Abstract:
Even if there is a temperature variation, a positional discrepancy at a colliding surface of an active surface of a semiconductor laser and an optical waveguide is suppressed, resulting in realization of a semiconductor light emitting element coupled with optical fiber of stable operation. In order to realize the above object, a semiconductor light emitting element coupled with optical fiber comprises a substrate, an optical waveguide disposed on the substrate and including a core and a cladding layer covering the core, a semiconductor light emitting element disposed on the substrate and comprising an output end-surface facing one end of the core of the optical waveguide, and an optical fiber comprising a core an end of which faces the other end of the core of the optical waveguide, wherein the cladding layer sandwiches both surfaces of the semiconductor light emitting element.
Abstract:
A three-dimensional image display apparatus of the invention can be easily operated by the operator while a three-dimensional image created by the apparatus is observed by him. A depth information maximum value acquisition circuit acquires depth information contained in a first image signal. A parallax control circuit controls the parallax amount of a second image signal on the basis of depth information contained in the first and second image signals such that an image corresponding to the second image signal can be three-dimensionally displayed in front of an image corresponding to the first image signal. A three-dimensional image synthesizer synthesizes the first and second image signals which has been controlled by the parallax control circuit, on the basis of the parallax amount of each image signal, such that images correspond to that the first and second image signals in the three-dimensional display space.
Abstract:
A method for producing an olefinic thermoplastic elastomer comprising the steps of kneading an olefin copolymer rubber (A) obtained by polymerizing ethylene, an α-olefin having 3 to 20 carbon atoms and a non-conjugated polyene, a volatile organic solvent (B) and, an olefin resin (C) in an extruder, removing the volatile organic solvent (B) while kneading, then adding a crosslinking agent (E) and further removing the volatile organic solvent (B) while kneading in the extruder to obtain the olefinic thermoplastic elastomer.
Abstract:
A method for producing an olefinic thermoplastic elastomer comprising mixing 100 parts by weight of an olefin copolymer rubber (A) obtained by polymerizing ethylene, an α-olefin having 3 to 20 carbon atoms and a non-conjugated polyene, and based on 100 parts by weight of the olefin copolymer rubber (A), 11 to 50 parts by weight of a volatile organic solvent (B) and 5 to 150 parts by weight of an olefin resin (C), and removing from the mixture the volatile organic solvent (B) while kneading in an extruder.
Abstract:
A semiconductor laser device including a semiconductor laser, a collimate lens placed opposite a light exit facet of the semiconductor laser, and a base on which the semiconductor laser is mounted, from which sleeve portions projects in a direction in which laser light is emitted, the sleeve portions being formed at respective ends of the base to hold the collimate lens. A notch is formed in each of opposite surfaces of the sleeve portions.
Abstract:
To obtain an inexpensive, high-power optical fiber output semiconductor device, an edge emitting type semiconductor element, a tapered optical waveguide having a structure for accommodating expansion and contraction due to a change in temperature, and an optical fiber are prepared separately. One edge of the tapered optical waveguide is butt-joined to an output face of the edge emitting type semiconductor element. The other edge of the tapered optical waveguide is connected to the optical fiber.
Abstract:
When the low bit rate coding is effected in a recording system 1A, a signal is coded and recorded in a hierarchical structure. On the reproduction side, the type of a recorded signal (the low bit rate coded signal of the hierarchical structure, non-hierarchical structure, conventional analog recording or the like) is determined by a determination system 1E and the operation modes of a digital signal processing system 1G and an analog signal processing system 1F are set. The analog signal processing system processes a reproduced signal when it is analog signal. The digital signal processing system processes a reproduced signal when it is a digital signal or when a reproduced output from the analog signal processing system is processed in a digital manner. Further, hierarchical decoding G30 and inverse converting G40 are provided, a signal processed in the hierarchical structure can be restored to an original form, and the restored reproduced signal can be processed by use of system conversion G60 and converted to a desired system and output.
Abstract:
A thermoplastic elastomer composition for foam injection molding is provided that includes component (A), component (B), component (C), and component (D) below, relative to 100 parts by weight of component (A), component (B) having a content of 5 to 150 parts by weight, component (C) having a content of 5 to 300 parts by weight, and component (D) having a content of 5 to 150 parts by weight. (A): A hydrogenated product of a block copolymer comprising a block composed of an aromatic vinyl compound-based monomer unit and a block composed of a conjugated diene compound-based monomer unit, the hydrogenated product having a weight-average molecular weight of not more than 200,000, (B): a propylene resin, (C): a mineral oil, and (D): an ethylene-propylene copolymer rubber having a Mooney viscosity (ML1+4, 100° C.) of 20 to 200, an ethylene-based monomer unit having a content of 40 to 80 wt % (relative to 100 wt % of the copolymer rubber). There are also provided a foam body formed by foam injection molding of the thermoplastic elastomer composition, a process for producing a foam body that includes a step of preparing the thermoplastic elastomer composition and a step of foam injection molding the thermoplastic elastomer composition, and the use thereof as a composition for foam molding.
Abstract:
A core of an excitation light source is spliced with a first optical fiber to which no laser activation material is added, so that the light output from the first optical fiber is injected to a second optical fiber to a core of which the laser activation material is added.
Abstract:
An optical-fiber connector comprises a first optical fiber, a first ferrule which has a cutout portion in at least a periphery of one end face thereof and holds the first optical fiber such that a front end of the first optical fiber becomes the same face as the one end face, a second optical fiber, a second ferrule which has a cutout portion in at least a periphery of one end face thereof and holds the second optical fiber such that a front end of the second optical fiber becomes the same face as the one end face, and an adhesive which connects the one end face of the first ferrule with the one end face of the second ferrule.