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US Patent 11935495 Methods for driving electro-optic displays

Patent 11935495 was granted and assigned to E Ink Corporation on March, 2024 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
E Ink Corporation
E Ink Corporation
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Current Assignee
E Ink Corporation
E Ink Corporation
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119354950
Patent Inventor Names
Teck Ping Sim0
Aaron Chen0
Kenneth R. Crounse0
Karl Raymond Amundson0
Date of Patent
March 19, 2024
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Patent Application Number
178903120
Date Filed
August 18, 2022
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Patent Citations
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US Patent 6900851 Electro-optic displays and optical systems for addressing such displays
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US Patent 6909532 Matrix driven electrophoretic display with multilayer back plane
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US Patent 6922276 Flexible electro-optic displays
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US Patent 6950220 Electro-optic displays, and methods for driving same
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US Patent 6967640 Microencapsulated electrophoretic display with integrated driver
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US Patent 6980196 Printable electronic display
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US Patent 6982178 Components and methods for use in electro-optic displays
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US Patent 6995550 Method and apparatus for determining properties of an electrophoretic display
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...
Patent Primary Examiner
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Amare Mengistu
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CPC Code
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G09G 2340/16
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G09G 2320/0257
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G09G 2320/0204
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G09G 2310/0254
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G09G 3/344
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Patent abstract

Methods are described for driving an electro-optic display having a plurality of display pixels. Each of the display pixels is associated with a display transistor. The method includes the following steps in order. A first voltage is applied to a first display transistor associated with a first display pixel of the plurality of display pixels. The first voltage is applied during at least one frame of a driving waveform. A second voltage is applied to the first display transistor associated with the first display pixel. The second voltage has a non-zero amplitude less than the first voltage and is applied during the last frame of the driving waveform. The amplitude of the second voltage is based on a voltage offset value and a sum of remnant voltages each frame of the driving waveform contributes to the first display pixel when the first voltage is applied to the first display transistor.

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