Abstract:
There are disclosed a pixel driving circuit and a driving method thereof and a display apparatus. The pixel driving circuit comprises: a main driving unit (11) connected to a data line; a main light-emitting device (12) connected to the main driving unit; an auxiliary driving unit (13) connected to the main driving unit (11); and an auxiliary light-emitting device (14) connected to the auxiliary driving unit (13). Herein, in an acquisition phase, the main driving unit (11) is configured to discharge through the main light-emitting device (12), and the auxiliary driving unit (13) is configured to discharge through the main light-emitting device (12). In a data storage phase, the main driving unit (11) is configured to store a data voltage; and in a light-emitting phase, the main driving unit (11) is configured to drive the main light-emitting device (12) to emit light, and the auxiliary driving unit (13) is configured to drive the auxiliary light-emitting device (14) to emit light. Since the auxiliary driving unit (13) can drive the auxiliary light-emitting device (14) to emit light in the light-emitting phase, brightness loss of the main light-emitting device (12) is remedied, so that brightness uniformity and brightness constancy of the display apparatus are raised.
Abstract:
The present disclosure relates to a pixel circuit, a driving method thereof and related devices. The pixel circuit comprises: a reset compensation module, a data writing module, a storage module and a driving transistor. With the cooperation of each module, the pixel circuit can compensate shift of a threshold voltage for a driving transistor by storing the threshold voltage for the driving transistor in the storage module. Therefore, when the source of the driving transistor in the pixel circuit is connected with a light emitting device for driving it to emit light for display, the driving current of the driving transistor for driving the light emitting device to emit light will be only associated with the voltage of the data signal, but not the threshold voltage for the driving transistor. In this way, influence of the threshold voltage of the driving transistor on the light emitting device will be avoided.
Abstract:
The present disclosure provides a power supply circuit, an array substrate, and a display device. The power supply circuit includes a plurality of power wires, each providing a voltage to a row of pixel units. The plurality of power wires include at least a first power wire and a second power wire, between which at least one logical AND circuit is disposed. The logical AND circuit electrically econnects the first power wire with the second power wire when high level voltages are output by the first power wire and the second power wire simultaneously. As a result, voltages at connection points of two rows of power wires approximate to each other, voltage differences among different rows of pixel units are reduced, and therefore the phenomenon of luminance nonuniformity in a display caused by different voltage drops of different rows of pixel units is improved.
Abstract:
A thin film transistor, a manufacturing method thereof, and a display device are provided. The thin film transistor includes a gate electrode (21), an active layer (23), a source electrode (241) and a drain electrode (242). The source electrode (241) and the drain electrode (242) are formed of at least two materials, the forming materials of the source electrode (241) and the drain electrode (242) can create a cell reaction in a corresponding etching solution so as to be etched, and material of the active layer (23) is not corroded by the etching solution. With the thin film transistor and manufacturing method thereof according to embodiments of the invention, a problem that an active layer is liable to be corroded in an etching procedure of a source electrode and a drain electrode can be solved, and thus the thin film transistor device can be manufactured by using a back channel etch process. Consequently, the process number for manufacture of the thin film transistor is decreased, and the manufacturing cost is saved.
Abstract:
There are provided in the present disclosure a pixel driving circuit, an array substrate and a display apparatus. The pixel driving circuit comprises: a compensation module (11), a control module (12), a driving modeling (13), and a light emitting module (14), wherein: the compensation module (11) is connected to a scan signal (Scan), a data signal (Vdata) and a reference signal (VREF) and further connected to the control module (12) and the drive module (13), and is configured to receive the data signal (Vdata) and the reference signal (VREF) under the control of the scan signal (Scan) and compensate for a threshold voltage of the drive module (13) under the control of the control module (12); the control module (12) is connected to a light emitting control signal (EM) and a power supply signal (ELVDD) and further connected to the drive module (13) and the light emitting module (14), and is configured to receive the power supply signal (ELVDD) under the control of the light emitting control signal (EM) to control the compensation module (11) to compensate for the threshold voltage of the drive module (13); one terminal of the light emitting module (14) is connected to the drive module (13), and the other terminal thereof is grounded (VSS); and; the drive module (13) is configured to drive the light emitting module (14) to emit light under the control of the control module (12). The pixel driving circuit is capable of avoiding non-uniformity of luminance of the display device, and enhancing the display effect of the display device.
Abstract:
An OLED pixel circuit includes a data storage and threshold compensation module, a switch module, a driving module, and a light-emitting module. The data storage and threshold compensation module is connected to the driving module, the switch module, a scanning signal line, and a data signal line, respectively, and is used for inputting a data signal on the data signal line to the driving module and compensating a threshold voltage of the driving module according to a scanning signal of the scanning signal line. The switch module is connected to the driving module, the light-emitting module, and a light emission control signal line, respectively, and is used for inputting the data signal provided by the threshold-compensated driving module to the light-emitting module according to a control signal of the light emission control signal line, so that the light-emitting module is driven to emit light.