5 Ntag213 Reading Range Micro FPC NFC RFID Tag Sticker Access Control Qme 10pcs

NTAG213 Micro FPC NFC RFID Tag Stickers 5×5mm – 5 Pack

10pcs
$7.42
Sale price  $7.42 Regular price  $8.35
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5 Ntag213 Reading Range Micro FPC NFC RFID Tag Sticker Access Control Qme 10pcs

NTAG213 Micro FPC NFC RFID Tag Stickers 5×5mm – 5 Pack

$7.42
Sale price  $7.42 Regular price  $8.35
Color

Upgrade your smart tagging and automation projects with these NTAG213 Micro FPC NFC RFID Tag Stickers. Engineered for precision, each ultra-thin flexible tag measures just 5 × 5mm — one of the smallest NFC stickers available — making it ideal for embedding in tight spaces, wearables, smart labels, IoT projects, supply chain tracking, and more.

Built on a Flexible Printed Circuit (FPC) substrate, these tags are thin, lightweight, and discreet. They operate on the universal 13.56 MHz NFC frequency and are compatible with the widely supported NTAG213 protocol, working seamlessly with NFC-enabled smartphones, tablets, and readers. Available in 2 color options to suit your application needs.

Please Note: These tags use the NTAG213 communication protocol. They are not compatible with the MifareClassic protocol commonly used in door access control or elevator systems, and should not be used as door access or building entry cards.

Key Features

  • Chip: NTAG213 — 144 bytes user memory, ISO/IEC 14443 Type A compliant
  • Frequency: 13.56 MHz (universal NFC standard)
  • Dimensions: Ultra-compact 5 × 5mm
  • Material: FPC (Flexible Printed Circuit) — thin, flexible, and durable
  • Pack Size: 5 tags included
  • Color Options: 2 variants available
  • Compatible: Works with NFC-enabled smartphones and standard NFC readers
  • Use Cases: Smart labels, IoT automation, supply chain management, DIY electronics, wearable tech, craft projects, and more

What Can You Do With These NFC Tags?

  • Program them to open URLs, trigger phone automations, share contact info, or launch apps
  • Embed into products or packaging for supply chain tracking
  • Use in DIY electronics and maker projects
  • Attach to small objects or wearables thanks to the micro 5×5mm form factor
  • Integrate into craft and creative tech projects

Why Choose NTAG213?

The NTAG213 chip is one of the most widely supported NFC ICs in the world, compatible with virtually all modern NFC-enabled devices. Its compact memory, fast read speeds, and broad device compatibility make it the go-to choice for developers, makers, and hobbyists alike. Learn more about NFC and RFID standards at the National Institute of Standards and Technology (NIST).

In summary: These 5×5mm NTAG213 Micro FPC NFC RFID Tag Stickers deliver professional-grade NFC functionality in an incredibly compact package — perfect for smart labeling, DIY tech, and innovative projects of all kinds.

Frequently Asked Questions

Q: What are NTAG213 Micro FPC NFC RFID Tag Stickers used for?

A: These NTAG213 NFC tag stickers are used for a wide range of applications including smart labeling, IoT automation, supply chain management, wearable tech, DIY electronics, and creative maker projects. Simply program them with any NFC-enabled device to trigger actions, store URLs, share contact details, and more.

Q: Are these NFC tags compatible with door access control systems?

A: No. These tags use the NTAG213 protocol operating at 13.56 MHz. They are not compatible with the MifareClassic protocol used by most door access control and elevator systems. They are designed for NFC data applications, not physical access control.

Q: What devices can read these NTAG213 NFC stickers?

A: These stickers are compatible with virtually all NFC-enabled smartphones (Android and iPhone 7 or later), tablets, and standard NFC readers that support ISO/IEC 14443 Type A. No special app is required for basic reading on most modern smartphones.

Q: How small are these NFC tag stickers?

A: Each tag measures just 5 × 5mm, making them among the smallest commercially available NFC stickers. The flexible FPC (Flexible Printed Circuit) construction allows them to be embedded in tight spaces, curved surfaces, and thin materials without adding noticeable bulk.

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