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    • 51. 发明申请
    • GUN SIGHT
    • 枪声
    • WO2011149745A1
    • 2011-12-01
    • PCT/US2011/037048
    • 2011-05-18
    • SUREFIRE, LLCMATTHEWS, John W.BUCZEK, MarkSQUIRE, Mark
    • MATTHEWS, John W.BUCZEK, MarkSQUIRE, Mark
    • F41G1/30F41G1/26F41G1/16F41G11/00F41A33/00
    • F41G1/30F41A33/00F41G1/16F41G1/26F41G11/004
    • Various gun sights (300) for firearms and related methods of use are provided. In one embodiment, the sight includes an apparatus adapted to be mounted at a rear end of a firearm (10) and arranged to occlude one eye of a user of the firearm and to generate an illuminated dot (192) that is disposed such that it is generally centered on the longitudinal axis (A) of the barrel of the firearm (10). The gun sight produces a collimated beam of light that creates an image of an illuminated dot by either a refractive method or a reflective method. In use, a dominant eye of the user is occluded by the sight (300) and the other eye of the user is focused on the target. The user then adjusts the position of the gun (10) relative to the target such that the user perceives the illuminated dot (192) of the sight (300) to be positioned on the target.
    • 提供了枪支及其相关使用方法的各种枪瞄准镜(300)。 在一个实施例中,视线包括适于安装在枪械(10)的后端并被布置成闭合枪支的使用者的一只眼睛并且产生被照射的点(192)的装置, 通常以火器(10)的枪管的纵向轴线(A)为中心。 枪瞄准器产生准直光束,通过折射法或反射方法产生照明点的图像。 在使用中,用户的主要眼睛被视线(300)遮挡,使用者的另一只眼睛聚焦在目标上。 用户然后调整枪(10)相对于目标的位置,使得用户感知视线(300)的照明点(192)被定位在目标上。
    • 53. 发明申请
    • VIRTUAL WINDOW
    • WO2023064112A1
    • 2023-04-20
    • PCT/US2022/045227
    • 2022-09-29
    • SUREFIRE, LLC
    • HOANG, Vuong Ba
    • G06F3/01
    • Systems and methods for providing a virtual window may include a projector, which projects an image upon a projection surface. The projection surface can be arranged at a distance of separation from a user. The system can further comprise a plurality of sensors forming a field of detection with respect to an area of space encompassing the distance of separation between the projection surface and the user. The plurality of sensors can capture position data for the user representing a current position of the user within the field of detection. The system can also include at least one processor rendering a computer simulated environment as the projected image, wherein the at least one processor processes the captured position data such for the user such that the computer simulated environment is generated in a perspective relative to the current position of the user within the field of detection.
    • 54. 发明申请
    • REFLECTIVE NON-PARABOLOIDAL BEAM-SHAPING OPTICS
    • 反射非PARABOLOIDAL BEAM形状光学
    • WO2016115526A1
    • 2016-07-21
    • PCT/US2016/013709
    • 2016-01-15
    • SUREFIRE, LLC
    • SHATZ, NarkisBORTZ, John C.MATTHEWS, John W.
    • F21V7/04F21V7/00F21V7/09
    • F21V7/048F21V7/0075F21V7/04F21V7/09
    • A lighting device may include a light source and a reflective optical element. The reflective optical element may have a reflective internal surface that defines a cavity. The internal surface may include longitudinal undulations. The internal surface may be faceted or non-faceted. The light source may be at least partially disposed in the cavity. The shape profile of the internal reflective surface in any plane containing the surface's symmetry axis may be non-paraboloidal and may exhibit undulations running along its length. The reflective optical element may be a monolithic structure and may be a beam-shaping reflector that generates a light beam that, in comparison with a paraboloidal reflector having the same hole size, aperture size, and light source, is relatively fainter at small off-axis angles, brighter at mid-range off-axis angles, and fainter at large off-axis angles than a light beam generated by the paraboloidal reflector. Related methods are provided.
    • 照明装置可以包括光源和反射光学元件。 反射光学元件可以具有限定空腔的反射内表面。 内表面可包括纵波纹。 内表面可以是刻面的或非平面的。 光源可以至少部分地设置在空腔中。 包含表面对称轴的任何平面中的内部反射表面的形状轮廓可以是非抛物线的并且可以表现出沿其长度延伸的波动。 反射型光学元件可以是单片结构,并且可以是产生光束的光束整形反射器,其与具有相同孔尺寸,孔径尺寸和光源的抛物面反射器相比,在较小的偏离下相对较弱, 轴角度在中距离离轴角度处更亮,并且在离抛物面反射器产生的光束的大离轴角度处较弱。 提供相关方法。
    • 55. 发明申请
    • LASER WELDED FIREARM SOUND SUPPRESSORS
    • 激光焊接防雷器
    • WO2016115518A1
    • 2016-07-21
    • PCT/US2016/013697
    • 2016-01-15
    • SUREFIRE, LLC
    • DUECK, Barry W.RADGOWSKI, DennisBROWN, KavanHONIGMANN, Karl R.
    • F41A21/30F41A21/34
    • F41A21/30B23K26/282F41A21/34
    • Various techniques are provided to assemble, manufacture, and operate firearm sound suppressors. In one example, a sound suppressor for a firearm includes a baffle; a spacer abutted to the baffle; and a circumferential laser weld joining the baffle and the spacer. In another example, a sound suppressor for a firearm includes a plurality of baffles; a plurality of spacers; a substantially tubular housing surrounding the baffles and the spacers; wherein the housing and the spacers define an annular volume surrounding the spacers; an aperture in a circumfery of at least one of the spacers; and wherein the aperture is adapted to direct combustion gases in a radial direction from within the spacer into the annular volume to reduce ejection port flash of the firearm. Additional suppressor embodiments and related methods are also provided.
    • 提供各种技术来组装,制造和操作枪支抑制器。 在一个示例中,用于枪支的抑制器包括挡板; 邻接挡板的间隔件; 以及连接挡板和间隔件的圆周激光焊接。 在另一个例子中,用于枪支的抑制器包括多个挡板; 多个间隔件; 围绕挡板和间隔件的基本上管状的壳体; 其中所述壳体和所述间隔件限定围绕所述间隔件的环形体积; 至少一个间隔物的圆周的孔; 并且其中所述孔适于将径向内的燃烧气体从所述间隔件内引导到所述环形容积中,以减少所述枪支的喷射口闪光。 还提供了另外的抑制器实施例和相关方法。