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    • 11. 发明专利
    • Semiconductor device
    • 半导体器件
    • JP2011117819A
    • 2011-06-16
    • JP2009275216
    • 2009-12-03
    • Seiko Epson Corpセイコーエプソン株式会社
    • HISAMATSU HIROKAZU
    • G01P15/135H01H35/14H01L29/84
    • PROBLEM TO BE SOLVED: To reduce the size of a semiconductor device including an inertia sensor and ICs (integrated circuits), while reducing power consumption in the inertial sensor. SOLUTION: The semiconductor device includes a support substrate, an IC substrate and an elastic support that supports the IC substrate on the support substrate. A first electrode is formed on the support substrate, while a second electrode is formed on the IC substrate, and the first and second electrodes constitute a switch having two states of contacting and noncontacting. When the switch is brought to a first state, the motion of a prescribed function part on the IC substrate is put into a first mode; and when the switch is not brought to the first state within a certain period, the motion of the prescribed function part of the IC substrate is put in a second mode. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了减小包括惯性传感器和IC(集成电路)的半导体器件的尺寸,同时降低惯性传感器中的功率消耗。 解决方案:半导体器件包括支撑衬底,IC衬底和在支撑衬底上支撑IC衬底的弹性支撑件。 第一电极形成在支撑基板上,而第二电极形成在IC基板上,第一和第二电极构成具有两种接触状态和非接触状态的开关。 当开关处于第一状态时,将IC基板上的规定功能部件的运动置于第一模式; 并且当在一定时间内没有使开关处于第一状态时,将IC基板的规定功能部分的运动置于第二模式。 版权所有(C)2011,JPO&INPIT
    • 12. 发明专利
    • Vibration switch
    • 振动开关
    • JP2010267432A
    • 2010-11-25
    • JP2009116330
    • 2009-05-13
    • Chichibu Fuji Co LtdG Device:Kk株式会社ジーデバイス株式会社秩父富士
    • NAKANO YUKOKOMATSU MASARUSHIMASE TERUO
    • H01H35/14
    • PROBLEM TO BE SOLVED: To provide a compact and inexpensive vibration switch with superb switching sensitivity with less failure of detection.
      SOLUTION: The vibration switch includes a housing 2 made of an insulating material and having a space part; a spherical movable conductive member 3 inserted into the space part so as to be moved by vibration; a first electrode member 4 arranged on one end side or both end sides of the space part and having a moving surface part on which the movable conductive member 3 is moved in contact therewith; a second electrode member 5 disposed to be opposed to the moving direction of the movable conductive member 3, to and from which the movable conductive member contacts and separates by movement. The switch further includes a holding part 40 having a recessed shape for holding the movable conductive member in a detachably fitted state according to a regulated magnitude of vibration, a protruding shape for supporting the outer circumferential surface of the movable conductive member or a hole shape for holding the movable conductive member in a fitted state.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供具有极好的开关灵敏度的紧凑且廉价的振动开关,具有较少的检测失败。 解决方案:振动开关包括由绝缘材料制成并具有空间部分的壳体2; 插入空间部分中以通过振动移动的球形可移动导电构件3; 布置在所述空间部分的一端侧或两端侧的第一电极部件4,并且具有移动表面部分,所述可移动导电部件3与所述移动表面部分相接触地移动; 设置成与可动导电部件3的移动方向相对设置的第二电极部件5,可动导电部件通过移动而接触和分离。 开关还包括具有凹形形状的保持部40,用于将可移动导电部件按照规定的振动大小保持在可拆卸的状态,用于支撑可动导电部件的外周面的突出形状或孔形状 将可动导电部件保持在嵌合状态。 版权所有(C)2011,JPO&INPIT
    • 14. 发明专利
    • Impact detection apparatus and electronic instrument
    • 冲击检测装置和电子仪器
    • JP2010107283A
    • 2010-05-13
    • JP2008278003
    • 2008-10-29
    • Panasonic Corpパナソニック株式会社
    • NAKASE KIYOTAKA
    • G01P15/00G01P15/135G11B33/14H01H35/14
    • PROBLEM TO BE SOLVED: To provide an impact detection apparatus which can detect that impacts that exceed an acceptable level have been applied to an electronic instrument and can reduce malfunctions, including shorting of circuit boards built into the electronic instrument, without requiring strict dimensional design.
