会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Rotary laser beam emitter
    • 旋转激光束发射器
    • US08407904B2
    • 2013-04-02
    • US12797762
    • 2010-06-10
    • Kunihiro HayashiFumihiko Kamizono
    • Kunihiro HayashiFumihiko Kamizono
    • G01C15/00
    • G01C15/004
    • A rotary laser beam emitter includes a base unit including a reference reflector with a reference reflective face parallel to a reference plane, a rotary element rotatably supported on the base unit around a rotary axis, and a beam emitting unit contained in the rotary element and including a light source and an optical emission system emitting the laser beam from the light source in a direction parallel to the reference plane on the optical axis. When the rotary element is inclined relative to the rotary axis and the emitted laser beam is inclined to the reference plane, the optical emission system emits the laser beam from the light source to the reference reflective face and emit the laser beam reflected by the reference reflective face in a direction inclined to the optical axis of the laser beam so as to neutralize the inclined laser beam.
    • 旋转激光束发射器包括:基本单元,其包括参考反射器,参考反射面平行于参考平面;旋转元件,其以旋转轴线为基础旋转地支撑在基座单元上;以及光束发射单元,其包含在旋转元件中, 光源和光发射系统,其在光轴上沿与光轴上的参考平面平行的方向发射激光束。 当旋转元件相对于旋转轴线倾斜并且发射的激光束相对于参考平面倾斜时,光发射系统将激光束从光源发射到参考反射面,并发射由参考反射面反射的激光束 面向与激光束的光轴倾斜的方向,以中和倾斜的激光束。
    • 3. 发明授权
    • Surveying system
    • 测量系统
    • US08151474B2
    • 2012-04-10
    • US12660497
    • 2010-02-26
    • Kaoru KumagaiKunihiro HayashiFumihiko Kamizono
    • Kaoru KumagaiKunihiro HayashiFumihiko Kamizono
    • G01C1/00G01C3/08G01C15/00
    • G01C15/004E02F3/842E02F3/847E02F9/261G05D1/0236G05D2201/0202
    • The present invention relates to a surveying system, comprising a rotary laser irradiation device 1 installed at a known point and used for projecting two or more fan-shaped laser beams 3 with at least one of the fan-shaped laser beams tilted and for forming a laser reference plane, a photodetection device 4, which is mounted on a mobile support member 9, for receiving the laser beam and for calculating an elevation angle at a photodetecting position, and a monitor photodetection device 11 installed at a known position within the laser reference plane, wherein the monitor photodetection device has a monitor photodetection sensor for sensing and detecting the laser beam, a storage unit for storing a reference value of the laser reference plane, an arithmetic control unit for calculating positional changes over time of the laser reference plane based on the result of photodetection by the monitor photodetection sensor and on the reference value, and a transmitting unit for transmitting the positional changes over time to the photodetection device and/or to the rotary laser irradiation device as compensation information.
    • 测量系统技术领域本发明涉及一种测量系统,包括旋转激光照射装置1,该旋转激光照射装置1安装在已知点处,并用于投射两个或更多个扇形激光束3,其中至少一个扇形激光束倾斜并形成 激光参考平面,安装在移动支撑构件9上用于接收激光束并用于计算受光位置的仰角的光检测装置4以及安装在激光参考中的已知位置处的监视器光检测装置11 其特征在于,所述监视光检测装置具有用于检测和检测所述激光束的监视光检测传感器,用于存储所述激光基准面的参考值的存储单元,用于基于所述激光基准平面计算随时间的位置变化的运算控制单元 通过监视光检测传感器的光检测结果和参考值,以及用于发送t的发送单元 随着时间的推移,位置随时间变化到光电检测装置和/或旋转激光照射装置作为补偿信息。
    • 5. 发明授权
    • Position measuring instrument
    • 位置测量仪
    • US07515256B2
    • 2009-04-07
    • US10686858
    • 2003-10-16
    • Fumio OhtomoKazuki OsaragiKunihiro Hayashi
    • Fumio OhtomoKazuki OsaragiKunihiro Hayashi
    • G01C3/08
    • G01S7/4817G01C15/002G01S7/006G01S7/4813G01S7/497G01S17/023G01S17/42G01S17/89
    • The present invention relates to a position measuring instrument for, for example, scanning a photoreceiver as a target to be measured, and more particularly to an automatic position detection instrument capable of emitting distance measuring light and tracking light while turning directions of the distance measuring light and the tracking light so that three-dimensional measurement of a light receiving position is performed, and further capable of transmitting measured data to a photoreceiver provided on a target. A light source unit emits measuring light, and then a light receiving unit receives its reflected light. A scanning means emits measuring light in a scanning direction, and leads its reflected light to the light receiving unit. An angle detector detects a rotational position of the scanning means. The measuring light includes distance measuring light expanding in a fan-shaped manner. Its reflected light can be used to measure a distance to a reflector.
