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Power fuse and fabrication methods with enhanced arc mitigation and thermal management

  • US 10,650,998 B2
  • Filed: 08/28/2019
  • Issued: 05/12/2020
  • Est. Priority Date: 12/02/2014
  • Status: Active Grant
First Claim
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1. A power fuse having an improved life expectancy and power density for protecting an electrical load subject to transient load current cycling events in a direct current electrical power system, the power fuse comprising:

  • a housing defining an internal volume therein;

    first and second conductive terminals extending exterior to the housing;

    a conductive fuse element in the internal volume of the housing and electrically connected to each of the first and second conductive terminals to establish a circuit path therebetween, the conductive fuse element being responsive to a predetermined electrical current condition in the electrical power system to structurally fail and therefore open the circuit path, wherein the conductive fuse element has a variable cross section defining a plurality of weak spots that facilitate arc division when the conductive fuse element responds to the predetermined electrical current condition; and

    an enhanced thermal management filler material surrounding the conductive fuse element in the internal volume of the housing, wherein the enhanced thermal management filler material includes a mixture of quartz silica sand and a molecular sieve material, wherein the molecular sieve material is hydrated in an amount selected to;

    actively cool the conductive fuse element when subjected to a propagating thermal wave caused by the transient load current cycling events that are otherwise insufficient to cause the conductive fuse to respond, thereby reducing thermal-mechanical fatigue strain at the weak spots and extend the life expectancy of the conductive fuse element;

    maintain a predetermined melting time-current characteristic of the conductive fuse element in response to the predetermined electrical current condition; and

    increase the power density of the power fuse relative to a power fuse having the same predetermined melting time-current characteristic but not having the enhanced thermal management filler material.

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