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We developed a screen-printed, flexible, wireless temperature sensor tag using passive UHF RFID using printed, flexible dipole antennas. These miniaturized antennas .
We would like to show you a description here but the site won’t allow us.A compact folded printed monopole tag antenna loaded with an inductor for passive UHF RFID applications is presented. We developed a screen-printed, flexible, wireless temperature sensor tag using passive UHF RFID using printed, flexible dipole antennas. These miniaturized antennas featured moderate gain.
A compact folded printed monopole tag antenna loaded with an inductor for passive UHF RFID applications is presented.
In this paper, a printed monopole antenna with high-gain and dual-band characteristics for applications in wireless local area networks and the internet of things sensor networks is presented. Here, we report the flexible ultrawideband Ti3C2 monopole antenna by combining strategies of interfacial modification and advanced extrusion printing technology. In this paper, we propose a compact wideband tag antenna for UHF RFID systems. To miniaturize the size, an inductive coupled parasitic element is used between the two lines of a folded dipole.
Abstract: In this paper, three compact printed monopole antennas are designed for use in UHF RFID that contain a chip with input impedance of 8.2-J61Ω. The challenges in the design of these antennas are conjugate matching of the antenna to the chip while achieving a small layout area. In this article, a novel p-shaped printed monopole antenna is first proposed to operate simultaneously at the 2.45 and 5.8 GHz bands for radio frequency identification tag. Printed on a standard 1.6 mm FR4 substrate material, the printed monopole antenna has been demonstrated to provide an ultra wide 10 dB return loss bandwidth with .
A UHF printed meander monopole RFID tag antenna incorporating an artificial magnetic conductor (AMC) as the reflector is presented. The proposed antenna is designed to operate with a chip having an input impedance of 8.2-j61 Ω.
Design A Low Profile Printed Monopole Antenna for RFID Applications. P.Prabhu1, C.Poongodi2, P.Sarwesh3, Dr. A. Shanmugam4. In this paper, a tunable compact UHF RFID metal tag is designed based on CPW open stub feed PIFA antenna. By changing the length of the open stub, the impedance of the PIFA antenna could be tuned in a large scale for conjugate impedance matching. We developed a screen-printed, flexible, wireless temperature sensor tag using passive UHF RFID using printed, flexible dipole antennas. These miniaturized antennas featured moderate gain.A compact folded printed monopole tag antenna loaded with an inductor for passive UHF RFID applications is presented.
In this paper, a printed monopole antenna with high-gain and dual-band characteristics for applications in wireless local area networks and the internet of things sensor networks is presented.
monopole antenna with dual band
Here, we report the flexible ultrawideband Ti3C2 monopole antenna by combining strategies of interfacial modification and advanced extrusion printing technology.
In this paper, we propose a compact wideband tag antenna for UHF RFID systems. To miniaturize the size, an inductive coupled parasitic element is used between the two lines of a folded dipole.Abstract: In this paper, three compact printed monopole antennas are designed for use in UHF RFID that contain a chip with input impedance of 8.2-J61Ω. The challenges in the design of these antennas are conjugate matching of the antenna to the chip while achieving a small layout area. In this article, a novel p-shaped printed monopole antenna is first proposed to operate simultaneously at the 2.45 and 5.8 GHz bands for radio frequency identification tag. Printed on a standard 1.6 mm FR4 substrate material, the printed monopole antenna has been demonstrated to provide an ultra wide 10 dB return loss bandwidth with .
A UHF printed meander monopole RFID tag antenna incorporating an artificial magnetic conductor (AMC) as the reflector is presented. The proposed antenna is designed to operate with a chip having an input impedance of 8.2-j61 Ω.
Design A Low Profile Printed Monopole Antenna for RFID Applications. P.Prabhu1, C.Poongodi2, P.Sarwesh3, Dr. A. Shanmugam4.
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printed monopole antenna pifa rfid tag|monopole antenna specs