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    • 52. 发明授权
    • Three-dimensional scanner with dichroic beam splitters to capture a variety of signals
    • 具有二向色分束器的三维扫描仪可捕获各种信号
    • US09210288B2
    • 2015-12-08
    • US14257214
    • 2014-04-21
    • FARO Technologies, Inc.
    • Robert E. BridgesReinhard Becker
    • H04N1/028H04N1/46
    • H04N1/02835H04N1/0283H04N1/02895H04N1/46H04N2201/0081
    • In a device for optically scanning and measuring an environment, where the device is a laser scanner having a light emitter which, by a rotary mirror, emits an emission light beam, with a light receiver which receives a reception light beam, which, after passing the rotary mirror and a receiver lens which has an optical axis, is reflected from an object in the environment of the laser scanner. The laser scanner also includes a color camera which takes colored pictures of the environment of the laser scanner, and a control and evaluation unit which, for a multitude of measuring points, determines the distance to the object and links it with the colored pictures, the color camera being arranged on the optical axis of the receiver lens.
    • 在用于光学扫描和测量环境的装置中,其中该装置是具有光发射器的激光扫描器,该发光器通过旋转镜发射发射光束,其具有接收接收光束的光接收器,其在经过后 旋转镜和具有光轴的接收透镜在激光扫描仪的环境中从物体反射。 该激光扫描仪还包括一彩色摄像机,该彩色摄像机拍摄激光扫描仪的环境的彩色图像,以及控制和评估单元,对于多个测量点,该控制和评估单元确定到物体的距离并将其与彩色图像连接, 彩色相机布置在接收器镜头的光轴上。
    • 54. 发明授权
    • Method of measuring a deviation in timing of a start of writing in scanning lines, optical scanning device, and image forming apparatus
    • 测量扫描线上写入开始时间偏差的方法,光学扫描装置和图像形成装置
    • US08760738B2
    • 2014-06-24
    • US12978833
    • 2010-12-27
    • Yasuhiro Nihei
    • Yasuhiro Nihei
    • H04N1/46
    • H04N1/113H04N1/0283H04N2201/04748H04N2201/04767
    • A method for measuring a deviation in timing of start of writing in scanning lines is implemented by an optical scanning device that scans a surface to be scanned with light beams from light-emitting elements having first and second light-emitting elements which are arranged so as to be displaced from each other in a direction corresponding to a direction of the scanning lines. The method includes: detecting timing at which light from the first light-emitting element is received by a light receiving element, as a first time, the light receiving element outputting a synchronization detecting signal before start of writing; detecting timing at which light from the second light-emitting element is received by the light receiving element, as a second time; and obtaining the deviation in timing for the second light-emitting element with respect to the first light-emitting element based on a difference between the first and second time.
    • 用于测量扫描线中写入开始时间偏差的方法由光学扫描装置实现,该扫描装置用具有第一和第二发光元件的发光元件的光束扫描待扫描的表面, 在与扫描线的方向对应的方向上彼此偏移。 该方法包括:第一次,检测在开始写入之前,光接收元件输出同步检测信号的光接收元件接收来自第一发光元件的光的定时; 第二次检测来自第二发光元件的光被光接收元件接收的定时; 并且基于第一和第二时间之间的差异获得第二发光元件相对于第一发光元件的定时偏差。
    • 55. 发明申请
    • MEASURING METHOD, OPTICAL SCANNING DEVICE, AND IMAGE FORMING APPARATUS
    • 测量方法,光学扫描装置和图像形成装置
    • US20110170152A1
    • 2011-07-14
    • US12978833
    • 2010-12-27
    • Yasuhiro NIHEI
    • Yasuhiro NIHEI
    • H04N1/46H04N1/04
    • H04N1/113H04N1/0283H04N2201/04748H04N2201/04767
    • A method for measuring a deviation in timing of start of writing in scanning lines is implemented by an optical scanning device that scans a surface to be scanned with light beams from light-emitting elements having first and second light-emitting elements which are arranged so as to be displaced from each other in a direction corresponding to a direction of the scanning lines. The method includes: detecting timing at which light from the first light-emitting element is received by a light receiving element, as a first time, the light receiving element outputting a synchronization detecting signal before start of writing; detecting timing at which light from the second light-emitting element is received by the light receiving element, as a second time; and obtaining the deviation in timing for the second light-emitting element with respect to the first light-emitting element based on a difference between the first and second time.
    • 用于测量扫描线中写入开始时间偏差的方法由光学扫描装置实现,该扫描装置用具有第一和第二发光元件的发光元件的光束扫描待扫描的表面, 在与扫描线的方向对应的方向上彼此偏移。 该方法包括:第一次,检测在开始写入之前,光接收元件输出同步检测信号的光接收元件接收来自第一发光元件的光的定时; 第二次检测来自第二发光元件的光被光接收元件接收的定时; 并且基于第一和第二时间之间的差异获得第二发光元件相对于第一发光元件的定时偏差。
    • 56. 发明申请
    • Light source spotlight device of a scan device
    • 扫描装置的光源聚光灯装置
    • US20040114365A1
    • 2004-06-17
    • US10319640
    • 2002-12-16
    • VEUTRON CORPORATION
    • Po-Hua FangShu-Ya Chiang
    • F21V013/04
    • H04N1/0283H04N1/03H04N1/0303
    • The present invention relates to a spotlighted device, more particularly, to a light source spotlighted device using in a scan device to make light condense in the first axial of a scanning plate and disperse uniformly in the second axial of the scanning plate, wherein the first axial and the second axial are perpendicular to one another. When light passing through the light source spotlighted device of the present invention to form a banding shining area on the scanning plate, a length of the banding shining area in the first axial will be reduced and the light which is distributed in the second axial will become more uniformly to avoid a dim area defect in a scanning process and to increase qualities of scanning image.
