本文论述了如何设计IGBT散热器,以提高其耗散功率,同时介绍了IGBT过热检测保护电路。
This paper discussed that how to design IGBT radiator to improve its radiating capability and introduced the protective circuits for IGBT overheat check.
经典耗散结构对其有序的分析虽然误用了热力学第二定律和无序度的熵,但这掩盖不了耗散结构本身的价值。
Although the classical dissipative structure theory misapplied the second law of thermodynamics and the disorder of entropy, but could not conceal the value of dissipative structure theory itself.
结构一旦进入非线性阶段,其地震总输入能主要由结构的非弹性变形和阻尼来耗散。
Once the structures step into inelastic work state, the earthquake input energy is dissipated by the damp and inelastic distortion.
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