Review of Batteryless Wireless Sensors Using Additively Manufactured Microwave Resonators

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초록

The significant improvements observed in the field of bulk-production of printed microchip technologies in the past decade have allowed the fabrication of microchip printing on numerous materials including organic and flexible substrates. Printed sensors and electronics are of significant interest owing to the fast and low-cost fabrication techniques used in their fabrication. The increasing amount of research and deployment of specially printed electronic sensors in a number of applications demonstrates the immense attention paid by researchers to this topic in the pursuit of achieving wider-scale electronics on different dielectric materials. Although there are many traditional methods for fabricating radio frequency (RF) components, they are time-consuming, expensive, complicated, and require more power for operation than additive fabrication methods. This paper serves as a summary/review of improvements made to the additive printing technologies. The article focuses on three recently developed printing methods for the fabrication of wireless sensors operating at microwave frequencies. The fabrication methods discussed include inkjet printing, three-dimensional (3D) printing, and screen printing.

키워드

inkjet printing; 3D printing; screen printing; RF sensors; wireless; RF resonators; COMPLEX PERMITTIVITY CHARACTERIZATION; DIELECTRIC-PROPERTIES; PRINTING TECHNOLOGY; AQUEOUS-SOLUTIONS; PAPER SUBSTRATE; GAS SENSOR; ELECTRONICS; PERFORMANCE; FABRICATION; ANTENNAS
제목
Review of Batteryless Wireless Sensors Using Additively Manufactured Microwave Resonators
저자
Memon, Muhammad Usman; Lim, Sungjoon
DOI
10.3390/s17092068
발행일
2017-09
유형
Review
저널명
Sensors
권
17
호
9

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