Toward an Energy-Efficient Bridge-to-Digital Intracranial Pressure Sensing Interface

Ahmad Rezvanitabar, Gwangrok Jung, F. Degertekin, Maysam Ghovanloo
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引用次数: 2

Abstract

This work presents an integrated solution for lowering the power consumption in interface circuits for bridge sensors, which consume power because of their low resistances particularly in implantable microsystems, such as intracranial pressure (ICP) monitoring application. The proposed direct bridge-to-digital interface uses a pseudo-pseudo differential (PPD) structure, in which the converter not only provides key benefits of traditional fully-differential interface circuits but also can reduce their complexity with single-ended architecture. It occupies 0.0667 mm2in 0.35-μm standard CMOS technology, where the interface provides 9.13 effective number of bits (ENOB), while cutting the power consumption of a 3 kΩWheatstone bridge down to 363 µW at 1.8 V supply, and sampling rate of 3.72 kHz in post-layout simulations.
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一种高能效的桥-数字颅内压传感接口
这项工作提出了一种降低桥式传感器接口电路功耗的集成解决方案,桥式传感器由于其低电阻而消耗功耗,特别是在可植入微系统中,如颅内压(ICP)监测应用。所提出的直接桥接数字接口采用伪伪差分(PPD)结构,该转换器不仅具有传统全差分接口电路的主要优点,而且可以降低其单端结构的复杂性。它采用0.0667 mm2in 0.35 μm标准CMOS技术,其接口提供9.13有效位数(ENOB),同时在1.8 V电源下将3 kΩWheatstone电桥的功耗降低至363µW,在布局后仿真中采样率为3.72 kHz。
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