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Design of a multi-sensor readout chip for amperometric, potentiometric, impedometric, and colorimetric bio-sensor applications

机译:设计多传感器读数芯片,用于安培,电位,阻抗和比色生物传感器应用

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摘要

Point-of-Care Testing (POCT) devices are being deployed to provide personalized healthcare monitoring or for remote monitoring whenever there is no accessible medical facility. In line with POCT, Lab-on-a Paper or Lab-on-a-Chip devices are taking flight. These include the hybrid of the sensor and readout circuit fabricated into a chip. To date, there is no single chip solution that harmonizes the four electrochemical sensing modalities which is the contribution of this work. The design of a multi-sensor readout chip is presented; this is composed of amperometric, potentiometric, impedometric, and colorimetric readout circuits implemented on TSMC 0.18 μm 1P6M technology. The chip can be used to implement a POCT to assist a patient in assessing the condition of his urinary system through urine quality indicators such as: pH value and ionic concentration of calcium (Ca2+) via potentiometric sensing; uric acid, citric acid, and calcium oxalate concentrations via amperometric sensing; osmolality or total dissolved salts through impedometric sensing; and urine turbidity, color and crystallization through its optical properties. The readout circuit designs for diversified sensing mechanisms were developed and investigated in this paper. In addition, a power savings of ~60dB can be achieved when all the circuits of the proposed chip are disabled. The sub-circuit enable was implemented using PMOS pass transistors. Non-simultaneous sub-circuit enable both reduces the power budget and prevents the inter-sensor interference or cross-talk.
机译:每当没有可访问的医疗设施时,正在部署护理点测试(POCT)设备以提供个性化医疗保健监控或用于远程监控。符合POCT,实验室纸或芯片设备正在使用飞行。这些包括传感器和制造成芯片的读出电路的混合动力。迄今为止,没有单芯片解决方案,使四种电化学传感方式协调这项工作的贡献。提供了多传感器读数芯片的设计;这由在TSMC0.18μm1p6m技术上实现的电流,电位,阻抗和比色读出电路组成。该芯片可用于实施POCT,以帮助患者通过尿液质量指标(例如:PH值和离子浓度)通过电位感测量来评估他的泌尿系统的状况;尿酸,柠檬酸和草酸钙浓度通过电流感测;通过阻抗感测渗透渗透或总溶解的盐;和尿液浊度,颜色和结晶通过其光学性质。在本文开发并研究了用于多样化传感机制的读出电路设计。另外,当禁用所提出的芯片的所有电路时,可以实现〜60dB的功率节省。使用PMOS通过晶体管实现子电路使能。非同时的子电路使得两次降低功率预算并防止传感器间干扰或串扰。

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