This application claims the benefit of the earlier filing date, pursuant to 35 USC § 119, to that patent application entitled “Keypad and Method for Fabricating Same,” filed with the Korean Intellectual Property Office on Dec. 5, 2005 and assigned Serial No. 2005-117728, the contents of which are incorporated herein by reference.
1. Field of the Invention
The present invention relates to a keypad, and more particularly to a keypad having an illumination means and a method for fabricating same.
2. Description of the Related Art
Generally, mobile terminals have an illumination means which emits light to enable the users to use a keypad in the dark. The illumination means can have a structure that disposes a plurality of light emitting diodes on a PCB (Printed Circuit Board) or a structure that inserts an inorganic electro-luminescence element into an elastic pad.
The keypad 110 includes a plate-shaped elastic layer 120 which is made from a rubber material, a plurality of key tops 140 disposed on a first surface 122 of the elastic pad 120 and imprinted with numbers and characters, and a plurality of protrusions 130 projected downwardly from a second surface 124 of the elastic pad 120. The protrusions 130 are centrally disposed below the corresponding key tops 140. Also, the elastic pad 120 has a plurality of grooves 126 on the second surface 124 thereof so that the plurality of LEDs 170 can be inserted into the grooves 126.
The switch board 150 includes a switch sheet placed on top of a printed circuit board (PCB) 155. The switch sheet has a plurality of switches 160 on the top thereof. Each switch 160 consists of a conductive contact member 162 and a conductive dome 164 that completely covers the contact member 162. In addition, the LEDs 170 are mounted on the switch sheet.
In the prior art, a keypad assembly having a keypad with an inorganic electro-luminescence element inserted into an elastic layer has also been suggested. However, a separate AC power is needed to use the inorganic electro-luminescence element. In other words, conventional keypad assemblies including inorganic electro-luminescence element further include a separate inverter for converting a DC (direct current) voltage into an AC (alternating current) voltage, which increases the size and manufacturing cost of the keypad assembly and complicates the keypad assembly fabricating process.
Accordingly, the present invention has been made to solve the above-mentioned problems occurring in the prior art and provides additional advantages, by providing a method for fabricating a keypad which can emit light of uniform intensity with reduce manufacturing cost.
In one embodiment, there is provided a method for fabricating a keypad, comprising the steps of forming an optical fiber sheet having at least two optical fiber arrays and a plurality of grooves, forming a key sheet having at least two key patterns corresponding respectively to the at least two optical fiber arrays and a plurality of projected alignment pins, the alignment pins corresponding respectively to the grooves, attaching an upper elastic layer onto the optical fiber sheet, mounting the key sheet on the upper elastic layer so that the alignment pins can penetrate the upper elastic layer to be inserted into the corresponding grooves of the optical fiber sheet, cutting the key sheet with the aligned upper elastic layer and optical fiber sheet into at least two pieces according to the key patterns, and attaching a lower elastic layer having projections to a bottom surface of each piece cut out according to the key patterns.
The above features and advantages of the present invention will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which:
Hereinafter, exemplary embodiments of the present invention will be described with reference to the accompanying drawings. For the purposes of clarity and simplicity, a detailed description of known functions and configurations incorporated herein will be omitted as it may make the subject matter of the present invention unclear.
The keypad 210 includes a waveguide 220 and key tops 250 disposed on top of the waveguide 220. A plurality of reflective patterns 223 are formed on a lower surface of the waveguide 220 to reflect part of the light traveling in the waveguide 220 toward the key tops 250. The keypad 210 also includes a lower elastic layer 240 formed below the waveguide 220 and an upper elastic layer 230 formed on an upper surface of the waveguide 220. The upper elastic layer 230 is interposed between the key tops 250 and the waveguide 220.
The waveguide 220 includes a core 222 and clads 221a and 221b formed respectively on top and bottom of the core 222. The reflective patterns 223 for reflecting part of the light traveling in the core 222 toward the key tops 250 are formed on the lower clad 221b.
In order to uniformly illuminate the overall key tops regardless of the distance from the light source, the reflective patterns 223 provided below the key tops relatively close to the light source may have a lower density than those provided below the key tops remote from the light source.
The printed circuit board 360 is attached to an end portion of the lower elastic layer 240. At least one light source 350 is mounted on top of the printed circuit board 360 in such a manner that its light emitting side can face a lateral side of the waveguide 220. Light emitted from the light source 350 is combined into the interior of the waveguide 220 through the lateral side of the waveguide 220. The printed circuit board 360 can be a flexible printed circuit board (FPCB). Also, a general UV emitting diode can be used as the light source 350.
The switch board 300 is similar to switch board 150 shown in
Referring to
Referring to
According to another embodiment of the present invention, the optical fiber sheet 310 can be attached onto the upper elastic layer 330. Alternatively, it is also possible to form a silicon material on the upper elastic layer 330 and then attach the optical fiber sheet 310 onto the silicon material. The key sheet with the aligned upper elastic layer and optical fiber sheet as illustrated in
As explained above, a plurality of keypads are fabricated at once using a waveguide. The waveguide for guiding light toward the key tops of each keypad is inserted into an elastic layer, which improves efficiency in the manufacture of the keypads and prevents thermal damage to the optical fiber arrays. The keypad fabricating process according to the present invention is much simpler than a conventional process. In addition, a keypad fabricated using a waveguide according to the present invention can backlight the key tops in a uniform intensity of illumination.
Although preferred embodiments of the present invention have been described for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims, including the full scope of equivalents thereof.
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