JOURNAL ARTICLE

AlN-Based Ceramic Patch Antenna-Type Wireless Passive High-Temperature Sensor

Dan Lei YanYong YangYingping HongTing LiangYao ZongXiaoyong ChenJijun Xiong

Year: 2017 Journal:   Micromachines Vol: 8 (10)Pages: 301-301   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

An aluminum nitride (AlN) based patch antenna-type high-temperature wireless passive sensor is reported to operate as both a sensor and an antenna, which integrates in situ measurement/sensing with remote wireless communication at the same time. The sensor is small, easy to manufacture, highly sensitive and has a high operating temperature; it can be used in high-temperature, chemically corrosive and other harsh environments. The sensing mechanism of the sensor, the dielectric constant of the AlN ceramic substrate, increases with rising temperature, which reduces the resonant frequency of the sensor. Thus, the temperature can be measured by detecting changes in the sensor’s resonant frequency. High-Frequency Simulation Structure (HFSS) software is used to determine the structure and size of the sensor, which is then fabricated using thick-film technology. The substrate of the sensor is AlN ceramic due to its outstanding thermal resistance at high temperature; and its conductors (the radiation patch and the ground under the substrate) are silver-palladium alloy sintered form silver–palladium paste. A vector network analyzer reveals that the sensor’s operating range extends to 700 °C. Furthermore, its resonant frequency decreases from 2.20 GHz to 2.13 GHz with increasing temperature from room temperature (25 °C) to 700 °C, with an absolute sensitivity of 104.77 KHz/°C. Our work verifies the feasibility of measuring high temperatures using AlN-based patch antenna wireless passive temperature sensors, and provides a new material and temperature sensitive structure for high-temperature measurement in harsh environments.

Keywords:
Materials science HFSS Optoelectronics Ceramic Antenna (radio) Substrate (aquarium) Patch antenna Microstrip antenna Operating temperature Wireless sensor network Dielectric Electronic engineering Electrical engineering Composite material Computer science

Metrics

30
Cited By
1.11
FWCI (Field Weighted Citation Impact)
45
Refs
0.75
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Acoustic Wave Resonator Technologies
Physical Sciences →  Engineering →  Biomedical Engineering
Advanced Sensor Technologies Research
Physical Sciences →  Engineering →  Biomedical Engineering
GaN-based semiconductor devices and materials
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics

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