Simplified approach to detect dielectric constant using a low-cost microfluidic quarter mode substrate-integrated waveguide

Citations

WEB OF SCIENCE

6
Citations

SCOPUS

9

초록

Liquid materials’ characterization using commercial probes and radio frequency techniques is expensive and complex. This study proposes a compact and cost-effective radio frequency sensor system to measure the dielectric constant using a three-material calibration. The simplified approach measures reflection coefficient magnitudes for all four materials rather than the complex values in conventional permittivity detection systems. We employ a sensor module based on a circular substrate-integrated waveguide with measured unloaded quality factor = 910 to ensure measurement reliability. Miniaturized quarter-mode substrate-integrated waveguide resonators are integrated with four microfluidic channels containing three known materials and one unknown analyte. Step-wise measurement and linearity ensures maximum 4% error for the dielectric constant compared with results obtained using a high-performance commercial product. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.

키워드

Calibration; Chemical sensor; Dielectric constant detection; RF sensor; Substrate-integrated waveguide; Cost effectiveness; Costs; Microfluidics; Radio waves; Commercial products; Detection system; Material calibrations; Measurement reliabilities; Microfluidic channel; Radio frequency sensors; Radio frequency techniques; Unloaded quality factors; Substrate integrated waveguides
제목
Simplified approach to detect dielectric constant using a low-cost microfluidic quarter mode substrate-integrated waveguide
저자
Salim, A.; Memon, M.U.; Jeong, H.; Lim, Sungjoon
DOI
10.3390/s20174985
발행일
2020-09
유형
Article
저널명
Sensors
권
20
호
17
페이지
1 ~ 15

파일 다운로드

Thumbnail