Cyber Nickel Copper 1 Faraday Fabric EMF Shielding 50 inch Width Signal Blocking Material - Plain Weave… -50 inch x 1-

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SKU:
YTH521698
UPC:
760079748110
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High Performance CYBER Faraday Fabrics from FARADAY DEFENSE ? TESTED PERFORMANCE - Use this high-grade faraday fabric for all your RF shielding needs. NC-I has the high conductivity. CYBER NC-I is used by law enforcement, military, and defense contractors for secure communications, signal blocking, and forensics - TESTED: by Key Stone Compliance, LLC TEST STANDARDS: MIL-STD-188-125-1 finalized June 6, 2018, Tested and certified to MIL STD 188-125-1 specifications. Preserves the working integrity of electronic devices in the event of HEMP, EMP, or CME. ? RF SIGNAL BLOCKING - CYBER NC-I Faraday Fabric is used for constructing faraday bags, faraday enclosures, and signal shielding rooms or tents. High-shielding nickel and copper composition shields most electronic signals WiFi (2.4 & 5GHz), Bluetooth, cell signals (4G LTE+), GPS, RFID, and radio signals with 80-110 dB shielding rating from 10Mhz to 6Ghz. EMI shielding & RFID shielding. ? SPECIFICATIONS: Fabric dimensions: 50 in. wide x 12 in. long / 4 sq. ft. / .44 sq. yds. It can be cut, sewn, and taped like standard fabric to create custom RF signal shielding enclosures. ? MATERIAL COMPOSITION: Fabric is made of a fine plain weave polyester nylon base and is plated with a combination of Nickle Copper. ? ROLLED: Fabric is cut, rolled, and transported in cardboard tubes. This is to prevent creasing of the fabric before fabrication. RECOMMENDATIONS: ? We recommend a 2 layers of NC-I for best performance. ? Fold over seam and double fold over for closures is the best design practice to ensure high shielding performance. Even a very small opening can be enough to emit signal and compromise the integrity of the enclosure. ? Proper fabrication mitigates issues of the performance of the fabric. ? Nitrile or Latex Gloves should be used in the handling of this product. This will prevent oxidization of the metals and preventing metals coming in contact with skin.