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Research on thermal cycle system for real-time PCR instrument based on equivalent circuit model

机译:基于等效电路模型的实时PCR仪热循环系统研究

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The thermal cycle system is a key module for the amplification of deoxyribonucleic acid in real-time polymerase chain reaction (PCR) instrument. The accuracy of quantification is directly influenced by the performance of the system, such as heating and cooling rate, temperature uniformity and temperature-controlled precision. Therefore, a proper thermal analysis method is very important to the thermal cycle system design. In this paper, an equivalent circuit model of the system using thermoelectric coolers was proposed. The modeling results were in good agreement with the experimental results. The use of this model allowed the static and dynamic performance of the system to be analyzed by using electrical circuit analysis software such as Multisim10. Also, it is an effective and simple way to study how the factors such as thermal resistance of heat sink and thermal grease affect the performance of the system.
机译:热循环系统是实时聚合酶链式反应(PCR)仪器中脱氧核酸扩增的关键模块。定量精度直接受到系统性能的影响,例如加热和冷却速率,温度均匀性和温度控制的精度。因此,适当的热分析方法对热循环系统设计非常重要。本文提出了一种使用热电冷却器的系统的等效电路模型。建模结果与实验结果吻合良好。使用该模型允许通过使用Multisim10等电路分析软件来分析系统的静态和动态性能。此外,它是一种有效而简单的方法,研究了散热器和热润滑脂的热阻等因素如何影响系统的性能。

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