Abstract:
A touch panel includes a substrate, plural conducting wires, an insulating layer, and a ground layer. The substrate includes an active region and a peripheral region surrounding the active region. The conducting wires are disposed in the peripheral region and extend along a first direction. The insulating layer is disposed on the conductive wires. The ground layer is disposed at an edge of the peripheral region and at least partially on the insulating layer, and the ground layer is at least partially in contact with the substrate.
Abstract:
A transparent conductive film includes a transparent substrate. A support layer is formed on one surface of the substrate. A surface of the support layer away from the substrate defines grooves formed in a mesh pattern. An ink layer is formed at a bottom of the grooves. A conductive layer is formed on the ink layer and in a mesh pattern. A top of the conductive layer protrudes out of the grooves.
Abstract:
A touchscreen electrode pattern constituted by wavy conductive lines, each wavy conductive line includes multiple troughs of wave and multiple crests of waves, wherein an interval between adjacent troughs of waves in each wavy conductive line is larger than 1.5 times of a predetermined value, and an amplitude difference between adjacent trough of waves and crest of waves in each wavy conductive line is smaller than ⅓ times of the predetermined value.
Abstract:
An electronic device includes a speaker, and a cover covering the speaker. The cover includes a transparent main portion, and a non-transparent border portion. The non-transparent border portion includes a substrate integrated with the transparent main portion. The substrate of the border portion defines a plurality of through holes corresponding to the speaker to transmit sound output from the speaker.
Abstract:
A cover for an electronic device includes a transparent portion and a non-transparent portion beside the transparent portion. The transparent portion defines a display area of the electronic device. The non-transparent portion defines a non-display area of the electronic device beside the display area. The non-transparent portion includes a transparent substrate integrated with the transparent portion. A plurality of through holes are defined on the transparent substrate.
Abstract:
A cover for an electronic device includes a main portion and a border portion beside the main portion. The border portion includes a transparent substrate and a adhesive layer. The transparent substrate defines at least one through hole. The adhesive layer is adhered to an inner wall of the at least one through hole.
Abstract:
A zoom optical system includes a first lens, a transreflective coating layer, a liquid crystal layer, a substrate, a polarizing reflector film layer and a second lens. The first lens has a first surface and an opposite second surface. The transreflective coating layer adheres to the first surface of the first lens. The liquid crystal layer adheres to the second surface of the first lens. The substrate adheres to a surface facing away the first lens of the liquid crystal layer. The polarizing reflector film layer is located at a side of the substrate facing away the liquid crystal layer. The second lens adheres to the polarizing reflector film layer by an optical adhesive layer.
Abstract:
A head-mounted display device and a zoomable curved optical device thereof is disclosed. The zoomable curved optical device includes a curved polarization reflection film, a waveplate, a half-mirror film, and a zoomable module. The waveplate has a first surface and a second surface opposite to each other. The half-mirror film is arranged on the first surface of the waveplate. The zoomable module is adhered to the second surface of the waveplate with an optical adhesive. The curved polarization reflection film is arranged on the zoomable module. The head-mounted display device and the zoomable curved optical device thereof adopt a polarization reflection film with the shorter radius of curvature to have lightweight and slim properties.
Abstract:
A display panel includes: a display module including a non-display area, and a plurality of functional holes being arranged in the non-display area in a first direction; and a first polarizer arranged on a display side of the display module in the first direction. The first polarizer is provided with a plurality of light transmission holes independent of each other in the first direction, and the light transmission holes correspond to the functional holes one by one.
Abstract:
A micro light-emitting diode display is based on a conventional micro light-emitting diode display and includes at least one electrically conductive material layer or at least one functional material added to an encapsulation layer, so as to achieve antistatic effect. The micro light-emitting diode display solves the problem that the conventional micro light-emitting diode display is easily damaged by electrostatic breakdown.