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    • 1. 发明授权
    • Compact focus detecting device suitable for incorporation into an
optical apparatus
    • 紧凑的聚焦检测装置适用于结合到光学装置中
    • US5262819A
    • 1993-11-16
    • US824873
    • 1992-01-22
    • Keiji OhtakaTakeshi KoyamaYasuo Suda
    • Keiji OhtakaTakeshi KoyamaYasuo Suda
    • G02B7/34G03B13/00
    • G02B7/346
    • A compact focus detecting device featuring increased optical paths includes a first detecting system having first light intensity distribution forming structure for forming a light beam passing through the objective lens a light intensity distribution of which varies in relative position according to the focus state of the objective lens. A first light receiving sensor receives the first light intensity distribution and outputs a first signal indicative of the focused state of the objective lens. The first detecting system has a first detection field and a first optical path. A second detecting system has a second detecting field with a center spaced apart from the center of the first detection field, and a second optical path. The second detecting system includes second light intensity distribution forming structure for forming from the light beam passing through the objective lens a light intensity distribution which varies in relative position according to the focused state of the objective lens. A second light receiving sensor receives the second light intensity distribution and outputs a second signal indicative of the focus state of the objective lens. A light transmitting optical member is provided for adjusting the length of the first and second optical paths. Preferably, the optical member comprises a block having an internal reflecting surface.
    • 具有增加的光路的小型聚焦检测装置包括具有第一光强分布形成结构的第一检测系统,用于形成通过物镜的光束,其光强分布根据物镜的聚焦状态在相对位置上变化 。 第一光接收传感器接收第一光强分布并输出表示物镜的聚焦状态的第一信号。 第一检测系统具有第一检测场和第一光路。 第二检测系统具有第二检测场,其具有与第一检测场的中心间隔开的中心和第二光路。 第二检测系统包括第二光强分布形成结构,用于从通过物镜的光束形成根据物镜的聚焦状态在相对位置上变化的光强度分布。 第二光接收传感器接收第二光强度分布并输出表示物镜聚焦状态的第二信号。 光传输光学构件被设置用于调节第一和第二光路的长度。 优选地,光学构件包括具有内部反射表面的块。
    • 2. 发明授权
    • Focus detecting device and method of making same
    • 焦点检测装置及其制作方法
    • US4878078A
    • 1989-10-31
    • US190171
    • 1988-05-04
    • Takeshi KoyamaKeiji OhtakaYasuo Suda
    • Takeshi KoyamaKeiji OhtakaYasuo Suda
    • G02B7/34
    • G02B7/346
    • In a focus detecting device having a secondary image unit disposed rearwardly of the predetermined imaging plane of an objective lens, a plurality of pairs of object images based on light fluxes passing through different portions of the pupil of the objective lens are formed on a photoelectric conversion element array disposed rearwardly of the secondary imaging unit. The focus of the objective lens is detected from the amount of relative deviation between the object images formed on the photoelectric conversion element array. The secondary imaging unit includes at least two members, a first member having a first pair of lens-acting surfaces and a second pair of lens-acting surfaces on one end thereof, and a second member having a first pair of prism surfaces and a second pair of prism surfaces which differ in refractive power from each other. The second member being fixed to the first member after being rotatively adjusted relative to the first member.
    • 在具有设置在物镜的预定成像平面的后方的二次图像单元的焦点检测装置中,基于通过物镜的光瞳的不同部分的光束的多对物体图像形成在光电转换 元件阵列设置在次级成像单元的后方。 从形成在光电转换元件阵列上的物体图像之间的相对偏离量来检测物镜的焦点。 二次成像单元包括至少两个构件,第一构件,其具有第一对透镜作用表面和在其一个端部上的第二对透镜作用表面,以及具有第一对棱镜表面的第二构件和第二构件 折射力彼此不同的一对棱镜表面。 所述第二构件在相对于所述第一构件旋转调整之后被固定到所述第一构件。
    • 6. 发明授权
    • Focus detection device having a plurality of means for forming light
patterns provided at different distances from the optical axis
    • 焦点检测装置具有多个用于形成设置在与光轴不同的距离处的光图案的装置
    • US5109154A
    • 1992-04-28
    • US690332
    • 1991-04-26
    • Masaki HigashiharaKeiji OhtakaKenji SuzukiTakeshi KoyamaYasuo Suda
    • Masaki HigashiharaKeiji OhtakaKenji SuzukiTakeshi KoyamaYasuo Suda
    • G03B13/36G02B7/34
    • G02B7/346
    • A focusing detecting device is disclosed having apparatus for forming object light patterns whose relative position changes in conformity with a focus state of an objective lens. Light flux passes through different areas of an exit pupil of the objective lens, and circuitry receives and photoelectrically converts the light patterns, and detects the focus state of the objective lens on the basis of the photoelectrically converted signal. The focusing apparatus accroding to the present invention a plurality of sets of structures for forming light patterns and means for photoelectrically converting the light patterns which are provided at different distances from the position of the optic axis of the objective lens. Also disclosed are means for making (a) the shapes of the areas of the exit pupil through which the light flux is passed to form the light patterns, or (b) intervals between the centers of gravity of said areas, or (c) both, different between a position in the vicinity of the optic axis of the objective lens, and a position distant therefrom.
