The Responsivity of a Miniaturized Passive Implantable Wireless Pressure Sensor.

Hao Jiang, Di Lan, Ken Goldman, Mozziyar Etemadi, Hamid Shahnasser, Shuvo Roy
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Abstract

A miniature batteryless implantable wireless pressure sensor that can be used deep inside the body is desired by the medical community. MEMS technology makes it possible to achieve high responsivity that directly determines the operating distance between a miniature implanted sensor and the external RF probe, while providing the read-out. In this paper, for the first time, an analytical expression of the system responsivity versus the sensor design is derived using an equivalent circuit model. Also, the integration of micro-coil inductors and pressure sensitive capacitors on a single silicon chip using MEMS fabrication techniques is demonstrated. Further, the derived analytical design theory is validated by the measured responsivity of these sensors.

Abstract Image

一种小型无源植入式无线压力传感器的响应性。
医学界希望能研制出一种微型、无电池、可植入人体深处的无线压力传感器。MEMS技术可以实现高响应,直接决定微型植入传感器和外部射频探头之间的操作距离,同时提供读出。本文首次利用等效电路模型导出了系统响应度随传感器设计的解析表达式。此外,微线圈电感器和压敏电容器集成在一个单一的硅芯片上使用MEMS制造技术演示。进一步,推导出的解析设计理论通过测量这些传感器的响应度得到验证。
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