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    • 1. 发明专利
    • Capacitance sensor
    • 电容传感器
    • JP2008046080A
    • 2008-02-28
    • JP2006224325
    • 2006-08-21
    • Fujikura Ltd株式会社フジクラ
    • NAKAMURA YASUSHIMISAKI NOBUMASA
    • G01B7/00G01V3/08
    • PROBLEM TO BE SOLVED: To detect accurate distance between a detecting object and a detecting electrode without being affected by disturbance.
      SOLUTION: This capacitance sensor has the detecting electrode 1, and outputs, as a detected value, ground capacitance Cx of the detection electrode 1 varied by approach of the detecting object 2. The capacitance sensor has an initial capacitance C
      0 in a signal line or the like connected to the detection electrode 1, and a composite capacitance C output as the detected value becomes the sum of the capacitance Cx and initial capacitance C
      0 between the detection electrode 1 and detecting object 2. When the composite capacitance C as the sum of the capacitance Cx and initial capacitance C
      0 is measured at a distance of at least two existing or calculable points, the distance L between the detection electrode 1 and detecting object 2 can be measured based on the difference between the composite capacitances C at the two points.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:检测检测对象和检测电极之间的准确距离,而不受干扰的影响。 解决方案:该电容传感器具有检测电极1,并且作为检测值输出检测电极1的接地电容Cx根据检测对象2的接近而变化。电容传感器具有初始电容C 0< / SB>在连接到检测电极1的信号线等中,作为检测值输出的复合电容C成为电容Cx与初始电容C 0 之和 检测电极1和检测对象2.当在至少两个现有或可计算点的距离处测量作为电容Cx和初始电容C 0 之和的复合电容C时, 可以基于两点的复合电容C之间的差来测量检测电极1和检测对象2。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Capacitance type switch device
    • 电容式开关装置
    • JP2007018811A
    • 2007-01-25
    • JP2005197597
    • 2005-07-06
    • Fujikura Ltd株式会社フジクラ
    • TOKURA TAKESHINIKAIDO SHINICHIMISAKI NOBUMASA
    • H01H36/00
    • H03K17/962G06F3/044H01H2239/006H03K2017/9602
    • PROBLEM TO BE SOLVED: To provide a capacitance type switch device for controlling detection sensitivity in response to variation of a detection value. SOLUTION: A plurality of detection electrodes 2 each used for detecting proximity of a human body are installed and a detection electrode area is changed over by using switches. When a detection object is separated from this switch device, SWs 1-3 are turned off and a SW 4 is turned on. Thereby, the detection electrode area is set to three times as much as each area of the three detection electrodes 2 and the detection sensitivity is increased. When the detection object is near to the switch device, the SWs 1-3 are turned on and the SW 4 is turned off. Thereby, the detection electrode area is set to an area equivalent to the area of the single detection electrode 2 and the detection sensitivity is set to a standard value. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于响应于检测值的变化来控制检测灵敏度的电容式开关装置。 解决方案:安装用于检测人体接近度的多个检测电极2,并且通过使用开关来切换检测电极区域。 当检测对象与该开关装置分离时,SW 1-3被断开,并且SW 4被接通。 因此,检测电极面积被设定为三个检测电极2的每个区域的三倍,并且检测灵敏度增加。 当检测对象靠近开关装置时,开关1-3被接通并且SW 4被断开。 由此,将检测电极面积设定为与单个检测电极2的面积相当的面积,将检测灵敏度设定为标准值。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Vehicular back door garnish
    • 机动车后门GARNISH
    • JP2006232017A
    • 2006-09-07
    • JP2005047266
    • 2005-02-23
    • Fujikura LtdToyota Motor Corpトヨタ自動車株式会社株式会社フジクラ
    • TSUJI NOBORUNIKAIDO SHINICHIUEJIMA AKIRAMISAKI NOBUMASAUCHIDA TOMOHIROHASEGAWA KATSUHISAIKEDA KOJITAKEDA HIRONOBU
    • B60R13/04B60R1/00
    • PROBLEM TO BE SOLVED: To require only work for attaching an integrated article made by assembling and integrating electric/electronic equipment to a vehicle body, to facilitate connecting work of wiring, and to easily materialize waterproofing.
