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    • 1. 发明专利
    • Cork plug remover
    • CORK PLUG REMOVER
    • JP2003054690A
    • 2003-02-26
    • JP2001248913
    • 2001-08-20
    • Masaru Ogawa勝 小川
    • OGAWA MASARU
    • B67B7/04
    • PROBLEM TO BE SOLVED: To provide a cork plug remover capable of pulling out the cork plug while its attitude is being stabilized.
      SOLUTION: An extremity 6a of a protrusion 6 is pierced into a cork plug 10,a coil portion 4 is turned at a base part 2, screwed into the cork plug 10 and the base part 2 is pulled up to enable the cork plug 10 to be pulled out. At this time, even if a length of the extremity 6a of the protrusion 6 is elongated, no bad influence is applied to the screwing operation of the coil 4 into the cork plug 10. Then, a sufficient length for stabilizing an attitude of the cork plug remover 1 when the coil portion 4 is screwed into the cork plug 10 can be applied as a length of the extremity 6a of the protrusion 6. Accordingly, it is possible to stabilize the attitude of the cork plug remover 1 when the coil portion 4 is screwed into the cork plug 10.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供能够在其姿态稳定时拔出软木塞的软木塞拆除器。 解决方案:突起6的末端6a被刺入软木塞10中,线圈部分4在基部2处转动,拧入软木塞10中,并且将基部2拉起以使软木塞10能够 被拉出 此时,即使突起6的末端6a的长度变长,也不会对线圈4进入软木塞10的螺旋操作产生不良影响。然后,足够的长度来稳定软木塞的姿态 当线圈部分4拧入软木塞10时,塞子去除器1可以作为突起6的末端6a的长度施加。因此,当线圈部分4能够稳定软塞塞移除器1的姿态 被拧入软木塞10中。
    • 6. 发明申请
    • OBSTACLE DETECTION DEVICE
    • 障碍物检测装置
    • US20130038484A1
    • 2013-02-14
    • US13514304
    • 2010-12-08
    • Makoto OhkadoMasaru OgawaSetsuo TokoroKoji Suzuki
    • Makoto OhkadoMasaru OgawaSetsuo TokoroKoji Suzuki
    • G01S13/93
    • G01S13/46G01S13/345G01S13/931G01S2013/462G01S2013/9375
    • An obstacle detection device includes; a primary device that determines the presence or absence of the target object on the basis of a comparison between the transmitted wave and the reception wave; a storage device that, when it is determined that the object is present, acquires a reception power of the reception wave at a control period determined beforehand, and stores the reception power as reception power time series data; a secondary device that determines whether a value relating to a time series change pattern of the data falls within a predetermined range set beforehand on the basis of phase interference, of the reception wave, that depends on a height of the object from a road; and a output device that determines the object to be an obstacle and outputs a result of this determination, when it is determined that the value relating to the pattern falls within the range.
    • 障碍物检测装置包括: 基于发送波和接收波之间的比较来确定目标对象的存在或不存在的主要装置; 存储装置,当确定存在对象时,以预先确定的控制周期获取接收波的接收功率,并将接收功率存储为接收功率时间序列数据; 确定与数据的时间序列变化模式有关的值是否基于接收波的相位干扰预先设定的预定范围内的次级装置,其取决于物体从道路的高度; 以及当确定与图案相关的值落在该范围内时,确定该对象成为障碍物并输出该确定的结果的输出装置。
    • 7. 发明授权
    • Radar system
    • 雷达系统
    • US08334802B2
    • 2012-12-18
    • US12573383
    • 2009-10-05
    • Masaru Ogawa
    • Masaru Ogawa
    • G01S13/60G01S13/93G01S13/00
    • G01S13/347G01S7/023G01S13/345G01S13/348G01S13/931G01S2013/9375G01S2013/9389
    • A radar system includes radars and a controller. The controller controls waveform patterns of the radars. As a signal processing unit of each of the radars receives an instruction from the controller, the signal processing unit selects a frequency modulation pattern of a VCO between an FM-CW mode and a CW mode stored in a waveform memory to perform mode switching, and then outputs a radio wave from a transmission antenna. Then, the controller instructs each signal processing unit for a frequency modulation pattern of each radar or an output timing of each pattern so that a time, at which continuous wave signals output from the radars have the same frequency, is not continuous.
