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Thermal analysis and design of a 75-W hybrid-type DC-DC converter for space applications

机译:航天应用75W混合型DC-DC转换器的热分析和设计

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摘要

Hybrid DC-DC converters for space applications should be designed for operation at full rated power within the military specification for temperature range of -55 to +125 ℃. Hence, the thermal design is a crucial step in the design process of converter, ensuring that no component of the converter exceeds its rated maximum operating temperature. One of the objectives of this work is to guarantee that all electronic components operate below their maximum allowable temperature. For this purpose, a three dimensional model of a converter based on the finite element method was developed. Results based on numerical simulation were validated by experimental data from infrared camera. The total amount of dissipated power in every component was determined experimentally based on a prototype converter. In the case of a component with high power consumption, such as the field effect transistor, the increase in temperature was minimized by applying designed heat sink with a high-thermal-conductivity material.
机译:用于太空应用的混合DC-DC转换器应设计为在军事规格-55至+125℃的温度范围内以全额定功率工作。因此,热设计是转换器设计过程中的关键步骤,要确保转换器的任何组件都不会超过其额定最大工作温度。这项工作的目的之一是确保所有电子组件均在最高允许温度以下工作。为此,建立了基于有限元方法的变流器三维模型。基于数值模拟的结果已通过红外相机的实验数据得到验证。基于原型转换器,通过实验确定了每个组件中的总耗散功率。对于具有高功耗的组件(例如场效应晶体管),可通过使用设计的带有高导热性材料的散热器来最大程度地降低温度的升高。

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