      SOLUTION: Required electric/electronic equipment such as a license lamp 20 and a back door opening/closing switch 30 is assembled in a waterproof case 2. The wiring of these electric/electronic equipment is put together and connected to one connector 3. The connector 3 is projected out from the case 2 to connect to the wiring from a power source of a vehicle, and inserted in a joint hole 4 formed on a vehicle body 100. The case 2 on the opposite side to a side from which the connector 3 projects out is adhered to a garnish main body 1. A waterproof seal material 5 is provided in the joint hole 4 in which the connector 3 is inserted when the case 2 is attached to the vehicular back door.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:仅需要将电气/电子设备组装和集成制成的一体制品附接到车身上,以便于布线的连接工作,并且容易实现防水。

      解决方案:所需的电气/电子设备如许可证灯20和后门打开/关闭开关30组装在防水壳体2中。这些电气/电子设备的布线被放在一起并连接到一个连接器3 连接器3从壳体2伸出,从车辆的电源连接到布线,并且插入到形成在车体100上的接合孔4中。另一侧的壳体2 伸出的连接器3附着在装饰主体1上。当壳体2安装在车辆后门上时,在连接器3插入的接头孔4中设置防水密封材料5。 版权所有(C)2006,JPO&NCIPI

    • 5. 发明专利
    • Heat radiation structure of mounting membrane
    • 安装膜的热辐射结构
    • JP2006202970A
    • 2006-08-03
    • JP2005012863
    • 2005-01-20
    • Fujikura Ltd株式会社フジクラ
    • KASAI TOSHIAKIMISAKI NOBUMASA
    • H05K1/02H05K7/20
    • PROBLEM TO BE SOLVED: To provide a mounting membrane suppressing temperature rise due to the radiated heat of the mounting components.
      SOLUTION: The mounting membrane mounts heat generating components in a circuit formed on the front surface of a polyester film. In this mounting membrane, the heat generated by the mounting components is radiated with a copper miler, conductive ink, and heat radiating resin by adhering the copper miler to the rear surface of the mounting membrane, printing the conductive ink, and coating the heat radiating resin in view of suppressing temperature rise.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种安装膜,其抑制由于安装部件的辐射热引起的温度升高。

      解决方案:安装膜将热产生部件安装在聚酯膜前表面上形成的电路中。 在该安装膜中,通过将铜流片粘附到安装膜的后表面,印刷导电油墨并涂覆散热片,通过安装部件产生的热量通过铜箔,导电油墨和散热树脂辐射 考虑到抑制温度上升。 版权所有(C)2006,JPO&NCIPI

    • 6. 发明专利
    • Capacitance type proximity sensor and its output calibration method
    • 电容式接近传感器及其输出校准方法
    • JP2006177838A
    • 2006-07-06
    • JP2004372652
    • 2004-12-24
    • Fujikura Ltd株式会社フジクラ
    • NAKAMURA YASUSHINIKAIDO SHINICHIMISAKI NOBUMASA
    • G01B7/00H01H36/00
    • PROBLEM TO BE SOLVED: To satisfactorily compensate for errors caused by initial capacitance values that are intrinsic to circuits.
