This application claims the benefit of Taiwan Patent Application No. 107147037, filed on Dec. 25, 2018, at the Taiwan Intellectual Property Office, the disclosures of which are incorporated herein in their entirety by reference.
The present invention is related to a keyboard device and a film structure.
Physical keyboards are frequently used in daily life. Users press down keys of a keyboard which indicate specific symbols, so as to input texts, numbers or figures. One type of physical keyboard is the backlit keyboard which is configured on the laptop computer. Light emitting diodes emit white light from the bottom of the backlit keyboard to transmit through laser-engraved symbols on the top of keys, so that users can clearly see the symbols on the keys.
Currently, techniques such as screen printing, computer-controlled spraying, painting, laser engraving and so on are applied to the bottom surface of a rigid film to form symbols thereon. Next, an injection technique is applied to molds to inject plastic materials on the bottom surface of the forming film to form a keycap body, which acts as a half-formed keycap. If the position of the forming film shifts in the mold, the symbol cannot keep in the fixed position when the forming film is molded to have a shape of the keycap. Deformation or distortion can also occur on the symbol. Finally, the symbols on one row of keycaps of the keyboard will be uneven and might cause problems. In addition, heat and pressure generated by the injection technique can also make the reproduced symbols become deformed, and the unqualified yield issue also occurs. In addition, using paint on the keys has environmental ramifications, and the selection for jig may generate tolerance. Therefore, keycaps manufactured by conventional techniques would cause defects easily, and thus requirements such as high yield and extremely low error cannot be satisfied by models currently available on the market.
In another technique, a symbol is engraved on the surface of the rigid film by laser, followed by the plastic injection on the symbol-borne rigid film to form a half-formed keycap. However, the high energy of laser engraving causes the symbol to become yellow and discolored and it will generate rough edges.
It is therefore the Applicant's attempt to deal with the above situation encountered in the prior art.
To overcome problems with the symbols on the keycaps becoming dislocated, yellowed and deformed when they are being manufactured with current techniques, a novel and progressive solution is provided in the present invention, wherein a top fabric layer (such as a polyurethane (PU) layer or a textile layer) is attached to a molding film to form a film structure for the keycap, followed by processing this film structure as the keycap or the key of a keyboard device. Taking the PU as an example, the PU layer is heated to release the viscose agent to adhere with the molding film (such as an in-mold-forming (IMF) film or an in-mold-decoration (IMD) film).
Thus, the present invention discloses a keyboard device, including plural independent keycaps, each of which has an outer surface and includes: a main body; and a film structure, including: one of an in-mold-forming film and an in-mold-decoration film disposed on the main body; and a top fabric layer attached to one of the in-mold-forming film and the in-mold-decoration film, wherein the top fabric layer is one of a polyurethane (PU) layer and a textile layer, and is the outer surface of the keycap.
In one embodiment, the PU layer has a first surface and a second surface being opposite to the first surface when the top fabric layer is the PU layer. In one embodiment, the second surface is attached to one of the in-mold-forming film and the in-mold-decoration film, and a symbol is engraved on the first surface by laser. In one embodiment, one of the in-mold-forming film and the in-mold-decoration film includes a material being one selected from the group consisting of polyethylene terephthalate (PET), polycarbonate (PC), polyvinyl chloride (PVC), polypropylene (PP), polyethylene (PE) and acrylonitrile butadiene styrene (ABS).
The present invention further discloses a film structure for a keycap, wherein the keycap includes an upper surface having an outline, the film structure including: a molding film presenting a shape conforming with the outline of the upper surface; and a top fabric layer disposed on the molding film and engraved a symbol thereon, wherein the top fabric layer is one of a PU layer and a textile layer.
In one embodiment, the molding film is one of an in-mold-forming film and an in-mold-decoration film. In one embodiment, the keycap further includes a main body formed by plastic injection, the film structure is molded as a forming film, and the forming film and the main body are molded as the keycap in a mold. In one embodiment, the symbol is formed by laser. In one embodiment, the molding film includes a material being one selected from the group consisting of PET, PC, PVC, PP, PE and ABS.
The present invention further discloses a film structure for a keycap of a backlit keyboard, including: a PU layer; and a molding film attached to the PU layer to form the film structure.
In one embodiment, the molding film is one of an in-mold-forming film and an in-mold-decoration film. In one embodiment, the molding film includes a material being one selected from the group consisting of PET, PC, PVC, PP, PE and ABS. In one embodiment, the film structure is molded as a forming film in a first mold. In one embodiment, the keycap includes a main body formed by plastic injection, and the forming film and the main body are molded as the keycap in a second mold. In one embodiment, the keycap includes a keycap main body, and the faulting film is adhered to the keycap main body for forming a backlight component.
The phrase “molding film” herein means a film which can be formed on a surface of the top fabric layer (e.g. a PU layer), and the molding film includes, but is not limited to a film which is formed by spreading a thermoset resin on a surface, a film which can be adhered to the top fabric layer, and an in-mold-forming (IMF) film or an in-mold-decoration (IMD) film.
