
Original: $272.47
-65%$272.47
$95.36The Story
The Zebra AN720 RFID UHF Antenna Reader is a compact yet rugged antenna designed to provide exceptional performance in both indoor and outdoor environments. Engineered for high read sensitivity, it ensures accurate and efficient tracking of RFID tags across various distances, making it ideal for applications such as retail inventory management, manufacturing workflows, supply chain operations, and access control. Its durable, IP67-rated enclosure protects it from dust, moisture, and harsh weather conditions, enabling reliable performance even in challenging environments like warehouses, production lines, or outdoor loading docks. With its small footprint and lightweight design, the AN720 can be easily mounted on walls, ceilings, or other surfaces, ensuring seamless integration into space-constrained areas.

Details & Craftsmanship
Every detail has been carefully considered to bring you the perfect product.

Details & Craftsmanship
Every detail has been carefully considered to bring you the perfect product.

Details & Craftsmanship
Every detail has been carefully considered to bring you the perfect product.

Details & Craftsmanship
Every detail has been carefully considered to bring you the perfect product.
Description
The Zebra AN720 RFID UHF Antenna Reader is a compact yet rugged antenna designed to provide exceptional performance in both indoor and outdoor environments. Engineered for high read sensitivity, it ensures accurate and efficient tracking of RFID tags across various distances, making it ideal for applications such as retail inventory management, manufacturing workflows, supply chain operations, and access control. Its durable, IP67-rated enclosure protects it from dust, moisture, and harsh weather conditions, enabling reliable performance even in challenging environments like warehouses, production lines, or outdoor loading docks. With its small footprint and lightweight design, the AN720 can be easily mounted on walls, ceilings, or other surfaces, ensuring seamless integration into space-constrained areas.























