Abstract:
Embodiments of the present disclosure provide a method for driving a touch display apparatus and the touch display apparatus, wherein the quality of the screen display of the touch display apparatus is ensured, by controlling a backlight to be turned on during a first time phase of a time unit, controlling the backlight to be turned off during a second time phase of the time unit, and transmitting, by the chip, a touch driving signal to the touch driving electrodes during a third time phase of the time unit, wherein there is a first relationship between the second time phase and the third time phase.
Abstract:
The present disclosure provides an array substrate, a display panel, a display device and a method for manufacturing the array substrate. The array substrate includes: a plurality of gate lines and a plurality of data lines arranged in a crisscross manner on a base substrate, so as to define a plurality of subpixels; and a common electrode arranged opposite to each of the plurality of subpixels;. At least one of the subpixels is provided with a common electrode line connected to the common electrode at an identical subpixel region.
Abstract:
The present application discloses an array substrate, a display panel and a display device. The array substrate comprises: a plurality of data lines and a plurality of gate lines, a plurality of pixel units defined by the plurality of data lines and the plurality of gate lines, each pixel unit comprising a first pixel electrode, a second pixel electrode, and at least three thin film transistors, the pixel unit further comprising: a charge-discharge element, the charge-discharge element and a third thin film transistor in the at least three thin film transistors charging and discharging the pixel unit such that the pixel unit forms a first voltage region and a second voltage region with different voltages.
Abstract:
A frame assembly and a display device including the frame assembly are provided. The frame assembly includes: a side frame and corresponding side plates, pressing plates and fixing plates; for at least one group of corresponding side plate, pressing plate and fixing plate, a structure as follows is provided: the side frame is fixedly connected to the side plate; the fixing plate is fixed on the side frame, and an outer surface of the fixing plate is not higher than an outer surface of the side plate; the side frame is provided with an elastic pad located on an inner side of the fixing plate, and a projection of the side frame and a projection of the elastic pad in a plane of a side surface of the side plate of the backplane facing the pressing plate is located within the side surface of the side plate facing the pressing plate. A width of the frame assembly is only a thickness of the side plate of the backplane to achieve a narrow frame design of the display device.
Abstract:
An organic light-emitting display panel and a display device are provided; the display panel includes a first substrate (10) and a second substrate (50), and an electroluminescent layer (30) arranged between the first substrate (10) and the second substrate (50), a plurality of Elm layers (20) being each arranged between the electroluminescent layer (30) and the first substrate (10) as well as between the electroluminescent layer (30) and the second substrate (50), wherein at least one of the first substrate (10) and the second substrate (50) is a light exit surface, refractive indexes of the plurality of film layers between the light exit surface and the electroluminescent layer (30) are not greater than that of the light exit surface, and in any two adjacent film layers between the electroluminescent layer (30) and the light exit surface, a refractive index of a film layer which is far away from the light exit surface is not greater than that of a film layer which is close to the light exit surface.
Abstract:
Embodiments of the invention disclose an organic light-emitting diode array substrate and a manufacturing method thereof, and a display device. The array substrate comprises: a base substrate, a thin film transistor disposed above the base substrate, an organic light-emitting diode and a filling layer, the organic light-emitting diode including a first electrode, a second electrode, and an organic light-emitting layer disposed between the first electrode and the second electrode, wherein, in a light transmissive region of the organic light-emitting diode array substrate, the base substrate, the filling layer and the organic light-emitting layer of the organic light-emitting diode are disposed to be sequentially abutting.
Abstract:
Embodiments of the disclosure disclose an electroluminescence display device and a fabrication method thereof. The device comprises a color filter substrate. The color filter substrate comprises: a first substrate, and a first electrode, an organic electroluminescence layer and a second electrode sequentially provided on the first substrate. The color filter substrate further comprises: a first protective layer, provided on the second electrode and covering the second electrode and the organic electroluminescence layer below the second electrode; and a first connection electrode, provided on the first protective layer and connected to the second electrode.
Abstract:
The present invention provides an array substrate, a driving method of the array substrate and a display device comprising the array substrate. The array substrate comprises a display region and a non-display region, multiple groups of source lines and a plurality of gate lines are arranged in the display region, the multiple groups of source lines and the plurality of gate lines are intersected with each other to divide the display region into a plurality of pixel regions, and each pixel region corresponds to a group of source lines, wherein a first electrode and a second electrode are arranged in each pixel region, and the first electrode and the second electrode are adjacent and electrically isolated from each other.