Abstract:
A key structure includes a switch circuit, a frame layer, a deformable elastic element and a pressing unit. The switch circuit has a predetermined pressing region. The frame layer is disposed on the switch circuit, and the frame layer has a receiving space. The deformable elastic element is disposed on the switch circuit and received in the receiving space of the frame layer. The pressing unit includes a key body contacting the deformable elastic element. The deformable elastic element is disposed between the switch circuit and the key body, and the contact area between the deformable elastic element and the switch circuit is smaller than the contact area between the deformable elastic element and the key body. Whereby, when a predetermined pressure is pressed upon the pressing unit, the predetermined pressure is balancedly pressed on the predetermined pressing region of the switch circuit through the deformable elastic element.
Abstract:
A key module and its manufacturing method are provided in the present invention. The steps of the method include: providing a mold; forming a key body having multiple opening portions on the mold; jostling a combination of a display body and an elastic body to the key body; and finally, tightly attaching the display body to the key body and stuffing the display body into the opening portions of the key body. Therein, the elastic body has a lower end formed with a contact block contacting a circuit board. By compressing, injecting or infusing a silicone rubber material or an elastic material into the opening portions, the gap located between the key body and the display body or between the key body and the elastic body is smaller than 0.01 mm. Thus, the appearance of the key module of the present invention is almost seamless.
Abstract:
An auto-focus driving structure for installing a lens has an optical axis. The auto-focus driving structure comprises a main body, a lens retainer, and a driving unit. The lens retainer is movably disposed in the main body. The driving unit includes a coil circuit board and a magnetic group. The coil circuit board has a plurality of printed coils. The plurality of printed coils corresponds to the position of the magnetic group, thus the lens retainer can be selectively moved with respect to a bottom portion of the main body through the driving unit.
Abstract:
A touch panel includes a substrate, a decoration pattern, a covering layer, and a touch sensing element. The substrate has a first region and a second region. The decoration pattern is disposed on the first region of the substrate and has a first thickness. The covering layer includes a first portion covering the second region of the substrate and a second portion covering the decoration pattern, wherein the second portion has a second thickness and the first portion has a third thickness. The second thickness is less than the third thickness. The touch sensing element is disposed on the covering layer.
Abstract:
A button structure for displaying a multi-layered appearance includes a first flexible body, a film layer, a first color layer, a second flexible body, a second color layer, and a third color layer. The film layer is disposed on a top surface of the first flexible body. The first color layer is disposed between the first flexible body and the film layer. The second flexible body is disposed on a top surface of the film layer. The second color layer is disposed between the second flexible body and the film layer. The third color layer is disposed on a top surface of the second flexible body. Hence, the above-mentioned layers are integratedly formed together to display a multi-layered appearance.
Abstract:
A photosensitive button structure includes a button body and a photosensitive layer. The photosensitive layer is disposed on a bottom side of the button body, and has a plurality of words and pictures formed thereon. Whereby, the photosensitive layer produces a first color change by absorbing light from one angle, and then produces a second color change or more than two color changes by absorbing light from another angle, in order to produce a dual mold visual effect. The present invention solves problems and the defects of the traditional button having only one fixed color, and that the color of the traditional button can only be changed once, because the photosensitive layer can absorb light from different angles. Hence, the present invention not only improves the appearance of the button body, but can also show more than two color changes of any words or pictures on the button structure.
Abstract:
A photosensitive button structure includes a button body and a photosensitive layer. The photosensitive layer is disposed on a bottom side of the button body, and has a plurality of words and pictures formed thereon. Whereby, the photosensitive layer produces a first color change by absorbing light from one angle, and then produces a second color change or more than two color changes by absorbing light from another angle, in order to produce a dual mode visual effect. The present invention solves problems and the defects of the traditional button having only one fixed color, and that the color of the traditional button can only be changed once, because the photosensitive layer can absorb light from different angles. Hence, the present invention not only improves the appearance of the button body, but can also show more than two color changes of any words or pictures on the button structure.
Abstract:
A button structure with three-dimensional stripes includes a button body, a plurality of stripes or pictures, and a mirror layer. The stripes or the pictures are formed on a bottom side of the button body, and the mirror layer is formed on the stripes for producing a mirrored visual effect. Whereby, the sharp contrast is produced between the mirror layer and the stripes, so that the button body produces a three-dimensional raised visual effect. Hence, the present invention solves the conventional button structure's problems of being time-consuming to form the words on the bottom surface of the button body using a mold, of the color layer not being easily sprayed onto the words, and of it being difficult for a user to change the words to have a different raised visual effect.
Abstract:
A surface bonding method for bonding a PET film and silica gel buttons is provided which can shorten the manufacturing period, reduce the required number of fixtures and improve production efficiency. The surface bonding method comprises the following steps: providing a PET film and performing surface treatment on the PET film, coating a layer of UV glue on the PET film, providing a plurality of silica gel buttons, performing surface treatment on the bottom surfaces of the silica gel buttons, placing the silica gel buttons into the bonding fixture, placing and fixing the PET film to the bonding fixture, stitching a transparent plate onto the PET film, and applying the exposure of UV-light on the bonding fixture.
Abstract:
A thin keymat module with a reflection structure includes a circuit board with a plurality of elastic conductive elements, a mirror reflection sheet, a transparent elastic layer, a keymat layer and a light-emitting unit. The mirror reflection sheet is disposed on the circuit board, evenly corresponding to the elastic conductive elements. The mirror reflection sheet has a reflection microstructure corresponding to the elastic conductive elements. The transparent elastic layer is disposed on the mirror reflection sheet and has elastic portions corresponding to the elastic conductive elements. The keymat layer is disposed on the transparent elastic layer and has transparent portions corresponding to the elastic portions. The light-emitting unit is located on one side of the transparent elastic layer. When the light-emitting unit projects light onto the mirror reflection sheet and the reflection microstructure, each elastic portion and each transparent portion have a light displaying effect.