首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems >A CAPILLARY SYSTEM WITH THERMAL-BUBBLE-ACTUATED 1×N MICRO FLOW SWITCH VIA TIME-SEQUENCE POWER CONTROL FOR CONTINUOUS LIQUID HANDLING
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A CAPILLARY SYSTEM WITH THERMAL-BUBBLE-ACTUATED 1×N MICRO FLOW SWITCH VIA TIME-SEQUENCE POWER CONTROL FOR CONTINUOUS LIQUID HANDLING

机译:具有热气泡驱动的1×N微流量开关的毛细管系统,通过时序功率控制进行连续液体处理

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In this paper, we present the design and implementation of a novel thermal-bubble-actuated 1×N micro flow switch without the need of external macro pumps. This device is a valveless switch by means of the thermal-bubble-actuated method and the area control of the hydrophobic patches on the microchannels. The switch mechanism among different microchannels is dominated by controlling the format and timing of power input that generates thermal bubbles. The experimental results successfully demonstrate the switch function of our micro flow switches devices to switch continuous liquid into desired outlet ports based on our hydrophobic-patch design and programmable time-sequence bubble actuation.
机译:在本文中,我们介绍了一种新型热气泡驱动的1×N微流量开关的设计和实现,而无需外部宏泵。该装置是借助于热气泡致动方法和微通道上疏水贴片的疏通式开关的阀门开关。通过控制产生热气泡的电源输入的格式和定时来支配不同微通道之间的开关机制。实验结果成功地证明了我们的微流量开关器件的开关功能,以基于我们的疏水性贴剂设计和可编程的时序泡沫驱动将连续液体切换到所需的出口端口。

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