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A Novel Concept for Fault Current Tolerable Contactors

机译:故障电流可容忍接触器的新颖概念

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It is critical in the development of new contactors and starters to enable the product to avoid or minimize contact welding during short circuit events. The IEC 60947-4-1 or UL 508E Type II coordination requires that a contact weld can be easily broken without significant deformation after short circuit events, and the new standard of IEC 60947-6-2 mandates no contact welds after short circuit events. In this paper, a novel concept has been developed and investigated to allow significant fault current tolerance improvement for next generation contactor and starter product lines. An innovative design of the movable contact bridge utilizes the magnetic force generated by the fault current to 'latch' the contacts open until current zero and re-close after current zero. This delay of contact re-closing allows the molten contact surface to solidify and minimizes or even eliminates contact welding altogether. This design does not require a size increase of the product to achieve this performance and adds minimal cost. Test evaluation has been carried out to verify this concept. The test results show that the contacts close about 1.5ms to 2ms after current zero and achieve no contact welding after short circuit events with proper current limiting by the upstream circuit protector.
机译:在新的接触器和启动器的开发方面至关重要,以使产品能够避免或最小化短路事件期间的接触焊接。 IEC 60947-4-1或UL 508E II型协调要求在短路事件发生短路事件后,在没有显着变形的情况下可以轻松破坏接触焊接,并且IEC 60947-6-2的新标准在短路事件发生后不得不触点焊接。本文开发和研究了一种新颖的概念,为下一代接触器和起动产品线施加显着的故障电流公差改进。可移动接触桥的创新设计利用故障电流产生的磁力“锁存”触点打开,直到电流零和在电流零之后重新关闭。接触重新结束的这种延迟允许熔融的接触表面固化并最小化或甚至完全消除接触焊接。该设计不需要尺寸增加产品以实现这种性能并增加最小的成本。已经进行了测试评估以验证这一概念。测试结果表明,电流零后,触点关闭约1.5ms至2ms,并在短路事件后无接触焊接,具有上游电路保护器的适当电流限制。

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