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This paper has presented a segmented loop antenna for UHF near-field RFID applications. The challenge is to keep the current along the loop in equal magnitude and in-phase. The .Sign In - A segmented loop antenna for UHF near-field RFID - IEEE XploreReferences - A segmented loop antenna for UHF near-field RFID - IEEE Xplore
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Authors - A segmented loop antenna for UHF near-field RFID - IEEE XploreThis question is for testing whether you are a human visitor and to prevent .Abstract: This work presents the development and design of a loop antenna for dual-band RFID applications at 860 – 960 MHz and 2.4 GHz. The antenna is compact and has a loop structure .This paper has presented a segmented loop antenna for UHF near-field RFID applications. The challenge is to keep the current along the loop in equal magnitude and in-phase. The proposed segmented loop antenna is able to produce a strong and uniform magnetic field distribution even though the antenna is electrically large with the perimeter of .
Abstract: This work presents the development and design of a loop antenna for dual-band RFID applications at 860 – 960 MHz and 2.4 GHz. The antenna is compact and has a loop structure with vias to enhance the radiating efficiency.
A rule of thumb is that near-field UHF RFID is sufficient up to a distance of about one wavelength, which in UHF frequencies equals about 30 cm or 12 inches. If the reading distance exceeds that, the tag is required to have an antenna structure that is . A capacitively loaded, inductively coupled fed loop antenna with an omnidirectional radiation pattern for UHF radio frequency identification (RFID) tags is proposed. The loop is made up of a typical magnetic coupling antenna, which includes a large loop antenna and a small loop periodic antenna. Large loop antennas are generally designed to be larger in size in order to achieve a larger reading area.
This work proposes an enlarged segmented loop antenna for ultra-high frequency (UHF) near field (NF) radio frequency identification (RFID) applications. The proposed antenna is based on a compact interdigital capacitor embedded periodically into a groundless loop. An ultra-high frequency (UHF) travelling wave antenna based on complementary split ring resonator (CSRR) element is investigated in this study for pure near-field radio frequency identification (RFID) system. This letter presents a passive UHF printed loop antenna with left-handed loading. The RFID reader antenna can work at near- and far-field operation within the European UHF (865-868 MHz). A segmented loop antenna is presented for ultra-high frequency (UHF) near-field radio frequency identification (RFID) applications.
A novel type of radio frequency identiflcation (RFID) reader antenna is proposed for mobile ultra-high frequency (UHF) RFID device. By folded-dipole loop structure with parasitic element, a small antenna size of 31⁄31⁄1:6mm 3 is achieved.
This paper has presented a segmented loop antenna for UHF near-field RFID applications. The challenge is to keep the current along the loop in equal magnitude and in-phase. The proposed segmented loop antenna is able to produce a strong and uniform magnetic field distribution even though the antenna is electrically large with the perimeter of .Abstract: This work presents the development and design of a loop antenna for dual-band RFID applications at 860 – 960 MHz and 2.4 GHz. The antenna is compact and has a loop structure with vias to enhance the radiating efficiency.A rule of thumb is that near-field UHF RFID is sufficient up to a distance of about one wavelength, which in UHF frequencies equals about 30 cm or 12 inches. If the reading distance exceeds that, the tag is required to have an antenna structure that is .
A capacitively loaded, inductively coupled fed loop antenna with an omnidirectional radiation pattern for UHF radio frequency identification (RFID) tags is proposed.
The loop is made up of a typical magnetic coupling antenna, which includes a large loop antenna and a small loop periodic antenna. Large loop antennas are generally designed to be larger in size in order to achieve a larger reading area.This work proposes an enlarged segmented loop antenna for ultra-high frequency (UHF) near field (NF) radio frequency identification (RFID) applications. The proposed antenna is based on a compact interdigital capacitor embedded periodically into a groundless loop.
An ultra-high frequency (UHF) travelling wave antenna based on complementary split ring resonator (CSRR) element is investigated in this study for pure near-field radio frequency identification (RFID) system. This letter presents a passive UHF printed loop antenna with left-handed loading. The RFID reader antenna can work at near- and far-field operation within the European UHF (865-868 MHz). A segmented loop antenna is presented for ultra-high frequency (UHF) near-field radio frequency identification (RFID) applications.
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