This application claims the benefit of the earlier filing date, pursuant to 35 U.S.C. § 119, to that patent application entitled “Keypad Assembly for Electronic Device,” filed in the Korean Intellectual Property Office on Mar. 3, 2006 and assigned Serial No. 2006-20658, the contents of which are incorporated herein by reference.
1. Field of the Invention
The present invention generally relates to a keypad assembly for an electronic device, and in particular, to a keypad assembly in which key buttons of the electronic device each include at least one optical filtering layer that changes the color of an input light wavelength by reacting or not reacting to the light wavelengths generated from at least two light emitting devices.
2. Description of the Related Art
Generally, a “portable communication apparatus” refers to an electronic apparatus which provides electrical communication between users and service providers. As examples of the portable communication apparatus, there are HHPs (hand held phones), CT-2 cellular phones, digital phones, PCS (personal communication service) phones, and PDAs (personal digital assistants). Conventional portable communication apparatuses may be classified in various types according to their appearance. For example, wireless terminals are classified into bar-type wireless terminals, flip-type wireless terminals, and folder-type wireless terminals according to their appearance. The conventional portable terminals are equipped with antenna devices, data input/output devices, and data transmission/reception devices. As the data input/output devices, keypads allowing data input through a finger press task are generally used.
A keypad used for data input includes a plate-shaped elastic pad, a plurality of key buttons on the top surface of the elastic pad, having characters printed thereon, and a plurality of protrusions on the bottom surface of the elastic pad. The portable terminals generally include a plurality of (typically 15-20) light emitting devices for backlighting the key pad.
The keypad 2 includes an elastic pad 2a that is made of a flexible material (e.g., rubber) and is plate-shaped, a plurality of key buttons 2b that are formed on the top surface of the elastic pad 2a and has numbers and characters printed thereon, and a plurality of protrusions that are formed on the bottom surface of the elastic pad 2a.
Each of the protrusions 2c is arranged at the center of each of the key buttons 2b and a plurality of grooves 5 may be formed in the bottom face of the elastic pad 2a. The grooves 5 are arranged around the protrusions 2c in such a way to avoid interference caused by the LEDs 4 and the protrusions 2c.
The switch board 3 includes a plate-shaped Printed Circuit Board (PCB) and a plurality of dome switches 3a formed on the top surface of the PCB facing the keypad 2.
The LEDs 4 are amounted on the top surface of the PCB and are positioned to be covered by the grooves 5 of the elastic pad 2a.
If a user presses one of the key buttons 2b, a portion of the keypad 2 under the pressed key button 2b is transformed towards the switch board 3 and thus the protrusion 2c included in the transformed portion presses the dome switch 3a. A contact member 6 included in the dome switch 3a electrically contacts the protrusion 2c.
For operations of the dome switches 3a, the LEDs 4 cannot be positioned under the key buttons 2b. Since a light A1 output from each of the LEDs 4 passes through the elastic pad 2a and illuminates each of the key buttons 2b in the form of a square, the illumination of the key button 2b is non-uniform and dark.
If a large number of LEDs 4 are installed to uniformly and brightly illuminate the key buttons 2b, power consumption increases. Moreover, due to a large number of parts, the time required for the assembly of a terminal and manufacturing cost of the terminal increase.
To address the problems, a keypad assembly including a light guide plate and reflecting patterns has been developed as shown in
The single light guide plate 20 is provided for the illumination of the entire key buttons 30.
As such, the entire key buttons 30 can be illuminated using the light guide plate 20, but the numbers and characters printed on the key buttons 3 cannot be separately illuminated. As a result, the utility of the numbers and characters of the key buttons 30 may be degraded in some modes of the terminal.
The present invention provides a keypad assembly for an electronic device, in which key buttons of the electronic device each include at least one optical filtering layer which changes the color of an input light wavelength by reacting or not reacting to the light wavelengths generated from at least two light emitting devices, thereby allowing numbers and characters printed on the key buttons to express different colors.
It is one aspect of the present invention to provide a keypad assembly for an electronic device, in which numbers and characters printed on key buttons of the electronic device are separately illuminated with different colors, thereby improving the utility of the key buttons.
It is another aspect of the present invention to provide a keypad assembly for an electronic device, in which special character faces on key buttons of the electronic device each include at least one optical filtering layer that changes the color of an input light wavelength by reacting to light wavelengths generated from at least two light emitting devices, thereby allowing the special characters to express different colors.
