Abstract:
A display device includes a base layer having a display region and a non-display region defined therein; a circuit layer on the base layer; and an element layer on the circuit layer, the element layer comprising light emitting elements and light receiving elements corresponding in position to the display region. The circuit layer comprises: pixel drive circuits connected to the light emitting elements; sensor drive circuits connected to the light receiving elements; data lines connected to the pixel drive circuits; readout wirings connected to the sensor drive circuits; a shielding electrode overlapping with the readout wirings and the sensor drive circuits in a plan view, the shielding electrode being on the data lines; and pixel connecting electrodes connecting the pixel drive circuits to the light emitting elements, the pixel connecting electrodes being at a same layer as the shielding electrode.
Abstract:
A display device includes: a pixel driving circuit configured to drive the light emitting elements of pixels; and sensors including a light sensing element and a sensor driving circuit connected with the light sensing element and configured to output a sensing signal corresponding to a light, the sensor driving circuit including: a reset transistor including a first electrode configured to receive a reset signal, a second electrode connected with a first sensing node, and a third electrode configured to receive a reset control signal; an amplification transistor including a first electrode configured to receive a sensing driving voltage, a second electrode connected with a second sensing node, and a third electrode connected with the first sensing node; and an output transistor including a first electrode connected with the second sensing node, a second electrode connected with a sensing line, and a third electrode configured to receive an output control signal.
Abstract:
A display device includes: a pixel driving circuit configured to drive the light emitting elements of pixels; and sensors including a light sensing element and a sensor driving circuit connected with the light sensing element and configured to output a sensing signal corresponding to a light, the sensor driving circuit including: a reset transistor including a first electrode configured to receive a reset signal, a second electrode connected with a first sensing node, and a third electrode configured to receive a reset control signal; an amplification transistor including a first electrode configured to receive a sensing driving voltage, a second electrode connected with a second sensing node, and a third electrode connected with the first sensing node; and an output transistor including a first electrode connected with the second sensing node, a second electrode connected with a sensing line, and a third electrode configured to receive an output control signal.
Abstract:
A pixel includes a light emitting element, a driving switching element, an initialization voltage terminal, a data initialization switching element set, and an adjustment switching element. The driving switching element may provide a driving current to the light emitting element. The adjustment switching element is electrically connected to the data initialization switching element in series. At least one of the data initialization switching element set and the adjustment switching element may control an electrical connection between the control electrode of the driving switching element and the initialization voltage terminal. A control electrode of the adjustment switching element is electrically connected to an input electrode of the adjustment switching element.
Abstract:
A method of driving a display panel includes providing a positive polarity data signal to a first data line during an odd-numbered frame, and providing a negative polarity data signal to the first data line during an even-numbered frame. The positive polarity data signal has a first polarity. The negative polarity data signal has a second polarity. Output timing of the positive polarity data signal is different from output timing of the negative polarity data signal.
Abstract:
A display device includes a base layer, a circuit layer, and an element layer. The circuit layer includes pixel driving circuits connected to light emitting elements, sensor driving circuits connected to light receiving elements, and read-out wirings connected to the sensor driving circuits. A first pixel driving circuit from among the pixel driving circuits is continuously arranged in a direction parallel to the read-out wirings, and the first pixel driving circuit is connected to a first light emitting element from among the light emitting elements. The circuit layer further includes a first pixel connection electrode connecting the first pixel driving circuit to the first light emitting element, and the first pixel connection electrode does not cross the read-out wirings in a plan view.
Abstract:
A display device includes: a display panel including: an active area; a peripheral area adjacent to the active area; a circuit layer including a plurality of insulation layers including: at least one lower insulation layer; and at least one upper insulation layer including an inorganic material; and an element layer including a plurality of light emitting elements in the active area, and a plurality of light sensing elements in the active area. The peripheral area includes an open area in which the at least one upper insulation layer is not disposed, and the circuit layer includes: a plurality of readout lines electrically connected with the plurality of light sensing elements, and extending from the active area to the peripheral area; and an inorganic insulation pattern overlapping with the open area and at least a portion of the plurality of readout lines.
Abstract:
A display device includes a plurality of pixels, each of which includes a light emitting element, a plurality of sensors, each of which includes a light sensing element and a sensor driving circuit, and a readout circuit that receives a sensing signal output from the plurality of sensors. The plurality of sensors includes first row light sensing anodes positioned in a first row, second row light sensing anodes positioned in a second row, and an anode connection line that electrically connects y light sensing anodes among the first row light sensing anodes and the second row light sensing anodes with each other, where y is a positive integer.
Abstract:
A display device includes a display panel, and a circuit film disposed under the display panel. The display panel includes a base layer, pixels disposed on the base layer, sensors disposed on the base layer, first connection lines disposed on the base layer and electrically connected to the pixels, second connection lines disposed on the base layer and electrically connected to the sensors, first pads electrically connected to the first connection lines, and second pads electrically connected to the second connection lines. The circuit film is electrically connected to the first pads and the second pads through an opening of the base layer, and each of the plurality of second connection lines has a straight shape extending along a first direction.
Abstract:
A display device includes: a pixel including a light emitting element; a sensor including a sensing element and a sensor driving circuit; and a sensor driver to output a sensor scan signal to the sensor driving circuit. The sensor driver includes: a switching circuit connected between a first input terminal for receiving a first clock signal of a first operating frequency and a first clock node, and to output a first filtering clock signal of a second operating frequency to the first clock node in response to a first enable signal; and a driving circuit to output the sensor scan signal in response to the first filtering clock signal of the first clock node.