Siemens
СРЕДСТВА ПРОМЫШЛЕННОЙ АВТОМАТИЗАЦИИ
официальный партнер Сименс
Каталог СА01 2017
архивный
(4872) 700-366
skenergo@mail.ru

SINAMICS G150 Drive converter cabinet units
Derating data

SINAMICS G150 converter cabinet units and the associated system components are rated for an ambient temperature of 40 °C and installation altitudes up to 2000 m above sea level.

At ambient temperatures > 40 °C, the output current must be reduced. Ambient temperatures above 50 °C are not permissible.

At installation altitudes > 2000 m above sea level, it must be taken into account that the air pressure, and therefore air density, decreases as the height increases. As a consequence, the cooling efficiency and the insulation capacity of the air also decrease.

Due to the reduced cooling efficiency, it is necessary, on the one hand, to reduce the ambient temperature and on the other hand, to lower heat loss in the converter cabinet unit by reducing the output current, whereby ambient temperatures lower than 40 °C may be offset to compensate.

The following table lists the permissible output currents depending on the installation altitude and ambient temperature for the various degrees of protection. The specified values already include a permitted compensation in respect of installation altitude and ambient temperatures < 40 °C (temperature at the air intake of the converter cabinet unit).

The values apply under the precondition that it is guaranteed that the cooling air, as specified in the technical data, flows through the units as a result of the cabinet arrangement.

As additional measure for installation altitudes from 2000 m up to 5000 m, an isolating transformer is required in order to reduce transient overvoltages according to EN 60664?1.

For further information, please refer to the SINAMICS Low Voltage Engineering Manual.

 

Current-derating factors for converter cabinet units depending on the ambient / air intake temperature, the installation altitude and the degree of protection

Degree of protection

Installation altitude above sea level

Current derating factor (as a percentage of the rated current)
for an ambient / air intake temperature of

 

m

20 °C

25 °C

30 °C

35 °C

40 °C

45 °C

50 °C

IP20, IP21, IP23 and IP43

0 ... 2000

100%

100%

100%

100%

100%

93.3%

86.7%

2001 ... 2500

100%

100%

100%

100%

96.3%

 

 

2501 ... 3000

100%

100%

100%

98.7%

 

 

 

3001 ... 3500

100%

100%

100%

 

 

 

 

3501 ... 4000

100%

100%

96.3%

 

 

 

 

4001 ... 4500

100%

97.5%

 

 

 

 

 

4501 ... 5000

98.2%

 

 

 

 

 

 

IP54

0 ... 2000

100%

100%

100%

100%

93.3%

86.7%

80%

2001 ... 2500

100%

100%

100%

96.3%

89.8%

 

 

2501 ... 3000

100%

100%

98.7%

92.5%

 

 

 

3001 ... 3500

100%

100%

94.7%

 

 

 

 

3501 ... 4000

100%

96.3%

90.7%

 

 

 

 

4001 ... 4500

97.5%

92.1%

 

 

 

 

 

4501 ... 5000

93%

 

 

 

 

 

 



Current derating depending on the pulse frequency

To reduce motor noise or to increase output frequency, the pulse frequency can be increased relative to the factory setting (1.25 kHz or 2 kHz). When the pulse frequency is increased, the derating factor of the output current must be taken into account. This derating factor must be applied to the currents specified in the technical specifications.

For further information, please refer to the SINAMICS Low Voltage Engineering Manual.

 

Derating factor of the output current depending on the pulse frequency for devices with a rated pulse frequency of 2 kHz

SINAMICS G150

Type rating

Output current

at 2 kHz

Derating factor for pulse frequency

6SL3710-...

kW

A

2.5 kHz

4 kHz

380 ... 480 V 3 AC

1GE32-1 . A3

110

210

95%

82%

1GE32-6 . A3

132

260

95%

83%

1GE33-1 . A3

160

310

97%

88%

1GE33-8 . A3

200

380

96%

87%

1GE35-0 . A3

250

490

94%

78%



 

Derating factor of the output current depending on the pulse frequency for devices with a rated pulse frequency of 1.25 kHz

SINAMICS G150

Type rating

Output current

at 1.25 kHz

Derating factor for pulse frequency

6SL3710-...

kW

A

2 kHz

2.5 kHz

4 kHz

380 ... 480 V 3 AC

1GE36-1 . A3

315

605

83%

72%

64%

1GE37-5 . A3

400

745

83%

72%

64%

1GE38-4 . A3

450

840

87%

79%

64%

1GE41-0 . A3

560

985

92%

87%

70%

2GE41-1AA3

630

1120

83%

72%

64%

2GE41-4AA3

710

1380

83%

72%

64%

2GE41-6AA3

900

1560

87%

79%

64%

500 ... 600 V 3 AC

1GF31-8 . A3

110

175

92%

87%

70%

1GF32-2 . A3

132

215

92%

87%

70%

1GF32-6 . A3

160

260

92%

88%

71%

1GF33-3 . A3

200

330

89%

82%

65%

1GF34-1 . A3

250

410

89%

82%

65%

1GF34-7 . A3

315

465

92%

87%

67%

1GF35-8 . A3

400

575

91%

85%

64%

1GF37-4 . A3

500

735

87%

79%

64%

1GF38-1 . A3

560

810

83%

72%

61%

2GF38-6AA3

630

860

92%

87%

67%

2GF41-1AA3

710

1070

91%

85%

64%

2GF41-4AA3

1000

1360

87%

79%

64%

660 ... 690 V 3 AC

1GH28-5 . A3

75

85

93%

89%

71%

1GH31-0 . A3

90

100

92%

88%

71%

1GH31-2 . A3

110

120

92%

88%

71%

1GH31-5 . A3

132

150

90%

84%

66%

1GH31-8 . A3

160

175

92%

87%

70%

1GH32-2 . A3

200

215

92%

87%

70%

1GH32-6 . A3

250

260

92%

88%

71%

1GH33-3 . A3

315

330

89%

82%

65%

1GH34-1 . A3

400

410

89%

82%

65%

1GH34-7 . A3

450

465

92%

87%

67%

1GH35-8 . A3

560

575

91%

85%

64%

1GH37-4 . A3

710

735

87%

79%

64%

1GH38-1 . A3

800

810

83%

72%

61%

2GH41-1AA3

1000

1070

91%

85%

64%

2GH41-4AA3

1350

1360

87%

79%

64%

2GH41-5AA3

1500

1500

83%

72%

61%

2GH41-8EA3

1750

1729

92%

87%

67%

2GH42-0EA3

1950

1948

91%

86%

64%

2GH42-2EA3

2150

2158

87%

79%

55%

2GH42-4EA3

2400

2413

87%

79%

55%

2GH42-7EA3

2700

2752

91%

86%

64%



Overload capability

The SINAMICS G150 converter cabinet units have an overload reserve in order to overcome breakaway torques, for example. If larger surge loads occur, this must be taken into account in the configuration. For drives with overload requirements, the appropriate base load current must, therefore, be used as a basis for the required load.

The criterion for overload is that the drive is operated with its base load current before and after the overload occurs on the basis of a duty cycle duration of 300 s.

The base load current for a low overload IL is based on a duty cycle of 110% for 60 s or 150% for 10 s.

The base load current for a high overload IH is based on a duty cycle of 150% for 60 s or 160% for 10 s.

Low overload

 

High overload

















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