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An electromagnetic actuated microvalve fabricated on a single wafer.

机译:在单个晶片上制造的电磁驱动微型阀。

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Microvalves are essential components of the miniaturization of the fluidic systems to control of fluid flow in a variety of applications as diverse as chemical analysis systems, micro-fuel cells, and integrated fluidic channel arrangements for electronic cooling. Using microvalves, these systems offer important advantages: they can operate using small sample volumes and provide rapid response time.; This PhD dissertation presents the world first electromagnetically actuated microvalve fabricated on a single wafer with CMOS compatibility. In this dissertation, the design, fabrication, and testing results of two different types of electromagnetic microvalves are presented: the on/off microvalve and the bistable microvalve with latching mechanism. The microvalves operate with power consumption of less than 1.5 W and can control the volume flow rate of DI water, or a 50% diluted methanol solution in the range 1--50 muL/min. The leaking rate of the on/off microvalve is the order of 30 nL/min. The microvalve demonstrated a response time for latching of 10 ms in water and 0.2 ms in air. This work has resulted in a US patent, application no. 10/699,210. Other inventions that have been developed as a result of this research are bidirectional, and bistable-bidirectional microactuators with latching mechanism, that can be utilized for optical switch, RF relay, micro mirror, nano indenter, or nano printings.
机译:微型阀是流体系统小型化的重要组成部分,以控制化学分析系统,微型燃料电池和用于电子冷却的集成流体通道等各种应用中的流体流动。使用微型阀,这些系统具有重要的优势:它们可以使用少量的样品进行操作并提供快速的响应时间。该博士论文介绍了世界上第一个电磁兼容的微型阀,该微型阀在具有CMOS兼容性的单个晶片上制造。本文介绍了两种不同类型的电磁微阀的设计,制造和测试结果:开/关微阀和具有闭锁机构的双稳态微阀。微型阀的功耗小于1.5 W,可将去离子水或50%稀释的甲醇溶液的体积流量控制在1--50μL/ min的范围内。开/关微型阀的泄漏率约为30 nL / min。微型阀显示了在水中锁定10毫秒和在空气中锁定0.2毫秒的响应时间。这项工作已经导致了美国专利申请号为。 10 / 699,210。这项研究的成果还开发出了具有闭锁机制的双向和双稳态双向微执行器,可用于光学开关,RF继电器,微镜,纳米压头或纳米印刷。

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