Optical system for compensation of image shake
    11.
    发明授权
    Optical system for compensation of image shake 失效
    用于补偿图像抖动的光学系统

    公开(公告)号:US06512633B2

    公开(公告)日:2003-01-28

    申请号:US08796668

    申请日:1997-02-05

    CPC classification number: G02B27/646 G02B13/02

    Abstract: An optical system has the first, second, and third lens units from an object side. The first and third lens units have positive refractive powers. The second lens unit has a negative refractive power. The second lens unit moves toward an image side during focusing from an object at an infinite distance to an object at a finite distance. The second lens unit has a sub lens unit. The sub lens unit moves in a direction perpendicular to an optical axis to correct an image shake.

    Abstract translation: 光学系统具有来自物体侧的第一,第二和第三透镜单元。 第一和第三透镜单元具有正折射力。 第二透镜单元具有负折光力。 第二透镜单元在从无限距离的物体聚焦到有限距离处的物体的同时朝向像侧移动。 第二透镜单元具有副透镜单元。 子透镜单元在垂直于光轴的方向上移动以校正图像抖动。

    Zoom lens system
    12.
    发明授权
    Zoom lens system 有权
    变焦镜头系统

    公开(公告)号:US06191895B1

    公开(公告)日:2001-02-20

    申请号:US09165452

    申请日:1998-10-02

    CPC classification number: G02B15/173

    Abstract: A zoom lens system has, from the object side, a first lens unit having a optical power, a second lens unit having a negative optical power a third lens unit having a positive optical power, and a succeeding lens unit. The first and the third lens units monotonically move toward the object side during zooming from the shortest focal length condition to the longest focal length condition. A number of predetermined conditions are disclosed which can be satisfied to ensure a high quality, compact zoom lens for a digital camera.

    Abstract translation: 变焦透镜系统从物体侧具有具有光焦度的第一透镜单元,具有负光焦度的第二透镜单元,具有正光焦度的第三透镜单元和后续透镜单元。 第一透镜单元和第三透镜单元在从最短焦距条件到最长焦距条件的变焦期间单调地向物体侧移动。 公开了可以满足多个预定条件以确保用于数码相机的高品质紧凑变焦镜头。

    Projection optical system
    13.
    发明授权
    Projection optical system 失效
    投影光学系统

    公开(公告)号:US6144497A

    公开(公告)日:2000-11-07

    申请号:US274947

    申请日:1999-03-23

    CPC classification number: G02B27/145 H04N9/3105

    Abstract: Dichroic mirrors are disposed at the same inclination angle in a position such that a plane including an incidence optical path and a reflection optical path (transmission optical path of green light) of blue light reflected at a reflecting surface of one dichroic mirror is orthogonal to a plane including an incidence optical path and a reflection optical path of red light reflected at the other dichroic mirror. The other dichroic mirror is formed by cementing two glass substrates, and a red light reflecting layer is formed on the joint surface.

    Abstract translation: 分色镜以相同的倾斜角设置在使得包括在一个分色镜的反射表面处反射的蓝色光的入射光路和反射光路(绿光的透射光路)的平面与 平面,其包括入射光路和在另一个分色镜处反射的红光的反射光路。 其他分色镜是通过胶合两个玻璃基板形成的,并且在接合表面上形成红光反射层。

    Zoom lens system having camera shake compensating function
    14.
    发明授权
    Zoom lens system having camera shake compensating function 有权
    变焦镜头系统具有相机抖动补偿功能

    公开(公告)号:US6081390A

    公开(公告)日:2000-06-27

    申请号:US130266

    申请日:1998-08-06

    Applicant: Kenji Konno

    Inventor: Kenji Konno

    CPC classification number: G02B27/646

    Abstract: A zoom lens system has at least three lens units. A first lens unit situated at an object side of the zoom lens system has a positive optical power. Zooming is performed by varying distances among the lens units. A camera shake compensating lens unit, including at least one positive lens element and at least one negative lens element, is provided in the first lens unit. The camera shake compensating lens unit is parallelly decentered to perform camera shake compensation. The ratio of the focal length f of the zoom lens system to the composite lateral magnification (.beta.r) of the lens units situated on the image side of the camera shake compensating lens unit fulfills a condition 30

