Description
AWID’s SV-UHF-0-0 Side View Mirror Tag is a compact, hands-free UHF RFID solution designed for vehicles, built for fleets, gated facilities, corporate campuses, and parking environments that require reliable, long-range identification without altering a vehicle’s appearance.
- Format & Dimensions: Narrow strip design measuring 4-3/8 inches wide by 1/2 inch high, with a thickness under 1/32 inch for discreet, non-intrusive placement.
- Reading Range: Delivers up to 25 feet (7.6 meters) read distance from the UHF reader, enabling hands-free vehicle identification and faster entry workflows.
- Mounting Method: Self-adhesive, permanently adheres to the outside mirror shell and is designed for one-time use; removal disables the tag to prevent reuse.
- Placement & Orientation: Flexible placement across outside-mirror locations; bottom-edge placement on light-colored mirrors offers low visibility while remaining readable; orientation can be the tag surface or edge facing the reader, optimized for the side where the UHF reader is installed.
- Security & Tamper-Evident: The tag becomes disabled if removed, providing a tamper-evident solution suitable for controlled access scenarios and reducing tag reuse risk.
- What’s Included: Pack of 50 tags with mounting instructions; technical specifications available for quick deployment; note: non-returnable European product where applicable.
By leveraging up to a 25-foot read range, AWID’s Side View Mirror Tag reduces the need for manual checks and accelerates entry processes for fleets, facilities, and parking environments. The one-time-use, tamper-evident design helps maintain security in controlled access scenarios, while its slim, low-profile form keeps the vehicle’s appearance intact. This solution is ideal for fleet management, gated facilities, corporate campuses, and parking environments where reliable, long-range vehicle identification is essential. For best results, follow the included mounting instructions and place the tag on the bottom edge of light-colored mirrors to balance visibility with readability.

