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    • 3. 发明专利
    • ULTRASONIC TYPE ANEMOMETER
    • JPH0843421A
    • 1996-02-16
    • JP17423094
    • 1994-07-26
    • NIPPON SOKENTOYOTA MOTOR CORP
    • FUKUI SHINJIGOTO MASAHIROFURUTA NORITOSHIMUKOYAMA YOSHIO
    • G01P13/00
    • PURPOSE:To suppress turbulence of wind mutually, and to improve the accuracy in detection of a wind direction and a wind velocity by providing ultrasonic elements for transmission and reception which have an emission port and an incidence port of an ultrasonic wave in the opposite surfaces thereof respectively and which are disposed in directions of two axes intersecting each other perpendicularly, and detect the wind separately in the directions of the two axes. CONSTITUTION:An ultrasonic element 24 for transmission is provided inside a case 25 and ultrasonic elements 231 and 232 for reception are embedded in a roof 41. The case 25 and a support 26 have structures not disturbing the flow of a wind given to an anemometer, and a diffused reflection preventing structure 27 is provided on the case 25 side so that an ultrasonic wave may not be reflected diffusedly. The element 24 is provided at the center of the case 25, while the elements 231 and 232 are disposed with a prescribed space between on the axes X and Y intersecting each other perpendicularly. In order to detect a wind direction, the case 25 is rotatinally symmetric about the element 24. A time of propagation required for the ultrasonic wave emitted into air from the element 24 to reach the elements 231 and 232 is detected and a wind velocity and the wind direction are calculated from a change in the time.
    • 4. 发明专利
    • Interference control device
    • 干扰控制装置
    • JP2012029274A
    • 2012-02-09
    • JP2011082955
    • 2011-04-04
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • SUGIMOTO YUJIFUKUI SHINJISUZUKI TADAO
    • H04B1/10H04B7/08
    • PROBLEM TO BE SOLVED: To provide an interference control device capable of suppressing interference due to a sneak-path wave in both directions by attaining a simple configuration while minimizing deterioration of communication quality.SOLUTION: An interference control device includes coupling means for extracting a part of transmission signals transmitted from an antenna of a first radio communication equipment from a power feed line of the first radio communication equipment and conveying the transmission signals to a power feed line of a second radio communication equipment and extracting a part of transmission signals transmitted from an antenna of the second communication equipment from the power feed line of the second radio communication equipment and conveying the transmission signals to the power feed line of the first radio communication equipment, and adjustment means, which is installed between the antenna connected to the power feed line and the coupling means in at least one of the power feed lines of the first radio communication equipment and the second radio communication equipment, for adjusting at least a phase out of the phase and power level of the signals conveyed on the power feed line according to a transmission timing of the first radio communication equipment and the second communication equipment.
    • 解决的问题:提供一种干扰控制装置,其能够通过实现简单的构造,同时最小化通信质量的劣化来抑制由于双向的潜行路径引起的干扰。 解决方案:一种干扰控制装置,包括用于从第一无线电通信设备的馈电线提取从第一无线电通信设备的天线发送的一部分传输信号并将传输信号传送到馈电线的耦合装置 的第二无线电通信设备,并且从第二无线电通信设备的馈电线提取从第二通信设备的天线发送的一部分传输信号,并将传输信号传送到第一无线电通信设备的馈电线, 以及调整装置,其安装在连接到馈电线的天线和第一无线电通信设备和第二无线电通信设备的至少一个馈电线中的耦合装置之间,用于至少调节相位 在馈电线路上传送的信号的相位和功率电平 涉及第一无线电通信设备和第二通信设备的发送定时。 版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Field probe, field detection apparatus, and method using the same
    • 现场勘探,现场检测装置及使用该方法的方法
    • JP2008275470A
    • 2008-11-13
    • JP2007119895
    • 2007-04-27
    • Nippon Soken Inc株式会社日本自動車部品総合研究所
    • KONO SHUICHIFUKUI SHINJI
    • G01R33/09G01R33/02
    • PROBLEM TO BE SOLVED: To provide a field probe and a field detection apparatus capable of highly accurately detecting prescribed magnetic fields or near magnetic fields, low-frequency magnetic fields extremely close to the prescribed magnetic fields, with high detection accuracy and provide a field detection method using them.
