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    • 1. 发明授权
    • Self-propelling work vehicle for forward and reverse drive
    • 用于前进和后退驾驶的自行车工作车辆
    • US09285028B2
    • 2016-03-15
    • US13423581
    • 2012-03-19
    • Maxwell ReichardMasahiro YamadaRobert Walden
    • Maxwell ReichardMasahiro YamadaRobert Walden
    • F16H59/02A01D34/63
    • F16H59/02A01D34/63F16H2059/0256Y10T74/2011Y10T74/20159
    • A self-propelling work vehicle for forward and reverse drive includes a handle unit attached to the vehicle body for a first shift movement along a first direction with a neutral position and a second shift movement from the neutral position along a second direction intersecting the first direction. Forward drive speed or reverse drive speed is determined based on the first shift movement. A guide unit attached to the vehicle body includes a maximum forward speed guide member for defining a shift movement end of the handle unit determining a maximum forward speed of the forward drive speed, and a neutral guide member for guiding the second shift movement of the handle unit from the neutral position defined as a starting position. The maximum forward speed guide member and the neutral guide member are positionally adjustable independently of each other.
    • 用于正向和反向驱动的自推进作业车辆包括:手柄单元,其附接到车身,用于沿着第一方向的第一移位运动,具有中立位置,并且从中立位置沿着与第一方向相交的第二方向进行第二换档运动 。 基于第一移位移动来确定前进驱动速度或反向驱动速度。 安装在车体上的引导单元包括最大前进速度引导构件,用于限定手柄单元的移动移动端,确定前进驱动速度的最大前进速度;以及空档引导构件,用于引导手柄的第二移位运动 单位从中立位置定义为起始位置。 最大前进速度引导构件和中性引导构件可以彼此独立地位置地调节。
    • 7. 发明授权
    • Stereoscopic imaging apparatus
    • 立体成像装置
    • US09110367B2
    • 2015-08-18
    • US13287712
    • 2011-11-02
    • Masahiro YamadaSunao Aoki
    • Masahiro YamadaSunao Aoki
    • G02B21/22G03B35/08G02B27/22H04N13/02
    • G02B23/2415A61B1/00188A61B1/00193G02B21/22G02B27/2214G03B35/08G03B35/10H04N13/239
    • A stereoscopic imaging apparatus includes: an objective optical system having a function of imaging a subject as a real image or a virtual image; and plural imaging optical systems that image plural subject luminous fluxes output from different paths of the objective optical system again as parallax images using plural independent optical systems, wherein, in the case where a focal length value when the objective optical system images the subject as the real image is positive and the focal length value when the objective optical system images the subject as the virtual image is negative, a focal distance (f) of the objective optical system and a distance (L) from a rear principal point of the objective optical system to a front principal point of the imaging optical system is set to values that satisfy the following equation |f/(L−f)|≦1.
    • 立体成像装置包括:物镜光学系统,其具有将被摄体成像为实像或虚像; 以及多个成像光学系统,其将从物镜光学系统的不同路径输出的多个被摄体光通量再次用作使用多个独立光学系统的视差图像,其中,在物镜光学系统将被摄体成像为 物镜光学系统的焦点距离(f)和物镜光学系统的后方主点的距离(L)在物镜光学系统对被摄体进行图像处理时的焦距值为正, 系统到成像光学系统的前主要点被设置为满足以下等式| f /(​​L-f)|≦̸ 1的值。
    • 8. 发明授权
    • Stereoscopic image capturing apparatus
    • 立体摄像装置
    • US09025008B2
    • 2015-05-05
    • US13399934
    • 2012-02-17
    • Sunao AokiMasahiro Yamada
    • Sunao AokiMasahiro Yamada
    • H04N13/02G03B35/10
    • H04N13/296G03B35/10H04N13/239H04N13/243
    • A stereoscopic image capturing apparatus includes an objective optical system that has a function of forming a subject as a real image or an imaginary image, a plurality of image forming optical systems that respectively form a plurality of subject light beams emitted from different paths of the objective optical system as parallax images again, using a plurality of independent optical systems, a plurality of imaging devices that convert the parallax images formed by the plurality of image forming optical system into image signals, and a control unit that adjusts a formation position of a convergence point such that a ratio of a focal length of the objective optical system and a distance in an optical axis direction of the objective optical system between a focal point of the objective optical system and a primary principal point of the image forming optical system is substantially constant.
    • 立体图像拍摄装置包括具有将被摄体形成为实像或虚像的功能的物镜光学系统,分别形成从物镜的不同路径发射的多个被摄体光的多个成像光学系统 光学系统作为视差图像,使用多个独立的光学系统,将由多个成像光学系统形成的视差图像转换为图像信号的多个成像装置,以及调整会聚的形成位置的控制单元 使得物镜光学系统的焦距与物镜光学系统的光轴方向的距离在物镜光学系统的焦点与成像光学系统的主要主要点之间的比率基本上是恒定的 。