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US Patent 7564227 Power supply for a load control

Patent 7564227 was granted and assigned to LUTRON ELECTRONICS CO., INC. on July, 2009 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Current Assignee
LUTRON ELECTRONICS CO., INC.
LUTRON ELECTRONICS CO., INC.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
75642270
Patent Inventor Names
Russell Weightman0
Chen Ming Wu0
David Perreault0
James P. Steiner0
Aaron Dobbins0
Date of Patent
July 21, 2009
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Patent Application Number
121406480
Date Filed
June 17, 2008
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Patent Citations Received
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US Patent 11979952 Wall-mountable wireless remote control device
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US Patent RE49537 Electronic switch having an in-line power supply
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US Patent 11705729 Power control circuit and method for stabilizing a power supply
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Patent Primary Examiner
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Gary L Laxton
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Patent abstract

A power supply adapted to be coupled in series electrical connection between an AC voltage source and an electrical load for generating a DC voltage, the power supply comprising an energy storage capacitor, the DC voltage produced across the capacitor; a charging circuit adapted to be coupled in series electrical connection between the source and the load and to conduct a load current from the source to the load, the charging circuit coupled to the energy storage capacitor for charging the energy storage capacitor; a controllably conductive device coupled in parallel electrical connection with the charging circuit and having a control input for rendering the controllably conductive device conductive, the controllably conductive device adapted to carry the load current from the source to the load when the controllably conductive device is conductive; and a triggering circuit coupled to the control input of the controllably conductive device for causing the controllably conductive device to become conductive when the energy storage capacitor has charged to a desired maximum value; wherein the charging circuit is adapted to conduct the load current from the source to the load when the controllably conductive device is non-conductive, the charging circuit imposing a low voltage drop relative to the peak value of an AC voltage of the AC voltage source, such that substantially all of the AC voltage is available to the load during the time when the controllably conductive device is non-conductive.

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