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A 34#x00B5;W 75dB-dynamic-range CMOS analog front-end for intelligent tyre sensor network

机译:用于智能轮胎传感器网络的34µW 75dB动态范围CMOS模拟前端

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A high performance analog front-end for intelligent tyre MEMS accelerometer sensor is presented in this paper. The analog front-end is part of a bigger System-On-Chip totally integrated inside the car tyre, with the aim to interchange real time data with the car central unit. Such system is intrinsically self-biased (a vibration-based scavenger device is used), so that a very low power budget is available for the analog front-end (<100µW). Constant-charge capacitance-to-voltage conversion has been used for readout input acceleration sensing, that allows to reduce power and circuital complexity. At the same time large Signal-To-Noise-Ratio (>75dB over 1Hz÷4kHz bandwidth) has been obtained by a simple in-band noise filtering, while maintaining pass-band frequency response for the acceleration readout input signal. A prototype of the accelerometer analog front-end has been designed in CMOS 0.13µm technology node. The overall readout power consumption is 34µW, from a single 1.2V supply voltage.
机译:本文介绍了一种用于智能轮胎MEMS加速度传感器的高性能模拟前端。模拟前端是完全集成在汽车轮胎内部的更大的片上系统的一部分,目的是与汽车中央单元交换实时数据。这样的系统本质上是自偏置的(使用了基于振动的清除器设备),因此模拟前端(<100µW)的功率预算非常低。恒定电荷电容-电压转换已用于读出输入加速度感测,从而可以降低功耗和电路复杂性。同时,通过简单的带内噪声滤波,可以获得大的信噪比(在1Hz÷4kHz带宽上> 75dB),同时保持了加速度读出输入信号的通带频率响应。加速度计模拟前端的原型已在CMOS 0.13µm技术节点中进行了设计。从单个1.2V电源电压读取的总功耗为34µW。

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