The phrase “in-mold-forming (IMF) film” herein means a film which is formed in the forming machine followed by trimming and manufacturing in the mold, and generally includes PET, PC, PVC, PP, PE, ABS or a cementing material. The phrase “in-mold-decoration (IMD) film” means a film which has text or figure printed or transferred thereon, and generally includes PET, PC, PVC, PP, PE, ABS or a cementing material.
The phrase “symbol” herein means symbol which indicates a specific meaning on a keyboard device. Users press down the keys to process the computing device, and then the symbol is shown on a screen. “Symbols” include but are not limited to texts, numbers or figures.
The objectives and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed descriptions and accompanying drawings.
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of the preferred embodiments of this invention are presented herein for purpose of illustration and description only; they are not intended to be exhaustive or to be limited to the precise form disclosed.
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Alternatively, the sheet-like film structure 1 does not need to be subjected to the molding procedure (i.e. the film structure 1 is molded as the forming film 6; referring to
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In the present invention, the thickness of the PU layer is ranged between 0.1 mm and 0.5 mm, and the thickness of the in-mold-forming film or the in-mold-decoration film is ranged between 0.1 mm and 0.5 mm or between 0.8 mm and 1.0 mm. The skilled person in the art can select the desired thickness of the materials on demand.
The manufactured keycaps are dependent with each other, and can be processed as keys of the keyboard device.
In addition to keycaps manufactured by plastic injection, the molding film can be adhered to the machine element by the adhesion agent to form the light-transmitting element in the present invention, and this light-transmitting element can be further processed as keys of the keyboard device.
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Furthermore, the film structure 21 of the key 20 further includes a molding film 23 and a PU layer 22, wherein the PU layer 22 is disposed on the molding film 23, the molding film 23 is configured on and combined with the upper surface 27 to present the shape of the upper surface outline 28 of the keycap body 26.
1. A keyboard device, including plural independent keycaps, each of which has an outer surface and includes: a main body; and a film structure, including: one of an in-mold-forming film and an in-mold-decoration film disposed on the main body; and a top fabric layer attached to one of the in-mold-forming film and the in-mold-decoration film, wherein the top fabric layer is one of a polyurethane (PU) layer and a textile layer, and is the outer surface of the keycap.
2. The keyboard device according to Embodiment 1, wherein the PU layer has a first surface and a second surface being opposite to the first surface when the top fabric layer is the PU layer.
3. The keyboard device according to Embodiment 1 or 2, wherein the second surface is attached to one of the in-mold-forming film and the in-mold-decoration film, and a symbol is engraved on the first surface by laser.
4. The keyboard device according to any one of Embodiments 1-3, wherein one of the in-mold-forming film and the in-mold-decoration film includes a material being one selected from the group consisting of polyethylene terephthalate (PET), polycarbonate (PC), polyvinyl chloride (PVC), polypropylene (PP), polyethylene (PE) and acrylonitrile butadiene styrene (ABS).
5. A film structure for a keycap, wherein the keycap includes an upper surface having an outline, the film structure including: a molding film presenting a shape conforming with the outline of the upper surface; and a top fabric layer disposed on the molding film and engraved a symbol thereon, wherein the top fabric layer is one of a PU layer and a textile layer.
6. The film structure according to Embodiment 5, wherein the molding film is one of an in-mold-forming film and an in-mold-decoration film.
7. The film structure according to Embodiment 5 or 6, wherein the keycap further includes a main body formed by plastic injection, the film structure is molded as a forming film, and the forming film and the main body are molded as the keycap in a mold.
8. The film structure according to any one of Embodiment 5-7, wherein the symbol is formed by laser.
9. The film structure according to any one of Embodiments 5-8, wherein the molding film includes a material being one selected from the group consisting of PET, PC, PVC, PP, PE and ABS.
10. A film structure for a keycap of a backlit keyboard, including: a PU layer; and a molding film attached to the PU layer to form the film structure.
11. The film structure according to Embodiment 10, wherein the molding film is one of an in-mold-forming film and an in-mold-decoration film.
12. The film structure according to Embodiment 10 or 11, wherein the molding film includes a material being one selected from the group consisting of PET, PC, PVC, PP, PE and ABS.
13. The film structure according to any one of Embodiments 10-12, wherein the film structure is molded as a forming film in a first mold.
14. The film structure according to any one of Embodiments 10-13, wherein the keycap includes a main body formed by plastic injection, and the forming film and the main body are molded as the keycap in a second mold.
15. The film structure according to any one of Embodiments 10-14, wherein the keycap includes a keycap main body, and the forming film is adhered to the keycap main body for forming a backlight component.
While the invention has been described in terms of what is presently considered to be the most practical and preferred Embodiments, it is to be understood that the invention need not be limited to the disclosed Embodiments. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims, which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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107147037 | Dec 2018 | TW | national |