UHF RFID Flag Label – Coated Paper – NXP® UCODE® 9 – 55×30 mm
Price range: $18.00 through $513.00
This UHF RFID flag label uses the NXP® UCODE® 9 chip and features a premium coated paper surface with aluminum antenna and a durable double-sided adhesive.
Its flag-style design lifts the antenna off the surface to reduce interference and improve read accuracy, making it highly reliable for critical tracking tasks.
Size: 55 × 30 mm
Chip Type: NXP® UCODE® 9
Operating Frequency: UHF 860-960 MHz
Communication Protocol: ISO/IEC 18000-63, EPCglobal Gen 2v2
EPC Memory: 96 bits

Ideal for applications in the medical industry, such as device management, inventory control, and asset tracking in hospitals and laboratories.
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What is a UHF RFID Flag Label with NXP® UCODE® 9?
Radio-frequency identification (RFID) is a foundational technology for modern asset tracking, particularly in sensitive environments like laboratories and healthcare. The UHF RFID flag label using the NXP® UCODE® 9 chip offers a specialized solution for environments requiring minimal signal interference and accurate data capture — especially when traditional label formats fall short.
Key Features
- Optimized design for high-precision tracking in sensitive environments
- Reliable UHF performance with minimal signal obstruction
- Flag-style layout reduces surface contact, improving read accuracy
- Strong adhesion and durable coated paper construction
How Does the UHF RFID Flag Label Work?
The label uses a “flag” structure, allowing the antenna portion to remain suspended away from the item’s surface. This design reduces electromagnetic interference caused by materials like metal or liquids. The embedded NXP® UCODE® 9 chip facilitates high-speed data communication across UHF frequency bands, while the coated paper and dual-layer adhesive offer long-term durability.
Applications and Benefits
- Laboratories: Enables traceable sample handling and equipment tracking
- Healthcare: Streamlines medical device management and inventory control
This label combines a smart structure with advanced chip technology to meet the rigorous tracking needs of lab and healthcare workflows.
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