RFID Applications
Antennas
Engineered for seamless integration into modern smart environments, these RFID UHF antennas feature ultra-thin form factors, circular polarization, and wide hemispherical radiation patterns to deliver reliable RFID performance in demanding applications. These compact RFID antennas remain discreet and easy to integrate into space-constrained applications while providing consistent long-range RFID tag detection and high-performance UHF RFID coverage.

Designed For
RFID Applications
Smart Shelves
Smart Panels
The AXL P11 94 is a high-performance UHF RFID antenna engineered for reliable wide-area tag detection across the FCC 902–928 MHz band. Utilizing advanced patch antenna technology, it delivers stable RFID performance with a broad hemispherical radiation pattern, 90° beamwidth coverage, right-hand elliptical polarization (RHEP), and up to 4.8 dBiC peak gain for dependable readability in demanding RF environments.

The AXL P12 is a versatile UHF RFID antenna designed to balance coverage area and read distance across the FCC 902–928 MHz band. Featuring a 95° × 60° beam pattern, left-hand circular polarization (LHCP), and up to 7.0 dBiC peak gain, it provides reliable tag detection at extended ranges while maintaining strong performance across varying tag orientations and deployment scenarios.

The AXL P14 is a high-gain UHF RFID antenna engineered for targeted, long-range RFID applications in the FCC 902–928 MHz band. Its focused 90° × 30° beam pattern concentrates RF energy where it matters most, while LHCP polarization and up to 9.8 dBiC peak gain maximize read accuracy and distance. It is ideal for portals, overhead installations, and other applications requiring precise coverage and exceptional read performance.

The AXL EL95 is a compact UHF RFID antenna engineered for reliable wide-area tag detection across the FCC 902–928 MHz band. Utilizing advanced patch antenna technology, it delivers stable RFID performance with a hemispherical radiation pattern, 90° beamwidth coverage in both elevation and azimuth, linear polarization (LP), and up to 4.5 dBiC peak gain for dependable readability in demanding RF environments.
