JOURNAL ARTICLE

Alumina ceramic based high-temperature performance of wireless passive pressure sensor

Bo WangGuozhu WuTao GuoQiulin Tan

Year: 2016 Journal:   Photonic Sensors Vol: 6 (4)Pages: 328-332   Publisher: Springer Nature

Abstract

A wireless passive pressure sensor equivalent to inductive-capacitive (LC) resonance circuit and based on alumina ceramic is fabricated by using high temperature sintering ceramic and post-fire metallization processes. Cylindrical copper spiral reader antenna and insulation layer are designed to realize the wireless measurement for the sensor in high temperature environment. The high temperature performance of the sensor is analyzed and discussed by studying the phase-frequency and amplitude-frequency characteristics of reader antenna. The average frequency change of sensor is 0.68 kHz/°C when the temperature changes from 27°C to 700°C and the relative change of twice measurements is 2.12%, with high characteristic of repeatability. The study of temperature-drift characteristic of pressure sensor in high temperature environment lays a good basis for the temperature compensation methods and insures the pressure signal readout accurately.

Keywords:
Materials science Ceramic Capacitive sensing Antenna (radio) Repeatability SIGNAL (programming language) Pressure sensor Temperature measurement Wireless Electrical engineering Acoustics Compensation (psychology) Optoelectronics Electronic engineering Composite material Engineering Mechanical engineering Telecommunications Computer science

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Citation History

Topics

Acoustic Wave Resonator Technologies
Physical Sciences →  Engineering →  Biomedical Engineering
Wireless Power Transfer Systems
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Bluetooth and Wireless Communication Technologies
Physical Sciences →  Computer Science →  Computer Networks and Communications
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