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US Patent 11825571 Average current control circuit and method

Patent 11825571 was granted and assigned to STMicroelectronics on November, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
STMicroelectronics
STMicroelectronics
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Current Assignee
STMicroelectronics
STMicroelectronics
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
118255710
Patent Inventor Names
Claudio Adragna0
Giovanni Gritti0
Date of Patent
November 21, 2023
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Patent Application Number
181511910
Date Filed
January 6, 2023
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Patent Citations
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US Patent 8305004 Apparatus and method for constant power offline LED driver
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US Patent 8467209 Control device of a switching power supply
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US Patent 9018855 Controlling circuit for an LED driver and controlling method thereof
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US Patent 9042127 LED power supply
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US Patent 9271366 Dimmable LED driver and driving method
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US Patent 9423808 DC to DC converter with pseudo constant switching frequency
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US Patent 9660542 Valley to valley switching in quasi-resonant mode for driver
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US Patent 9699838 Inductor current detection circuit and LED driver
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Patent Citations Received
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US Patent 11991803 Flyback converter and LED driver using the flyback converter
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Patent Primary Examiner
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Monica C King
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CPC Code
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H02M 1/007
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H02M 3/1586
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H02M 1/0016
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H02M 1/4208
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H02M 1/4216
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H02M 1/4241
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H02M 3/07
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H02M 3/335
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Patent abstract

A control circuit includes an output terminal configured to be coupled to a control terminal of a transistor that has a current path coupled to an inductor; a transconductance amplifier configured to produce a sense current based on a current flowing through the current path of the transistor; and a first capacitor. The control circuit is configured to turn on the transistor based on a clock signal, integrate the sense current with an integrating capacitor to generate a first voltage, generate a second voltage across the first capacitor based on a first current, generate a second current based on the second voltage, generate a third voltage based on the second current, turn off the transistor when the first voltage becomes higher than the third voltage; discharge the integrating capacitor when the transistor turns off; and regulate an average output current flowing through the inductor based on the first current.

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