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Characterization of a high performance ultra-thin heat pipe cooling module for mobile hand held electronic devices

机译:便携式手持电子设备的高性能超薄热管冷却模块的特性

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摘要

In recent years, heat pipes have been widely used in various hand held mobile electronic devices such as smart phones, tablet PCs, digital cameras. With the development of technology these devices have different user friendly features and applications; which require very high clock speeds of the processor. In general, a high clock speed generates a lot of heat, which needs to be spreaded or removed to eliminate the hot spot on the processor surface. However, it is a challenging task to achieve proper cooling of such electronic devices mentioned above because of their confined spaces and concentrated heat sources. Regarding this challenge, we introduced an ultra-thin heat pipe; this heat pipe consists of a special fiber wick structure named as "Center Fiber Wick" which can provide sufficient vapor space on the both sides of the wick structure. We also developed a cooling module that uses this kind of ultra-thin heat pipe to eliminate the hot spot issue. This cooling module consists of an ultra-thin heat pipe and a metal plate. By changing the width, the flattened thickness and the effective length of the ultra-thin heat pipe, several experiments have been conducted to characterize the thermal properties of the developed cooling module. In addition, other experiments were also conducted to determine the effects of changes in the number of heat pipes in a single module. Characterization and comparison of the module have also been conducted both experimentally and theoretically.
机译:近年来,热管已广泛用于各种手持移动电子设备,例如智能电话,平板电脑,数码相机。随着技术的发展,这些设备具有不同的用户友好功能和应用。这需要非常高的处理器时钟速度。通常,高时钟速度会产生大量热量,需要散布或除去这些热量,以消除处理器表面上的热点。然而,由于上述电子设备的狭窄空间和集中的热源,实现上述电子设备的适当冷却是一项艰巨的任务。针对这一挑战,我们推出了超薄热管。该热管由称为“中心纤维芯”的特殊纤维芯结构组成,可以在芯结构的两侧提供足够的蒸汽空间。我们还开发了一种冷却模块,该模块使用这种超薄热管来消除热点问题。该冷却模块由超薄热管和金属板组成。通过更改超薄热管的宽度,扁平厚度和有效长度,已进行了一些实验来表征已开发冷却模块的热性能。此外,还进行了其他实验来确定单个模块中热管数量变化的影响。该模块的表征和比较也已通过实验和理论进行。

著录项

  • 来源
    《Heat and mass transfer》 |2017年第11期|3241-3247|共7页
  • 作者单位

    Thermal Technology Division, Electronics Company, Fujikura Ltd., 1-5-1 Kiba, Koto-Ku, Tokyo 135-8512, Japan;

    Thermal Technology Division, Electronics Company, Fujikura Ltd., 1-5-1 Kiba, Koto-Ku, Tokyo 135-8512, Japan;

    Thermal Technology Division, Electronics Company, Fujikura Ltd., 1-5-1 Kiba, Koto-Ku, Tokyo 135-8512, Japan;

    Thermal Technology Division, Electronics Company, Fujikura Ltd., 1-5-1 Kiba, Koto-Ku, Tokyo 135-8512, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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