    • 本发明涉及一种用于例如扫描作为待测对象的光接收器的位置测量仪器,更具体地说,涉及一种能够在转动距离测量光的方向的同时发射距离测量光和跟踪光的自动位置检测仪器 和跟踪光,从而执行光接收位置的三维测量,并且还能够将测量数据发送到设置在目标上的光接收器。 光源单元发射测量光,然后光接收单元接收其反射光。 扫描装置沿扫描方向发射测量光,并将其反射光引导到光接收单元。 角度检测器检测扫描装置的旋转位置。 测量光包括以扇形方式扩展的距离测量光。 其反射光可用于测量到反射器的距离。
    • 6. 发明申请
    • Rotary laser apparatus
    • 旋转激光装置
    • US20060050345A1
    • 2006-03-09
    • US11213776
    • 2005-08-25
    • Fumio OhtomoKunihiro Hayashi
    • Fumio OhtomoKunihiro Hayashi
    • G02B26/08
    • G01C15/004
    • A rotary laser apparatus includes a light-projection section configured to irradiate at least two fan-shaped beams extending in a fan-shaped form in a direction orthogonal to a rotary axis. The light-projecting section includes a laser beam source for generating a laser beam in a direction of the rotary axis, and a rotation-irradiating section configured for irradiating the laser beam from the laser beam source in directions orthogonal to the rotary axis. The rotation-irradiating section includes a plurality of penta prisms and a beam splitter. The plurality of the penta prisms are arranged in the direction of the rotary axis depending upon the number of the fan-shaped beams such that light-emitting directions of the respective penta prisms differ from each other or one another, and the beam splitter is configured to the laser beam as required the penta prism arranged above.
    • 一种旋转式激光装置,具备配置成沿与旋转轴正交的方向照射扇形的至少两个扇形光束的光投射部。 该投光部包括用于在旋转轴的方向上产生激光的激光束源,以及被配置为在与旋转轴正交的方向上照射来自激光束源的激光束的旋转照射部。 旋转照射部包括多个五棱镜和分束器。 多个五棱镜根据扇形光束的数量沿旋转轴线的方向布置,使得各个棱镜的发光方向彼此不同,并且分束器被配置 根据需要将激光束设置在上面布置的五棱镜。
    • 10. 发明授权
    • Laser leveling system for setting pipes
    • 用于设置管道的激光校平系统
    • US5774211A
    • 1998-06-30
    • US627430
    • 1996-04-04
    • Fumio OhtomoKunihiro HayashiJun-ichi KodairaHiroyuki NishizawaKen-ichiro YoshinoSatoshi HiranoYohei Ogawa
    • Fumio OhtomoKunihiro HayashiJun-ichi KodairaHiroyuki NishizawaKen-ichiro YoshinoSatoshi HiranoYohei Ogawa
    • G01C15/00G01B11/26
    • G01C15/002
    • The present invention provides an object reflector detection system, in which laser beam is emitted toward an object reflector and reflection light beam is received to detect presence or absence and position of the object reflector, whereby there are provided a laser beam emitter and a reflection light beam detector, and further a laser beam emitter for emitting polarized irradiation light beam toward the object reflector, and a reflection light beam detector for detecting polarized reflection light beam from the object reflector, and the reflection light beam detector having a first detection means for detecting polarized reflection light beam from the object reflector, a second detection means for detecting polarized light beam different from the polarized reflection light beam from the object reflector and a reflection light beam detection circuit for identifying the object reflector based on comparison between output of the first detection means and output of the second detection means.
    • 本发明提供了一种目标反射体检测系统,其中激光束朝向物体反射器发射,并且接收反射光束以检测目标反射体的存在或不存在和位置,由此设置有激光束发射器和反射光 光束检测器,以及用于向物体反射器发射偏振照射光束的激光束发射器,以及用于检测来自对象反射体的偏振反射光束的反射光束检测器,以及具有第一检测装置的反射光束检测器, 来自对象反射体的偏振反射光束,用于检测不同于来自对象反射体的偏振反射光束的偏振光束的第二检测装置和用于基于第一检测器的输出之间的比较来识别对象反射器的反射光束检测电路 第二次检测m的装置和输出 没有