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IEC60950 1.2/50 μS Impulse Voltages Generator 2 Internal Resistances

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IEC60950 1.2/50 μS Impulse Voltages Generator 2 Internal Resistances

Country/Region china
City & Province guangzhou guangdong
Categories Solar Chargers
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Product Details

 

IEC60950 1.2/50 μS Impulse Voltages Generator 2 Internal Resistances
 
Product information:
 
This impulse voltage test generator is required by IEC60335-1:2004, IEC60950-1:2005,IEC60065:2005,GB4706.1and etc.
The equipment is used to verify transient overvoltages to which household and similar appliances, information technology equipment, and audio and video electronic equipment may be subjected.
This impulse voltage test generator is a standard lightning wave test device with waveform 1.2/50µs. Wavefront time is 1.2µs, wave after time is 50µs, it is a destructive tester. The sample breakdown will produce a spark and acoustic, instrument peak voltage than the no-load voltage is decreased substantially (close to zero), when applying the same voltage in the next test, it will also show the above phenomenon.

 
Technical Parameters:
 

ModelSN1104
DC high voltageMax. 12.5kV
Impulse voltage wave

Impulse wavefront time: 1.2 µs ± 30 %;

Half value of after wave time: 50 µs ± 20 %

Note: the waveform will be shown by an external oscilloscope (oscilloscope should be prepared by user)

Instrument internal resistance12Ω ± 10%
Internal resistance converter box500Ω - 10% is optional
Peak voltage: 300 V~ 12,500V

0-12500V

Low: 300 V~ 2,500V; High: 2,500 V~ 12,500V

Impact interval time5 ~ 99s
Impact cycles1 ~ 9999
PolarityPositive and negative
Working power sourceMatch client's local power supply grid
Dimension630mm×600mm×380mm
Weight30 KG
 
The test principle:
 
The impulse voltage tester is a standard lightning wave test device with a waveform of 1.2/50s(10/700s is optional). The wave front time of the instrument is 1.2s(10s) and the wave back time is 50s(700s). The impulse voltage tester is a kind of destructive test. In the test, if the sample cannot withstand the applied voltage, the breakdown will occur. Spark and discharge sound will be generated when the sample is broken down, and the peak voltage of the instrument will drop significantly (close to zero) compared with the no-load time. The above phenomenon will occur when the same voltage is applied to test again later

 

 
Sample connection:
 
As shown in the picture below, connect the red and black wires of the junction box to the equipment respectively, and connect the positive and negative poles of the sample to the terminals of the junction box.
 
 
 
 









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