NoA loop feed meander-line Antenna (LFMLA) RFID tag on a relatively low dielectric constant substrate operates on the European UHF band 865-868 MHz is presented. The tag modeling is analyzed using two different electromagnetic simulator HFSS and CST. A prototype tag antenna is constructed and measured for validation. The input impedance of the proposed antenna is verified against the simulated data results, the measured and simulated results are found to be in good agreement. The compact size tag antenna shows excellent impedance matching to the typical input impedance of a RFID integrated circuit chip and a significant improvement in reading range up to 5 meters
The main aim of this research is to reduce the size of RFID tag antenna using several miniaturizatio...
The performance of commercial Radio Frequency Identification (RFID) tags is primarily limited by pre...
This paper proposes a tag antenna for radio frequency identification (RFID) food system. The RFID ta...
A semi-circle looped vertically omnidirectional radiation (VOR) patterned tag antenna for UHF (919-9...
The paper deals with the design of passive broadband tag antenna for Ultra-High Frequency (UHF) band...
This paper displays a new design of a small antenna proposed for radio-frequency identification (RFI...
This paper proposes four designs of UHF RFID antenna tag with two different radiating element, coppe...
For the past decades, the demand for the radio frequency identification (RFID) system has increased ...
Radio frequency identification (RFID) systems use electromagnetic waves to transfer identification d...
A semi-circle looped vertically omnidirectional radiation (VOR) patterned tag antenna for UHF (919-9...
International audienceThis work presents the design of an antenna for UHF RFID tags for supply and r...
In this research, two low profile metal mountable patch antenna designs for passive ultra-high frequ...
This paper addresses the performance evaluation of a modified square loop antenna design for UHF RFI...
International audienceIn this paper, the performance of Near-Field UHF RFID systems is investigated ...
A planar wideband patch antenna for ultra-high frequency (UHF) radio frequency identification (RFID)...
The main aim of this research is to reduce the size of RFID tag antenna using several miniaturizatio...
The performance of commercial Radio Frequency Identification (RFID) tags is primarily limited by pre...
This paper proposes a tag antenna for radio frequency identification (RFID) food system. The RFID ta...
A semi-circle looped vertically omnidirectional radiation (VOR) patterned tag antenna for UHF (919-9...
The paper deals with the design of passive broadband tag antenna for Ultra-High Frequency (UHF) band...
This paper displays a new design of a small antenna proposed for radio-frequency identification (RFI...
This paper proposes four designs of UHF RFID antenna tag with two different radiating element, coppe...
For the past decades, the demand for the radio frequency identification (RFID) system has increased ...
Radio frequency identification (RFID) systems use electromagnetic waves to transfer identification d...
A semi-circle looped vertically omnidirectional radiation (VOR) patterned tag antenna for UHF (919-9...
International audienceThis work presents the design of an antenna for UHF RFID tags for supply and r...
In this research, two low profile metal mountable patch antenna designs for passive ultra-high frequ...
This paper addresses the performance evaluation of a modified square loop antenna design for UHF RFI...
International audienceIn this paper, the performance of Near-Field UHF RFID systems is investigated ...
A planar wideband patch antenna for ultra-high frequency (UHF) radio frequency identification (RFID)...
The main aim of this research is to reduce the size of RFID tag antenna using several miniaturizatio...
The performance of commercial Radio Frequency Identification (RFID) tags is primarily limited by pre...
This paper proposes a tag antenna for radio frequency identification (RFID) food system. The RFID ta...