首页> 外文会议>ASME international technical conference and exhibition on packaging and integration of electronic and photonic microsystems >Effect of Relative Humidity, Temperature and Gaseous and Particulate Contaminations on Information Technology Equipment Reliability
【24h】

Effect of Relative Humidity, Temperature and Gaseous and Particulate Contaminations on Information Technology Equipment Reliability

机译:相对湿度,温度,气态和微粒污染对信息技术设备可靠性的影响

获取原文

摘要

The energy used by information technology (IT) equipment and the supporting data center equipment keeps rising as data center proliferation continues unabated. In order to contain the rising computing costs, data center administrators are resorting to cost cutting measures such as not tightly controlling the temperature and humidity levels and in many cases installing air side economizers with the associated risk of introducing particulate and gaseous contaminations into their data centers. The ASHRAE TC9.9 subcommittee, on Mission Critical Facilities, Data Centers, Technology Spaces, and Electronic Equipment, has accommodated the data center administrators by allowing short period excursions outside the recommended temperature-humidity range, into allowable classes A1-A3. Under worst case conditions, the ASHRAE A3 envelope allows electronic equipment to operate at temperature and humidity as high as 24°C and 85% relative humidity for short, but undefined periods of time. This paper addresses the IT equipment reliability issues arising from operation in high humidity and high temperature conditions, with particular attention paid to the question of whether it is possible to determine the all-encompassing x-factors that can capture the effects of temperature and relative humidity on equipment reliability. The role of particulate and gaseous contamination and the aggravating effects of high temperature and high relative humidity will be presented and discussed. A method to determine the temperature and humidity x-factors, based on testing in experimental data centers located in polluted geographies, will be proposed.
机译:随着数据中心扩散的持续增长,信息技术(IT)设备和支持的数据中心设备所消耗的能源不断增加。为了控制不断增长的计算成本,数据中心管理员采取了削减成本的措施,例如不严格控制温度和湿度水平,并且在许多情况下,安装空气侧节能器会带来将颗粒物和气态污染物引入其数据中心的风险。 。关键任务设施,数据中心,技术空间和电子设备方面的ASHRAE TC9.9小组委员会已允许数据中心管理员在建议的温度和湿度范围之外进行短时游览(允许进入A1-A3类),从而容纳了数据中心管理员。在最坏的情况下,ASHRAE A3外壳可以使电子设备在短短但不确定的时间内在高达24°C和85%相对湿度的温度和湿度下工作。本文解决了因在高湿度和高温条件下运行而引起的IT设备可靠性问题,尤其关注是否有可能确定可以捕获温度和相对湿度影响的所有x因子的问题。在设备可靠性上。将介绍和讨论颗粒物和气体污染的作用以及高温和高相对湿度的加剧作用。将提出一种在位于污染地区的实验数据中心进行测试的基础上,确定温度和湿度x因子的方法。

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