Finite element simulation of isothermal regions in serpentine shaped PCB electrodes of a micro-PCR device

Shaghayegh Mesforush, A. Jahanshahi, Mohesen Khajeh Zadeh
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引用次数: 1

Abstract

Polymerase chain reaction (PCR) is a method or device which is widely used in biology labs. Its main job is copying DNA segments. Micro-PCR is the term referring to the small-scale version of this device. It has several advantages including the minute reagent consumption and faster response times. One of the challenges in micro-PCR technology is creating uniform-temperature regions. Thin film heaters have been used in literature to create the needed temperature zones. In this work, printed circuit board (PCB) technology has been used to create meander-shaped micro heaters on FR-4 substrate. Two separate temperature zones have been designed on the substrate. In order to improve temperature uniformity in these areas, a uniform copper layer has been designed on the back of the substrate. Thanks to the double-sided PCB technology, having a uniform copper layer on the back of the substrate is trivial. To study the effect of the copper layer on temperature uniformity, a steady state thermal model has been developed using Ansys®Workbench. Based on the simulation results, the created model can successfully predict temperature distribution in these heat generation areas. Besides, it is shown that the copper layer will lead to more uniformity in temperature distribution.
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微pcr装置蛇形PCB电极等温区有限元模拟
聚合酶链反应(PCR)是生物学实验室中广泛应用的一种方法或设备。它的主要工作是复制DNA片段。Micro-PCR指的是这种装置的小型版本。它有几个优点,包括微小的试剂消耗和更快的响应时间。微pcr技术面临的挑战之一是创建恒温区域。在文献中已经使用薄膜加热器来产生所需的温度区域。在本研究中,采用印刷电路板(PCB)技术在FR-4基板上制作了曲线形微加热器。在基板上设计了两个单独的温度区。为了改善这些区域的温度均匀性,在衬底背面设计了均匀的铜层。由于双面PCB技术,在基板背面有一个均匀的铜层是微不足道的。为了研究铜层对温度均匀性的影响,利用Ansys®Workbench建立了稳态热模型。仿真结果表明,所建立的模型能够较好地预测这些发热区的温度分布。此外,铜层的加入使温度分布更加均匀。
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