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    • 3. 发明申请
    • CASE FOR IMPACT DETECTOR, IMPACT DETECTOR, AND PACKAGE
    • 用于冲击检测器,冲击检测器和包装的案例
    • US20140047897A1
    • 2014-02-20
    • US13964318
    • 2013-08-12
    • Moku NARUISHI
    • Moku NARUISHI
    • G01N3/30
    • G01N3/30B65D79/02G01C9/10G01D11/245G01P1/127G01P15/032G01P15/036G01P15/18
    • The present invention provides a case for an impact detector, including: a front case; a weight to move from an initial position when a detection target of the impact detector inclines more than a predetermined angle; a first rear case to be covered by the front case, including a guide member set at a first inclination angle, through which the weight moves; a second rear case to be covered by the front case, including a guide member set at a second inclination angle different from the first inclination angle, through which the weight moves; and a resistance reducer to reduce moving resistance of the weight. In the optimal case for the impact detector, the front case is used in common for the first rear case and the second rear case, the weight can move smoothly in either case, and the impact can be easily detected.
    • 本发明提供了一种用于冲击检测器的壳体,包括:前壳体; 当冲击检测器的检测目标倾斜大于预定角度时,从初始位置移动的重量; 第一后壳体,其被前壳体覆盖,包括以第一倾斜角设置的引导构件,重物移动通过该引导构件; 第二后壳由前壳覆盖,包括设置成与第一倾斜角不同的第二倾斜角度的引导构件,重物移动通过该引导构件; 和减阻器,以减轻重量的移动阻力。 在冲击检测器的最佳情况下,前壳体用于第一后箱和第二后箱,重量可在任一种情况下平稳移动,并且可以容易地检测冲击。
    • 4. 发明申请
    • Impact detector and packaging container
    • 冲击检测仪和包装容器
    • US20110090090A1
    • 2011-04-21
    • US12923498
    • 2010-09-24
    • Moku NaruishiSakae Ishikawa
    • Moku NaruishiSakae Ishikawa
    • G08B21/00
    • G01P15/032G01P1/127G01P15/036G01P15/18
    • An impact detector includes a weight having a circular periphery, a case in which the weight is contained, an interior of which defines a transition path that connects an initial position and an impact detection position, and a restriction portion projecting from the interior of the case into the transition path. The weight moves through the transition path to the impact detection position with a circumferential surface of the weight in contact with the interior of the case when the case receives an impact in a predetermined direction, and the restriction portion restricts movement of the weight toward the impact detection position when the case receives impact in a direction other than the predetermined direction.
    • 冲击检测器包括具有圆形周边的重物,容纳重物的壳体,其内部限定连接起始位置和冲击检测位置的过渡路径,以及从壳体内部突出的限制部分 进入过渡路径。 当壳体在预定方向上受到冲击时,重量通过过渡轨道移动到冲击检测位置,其中重物的圆周表面与壳体的内部接触,并且限制部分限制重量朝向冲击的移动 当壳体在除了预定方向之外的方向上受到冲击时的检测位置。
    • 5. 发明授权
    • Input device of detecting acceleration
    • 能够检测加速度的输入装置
    • US06580415B1
    • 2003-06-17
    • US09639481
    • 2000-08-15
    • Katsumi KatoYasuji Hagiwara
    • Katsumi KatoYasuji Hagiwara
    • G09G500
    • H01H35/14A63F2300/105G01P15/032G06F3/0346
    • The present invention relates to an input device capable of detecting an acceleration, in which a detecting section constituted by a combination of a weight, a coiled spring, and detecting means is supported by a support. The support is fixed to a tip end within a case of the input device. By applying a force having a predetermined or higher acceleration in W direction with a grip part of the input device as fulcrum, thereby causing the input device to rotate, the weight is moved by the resulting centrifugal force in a direction in which the coiled spring is compressed, and an electric signal outputted from the detecting means varies according to the amount of the movement of the weight. By detecting this variation it is possible to detect an acceleration upon rotation of the input device.
    • 本发明涉及一种能够检测加速度的输入装置,其中,由重物组合的检测部件,螺旋弹簧和检测装置由支撑件支撑。 支撑件固定在输入装置的壳体内的尖端。 通过以输入装置的把持部作为支点在W方向上施加预定的或更高的加速度的力,从而使输入装置旋转,重量通过所产生的离心力沿螺旋弹簧的方向移动 被压缩,并且从检测装置输出的电信号根据重量的移动量而变化。 通过检测该变化,可以在输入装置旋转时检测加速度。
    • 6. 发明授权
    • Inertia switching device, acceleration responsive device and method of
making acceleration responsive device
    • 惯性开关装置,加速响应装置及加速响应装置的制作方法
    • US5837951A
    • 1998-11-17
    • US682340
    • 1996-07-25
    • Harunori KatoYasukazu MizutaniShigekazu ShibataKatsuhiro KimuraHideki KosekiMitsuhiro UranoMasayuki Watanabe
    • Harunori KatoYasukazu MizutaniShigekazu ShibataKatsuhiro KimuraHideki KosekiMitsuhiro UranoMasayuki Watanabe
    • G01P15/03G01P15/135H01H35/02H01H35/14
    • H01H35/142G01P15/032G01P15/135H01H35/02
    • A seismosensitive element includes a housing formed from an electrically conductive material and having an inclined face formed on the bottom thereof to gradually rise concentrically outwardly substantially from a center of the inner bottom face, and a header fixed to the housing to close its open end and having through-aperture in which an electrically conductive terminal pin is fixed in an insulated relation. A contact is fixed an end of the terminal pin located inside the housing and has a plurality of feather portions disposed concentrically with the terminal pin, the feather portions having a predetermined elasticity. An inertia ball is enclosed in the housing to be located substantially at the center in the housing in a normal position of the element in a stationary state. The inertia ball rolls when subjected to oscillation, so that the inertia ball slides on the feather portions of the contact except for distal ends of the feather portions such that the inertia ball electrically conducts between the contact and the housing and such that the feather portions are elastically deformed, thereby receiving a force causing the same to be pushed against the bottom of the housing. An acceleration responsive switch includes a receptacle including a housing having a conical face, an inertial ball in the receptacle, and an oscillation damping liquid in the receptacle. The oscillation damping liquid has a viscosity such that the inertial ball terminates rotation when it is subjected to an external oscillation to be rotated.
    • 地震敏感元件包括由导电材料形成并具有形成在其底部上的倾斜面的壳体,其基本上从内底面的中心逐渐同心地向外升起,并且固定到壳体以将其开口端部闭合, 具有通孔,其中导电端子销以绝缘关系固定。 接触件固定在壳体内部的端子销的端部,并且具有与端子销同心设置的多个羽毛部分,羽毛部分具有预定的弹性。 惯性球被封闭在壳体中,以在固定状态下的元件的正常位置中大致位于壳体的中心。 惯性球在受到振动时滚动,使得惯性球在羽毛部的远端除了接触部的羽毛部分之外滑动,使得惯性球在接触和壳体之间电导通,使得羽毛部分 弹性变形,从而接收使其相对于壳体的底部被推压的力。 一种加速度响应开关包括一个插座,它包括一个具有圆锥面的壳体,该插座中的一个惯性球,以及该容器中的振荡阻尼液体。 振动阻尼液体具有这样的粘度,使得当惯性球经受外部振荡以旋转时终止旋转。