首页> 外文会议>International Solid-State Sensors, Actuators and Microsystems Conference >MICROFLUIDIC-DRIVING MULTI-FUNCTION MANIPULATION ARRAY OF MICRO-SCALE BIOLOGICAL SAMPLE VIA AC ELECTROOSMOSIS
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MICROFLUIDIC-DRIVING MULTI-FUNCTION MANIPULATION ARRAY OF MICRO-SCALE BIOLOGICAL SAMPLE VIA AC ELECTROOSMOSIS

机译:通过AC电渗流微流体驱动微级生物样品的多功能操纵阵列

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A microfluidic-driving array is reported in this paper for the multi-function manipulation of micro-scale biological sample based on Alternating Current Electro Osmosis Flow (ACEOF). The ACEOF manipulation presented in this paper is achieved by the design of the asymmetric pair electrodes array. The features of our proposed microfluidic-driving manipulation actuator can not only orient the micro-scale objects but also convey them. All of microfluidic-driving manipulation actuators are embedded in the device chamber. The functional electrodes are driven by using a waveform generator that provides the sinusoidal wave excitation of only 2 to 10 volts peak to peak. By the control of voltage and frequency applied to manipulation electrodes, the manipulation features of the microfluidic-driven bio-particles can be used for various applications. In this paper, we report the design, simulation and experimental results of this proposed AC electrokinetic manipulation chip.
机译:本文报道了一种微流体驱动阵列,用于基于交流电渗透流量(ACEOF)的微级生物样品的多功能操纵。本文呈现的ACEOF操纵是通过设计非对称对电极阵列来实现的。我们提出的微流体驱动操作执行器的特点不仅可以定向微尺度物体,还可以传达它们。所有微流体驱动操纵致动器嵌入设备室中。通过使用波形发生器驱动功能电极,该波形发生器提供仅2至10伏峰的正弦波激发到峰值。通过控制施加到操纵电极的电压和频率,微流体驱动的生物颗粒的操纵特征可用于各种应用。在本文中,我们报告了这一提出的AC电动操纵芯片的设计,仿真和实验结果。

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