      SOLUTION: In tis output calibration method of capacitance type proximity sensors provided with both a sensor part 10, of which electrostatic capacitance changes by the approximation of an object to be sensed and a sensing circuit 20 for outputting sense signals, based on the electrostatic capacitance of the sensor part 10. Detection signals, corresponding to an initial capacitance value characteristics to a circuit, are observed on the basis of a calibration command when the body to be sensed is not sensed, and a substraction voltage generating circuit 25 is made to generate a subtraction voltage which offsets the detection signals. A subtraction circuit 24 subtracts the subtraction voltage from the detection signals and outputs after-calibration detection signals.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:令人满意地补偿由电路固有的初始电容值引起的误差。 解决方案:在电容型接近传感器的输出校准方法中,电感式接近传感器具有传感器部分10,传感器部分10通过近似待检测对象的静电电容和用于输出感测信号的感测电路20,基于 传感器部分10的静电电容。当未检测到感测体时,基于校准命令观察对应于电路的初始电容值特性的检测信号,并且制作减法电压产生电路25 以产生抵消检测信号的减法电压。 减法电路24从检测信号中减去减法电压,并输出校准后检测信号。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Composite printed wiring board
    • 复合印刷接线板
    • JP2006165183A
    • 2006-06-22
    • JP2004352963
    • 2004-12-06
    • Fujikura Ltd株式会社フジクラ
    • WATANABE NORIYUKIYAJIMA FUMIOMISAKI NOBUMASAISHII TAKAHIRO
    • H05K1/14H05K1/02H05K1/11
    • PROBLEM TO BE SOLVED: To achieve the miniaturization, manufacturing costs reduction, as well as enhancement of connection workability of a composite printed wiring board which is attached with a mounting board having an electronic component mounted on one printed wiring board.
      SOLUTION: An input side circuit A, and an output side circuit B facing the input side circuit A are formed on one printed wiring board 1. On the input side circuit A, a plurality of wiring patterns 3 are printed which start from the input circuit side and terminate at a land 2. On the output side circuit B, a plurality of wiring pattern 5 are printed which start from the input circuit side and terminate at a land 4. An electronic component 12 is mounted on a mounting substrate 6. The mounting board 6 is mounted on the printed wiring board 1 in such a way that lands 10, 11 of wiring patterns 8, 9 are connected to the lands 2, 4 of the input circuit side circuit A and output side circuit B, respectively.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了实现装配有安装在一个印刷线路板上的电子部件的安装板的复合印刷线路板的小型化,制造成本降低以及连接可操作性的提高。 解决方案:在一个印刷线路板1上形成一个输入侧电路A和一个面向输入侧电路A的输出侧电路B.在输入侧电路A上,印刷多个布线图案3,从 输入电路侧终止于接地区2.在输出侧电路B上,印刷从输入电路侧开始并终止于焊盘4的多个布线图案5.电子部件12安装在安装基板 安装板6以这样的方式安装在印刷布线板1上,使得布线图案8,9的焊盘10,11连接到输入电路侧电路A和输出侧电路B的焊盘2,4上, 分别。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Connector mounting structure and bracket used for it
    • 用于其的连接器安装结构和支架
    • JP2006156273A
    • 2006-06-15
    • JP2004348165
    • 2004-12-01
    • Fujikura Ltd株式会社フジクラ
    • SAKURABA KATSUTOSHIMISAKI NOBUMASA
    • H01R13/46B60R16/02H01R13/73
    • PROBLEM TO BE SOLVED: To facilitate the mounting of a connector, to improve workability of maintenance and to realize miniaturization.
