脉宽调制(PWM)频率对热电模块可靠性的影响

M.J. Nagy, S. Román
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引用次数: 4

摘要

当用于控制热电模块(TEM)的功率时,脉宽调制(PWM)控制具有许多优点。该方案允许使用更小,更轻的电路,比可比的线性控制器散发更少的热量。然而,突然打开和关闭TEM电源会导致热循环,从而降低模块的可靠性。这种热循环使焊点疲劳,导致模块电阻增加。因此,一些系统设计者一直不愿意在他们的冷却设备中使用PWM控制器。本文量化了PWM控制对瞬变电磁法可靠性的影响。TEM由0.1 Hz到10 kHz的各种频率的PWM信号供电。然后在整个测试过程中跟踪这些模块的电阻。这些电阻的变化用于直接将PWM控制频率与TEM可靠性联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of pulse width modulation (PWM) frequency on the reliability of thermoelectric modules
Pulse-width-modulation (PWM) control has many benefits when used to control power to thermoelectric modules (TEM's). This scheme allows the use of smaller, lighter circuitry that dissipates less heat than a comparable linear controller. However, abruptly turning power on and off to a TEM has been known to cause thermal cycling which reduces the reliability of the module. This thermal cycling fatigues the solder junctions causing an increase in the module's electrical resistance. As a result, some system designers have been reluctant to use PWM controllers in their cooling equipment. This paper quantifies the effect of PWM control on the reliability of TEM. TEM's are powered with PWM signals of various frequencies from 0.1 Hz to 10 kHz. The electrical resistance of these modules is then tracked throughout the duration of the test. These changes in electrical resistances are used to directly correlate the frequency of PWM control with TEM reliability.
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