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US Patent 8134302 Offline LED driving circuits

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Is a
Patent
Patent
1

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
81343021
Patent Inventor Names
Ta-Yung Yang1
Chien-Tung Lan1
Chien-Yuan Lin1
Date of Patent
March 13, 2012
1
Patent Application Number
127581291
Date Filed
April 12, 2010
1
Patent Citations Received
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US Patent 12089302 Systems and methods for dimming control related to TRIAC dimmers associated with LED lighting
2
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US Patent 11784638 Switch control systems for light emitting diodes and methods thereof
‌
US Patent 11792901 Systems and methods for bleeder control related to TRIAC dimmers associated with LED lighting
‌
US Patent 11856670 Systems and methods for providing power supply to current controllers associated with LED lighting
3
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US Patent 11937350 LED lighting systems with TRIAC dimmers and methods thereof
4
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US Patent 11997772 Systems and methods for controlling power factors of led lighting systems
5
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US Patent 12009825 Switch control systems for light emitting diodes and methods thereof
6
‌
US Patent 11678417 Systems and methods with TRIAC dimmers for voltage conversion related to light emitting diodes
7
...
Patent Primary Examiner
Douglas W Owens
Douglas W Owens
1
Patent abstract

An offline LED driving circuit includes a controller, a shunt regulator, an opto-coupler, and a dimming circuit. The controller generates a switching signal to switch a transformer for providing an output voltage and an output current. The shunt regulator is coupled to an output terminal of the LED driving circuit for providing a feedback signal to the controller via the opto-coupler. The dimming circuit coupled to the shunt regulator modulates the feedback signal at a first feedback level and a second feedback level in response to a dimming signal. The output voltage is respectively regulated at a first output level and a second output level in response to the first feedback level and the second feedback level of the feedback signal. The duty cycle of the switching signal will be varied in a soft-start manner when the feedback signal changes from the second feedback level to the first feedback level.

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