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Design considerations of the electrical contacts in (micro) relays

机译:设计(微)继电器的电触点的设计考虑因素

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The electrical contacts are of crucial importance for the ultimate performance of (micro)relays. In this paper, the contact resistance of hard-contact relays is experimentally studied as a function of the contact force, the apparent contact area and the cleanliness of the contact surfaces. A simple test bench set-up is used to measure the contact resistance in air as a function of the contact force and the contact area. Forces range from 50 mgf to several gf. The contacts have a round shape with diameters ranging from 100 μm to 500 μm. The resistance decreases with increasing force and increasing area. Above force of approximately 2 gf, the contact resistance becomes fairly stable. i.e., independent of the applied force. The contact resistance stabilizes at values varying from 30 to 50 mΩ depending on the area. The measured contact resistance values for a 50 mgf contact force scatters between 50 mΩ and 0.7 Ω due to the presence of a contaminating film on the contact surfaces. The scatter in measured values reduces to less than 10 mΩ when the contact force is around 4 gf, which again emphasizes that a certain minimum force is required for a reliable contact.]
机译:电触点对于(微)继电器的最终性能至关重要。本文通过接触力,表观接触面积和接触表面的清洁度,实验研究了硬接触继电器的接触电阻。简单的测试台面设置用于测量空气中的接触电阻作为接触力和接触面积。力范围为50 mgf至几个gf。触点具有直径为100μm至500μm的圆形形状。电阻随着力量和增加的区域而降低。上面的力约为2 GF,接触电阻变得相当稳定。即,独立于所施加的力量。接触电阻根据该区域以30至50MΩ的值稳定。由于在接触表面上存在污染膜,测量的接触电阻值为50mgF接触力的电阻值在50mΩ和0.7Ω之间散射。当接触力约为4 GF时,测量值中的散射降低至小于10mΩ,这再次强调可靠的接触需要一定的最小力。]

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