      SOLUTION: The magnetic probe 10 is provided with a power terminal 13 electrically connected to a power supply part 21 which supplies power for a field detection circuit 15; a main body part 11 having an output terminal 12 electrically connected to a signal processing part which processes output signals of the field detection circuit 15; and a probe part 14. The probe part 14 has the field detection circuit 15; a positive wiring 17a and a negative wiring 17b of a power wiring; and a positive wiring 16a and a negative wiring 16b of an output wiring. The field detection circuit 15 is a full-bridge circuit comprising magnetoresistive elements 15a-15d of which resistance values vary according to applied magnetic fields. The full-bridge circuits are formed through semiconductor processes.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种能够高精度地检测规定的磁场或近场磁场的场探头和场检测装置,具有非常接近规定磁场的低频磁场,检测精度高,并提供 使用它们的场检测方法。 解决方案:磁探头10设置有电连接到供电部分21的电源端子13,电源部分21为场检测电路15供电; 主体部分11具有电连接到处理场检测电路15的输出信号的信号处理部分的输出端子12; 探针部14具有场检测电路15, 电源线的正极配线17a和负极配线17b; 以及输出布线的正极布线16a和负布线16b。 场检测电路15是包括其电阻值根据施加的磁场而变化的磁阻元件15a-15d的全桥电路。 全桥电路通过半导体工艺形成。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Automatic parking system
    • 自动停车系统
    • JP2006031412A
    • 2006-02-02
    • JP2004209425
    • 2004-07-16
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • FUKUI SHINJIMATSUI KATSUMASATAKEUCHI TOSHIHIRO
    • G08G1/14G08G1/16
    • PROBLEM TO BE SOLVED: To accurately and quickly guide a vehicle to an available parking space by completely automating a series of vehicle-driving operations from the guidance of a vehicle in a parking lot to the parking of the vehicle in an available parking space.
      SOLUTION: A parking management center 3 transmits route information including longitude-latitude information corresponding to a vehicle traveling route (any of a-f) to a position at which a vehicle stops in an available parking space to a vehicle 2 coming in from the entrance of a parking lot. Positioning information detecting means 5 and 6, which precisely measure positioning information indicating the present position of its own vehicle, are mounted on the vehicle 2, and further a traveling control device is also mounted on the vehicle 2, the traveling control device making the vehicle 2 perform automatic steering traveling along the vehicle traveling route based on the collation of the present location of the vehicle indicated by the measured positioning information with the vehicle traveling route indicated by the longitude-latitude information and also making the vehicle 2 stop the automatic steering traveling when the vehicle 2 reaches the vehicle-stopping position in the available parking space.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过将停车场中的车辆的引导中的一系列车辆驾驶操作完全自动化到可用停车场中的车辆停车,来准确和快速地将车辆引导到可用的停车位 空间。 解决方案:停车管理中心3将包括车辆行驶路线(af)中的任一个的经度纬度信息的路线信息发送到车辆在可利用的停车位中停止的位置, 一个停车场的入口 精确地测量表示本车辆的当前位置的定位信息的定位信息检测装置5和6被安装在车辆2上,并且还在车辆2上安装行驶控制装置,制造车辆的行驶控制装置 2执行基于由测量的定位信息指示的车辆的当前位置与由经度 - 纬度信息指示的车辆行驶路线对照的沿着车辆行驶路线行驶的自动转向,并且还使得车辆2停止自动转向行驶 当车辆2到达可用停车空间中的停车位置时。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • DIVERSITY RECEIVER
    • JPH09200101A
    • 1997-07-31
    • JP613896
    • 1996-01-17
    • NIPPON SOKEN
    • FUKUI SHINJIKONO TATSUO
    • H04B7/08
    • PROBLEM TO BE SOLVED: To provide the diversity receiver by which an optimum reception system is selected. SOLUTION: The receiver has a reception system consisting of an antenna 1, a receiver 3 and a demodulator 4 and a reception system consisting of an antenna 5, a receiver 7 and a demodulator 8. A microcomputer 19 detects a reception signal level at a prescribed time interval and selects a reception system based on the result of detection to extract reception data for a prescribed time. In this case, the microcomputer 19 calculates a gradient of are envelope at the start of reception data extraction based on a signal level of the envelope of the reception signal at the start of reception data extraction and just before the start and estimates a reception signal level at the end of reception data extraction based on the gradient of the envelope of the start of reception data extraction and selects a reception system based art the estimated signal level at the end of extraction of the reception data.
