Abstract:
A pixel circuit includes a first transistor including a control electrode electrically connected to a first node, a first electrode electrically connected to a second node and a second electrode electrically connected to a third node, a second transistor configured to apply a first data voltage to the first transistor, a third transistor electrically connected to the first node and the third node, a fourth transistor including a control electrode electrically connected to a fourth node, a first electrode electrically connected to a fifth node and a second electrode electrically connected to a sixth node, a fifth transistor configured to apply a second data voltage to the fourth transistor, a sixth transistor electrically connected to the fourth node and the sixth node and a light emitting element that emits light based on the first data voltage and the second data voltage.
Abstract:
A pixel circuit includes a light emitting element, a first transistor that provides a driving current to the light emitting element, a first capacitor including a first electrode connected to a control electrode of the first transistor and a second electrode connected to a first electrode of the first transistor, a second capacitor including a first electrode directly connected to the control electrode of the first transistor and a second electrode, and a second transistor that provides a data voltage to the control electrode of the first transistor in response to a write gate signal.
Abstract:
A pixel circuit comprises a light emitting element, a first transistor providing a driving current to the light emitting element, a first capacitor including a first electrode connected to a first electrode of the first transistor and a second electrode connected to a gate electrode of the first transistor, a second capacitor including a first electrode connected to the gate electrode of the first transistor and a second electrode connected to a second electrode of the first transistor, a second transistor providing a data voltage to a first electrode of a third capacitor in response to a first write gate signal, a third capacitor including a second electrode connected to the gate electrode of the first transistor, and a third transistor providing the data voltage to the gate electrode of the first transistor in response to a second write gate signal.
Abstract:
A liquid crystal display device includes a curved first substrate and a curved second substrate. A liquid crystal layer is between the first curved substrate and the second curved substrate. A pixel electrode is on the first substrate. The pixel electrode includes a plurality of unit sub-pixel electrodes. A common electrode is on the second substrate. The common electrode has a planar shape. A connecting portion connects at least two of the plurality of unit sub-pixel electrodes to each other. A protrusion is disposed on the connecting portion.
Abstract:
A scan driver includes a plurality of stages sequentially connected to each other. Each of the plurality of stages includes first and second output transistors and first to fourth control transistors. The second control transistor is connected between a second node and a first voltage terminal and to an input terminal and operates in response to a start signal or a previous carry signal provided through the input terminal. Each of the first and second output transistors and the first, third, and fourth control transistors is a first type, and the second control transistor is a second type different from the first type.
Abstract:
A pixel circuit comprises a light-emitting element, a first transistor which provides a driving current to the light-emitting element, a first capacitor including a first terminal connected to a first terminal of the first transistor and a second terminal connected to a gate terminal of the first transistor, a second capacitor including a first terminal connected to the gate terminal of the first transistor and a second terminal connected to a second terminal of the first transistor, a second transistor which provides a data voltage to the gate terminal of the first transistor in response to a write gate signal, and a third transistor which connects the second terminal of the first transistor and an anode terminal of the light-emitting element in response to a first emission signal.
Abstract:
A pixel circuit may include a light emitting element, a first transistor configured to provide a driving current to the light emitting element, a first capacitor including a first electrode connected to a control electrode of the first transistor and a second electrode connected to a first electrode of the first transistor, a second capacitor including a first electrode connected to the control electrode of the first transistor and a second electrode, a second transistor configured to provide a data voltage to the control electrode of the first transistor in response to a write gate signal, and a third transistor configured to provide the data voltage to the second electrode of the second capacitor in response to the write gate signal.