      SOLUTION: The impact detection apparatus includes: a pair of conductive terminals which are fixed at both sides of a through-hole formed through the frame of the electronic instrument; a conductive member which is supported by the pair of conductive terminals, to bring the two into conduction; and a non-stretching, flexible connecting member which physically connects a built-in part, fixedly supported by an elastic buffer member fixed to the frame and the conductive member through the through-hole. When an impact that exceeds the acceptable level is received, the connecting member which moves along with the elastic deformation of the elastic buffer member by the impact pulls the conductive member which is supported by the pair of conductive terminals. The pair of conductive terminals or the conductive member is thereby deformed, the conductive member is removed through the through-hole from in between the pair of conductive terminals, and the pair of conductive terminals are brought out and set into a non-continuous state.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种可以检测到超过可接受水平的影响已经应用于电子仪器的冲击检测装置,并且可以减少故障,包括内置于电子仪器中的电路板的短路,而不需要严格的 立体设计。 冲击检测装置包括:固定在通过电子仪器的框架形成的通孔的两侧的一对导电端子; 由所述一对导电端子支撑的导电构件,以使所述导电构件导通; 以及非拉伸柔性连接构件,其通过通孔物理地连接固定在框架上的弹性缓冲构件和导电构件固定地支撑的内置部件。 当接收到超过可接受水平的冲击时,通过冲击与弹性缓冲构件的弹性变形一起移动的连接构件拉动由一对导电端子支撑的导电构件。 一对导电端子或导电构件因此变形,导电构件从一对导电端子之间通过通孔去除,并且一对导电端子被拔出并设置为非连续状态。 版权所有(C)2010,JPO&INPIT
    • 15. 发明专利
    • Impact switch
    • 冲击开关
    • JP2009301729A
    • 2009-12-24
    • JP2008151488
    • 2008-06-10
    • Kasatani:Kk株式会社カサタニ
    • SAKAI YOSHITOMOISHIBASHI TOSHIYA
    • H01H35/14
    • PROBLEM TO BE SOLVED: To provide an impact switch for leaving the history of impact which it receives even in a state in which the switch is not energized when it receives the impact.
      SOLUTION: In a state in which the impact switch is installed on a portable device, a terminal piece 5 is set in a first attitude and contacts 4a, 4b abut on terminals 3a, 3b, respectively, getting into an electrically conductive condition. When inertial force works on a first link 7 and a second link 9 in the direction of an arrowmark A, the first link 7 turns around a rotating shaft 6 in the direction of an arrowmark B against the biasing force of a spring member 10 and the second link 9 turns around the contact 4a in the direction of an arrowmark C. A connection shaft 8 moves in the direction of an arrowmark D, and when the axial center of the connection shaft 8 rides over a line 61 connecting the axial center of the turning shaft 6 to the center of the contact 7a, the connection shaft 8 moves to a predetermined position with the biasing force of the spring member 10 and is stopped. Namely, the terminal piece 5 clicks and turns from the first attitude and is held in a second attitude, and the contact 4b moves apart from the terminal 3b into an electrically cut-off condition.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种即使在接收冲击时开关不通电的状态下也能够保持其受到的冲击历史的冲击开关。 解决方案:在冲击开关安装在便携式设备上的状态下,端子片5被设置在第一姿态,接点4a,4b分别抵靠在端子3a,3b上,进入导电状态 。 当惯性力沿着箭头A的方向在第一连杆7和第二连杆9上工作时,第一连杆7抵抗弹簧部件10的偏压力沿箭头B的方向转动旋转轴6,并且 第二连杆9绕箭头C的方向转动触点4a。连接轴8沿箭头D的方向移动,并且当连接轴8的轴向中心跨越连接轴线 将轴6转动到接触件7a的中心,连接轴8随着弹簧部件10的作用力移动到预定位置并停止。 也就是说,端子片5从第一姿态咔嗒一声地转动并保持在第二姿势,并且触头4b从端子3b移开到断电状态。 版权所有(C)2010,JPO&INPIT
    • 16. 发明专利
    • Impact sensor
    • 冲击传感器
    • JP2009174913A
    • 2009-08-06
    • JP2008011650
    • 2008-01-22
    • Nec Tokin CorpNecトーキン株式会社
    • MORIZAKI SHIGEYUKI
    • G01P15/135B60R21/00B60R21/16G01P15/08H01H35/14
    • PROBLEM TO BE SOLVED: To provide an impact sensor with its acceleration detection time adjustable without changing the specifications of components constituting the impact sensor.
      SOLUTION: This impact sensor is formed by housing a sensor element part 9 in an external case 10 having at least one plane while preventing the plane provided on the external case 10 from running parallel to the longitudinal direction of a lead terminal 22 in which a magnet 4 moves. The plane of the external case 10 is formed so as to prevent the direction in which the magnet 4 moves from running parallel to a bottom surface of the external case 10, assuming, for example, that the plane is the bottom surface of the external case 10 in which the impact sensor 1a is mounted on a substrate for an electronic control circuit of a movable body.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供其加速度检测时间可调的冲击传感器,而不改变构成冲击传感器的部件的规格。 解决方案:该冲击传感器通过将传感器元件部分9容纳在具有至少一个平面的外部壳体10中而防止设置在外部壳体10上的平面平行于引线端子22的纵向延伸而形成 磁体4移动。 外部壳体10的平面形成为防止磁体4平行于外部壳体10的底面移动的方向,例如假设该平面是外部壳体的底面 其中冲击传感器1a安装在可移动体的电子控制电路的基板上。 版权所有(C)2009,JPO&INPIT
    • 18. 发明专利
    • Device for detecting semiconductor physical quantity
    • 用于检测半导体物理量的装置
    • JP2009008418A
    • 2009-01-15
    • JP2007167373
    • 2007-06-26
    • Panasonic Electric Works Co Ltdパナソニック電工株式会社
    • YAMADA KOICHI
    • G01C9/06G01P15/093G01P15/18H01H35/00H01H35/02H01H35/14H01L31/12
    • PROBLEM TO BE SOLVED: To provide a small-sized, low-cost device for detecting semiconductor physical quantity which detects physical quantities, without having to utilize changes in strains or gap dimensions.
