Journal
IEEE SENSORS JOURNAL
Volume 16, Issue 16, Pages 6147-6148Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSEN.2016.2582847
Keywords
Intelligent packaging; low-cost; moisture sensor; organic material
Funding
- Swedish Governmental Agency for Innovation Systems, Middlesex University, U.K.
- University of Engineering and Technology Taxila, Pakistan
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A compact, flexible 24-b dual-polarized chip-less radio frequency identification tag with a size of 20.6mm x 19.9mm is realized. The tag structure is optimized and analyzed for Taconic, Kapton HN and organic substrate. The prototype fabricated on HP photopaper with silver nanoparticles-based conductive ink is exhibiting a behavior of moisture sensor. The proposed moisture sensor tag has a bandwidth of 13.5GHz. The direct printability of moisture sensor tag makes it suitable for intelligent packaging and various low-cost applications.
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