      SOLUTION: This bracket 10 is fixed to a support surface of a vehicle body or the like through bracket flanges 11 and has a mounting surface 12 in a body part 13 rising from the bracket flanges 11. The connector 20 is mounted to the mounting surface 12 from the front face. A fitting hole 14 with one end opened for fitting the connector 20 thereto is formed in the mounting surface 12. The connector 20 comprises: a connector body part 24 having a tip part connected to a mating connector and having a base end for a wire harness 23 connected thereto; a connector flange 21 projecting along a surface perpendicular to the connector connection direction on side faces of the connector body part 24; and elastic engagement pieces 22 formed on the side faces on the base end side of the connector body part 24 and engaging with the fitting hole 14 of the bracket 10 in mounting the connector 20 to the bracket 10.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了便于安装连接器,提高维护的可操作性并实现小型化。 解决方案:该支架10通过支架凸缘11固定在车体等的支撑面上,并且在从托架凸缘11上升的主体部分13中具有安装表面12.连接器20安装到 安装表面12从前表面。 连接器20包括:连接器主体部分24,其具有连接到配合连接器的尖端部分,并且具有用于线束的基端部 23; 连接器凸缘21,其沿着与连接器主体部24的侧面垂直于连接器连接方向的表面突出; 以及形成在连接器主体部24的基端侧的侧面上的弹性接合片22,并且在将连接器20安装到支架10上时与支架10的嵌合孔14接合。(C) 2006年,JPO&NCIPI
    • 9. 发明专利
    • Lighting system
    • 照明系统
    • JP2006120571A
    • 2006-05-11
    • JP2004309893
    • 2004-10-25
    • Fujikura Ltd株式会社フジクラ
    • NIKAIDO SHINICHITSUJI NOBORUUEJIMA AKIRAMISAKI NOBUMASA
    • H05B37/02G01V3/08
    • PROBLEM TO BE SOLVED: To allow a smooth lighting operation to be carried out even in an environment where the position of a switch can not be determined. SOLUTION: A detection electrode 2 is attached to the back face of a light guide plate 1 having an illumination surface 1a. An opening 2a is formed in the detection electrode 2, and light from a light source 3 is radiated to the light guide plate 1 through the opening 2a. When a human body comes close to the detection electrode 2, a capacitance detection circuit detects the change of capacitance to the ground of the detection electrode 2, the light source 3 is tentatively lit when the detection value thereof exceeds a predetermined threshold value, and the light source 3 is regularly lit when the detection value satisfies a predetermined condition. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:即使在不能确定开关位置的环境中,也能够进行平稳的照明操作。 解决方案:检测电极2附接到具有照明表面1a的导光板1的背面。 在检测电极2中形成有开口2a,并且通过开口2a将来自光源3的光照射到导光板1。 当人体靠近检测电极2时,电容检测电路检测到检测电极2的接地电容的变化,当其检测值超过预定阈值时,光源3被暂时点亮,并且 当检测值满足预定条件时,光源3被定期点亮。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Optical fiber displacement sensor and collision detection sensor using same
    • 光纤位移传感器和碰撞检测传感器
    • JP2005181210A
    • 2005-07-07
    • JP2003425385
    • 2003-12-22
    • Fujikura Ltd株式会社フジクラ
    • YAJIMA FUMIOMISAKI NOBUMASA
    • G01B11/16B60R21/0136B60R21/34B60R21/38
    • PROBLEM TO BE SOLVED: To make up an optical fiber displacement sensor at a low cost, having such characteristics that a period from a timing when a displacement once arises in its optical fiber to a timing when the displacement returns to the former state is short, and the variation in its bending radius is large, in order to obtain high sensitivity. SOLUTION: The optical fiber 1 is wound through an aperture section 24 around the circumference of a spiral spring 24 disposed in an annular hollow section 21, and set through the spiral spring in such a state that the bending radius r is its maximum radius rmax when the displacement of the optical fiber 1 is zero, and the bending radius r is its minimum radius rmin when the displacement is its maximum value. Even when the displacement returns to the former state in the optical fiber 1, the bending radius r is continuously increased by spring actions of the spiral spring 24, whereby the amount of displacement is detected. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了以低成本构成光纤位移传感器,具有这样的特性,即从其光纤中一次出现位移的定时到位移返回到前一状态的定时的时间 短,其弯曲半径的变化大,以获得高灵敏度。 解决方案:光纤1通过围绕设置在环形中空部分21中的螺旋弹簧24的圆周的孔部分24卷绕,并且通过螺旋弹簧设置成弯曲半径r为其最大值 当光纤1的位移为零时,半径rmax,当位移为其最大值时,弯曲半径r为其最小半径rmin。 即使当光纤1中的位移返回到前一状态时,通过螺旋弹簧24的弹簧作用使弯曲半径r连续地增加,由此检测位移量。 版权所有(C)2005,JPO&NCIPI