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Journal ArticleDOI

A wireless microsystem for the remote sensing of pressure, temperature, and relative humidity

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TLDR
In this article, the authors present a micro system that utilizes inductive power and data transfer through a backscatter-modulated carrier and a transducer interface that monitors its environment through embedded capacitive transducers.
Abstract
This work presents a microsystem that utilizes inductive power and data transfer through a backscatter-modulated carrier and a transducer interface that monitors its environment through embedded capacitive transducers. Formed on a single chip, transducers for temperature, pressure, and relative humidity are realized using a silicon-on-glass process that combines anodic bonding and a silicon-gold eutectic to realize vacuum-sealed cavities with low-impedance (6 /spl Omega/) electrical feedthroughs. Temperature is sensed capacitively using a row of Si/Au bimorph beams that produce a sensitivity of 15 fF//spl deg/C from 20 to 100/spl deg/C. The absolute pressure sensors have a sensitivity of 15 fF/torr and a range from 500 to 1200 torr, while the relative humidity sensor responds with 39 fF/%RH from 20 to 95%RH. A relaxation oscillator implements low-power capacitance-to-frequency conversion on a second chip with a sensitivity of 750 Hz/pF at 10 kHz, forming a 341 /spl mu/W transducer interface. The system is remotely powered by a 3-MHz carrier and has a volume of 32 mm/sup 3/, including the hybrid antenna wound around the perimeter of the system.

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Citations
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Journal ArticleDOI

Materials and transducers toward selective wireless gas sensing.

TL;DR: The monitoring of numerous gases of environmental, industrial, and homeland security concern is needed over the broad range of their regulated exposure concentrations, and the available wireless gas sensors fall short of meeting emerging measurement needs in complex environments.
Journal ArticleDOI

Power harvesting and telemetry in CMOS for implanted devices

TL;DR: A telemetry chip that by inductive coupling supplies power to and transmits digital data from an implantable sensor that results in a slight decrease in the signal to noise ratio of the data stream with increasing thickness.
Journal ArticleDOI

Midfield Wireless Powering for Implantable Systems

TL;DR: This paper surveys the analysis of near-field power transfer and associated strategies to optimize efficiency, and reviews analytical models that show that significantly higher efficiencies can be obtained in the electromagnetic midfield.
Journal ArticleDOI

3D-printed microelectronics for integrated circuitry and passive wireless sensors

TL;DR: This work establishes an innovative approach to construct arbitrary 3D systems with embedded electrical structures as integrated circuitry for various applications, including the demonstrated passive wireless sensors.
Journal ArticleDOI

Biopsy with Thermally‐Responsive Untethered Microtools

TL;DR: The feasibility of an in vivo biopsy of the porcine bile duct using untethered microgrippers is demonstrated.
References
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Journal Article

The design of CMOS radio-frequency integrated circuits, 2nd edition

TL;DR: This expanded and thoroughly revised edition of Thomas H. Lee's acclaimed guide to the design of gigahertz RF integrated circuits features a completely new chapter on the principles of wireless systems.
Book

The Design of CMOS Radio-Frequency Integrated Circuits

TL;DR: In this article, the authors present an expanded and thoroughly revised edition of Tom Lee's acclaimed guide to the design of gigahertz RF integrated circuits, which is packed with physical insights and design tips, and includes a historical overview of the field in context.
Journal ArticleDOI

Jitter and phase noise in ring oscillators

TL;DR: A companion analysis of clock jitter and phase noise of single-ended and differential ring oscillators is presented in this paper, where the impulse sensitivity functions are used to derive expressions for the jitter.
Journal ArticleDOI

Wireless micromachined ceramic pressure sensor for high-temperature applications

TL;DR: In this paper, a completely passive ceramic pressure sensor that uses a wireless telemetry scheme has been developed, which removes the need for electronics, power supplies, or contacts to withstand the high-temperature environment.
MonographDOI

Phase Noise in Signal Sources

W. P. Robins
TL;DR: In this article, a thorough treatment of phase noise, its relationship to thermal noise and associated subjects such as frequency stability is provided, including the design of low-phase noise signal sources, including oscillators and synthesisers.
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