Gong Jian, Kim Chang-Jin C J
Mechanical and Aerospace Engineering Department, University of California, Los Angeles, Los Angeles, CA 90095, USA.
Lab Chip. 2008 Jun;8(6):898-906. doi: 10.1039/b717417a. Epub 2008 Apr 21.
Electrowetting-on-dielectric (EWOD) actuation enables digital (or droplet) microfluidics where small packets of liquids are manipulated on a two-dimensional surface. Due to its mechanical simplicity and low energy consumption, EWOD holds particular promise for portable systems. To improve volume precision of the droplets, which is desired for quantitative applications such as biochemical assays, existing practices would require near-perfect device fabrication and operation conditions unless the droplets are generated under feedback control by an extra pump setup off of the chip. In this paper, we develop an all-electronic (i.e., no ancillary pumping) real-time feedback control of on-chip droplet generation. A fast voltage modulation, capacitance sensing, and discrete-time PID feedback controller are integrated on the operating electronic board. A significant improvement is obtained in the droplet volume uniformity, compared with an open loop control as well as the previous feedback control employing an external pump. Furthermore, this new capability empowers users to prescribe the droplet volume even below the previously considered minimum, allowing, for example, 1 : x (x < 1) mixing, in comparison to the previously considered n : m mixing (i.e., n and m unit droplets).
介电电泳(EWOD)驱动实现了数字(或液滴)微流控技术,即能在二维表面上操控小体积的液体包。由于其机械结构简单且能耗低,EWOD在便携式系统中具有独特的应用前景。为提高液滴的体积精度(这在诸如生化分析等定量应用中是必需的),除非液滴是在芯片外由额外的泵装置进行反馈控制下产生的,否则现有的方法都需要近乎完美的器件制造和操作条件。在本文中,我们开发了一种全电子(即无需辅助泵送)的片上液滴生成实时反馈控制方法。快速电压调制、电容传感和离散时间PID反馈控制器集成在操作电子板上。与开环控制以及先前采用外部泵的反馈控制相比,液滴体积均匀性有了显著提高。此外,这项新功能使用户能够设定甚至低于先前认为最小值的液滴体积,例如允许1:x(x < 1)混合,而先前考虑的是n:m混合(即n和m个单位液滴)。