    • 雷达系统包括雷达和控制器。 控制器控制雷达的波形图案。 由于每个雷达的信号处理单元从控制器接收指令,所以信号处理单元在存储在波形存储器中的FM-CW模式和CW模式之间选择VCO的频率调制模式以进行模式切换,并且 然后从发送天线输出无线电波。 然后,控制器向每个信号处理单元指示每个雷达的频率调制模式或每个模式的输出定时,使得从雷达输出的连续波信号具有相同频率的时间不连续。
    • 8. 发明申请
    • RADAR SYSTEM
    • 雷达系统
    • US20100103023A1
    • 2010-04-29
    • US12573383
    • 2009-10-05
    • Masaru OGAWA
    • Masaru OGAWA
    • G01S13/00G01S13/93
    • G01S13/347G01S7/023G01S13/345G01S13/348G01S13/931G01S2013/9375G01S2013/9389
    • A radar system includes radars and a controller. The controller controls waveform patterns of the radars. As a signal processing unit of each of the radars receives an instruction from the controller, the signal processing unit selects a frequency modulation pattern of a VCO between an FM-CW mode and a CW mode stored in a waveform memory to perform mode switching, and then outputs a radio wave from a transmission antenna. Then, the controller instructs each signal processing unit for a frequency modulation pattern of each radar or an output timing of each pattern so that a time, at which continuous wave signals output from the radars have the same frequency, is not continuous.
    • 雷达系统包括雷达和控制器。 控制器控制雷达的波形图案。 由于每个雷达的信号处理单元从控制器接收指令,所以信号处理单元在存储在波形存储器中的FM-CW模式和CW模式之间选择VCO的频率调制模式以进行模式切换,并且 然后从发送天线输出无线电波。 然后,控制器向每个信号处理单元指示每个雷达的频率调制模式或每个模式的输出定时,使得从雷达输出的连续波信号具有相同频率的时间不连续。
    • 10. 发明申请
    • Optical integrated module and optical pick up device
    • 光学集成模块和光学拾取装置
    • US20060280056A1
    • 2006-12-14
    • US11448383
    • 2006-06-06
    • Toru HanaokaMasaru Ogawa
    • Toru HanaokaMasaru Ogawa
    • G11B7/00
    • G11B7/1356G11B7/123
    • An optical integrated unit according to the present invention is an optical integrated unit, including: a semiconductor laser acting as a light source; at least one light-receiving element; a light-separating section for separating light emitted by the semiconductor laser from light reflected by an optical disc and for reflecting the light reflected by the optical disc so that the light reflected by the optical disc is directed to the light-receiving element; and a support substrate, wherein a second support substrate has a concave shape, the light-separating section is constituted of at least three prisms, the prisms positioned at both ends of the light-separating section are respectively attached to two protruding sections of the concave shape of the second support substrate, and the light-receiving element is attached to the light-separating section via a cover glass. As a result, it is possible to solve such a problem that the light-receiving element cannot be adjusted with high accuracy because of a thickness error of the support substrate or an intermediate substrate in conventional techniques.
    • 根据本发明的光学集成单元是一种光学集成单元,包括:作为光源的半导体激光器; 至少一个光接收元件; 用于将由半导体激光器发射的光与由光盘反射的光分离并用于反射由光盘反射的光的光分离部分,使得由光盘反射的光被引向光接收元件; 以及支撑基板,其中第二支撑基板具有凹形形状,所述光分离部分由至少三个棱镜构成,位于所述光分离部分两端的棱镜分别安装在所述凹部的两个突出部分 第二支撑基板的形状,并且光接收元件通过盖玻璃附接到光分离部。 结果,可以解决由于传统技术中的支撑基板或中间基板的厚度误差而不能高精度地调节受光元件的问题。