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    • 2. 发明专利
    • Magnetic levitation mobile device
    • 磁悬浮手机
    • JP2012019618A
    • 2012-01-26
    • JP2010155602
    • 2010-07-08
    • Atomu Giken:Kk株式会社アトム技研
    • NISHIMURA ISAO
    • H02N15/02
    • PROBLEM TO BE SOLVED: To enable a mobile body to move in parallel or/and rotate on a fixed surface, in an apparatus to move the mobile body using a magnetic repulsive force between magnets and an eddy current generated in nonmagnetic materials.SOLUTION: The magnetic levitation mobile device comprises a levitation unit including magnets where N poles and S poles are alternately disposed on a circumference and more than 3 rotating means to rotate the magnets; and a fixed part composed of nonmagnetic conducting surface. The rotations by the rotating means of the levitation unit generate an eddy current in the nonmagnetic conducting surface of the fixed part. The apparatus levitates the levitation unit by a magnetic repulsive force between the magnets and the eddy current and has inclination control means to control the inclination of a rotational axis of the rotating means of magnets against the surface of the fixed side so that the levitation unit can move in parallel and rotates on the surface of the fixed side.
    • 要解决的问题:为了使移动体能够在固定表面上平行移动或/和旋转,在使用磁体之间的磁性排斥力和在非磁性材料中产生的涡流之间移动移动体的装置中。 解决方案:磁悬浮移动装置包括悬挂单元,其包括磁体,其中N极和S极交替地设置在圆周上,并且具有多于3个旋转装置以使磁体旋转; 以及由非磁性导电表面组成的固定部分。 通过悬浮单元的旋转装置的旋转在固定部件的非磁性导电表面中产生涡流。 该装置通过磁体和涡流之间的磁力排斥力使悬浮单元悬浮,并且具有倾斜控制装置,用于控制磁体旋转装置的旋转轴线相对于固定侧的表面的倾斜度,使得悬浮单元可以 平行移动并在固定侧的表面上旋转。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Laser beam angle measurement method and device, optical repeating method, and optical repeater
    • 激光束角度测量方法和装置,光学重复方法和光学重复器
    • JP2008256573A
    • 2008-10-23
    • JP2007100041
    • 2007-04-06
    • Airec Engineering CorpAtomu Giken:Kkアイレック技建株式会社株式会社アトム技研
    • MIYAZAKI KYOICHIAMANO TOSHIONISHIMURA TOMOFUMITAKAGI HIROSHI
    • G01C1/02G01C15/00H01S3/00
    • PROBLEM TO BE SOLVED: To provide a method of measuring the incident angle of light, and to provide an optical repeating method that uses the method.
      SOLUTION: This laser beam angle measuring device comprises a convex lens for condensing laser beams, and a two-dimensional position detector that has an optical sensor, arranged on a plane that is substantially perpendicular to the optical axis of the convex lens, and outputs the laser beams condensed by the convex lens, according to the two-dimensional position of the center of gravity where the laser beams are radiated to the plane. In a state where a light-shielding plate having a light-shielding hole for restricting the expansion of the laser beams and making them progress is positioned ahead of the two-dimensional position detector, the laser beams are made to pass through the light-shielding hole. The radiation angle of the laser beams to the two-dimensional position detector is detected based on the distance between the convex lens and the two-dimensional position detector and the output of the two-dimensional position detector. When the detected angle is within a predetermined angle, a laser oscillator is oscillated and the optical path is repeated.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种测量光的入射角的方法,并提供使用该方法的光学重复方法。 解决方案:该激光束角度测量装置包括用于聚光激光束的凸透镜和具有光学传感器的二维位置检测器,该二维位置检测器布置在基本上垂直于凸透镜的光轴的平面上, 并根据激光束照射到平面的重心的二维位置输出由凸透镜聚光的激光束。 在具有用于限制激光束的扩展并使其进行的遮光孔的遮光板位于二维位置检测器的前方的状态下,使激光束通过遮光 孔。 基于凸透镜和二维位置检测器之间的距离以及二维位置检测器的输出来检测激光束到二维位置检测器的辐射角。 当检测角度在预定角度内时,激光振荡器振荡并重复光路。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Angle setting method of light beam
    • 光束角度定位方法
    • JP2008256997A
    • 2008-10-23
    • JP2007100042
    • 2007-04-06
    • Airec Engineering CorpAtomu Giken:Kkアイレック技建株式会社株式会社アトム技研
    • MIYAZAKI KYOICHIAMANO TOSHIONISHIMURA TOMOFUMITAKAGI HIROSHI
    • G02B7/00G01C7/06G02B7/18
    • PROBLEM TO BE SOLVED: To correctly turn to a predetermined angle, when a laser beam is made incident on a prism and an emission direction is shaken by the rotation of the prism.
