Buy the LMR 200 RFID Antenna Cable with an RP-TNC (male) connector on one end and an N-type (male) connector on the other end, built for reliable RF signal transmission between UHF RFID readers and antennas from various brands. Manufactured with LMR 200 50 Ω low-loss coaxial cable, 1m in size, it minimises signal loss to ensure stable RFID system performance.
Its shielded construction helps reduce electromagnetic interference (EMI), while the durable jacket supports long-term use in warehouses, retail, logistics, manufacturing, and industrial RFID environments. The 5-meter length is ideal for reader-to-antenna connections over medium distances.
Compatible with 860–960 MHz UHF RFID systems, this coaxial cable features RP-TNC and N-type connectors for seamless integration with fixed RFID readers like Zebra FZ9600 and Impinj R720 and various RF antennas. It is also available in multiple cable lengths to support different installation requirements.
EnCstore, as a leading provider of AIDC and industrial automation products in India, offers all kinds of RFID and Barcode scanners, printers and labels, with pan-India shipping, at industry-best prices.
Key Applications of LMR 200 RFID Antenna Cable
• Connecting UHF RFID readers to RFID antennas • Warehouse inventory management • Retail inventory tracking • Logistics and distribution centres • Manufacturing automation • Asset tracking systems • Supply chain visibility • Industrial RFID installations • Access control systems • IoT and RF communication applications
Why Choose LMR 200 Low-Loss RFID Antenna Cable?
• Manufaesigned for reliable RF signal transmission with minimal attenuation. • Shielded construction helps reduce electromagnetic interference (EMI). • Suitable for UHF RFID applications operating between 860–960 MHz. • Flexible cable construction for easy installation. • Durable PE outer jacket for long service life. • Compatible with fixed RFID readers and RFID antennas using RP-TNC and SMA connectors. • Available in multiple cable lengths for different installation requirements. |