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High current pogo pin

Nov 15, 2021

High current pogo pin

The spring charging needle can be customized according to the different needs of customers. When the customer needs the charging needle to be more conductive, it is necessary to increase the current through the charging needle, and by designing and processing high current spring charging needles. The main method is to increase the needle punching and the plating thickness of the spring charging pin during the production process, and increase the gold plating thickness of the spring charging pin, not only to increase the current size of the spring charging pin but also to enhance the corrosion resistance of the spring charging pin. And stability. Briefly introduce the characteristics of the high-current spring charging pin.

 Pin Probe

First of all, the service life of the high-current spring charging pin is longer than other ordinary charging pins, because the thickness of the surface coating of the high-current spring charging pin is much higher than that of the ordinary plating, and the thicker the plating thickness of the connector, Then the stronger it can resist external environmental corrosion, which protects the connector and prolongs the service life of the connector. The service life will be prolonged after increasing the plating layer.

Plated Gold Pogo Pin Probe 

Secondly, the high-current spring charging pins produced by the charging pin manufacturers are more stable than other ordinary charging pins. The electroplated layer on the connector surface can increase the ductility of the connector, increase durability, and improve wearability. It has been greatly improved. The electroplated layer on the surface of the connector can make the impedance of the connector more stable, thereby making the electrical performance of the connector more stable.

pogo pin Probe 

Finally, the high-current spring charging pins produced by professional charging pin manufacturers have strong abrasion resistance. The electroplating layer on the connector surface can isolate harmful substances in the environment, which not only reduces the damage to the connector but also increases the wear resistance of the connector.


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