in parallel, the following motor cable lengths must be observed if a motor is connected with only one winding system and no motor-side reactors or filters are used:
Type rating
SINAMICS G150 drive converter cabinet unit, version A
Minimum cable length
kW
m
380 ... 480 V 3 AC
630
6SL3710-2GE41-1AA3
13
710
6SL3710-2GE41-4AA3
10
900
6SL3710-2GE41-6AA3
9
500 ... 600 V 3 AC
630
6SL3710-2GF38-6AA3
18
710
6SL3710-2GF41-1AA3
15
1000
6SL3710-2GF41-4AA3
13
660 ... 690 V 3 AC
1000
6SL3710-2GH41-1AA3
20
1350
6SL3710-2GH41-4AA3
18
1500
6SL3710-2GH41-5AA3
15
1750
6SL3710-2GH41-8EA3
12
1950
6SL3710-2GH42-0EA3
10
2150
6SL3710-2GH42-2EA3
8
2400
6SL3710-2GH42-4EA3
8
2700
6SL3710-2GH42-7EA3
8
Required cable cross-sections for line and motor connections
It is always advisable to use shielded cables between the converter and motor and, in the case of drives in the higher output power range, symmetrical 3-wire, three-phase cables, and to connect several cables of this type in parallel where necessary. There are basically two reasons for this recommendation:
This is the only way in which the high IP55 degree of protection can be achieved for the motor terminal box without problems because the cables enter the terminal box via glands and the number of possible glands is limited by the geometry of the terminal box. Therefore single cables are less suitable.
With symmetrical, 3-wire, three-phase cables, the summed ampere-turns over the cable outer diameter are equal to zero and they can be routed in conductive, metal cable ducts or racks without any significant currents (ground current or leakage current) being induced in these conductive, metal connections. The danger of induced leakage currents and thus of increased cable-shield losses increases with single-wire cables.
The required cable cross-section depends on the amperage which flows through the cable. The permissible current loading of cables is defined, for example, in IEC 60364-5-52. It depends on ambient conditions such as the temperature, but also on the routing method. An important factor to consider is whether cables are routed singly and are therefore relatively well ventilated, or whether groups of cables are routed together. In the latter instance, the cables are much less well ventilated and might therefore heat one another to a greater degree. For the relevant correction factors applicable to these boundary conditions, please refer to IEC 60364-5-52.
The table below provides a guide to the recommended crosssections (based on IEC 60364-5-52) for PVC-insulated, 3-wire copper and aluminum cables, a permissible conductor temperature of 70°C (e.g. Protodur NYY or NYCWY) and an ambient temperature of 40°C.
Current carrying capacity according to IEC 60364-5-52 at 40 °C
Crosssection 3-wire cable
Copper cable
Aluminum cable
Single routing
Groups of cables routed in parallel 1)
Single routing
Groups of cables routed in parallel 1)
mm2
A
A
A
A
3x2.5
22
17
17
13
3x4.0
30
23
23
18
3x6.0
37
29
29
22
3x10
52
41
40
31
3x16
70
54
53
41
3x25
88
69
68
53
3x35
110
86
84
65
3x50
133
104
102
79
3x70
171
133
131
102
3x95
207
162
159
124
3x120
240
187
184
144
3x150
278
216
213
166
3x185
317
247
244
190
3x240
374
292
287
224
1) Maximum 9 cables routed horizontally in direct contact with one another on a cable rack
With higher amperages, cables must be connected in parallel..
Note: The recommendations for the North American market in AWG or MCM must be taken from the appropriate NEC (National Electrical Code)/CEC (Canadian Electrical Code) standards.
Grounding and PE conductor cross-section
The PE conductor must be dimensioned to meet the following requirements:
In the case of a ground fault, no impermissibly high contact voltages resulting from voltage drops on the PE conductor caused by the ground fault current may occur (< 50 V AC or < 120 V DC, IEC 61800-5-1, IEC 60 364, IEC 60 543).
The PE conductor should not be excessively loaded by any ground fault current it carries.
If it is possible for continuous currents to flow through the PE conductor when a fault occurs, the PE conductor cross-section must be dimensioned for this continuous current.
The PE conductor cross-section should be selected according to EN 60 204-1, EN 60 439-1, IEC 60 364.
Cross-section of the phase conductor
Minimum cross-section of external PE conductor
mm2
mm2
Up to 16
Minimum phase conductor cross-section
16 ... 35
16
35 and above
Minimum half the phase conductor cross-section
Note: The recommendations for the North American market in AWG or MCM must be taken from the appropriate NEC (National Electrical Code)/CEC (Canadian Electrical Code) standards.
Switchgear and motors are usually grounded via separate local ground connections. When this grounding arrangement is used, the current caused by a ground fault flows through the parallel ground connections and is divided. Despite the use of the relatively small PE conductor cross-sections specified in the table above, no impermissible contact voltages can develop with this grounding system. Based on experience with different grounding configurations, however, we recommend that the ground wire from the motor should be routed directly back to the converter. For EMC reasons and to prevent bearing currents, symmetrical 3-wire three-phase cables should be used where possible instead of 4-wire cables, especially on drives in the higher power range. The protective or PE conductor must be routed separately when 3-wire cables are used or must be arranged symmetrically in the motor cable. The symmetry of the PE conductor is achieved using a conductor surrounding all phase conductors or using a cable with a symmetrical arrangement of the three phase conductors and three ground conductors. The SINAMICS Low Voltage Engineering Manual contains more detailed information on this topic and is available as a PDF file on the CD-ROM included with Catalog D 11.
Through their controllers, the converters limit the load current (motor and ground fault currents) to an rms value corresponding to the rated current. We therefore recommend the use of a PE conductor cross-section analogous to the phase conductor cross-section for grounding the converter cabinet.
skener.ru
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Арматура DENDOR
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Датчики и измерители
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Регуляторы и регистраторы
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Пневматическое оборудование
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Краны и Клапаны
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Измерительные приборы
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Системы беспроводного управления «умный дом»
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Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Бесконтактные выключатели Конечные выключатели Оптические датчики Энкодеры
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 23
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
SKW-FS - Установка умягчения
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 23
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
Deprecated: Function eregi() is deprecated in /home/h101150-2/siemens71.ru/docs/kip/kip.php on line 30
SKW-FK - Установка обезжелезивания