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US Patent 11064368 Non-line-of-sight (NLOS) coverage for millimeter wave communication

Patent 11064368 was granted and assigned to Silicon Valley Bank on July, 2021 by the United States Patent and Trademark Office.

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Applicant
Movandi
Movandi
1
Current Assignee
Silicon Valley Bank
Silicon Valley Bank
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
110643681
Patent Inventor Names
Stephen Wu1
Michael Boers1
Sam Gharavi1
Seunghwan Yoon1
Ahmadreza Rofougaran1
Donghyup Shin1
Farid Shirinfar1
Kartik Sridharan1
...
Date of Patent
July 13, 2021
1
Patent Application Number
168665361
Date Filed
May 4, 2020
1
Patent Citations
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US Patent 10666326 Controlled power transmission in radio frequency (RF) device network
1
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US Patent 10355720 Distributed software-defined radio
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US Patent 10090887 Controlled power transmission in radio frequency (RF) device network
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US Patent 10103853 Method and system for a repeater network that utilizes distributed transceivers with array processing
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US Patent 10199717 Phased array antenna panel having reduced passive loss of received signals
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US Patent 10277370 Method and system for utilizing multiplexing to increase throughput in a network of distributed transceivers with array processing
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US Patent 10320090 Array antenna
Patent Primary Examiner
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Dominic E Rego
1
Patent abstract

A system, in an active reflector device, adjusts a first amplification gain of each of a plurality of radio frequency (RF) signals received at a receiver front-end from a first equipment via a first radio path of an NLOS radio path. A first phase shift is performed on each of the plurality of RF signals with the adjusted first amplification gain. A combination of the plurality of first phase-shifted RF signals is split at a transmitter front-end. A second phase shift on each of the split first plurality of first phase-shifted RF signals is performed. A second amplification gain of each of the plurality of second phase-shifted RF signals is adjusted.

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