    Abstract translation: 变焦透镜系统具有至少三个透镜单元。 位于变焦透镜系统的物体侧的第一透镜单元具有正光焦度。 透镜单元之间的距离变化来进行变焦。 在第一透镜单元中设置包括至少一个正透镜元件和至少一个负透镜元件的相机抖动补偿透镜单元。 相机抖动补偿镜头单元并行偏心,以执行相机抖动补偿。 变焦透镜系统的焦距f与位于照相机抖动补偿透镜单元的像侧的透镜单元的复合横向放大率(βr)的比率满足条件30

    Motorcycle
    15.
    发明授权
    Motorcycle 有权
    摩托车

    公开(公告)号:US09022157B2

    公开(公告)日:2015-05-05

    申请号:US13432467

    申请日:2012-03-28

    CPC classification number: B62K19/38 B60T8/3685 B62K11/04 B62K19/30

    Abstract: A motorcycle with an ABS module disposed to make it hard to affect the layout of other components while suppressing the influence of vibration on the ABS module. A motorcycle includes rear frames joined to corresponding rear portions of the main frames and extending upwardly and rearwardly at a position below the corresponding seat frames. Front wheel braking members apply a braking force to a front wheel. An ABS module is connected to the front wheel braking means. A seat is supported on the upper portions of the seat frames. The ABS module has at least a portion disposed below the seat and between the seat frames and the rear frames as viewed from the side. The ABS module is suspended and supported by front and rear cross stays spanned between the pair of seat frames via a front elastic members and a rear elastic member.

    Abstract translation: 具有ABS模块的摩托车被设置成使得在抑制ABS模块的振动的影响的同时难以影响其他部件的布局。 摩托车包括连接到主框架的相应后部并且在相应的座椅框架下方的位置向上和向后延伸的后框架。 前轮制动部件向前轮施加制动力。 ABS模块连接到前轮制动装置。 座椅支撑在座椅框架的上部。 ABS模块具有至少一部分,从侧面看,设置在座椅下方和座椅框架与后框架之间。 ABS模块通过前弹性构件和后弹性构件悬挂并支撑在一对座椅框架之间的前横梁和后横梁支撑。

    Laser projection apparatus with speckle reduction
    16.
    发明授权
    Laser projection apparatus with speckle reduction 有权
    具有减少斑点的激光投影设备

    公开(公告)号:US08960914B2

    公开(公告)日:2015-02-24

    申请号:US13498319

    申请日:2010-09-14

    Applicant: Kenji Konno

    Inventor: Kenji Konno

    Abstract: Provided is a laser projection apparatus which forms each one frame by performing two-dimensional scanning with laser light and projects images on a screen (201) with blanking periods inserted between frames, the laser light having been outputted from a laser light source (110). The laser projection apparatus is provided with a chive controlling device (132) which, in each of the blanking periods, changes the polarization state of the laser light having been outputted from the laser light source. This configuration enables speckle reduction by having the polarization state changed from one frame to another, and also enables favorable image projection since there is no change in luminance within each one of the frames. Thus, it is made possible to obtain image quality more favorable than that obtained conventionally.

    Abstract translation: 提供了一种通过用激光进行二维扫描来形成每一帧的激光投影装置,并且在屏幕(201)上投影图像,其中消隐周期插入在帧之间,激光已经从激光源(110)输出, 。 激光投射装置设置有在每个消隐周期中改变已经从激光源输出的激光的偏振状态的子控制装置(132)。 这种配置通过使偏振状态从一帧改变为另一帧而能够进行斑点减少,并且由于在每个帧内的亮度没有变化,所以能够进行有利的图像投影。 因此,可以获得比常规获得的图像质量更好的图像质量。

