Abstract:
A power supply control circuit is disclosed. The power supply control circuit controls a current which is supplied from a power source to a load. The power supply control circuit includes a reverse current detecting circuit which detects a reverse current flowing from the load to the power source and a reverse current preventing circuit which disconnects a line between the power source and the load when the reverse current is detected by the reverse current detecting circuit.
Abstract:
An image display device and a projector using th image display device includes a tilt-mirror device having a plurality of movable mirror elements. A first color-ray light-source may be arranged so that a first color-ray light is reflected in a predetermined direction when the movable mirror elements are located in the first reflective position, and is reflected in a direction different from the predetemined directon when the movable miror elements are located in the second reflection position. A second color-ray light-source may be arranged so that a second color-ray light is reflected in the predetemined direction when the mobable mirror elements are located in the second reflection position, and is reflected in a direction different from the predetermined direction when the movable mirror elements are located in the first reflection position.
Abstract:
An optical scanning device includes a plurality of light source sections for supplying beams, and a scanning section for directing beams emitted from the light source sections to scan in a first direction and a second direction substantially perpendicular to the first direction on a beam-receiving region. The scanning section is operated such that a frequency at which beams scan in the first direction is higher than a frequency at which beams scan in the second direction. The light source sections are disposed such that an array of spots produced from supplied beams can be positioned on the beam-receiving region in the first and second directions. Gradations are represented using beams for producing spots positioned in parallel on the beam-receiving region in the first direction.
Abstract:
To solve simultaneously the problems of scale-shaped unevenness (scale unevenness) and a raise (bead) in the edge of a substrate coming into existence upon application of a photosensitive resin composition onto particularly a large-size substrate, a silicone oil represented by the general formula (1) below is incorporated into a photosensitive resin composition containing an alkali-soluble resin such as novolak resin and a photosensitizer having a quinonediazide group in an amount of 50 to 5,000 ppm based on the total solids content of a photosensitive resin composition. Wherein R1, R2, R3, R4, R5 and R6 independently represent a hydrogen atom, a hydroxyl group, a C1-4 alkyl group or an aryl group, m is an integer of 1 to 40, and n is an integer of 1 to 40.
Abstract:
Disclosed herein is a moving-image reproduction apparatus including: a display section for displaying an image in a moving-image display area capable of accommodating at least a moving image; a moving-image data storage section for storing a plurality of pieces of moving-image data; a moving-image data reproduction section for reading out moving-image data from the moving-image data storage section and reproducing the moving-image data; a moving-image change-over command section for requesting change-over from a preceding moving image displayed earlier to a succeeding moving image; and a control section for changing-over from a preceding moving image to a succeeding moving image in accordance with the request made by the moving-image change-over command section. During a period of time lasting till completion of carrying out by the moving-image data reproduction section to reproduce moving-image data (lasting till the start of a process to actually display a reproduced moving image based on the moving-image data) the control section stops reproduction of the preceding moving image and reduces the brightness of the moving-image display area to a value corresponding to a black moving image in a predetermined period of time.
Abstract:
An illuminating apparatus includes at least two solid light-emitting elements including a first solid light-emitting element and a second solid light-emitting element; a polarized-light combining unit that combines a first polarized light of a first oscillation direction and a second polarized light of a second oscillation direction substantially perpendicular to the second oscillating direction to guide the first polarized light and the second polarized light to an illumination direction by transmitting or reflecting the first polarized light and reflecting or transmitting the second polarized light; and a phase modulating element that converts a polarized light from the polarized-light combining unit into either of the first polarized light and the second polarized light.
Abstract:
A light source that has a small size can provide uniform light at high efficiency and can have a high degree of freedom in design, a method for manufacturing this light source, and a projector having this light source include a solid-state light-emitting chip that supplies G-light, which is light of a predetermined wavelength range, a support, a package mold, and a heat sink that constitute a solid-state light-emitting chip supporting part for supporting the solid-state light-emitting chip, an optical guide that reflects the G-light and thus causes the G-light to exit into an illuminating direction, and a support, which is an optical guide supporting part for supporting the optical guide. A light exiting surface of the solid-state light-emitting chip and a light incident surface of the optical guide are provided at a predetermined spacing. The solid-state light-emitting chip is, for example, an InGaN-based LED flip chip.
Abstract:
Exemplary embodiments of the present invention provide a display panel or the like in which it is easy to enlarge a size of the display panel. A display panel according to exemplary embodiments includes a first transparent electrode layer and a second transparent electrode layer which are optically transparent, a conductivity-variable layer which is provided on the first transparent electrode layer, and an electroluminescent layer which is provided between the conductivity-variable layer and the second transparent electrode layer, and which emits light by applying a voltage thereto.
Abstract:
Aspects of the invention can provide a solid state light-emitting element having a solid state light-emitting element chip that emits light in electric current injection, and electrodes for injecting electric current into the solid state light-emitting element chip, the electrodes being disposed on an ejection face of the solid state light-emitting element chip. An optical-path change device, which visually masks electrode forming areas in which the electrodes are formed, can be provided on the ejection face of the solid state light-emitting element chip. Accordingly, irregularity in a projection image due to electrode forming areas can be prevented.
Abstract:
To provide an image display device and a rear projector which are compact and light in weight and which can afford a large screen, and a screen which is well suited for them, a screen having a first surface which laser lights enter, and a second surface from which the laser lights exit, includes an illuminant for R light, an illuminant for G light, and an illuminant for B light, which generate the R light, G light and B light by being irradiated with the UV laser lights, respectively. The first surface includes openings which pass the UV laser lights therethrough so as to irradiate the illuminants for the respective colored lights, ,with the UV laser lights, and light shield portions provided at the peripheral parts of the openings in order to intercept the UV laser lights.