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A digital CMOS-based 24×16 sensor array platform for fully automatic electrochemical DNA detection

机译:基于数字CMOS的24×16传感器阵列平台,用于全自动电化学DNA检测

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DNA sensor arrays integrated on CMOS chips allow fully electronic readout of biological information. Compared to state-of-the-art optical methods optical setups are not needed. Key features of fully electronic systems are robust and easy operation. These features enable applications in new fields and markets like diagnosis in doctors' offices, food control, etc.In this article we present a fully integrated system-on-chip design of a digital CMOS DNA-chip, which represents a cost optimized, robust and user friendly solution. Design issues of the chip components are discussed. Measurement results of electrical, electrochemical and DNA tests are presented and demonstrate the functionality.The realized DNA sensor chip is based on chronocoulometric measurement. The scheme of the chip is implemented in a 0.35μm standard CMOS technology and is extended by an additional backend process dedicated to the gold electrodes. The whole chip with a total of 384 sensor positions captures an area of 15.8mm~2 and dissipates less than 102mW. Due to the chip's fully automatic working mode, a complete electrochemical DNA detection can be done in multiple of milliseconds for the whole sensor array. Several electrochemical analysis, such as cyclic voltammetry and chronocoulometric can be done, making the chip multifunctional and flexible but still easy to handle.
机译:集成在CMOS芯片上的DNA传感器阵列允许完全电子读取生物信息。与最新的光学方法相比,不需要光学装置。全电子系统的关键特性是坚固且易于操作。这些功能使之能够在新领域和市场中应用,例如医生诊室诊断,食品控制等。在本文中,我们提出了一种完全集成的数字CMOS DNA芯片系统设计,它代表了成本优化,坚固耐用的特点。和用户友好的解决方案。讨论了芯片组件的设计问题。介绍了电学,电化学和DNA测试的测量结果并证明了其功能。实现的DNA传感器芯片基于计时库仑法测量。该芯片的方案采用0.35μm标准CMOS技术实现,并通过专用于金电极的附加后端工艺进行了扩展。整个芯片共有384个传感器位置,捕获面积为15.8mm〜2,耗散小于102mW。由于芯片的全自动工作模式,整个传感器阵列可以在几毫秒内完成完整的电化学DNA检测。可以进行多种电化学分析,例如循环伏安法和计时库仑法,从而使芯片具有多功能性和灵活性,但仍易于处理。

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