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An 8-mode reconfigurable sensor-independent readout circuit for trillion sensors era

机译:面向万亿传感器时代的8模式可重配置独立于传感器的读出电路

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The Internet of Things (IoT) is opening the doors to many new devices and applications. Such an increase in the variety of applications requires reconfigurable, flexible and expandable hardware for fabrication and development cost reduction. This has been achieved for the digital part with devices like Arduino. However, the sensor readout Analog-Front-End (AFE) circuits are mainly designed for a specific sensor type or application. Such an approach would be feasible for the current small number of applications and sensors used. However, it will increase cost drastically as the variety and number of applications and sensors are increased. Moreover, flexibility and expandability of the system will be limited. Therefore, a universal sensor platform that can be reconfigured to adapt to various sensors and applications is needed. Moreover, an array of such circuit can be made with the same sensor to increase measurement accuracy and reliability. It can also be used to integrate heterogeneous sensors for increasing the flexibility of the system, which will make the system adaptable to many applications through only activating the desired sensors. In this paper, an 8-mode reconfigurable sensor readout AFE with offset-cancellation-resolution enhancing scheme is proposed to serve as a step towards a universal sensor interface. The proposed AFE can be reconfigured to interface resistive, capacitive, current producing, and voltage producing sensors through direct or capacitive connection to its terminals. The proposed system is fabricated in 180nm CMOS process and has successfully measured the four types of sensor outputs. It has also been interfaced to Arduino board to allow easy interfacing of various sensors. Therefore, the proposed work can be used as general purpose AFE resulting in manufacturing and development cost reduction and increased flexibility and expandability.
机译:物联网(IoT)正在为许多新设备和应用打开大门。应用程序种类的这种增加需要可重构,灵活和可扩展的硬件,以降低制造和开发成本。对于像Arduino这样的设备,数字部分已经实现了这一点。但是,传感器读数模拟前端(AFE)电路主要设计用于特定的传感器类型或应用。对于当前使用的少量应用程序和传感器,这种方法将是可行的。然而,随着应用和传感器的种类和数量的增加,它将大大增加成本。而且,系统的灵活性和可扩展性将受到限制。因此,需要一种可以重新配置以适应各种传感器和应用的通用传感器平台。而且,可以用相同的传感器制成这种电路的阵列,以提高测量精度和可靠性。它还可以用于集成异构传感器,以提高系统的灵活性,这将使系统仅通过激活所需的传感器即可适应许多应用。在本文中,提出了一种具有偏移消除分辨率增强方案的8模式可重配置传感器读数AFE,作为迈向通用传感器接口的一步。所提出的AFE可以重新配置为通过直接或电容连接至其端子来连接电阻,电容,电流产生和电压产生传感器。拟议的系统采用180nm CMOS工艺制造,并已成功测量了四种类型的传感器输出。它还已与Arduino板接口,以方便各种传感器的接口。因此,建议的工作可以用作通用AFE,从而降低制造和开发成本,并提高灵活性和可扩展性。

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