planar near-field rfid reader antenna for item-level tagging In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag- ging. The proposed antenna was designed to have a strong and . In the third quarter of 2021, card-not-present volume on Mastercard-branded programs was at 145% of the comparable 2019 amount. Yet the stat is liable to misinterpretation. The use of the term card not present follows the standard .
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In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform .
In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag- ging. The proposed antenna was designed to have a strong and .
In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform H z -field over a broad antenna aperture to identify the various items with stable reading performance. In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag- ging. The proposed antenna was designed to have a strong and uniform -field.
Planar Near-Field RFID Reader Antenna for Item-Level Tagging. Chihyun Cho, Chuyong Lee, Jeongki Ryoo, and Hosung Choo, Senior Member, IEEE. Abstract—In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag-ging.Planar Near-Field RFID Reader Antenna for Item-Level TaggingFor the so-called smart shelf antenna applications, item RFID tags are typically placed on the reader antenna surface and may occupy various interrogation volumes within the reactive and radiative near-field zones.In this paper we presented a novel planar RFID reader antenna for near-field UHF communications. The proposed antenna achieves a strong and uniformly distributed near magnetic field using the concept of opposite-directed currents.
In the design of ultra-high-frequency (UHF) radio frequency identification (RFID) near-field antennas, realising an antenna with electrically large size, wide frequency band, and far read range has. A UHF band near-field antenna using microstrip lines and stubs for tagging stacked tags in a smart table is presented. It is shown that a suitable near-field reader antenna can be designed from signal lines, ground lines, and several stubs to generate coupled electric and magnetic fields.A near-field switched loop antenna array with a circular defected ground structure for precise positioning systems is presented. By switching the loop array, the positions of the densely placed small-sized radio frequency identification tags can be identified.
In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform \mbiHz -field over a broad antenna aperture to identify the various items with stable reading performance. In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform H z -field over a broad antenna aperture to identify the various items with stable reading performance. In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag- ging. The proposed antenna was designed to have a strong and uniform -field.
Planar Near-Field RFID Reader Antenna for Item-Level Tagging. Chihyun Cho, Chuyong Lee, Jeongki Ryoo, and Hosung Choo, Senior Member, IEEE. Abstract—In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag-ging.
Planar Near-Field RFID Reader Antenna for Item-Level TaggingFor the so-called smart shelf antenna applications, item RFID tags are typically placed on the reader antenna surface and may occupy various interrogation volumes within the reactive and radiative near-field zones.In this paper we presented a novel planar RFID reader antenna for near-field UHF communications. The proposed antenna achieves a strong and uniformly distributed near magnetic field using the concept of opposite-directed currents.
In the design of ultra-high-frequency (UHF) radio frequency identification (RFID) near-field antennas, realising an antenna with electrically large size, wide frequency band, and far read range has. A UHF band near-field antenna using microstrip lines and stubs for tagging stacked tags in a smart table is presented. It is shown that a suitable near-field reader antenna can be designed from signal lines, ground lines, and several stubs to generate coupled electric and magnetic fields.
A near-field switched loop antenna array with a circular defected ground structure for precise positioning systems is presented. By switching the loop array, the positions of the densely placed small-sized radio frequency identification tags can be identified.
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Clipper cards contain an NXP Semiconductors MIFARE DESFire (MF3ICD40) or MIFARE DESFire EV1 (MF3ICD41) integrated circuit inside the card. The card operates on the 13.56 MHz range, putting it into the Near-Field Communication category. Because the card uses NFC technology, any NFC-enabled device can read the serial number, travel history, and current balance on the card.
planar near-field rfid reader antenna for item-level tagging|Planar Near