    • 公开了一种聚焦检测装置,其具有用于形成相对位置根据物镜的焦点状态变化的物体光图案的装置。 光通量通过物镜的出射光瞳的不同区域,并且电路接收并光电转换光图案,并且基于光电转换信号检测物镜的聚焦状态。 根据本发明的聚焦装置用于形成光图案的多组结构和用于光电转换设置在与物镜的光轴的位置不同的距离处的光图案的装置。 还公开了用于制造(a)通过光束通过的出射光瞳的区域的形状以形成光图案的装置,或(b)所述区域的重心之间的间隔,或(c)两者 在物镜的光轴附近的位置和远离物镜的位置之间不同。
    • 7. 发明授权
    • Multi-directional focus state detection apparatus
    • 多方向聚焦状态检测装置
    • US4859842A
    • 1989-08-22
    • US313343
    • 1989-02-21
    • Yasuo SudaIchiro OhnukiAkira AkashiAkira IshizakiKeiji OhtakaTakeshi Koyama
    • Yasuo SudaIchiro OhnukiAkira AkashiAkira IshizakiKeiji OhtakaTakeshi Koyama
    • G02B7/34
    • G02B7/346
    • A focus detection apparatus includes:a first optical device for forming light distributions, associated with an object image, whose relative positional relationship chnages along a first direction in accordance with a focusing state of the objective lens;a second optical device for forming light distributions, associated with the object image, whose relative positional relationship changes along a second direction in accordance with the focusing state of the objective lens;a first sensing unit, having a plurality of photosensors, for forming an electrical signal associated with the focusing state of the objective lens in order to sense the light distributions formed by the first optical device; anda second sensing unit, having a plurality of photosensors, for forming an electrical signal associated with the focusing state of the objective lens in order to sense the light distribution formed by the second optical device.
    • 焦点检测装置包括:第一光学装置,用于形成与物体图像相关联的光分布,其相对位置关系根据物镜的聚焦状态沿着第一方向检测; 用于形成与所述物体图像相关联的光分布的第二光学装置,其相对位置关系根据所述物镜的聚焦状态沿第二方向变化; 具有多个光电传感器的第一感测单元,用于形成与所述物镜的聚焦状态相关联的电信号,以便感测由所述第一光学装置形成的光分布; 以及具有多个光电传感器的第二感测单元,用于形成与物镜的聚焦状态相关联的电信号,以便感测由第二光学装置形成的光分布。
    • 8. 发明授权
    • Apparatus for detecting the focus adjusted state of an objective optical
system
    • 用于检测物镜光学系统的焦点调整状态的装置
    • US4841326A
    • 1989-06-20
    • US115905
    • 1987-11-02
    • Takeshi KoyamaKeiji Ohtaka
    • Takeshi KoyamaKeiji Ohtaka
    • G03B13/36G02B3/00G02B7/34
    • G02B3/0043G02B3/0056G02B7/346
    • A focus detecting apparatus is provided with a plurality of pattern forming lenses for forming light patterns whose relative positional relation varies in conformity with the focus adjusted state of an objective optical system from lights passed through different areas on the pupil of the objective optical a sensing device is included for sensing the light patterns and producing a signal regarding the relative positional relation between the light patterns. A light divider is inclined along an optical path passing through the areas on the pupil and has a light-transmitting area through which light is refracted and transmitted. The light divider is disposed between the objective optical system and the pattern forming lenses. The pattern forming lenses are different in shape and are formed asymmetrically with respect to the optic axis of the objective optical system to correct the destruction of the light patterns caused by the light divider.
    • 焦点检测装置设置有多个图案形成透镜,用于形成相对位置关系根据物镜光学系统的焦点调整状态从通过物镜光瞳上的不同区域的光线变化的光图案, 被包括用于感测光图案并且产生关于光图案之间的相对位置关系的信号。 分光器沿着通过光瞳上的区域的光路倾斜,并具有透光区域,光线通过该透光区域被折射和透射。 光分配器设置在物镜光学系统和图案形成透镜之间。 图案形成透镜的形状不同,并且相对于物镜光学系统的光轴不对称地形成,以校正由分光器引起的光图案的破坏。