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利用微流体逻辑结构开发和多路控制锁存气动阀

Development and multiplexed control of latching pneumatic valves using microfluidic logical structures.

作者信息

Grover William H, Ivester Robin H C, Jensen Erik C, Mathies Richard A

机构信息

Department of Chemistry, University of California, Berkeley, CA 94720, USA.

出版信息

Lab Chip. 2006 May;6(5):623-31. doi: 10.1039/b518362f. Epub 2006 Apr 6.

Abstract

Novel latching microfluidic valve structures are developed, characterized, and controlled independently using an on-chip pneumatic demultiplexer. These structures are based on pneumatic monolithic membrane valves and depend upon their normally-closed nature. Latching valves consisting of both three- and four-valve circuits are demonstrated. Vacuum or pressure pulses as short as 120 ms are adequate to hold these latching valves open or closed for several minutes. In addition, an on-chip demultiplexer is demonstrated that requires only n pneumatic inputs to control 2(n-1) independent latching valves. These structures can reduce the size, power consumption, and cost of microfluidic analysis devices by decreasing the number of off-chip controllers. Since these valve assemblies can form the standard logic gates familiar in electronic circuit design, they should be useful in developing complex pneumatic circuits.

摘要

新型锁存微流控阀结构得以开发、表征,并使用片上气动解复用器进行独立控制。这些结构基于气动单片膜阀,并依赖其常闭特性。展示了由三阀和四阀电路组成的锁存阀。短至120毫秒的真空或压力脉冲足以使这些锁存阀保持打开或关闭状态几分钟。此外,还展示了一种片上解复用器,它仅需n个气动输入就能控制2(n - 1)个独立的锁存阀。这些结构可通过减少片外控制器的数量来减小微流控分析设备的尺寸、功耗和成本。由于这些阀组件可构成电子电路设计中常见的标准逻辑门,它们在开发复杂的气动电路中应会很有用。

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