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    • 6. 发明授权
    • Ballistic effect compensating reticle and aim compensation method
    • 弹道效应补偿光罩和目标补偿方法
    • US09581415B2
    • 2017-02-28
    • US14216674
    • 2014-03-17
    • G. David Tubb
    • G. David Tubb
    • F41G1/38F41G3/08F41G1/473
    • F41G3/08F41G1/38F41G1/473
    • A ballistic effect compensating reticle (e.g., 200 or 300) and aim compensation method for rifle sights or projectile weapon aiming systems includes a multiple point elevation and windage aim point field (e.g., 150 or 350) including a primary aiming mark (e.g., 158 or 358) indicating a primary aiming point adapted to be sighted-in at a first selected range and a plurality of secondary aiming points arrayed beneath the primary aiming mark. The method for compensating for a projectile's ballistic behavior while developing a field expedient firing solution permits the shooter to express the field expedient firing solution in units of distance, (e.g., yards or meters, when describing or estimating range and nominal air density ballistic characteristics), and velocity (e.g., mph or kph, for windage hold points).
    • 弹道效应补偿掩模版(例如200或300)和步枪瞄准镜或射弹武器瞄准系统的目标补偿方法包括多点高程和风向瞄准点(例如,150或350),包括主要瞄准标记(例如,158 或358),其指示适于在第一选定范围被瞄准的主要瞄准点和排列在主瞄准标记下方的多个次瞄准点。 在开发现场方便点火解决方案时,补偿射弹的弹道行为的方法允许射手以距离为单位(例如,码或米,在描述或估计范围和标称空气密度弹道特征时)表达现场方便点火解决方案, 和速度(例如,风速保持点的mph或kph)。
    • 8. 发明授权
    • Method and apparatus for sensing spontaneous changes in a localized electromagnetic field and method for use
    • 用于检测局部电磁场中的自发变化的方法和装置及其使用方法
    • US09164594B2
    • 2015-10-20
    • US13700101
    • 2011-05-26
    • Barnabas MoganDon S. Hutcheson
    • Barnabas MoganDon S. Hutcheson
    • G09G5/00G06F3/033G01V9/00
    • G06F3/033G01V9/002
    • A system 300 for sensing spontaneous or localized changes in an electromagnetic field and generating an indication in response comprises an EMF change sensor 320 configured to sense a momentary and localized change in an ambient electromagnetic field and generate an EMF change detection signal in response. An electromagnetic peripheral adapter or EMF typewriter interface circuit 330 is configured to detect the EMF change detection signal generates a selected plurality of momentary communication state-change signals and a mouse signal encoded for communication with a computer 350 which is programmed to generate momentary communication prompts for playback or display and to receive the EMF typewriter Pointer signal. The computer 350 is also programmed to correlate each momentary communication state-change signal encoded in the EMF typewriter Pointer signal with a momentary communication prompt to identify a sensed indicia or command from the EMF change detection signal and to display a command.
    • 用于感测电磁场中的自发或局部变化并产生响应的指示的系统300包括EMF变化传感器320,其被配置为感测环境电磁场中的瞬时和局部变化,并且响应地产生EMF变化检测信号。 电磁外设适配器或EMF打字机接口电路330被配置为检测EMF改变检测信号产生所选择的多个瞬时通信状态改变信号和编码为与计算机350进行通信的鼠标信号,该计算机350被编程为产生瞬时通信提示 播放或显示并接收EMF打字机指针信号。 计算机350还被编程为将在EMF打字机指针信号中编码的每个瞬时通信状态变化信号与瞬时通信提示相关联,以从EMF变化检测信号中识别检测到的标记或命令并显示命令。
    • 9. 发明授权
    • Method and apparatus for selectively extruding and applying a layer of mortar upon a selected surface
    • 用于在所选择的表面上选择性地挤出和施加一层砂浆的方法和装置
    • US09157246B2
    • 2015-10-13
    • US13475754
    • 2012-05-18
    • Douglas S. Campbell
    • Douglas S. Campbell
    • B28B1/00E04G21/20
    • E04G21/202E04G21/204
    • A method for extruding and depositing a slurry or mortar onto a selected work surface uses a mortar gun assembly with a chamber for receiving mortar from a remote supply hopper and an extruder configured to selectively apply a bead or ribbon of mortar of selected thickness onto the work surface. The mortar gun assembly provides mortar from the hopper under pressure and the user selectively applies mortar by controlling a rotating port valve between the hopper and the mortar gun chamber. The rotating port valve provides a “rest state” in which the mortar is not sent to the mortar gun, but is instead re-circulated by the pump back to the hopper so un-dispensed mortar is kept moving and cannot dry or set.
    • 用于将浆料或砂浆挤出和沉积到所选择的工作表面上的方法使用具有用于从远程供料斗接收砂浆的室的砂浆枪组件和被配置为选择性地将选定厚度的砂浆或带状带施加到工件上的挤出机 表面。 砂浆枪组件在压力下从料斗提供砂浆,并且用户通过控制料斗和砂浆枪室之间的旋转端口阀来选择性地施加砂浆。 旋转阀门提供了一个“静止状态”,其中砂浆不被送到砂浆枪,而是被泵重新循环回到料斗,使得未分配的砂浆保持运动并且不能干燥或固化。