首页> 外文会议>IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >Design considerations for a miniaturized TIM tester with extremely high measurement resolution
【24h】

Design considerations for a miniaturized TIM tester with extremely high measurement resolution

机译:具有极高测量分辨率的小型化TIM测试仪的设计考虑因素

获取原文

摘要

This work describes relevant design considerations for the fabrication of a miniaturized thermal interface material characterization instrument that is capable of resolving interfacial thermal resistances (R) below 1 mm.K/W. Leveraging previous work (Warzoha et al., 2017, Smith et al. 2016), the authors propose a reduction in the length scale of the primary heat meter bars to below 4 mm in order to sufficiently increase the temperature difference across the interface, thereby reducing the measurement uncertainty of RT across high-performance materials. The analytical uncertainty analysis takes advantage of an increase in the number of temperature measurements that can be made across the length of each bar via infrared microscopy. In a preliminary numerical analysis, we find that extreme care must be taken to apply and remove heat uniformly from the end points of each bar, particularly as the length of the bar is reduced below 4 mm. To do this, longitudinal fins are directly integrated into the bottom heat meter bar assembly and are immersed in a heat transfer fluid that is advected within a custom cold plate assembly. We conduct a parametric study to determine the linearity of the thermal gradient along the length of each heat meter bar, which in turn provides us with an upper limit for the number of temperature measurements that can be made via infrared microscopy and therefore the minimum achievable measurement of R. Finally, we use this information to design a more suitable lower heat meter bar cooling technique for measuring the thermal resistance across a sintered silver-copper interface with an expected value of R = 0.1 mm.K/W. To do this, we find it necessary to transition from a heat sink cooling mechanism to the use of jet impingement for heat dissipation at the bottom of the lower heat meter bar.
机译:这项工作描述了一种用于小型化的热界面材料的表征仪器,其能够解决以下1 mm.K / W界面热阻(R)的制造相关的设计考虑因素。利用以前的工作(Warzoha等,2017年,Smith等,2016),作者提出了初级热量表杆的长度尺度的减小,以便充分提高界面上的温差,从而充分提高了界面上的温差降低高性能RT的测量不确定度。分析不确定性分析利用了通过红外显微镜通过每条棒的长度进行的温度测量数的增加。在初步数值分析中,我们发现必须采取极端护理以均匀地从每个条的末端均匀地涂抹和去除热量,特别是随着杆的长度减小4mm。为此,纵向翅片直接集成到底部热仪杆组件中,并浸入热传递流体中,该传热流体在定制的冷板组件内方向。我们进行参数研究以确定沿着每个热仪杆的长度的热梯度的线性,这又为我们提供了可以通过红外显微镜进行的温度测量的数量的上限,从而为最低可实现的测量提供在R.最后,我们使用这些信息来设计更合适的较合适的较低热表杆冷却技术,用于测量烧结银铜接口上的热阻,其预期值r = 0.1mm.k / w。为此,我们发现必须从散热器冷却机构转换到使用喷射冲击在较低热表杆底部的散热器中的散热。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号