Circuit and method for driving self light-emitting display device
First Claim
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1. A method of driving a self light-emitting display device, comprising:
- a first step of sensing a luminous intensity of ambient light as an indoor level or as an outdoor level; and
a second step of controlling a voltage or a current of a green, a blue and a red color component in accordance with the indoor level or the outdoor level,wherein the voltage or the current of the green, the blue and the red color components are applied at a same ratio to one another simultaneously if the sensed luminous intensity is the indoor level, andthe voltage or the current of the green, the blue and the red color components are applied at a different ratio to one another simultaneously if the sensed luminous intensity is the outdoor level, wherein the voltage or the current of the green color component is applied by a larger ratio than the blue color component and the red color component.
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Abstract
Disclosed is a circuit for driving a self light-emitting display device which itself emits light when an electric or other energy is inputted thereto and a method thereof. According to the circuit and method, the self light-emitting display device can be driven more stably and with a higher efficiency by adjusting the number of used bits and luminance of respective color components in accordance with a luminance change of an external light and keeping a constant contrast ratio irrespective of the adjustment of the bit numbers.
7 Citations
6 Claims
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1. A method of driving a self light-emitting display device, comprising:
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a first step of sensing a luminous intensity of ambient light as an indoor level or as an outdoor level; and a second step of controlling a voltage or a current of a green, a blue and a red color component in accordance with the indoor level or the outdoor level, wherein the voltage or the current of the green, the blue and the red color components are applied at a same ratio to one another simultaneously if the sensed luminous intensity is the indoor level, and the voltage or the current of the green, the blue and the red color components are applied at a different ratio to one another simultaneously if the sensed luminous intensity is the outdoor level, wherein the voltage or the current of the green color component is applied by a larger ratio than the blue color component and the red color component.
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2. A circuit for driving a self light-emitting display device, comprising:
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a detective sensor for sensing a luminous intensity of ambient light as an indoor level or as an outdoor level; and a controller for controlling a voltage or a current of a green, a blue and a red color component in accordance with the indoor level or the outdoor level, wherein the voltage or the current of the green, the blue and the red color components are applied at a same ratio to one another simultaneously if the sensed luminous intensity is the indoor level, and the voltage or the current of the green, the blue and the red color components are applied at a different ratio to one another simultaneously if the sensed luminous intensity is the outdoor level, wherein the voltage or the current of the green color component is applied at a larger ratio than the blue color component and the red color component.
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3. A method of driving a self light-emitting display device, comprising:
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sensing a luminous intensity of ambient light; determining whether the sensed luminous intensity is an indoor level mode or an outdoor level mode; and controlling a voltage or a current of respective color components such that the voltage or the current of the respective color components are applied at a same ratio simultaneously if the sensed luminous intensity is the indoor level mode, and the voltage or the current of the respective color components are applied at a different ratio simultaneously if the sensed luminous intensity is the outdoor level mode. - View Dependent Claims (4, 5, 6)
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Specification