    • 聚光照明装置技术领域本发明涉及一种聚光装置,更具体地说,涉及一种在扫描装置中使用以在扫描板的第一轴向上进行轻度冷凝并均匀地分散在扫描板的第二轴向上的光源聚光装置,其中第一 轴向和第二轴线彼此垂直。 当通过本发明的光源聚光装置的光在扫描板上形成带状发光区域时,第一轴向中的带状发光区域的长度将减小,并且分布在第二轴向上的光将变为 更均匀地避免扫描过程中的暗淡区域缺陷并增加扫描图像的质量。
    • 57. 发明授权
    • High speed scanner
    • 高速扫描仪
    • US06747764B1
    • 2004-06-08
    • US09717619
    • 2000-11-21
    • Ying-Ping Chu
    • Ying-Ping Chu
    • H04N104
    • H04N1/0283H04N1/195H04N1/19589
    • A scanner has a housing, and a glass piece positioned over the housing and covering portions of the interior of the housing, with the glass piece adapted to support an image to be scanned. The scanner further includes a sensor positioned inside the housing below the glass piece, and a light source positioned inside the housing below the glass piece in a manner to direct a light beam at the glass piece so that the light beam is reflected off the glass piece and is received by the sensor to capture the image to be scanned. As a result, the entire image is captured at the same time by the sensor.
    • 扫描器具有壳体和位于壳体上并覆盖壳体内部的部分的玻璃片,玻璃片适于支撑待扫描的图像。 扫描仪还包括位于玻璃片下面的壳体内部的传感器,以及以将光束引导到玻璃片的方式定位在玻璃片下面的壳体内的光源,使得光束从玻璃片反射出来 并由传感器接收以捕获要扫描的图像。 结果,整个图像被传感器同时捕获。
    • 58. 发明授权
    • Illumination device and image reading apparatus
    • 照明装置和图像读取装置
    • US06532085B2
    • 2003-03-11
    • US09912350
    • 2001-07-26
    • Nobuhiro Fujinawa
    • Nobuhiro Fujinawa
    • H04N104
    • H04N1/00092H04N1/00795H04N1/00909H04N1/0283H04N1/4097
    • A device has a visible light emitting element for emitting visible light, an infrared light emitting element for emitting infrared light, a board including a first mounting portion on which elements including at least the visible light emitting element are mounted in array and a second mounting portion on which elements including at least the infrared light emitting element are mounted in array, and a dichroic mirror which is configured and disposed to reflect light emitted by the visible light emitting element mounted on the first mounting portion by its first surface, reflect light emitted by the infrared light emitting element mounted on the second mounting portion by its second surface, and send light beams coming from the first and second surfaces onto a common optical path.
    • 装置具有用于发射可见光的可见光发射元件,用于发射红外光的红外发光元件,包括第一安装部分的板,其上至少包括可见光发射元件的元件安装在阵列上,第二安装部分 其中至少包括红外发光元件的元件安装在阵列上,并且配置和设置为将由安装在第一安装部分上的可见光发射元件发射的光通过其第一表面反射的分色镜反射由 所述红外发光元件通过其第二表面安装在所述第二安装部分上,并且将来自所述第一表面和所述第二表面的光束发送到公共光路上。
    • 60. 发明授权
    • Image reading apparatus
    • 图像读取装置
    • US6023071A
    • 2000-02-08
    • US877889
    • 1997-06-18
    • Nobuhiko OguraTohru TsuchiyaSeishi IkamiTaizo Akimoto
    • Nobuhiko OguraTohru TsuchiyaSeishi IkamiTaizo Akimoto
    • G01T1/29H04N1/028G03B42/00
    • H04N1/0283G01T1/2014G01T1/2942H04N1/02815H04N1/02895H04N2201/02493
    • An image reading apparatus includes a first laser stimulating ray source for emitting a laser beam having a wavelength of 633 nm or 635 nm, a second laser stimulating ray source for emitting a laser beam having a wavelength of 470 to 480 nm, a laser beam scanning device for scanning the laser beam, at least one light detector for photoelectrically detecting light released from an image carrier carrying an image, and at least one filter member disposed in front of the light detector and having a plurality of filters for transmitting light of different wavelengths. The thus constituted image reading apparatus can be used for a radiation diagnosis system, an autoradiographic system, an electron microscope detecting system and a radiation diffraction image detecting system using a stimulable phosphor and a fluorescence detecting system and an image can be read with high sensitivity.
    • 一种图像读取装置包括用于发射波长为633nm或635nm的激光束的第一激光刺激射线源,用于发射波长为470至480nm的激光束的第二激光刺激射线源,激光束扫描 用于扫描激光束的装置,用于光电检测从承载图像的图像载体释放的光的至少一个光检测器,以及设置在光检测器前面的至少一个滤光器构件,并具有用于透射不同波长的光的多个滤光器 。 这样构成的图像读取装置可以用于放射线诊断系统,放射自显影系统,电子显微镜检测系统和使用可激发荧光体和荧光检测系统的放射线衍射图像检测系统,并且可以以高灵敏度读取图像。