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    • 2. 发明授权
    • Compact two-element infrared objective lens and IR or thermal sight for weapon having viewing optics
    • 紧凑型双元件红外物镜和红外或热视野用于具有观察光学元件的武器
    • US07848015B2
    • 2010-12-07
    • US12657502
    • 2010-01-21
    • Allie M. Baker
    • Allie M. Baker
    • G02B13/14
    • G02B13/14G02B9/04G02B13/18
    • A compact objective lens is disclosed which is particularly suitable for infrared optical systems. The lens features a simple design with only two lens elements, namely a first lens element receiving incident radiation and having front and rear surfaces, and a second lens element receiving incident radiation from the first element and having front and rear surfaces. The lens forms an image of a scene on a focal plane. At least three of the four surfaces of the elements are aspheric surfaces. The lens has an f-number less than about 2, a field-of-view less than about 30 degrees, and an effective focal length less than about 6 inches. The elements are made from a material selected to pass radiation in the infrared band of the electromagnetic spectrum, e.g., germanium. The lens is suitable for use as an objective lens for a long-wave infrared sight for small arms, e.g., rifle or shoulder-launched surface to air missile launching system, i.e., a lens optimized for operating in the electromagnetic spectrum between about 7.5 and about 15 micrometers.
    • 公开了一种特别适用于红外光学系统的小型物镜。 该透镜具有仅具有两个透镜元件的简单设计,即接收入射辐射并具有前表面和后表面的第一透镜元件,以及接收来自第一元件的入射辐射并具有前表面和后表面的第二透镜元件。 透镜在焦平面上形成场景的图像。 元件的四个表面中的至少三个是非球面。 透镜的f数小于约2,视野小于约30度,有效焦距小于约6英寸。 这些元件由选择用于在电磁光谱的红外波段(例如锗)中通过辐射的材料制成。 该镜头适合用作小型武器的长波红外瞄准镜的物镜,例如步枪或肩膀发射的地对空导弹发射系统,即镜头优化,用于在约7.5和 约15微米。
    • 4. 发明申请
    • Compact two-element infrared objective lens and IR or thermal sight for weapon having viewing optics
    • 紧凑型双元件红外物镜和红外或热视野用于具有观察光学元件的武器
    • US20090052018A1
    • 2009-02-26
    • US11895375
    • 2007-08-23
    • Allie M. Baker
    • Allie M. Baker
    • G02B13/14
    • G02B13/14G02B9/04G02B13/18
    • A compact objective lens is disclosed which is particularly suitable for infrared optical systems. The lens features a simple design with only two lens elements, namely a first lens element receiving incident radiation and having front and rear surfaces, and a second lens element receiving incident radiation from the first element and having front and rear surfaces. The lens forms an image of a scene on a focal plane. At least three of the four surfaces of the elements are aspheric surfaces. The lens has an f-number less than about 2, a field-of-view less than about 30 degrees, and an effective focal length less than about 6 inches. The elements are made from a material selected to pass radiation in the infrared band of the electromagnetic spectrum, e.g., germanium. The lens is suitable for use as an objective lens for a long-wave infrared sight for small arms, e.g., rifle or shoulder-launched surface to air missile launching system, i.e., a lens optimized for operating in the electromagnetic spectrum between about 7.5 and about 15 micrometers.
