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公司用不上电子料回收 零散电子料回收

发布:2021-02-01 15:23,更新:2024-11-23 18:22

无用电子料回收,零散电子料回收,收购库存Vishay威世Murata村田Uni-Royal厚声,回收翱泰(Otter)  安森美(ON Semi)  安捷伦(Agilent)二极管三极管,回收清仓 AEM科技(AEM) Altech  AVX  爱普科斯(EPCOS)  ALD 安华高科(Avago)  爱特(Actel)  ATMEL  爱美达(Aavid) APEM  安菲诺(Amphenol)


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回收OMLON欧母龙NE1A-EDR01安全网络控制器路由器 

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物联网(IoT)持续增长,数据中心所需的计算能力以相同的指数级增加。随着数据中心的扩展,优化电源能效已成为管理人员满足ASHRAE热要求和维持运营费用预算的关键因素。

当设备的冷却风扇入口处的空气在规定的温度范围内时,计算设备是可靠的。管理人员通常会向服务器机架提供过量的冷空气,以确保空气入口温度低于要求的阈值,从而造成能源浪费和运营成本增加。冷却系统数据中心约占总运行费用的35%,约占停机时间的20%。优化数据中心内的冷却量是在不牺牲计算能力或设备可靠性的情况下提高能效的一种方法,但如果不了解不同机架之间的温度变化情况,就不可能有效地管理冷却。

传感器可安装在服务器机架内以创建热图,管理者可以使用该热图来调整冷却系统并提供足够的冷却而不会产生热点。过去,在服务器机架中安装一些有线温度传感器,管理人员将手动分析每个温度传感器的数据,以了解如何优化冷却系统。如今,有更精密的温度传感器可供使用,其中包括可通过标准的简单网络管理协议(SNMP)接口集成到管理软件中的有线和无线传感器。该系统在优化电源能效方面非常有价值,并且在服务器机架内的空气温度意外升高时也可以自动发送警报。


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