Abstract:
PROBLEM TO BE SOLVED: To provide a means to achieve a light weight of a cathode-ray tube and to prevent scattering of broken pieces of glass effectively when the cathode- ray tube is crushed by implosion. SOLUTION: The cathode-ray tube 1 of the present invention comprises, a HS band 2 which surrounds a rim of a panel 11, and a plastic panel 3 which is connected with the HS band 2 and is disposed in such a way that the plastic panel 3 covers a surface of the panel 11 wherein the plastic panel 3 is fixed on a surface of the panel 11 using adhesive, or the plastic panel 3 is fixed to the HS band 2 using adhesive, or the plastic panel 3 is fixed to the HS band 2 mechanically using bolts/nuts or wires, or the plastic panel 3 is connected with the HS band 2 via its attaching members 21 which are used for attaching the HS band 2 to a shell box of a display device.
Abstract:
PROBLEM TO BE SOLVED: To provide a low-priced cathode-ray tube easy to manufacture and lightweight, irrespective of its large size of 36 inches or more in particular. SOLUTION: This cathode-ray tube is made by assembling a panel part, a funnel part, and a neck part, each manufactured separately. The funnel part is made of titanium or a titanium alloy. The neck part and/or the panel part are made of glass. The funnel part is joined to the neck part made of glass and/or to the panel part made of glass by using low-melting point glass. The funnel part is made by press working and/or welding assembly, and an insulating film is bonded to its surface.
Abstract:
PROBLEM TO BE SOLVED: To provide a method of joining a titanium material to a part of glass parts or joining a glass material to a part of titanium parts for machine parts, airplane, chemical apparatus, electronic parts, case of electronic device, semiconductor production unit, ornaments, or the like. SOLUTION: This method of joining a piece made of titanium or titanium alloy to a piece made of a soft glass comprises standing glass frit containing PbO between the surfaces to be joined, and heating the interface at a temperature in the range of 400 to 500 deg.C, where the surface of titanium or titanium alloy to be joined may be cleaned or roughened beforehand using a shot or acid cleaning, or may further be attached by a highly adhesive oxide coating by an air oxidation at 600 deg.C or lower temperature.
Abstract:
PURPOSE:To improve the characteristic of an autogain controller indicating a high resolution. CONSTITUTION:The output level of a variable gain circuit 10 is detected by a maximum value detecting part 11, and supplied to a gain setting part 14, and the output of this gain setting part 14 is made through a backlash circuit 15 to a gain control commanding value Yn. When the gain control commanding value Yn does not exceed the range of a backlash value Z from the previous value Yn-1, the backlash circuit 15 controls the gain control commanding value Yn so as not to be changed, and prevents the generation of quick noise.
Abstract:
PROBLEM TO BE SOLVED: To achieve high-quality and high-speed communication without increasing a mounting region.SOLUTION: A signal transmission cable includes a first connector, a second connector, and a cable connecting the first connector and the second connector. Each of the first connector and the second connector has at least one or more layers of organic substrates. The cable has a dielectric layer and a metal layer. The dielectric layer of the cable is formed by extending part of the organic substrates of the first connector and the second connector. A tip of the metal layer of the cable is directly connected to an output terminal of a chip disposed on the organic substrates of the first connector and the second connector.
Abstract:
PROBLEM TO BE SOLVED: To provide a heat transfer device enabling stable heat transfer and electronic equipment including the heat transfer device. SOLUTION: An evaporation part 7 constituted of a plurality of evaporation structures 71 is provided in the heat receiving part 4 of a heat spreader 1 filled with a refrigerant. The evaporation structure 71 includes a lateral face 72 facing a flowing part 6 and a plurality of recesses 74 having openings 73 at a plurality of positions different from each other in the Z-axis direction of the lateral face 72, respectively. The recess 74 includes an inclination part 78 inclined to the direction containing components of the Z-axis direction. The inclination part 78 is provided at a portion closer to the heat receiving part 4 on the inner face of the recess 74 so as to form a V groove 61 between the two evaporation structures 71 adjacent to each other sandwiching the flowing part 6. Thus, at various height of a liquid level of a liquid refrigerant, a meniscus face having an efficient shape to evaporate and flow the liquid refrigerant can be formed. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a heat transport device capable of efficiently performing heat transport. SOLUTION: The heat transport device includes a working fluid, an evaporation portion, a condensation portion, and a flow path portion. The heat transport device further includes a region provided on at least one of the evaporation portion, the condensation portion and the flow path portion and made of a carbon material. The working fluid is constituted by adding an organic compound having a hydroxyl group to pure water. The evaporation portion causes the working fluid to evaporate from a liquid phase to a gas phase. The condensation portion is communicated with the evaporation portion, and causes the working fluid to condense from the gas phase to the liquid phase. The flow path portion causes the working fluid condensed in the condensation portion to the liquid phase to flow to the evaporation portion. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a heat transport device operated without depending on the attitude of the transport device nor providing a starter, and to provide electronic equipment with the device mounted thereon. SOLUTION: A reservoir is arranged closer to a condenser 2 than to an evaporator 1 or the reservoir 13d is arranged in the condenser 2 to prevent operating fluid reserved in the reservoir 13d from flowing from the reservoir 13d to the evaporator 1 during non-operation of the heat transport device 10. Thus, the heat transport device is operated without the need of the starter while preventing the liquid-phase operating fluid from residing too much in the evaporator 1 with its weight. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To improve various operations of an electronic device that records and reproduces information on a recording medium loaded inside its case. SOLUTION: The electronic device 1 is provided with a flat mold case 2, a function switch 23 which is disposed at one end the surface crossing the main surface 2b which is one of the two surfaces larger than the others and makes a first turn in the length direction of the surface crossing the main surface and a second turn orthogonal to the first turn and parallel to the surface crossing the main surface, a recording/reproducing means 102, 103 to reproduce the recorded information and to record information on the recording medium 100b loaded inside the case, and a control means 106 to instruct the reproducing means to reproduce the information other than the one being reproduced with the first turn and to change the reproduced sound volume with the second turn. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide a light and sufficiently implosion proof cathode-ray tube whose implosion proof characteristic is improved in comparison with that of a cathode-ray tube having a conventional structure. SOLUTION: The cathode-ray tube 1 has a cathode-ray tube body 2 which has a face panel 6 on which a film 10 formed by laminating a plurality of films 11 and 12 is stuck.