      SOLUTION: The laser beam is made incident on the prism and the emission direction is shaken by the prism, to attain turning to the predetermined angle. In an angle setting method of the laser beam, a plurality of photoelectric sensors provided at a predetermined distance around a target place are provided and detection is performed by a first photoelectric sensor being one of the plurality of photoelectric sensors by using the shaken laser beam. The laser beam is shaken toward a second photoelectric sensor by an angle ϕ2 with respect to the reference axis of the prism, based on the position of the first photoelectric sensor after performing the laser detection and the shake angle ϕ1 of the laser beam with respect to the reference axis of the prism for the leaser detection. It is determined whether or not the detection is performed by the second photoelectric sensor by using the shaken laser beam.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了正确地转到预定角度,当激光束入射到棱镜上并且发射方向被棱镜的旋转而摇动时。

      解决方案:激光束入射在棱镜上,发射方向由棱镜摇动,达到预定角度。 在激光束的角度设定方法中,提供以目标位置附近预定距离设置的多个光电传感器,并且通过使用振动的激光束作为多个光电传感器之一的第一光电传感器进行检测。 基于第一光电传感器在执行激光检测之后的位置和相对于激光束的抖动角度φ1,将激光束相对于棱镜的基准轴相对于第二光电传感器摇动角度φ2 用于雷达检测的棱镜的参考轴。 通过使用振动激光束来确定第二光电传感器是否进行检测。 版权所有(C)2009,JPO&INPIT

    • 5. 发明专利
    • Emission gas decomposing apparatus for plasma-utilizing cleaning
    • 排放气体分解装置用于等离子体利用清洁
    • JP2006159008A
    • 2006-06-22
    • JP2004350691
    • 2004-12-03
    • Atomu Giken:Kk株式会社アトム技研
    • ANDO YOSHIAKI
    • B01D53/86B01J35/02
    • PROBLEM TO BE SOLVED: To decompose environmental pollutants emitted in plasma-utilizing cleaning, near their sources of release. SOLUTION: In an apparatus generating plasma between opposing electrodes P1 and P2, a part or the whole of the wall partitioning the plasma-generating chamber 10K is formed as a transmissive wall 10b capable of transmitting UV rays generated in plasma generation. Titanium oxide 30 is arranged at such a position as to receive the UV rays transmitted through the transmissive wall and lie in the middle of the emission passage for a gas containing the emission gas generated in cleaning an article 20 under the action of plasma. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:分解在等离子体利用清洗中排放的环境污染物,靠近其释放源。 解决方案:在相对电极P1和P2之间产生等离子体的装置中,分隔等离子体产生室10K的部分或全部壁形成为能够透射在等离子体产生中产生的紫外线的透射壁10b。 氧化钛30被布置在接收透过透射壁的紫外线的位置,并且位于发射通道的中间,用于在等离子体的作用下包含在清洁物品20中产生的排放气体的气体。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Rear monitoring device
    • 后监控设备
    • JP2007048246A
    • 2007-02-22
    • JP2005258442
    • 2005-08-11
    • Atomu Giken:KkNoritoshi Yomoda憲壽 四方田株式会社アトム技研
    • YOMODA NORITOSHI
    • G08G1/16B60R1/00B60R21/00
    • PROBLEM TO BE SOLVED: To improve a visual recognition of a driver when confirming vehicle rear.
      SOLUTION: Since an ultrasonic wave is horizontally diffused from an upper part position of a vehicle from an ultrasonic transducer at a predetermined height in a vehicle rear, an object lower than a reception ultrasonic transducer is not irradiated as an obstacle. If there is an obstacle higher than a position of the reception ultrasonic transducer in the vehicle shot by a transmission ultrasonic transducer unit, an ultrasonic wave is radiated, and an input ultrasonic signal of the reception transducer is converted into a picture signal. Since a predetermined color is applied to an image portion having a ultrasonic reflection signal of a predetermined value or more, a position of the obstacle can be clearly indicated in a monitor to the driver. Since a distance from the vehicle to an ultrasonic wave irradiation target can be provided on the basis of a position of the image portion, a distance to the obstacle indicated in the monitor can be determined.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:在确认车辆后方时改善驾驶员的视觉识别。 解决方案:由于超声波在车辆后方以超过规定高度的超声波换能器从车辆的上部位置水平扩散,所以不会将比接收超声波换能器低的物体作为障碍物照射。 如果存在高于由发送超声波换能器单元拍摄的车辆中的接收超声波换能器的位置的障碍物,则发射超声波,并将接收换能器的输入超声波信号转换为图像信号。 由于预定的颜色被施加到具有预定值以上的超声波反射信号的图像部分,因此可以在驾驶员的监视器中清楚地指示障碍物的位置。 由于可以基于图像部分的位置来提供从车辆到超声波照射目标的距离,所以可以确定在监视器中指示的障碍物的距离。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Rear monitoring device
    • 后监控设备
    • JP2006199161A
    • 2006-08-03
    • JP2005013363
    • 2005-01-20
    • Atomu Giken:Kk株式会社アトム技研
    • NISHIMURA ISAOYAMASHITA SHOICHITAKAGI HIROSHI
    • B60R11/02B60R1/00H04N7/18
    • PROBLEM TO BE SOLVED: To improve visual recognition performance of a driver at the time of confirming rear view of a vehicle.
