处理器红外热成像的冷却解决方案

E. K. Ardestani, F. Mesa-Martinez, Jose Renau
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引用次数: 16

摘要

温度是一个关键参数,因为它影响时间、能量和可靠性。在运行时以高空间和时间分辨率测量温度的设置将有助于研究处理器的热行为。目前,红外热成像基础设施已经开发出来,可以实时测量温度。由于在这些装置中红外不透明金属散热器需要替换为红外透明散热器,因此提出了基于油基冷却的解决方案。然而,油不是金属散热器的代表,因为基于油的冷却测量可以改变处理器的热行为。本文讨论了一种具有代表性的油基冷却方案,并表明它具有与金属散热器相同的热响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooling solutions for processor Infrared Thermography
Temperature is a key parameter due to its impact on timing, energy, and reliability. A setup to measure temperature in runtime with high spatial and temporal resolution would help to study the thermal behavior of processors. Currently, Infrared Thermography infrastructures has been developed to measure the temperature in real-time. Since the infrared opaque metal heat sinks need to be replaced with an infrared transparent heat sink in these setups, oil based cooling solutions have been proposed. However, oil is not a representative of a metal heat sink because measurement with oil based cooling can change the thermal behavior of the processor. In this paper, we discuss a representative oil based cooling solution, and show that it has the same thermal response as a metal heat sink.
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