Padded Utility Faraday Bag Signal Blocking, Data Privacy, EMP Protection Shields Delicate Electronics (Night Vision Goggles, Rifle Scopes, Cameras, Optics, Cell Phones)
Includes a removable faraday liner with two layers of high-shielding TitanRF Faraday Fabric with dual paired seam construction.
Durable and water-resistant ballistic nylon outer shell with MOLLE webbing on three sides to attach MOLLE-based packs, carabiners, and accessories. Removable padded insert with dividers. Rubber feet on bottom to protect bag from damage. Two unshielded side zipper compartments and adjustable carrying strap.
Shields night vision goggles, WiFi-enabled rifle scopes, range finders, thermal cameras, DSLR cameras and optics and other sensitive electronics. Also shields cell phones, small talets, GPS units, transponders, keyfobs, or other similar size devices from ALL wireless signals.
Faraday liner blocks WiFi (2.4 & 5GHz), Bluetooth, cell signals including 5G networks, GPS, RFID, and radio signals with 90dB average attenuation from low MHz to 40GHz. EMI, RFI, EMF radiation shielding.
Inner dimensions WITHOUT padded insert: 16"L x 6"W x 7.5"H | Inner dimensions WITH padded insert (insert provides about 1/2" extra padding all around): 15.5"L x 5.5"W x 7"H.
TOI Faraday Fabric is used for making faraday bags, EMF Radiation protection bags, Clothes, Shields, RF enclosures, EMF deflection, and signalproof rooms or tents. High-shielding nickel and copper composition blocks WiFi (2.4 & 5GHz), Bluetooth, cell signals including 5G networks, GPS, RFID, and radio signals with 90dB average attenuation from low MHz all the way up to 40GHz. EMI, RFI, and EMF radiation shielding.
EMF includes both electrical and magnetic fields emanating from electrical devices. The electromagnetic radiation is in the frequency range of 50/60 Hz (from typical power lines) through the RF range (wireless networks at 2.4 – 5.8 GHz) up to 300 GHz (microwave devices). These frequencies are all lower than visible light which is electromagnetic radiation in the frequency of 100s of THz and is much lower in energy than ionizing radiation (e.g. the type of radiation emitted by x-ray machines and radioactive materials), and the biological effects associated with exposure are much different.