Abstract:
The present disclosure provides a touch sensing unit, a touch substrate and a method for producing the touch substrate, a touch display panel and a touch display apparatus. The sensing unit includes: at least one pair of first electrode and second electrode spaced apart from each other; at least one elastic base body in which pressure-sensitive conductive material is contained, the at least one elastic base body forcing the corresponding first electrode and second electrode in the at least one pair of first electrode and second electrode to be electrically connected with each other when it is deformed by a force; and a touch panel arranged at the side of the at least one elastic base body to which the force is applied. It may sense touch action of a finger by conductive property of pressure-sensitive conductive material to improve convenience of finger touching and multiple point touch performance.
Abstract:
The present invention provides a curved display device, a method for manufacturing a curved display device and an electronic device. The curved display device may comprise a first curved light-transmitting substrate, a second curved light-transmitting substrate arranged opposite to the first curved light-transmitting substrate and a sealant having a particular width distribution which is located between the first curved light-transmitting substrate and the second curved light-transmitting substrate and coated along edges of the first curved light-transmitting substrate and the second curved light-transmitting substrate. The sealant having particular width distribution enables the first curved light-transmitting substrate to adhere to the second curved light-transmitting substrate, and reduces the stresses in the first curved light-transmitting substrate and the second curved light-transmitting substrate, while changing the stress distributions of the first curved light-transmitting substrate and the second curved light-transmitting substrate.
Abstract:
The present disclosure provides a touch sensing unit, a touch substrate and a method for producing the touch substrate, a touch display panel and a touch display apparatus. The sensing unit includes: at least one pair of first electrode and second electrode spaced apart from each other; at least one elastic base body in which pressure-sensitive conductive material is contained, the at least one elastic base body forcing the corresponding first electrode and second electrode in the at least one pair of first electrode and second electrode to be electrically connected with each other when it is deformed by a force; and a touch panel arranged at the side of the at least one elastic base body to which the force is applied. It may sense touch action of a finger by conductive property of pressure-sensitive conductive material to improve convenience of finger touching and multiple point touch performance.
Abstract:
A frame sealant and a sealing method, a display panel and a display device containing the frame sealant. A sealing method for a frame sealant comprises: successively coating a water-borne epoxy resin and a solvent-based epoxy resin or successively coating a solvent-based epoxy resin and a water-borne epoxy resin on a first substrate, aligning and pressing the first substrate and a second substrate; or coating a water-borne epoxy resin on a first substrate, coating a solvent-based epoxy resin on a second substrate, and aligning and pressing the two substrates; a first material by which a nano-scale second material is encapsulated is dispersed in the solvent-based epoxy resin, wherein, the first material is a hydrophilic polymeric material and the second material is one which will undergo an exothermic reaction with water. When the frame sealant is pressed, the hydrophilic polymeric material will absorb water and thus be saturated with water, the remaining water will react with the material which undergoes an exothermal reaction with water to generate heat, which will cause the curing of the frame sealant as an internal heat source.
Abstract:
Disclosed are an In-Cell touch screen and a display apparatus, the In-Cell touch screen comprising: an array substrate; an opposed substrate arranged to be opposed to the array substrate; a conductive black matrix provided on one side of the array substrate facing the opposed substrate or on one side of the opposed substrate facing the array substrate. The black matrix comprises a plurality of first touch electrodes and a plurality of second touch electrodes arranged to be insulated from each other and alternate with each other, one of the first touch electrode and the second touch electrode is applied with a touch scan signal, and the other one of the first touch electrode and second touch electrode is coupled with the touch scan signal and outputs a touch sensing signal. No separate touch electrode made of ITO material is required, and a pattern of the black matrix is provided in a non-opening region of the pixels, thus the light transmittance of the display apparatus can be prevented from being adversely affected by the touch electrode. Further, a mutual capacitance in a thickness direction of the touch screen is avoided, thus the touch sensitivity of the In-Cell touch screen can be improved.
Abstract:
A transflective display panel, a method for fabricating the same and a display device are provided. The transflective display panel comprises an array substrate and a color film substrate cell-assembled with each other and a liquid crystal layer sandwiched between the array substrate and the color film substrate. A plurality of pixel units correspondingly formed on the array substrate and the color film substrate. Each pixel unit comprises a reflective region and a transmissive region. Disposed inside the reflective region are a first reflection layer disposed on the side of the array substrate that is close to the liquid crystal layer and a diffuse reflection layer disposed on the side of the color film substrate that is close to the liquid crystal layer. The diffuse reflection layer and the first reflection layer are disposed opposite each other.