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RFID EMI Shielding Fabric 100×145cm | 5G WiFi Blocking Cloth
RFID EMI Shielding Fabric 100×145cm | 5G WiFi Blocking Cloth
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Upgrade your electromagnetic interference (EMI) protection projects with this professional-grade RFID & EMI Shielding Fabric. Engineered from a woven PET/Ni+Cu+Ni (Nickel-Copper-Nickel) microfiber construction, this conductive fabric delivers exceptional signal-blocking performance across 4G, 5G, WiFi, and RFID frequencies — making it ideal for both industrial and personal shielding applications.
With an ultra-low surface resistance of just 0.03–0.05 Ohm and an electric field shielding effectiveness of 80–95 dB, this fabric stands among the most effective EMI shielding textiles available. Its silver-tone metallic finish is as practical as it is sleek, and the generous 100cm × 145cm roll gives you ample material for a wide variety of projects.
Key Features
- Broad-Spectrum Signal Blocking: Effectively attenuates 4G, 5G, WiFi, RFID, and other high-frequency electromagnetic signals.
- Ultra-Low Resistance: Surface resistance of 0.03–0.05 Ohm for maximum conductivity and shielding efficiency.
- High Shielding Effectiveness: 80–95 dB electric field radiation attenuation — industry-leading performance.
- Versatile Woven Construction: Made from Rayon/Polyester (PET) base with Nickel-Copper-Nickel plating; flexible, cuttable, and easy to work with.
- Wide Application Range: Suitable for shielding garments, anti-static clothing, curtains, I/O interface gaskets, high-frequency industrial furnaces, and more.
- Generous Size: 100cm × 145cm (approx. 39" × 57") — plenty of material for large or multiple projects.
- Customisable: Can be cut and sewn to fit custom geometries and shielding gasket designs.
Specifications
| Composition | PET / Ni+Cu+Ni (Nickel-Copper-Nickel) |
| Dimensions | 100cm × 145cm |
| Surface Resistance | 0.03–0.05 Ohm |
| Shielding Effectiveness | 80–95 dB (electric field) |
| Color | Silver |
| Fabric Type | Woven Microfiber |
| Occasion | Industrial Protective Gear & DIY Projects |
| Country of Origin | Made in China |
Applications
- Industrial high-frequency furnace shielding
- Mobile communications equipment enclosures
- RFID-blocking pouches, wallets, and sleeves
- EMI shielding garments and anti-static clothing
- Signal-blocking curtains and room dividers
- I/O interface pads and custom shielding gaskets
- DIY electronics enclosures and Faraday cages
Package Contents
- 1× EMI Shielding Fabric Roll (100cm × 145cm)
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For more information on electromagnetic compatibility (EMC) standards and shielding best practices, visit the FCC's resource center or read about EMI/EMC guidelines at EPA.gov – Radiofrequency Radiation.
Learn more: Electromagnetic shielding
Frequently Asked Questions
Q: What signals does this RFID EMI shielding fabric block?
A: This conductive shielding fabric is designed to attenuate a broad range of high-frequency electromagnetic signals, including 4G, 5G, WiFi, and RFID frequencies. With 80–95 dB of electric field shielding effectiveness and an ultra-low resistance of 0.03–0.05 Ohm, it is highly effective for industrial and personal EMI shielding projects.
Q: Can I cut and sew this EMI shielding fabric for custom projects?
A: Yes! The woven microfiber construction allows you to cut this fabric to any custom shape or size. It can be sewn into shielding garments, RFID-blocking pouches, curtains, or shaped into gaskets for I/O interfaces and enclosures. Standard fabric tools work well with this material.
Q: How large is one roll of the shielding fabric?
A: Each roll measures 100cm × 145cm (approximately 39 inches × 57 inches), providing ample material for most DIY and small industrial shielding applications. The generous size makes it suitable for curtains, clothing panels, or multiple smaller projects from a single roll.
Q: What is the fabric made from?
A: The fabric is constructed from a PET (Polyester/Rayon) base that has been metallised with a Nickel-Copper-Nickel (Ni+Cu+Ni) layered coating. This tri-layer metallic plating is what delivers the excellent conductivity and high-frequency signal attenuation performance of the fabric.
