An Ultra-Linear Piezo-Floating-Gate Strain-Gauge for Self-Powered Measurement of Quasi-Static-Strain
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An Ultra-Linear Piezo-Floating-Gate Strain-Gauge for Self-Powered Measurement of Quasi-Static-Strain

机译:用于准静态应变自供电测量的超线性压电浮栅应变计

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摘要

In this paper we describe a self-powered sensor that can be used for in-vivo measurement of the quasi-static-strain and also for in-vivo measurement of the $L_{1}$ norm of the strain signal. At the core of the proposed design is a linear floating-gate injector that can achieve more than 13 bits of precision in sensing, signal integration and non-volatile storage. The injectors are self-powered by the piezoelectric transducers that convert mechanical energy from strain-variations into electrical energy. A differential injector topology is used to measure the quasi-static strain by integrating the difference between the $L_{1}$ norm of the piezoelectric signal generated during the positive and negative strain-cycles. The linear floating-gate injectors are integrated with charge-pumps, digital calibration circuits and digital programming circuits to form a system-on-chip solution that can interface with a standard bio-telemetry platform. We demonstrate the proof-of-concept self-powered measurement of quasi-static strain and $L_{1}$ norm of the strain signal using sensor prototypes fabricated in a 0.5- $mu {rm m}$ standard CMOS process and validated using a bench-top biomechanical test setup.
机译:在本文中,我们描述了一种自供电传感器,该传感器可用于准静态应变的体内测量以及 $ L_ {1} $ 范数。提出的设计的核心是线性浮栅注入器,可以在传感,信号集成和非易失性存储方面实现超过13位的精度。喷油器由压电传感器自供电,压电传感器将机械能从应变变化转换为电能。通过积分 $ L_ {1} $ 范数之间的差异,使用差分喷射器拓扑来测量准静态应变正应变周期和负应变周期中产生的压电信号的变化。线性浮栅注入器与电荷泵,数字校准电路和数字编程电路集成在一起,形成了可以与标准生物遥测平台对接的片上系统解决方案。我们演示了准静态应变的概念证明自供电测量和 $ L_ {1} $ 范数使用在0.5- $ mu {rm m} $ 标准CMOS工艺中制造的传感器原型制作的应变信号,并使用工作台进行了验证顶级生物力学测试设置。

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