    • 9. 发明专利
    • Current sensor
    • 电流传感器
    • JP2014119390A
    • 2014-06-30
    • JP2012276030
    • 2012-12-18
    • Nippon Soken Inc株式会社日本自動車部品総合研究所Denso Corp株式会社デンソー
    • MIZOGUCHI MIYUKIFUKUI SHINJIKATAOKA RYOHEI
    • G01R15/18
    • PROBLEM TO BE SOLVED: To provide a current sensor allowing the size of a hollow part to be easily adjusted.SOLUTION: While at least one of first and second components 20a, 20b, 30a, 30b constituting a main member 10 is bent, one end of the first component 20a, 20b and one end of the second component 30a, 30b are fixed, and the other end of the first component 20a, 20b and the other end of the second component 30a, 30b are fixed, to form a hollow part 11 inside and a coil pattern 12 surrounding the hollow part 11. When at least one of the first and second components 20a, 20b, 30a, 30b is bent to form the hollow part 11, the size of the hollow part can be easily adjusted by changing the bend size.
    • 要解决的问题:提供允许容易调节中空部件尺寸的电流传感器。解决方案:当构成主构件10的第一和第二部件20a,20b,30a,30b中的至少一个弯曲时,一端 第一部件20a,20b和第二部件30a,30b的一端固定,第一部件20a,20b的另一端和第二部件30a,30b的另一端固定,形成中空部 11和围绕中空部分11的线圈图案12.当第一和第二部件20a,20b,30a,30b中的至少一个被弯曲以形成中空部分11时,中空部分的尺寸可以容易地通过 改变弯曲尺寸。
    • 10. 发明专利
    • Antenna device
    • 天线设备
    • JP2009100445A
    • 2009-05-07
    • JP2008188591
    • 2008-07-22
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • FUKUI SHINJIFUJITA MITSURU
    • H01Q9/02H01Q1/32H01Q1/38H01Q1/48
    • PROBLEM TO BE SOLVED: To provide a small antenna device of which radiation to backward of the antenna is sufficiently suppressed. SOLUTION: On a substrate 3 (so-called "HIP" with a EBG structure) with conductivity and provided with a band-gap surface which restrains propagation of electromagnetic waves of a specific frequency band, first and second line antennas 51, 52 of progressive wave type are located along the band-gap surface, which transmit and receive circularly polarized waves of an operational frequency band belonging to the specific frequency band. Since mirror images of the first and the second line antennas 51, 52 are not generated in the band-gap surface of the substrate 3 (an arrangement surface of a metal small board 33), the first and second line antennas 51, 52 can be located proximately at the maximum to the band-gap surface. This allows a low posture of the antennas, and miniaturizes the antenna device 1. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供充分抑制天线向后的辐射的小型天线装置。 解决方案:在具有导电性的基板3(具有EBG结构的所谓的“HIP”)上,具有限制特定频带的电磁波的传播的带隙表面,第一和第二线路天线51, 52是沿带隙面设置的,该带隙面发送接收属于特定频带的工作频带的圆偏振波。 由于在基板3的带隙面(金属小型板33的配置面)中不产生第一和第二线状天线51,52的镜像,所以第一和第二线路天线51,52可以是 位于与带隙表面最接近的位置。 这允许天线的姿势较低,并且使天线装置1小型化。版权所有:(C)2009,JPO&INPIT