Abstract:
A light source module for a scanning projection apparatus is provided. The light source module includes a plurality of point light sources and at least one light blocking unit. Each point light source is capable of providing a color light beam. The color light beams are combined into a combined light beam and the colors of the color light beams are different. The at least one light blocking unit is capable of being inserted into a transmission path of at least one of the color light beams at a fixed frequency to block a portion of the color light beam.
Abstract:
The invention includes a system for imparting at least one characteristic of photographic emulsion to an image. The system includes a light transmissible medium at least partially provided with photographic film emulsion, wherein the photographic film emulsion is capable of being exposed and chemically processed. Furthermore, light that is related to an image is projected through a selected portion of the photographic film emulsion. Moreover, a containment is included for providing the light transmissible medium in a position relative to the projected light, wherein the image is imparted with the at least one quality related to the photographic film emulsion.
Abstract:
A lighting control device includes: an irradiation light generation unit that receives an irradiation light signal; coating correcting means for correcting the irradiation light signal so that an irradiation target object can be coated with irradiation light; and an irradiation light projection unit that projects the irradiation light by using the corrected irradiation light signal. The irradiation light includes coating light that coats the irradiation target object, and background light that becomes a background of the irradiation target object. The lighting control device includes: a first coating correction unit that corrects the irradiation light signal so as to cut an outline of the coating light in conformity with a shape of the irradiation target object; and a second coating correction unit that corrects the outline of the coating light in response to a positional relationship between an origin position of the irradiation target object and the irradiation light projection unit.
Abstract:
A projection type image display apparatus has: an illumination optical system generating illumination light; a projection optical system projecting an image light onto a screen; a digital micromirror device (DMD) modulating the illumination light so as to form the image light; and a reflection mirror arranged in a position opposite to an optical path of the illumination light entering the DMD. The reflection mirror reflects an off-light reflected by the DMD in an “OFF” state in a direction separated from a projection light reflected by the DMD in an “ON” state.
Abstract:
A light emitting device including an array of light emitters to emit first light pulses. Each of the light emitters includes a saturable absorber and a waveguide having an electrically pumped gain region to emit the first light pulses. At least one reflector structure reflects the first light pulses into a nonlinear crystal by changing the direction of the first light pulses by an angle that is in a range of 70 to 110 degrees. The reflector structure includes a sub-wavelength grating structure to change the polarization of the first light pulses. A nonlinear crystal generates second light pulses such that the optical frequency of the second light pulses is two times the optical frequency of the first light pulses.
Abstract:
A lighting system operating using a digital mirror as its operative device. The digital mirror is used to shape the light which is a passed through advanced optical devices in order to produce an output.
Abstract:
Disclosed herein is a heat radiating structure for radiating the heat generated by a lamp in an image projecting apparatus for projecting an image onto a screen to display the image thereon, including a heat sink for radiating heat generated by the lamp, the heat sink including heat transfer means for transferring the heat from the lamp, the heat transfer means being held in close contact with the lamp, heat storage means for storing the heat transferred from the lamp through the heat transfer means, and a plurality of fins serving as heat radiating means for radiating the heat stored by the heat storage means, wherein the heat transfer means, the heat storage means, and the heat radiating means are of a separable structure.
Abstract:
A light source apparatus includes a light source apparatus body that emits light, and a light source apparatus housing that houses the light source apparatus body. The light source apparatus body includes a connector that electrically connects the light source apparatus body to a light source driver. The light source apparatus housing includes a handle used to grasp the light source apparatus and a connector holder that holds the connector. The handle is connected to the connector holder.
Abstract:
A projector includes a light source for emitting light, a color wheel for filtering the light emitted from the light source, a converging module for converging the filtered light, a light-modulating device for modulating the light emitted from the light source, a lens module for projecting the light modulated by the light-modulating device; and a contrast-adjusting device. The contrast-adjusting device is positioned in a light path associated with the light source. The contrast-adjusting device includes a liquid crystal panel and a driving element. The liquid crystal panel is inserted into the light path associated with light source inside the lens module, and is driven by the driving element to tilt relative to light incident thereon from the light source so that contrast of the light output from the liquid crystal panel changes.
Abstract:
According to one embodiment, a projector apparatus comprises a modulator configured to modulate light emitted from a light source in accordance with an image signal, a projection lens configured to project an optical image emitted from the modulator, a detector configured to detect whether or not an optical path of the projection lens is interrupted by a lens cover, a time measurement unit configured to measure an elapsed time after the optical path is interrupted by the lens cover, and a power controller configured to turn a power off when the time measured by the time measurement unit exceeds a predetermined time period.