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US Patent 11444753 Protocol key negotiation

Patent 11444753 was granted and assigned to ISARA (company) on September, 2022 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
ISARA (company)
ISARA (company)
Current Assignee
ISARA (company)
ISARA (company)
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11444753
Date of Patent
September 13, 2022
Patent Application Number
17690202
Date Filed
March 9, 2022
Patent Citations
‌
US Patent 10063527 Techniques for handshake-free encrypted communication using symmetric key caching during request-and-response
Patent Citations Received
‌
US Patent 11936772 System and method for supply chain tamper resistant content verification, inspection, and approval
0
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US Patent 12132846 System and method for extended attributes in certificates for dynamic authorization
0
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US Patent 12095754 System and method for establishing a secure session to authenticate DNS requests via dynamically configurable trusted network interface controllers
0
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US Patent 12015721 System and method for dynamic retrieval of certificates with remote lifecycle management
0
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US Patent 11968302 Method and system for pre-shared key (PSK) based secure communications with domain name system (DNS) authenticator
0
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US Patent 11882117 System and method for device label scan based zero touch device onboarding and device directory service
0
Patent Primary Examiner
‌
Yonas A Bayou
CPC Code
‌
H04L 9/14
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H04L 9/0852
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H04L 9/0825

In some aspects, a cryptography method includes executing, by operation of a first computing device associated with a first entity, a first handshake process with a second entity according to a first handshake protocol to establish a first symmetric encryption key for a first encryption protocol; executing, by operation of the first computing device, a second handshake process with the second entity to establish a second symmetric encryption key for a second encryption protocol. Executing the second handshake process includes: generating second handshake data according to a second handshake protocol; encrypting the second handshake data using the first symmetric encryption key with the first encryption protocol; and sending the encrypted second handshake data to a second computing device associated with the second entity; and using the second symmetric encryption key and the second encryption protocol for single-encrypted communication over a communication channel between the first and second entities.

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