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    • 91. 发明申请
    • AIMING DEVICE WITH A RETICLE DEFINING A TARGET AREA AT A SPECIFIED DISTANCE
    • 具有以指定距离定义目标区域的虚拟设备
    • WO2011075027A1
    • 2011-06-23
    • PCT/SE2009/051462
    • 2009-12-18
    • Vidderna Jakt & Utbildning ABÖSTERGREN, P.O.VILHELMSSON, KennetERIKSSON, Niklas
    • ÖSTERGREN, P.O.VILHELMSSON, KennetERIKSSON, Niklas
    • G02B27/01F41G1/30G02B23/10
    • F41G1/30F41G1/38F41G1/473G02B23/105G02B27/0101G02B27/0189
    • The present invention relates to an optical aiming device for aiming a shot gun which upon firing a shot provides a shot pattern, the optical aiming device comprises a base part having a longitudinal extension, a distal and a proximal end (12, 13) and comprising means for attaching the aiming device (10) to the shot gun (100). The optical aiming device further comprises a mirror (15) or lens having a maximum height (H) and a maximum width (W). A light source (20) being arranged to project light on the mirror (15) or lens, wherein the mirror (15) or lens is arranged to reflect or redirect at least parts of the light (A) in a first direction. The projected light forms a reticle (50). The reticle (50) covers a target area (52) and the target area (52) corresponds to the shot pattern at a predetermined distance from the mirror (15) or lens. The optical aiming device provide for an aiming device which gives the shooter an improved perception of the distance between the target and the shooter and the spread of the charge of hailstones when firing.
    • 本发明涉及一种用于瞄准射击枪的光学瞄准装置,其在射击时提供射击图案,该光学瞄准装置包括具有纵向延伸部的基部,远端和近端(12,13),并且包括 用于将瞄准装置(10)附接到喷枪(100)的装置。 光学瞄准装置还包括具有最大高度(H)和最大宽度(W)的反射镜(15)或透镜。 光源(20)被布置成将光投射在反射镜(15)或透镜上,其中反射镜(15)或透镜被布置成在第一方向上反射或重定向光(A)的至少一部分。 投影光形成掩模版(50)。 标线片(50)覆盖目标区域(52),并且目标区域(52)对应于距反射镜(15)或透镜预定距离处的射出图案。 光学瞄准装置提供了一种瞄准装置,其使得射手能够改善对目标和射手之间距离的感知以及射击时冰雹装置的扩展。
    • 99. 发明授权
    • Composite optical device for sighting targets and measuring distances
    • 用于瞄准目标和测量距离的复合光学装置
    • US09200869B2
    • 2015-12-01
    • US13264357
    • 2010-05-18
    • Dong Won YangDong Min KwakJoo Hong YoonKyung Mok Kang
    • Dong Won YangDong Min KwakJoo Hong YoonKyung Mok Kang
    • G02B23/00F41G1/35G02B27/01F41G1/38F41G1/473G02B23/10
    • F41G1/35F41G1/38F41G1/473G02B23/105G02B27/0189
    • The present invention aims to provide a composite optical device which includes the day-time optical device, thermal imaging optical device, laser application device and displaying device while reducing the volume and weight, further comprising attenuator that can control the amount of light for easy display on the display. The present invention also aims to provide a composite optical device with enhanced efficiency of transmitting laser and easy operability by installing the attenuator at an appropriate location. To attain the object of the invention, the composite optical device for day and night time sighting and measuring distance, having a laser application device, a day-time optical device, a thermal imaging optical device and a display, comprises a laser transmitting optical device comprising a beam shaping lens 120 for shaping and sighting the laser emitted from a laser source 110, a focus lens 130 installed in front of the beam shaping lens 120 for controlling the emitting angle of the laser, and a folding mirror 140 installed in front of the focus lens 130 for reflecting the laser passed through the beam shaping lens 120 and focus lens 130 to a first beam splitter 270, a day-time optical device installed between a objective unit 290 and a eye-piece 210, the eye-piece and objective unit being arranged seeing each other, comprising a objective lens 280 for transmitting the light reflected from the first beam splitter, a first beam splitter 270, a first attenuator 260, a second beam splitter 250, relay unit 240, eye-piece lens 230, and a second attenuator 220, which are located between the first beam splitter and the eye-piece 210 in the order described above, and a display 300 installed on one side of the second beam splitter 250 to transmit a specific image to the second beam splitter 250.
    • 本发明旨在提供一种复合光学装置,其包括日光时间光学装置,热成像光学装置,激光施加装置和显示装置,同时减小体积和重量,还包括能够控制光量以便于显示的衰减器 在显示器上。 本发明还旨在提供一种复合光学器件,其通过在适当的位置安装衰减器来提高发射激光的效率和易操作性。 为了实现本发明的目的,具有激光应用装置,日间光学装置,热成像光学装置和显示器的昼夜瞄准和测量距离的复合光学装置包括激光发射光学装置 包括用于成形和瞄准从激光源110发射的激光的光束整形透镜120,安装在光束整形透镜120前面用于控制激光的发射角的聚焦透镜130,以及安装在激光源110前方的折叠镜140 用于反射通过光束整形透镜120的激光并将透镜130聚焦到第一分束器270的对焦透镜130,安装在目标单元290和眼睛片210之间的日间光学装置,眼镜片和 目标单元彼此相互排列,包括用于透射从第一分束器反射的光的物镜280,第一分束器270,第一衰减器260,第二光束分裂 ter 250,中继单元240,眼镜透镜230和第二衰减器220,其以上述顺序位于第一分束器和眼睛片210之间;以及显示器300,安装在第二个 分束器250将特定图像传送到第二分束器250。
    • 100. 发明申请
    • IMAGING APPARATUS, IMAGING METHOD, AND COMPUTER-READABLE RECORDING MEDIUM
    • 成像装置,成像方法和计算机可读记录介质
    • US20140313390A1
    • 2014-10-23
    • US14257586
    • 2014-04-21
    • OLYMPUS IMAGING CORP.
    • Tatsuyuki UEMURAKunio YAMAMIYAOsamu NONAKAIkko MORI
    • H04N5/225
    • H04N5/2254G02B23/105G02B23/12G02B23/14G02B23/145G03B13/00H04N5/2256H04N5/23293
    • An imaging apparatus includes: an imaging unit configured to receive light collected from an object area through an imaging optical system provided at a front side facing an object, and to generate image data; a body unit including the imaging unit; an optical sight unit including a light source unit for emitting luminous flux, and a reflecting optical element for allowing light from the object area to transmit and reflecting the luminous flux toward a back side opposite to the front in order to produce a virtual image of the luminous flux in the object area or near the object area; and a leg unit that holds at least the reflecting optical element in a movable manner in a direction away from the body unit and in a direction perpendicular to an optical axis of the imaging optical system, at startup of the optical sight unit.
    • 一种成像装置,包括:成像单元,被配置为通过设置在面向物体的前侧的成像光学系统接收从对象区域收集的光,并且生成图像数据; 包括所述成像单元的主体单元; 包括用于发射光束的光源单元的光学瞄准单元和用于允许来自物体区域的光透射并反射光束朝向与前面相反的后侧的反射光学元件,以产生 物体区域或物体区域附近的光通量; 以及腿部单元,其在光学瞄准单元的启动时,沿着远离身体单元的方向和垂直于成像光学系统的光轴的方向以可移动的方式保持至少反射光学元件。