Method for operating an organic optoelectronic component
First Claim
1. A method for operating an organic optoelectronic component that comprises an organic light emitting element having an organic functional layer stack having an organic light emitting layer between two electrodes and an organic light detecting element having an organic light detecting layer, the organic light emitting element and the organic light detecting element being arranged on a common substrate in laterally adjacent area regions, the method comprising:
- detecting, by the organic light detecting element, ambient light incident on the organic optoelectronic component; and
regulating an intensity of light emitted by the organic light emitting element based on a signal of the organic light detecting element with a characteristic signal waveform,wherein the organic light detecting element and the organic light emitting element have a substantially identical construction,wherein the organic light detecting element and the organic light emitting element are located in a common plane which is oriented perpendicularly to a stacking direction of the electrodes and of the organic functional layer stack of the organic light emitting element, and wherein the signal with the characteristic signal waveform is generated by the organic light detecting element being at least partly covered with an external object.
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Abstract
A method is specified for operating an organic optoelectronic component, which has at least one organic light-emitting element having an organic functional layer stack with at least one organic light-emitting layer between two electrodes and at least one organic light-emitting element having an organic light-detecting layer. These elements are arranged on a common substrate in laterally adjacent area regions. The at least one organic light-detecting element detects ambient light, which is incident onto the organic optoelectronic component. The intensity of the light emitted by the at least one organic light-emitting element is regulated depending on a signal of the at least one organic light-detecting element with a characteristic signal form.
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Citations
16 Claims
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1. A method for operating an organic optoelectronic component that comprises an organic light emitting element having an organic functional layer stack having an organic light emitting layer between two electrodes and an organic light detecting element having an organic light detecting layer, the organic light emitting element and the organic light detecting element being arranged on a common substrate in laterally adjacent area regions, the method comprising:
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detecting, by the organic light detecting element, ambient light incident on the organic optoelectronic component; and regulating an intensity of light emitted by the organic light emitting element based on a signal of the organic light detecting element with a characteristic signal waveform, wherein the organic light detecting element and the organic light emitting element have a substantially identical construction, wherein the organic light detecting element and the organic light emitting element are located in a common plane which is oriented perpendicularly to a stacking direction of the electrodes and of the organic functional layer stack of the organic light emitting element, and wherein the signal with the characteristic signal waveform is generated by the organic light detecting element being at least partly covered with an external object. - View Dependent Claims (2, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14)
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3. A method for operating an organic optoelectronic component that comprises an organic light emitting element having an organic functional layer stack having an organic light emitting layer between two electrodes and an organic light detecting element having an organic light detecting layer, the organic light emitting element and the organic light detecting element being arranged on a common substrate in laterally adjacent area regions, the method comprising:
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detecting, by the organic light detecting element, ambient light incident on the organic optoelectronic component; and regulating an intensity of light emitted by the organic light emitting element based on a signal of the organic light detecting element with a characteristic signal waveform, wherein the organic light detecting element and the organic light emitting element have a substantially identical construction, wherein the organic light detecting element and the organic light emitting element are located in a common plane which is oriented perpendicularly to a stacking direction of the electrodes and of the organic functional layer stack of the organic light emitting element, and wherein the signal with the characteristic signal waveform is generated by an external object swiping past the organic light detecting element. - View Dependent Claims (15)
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16. A method for operating an organic optoelectronic component that comprises a plurality of organic light emitting elements each having an organic functional layer stack having an organic light emitting layer between two electrodes and a plurality of organic light detecting elements each having an organic light detecting layer, the organic light emitting elements and the organic light detecting elements being arranged on a common substrate in laterally adjacent area regions, the method comprising:
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detecting, by the organic light detecting elements, ambient light incident on the organic optoelectronic component; and regulating an intensity of light emitted by the organic light emitting elements based on signals of the organic light detecting elements with characteristic signal waveforms, wherein the organic light detecting elements and the organic light emitting elements have a substantially identical construction, wherein the organic light detecting elements and the organic light emitting elements are located in a common plane which is oriented perpendicularly to a stacking direction of the electrodes and of the organic functional layer stack of the organic light emitting elements, wherein the intensity of the light emitted by the plurality of organic light emitting elements is regulated depending on a signal from at least one organic light detecting elements with the characteristic signal waveforms, and wherein one organic light detecting element is assigned to each organic light emitting element.
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Specification