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. The grooves include a first groove portion and a second groove portion communicating with the first groove portion. A depth of the first groove portion is less than that of the second groove portion. An ink layer is formed at a bottom of the first groove portion and the second groove portion. A conductive layer is formed on the ink layer and in a mesh pattern. A top of the conductive layer formed in the first groove portion protrudes out of the first groove portion, and the conductive layer formed in the second groove portion is totally received in the second groove portion.
Abstract:
A touch panel includes a first substrate, a first electrode formed on the first substrate, a second substrate, and a second electrode formed on the second substrate. The first electrode includes a number of first conductive patterns extending in a first direction. The second electrode includes a number of second conductive patterns extending in a second direction. Both the first conductive patterns and the second conductive patterns include a number of parallel first metal wires and a number of parallel second metal wires perpendicularly crossing with the first metal wires. A first angle is defined between the first metal wires of the first conductive pattern and the first direction. A second angle is defined between the first metal wires of the second conductive pattern and the second direction. The first angle is different from the second angle.
Abstract:
A capacitive touch panel is provided in the present invention, which includes a transparent substrate, a plurality of emitter mesh electrode strips, a plurality of receiver mesh electrode strips, and a plurality of subsidiary receiver mesh electrode blocks, where the emitter mesh electrode strips, the receiver mesh electrode strips and the subsidiary receiver mesh electrode strips are disposed in different layers on the transparent substrate, and the receiver mesh electrode strips and the subsidiary receiver mesh electrode blocks are partially overlapped.
Abstract:
A touch display device includes a display device and a touch device disposed on the display device. The touch device includes a cover, a dummy structure and a touch sensing element. The touch sensing element is disposed between the cover and the dummy structure in a way that one surface of the touch sensing element is completely covered by the dummy structure.
Abstract:
A curved touch device is provided in the present invention including a back cover and a touch panel corresponding to the back cover, where at least one edge portion of the touch panel is a curve surface jointing with the one edge of the back cover.
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 augmented reality display device includes a light source, a waveguide module and a solar charging layer. The light source has a light-emitting area. The waveguide module is located on the light-emitting area of the light source and includes a first glass layer, a waveguide element, an electrochrome layer and a second glass layer. The first glass layer is located on the light-emitting area of the light source. The electrochrome layer is located on a surface of the waveguide element facing away the first glass layer. The second glass layer is located a surface of the electrochrome layer facing away the waveguide element. The solar charging layer is located on a surface of the second glass layer facing away the electrochrome layer, in which the solar charging layer electrically connects the light source and is configured to charge the light source.
Abstract:
An in-mold electronic component includes a first film layer, a functional module, a plastic layer, and a lead-out terminal. The first film layer is provided at a top surface of the in-mold electronic component. The functional module includes a circuit layer and an electronic component electrically connected to circuit layer. The plastic layer is configured to seal the functional module. One end of the lead-out terminal is electrically connected to the circuit layer, and the other end of the lead-out terminal is led out to a rear surface of the in-mold electronic component.
Abstract:
A lens set with an aligning structure includes a plurality of lenses. For two adjacent lenses, when one of these two lenses has a plurality of square accommodating spaces at its peripheral area, the other one has a plurality of triangular pillars with bottom surfaces that are right-angled triangles at its corresponding peripheral area. Each of the aforementioned triangular pillars is accommodated in each of the square accommodating spaces with an inclined surface facing each of the square accommodating spaces.
Abstract:
A coating apparatus for a substrate with a curved surface includes a platform, a coating assembly, a carrying stage, and a transfer printing assembly. The coating assembly includes a push frame mounted on the platform and a coating wire rod disposed on the push frame. The push frame can push the coating wire rod to scrape a glue on a flat surface of the platform to form a glue layer on the flat surface. The carrying stage can hold the substrate. The transfer printing assembly includes a carrier and an elastic transfer printing head. The carrier is horizontally movable above the platform and the carrying stage. The elastic transfer printing head is disposed on a bottom of the carrier and is vertically movable, and can attach the glue layer on the flat surface and press against the curved surface to transfer the attached glue layer to the curved surface.