    Image projector
    17.
    发明授权
    Image projector 失效
    图像投影仪

    公开(公告)号:US08218216B2

    公开(公告)日:2012-07-10

    申请号:US12056564

    申请日:2008-03-27

    Abstract: An object of the present invention is to provide an image projector capable of projecting a high-quality image while realizing small size. In the image projector, a light flux is deflected two-dimensionally by turning a reflector for reflecting a light flux emitted from a light source around a second axis almost orthogonal to a first axis as a center by resonant drive while turning the reflector around the first axis as a center by non-resonant drive. Shape of one or more optical surfaces of a projection optical system for projecting an image onto a projection plane by guiding light onto the projection plane includes a shape for performing a correction for maintaining scanning speed of the light flux along one scan direction on the projection plane almost constant and a shape for performing a correction for suppressing a distortion in an image along the other scan direction almost orthogonal to the one scan direction on the projection plane. By controlling turn of the reflector, at least one of a correction for maintaining scanning speed of the light flux along the other scan direction on the projection plane almost constant and a correction for suppressing a distortion in an image along the one scan direction on the projection plane is performed.

    Abstract translation: 本发明的目的是提供一种能够在实现小尺寸的同时投影高质量图像的图像投影仪。 在图像投影仪中,通过转动反射器,通过转动反射器来反射光束,使反射器反射围绕围绕第一轴线的第二轴线的第一轴线的中心的反射器作为中心,同时使反射器围绕第一 轴为非谐振驱动的中心。 投影光学系统的一个或多个光学表面的形状,用于通过将光引导到投影平面上将图像投影到投影平面上的形状包括用于执行校正的形状,用于保持沿着投影平面上的一个扫描方向的光通量的扫描速度 几乎恒定的形状和用于执行校正的形状,用于抑制沿着与投影平面上的一个扫描方向几乎正交的另一个扫描方向的图像中的失真。 通过控制反射器的转动,使投影平面上沿着另一扫描方向的光束的扫描速度维持在几乎恒定的校正中的至少一个以及用于抑制沿投影的一个扫描方向的图像中的失真的校正 飞机执行。

    LASER PROJECTOR
    19.
    发明申请
    LASER PROJECTOR 有权
    激光投影机

    公开(公告)号:US20110134499A1

    公开(公告)日:2011-06-09

    申请号:US13058634

    申请日:2009-08-19

    CPC classification number: G02B26/101 H04N9/3129

    Abstract: A two-dimensional image is displayed on a screen (SC) by scanning the screen (SC) two-dimensionally with light beams from a laser light source (1) that are deflected to orthogonally-intersecting first and second scanning directions by means of a mirror (10) in a deflection apparatus (3). The deflection apparatus (3) is arranged to incline obliquely in the second scanning direction (e.g. vertical direction) lower in a scanning speed than the first scanning direction (e.g. horizontal direction), and performs an oblique projection onto the screen (SC). Assuming a direction in which the incidence angle of a light beam deflected by the deflection apparatus (3) and entering the screen (SC) increases in the second scanning direction is positive side, the light beam from the laser light source (1) impinges on the deflection apparatus (3) from the negative side in the second scanning direction, and the normal to the mirror (10) in the deflection apparatus (3) in a state where the center of the screen is displayed inclines to the negative side in the second scanning direction with respect to the normal to the screen (SC).

    Abstract translation: 通过用来自激光光源(1)的光束二维地扫描屏幕(SC),在屏幕(SC)上显示二维图像,激光光源(1)被偏转到正交相交的第一和第二扫描方向 在偏转装置(3)中的反射镜(10)。 偏转装置(3)被布置成以与第一扫描方向(例如水平方向)相等的扫描速度在第二扫描方向(例如垂直方向)上倾斜倾斜,并且对屏幕(SC)进行倾斜投影。 假设由偏转装置(3)偏转并进入屏幕(SC)的光束的入射角在第二扫描方向上增加的方向为正侧,来自激光光源(1)的光束入射 偏转装置(3)在第二扫描方向的负侧和偏转装置(3)中的反射镜(10)的垂直方向,在显示屏的中心的状态下,在偏转装置 相对于屏幕(SC)的法线的第二扫描方向。

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