Abstract:
An illumination system including a plurality of light source units, at least one light concentrating unit, at least one taper tunnel and a light consolidating unit is provided. The light concentrating unit corresponds to and is disposed beside one of the light source units. The light concentrating unit has a first illuminating surface, the light source unit corresponding to the light concentrating unit has a second illuminating surface, and the other light source units not corresponding to the concentrator have a third illuminating surface, respectively. The concentrator is disposed between the taper tunnel and the light source unit, and the taper tunnel has a fourth illuminating surface. The light consolidating unit has a fifth illuminating surface. The area of the fourth illuminating surface, and each of the third illuminating surfaces corresponds to each other. A projection apparatus is also provided.
Abstract:
The present invention provides a correcting apparatus for correcting images projected from a projection system. The correcting apparatus includes a correcting module and a projection lens. The correcting module shields a light signal for producing a corrected light signal. The projection lens receives the corrected light signal for producing an image light signal. The correcting module is disposed on a first outer circumference at one end of the projection lens.
Abstract:
An illumination system comprises a first light source device, a second light source device and a second reflecting portion. A first reflecting portion of the first light source device covers a part area of an opening of a reflecting shade, and the other area of the opening is formed a first light outlet. The second light source device is installed in front of the opening and has a second light outlet. A second reflecting portion is installed between the first and the second light source devices. After overlapping the optical routes of the multiple light source devices and integrating beams into a parallel light beam, the parallel light beam is then output out of the single light source device. Therefore, the brightness of entirety can be enhanced, and the uniformity of images on the screen is still maintained even one of the light source devices is damaged.
Abstract:
A light source device for a projector comprises a plurality of light source structures and a reflecting element, in which each light source structure comprises a first reflector that the inner surface thereof is a semi-elliptical surface, a reflecting portion and a burner. The burner is installed on a focus of the semi-elliptical surface, the reflecting element is disposed on a beam outputting route of at least one of the light source structures. The dispositions of reflecting portion and the semi-elliptical surface are used for allowing each light source structure to provide a semi-conical beam output, and the reflecting element combines the semi-conical beams to a conical beam. Whereby, incident angle distributions of the conical beam the same as single light source can be attained and the illumination brightness can be enhanced.
Abstract:
The present invention provides a correcting apparatus for correcting images projected from a projection system. The correcting apparatus includes a correcting module and a projection lens. The correcting module shields a light signal for producing a corrected light signal. The projection lens receives the corrected light signal for producing an image light signal. The correcting module is disposed on a first outer circumference at one end of the projection lens.
Abstract:
A projection apparatus includes an optical engine base, a light source, a light valve, a lens module, and a fan. The light source is disposed at the optical engine base for emitting an illumination beam. The light valve is disposed at the optical engine base for converting the illumination beam into an image beam. The lens module is disposed at the optical engine base and includes a lens barrel and a lens assembly disposed in the lens barrel for converting the image beam into a projection beam. The fan is disposed at the optical engine base, and adjacent to the lens module. The fan is used for providing an air flow to cool the lens module.
Abstract:
A dual lamp illumination system includes a first light source, a second light source, a light-deflecting device, a light-homogenizing device, and a lens assembly. The light-deflecting device is positioned in both a first light path of the first light beam and a second light path of the second light beam to combine the first light beam with the second light beam. The lens assembly includes a first set of varifocal lenses neighboring the light-deflecting device and a second set of varifocal lenses neighboring the light-homogenizing device. The composition of the first set of varifocal lenses is identical to the composition of the second set of varifocal lenses, and the first set of varifocal lenses and the second set of varifocal lenses are positioned substantially in symmetry.
Abstract:
An illumination system comprises a first light source device, a second light source device and a second reflecting portion. A first reflecting portion of the first light source device covers a part area of an opening of a reflecting shade, and the other area of the opening is formed a first light outlet. The second light source device is installed in front of the opening and has a second light outlet. A second reflecting portion is installed between the first and the second light source devices. After overlapping the optical routes of the multiple light source devices and integrating beams into a parallel light beam, the parallel light beam is then output out of the single light source device. Therefore, the brightness of entirety can be enhanced, and the uniformity of images on the screen is still maintained even one of the light source devices is damaged.
Abstract:
A brightness control apparatus applied to an illuminating system of a projector includes a plate and a slot portion. The slot portion is formed in the plate for a light beam of the illuminating system passing through. The slot portion has two opposite edges located at two sides of an arc locus. The center of the arc locus is a rotating center of the plate. The distance between the two edges of the slot portion is changed with the arc locus. The arc locus has a start point and an arbitrary point which are relative to the center of the arc locus, so as to form a central angle. The mathematics relationship between the distance of the two edges at the arbitrary point and the central angle is a polynomial function. The degree of the term with the highest degree is equal to or more than six.
Abstract:
An illumination system including a plurality of light source units, at least one light concentrating unit, at least one taper tunnel and a light consolidating unit is provided. The light concentrating unit corresponds to and is disposed beside one of the light source units. The light concentrating unit has a first illuminating surface, the light source unit corresponding to the light concentrating unit has a second illuminating surface, and the other light source units not corresponding to the concentrator have a third illuminating surface, respectively. The concentrator is disposed between the taper tunnel and the light source unit, and the taper tunnel has a fourth illuminating surface. The light consolidating unit has a fifth illuminating surface. The area of the fourth illuminating surface, and each of the third illuminating surfaces corresponds to each other. A projection apparatus is also provided.