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    • 3. 发明授权
    • Optical telescope sight combining dot sight mode and scope mode
    • 光学望远镜视点组合点瞄准模式和示波器模式
    • US08407926B2
    • 2013-04-02
    • US12997961
    • 2009-06-18
    • In JungDong Hee Lee
    • In JungDong Hee Lee
    • F41G1/38
    • F41G1/38F41G1/30F41G1/345F41G11/008G02B23/00G02B23/10
    • The present invention relates to an optical device for both a dot sight mode and a scope mode, the optical device including: a dot-sight main body which is formed with a dot sight region where a light source and a reflective mirror are installed to display light emitted from the light source as a dot on an external target, and operates in the dot sight mode; and a scope structure which includes an objective lens and an eyepiece lens to magnify and see the external target, and is rotatable inside the dot-sight main body, the scope mode being selected when the scope structure is rotated and inserted in the dot sight region. With this, there is provided an optical device for both a dot sight mode and a scope mode, in which a scope structure is installed to be retractable inside a dot sight device and thus both the dot sight mode and the scope mode are supported, thereby aiming at an external target through quick mode switching, and there is no need for an additional scope device.
    • 本发明涉及一种用于点瞄准模式和瞄准镜模式的光学装置,该光学装置包括:点阵主体,其形成有点状瞄准区域,其中安装有光源和反射镜以显示 从光源发射的光作为外部目标上的点,并以点瞄准模式工作; 以及包括物镜和目镜的镜片结构,用于放大和看到外部目标,并且可以在点瞄准器主体内旋转,当镜架结构旋转并插入到点瞄准区域中时,选择镜架模式 。 由此,提供了一种用于点瞄准模式和示范模式的光学装置,其中安装示范结构以在点瞄准装置内可缩回,因此支持点瞄准模式和作战模式,由此 通过快速模式切换瞄准外部目标,并且不需要附加的示波器装置。
    • 5. 发明申请
    • Optical Telescope Sight Combining Dot Sight Mode and Scope Mode
    • 光学望远镜组合点瞄准模式和范围模式
    • US20110099881A1
    • 2011-05-05
    • US12997961
    • 2009-06-18
    • In JungDong Hee Lee
    • In JungDong Hee Lee
    • F41G1/38F41G1/00
    • F41G1/38F41G1/30F41G1/345F41G11/008G02B23/00G02B23/10
    • The present invention relates to an optical device for both a dot sight mode and a scope mode, the optical device including: a dot-sight main body which is formed with a dot sight region where a light source and a reflective mirror are installed to display light emitted from the light source as a dot on an external target, and operates in the dot sight mode; and a scope structure which includes an objective lens and an eyepiece lens to magnify and see the external target, and is rotatable inside the dot-sight main body, the scope mode being selected when the scope structure is rotated and inserted in the dot sight region. With this, there is provided an optical device for both a dot sight mode and a scope mode, in which a scope structure is installed to be retractable inside a dot sight device and thus both the dot sight mode and the scope mode are supported, thereby aiming at an external target through quick mode switching, and there is no need for an additional scope device.
    • 本发明涉及一种用于点瞄准模式和瞄准镜模式的光学装置,该光学装置包括:点阵主体,其形成有点状瞄准区域,其中安装有光源和反射镜以显示 从光源发射的光作为外部目标上的点,并以点瞄准模式工作; 以及包括物镜和目镜的镜片结构,用于放大和看到外部目标,并且可以在点瞄准器主体内旋转,当镜架结构旋转并插入到点瞄准区域中时,选择镜架模式 。 为此,提供了一种用于点瞄准模式和示范模式的光学装置,其中,安装示范结构以在点瞄准装置内部可缩回,因此支持点瞄准模式和作战模式,由此 通过快速模式切换瞄准外部目标,并且不需要附加的示波器装置。
    • 8. 发明授权
    • Sliding device
    • 滑动装置
    • US09095213B2
    • 2015-08-04
    • US13132457
    • 2009-12-24
    • Yoon Sik ParkDong Hee LeeHyun Ho Cha
    • Yoon Sik ParkDong Hee LeeHyun Ho Cha
    • A47B88/04A47B88/10A47B88/14F24C15/16F25D23/06F25D25/02
    • A47B88/10A47B88/487A47B88/493F24C15/168F25D23/067F25D25/025
    • A movable rail body is fastened to a movable body and has a first space. Movable rail bearings are disposed in the first space at diagonally facing corners of the movable rail body. A stationary rail body is fastened to a stationary support and has a second space. Stationary rail bearings are disposed in the second space at diagonally facing corners of the stationary rail body. A slider has an upper end in rolling contact with the movable rail bearings, and a lower end in rolling contact with the stationary rail bearings. An angle between a center line parallel to the movable body and a connection line connecting centers of the movable rail bearings ranges from 40 degrees to 50 degrees. An angle between the center line and a connection line connecting centers of the stationary rail bearings ranges from 130 degrees to 140 degrees.
    • 活动导轨主体固定在可移动体上并具有第一空间。 活动导轨轴承设置在可移动导轨本体的对角角处的第一空间中。 固定轨道体固定在固定支架上并具有第二空间。 固定轨道轴承设置在静止轨道体的斜对角的第二空间中。 滑块具有与可动导轨轴承滚动接触的上端,以及与静止导轨轴承滚动接触的下端。 平行于可移动体的中心线与连接活动导轨轴承中心的连接线之间的角度为40度至50度。 中心线与连接固定轨道轴承中心的连接线之间的角度范围为130度至140度。
    • 10. 发明申请
    • HYBRID POLE BEARINGLESS SRM
    • 混合式无轴承SRM
    • US20120068558A1
    • 2012-03-22
    • US13322555
    • 2009-07-14
    • Jin Woo AhnDong Hee LeeHuijun Wang
    • Jin Woo AhnDong Hee LeeHuijun Wang
    • H02K7/09H02K19/06
    • H02K7/09H02K19/103
    • Disclosed is a hybrid pole bearingless switched reluctance motor (BLSRM). The BLSRM includes a stator provided with windings, a rotor rotating about an axis when current is conducted to the windings. The rotor includes a plurality of rotor poles extending radially outward, and the stator includes a plurality of stator poles extending radially inward. The windings include suspending windings to generate radial force for the rotor and torque windings to generate torque. The suspending windings are mutually separated from the torque windings. Through the use of the hybrid pole BLSRM, a stator pole generating the radial force can be controlled independently from the stator pole generating the torque by separately arranging the stator pole generating the radial force and the stator pole generating torque based on the analysis of radial force and torque characteristics according to the position of the stator poles.
    • 公开了一种混合无极轴承开关磁阻电动机(BLSRM)。 BLSRM包括具有绕组的定子,当电流传导到绕组时围绕轴旋转的转子。 转子包括径向向外延伸的多个转子极,并且定子包括径向向内延伸的多个定子极。 绕组包括悬挂绕组以产生用于转子和扭矩绕组产生转矩的径向力。 悬挂绕组与转矩绕组相互分离。 通过使用混合极BLSRM,可以独立于定子极控制产生径向力的定子极,通过分别布置产生径向力的定子极和基于径向力分析的定子极产生转矩来产生转矩 并根据定子极的位置进行转矩特性。