Referring to
In the embodiment, each of the light source modules 320a and 320b has a first color light source 323, a second color light source 324, a third color light source 325, a first dichroic element 326 disposed between the first color light source 323 and the second color light source 324, a second dichroic element 327 dispersed between the third color light source 325 and the first dichroic element 326, and a condensing element 328. The first color light source 323 is suitable for providing a first color light beam 323a, the second color light source 324 is suitable for providing a second color light beam 324a, and the third color light source 325 is suitable for providing a third color light beam 325a. In addition, the first dichroic element 326a, such as a dichroic mirror, is suitable for allowing the first color light beam 323a to penetrate, and reflecting the second color light beam 324a. The optical axis 323b of the first color light beam 323a after penetrating the first dichroic element 326 is the same as the optical axis 324b of the second color light beam 324a after being reflected by the first dichroic element 326. The second dichroic element 327 is a dichroic mirror, which is suitable for allowing the first color light beam 323a and the second color light beam 324a to penetrate, and reflecting the third color light beam 325a. The optical axes 323b, 324b of the first color light beam 323a and the second color light beam 324a after penetrating the second dichroic element 327 are the same as the optical axis 325b of the third color light beam 325a after being reflected by the second dichroic element 327.
The first color light source 323, the second color light source 324, and the third color light source 325 described above are, for example, one of a red light source, a blue light source, and a green light source respectively. The first color light source 323, the second color light source 324, and the third color light source 325 of each of the light source modules 320a and 320b is, for example, an LED chip. As color images projected on a screen by a common projection apparatus are obtained by overlapping red, blue, and green images, in the illumination system 200, the first color light source 323, the second color light source 324, and the third color light source 325 alternately emit light beams, such that the projection apparatus sequentially generates images of different colors. Moreover, in order to enhance the brightness of the images, the first color light source 323, the second color light source 324, and the third color light source 325 also emits light beams simultaneously. Therefore, the light beams 321a, 321b provided by the light source modules 320a, 320b are the first color light beam 323a, the second color light beam 324a, the third color light beam 325a or any combination thereof.
Accordingly, the condensing element 328 is, for example, a condensing lens, which is disposed on the transmission paths of the first color light beam 323a, the second color light beam 324a, and the third color light beam 325a, so as to converge the light beams. In addition, a light guide element is disposed in front of the light incident end 312 of the light integration rod 310 and between the light source modules 320a, 320b. In this embodiment, the light guide element is a prism 330. The prism 330 has a reflecting surface 332, which is suitable for reflecting the light beam 321a to the light integration rod 310. The light beam 321b penetrates the prism 330 and then is incident to the light integration rod 310, and the optical axis 322a of the light beam 321a after being reflected by the reflecting surface 332 is parallel to the optical axis 322b of the light beam 321b, and a distance exists between the two optical axes. The reflecting surface 332 of the prism 330 is, for example, the surface of a coating layer 334 disposed on the prism 330, and the material of the coating layer 334 is silver or other suitable metal materials.
It should be noted that the aforementioned light guide element is also replaced by a reflecting mirror (not shown), which is disposed at a position corresponding to the position of the reflecting surface 332 of the prism 330. Moreover, a lens 329 is disposed in front of the light exit end of each of the first color light source 323, the second color light source 324, and the third color light source 325, so as to adjust the exit light shape of the first color light beam 323a, the second color light beam 324a, and the third color light beam 325a.
Referring to
In the embodiment, as the illumination beam 302 provided by the illumination system 300 is converging the light beams 321a, 321b provided by the light source modules 320a, 320b, the defect of insufficient brightness of the illumination beam existing in the conventional illumination system 100 (as shown in
Each of the first color light source, the second color light source, and the third color light source of the light source modules 320a, 320b of the present invention is a single LED chip, and also comprises a plurality of LED chips, so as to enhance the brightness of the illumination beam 302. In
In order to further enhance the brightness of the illumination beam provided by the illumination system, in the illumination system of the present invention, the number of the light source modules is more than two, which is illustrated with another embodiment with reference to the accompanied drawings.
Referring to
In this embodiment, the prism 330′ is also replaced by two reflecting mirrors (not shown), and the positions of the two reflecting mirrors correspond to the positions of the reflecting surfaces 332, 336 of the prism 330′. Moreover, though the first color light source 323, the second color light source 324, and the third color light source 325 of the light source modules 320a, 320b, 320c shown in
Referring to
As the illumination system 410 of the projection apparatus 400 is the illumination system 300 or the illumination system 300′ described above, high-brightness images is projected, and the cost for heat sink elements is saved as well.
To sum up, the illumination system and the apparatus of the present invention have at least one of the following advantages.
1. As the illumination beam provided by the illumination system converges the light beams provided by the plurality of light source modules, high brightness is attained.
2. As the light source modules of the illumination system of the present invention are scattered, each of the light source modules is easy to dissipate heat, and expensive heat sinks with complicated structures are not required.
3. In the illumination system of the present invention, the light beams incident to the light integration rod are converging light beams, so the light use efficiency of the illumination beam is better.
4. The illumination system of the projection apparatus of the present invention provides the illumination beam with high brightness, and has preferable heat dissipation effect, so high-brightness images is projected and the cost of heatsink elements is saved as well.
The foregoing description of the preferred embodiment of the invention has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise form or to exemplary embodiments disclosed. Accordingly, the foregoing description should be regarded as illustrative rather than restrictive. Obviously, many modifications and variations will be apparent to practitioners skilled in this art. The embodiments are chosen and described in order to best explain the principles of the invention and its best mode practical application, thereby to enable persons skilled in the art to understand the invention for various embodiments and with various modifications as are suited to the particular use or implementation contemplated. It is intended that the scope of the invention be defined by the claims appended hereto and their equivalents in which all terms are meant in their broadest reasonable sense unless otherwise indicated. Therefore, the term “the invention”, “the present invention” or the like is not necessary limited the claim scope to a specific embodiment, and the reference to particularly preferred exemplary embodiments of the invention does not imply a limitation on the invention, and no such limitation is to be inferred. The invention is limited only by the spirit and scope of the appended claims. The abstract of the disclosure is provided to comply with the rules requiring an abstract, which will allow a searcher to quickly ascertain the subject matter of the technical disclosure of any patent issued from this disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims. Any advantages and benefits described may not apply to all embodiments of the invention. It should be appreciated that variations may be made in the embodiments described by persons skilled in the art without departing from the scope of the present invention as defined by the following claims. Moreover, no element and component in the present disclosure is intended to be dedicated to the public regardless of whether the element or component is explicitly recited in the following claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 95113601 | Apr 2006 | TW | national |