      SOLUTION: A Si layer 4a comprises a frame 6, having a rectangular opening 5 connected to a principal surface of a semiconductor substrate 2 with a photosensitive adhesive 3; a center portion 8, which is supported with respect to the frame 6 in a fluctuatable manner in the x-direction through springs 7a, 7b within the opening 5; and a through-hole 9, which is formed in the vertical direction in the central portion 8. A Si layer 4c is formed into a thickness of a few μm to a few tens of μm so that the light from the top surface can pass therethrough. The principal surface of the semiconductor substrate 2 is formed with a light-receiving element 10, such as photodiode. The light-receiving element 10 is formed inside the fluctuations range of the through-hole 9 and detects the changes in the amount of light received, accompanying the fluctuations in the through-hole 9.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供用于检测物理量的半导体物理量的小型,低成本的装置,而不必利用应变或间隙尺寸的变化。 解决方案:Si层4a包括框架6,其具有连接到具有感光性粘合剂3的半导体衬底2的主表面的矩形开口5; 中心部分8,其通过开口5内的弹簧7a,7b在x方向上相对于框架6以可移动的方式被支撑; 以及在中心部分8中沿垂直方向形成的通孔9.Si层4c形成为几μm至几十μm的厚度,使得来自顶表面的光可以穿过其中 。 半导体衬底2的主表面由诸如光电二极管的光接收元件10形成。 光接收元件10形成在通孔9的波动范围内,并伴随通孔9的波动来检测接收的光量的变化。(C)2009,JPO&INPIT
    • 19. 发明专利
    • Shock sensor
    • 震动传感器
    • JP2008310977A
    • 2008-12-25
    • JP2007155264
    • 2007-06-12
    • Nec Tokin CorpNecトーキン株式会社
    • MORIZAKI SHIGEYUKI
    • H01H35/14G01P15/00
    • PROBLEM TO BE SOLVED: To provide a shock sensor having long ON duration and a simple and highly reliable structure. SOLUTION: The shock sensor includes a reed switch 1, a tube 3 disposed around the reed switch 1 at the center of a case 2, a magnet 4 moving along the outer periphery of the tube 3 to drive the reed switch 1, a spring 5 supporting the magnet 4, a back stopper 6 setting the initial position of the magnet 4 moving from shock, and a front stopper 7 defining a moving range of the magnet 4 from the back stopper 6. An end face (an oblique end 4a) of the cylindrical magnet 4 on the side of the front stopper 7 is obliquely formed. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供具有长打开持续时间和简单且高度可靠的结构的冲击传感器。

      解决方案:冲击传感器包括簧片开关1,设置在壳体2中心处的舌簧开关1周围的管3,沿着管3的外周移动以驱动簧片开关1的磁体4, 支撑磁体4的弹簧5,设置磁体4从冲击移动的初始位置的后挡块6和从后挡块6限定磁体4的移动范围的前挡块7。 在前挡块7一侧的圆筒形磁体4的4a)倾斜地形成。 版权所有(C)2009,JPO&INPIT

    • 20. 发明专利
    • Acceleration switch
    • 加速开关
    • JP2008258087A
    • 2008-10-23
    • JP2007101386
    • 2007-04-09
    • Mitsubishi Electric Corp三菱電機株式会社
    • HIRATA YOSHIAKIKONNO NOBUAKIINOUE SATORUHIRAOKA YUJI
    • H01H35/14B81B3/00H01H1/66
    • PROBLEM TO BE SOLVED: To provide an acceleration switch easily manufacturable with high accuracy, allowing an on-state holding time of the switch to be easily adjusted, and allowing detection acceleration to be adjusted.
      SOLUTION: A movable structure having beams 4 and 5 and frames 2 and 3 is formed with thin films having the same thickness. The movable structure is fixed to an anchor at one or more points on a board, and the frame 2 is supported by the anchor and the beam 4. The movable structure is structured such that the movement of the frame 3 displacing in an out-of-plane direction is mechanically displaced by a rotating operation of the frame 2, and the displacing and rotating frame contacts a fixed contact at an acceleration not smaller than a threshold value.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供容易制造的高精度的加速开关,允许容易地调节开关的导通状态保持时间,并且允许调整检测加速度。 解决方案:具有光束4和5以及框架2和3的可移动结构形成有具有相同厚度的薄膜。 可移动结构在板上的一个或多个点处固定到锚固件,并且框架2由锚和梁4支撑。可移动结构被构造成使得框架3的运动在外侧 平面方向通过框架2的旋转操作而机械地移位,并且位移和旋转框架以不小于阈值的加速度与固定触点接触。 版权所有(C)2009,JPO&INPIT