    • 公开了一种特别适用于红外光学系统的小型物镜。 该透镜具有仅具有两个透镜元件的简单设计,即接收入射辐射并具有前表面和后表面的第一透镜元件,以及接收来自第一元件的入射辐射并具有前表面和后表面的第二透镜元件。 透镜在焦平面上形成场景的图像。 元件的四个表面中的至少三个是非球面。 透镜的f数小于约2,视野小于约30度,有效焦距小于约6英寸。 这些元件由选择用于在电磁光谱的红外波段(例如锗)中通过辐射的材料制成。 该镜头适合用作小型武器的长波红外瞄准镜的物镜,例如步枪或肩膀发射的地对空导弹发射系统,即镜头优化,用于在约7.5和 约15微米。
    • 6. 发明授权
    • Cassegrain optical system for framing aerial reconnaissance camera
    • 卡塞格伦光学系统用于构架空中侦察摄像机
    • US06374047B1
    • 2002-04-16
    • US09652529
    • 2000-08-31
    • Stephen R. BeranAndrew J. PartynskiAllie M. BakerJohn Jones
    • Stephen R. BeranAndrew J. PartynskiAllie M. BakerJohn Jones
    • G03B3900
    • G01C11/025
    • A dual band optical system for a framing aerial reconnaissance camera is described. The camera including at least two two-dimensional image recording media for generating frames of imagery of a scene external of an aerial reconnaissance vehicle carrying the camera. The camera includes a Cassegrain optical system forming an objective lens for the optical system, including a a primary mirror having a central aperture and a secondary mirror. The primary and secondary mirrors are aligned along an objective optical axis. The optical system also includes an azimuth mirror receiving radiation from the secondary mirror. The azimuth mirror is placed between the primary and secondary mirrors. A spectrum-dividing element in the form of a prism receives radiation from the azimuth mirror. The spectrum-dividing element directs radiation in a first band of the electromagnetic spectrum into a first optical path and radiation in a second band of the electromagnetic spectrum into a second optical path different from the first optical path. A first two-dimensional image recording medium is placed in the first optical path and a second two-dimensional image recording medium is placed in the second optical path. The first and second image recording media generating first and second images in two different portions of the electromagnetic spectrum simultaneously.
    • 描述了一种用于框架式空中侦察摄像机的双频带光学系统。 该照相机包括至少两个二维图像记录介质,用于产生携带相机的空中侦察车辆外部的场景的图像的帧。 相机包括形成用于光学系统的物镜的卡塞格伦光学系统,包括具有中心孔和副镜的主镜。 主镜和副镜沿物镜光轴对齐。 光学系统还包括接收来自副反射镜的辐射的方位镜。 方位镜被放置在主镜和次镜之间。 棱镜形式的光谱分割元件接收来自方位镜的辐射。 频谱分割元件将电磁频谱的第一频带中的辐射引导到第一光路中,并将电磁光谱的第二频带中的辐射引导到与第一光路不同的第二光路。 将第一二维图像记录介质放置在第一光路中,并且将第二二维图像记录介质放置在第二光路中。 第一和第二图像记录介质同时在电磁光谱的两个不同部分中产生第一和第二图像。
    • 7. 发明授权
    • Three-component lens retainer
    • 三分量镜头保持架
    • US6144509A
    • 2000-11-07
    • US353299
    • 1999-07-13
    • Allie M. Baker
    • Allie M. Baker
    • G02B7/02
    • G02B7/026
    • A method and retainer assembly for securely retaining a lens in a cell or other holding structure so that the lens does not become displaced when the cell is subject to mechanical shock and vibration. The invention is particularly useful for use in retaining large, heavy optical elements, such as can be found in long focal length aerial reconnaissance camera systems. The method involves the step of seating and centering the lens into the cell. The lens has a peripheral surface having a beveled feature. A first rigid, e.g., metallic, ring having a complementary beveled surface is installed over the peripheral beveled surface of the lens. A second rigid, e.g., metallic, ring is installed over the first ring. A retaining ring is threaded onto the cells such that the retaining ring abuts against the second ring. The retaining ring is tightening onto the cell such that the second ring conforms to the retaining ring while maintaining the alignment of the lens in the cell. The retaining Ting is secured to the cell, such as by staking or use of an adhesive.
    • 一种用于将透镜牢固地保持在电池或其它保持结构中的方法和保持器组件,使得当电池受到机械冲击和振动时,透镜不会发生位移。 本发明特别适用于保留大型重型光学元件,例如可以在长焦距空中侦察摄像机系统中找到。 该方法包括将透镜安置并居中到电池中的步骤。 透镜具有具有斜面特征的外围表面。 具有互补的斜面的第一刚性例如金属环被安装在透镜的周边斜面上。 在第一环上安装有第二刚性例如金属环。 保持环被拧到电池上,使得保持环抵靠第二环。 保持环紧固在电池上,使得第二环符合保持环,同时保持透镜在电池中的对准。 保持Ting被固定到电池,例如通过粘合或使用粘合剂。