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WSM measure shunts are designed for precise current impulse measurement. They are used in short circuit testing devices, and during motors start up.
In comparison to other methods, WSM has wide bandwidth. There is no extra electronics and they do not need power supply. They have great EMC properties as well as good construction, which allows to use them in hard conditions.
Type
|
Current
|
Nominal resistance
|
Power
[W] |
I2t
[A2s] |
Bandwidth
|
Weight
[Kg] |
Product picture
|
|
rms
|
peak
|
|||||||
WSM 15000
|
15 kA
|
150kA
|
4µΩ
|
900
|
12*109
|
30 kHz
|
58
|
1
|
WSM 10000
|
10 kA
|
100 kA
|
6µΩ
|
600
|
5.0*109
|
30 kHz
|
25
|
1
|
WSM 6000
|
6 kA
|
100 kA
|
10µΩ
|
360
|
1.6*109
|
55 kHz
|
13
|
2
|
WSM 4000
|
4 kA
|
60 kA
|
15µΩ
|
240
|
5.8*108
|
60 kHz
|
9
|
3
|
WSM 2500
|
2.5 kA
|
60 kA
|
24µΩ
|
150
|
3.2*108
|
120 kHz
|
6
|
3
|
WSM 1500
|
1.5 kA
|
60 kA
|
40µΩ
|
90
|
1.0*108
|
200 kHz
|
3.3
|
3
|
WSM 1000
|
1.0 kA
|
60 kA
|
60µΩ
|
60
|
4.4*107
|
200 kHz
|
1.7
|
4
|
WSM 600
|
600 A
|
40 kA
|
100µΩ
|
36
|
1.5*107
|
500 kHz
|
1.5
|
4
|
WSM 400
|
400 A
|
40 kA
|
150µΩ
|
24
|
6.7*106
|
1.5 MHz
|
1.5
|
4
|
WSM 250
|
250 A
|
20 kA
|
240µΩ
|
15
|
2.7*106
|
1.5 MHz
|
1.5
|
4
|
WSM 150
|
150 A
|
10 kA
|
0.4mΩ
|
9
|
3.6*106
|
1.5 MHz
|
1.2
|
5
|
WSM 100
|
100 A
|
10 kA
|
0.6mΩ
|
6
|
1.6*106
|
800 kHz
|
1.2
|
5
|
WSM 60
|
60 A
|
10 kA
|
1.0mΩ
|
4
|
5.8*105
|
800 kHz
|
1.2
|
5
|
WSM 25
|
25 A
|
5 kA
|
2.4mΩ
|
1
|
2.5*105
|
2.0 MHz
|
1.2
|
6
|
WSM 15
|
15 A
|
5 kA
|
4.0mΩ
|
1
|
1.6*105
|
3.0 MHz
|
1.2
|
6
|
Nominal resistance at 20°C, resistance tolerance ±1%, temperature coefficient Tk = ±50 ppm/K, * Tk = ±100 ppm/K, the integral value ∫i2 (t) dt was calculated based on a temperature increase of 100 K Output: BNC terminal.
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1 | 2 | 3 |
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4 | 5 | 6 |
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Sie müssen eingeloggt sein
WSM measure shunts are designed for precise current impulse measurement. They are used in short circuit testing devices, and during motors start up.
In comparison to other methods, WSM has wide bandwidth. There is no extra electronics and they do not need power supply. They have great EMC properties as well as good construction, which allows to use them in hard conditions.
Type
|
Current
|
Nominal resistance
|
Power
[W] |
I2t
[A2s] |
Bandwidth
|
Weight
[Kg] |
Product picture
|
|
rms
|
peak
|
|||||||
WSM 15000
|
15 kA
|
150kA
|
4µΩ
|
900
|
12*109
|
30 kHz
|
58
|
1
|
WSM 10000
|
10 kA
|
100 kA
|
6µΩ
|
600
|
5.0*109
|
30 kHz
|
25
|
1
|
WSM 6000
|
6 kA
|
100 kA
|
10µΩ
|
360
|
1.6*109
|
55 kHz
|
13
|
2
|
WSM 4000
|
4 kA
|
60 kA
|
15µΩ
|
240
|
5.8*108
|
60 kHz
|
9
|
3
|
WSM 2500
|
2.5 kA
|
60 kA
|
24µΩ
|
150
|
3.2*108
|
120 kHz
|
6
|
3
|
WSM 1500
|
1.5 kA
|
60 kA
|
40µΩ
|
90
|
1.0*108
|
200 kHz
|
3.3
|
3
|
WSM 1000
|
1.0 kA
|
60 kA
|
60µΩ
|
60
|
4.4*107
|
200 kHz
|
1.7
|
4
|
WSM 600
|
600 A
|
40 kA
|
100µΩ
|
36
|
1.5*107
|
500 kHz
|
1.5
|
4
|
WSM 400
|
400 A
|
40 kA
|
150µΩ
|
24
|
6.7*106
|
1.5 MHz
|
1.5
|
4
|
WSM 250
|
250 A
|
20 kA
|
240µΩ
|
15
|
2.7*106
|
1.5 MHz
|
1.5
|
4
|
WSM 150
|
150 A
|
10 kA
|
0.4mΩ
|
9
|
3.6*106
|
1.5 MHz
|
1.2
|
5
|
WSM 100
|
100 A
|
10 kA
|
0.6mΩ
|
6
|
1.6*106
|
800 kHz
|
1.2
|
5
|
WSM 60
|
60 A
|
10 kA
|
1.0mΩ
|
4
|
5.8*105
|
800 kHz
|
1.2
|
5
|
WSM 25
|
25 A
|
5 kA
|
2.4mΩ
|
1
|
2.5*105
|
2.0 MHz
|
1.2
|
6
|
WSM 15
|
15 A
|
5 kA
|
4.0mΩ
|
1
|
1.6*105
|
3.0 MHz
|
1.2
|
6
|
Nominal resistance at 20°C, resistance tolerance ±1%, temperature coefficient Tk = ±50 ppm/K, * Tk = ±100 ppm/K, the integral value ∫i2 (t) dt was calculated based on a temperature increase of 100 K Output: BNC terminal.
![]() |
![]() |
![]() |
1 | 2 | 3 |
![]() |
![]() |
![]() |
4 | 5 | 6 |