High Temperature Resistant RFID on Metal Tag
RFID On-Metal Tags are specially designed for use on metallic surfaces or in high-dielectric environments where standard RFID tags typically fail. By adopting optimized antenna structures and insulating layers, these tags ensure reliable performance and stable read/write capability on metal assets. They are widely used in asset tracking, equipment management, warehouse logistics, industrial manufacturing, and medical device management.
Inquiry- Feature
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FEATURE
Metal-Surface Optimized – Specially designed structure ensures stable operation when mounted on metal or conductive surfaces.
Extended Read Range – Up to 3–10 meters with fixed readers (depending on model and environment).
Rugged & Durable – Industrial-grade encapsulation with waterproof, dustproof, and shock-resistant performance.
Flexible Installation – Options include 3M adhesive, screw mounting, rivets, or cable ties for various applications.
Data Security – Supports EPC, User Memory, and TID areas with password protection and anti-cloning features.
Long Lifecycle – More than 100,000 read/write cycles and data retention of over 10 years.
Global Standard Compliance – Compatible with EPC Global Class 1 Gen 2 and ISO/IEC 18000-6C protocols.

PARAMETER
Category | Specification |
---|---|
Operating Frequency | 860–960 MHz (UHF, global) / 13.56 MHz (HF optional) |
Protocol Standard | EPC Class 1 Gen 2 / ISO 18000-6C |
Chip Options | Impinj Monza R6 / Alien Higgs-3 / NXP UCODE (optional) |
Memory Capacity | EPC: 96–128 bits (up to 512 bits) User Memory: 512 bits – 2 Kbits |
Read Range | 3–10 m (fixed reader) 1–3 m (handheld reader) |
Mounting Methods | 3M adhesive, screws, rivets, cable ties |
Housing Material | Industrial ABS / PC plastic + epoxy resin sealing |
Operating Temperature | -40℃ to +85℃ |
Storage Temperature | -55℃ to +125℃ |
Protection Rating | IP65–IP68 (depending on model) |
Shock Resistance | Withstands 1.5 m drop, high-pressure impact resistant |
Data Retention | ≥ 10 years |
Endurance | ≥ 100,000 read/write cycles |