According to yet another aspect of the present invention, there is provided a keypad assembly for an electronic device. The keypad assembly includes a light guide plate through which a light moves, a plurality of first key buttons on the top surface of the light guide plate, a plurality of reflecting patterns on the bottom surface of the light guide plate for reflecting the light moving through the light guide plate toward the first key buttons, protrusions under the reflecting patterns, a plurality of light emitting devices for supplying the light to the light guide plate, and a switch board including a plurality of dome switches And at least one first optical filtering layer whose color is changed into other colors by reacting or not reacting to the wavelengths of lights generated from the light emitting devices is included under each of the first key buttons.
According to another aspect of the present invention, there is provided a keypad assembly for an electronic device. The keypad assembly includes a light guide plate through which a light moves, a plurality of key buttons on the top surface of the light guide plate, a plurality of reflecting patterns on the bottom surface of the light guide plate for reflecting the light moving through the light guide plate toward the key buttons, protrusions under the reflecting patterns, a plurality of light emitting devices for supplying the light to the light guide plate, and a switch board including a plurality of dome switches and at least one first and second optical filtering layers whose colors are changed into other colors by reacting or not reacting to the wavelengths of lights generated from the light emitting devices are included under a number face and a character face of each of the key buttons, respectively.
The above features and advantages of the present invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings in which:
Now, embodiments of the present invention will now be described in detail with reference to the annexed drawings. In the following description, elements having the identical functions with conventional functions will be designated by the same reference numerals.
Similar to the conventional keypad assembly 10 shown in
As shown in
The optical filtering layers 100 emit red, green, blue, and combinations thereof (e.g., purple or violet). In one aspect of the invention, the wavelength of a light generated from the first light emitting device 701 is 400 nm such that the optical filtering layers 100 react to produce an light output of another color and the wavelength of a light generated from the second light emitting device 702 is 470 nm such that the optical filtering layers 100 do not react and the light color produced is the same as the input light wavelength color.
Referring to
Referring to
Printing faces 31 on which numbers and characters are printed are formed on the key buttons 30 and each of the printing faces 31 includes a number face 31a and a character face 31b (
As shown in
According to another embodiment of the present invention, the light emitting devices 70 are included adjacent to the dome switches 80 of the switch board 60.
The optical filtering layer 100 can be selectively installed on or under the key buttons 30 or in positions according to the moving path of the light emitted from the light emitting devices 70.
Hereinafter, the operation of the keypad assembly 10 according to the first embodiment of the present invention will be described with reference to
As shown in
In this state, as shown in
As shown in
As shown in
As show in
When the first light emitting device 702 emits a light of 470 nm, the optical filtering layer 100 under the number face 31a of the key button 30 does not react and the optical filtering layer 200 under the special character face 32a of the key button 32 reacts and emits light of various colors.
Here, the electronic device generally refers to a portable communication apparatus.
Hereinafter, the operation of the keypad assembly 10 according to a second embodiment of the present invention will be described with reference to
As shown in
The first optical filtering layer 300 is made of a first phosphor and the second optical filtering layer is made of a second phosphor.
As shown in
In this state, the first light emitting device 701 at a side of the keypad 10 is turned on to cause the first light emitting device 701 to emit a light. At this time, the second light emitting device 702 is in the OFF state.
As shown in
As shown in
In this case, the first optical filtering layer 300 and the second optical filtering layer 400 do not react to the input blue light, and the first optical filtering layer 300 illuminates the number face 31a of the key button 30 with a blue light and the second optical filtering layer 400 also illuminates the character face 31b of the key button 30 with a blue light.
As such, when the first light emitting device 701 emits a violet light of 400 nm, the first optical filtering layer 300 reacts and illuminates the number face 31a with pink color instead of violet and the second optical filtering layer 300 does not react and illuminates the character face 31b with a violet color.
When the second light emitting device 702 emits a blue light of 470 nm, the first optical filtering layer 300 and the second optical filtering layer 400 do not react and thus illuminate the number face 31a and the character face 31b with blue.
As described above, according to the present invention, by including at least one optical filtering layer (phosphor) whose color is changed into various colors by reacting or not reacting to the wavelengths of lights generated from at least two light emitting devices in key buttons of a terminal, number faces, character faces, and special character faces on the key buttons of the terminal can be illuminated with various colors according to the lights emitted from the optical filtering layer.
While the present invention has been shown and described with reference to preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention.
Number | Date | Country | Kind |
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10-2006-0020658 | Mar 2006 | KR | national |
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Number | Date | Country | |
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20070205088 A1 | Sep 2007 | US |