Technical Parameters |
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High Frequency Radiation Ring Model |
Maximum Input Pulse Voltage |
Input Pulse Width |
Ring Diameter [mm] |
Cable Type |
Cable Length [mm] |
Type of Connector |
Weight [kg] |
HFRR 50 |
±4000 V |
50 ns ~ 1 μs |
50 |
RG-58 |
2000 |
BNC |
0.2 |
HFRR 75 |
±4000 V |
50 ns ~ 1 μs |
75 |
RG-58 |
2000 |
BNC |
0.2 |
HFRR 100 |
±4000 V |
50 ns ~ 1 μs |
100 |
RG-58 |
2000 |
BNC |
0.4 |
HFRR 150 |
±4000 V |
50 ns ~ 1 μs |
150 |
RG-58 |
2000 |
BNC |
0.48 |
HFRR 200 |
±4000 V |
50 ns ~ 1 μs |
200 |
RG-58 |
2000 |
BNC |
0.6 |
HFRR 250 |
±4000 V |
50 ns ~ 1 μs |
250 |
RG-58 |
2000 |
BNC |
0.66 |
HFRR 300 |
±4000 V |
50 ns ~ 1 μs |
300 |
RG-58 |
2000 |
BNC |
0.73 |
Optional Host |
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1 |
High Frequency Noise Simulator |
Model: INS 400 |
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The INS 400 high-frequency noise simulator is designed to simulate the interference generated when the current through inductive components, represented by relay on or off, rapidly starts and stops. |
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Output voltage: 0.1 kV ~ 2 kV |
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Pulse width: 50 ns ~ 1 μs |
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2 |
High Frequency Noise Simulator |
Model: INS 800 |
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The INS 800 high-frequency noise simulator is designed to simulate the interference generated when the current through inductive components, represented by relay on or off, rapidly starts and stops. |
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Output voltage: 0.2 kV ~ 4 kV |
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Pulse width: 50 ns ~ 1 μs |