1. Technical Field
The present invention relates to writing boards and, particularly, to an impression-type writing board.
2. Discussion of Related Art
Referring to
When the thin film 32 is in a released state, light emitted on the second surface 322 of the thin film 32 will pass through the thin film 32 and the clearance 200 in sequence, and then reach the substrate 31. After that, light having a color component accordant with the substrate 31 is reflected back via the substrate 31. During the reflected light passing through the clearance 200, the reflected light is diffused and reflected by atmosphere molecules existed in the clearance 200, and therefore an amount of the reflected light that reaches the thin film is visibly decreased. As such, the thin film 32 presents a relatively lighter color than that of the substrate 31. Whereas, when an area of the thin film 32 is in an impressed state resulting from being written or drawn by a pen or the like, a clearance corresponding to the impressed area of the thin film 32 is decreased and whereby less atmosphere molecules are existed. As such, the impressed area shows a relatively deeper color than other released areas due to a reason that the chance of the reflected light being diffused and reflected, by the atmosphere molecules, is reduced. Based upon the above-mentioned principle, characters or images can be displayed on the writing board 30 via being written or drawn by the pen or the like on the thin film 32.
However, the above mentioned writing board only effectively works in environments with abundant outside lights. When lacking of outside lights, the writing board may not function effectively.
Therefore, what is needed is a writing board that can effectively function in environment that lacks of outside lights.
A writing board, in accordance with a present embodiment, is provided. The writing board includes a deformable thin film, a backlight module, and a light-transmissive film. The thin film has a writing surface and a light incident surface on an opposite side of the thin film to the writing surface. The backlight module is arranged adjacent to the light incident surface and configured for providing a light incident onto the light incident surface. The light-transmissive film is arranged between the thin film and the backlight module. A clearance is formed between the light-transmissive film and the thin film, and a distance of the clearance, along a thicknesswise direction of the thin film, is less than or equal to a maximum deformation amount of the thin film at the same direction.
Detailed features of the present writing board will become more apparent from the following detailed description and claims, and the accompanying drawings.
Many aspects of the present wring board can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present writing board. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views, wherein:
Reference will now be made to the drawings to describe the embodiments of the present writing board, in detail.
Referring now particularly to
The thin film 11 includes a writing surface 110 and a light incident surface 112 on an opposite side of the thin film 11 to the writing surface 110. The writing surface 110 is configured for being written or drawn thereon. The light incident surface 112 is configured for receiving an incident light provided by the backlight module 12.
The backlight module 12 is arranged adjacent to the light incident surface 112 of the thin film 11. The backlight module 12 is configured for providing light incident onto the light incident surface 112. The backlight module 12 includes a light guiding plate 120 and a light source 122.
The light guiding plate 120 can be a direct-type light guiding plate or an edge-type light guiding plate. In the exemplary embodiment, the light guiding plate 120 is an edge-type light guiding plate. Referring to
Each of the light sources 122 faces toward the corresponding light incident surfaces 1200 of the light guiding plate 12. The light sources 122 can be selected from a semiconductor light emitting diode or and an organic light emitting diode. In the exemplary embodiment, the light source 122 is semiconductor light emitting diodes. The light source 122 can be a colored light source that can emit red light, green light or blue light.
The light-transmissive film 13 is arranged between the backlight module 12 and the thin film 11, and contact with the light outputting surface 1204 of the light guiding plate 120. A clearance 200 is formed between the light-transmissive film 13 and the thin film 11. A distance of the clearance 200, along a thicknesswise direction of the thin film 11, is less than or equal to a maximum deformation amount of the thin film 11 at the same direction. The light-transmissive film 13 is rather suitably made of plastic. Lights emitted from the light outputting surface 1204 of the light guiding plate 120 will pass through the light-transmissive film 13 to the clearance 200 in sequence, and then reach the thin film 11. During the light passing through the clearance 200, the light is diffused and reflected by atmosphere molecules existed in the clearance 200. Thereby an amount of light that reaches the thin film is visibly decreased, and whole of the writing surface 110 is dimly illuminated.
Referring to
In sum, due to the writing board 10 is equipped with the backlight module 12, which can provide light incident onto the light incident surface 112 for illumination, the writing board 10 can effectively works with backlight module 12 even though in environments lacking of outside lights.
Finally, it is to be understood that the above-described embodiments are intended to illustrate rather than limit the invention. Variations may be made to the embodiments without departing from the spirit of the invention as claimed. The above-described embodiments illustrate the scope of the invention but do not restrict the scope of the invention.
Number | Date | Country | Kind |
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200710074586.6 | May 2007 | CN | national |