Abstract:
The present invention discloses organic light emitting device, manufacturing method thereof, organic light emitting display device and driving method thereof. The organic light emitting device comprises a substrate and a first electrode layer, an organic layer and a second electrode layer positioned on the substrate, the organic layer is arranged between the first and second electrode layers, the first electrode layer, the organic layer and the second electrode layer form a laminated region for emitting light in a first specific color in a positive half cycle of alternating current and an inverted region for emitting light in a second specific color in a negative half cycle of alternating current, and at least portions of projections of the laminated region and the inverted region on the substrate are not overlapped. Technical solutions of the present invention render the organic light emitting device with adjustable light color and prolonged service life.
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.
Abstract:
An array substrate comprises a plurality of subpixels, each of the subpixels comprising: at least one thin film transistor, an organic resin layer, and uncontacted first pixel electrode and second pixel electrode arranged along the data line direction; the first pixel electrode extends to the above of a first gate line, the second pixel electrode extends to the above of a second gate line, the first gate line and the second gate line are adjacent to each other; the first pixel electrodes of two adjacent subpixels located at two sides of the first gate line are connected above the first gate line, the second pixel electrodes of two adjacent subpixels located at two sides of the second gate line are connected above the second gate line.
Abstract:
The television set and a desktop display apparatus. The television set comprises a major structure configured to realize a display function, and further comprises: a power supply conversion means configured to convert AC mains into a DC voltage; a power supply allocation means disposed in the major structure and configured to convert the DC voltage output from the power supply conversion means into a DC operating voltage required by respective circuits in the major structure, wherein the power supply allocation means and the power supply conversion means are connected mutually and disposed separately. Since the major structure configured to realize the display function and the power supply conversion means configured to convert the AC mains into the DC voltage are disposed separately, electrical isolation of the DC voltage from the AC mains is realized, so that danger of electric shock of human body is avoided.
Abstract:
A display unit with touch function, a manufacturing method thereof and a display device. The display unit includes an array substrate and an opposing substrate which are cell-assembled together, and a display function layer disposed between the array substrate and the opposing substrate. First electrodes and second electrodes which do not contact each other are formed on the array substrate and/or the opposing substrate and are respectively taken as driving electrodes and sensing electrodes; materials for forming the first electrode and/or the second electrodes include topological insulators; and the first electrode and/or the second electrodes are provided with two-dimensional (2D) nanostructures and adhered to the array substrate and/or the opposing substrate through an adhesion layer. The display unit solves the problems of slow touch response rate, easy heat generation and large power consumption due to high resistance of first electrodes and second electrodes on the conventional display unit.
Abstract:
A display device and a manufacturing method thereof are disclosed. The display device includes a first substrate (S1) and a second substrate (S2) arranged opposite to each other; a common electrode (6) is disposed in a display area (A1) of the first substrate (S1); a plurality of first protrusions (1) are formed in a frame area (A2); the first protrusions (1) include first protrusion bodies (11) and first contact electrodes (12) disposed on top of the first protrusion bodies (11); the first contact electrodes (12) are electrically connected with the common electrodes (6); first common electrode signal lines (5) are disposed in a frame area (A2) of the second substrate (S2); and the first contact electrodes (12) are electrically connected with the first common electrode signal lines (5). The display device can simplify the overall manufacturing process of the display device.
Abstract:
A touch-sensitive device comprises: a touch-sensing carrier panel; a driving signal line and a inductive signal line; a touch-sensitive circuit connected with the driving signal line and the inductive signal line; an array of first electrodes and an array of second electrodes located on the touch-sensing carrier panel; a first switch having an end connected to the array of the first electrodes and the other end connected to the corresponding driving signal line and the corresponding inductive signal line; and a second switch having an end connected to the array of the second electrodes and the other end connected to the corresponding driving signal line and the corresponding inductive signal line, wherein each of the first switch and the second switch is adapted to switch between a respective driving signal line and a respective inductive signal line such that the array of first electrodes is connected with one of the driving signal line and the inductive signal line and the array of second electrodes is connected with the other one of the driving signal line and the inductive signal line. The present disclosure also provides a method for driving the above touch-sensitive device. The present invention may perform the signal conversion by switches such that the first electrodes and the second electrodes are switched between the connections to the inductive signal lines and the connections to the driving signal lines by performing signal switching by switches, so as to achieve the double side touch sensing.
Abstract:
Disclosed is an organic electroluminescent display panel, a method for manufacturing the same and a display apparatus. The organic electroluminescent display panel comprises a plurality of luminescent units, wherein light-isolating members are disposed between the plurality of luminescent units for isolating light emitted from the respective luminescent units. Therefore, the organic electroluminescent display panel, the method for manufacturing the same and the display apparatus according to the present invention can prevent mutual interference between the light from the respective luminescent units of the organic electroluminescent display panel.
Abstract:
The embodiment of the present invention provides an array substrate and a display device, which relates to the field of display technology, where the aperture opening ratio can be increased; the array substrate comprises a plurality of subpixels, each of the subpixels comprising: at least one thin film transistor, an organic resin layer, and uncontacted first pixel electrode and second pixel electrode arranged along the data line direction; the first pixel electrode extends to the above of a first gate line, the second pixel electrode extends to the above of a second gate line, the first gate line and the second gate line are adjacent to each other; the first pixel electrodes of two adjacent subpixels located at two sides of the first gate line are connected above the first gate line, the second pixel electrodes of two adjacent subpixels located at two sides of the second gate line are connected above the second gate line; the first pixel electrodes of two adjacent subpixels are electrically connected with the drain of at least one thin film transistor, the second pixel electrodes are electrically connected with the drain of at least one thin film transistor. It is used in manufacture of an array substrate and a display device that need to increase the aperture opening ratio.
Abstract:
The present disclosure provides an array substrate and a display device. The array substrate includes gate lines, data lines, and thin film transistors (TFTs) connected to the gate lines and the data lines. At least one of the data lines is divided into a first branch and a second branch at a predetermined region where an intersection of the at least one of the data lines and at least one of the gate lines is located. The first branch overlaps the at least one of the gate lines, and has a width less than a width of a non-overlapping portion of the at least one of the data lines which does not overlap the at least one of the gate lines. The second branch overlaps a gate electrode of a corresponding one of the TFTs, and serves as, or is connected to, a source electrode of the corresponding TFT.