摘要:
Disclosed are a transistor structure for a display and an organic light emitting display device (10). The transistor structure includes: a voltage line (RVL) positioned in one direction and configured to supply voltage to pixels (P); and two or more transistors (T11, T12, T13, T14) which share one of drains and sources which are formed integrally with the voltage line (RVL) and respectively include the other of the drains and sources which are individually formed and connected with different nodes (N1) directly or through a connection pattern
摘要:
The invention belongs to the technical field of display, and specifically relates to a pixel structure and a display method thereof, and a display device including the pixel structure. The pixel structure comprises first pixel units and second pixel units which are sequentially arranged in staggered positions, wherein the first pixel unit comprises a first sub-pixel and a second sub-pixel arranged in an oblique line, and the second pixel unit comprises a third sub-pixel and a fourth sub-pixel arranged in an oblique line, and wherein the first sub-pixel and the third sub-pixel have different basic colors, and the second sub-pixel and the fourth sub-pixel have the same basic color. The pixel structure is capable of increasing the aperture ratios of sub-pixels while achieving high resolution, which not only simplifies the manufacture process, obtains good brightness level and extends the lifetime of product, but also prevents the error of color edge and the color nonuniformity by setting the weighted value of the missing basic color of the pixel structure in the display process, hence achieving better display effect.
摘要:
The present disclosure relates to an ultra high density display having high aperture ratio. The present disclosure suggests a display comprising: a upper horizontal current line, a horizontal sensing line, a scan line and a lower horizontal current line running in horizontal direction and sequentially disposed in vertical direction on a substrate in this order from the upper side to the lower side; an emission area defined between the horizontal sensing line and the upper horizontal current line; a non-emission area defined between the horizontal sensing line and the lower horizontal current line; a switching thin film transistor and a sensing thin film transistor disposed between the horizontal sensing line and the scan line; a driving thin film transistor disposed between the scan line and the lower horizontal current line; an anode electrode expanded from the emission area to the non-emission area, and connected to the driving thin film transistor; and an anode bottle neck part disposed between the horizontal sensing line and the scan line for disconnecting the anode electrode from the driving thin film transistor selectively.
摘要:
Disclosed are an organic light emitting display and degradation sensing method thereof, the organic light emitting display includes: a display panel having a plurality pixels arranged thereon, wherein each of the pixels comprises an Organic Light Emitting Diode (OLED) and a driving Thin Film Transistor (TFT), and the plurality of pixels are divided into multiple pixel groups, each pixel group including two or more pixels connected to different data lines and to a same gate line and a same sensing line; a gate driving circuit configured to supply a scan control signal to the gate line; a data driving circuit configured to selectively supply a turn-on driving data voltage and a turn-off data voltage to the data lines in synch with the scan control signal; a sensing circuit configured to output a first sensing value by primarily sensing an OLED threshold voltage of a sensing pixel among the two or more pixels dependent upon the turn-on data voltage, and output a second sensing value by secondarily sensing a kickback current dependent upon the turn-off data voltage; and a sensing value correction circuit configured to calculate a final sensing value for the OLED threshold voltage based on the first sensing value and the second sensing value.
摘要:
The present disclosure discloses a pixel circuit, a method for driving the pixel circuit and a display apparatus. The pixel circuit comprises multiple rows of pixel units and a row sharing unit. Each row of pixel units includes a plurality of sub-pixel units, and each sub-pixel unit includes a light-emitting element. The row sharing unit includes a plurality of row-driving light-emitting control modules. The plurality of sub-pixel units comprised in each row of pixel units is connected to a corresponding signal line. Each row-driving light-emitting control modules is connected to a light-emitting control signal. Each row-driving light-emitting control module is connected to each sub-pixel unit comprised in a corresponding row of pixel units through the signal line, so as to drive the light-emitting element comprised in the sub-pixel unit to emit light under the control of the light-emitting control signal.
摘要:
An organic light emitting display device including a display panel (100) including a first pixel (P1) connected with a first data line (DLj) and first and second scan lines (SL1, SL2), a second pixel (P2) connected with a second data line (DLj+1) and the first and second scan lines (SL1, SL2), and a reference line (RLk) connected in common with the first and second pixels (P1, P2); a source driver (300) configured to operate first and second sensing modes for sensing driving characteristic values of the first and second pixels (P1, P2) through the reference line (RLk); and a scan driver (200) configured to drive the first and second scan lines (SL1, SL2) so as to drive only the first pixel (P1) for the first sensing mode or only the second pixel (P2) for the second sensing mode.
摘要:
Embodiments of the present invention disclose a pixel unit made up of three rhombic sub-pixels spliced with each other, and, every two adjacent rhombic sub-pixels of the three rhombic sub-pixels share one common edge and are symmetrical about the common edge. In accordance to embodiments of the present invention, the rhombic sub-pixels have larger sizes and accordingly can be achieved in the existing production line with adoption of the existing mature production technology. Accordingly, high production yield, small spreading difficulty, and wide application prospect can be achieved for products. Meanwhile, embodiments of the present invention also provide a display panel, a display method and a display device.
摘要:
There are provided a pixel structure, a display panel and a display apparatus. The pixel structure comprises a pixel circuit (11), a switch circuit (12) and n organic light-emitting diodes (13) sharing the pixel circuit (11), where n is greater than or equal to 2. Respective organic light-emitting diodes (13) sharing the pixel circuit (11) are located in a same column of the display panel, and emit lights of a same color when emitting light. The switch circuit (12) is configured to control any two organic light-emitting diodes (13) sharing the pixel circuit (11) to emit light at different periods of time. The pixel circuit (11) is configured to drive of the respective organic light-emitting diodes sharing the pixel circuit (11) to emit light according to a received data signal. The pixel structure is used to solve the problem of the complexity of the back board.
摘要:
Disclosed is a display device that may include a GIP circuit, provided on a display area of a substrate, for supplying gate signals to gate lines, wherein the GIP circuit includes a thin film transistor provided in the boundaries between adjacent pixels.
摘要:
Provided is an organic light emitting display device including a plurality of sub pixels. Areas of emission regions of green sub pixels of the plurality of sub pixels are the same as or larger than an area of an emission region of at least one non-green sub pixel of the plurality of sub pixels. Also the organic light emitting display device includes an area of an emission region of a green sub pixel having a low luminance lifetime being the same as or larger than areas of emission regions of non-green sub pixels. Accordingly, it is possible to make the luminance lifetime of the green sub pixel and the luminance lifetimes of the non-green sub pixels uniform. Further, it is possible to minimize a color change of the organic light emitting display device.