Abstract:
The objective of the present invention is to provide a relay apparatus capable of performing normal relay transmission for broadcast waves by preventing effects caused by wraparound in a relay apparatus. For broadcast waves received by a relay apparatus (2), the same broadcast data are placed in each of a defined segment (f0) and a first segment (f1) other than the defined segment, whereupon the relay apparatus removes broadcast data for the defined segment (f0) from the received broadcast waves, and transmits broadcast waves in which the broadcast data for the first segment (f1) have been exchanged with each of the defined segment (f0) and a second segment (f2) other than the defined segment and the first segment. As a result, the defined segment (f0) which imparts wraparound effects to the received broadcast waves is removed, and therefore, it is possible to perform normal relay transmission of the broadcast waves.
Abstract:
There is provided a plasma processing apparatus including: a shower head installed within a processing chamber for processing a substrate and facing a mounting table for mounting the substrate; a multiple number of gas exhaust holes formed through the shower head to be extended from a facing surface of the shower head to an opposite surface to the facing surface; a multiple number of openable and closable trigger holes formed through the shower head to be extended from the facing surface of the shower head to the opposite surface, and configured to allow plasma leakage from the facing surface to the opposite surface; and a partition wall installed in a gas exhaust space provided on the side of the opposite surface of the shower head to divide the gas exhaust space into a multiple number of regions, each region communicating with one or more trigger holes.
Abstract:
The objective of the present invention is to provide a relay apparatus capable of performing normal relay transmission for broadcast waves by preventing effects caused by wraparound in a relay apparatus. For broadcast waves received by a relay apparatus (2), the same broadcast data are placed in each of a defined segment (f0) and a first segment (f1) other than the defined segment, whereupon the relay apparatus removes broadcast data for the defined segment (f0) from the received broadcast waves, and transmits broadcast waves in which the broadcast data for the first segment (f1) have been exchanged with each of the defined segment (f0) and a second segment (f2) other than the defined segment and the first segment. As a result, the defined segment (f0) which imparts wraparound effects to the received broadcast waves is removed, and therefore, it is possible to perform normal relay transmission of the broadcast waves.
Abstract:
There is provided an assist grip for a vehicle capable of gripping a grip main body easily when in use and applying force thereon and facilitating movement of getting off. The assist grip 1 for the vehicle includes the grip main body 2 for supporting getting out movement from the seat 51 of the occupant, which is provided in the lower part of the door opening 10 beside the seat 51, where the grip main body 2 is provided in a manner capable of raising and lowering in an outward direction of the vehicle. Accordingly, since the grip main body 2 falls outward of the vehicle at the time of use of the assist grip 1, a portion to which a hand of the occupant is applied becomes large, and a flexibility of posture change increases, and getting out of the occupant becomes easy.
Abstract:
A temperature measurement apparatus includes a light source; a first splitter that splits a light beam into a measurement beam and a reference beam; a reference beam reflector that reflects the reference beam; an optical path length adjustor; a second splitter that splits the reflected reference beam into a first reflected reference beam and a second reflected reference beam; a first photodetector that measures an interference between the first reflected reference beam and a reflected measurement beam obtained by the measurement beam reflected from a target object; a second photodetector that measures an intensity of the second reflected reference beam; and a temperature calculation unit. The temperature calculation unit calculates a location of the interference by subtracting an output signal of the second photodetector from an output signal of the first photodetector, and calculates a temperature of the target object from the calculated location of the interference.
Abstract:
A developing device includes first and second developer carriers facing each other in a facing region, a regulating member that regulates a layer thickness of developer, and a separation member. The first and second developer carriers respectively include first and second magnetic members that are respectively magnetized with first and second facing magnetic poles having opposite polarities. The separation member separates the developer so that the developer is supplied toward the first and second developer carriers. The separation member is disposed such that distances between the separation member and the first and second developer carriers are the smallest in a region in which a magnitude of a combined magnetic field of the first and second magnetic poles locally decreases as compared with a case where at least one of the first and second developer carriers is independently disposed due to interaction between the first and second facing magnetic poles.
Abstract:
A temperature measuring apparatus includes a light source, a first splitter, a second splitter, a reference beam reflector, an optical path length adjuster, a reference beam transmitting member, a first to an nth measuring beam transmitting member and a photodetector. The temperature measuring apparatus further includes an attenuator that attenuates the reference beam reflected from the reference beam reflector to thereby make an intensity thereof closer to an intensity of the measurement beam reflected from the temperature measurement object.
Abstract:
A wiper blade 13 comprises a rubber holder 17 attached to a tip of a wiper arm 14 and a blade rubber 16 supported by the rubber holder 17. The rubber holder 17 is formed into a U-shaped cross section, and an intermediate portion of the blade rubber 16 is covered with the rubber holder 17. Also, both sides of the rubber holder 17 are provided with covers 18 in a longitudinal direction in series. Each of the cover 18 becomes rotatable to the rubber holder 17 in a direction perpendicular to a front windshield glass 12, and exposed portions from the rubber holder 17 of the blade rubber 16 are covered with these covers 18 in an elastically deformable state.
Abstract:
A developing device includes a first developing member that rotates in a manner such that a moving direction of a portion opposing the image carrier is opposite a moving direction of the image carrier, a second developing member provided on a downstream side of the first developing member in a rotating direction of the image carrier and rotates in a manner such that a moving direction of a portion opposing the image carrier is the same as the moving direction of the image carrier, a distributing member supported movably relative to a proximal portion where the first developing member is closest to the second developing member so as to distribute developer to the first and second developing members by contact with the developer, and an a biasing member that biases the distributing member upstream in the rotating direction of the first developing member.
Abstract:
There is provided a plasma processing apparatus including: a shower head installed within a processing chamber for processing a substrate and facing a mounting table for mounting the substrate; a multiple number of gas exhaust holes formed through the shower head to be extended from a facing surface of the shower head to an opposite surface to the facing surface; a multiple number of openable and closable trigger holes formed through the shower head to be extended from the facing surface of the shower head to the opposite surface, and configured to allow plasma leakage from the facing surface to the opposite surface; and a partition wall installed in a gas exhaust space provided on the side of the opposite surface of the shower head to divide the gas exhaust space into a multiple number of regions, each region communicating with one or more trigger holes.