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    • 1. 发明专利
    • PORTABLE ELECTRONIC APPARATUS
    • JP2000323851A
    • 2000-11-24
    • JP13015499
    • 1999-05-11
    • TOSHIBA CORPTOSHIBA COMPUTER ENG
    • SASAKI KATSUMARUMIZUGUCHI HIROYUKITAKADA MASAAKITOMITA MOTOKI
    • G06F15/02G06F1/16H05K5/02
    • PROBLEM TO BE SOLVED: To provide a portable electronic apparatus wherein space reduction is enabled when an apparatus main body is installed, by making the installation space of the apparatus main body on a mounting surface in common with the installation space of a cover, and attitude of the apparatus main body when a stand is used is stable. SOLUTION: This electronic apparatus is provided with a flat apparatus main body 2 having an input screen; a stand 35 which is pivotably retained by the apparatus main body from an accommodating position, where the stand 35 is accommodated in a bottom wall 4 of the apparatus main body to a using position, where the stand 35 is protruded in the direction isolated from the bottom wall 4, and inclines the apparatus main body at an angle wherein the input screen is easily visible when the apparatus main body is mounted on the installation surface; and a cover 55 which is pivotably retained by the apparatus main body along a first position where the cover 55 covers and conceal the input screen of the apparatus main body, a second position where the cover 55 goes round the rear of the apparatus main body, and a third position where the cover 55 goes below the apparatus main body, receives the stand and overlaps with the installation surface when the stand is used.
    • 6. 发明专利
    • Molding method of molded product and housing for electronic device
    • 模制产品的模制方法和电子设备的外壳
    • JP2006095746A
    • 2006-04-13
    • JP2004282101
    • 2004-09-28
    • Toshiba Corp株式会社東芝
    • KANESHIRO KAZUYUKIHIRAO HIROAKITAKADA MASAAKI
    • B29C45/46B22D17/22B29C45/37
    • B29C45/0046B29C45/0025B29C2045/0049Y10T428/13
    • PROBLEM TO BE SOLVED: To provide a molding method capable of integrally molding a molded product having a rib part of which the protrusion height is extremely high with respect to the wall thickness of the substrate of a main body part. SOLUTION: In a mold assembly 16, a first mold 11 and a second mold 12 are clamped to form an injection molding space 15 wherein a bottom wall forming cavity 13 and a rib wall molding cavity 14 communicate with each other and a ridge part 20, which has an inclined surface for guiding the flow of the molten resin injected in the bottom wall forming cavity 13 in the direction of the rib wall molding cavity 14 is provided to the opposed position with the rib wall molding cavity 14 in the inner surface part of the first mold 11. The molding method has a process for injecting the molten resin in the injection molding space 15 to fill the space and a process for taking the molded product out of the injection molding space 15 by opening the mold assembly 16 after the injected resin is cooled and solidified. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种成型方法,其能够相对于主体部分的基板的壁厚将突出高度极高的肋部分的成型体整体成型。 解决方案:在模具组件16中,夹持第一模具11和第二模具12以形成注射成型空间15,其中底壁形成腔13和肋壁模制腔14彼此连通,并且脊部 具有用于引导注射在底壁形成腔13中的熔融树脂在肋壁模制腔14的方向上的流动的倾斜表面的部分20设置在与内壁的肋壁模制腔14相对的位置 第一模具11的表面部分。成型方法具有将熔融树脂注入注塑空间15以填充空间的过程以及通过打开模具组件16将模制产品从注塑空间15中取出的工艺 注入树脂冷却固化后。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • TEMPERATURE CONTROLLER AND SLUDGE/REFUSE INCINERATION PLANT
    • JPH10232717A
    • 1998-09-02
    • JP3393797
    • 1997-02-18
    • TOSHIBA CONTROL SYST KKTOSHIBA CORP
    • KANEDA MITSUAKITAKADA MASAAKI
    • F23G5/50G05D23/19
    • PROBLEM TO BE SOLVED: To eliminate a setting error and to prevent time delay or rapid temperature rise/fall by controlling the temperature controlled object based on a temperature rise or fall set value found by a measured value. SOLUTION: A temperature rise set value SV is composed of a current temperature Ts( deg.C), temperature gradient D1 ( deg.C/h) of furnace at the time of riring, intermediate heat insulation temperature Tm( deg.C), heat insulating time Th(h), temperature gradient D2 ( deg.C/h) at the time of rising, and temperature rise completing temperature Tf(±C). The current temperature Ts is equal with a burning furnace measured value PV at a present time point. The temperature gradient D1 at the rerising time of furnace, intermediate heat insulating temperature Tm, heat insulating time Th, temperature gradient D2 at the time of rerising and temperature rise completing temperature Tf are respectively set, the temperature rise set value SV is found with the burning furnace measured value PV as the current temperature Ts and based on this value, temperature rise control is performed. When operation is abnormality stopped in the middle of furnace rise and rerise is to be performed, the temperature rise control is performed by finding the temperature rise set value SV with the burning furnace measured value PV as the current temperature Ts.