Abstract:
The present invention discloses a display unit, a display panel and a driving method thereof, wherein the display unit comprises a full color display subunit capable of displaying full color, and at least one black and white display subunit capable of displaying black and white, when the display unit operates in a first display mode, the full color display subunit and all the black and white display subunit(s) in the display unit display one pixel together; and when the display unit operates in a second display mode, the full color display subunit in the display unit displays one color pixel, and each black and white display subunit in the display unit displays one black/white pixel independently. According to the present invention, pixel display information at the boundaries can be increased, that is, display resolution of the display panel is improved, thereby improving display quality of the display panel.
Abstract:
A display screen and a method of preparing the same are disclosed. The method includes steps of: forming a flexible base layer (20) on a rigid base substrate (10), wherein the rigid base substrate (10) includes a first region (101), a second region (102), and a connection region (103) between the first region and the second region, and the flexible base layer (20) is at least formed in both the second region (102) and the connection region (103); fabricating an organic light emitting diode device on the substrate with the flexible base layer (20) formed thereon; and stripping the rigid base substrate (10) in the second region (102) along a boundary between the second region (102) and the connection region (103). By means of a flexible display technology, the above method can achieve seamless assembly between adjacent sub-screens, and therefore increases display quality of pictures.
Abstract:
Embodiments of the present disclosure provide a shift register and a driving method thereof, a gate driving circuit and a display device. The shift register includes a control signal generation module, a first low level pulse generation module, a second low level pulse generation module, and a high level pulse generation module. The control signal generation module generates a first control signal and a second control signal. The first low level pulse generation module receives the first control signal and the second control signal and generate a first low level pulse signal. The second low level pulse generation module receives the first control signal and the second control signal and generate a second low level pulse signal. The high level pulse generation module receives the first control signal and generates a high level pulse signal. This shift register reduces the number of circuit elements.
Abstract:
A black matrix of the display panel comprises N columns of first sub-regions and M columns of second sub-regions, the pixel electrodes comprise N columns of first pixel electrodes in one-to-one correspondence with N columns of first sub-regions and M columns of second pixel electrodes in one-to-one correspondence with M columns of second sub-regions. A width of the M columns of second sub-regions and a width of the M columns of second pixel electrodes along the row direction of the black matrix are increased only by reducing a width of the N columns of first sub-regions along the row direction of the black matrix, such that some signal lines in the divided gate driver may be placed at the M columns of second sub-regions to enable the display panel not having frames at the left and the right, without substantially not changing the aperture ratio of the display panel.
Abstract:
The present application discloses a flexible array substrate comprising a flexible display portion comprising a plurality of first signal lines and a plurality of second signal lines intersecting each other; a flexible circuit bonding portion abutting the flexible display portion for bonding circuit parts; and a plurality of first connection lines for transmitting first signals to the plurality of first signal lines. Each of the plurality of first connection lines connects with a corresponding first signal line, and extends from the flexible display portion to the flexible circuit bonding portion. Each of the plurality of first connection lines crosses over at least one other first signal line within the flexible display portion.
Abstract:
A package is provided. The package includes a base substrate includes a first surface, a second surface opposite the first surface, and a side face, wherein a device to be packaged is formed on the first surface, and a packaging cover-plate surrounding the first surface of the base substrate and directly coupled to at least one of the side face and the second surface of the base substrate, wherein the device to be packaged is formed in an enclosure space defined by the packaging cover-plate and the base substrate.
Abstract:
The present disclosure provides an OLED pixel circuit, a display device and a control method. The OLED pixel circuit includes: an OLED; a driving transistor; a first switching unit; a second switching unit; a compensation circuit connected to the gate electrode of the driving transistor and configured to maintain a voltage of the gate electrode of the driving transistor during a light-emitting period, so as to enable a current flowing through the OLED to be irrelevant to a threshold voltage Vth of the driving transistor; and a reference signal generation module configured to generate, based on a current threshold voltage of the driving transistor, a reference signal to be used by the compensation circuit, wherein a voltage of the reference signal and the threshold voltage meet at least one of validation conditions capable of validating the compensation circuit.
Abstract:
The present invention provides a display device and an operating method thereof, the display device comprises a first display panel, a second display panel and a backlight, the first display panel is flexibly connected with the second display panel, the first display panel is provided at a light-exiting surface side of the backlight; a light-exiting surface of the first display panel can be arranged to be closely adjacent to and faces the first surface of the second display panel, and the second pixel panel forms light-shielding regions and light-transmitting regions; and first display panel forms a left image for a left eye of a viewer and a right image for a right eye of the viewer, so that the viewer can only see the left image by his left eye and only see the right image by his right eye by means of the light-shielding regions and the light-transmitting regions.
Abstract:
The present disclosure provides a display substrate, a display panel and a display device. The display substrate includes a first base substrate and a filter layer arranged on the first base substrate. The filter layer includes a red-light emission unit, a green-light emission unit and a blue-light transmission unit. The red-light emission unit includes a red quantum dot material capable of emitting red light when it is irradiated by blue light, the green-light emission unit includes a green quantum dot material capable of emitting green light when it is irradiated by the blue light, and the blue-light transmission unit is not covered with a quantum dot material and the blue light is transmitted through the blue-light transmission unit.
Abstract:
An embodiment of the present invention relates to the technical field of display. Particularly, there is provided a flexible screen and a bend identifying method thereof, as well as a flexible display apparatus. The flexible screen comprises a first flexible substrate and a second flexible substrate which are oppositely disposed; the flexible screen further comprises a first electrode which is disposed on one side close to the second flexible substrate of the first flexible substrate and a second electrode which is disposed on one side close to the first flexible substrate of the second flexible substrate, as well as a detection system connected with the first electrode or the second electrode; wherein the first electrode and the second electrode are configured to be in positional correspondence; in a case where the flexible screen is bent, the first electrode and the second electrode are electrically connected. The present invention is used for fabrication of a display apparatus. The present invention may be used for determining whether the flexible screen is excessively bent or flexed.