      SOLUTION: An infrared radiation is emitted in the horizontal direction from an infrared light source arranged at a predetermined height at the rear of the vehicle, therefore an object placed below the infrared light source is not irradiated as an obstacle. When an obstacle is placed above the infrared light source at the rear part of the vehicle where an image is picked up by an imaging camera, the obstacle is irradiated, its image is picked up by the imaging camera, and a predetermined color is given to the image when a prescribed infrared reflection image signal or higher is recognized, so that the position of the obstacle can be accurately displayed on the monitor against the driver. Moreover, a distance from the vehicle to an infrared irradiated obstacle can be obtained based on the position of the image, thus the distance to the obstacle displayed on the monitor can be obtained.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了在确认车辆的后视图时提高驾驶员的视觉识别性能。 解决方案:从布置在车辆后部的预定高度的红外光源沿水平方向发射红外线辐射,因此放置在红外光源下方的物体不被照射作为障碍物。 当在摄像机拍摄图像的车辆的后部放置障碍物时,障碍物被照射,其图像由摄像机拾取,并且将预定的颜色赋予 当识别到规定的红外反射图像信号或更高的图像时,可以将监视器上的障碍物的位置精确地显示在驾驶员上。 此外,可以基于图像的位置获得从车辆到红外线照射的障碍物的距离,从而可以获得在监视器上显示的障碍物的距离。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Cleaning apparatus utilizing atmospheric-pressure plasma
    • 清洁装置利用大气压力等离子体
    • JP2006159009A
    • 2006-06-22
    • JP2004350692
    • 2004-12-03
    • Atomu Giken:Kk株式会社アトム技研
    • ANDO YOSHIAKI
    • B08B7/00H01L21/304
    • PROBLEM TO BE SOLVED: To provide a cleaning apparatus utilizing atmospheric-pressure plasma which can reduce the consumption of the gas for plasma generation and enhance the cleaning effect on the conditions of cost reduction and flexibility of the apparatus.
      SOLUTION: The apparatus has a spraying device 12 which is capable of spraying at a flow rate higher than that of the sent plasma flow and sprays a spray gas identical with or different from the gas for plasma generation, near the outlet of an atmospheric-pressure plasma generation chamber 10K having an inlet E feeding a gas for plasma generation to between opposing electrodes P1 and P2 and an outlet D sending generated plasma.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种利用大气压等离子体的清洁装置,其可以减少用于等离子体产生的气体的消耗,并且在成本降低和装置的灵活性的条件下增强清洁效果。 解决方案:该装置具有喷射装置12,该喷射装置能够以比所发送的等离子体流的流速更高的喷射速度喷雾,并喷射与等离子体产生气体相同或不同的喷雾气体, 大气压等离子体产生室10K,其具有在相对电极P1和P2之间供给等离子体产生用气体的入口E和发送等离子体的出口D. 版权所有(C)2006,JPO&NCIPI
    • 10. 实用新型
    • Mobile phone adapter
    • JP3097615U
    • 2004-02-05
    • JP2003002524
    • 2003-05-06
    • 株式会社アトム技研
    • 西村 俊史
    • H01R31/06H04M1/21
    • 【課題】携帯電話の機種が異なっても情報処理装置との接続を自在に行うことが可能であり、しかも情報処理装置に接続したときに携帯電話に充電することができる携帯電話用アダプタを提供する。
      【解決手段】一端に情報処理装置側端子4、他端に第1の携帯電話側端子3を有する接続ケーブル5の、第1の携帯電話側端子3に接続可能な中継端子10Bと、第1の携帯電話側端子3とは異なるタイプの第2の携帯電話側端子10Aとを備え、中継端子10Bと第2の携帯電話側端子10Aとが中間にケーブルを介することなく一体成形されている。
      中継端子10Bは、第1の携帯電話側端子3の受け口に設けられている全てのキー溝を受入れる大きな溝14を有している。
      【選択図】 図1