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    • 3. 发明申请
    • SENSOR DRIVE AND IMAGE FORMING APPARATUS INCORPORATING SAME
    • 传感器驱动和图像形成装置同时进行
    • US20150071658A1
    • 2015-03-12
    • US14477963
    • 2014-09-05
    • Fumikazu HoshiYoshihiro Oba
    • Fumikazu HoshiYoshihiro Oba
    • G01N33/34G01N21/55G03G15/00
    • G01N33/346G01N21/21G01N21/4738G01N21/55G01N21/86G03G15/5029
    • A sensor device and an image forming apparatus incorporating the sensor device are provided. The sensor device includes a light source, a photo-detection system configured to receive light emitted from the light source and reflected at a sheet-like object, a housing accommodating the light source and the photo-detection system, the housing having a slit into which the object is inserted, and a holding member configured to hold the object such that relative positions of a surface of the object inserted into the slit and the photo-detection system are fixed. The image forming apparatus includes an image forming unit configured to form an image on a recording medium, the sensor device, and an adjustment unit configured to adjust a condition for image formation, based on an output from the sensor device.
    • 提供了一种传感器装置和包括传感器装置的图像形成装置。 传感器装置包括光源,被配置为接收从光源发射并在片状物体反射的光的光检测系统,容纳光源和光检测系统的壳体,壳体具有狭缝 以及保持构件,其被配置为保持对象,使得插入到狭缝中的物体的表面和光检测系统的相对位置被固定。 图像形成装置包括被配置为在记录介质上形成图像的图像形成单元,传感器装置和被配置为基于来自传感器装置的输出来调整图像形成条件的调整单元。
    • 4. 发明授权
    • Optical sensor and image forming apparatus
    • 光学传感器和成像设备
    • US08942583B2
    • 2015-01-27
    • US13766896
    • 2013-02-14
    • Fumikazu HoshiSatoru SugawaraToshihiro IshiiYoshihiro Oba
    • Fumikazu HoshiSatoru SugawaraToshihiro IshiiYoshihiro Oba
    • G03G15/00G01N21/55G03G15/01
    • G03G15/5029G03G15/0189G03G2215/2074
    • An optical sensor is disclosed, including an irradiating system; a first photodetecting system including a first photodetector which is arranged on an optical path of a light which is specularly reflected from a subject; a second photodetecting system including an optical element which is arranged on an optical path of a light which is diffuse reflected from the subject within an incident face in the subject and which separates a linearly polarized component in a second polarizing direction which is orthogonal to a first polarizing direction and a second photodetector which receives a light separated by the optical element; and a restricting member which is arranged on an optical path of an incident light with respect to at least one of the first photodetector and the second photodetector and which restricts a light receiving range in the at least one photodetector.
    • 公开了一种光学传感器,包括照射系统; 第一光检测系统,其包括布置在从受检者镜面反射的光的光路上的第一光电检测器; 第二光检测系统,其包括光学元件,所述光学元件被布置在从被检体内的被检体漫反射的光的光路上,所述光在被检体内的入射面内被分离,所述第二偏振方向与第一偏振方向正交的线偏振分量 偏振方向和第二光电检测器,其接收由所述光学元件分离的光; 以及限制构件,其被布置在相对于所述第一光电检测器和所述第二光电检测器中的至少一个的入射光的光路上并且限制所述至少一个光电检测器中的光接收范围。
    • 8. 发明授权
    • Optical device, optical scanning apparatus and image forming apparatus
    • 光学装置,光学扫描装置和成像装置
    • US08446446B2
    • 2013-05-21
    • US13084969
    • 2011-04-12
    • Fumikazu HoshiToshihiro Ishii
    • Fumikazu HoshiToshihiro Ishii
    • B41J2/45
    • H01S5/02296G02B26/124G02B26/127H01S5/18313H01S5/1835H01S5/18386H01S5/18394H01S5/3202H01S5/423H01S2301/14
    • An optical device includes at least one surface emitting laser device having a dielectric film for causing a central portion of a light emitting region to have a comparatively higher reflectivity than a peripheral portion; a light receiving element disposed, with respect to a first direction, on one side to the surface emitting laser device; and a transparent member disposed in a path of light emitted from the surface emitting laser device and configured to reflect a portion of the light toward the light receiving element as monitoring light. The central portion has shape anisotropy in which a width measured on a line extending in the first direction and passing through the center of the light emitting region is smaller than a width measured on a line extending in a second direction, which is perpendicular to the first direction, and passing through the center of the light emitting region.
    • 光学装置包括至少一个表面发射激光器件,其具有用于使发光区域的中心部分具有比周边部分更高的反射率的电介质膜; 光接收元件相对于第一方向设置在表面发射激光器件的一侧; 以及透明构件,其设置在从所述表面发射激光器件发射的光的路径中,并且被配置为将光的一部分朝向所述光接收元件反射为监视光。 中心部分具有形状各向异性,其中在沿着第一方向延伸并且通过发光区域的中心的线上测量的宽度小于在与第一方向垂直的第二方向上延伸的线上测量的宽度 方向,并穿过发光区域的中心。