Granted U.S. Patent

US 10,673,830 B2

Patent Title

Devices For Transmitting and Communicating Randomized Data Utilizing Sub-Channels

Status

Granted

Patent Type

U.S. Utility Patent

Grant Date

June 2, 2020

Inventor

Daniel Maurice Lerner

Assignee

IronClad Encryption

Priority Date

June 12, 2017

Abstract

The disclosure provides for two or more transceiver devices and a system that utilizes one or more encrypters and one or more decrypters comprising one or more communication sources that provides transmission(s) and at least one connector, wherein transmission(s) from one or more communications sources enter a first transceiver through the connector and travels to a randomized encrypted data sub-channels (REDS) encrypter and wherein the (REDS) encrypter securely sends encrypted transmission(s) to a second transceiver. The encrypted transmission(s) enter a second transceiver and are sent to a randomized decrypted data sub-channels (RDDS) decrypter wherein the transmission(s) are decrypted.

How It Works

A step-by-step walkthrough. It plays on its own, or click the dots and arrows to move through it yourself.

US 10,673,830 B2

The same message never looks the same twice

Random noise is mixed in before encryption, on a hidden sub-channel
MESSAGE same every time FEC adds checksums + NOISE mixed in before encryption ENCRYPT A1 4F 09 D2 7C different on every transmission DECRYPT separates data from noise MESSAGE recovered, identical noise → time / auth / user id
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Think of mailing the same postcard every day, but before sealing each envelope you toss in a random handful of confetti plus a coded slip with the date and your ID. Because the confetti differs every time, anyone X-raying the envelopes sees a totally different jumble each day even though the postcard inside never changes, so they cannot tell you are repeating yourself. Your friend knows exactly which bits are confetti, shakes them out, checks the date and ID for authenticity, and keeps the real message.

  • Forward error correction adds checksums and structure
  • A random generator feeds a hidden sub-channel of noise
  • Noise is pre-mixed into the data before encryption
  • Receiver splits the noise back out into time, auth and user id
Fields of Use

Technology areas where this patented method may apply.

  • Resilient multi-path and striped data transmission
  • Secure SD-WAN and link-bonded networks
  • Satellite and field communications
  • Channel-diverse secure transport
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