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An analysis technique for a small pulsed source connected to a large sink with application to gallium arsenide IMPATT diodes

机译:连接到大型接收器的小型脉冲源的分析技术,应用于砷化镓IMPATT二极管

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A methodology using numerical techniques is presented for the thermal analysis of a physically small pulsed heat source which is closely coupled to a relatively large heat sink. The methodology consists of creating a hierarchy of finite-difference models. These models consist of a highly detailed source model and several progressively less detailed sink models. The proper node size and time step for each model is individually determined depending on the geometry and pulse frequency. This process provides for efficient computer use by breaking the problem into several individual models with overlapping boundaries and the complexity of each model remains manageable. The methodology is applied to the analysis of a GaAs impact avalanche transit time (IMPATT) diode power combiner. This combiner is the radio-frequency source for the terminal guidance unit in a current air-to-air missile. The analytical predictions compared favorably with test results. The analysis was performed using the Hughes Aircraft Company proprietary version of the general thermal analyzer code CINDA.
机译:提出了一种使用数值技术的方法,用于对与相对较大的散热器紧密耦合的物理上小的脉冲热源进行热分析。该方法包括创建有限差分模型的层次结构。这些模型包括一个高度详细的源模型和几个渐渐不那么详细的接收器模型。每个模型的适当节点大小和时间步长是根据几何形状和脉冲频率分别确定的。该过程通过将问题分解为边界重叠的几个单独的模型来提供有效的计算机使用,并且每个模型的复杂性仍然可以控制。该方法适用于GaAs冲击雪崩渡越时间(IMPATT)二极管功率合成器的分析。该合路器是当前空空导弹中终端制导单元的射频源。分析预测与测试结果相比具有优势。使用通用热分析仪代码CINDA的休斯飞机公司专有版本进行分析。

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