Abstract:
Disclosed herein is a fixing structure. The fixing structure comprises a seat and at least a fixing device, the fixing device including a connecting part and a sucking disc, on end of the connecting part being connected to the seat while the other end of the connecting part being connected to the sucking disc, and the sucking disc being used to be sucked on a surface of a mounting base. There is also provided a display device having the fixing structure in the disclosure. With the fixing structure mounted on the display device, the display device can be prevented from toppling down when an external force is applied thereto, thus improving the stability of the display device. Further, the fixing structure according to the disclosure is able not to damage the surface of the mounting base and can be reused.
Abstract:
The present invention provides a display substrate and a manufacturing method thereof, and a flexible display device including the display substrate, which belong to the field of display technology, and can solve the problem of poor reliability of an existing display substrate due to damage to thin film transistors when the display substrate is bent. In the display substrate provided by the present invention, by providing the stress absorbing units made of a resin material in the display substrate, the stress generated during bending of the display substrate is released through the transparent resin material and the thin film transistors on the display substrate are unlikely to be damaged, thereby improving the reliability of the whole display substrate.
Abstract:
Disclosed are a flexible display and a manufacturing method thereof. The flexible display includes a first flexible substrate, a pixel defining layer and a cathode. The pixel defining layer includes a plurality of first separation walls and a plurality of second separation walls. The first separation wall has protrusions and a first groove with openings far away from the first flexible substrate and extending in the length direction of the first separation wall; and the second separation wall has protrusions and a second groove with an opening far away from the first flexible substrate and extending in the length direction of the second separation wall. A part of the cathode that faces against the first separation wall has a curve shape conforming to the first groove, and a part of the cathode that faces against the second separation wall has a curve shape conforming to the second groove.
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:
The present disclosure provides a light guide plate-positioning column, a backlight module and a display apparatus. The column comprises a first positioning body for positioning a light guide plate and a second positioning body for positioning an optical film; the second positioning body is located on a side of the first and fixedly connected to it; a projection of the first positioning body in a direction from it toward the second completely covers that of the second, and a projection area of the first positioning body is greater than that of the second; wherein in the direction, a surface on a side of the first positioning body close to the second does not extend beyond a surface on a side of the plate close to the second. Both the requirements of the positioning strength of the plate and the fine positioning of the film can be met.
Abstract:
An encapsulation structure of OLED device, comprising an upper substrate and a lower substrate that are disposed in opposition to each other. An OLED device is provided on the lower substrate, and an encapsulating thin film is provided on the OLED device. An edge of the lower substrate and an edge of the upper substrate are hermetically coupled through an obstruction wall, and there is a recess at the edge of the lower substrate on the side facing the upper substrate. One end of the obstruction wall that is coupled to the lower substrate is positioned within the recess of the lower substrate, and configured to seal the periphery of the encapsulating thin film within the recess of the lower substrate. With the encapsulation structure, the effect of water vapor and oxygen on the OLED device can be reduced, and service life of the OLED device is prolonged.
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:
An encapsulating structure of an OLED device, comprising an upper substrate and a lower substrate that are disposed in opposition to each other, an OLED device, and a frit wall for sealing peripheries of the upper substrate and the lower substrate; two faces of the upper substrate and the lower substrate that are opposed abut against each other, the lower substrate has a recessed section, which is opened toward the upper substrate and within which the OLED device is positioned; the upper substrate has a first annular groove that is opened toward the lower substrate, the lower substrate has a second annular groove that is opposed to the first annular groove and opened toward the upper substrate, an upper bound of the frit wall is located in the first annular groove, and a lower bound of the frit wall is located in the second annular groove. The encapsulation stability of the encapsulating structure is relatively high, and service life of the OLED device is relatively long.
Abstract:
An encapsulation structure of OLED device, comprising an upper substrate and a lower substrate that are disposed in opposition to each other. An OLED device is provided on the lower substrate, and an encapsulating thin film is provided on the OLED device. An edge of the lower substrate and an edge of the upper substrate are hermetically coupled through an obstruction wall, and there is a recess at the edge of the lower substrate on the side facing the upper substrate. One end of the obstruction wall that is coupled to the lower substrate is positioned within the recess of the lower substrate, and configured to seal the periphery of the encapsulating thin film within the recess of the lower substrate. With the encapsulation structure, the effect of water vapor and oxygen on the OLED device can be reduced, and service life of the OLED device is prolonged.