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    • 1. 发明申请
    • BALLISTIC RANGING METHODS AND SYSTEMS FOR INCLINED SHOOTING
    • 用于嵌入式拍摄的弹道测距方法和系统
    • US20070137088A1
    • 2007-06-21
    • US11555591
    • 2006-11-01
    • Victoria PetersTim LesserAndrew YorkRick Regan
    • Victoria PetersTim LesserAndrew YorkRick Regan
    • F41G1/00
    • F41G3/02F41G1/473F41G3/06F41G3/08F41G3/142
    • A method for shooting a projectile weapon involves determining the inclination of a line of sight from a vantage point to a target and a line-of-sight range to the target, then predicting a trajectory parameter at the line-of-sight range, for a preselected projectile. Using the trajectory parameter, an equivalent horizontal range may then be determined, wherein the equivalent horizontal range is the range at which the trajectory parameter would be expected to occur if the projectile were shot from the vantage point toward a theoretical target located in a horizontal plane intersecting the vantage point. The equivalent horizontal range may be utilized to compensate for ballistic drop when shooting the projectile weapon. The method may be embodied in a handheld laser rangefinder including a memory for storing ballistic data. Systems for automatic hold over adjustment in a weapon aiming device are also disclosed.
    • 拍摄射弹武器的方法包括确定从有利位置到目标的视线的倾斜度和到目标的视线范围,然后预测视线范围内的轨迹参数,以便 预选弹丸 使用轨迹参数,则可以确定等效的水平范围,其中等效的水平范围是如果将射弹从有利位置朝向位于水平面中的理论目标射出的,则期望发生轨迹参数的范围 与有利位置相交。 可以利用等效的水平范围来补偿射弹时的弹道降落。 该方法可以体现在包括用于存储弹道数据的存储器的手持激光测距仪中。 还公开了用于武器瞄准装置中的自动保持调节的系统。
    • 2. 发明授权
    • Portable water heating system
    • 便携式供热系统
    • US5417201A
    • 1995-05-23
    • US162453
    • 1993-12-03
    • Mark A. ThomasRick ReganGordon Craft
    • Mark A. ThomasRick ReganGordon Craft
    • F24H1/06F24H1/00
    • F24H1/06Y10T137/86823
    • A portable thermosyphon water heating system for use by outdoor enthusiasts, or others at locations remote from a conventional supply of hot water. Water is heated by an open campfire flame in an enclosed heat exchanger, and is circulated between the heat exchanger and a portable non-pressurized reservoir by thermosyphon action. The hot water returning to the reservoir is discharged through a floating transfer conduit assembly, so the discharge rises and falls with the water level in the reservoir. The floating nature of the hot water return allows the majority of water within the reservoir to be used before refilling is needed, while maintaining thermosyphon action. A method of heating a liquid using the system described above is also provided, along with a retrofit apparatus for retrofitting existing reservoirs to use the thermosyphon principles and components of the present invention.
    • 便携式热虹吸管供热系统,供户外爱好者或其他远离传统热水供应地点使用。 水通过封闭式热交换器中的开放的篝火火焰加热,并通过热虹吸作用在热交换器和便携式非加压储存器之间循环。 返回水库的热水通过浮动传输管道组件排出,因此排放随着水库中的水位而上升和下降。 热水回流的浮动特性允许在需要重新填充之前使用储存器内的大部分水,同时保持热虹吸作用。 还提供了使用上述系统加热液体的方法,以及用于改造现有储存器以使用本发明的热虹吸原理和组件的改进装置。
    • 3. 发明授权
    • Replaceable battery module
    • 可更换电池模块
    • US06359418B1
    • 2002-03-19
    • US09596600
    • 2000-06-19
    • Rick ReganVictoria J. PetersWayne Perley
    • Rick ReganVictoria J. PetersWayne Perley
    • H02J700
    • H01M2/0202F41G11/003H01M2/022H01M2/0257H01M2/1055H01M2/30H01M2/342
    • A replaceable battery module for a battery-powered device includes a protective conductive canister sized to receive an electric storage battery. A conductive contact extends through an aperture of the canister for contacting a first terminal of the battery. A second terminal of the battery is electrically contacted by the canister. A preferred configuration of the canister and contact allow both of the terminals of the battery to be accessed from one end of the battery module. A seal is positioned between the canister and the contact for electrically insulating them and for sealing the aperture to prevent leakage of the battery beyond the battery module. A socket for electrically contacting the battery module is formed by a power input terminal assembly mounted within a battery-receiving cavity of a battery-powered device. The power input terminal includes a positive input terminal and a negative input terminal positioned to contact the respective conductive contact and canister of the battery module when the battery module is installed in the battery-powered device and urged toward the input terminals.
    • 用于电池供电装置的可替换电池模块包括尺寸适于接收蓄电池的保护性导电罐。 导电接触件延伸通过罐的孔,用于接触电池的第一端子。 电池的第二端子被罐电接触。 罐和触点的优选配置允许从电池模块的一端访问电池的两个端子。 密封件位于罐和接触件之间,用于将它们电绝缘并密封孔口,以防止电池泄漏到电池模块之外。 用于电接触电池模块的插座由安装在电池供电装置的电池容纳腔内的电力输入端子组件形成。 电源输入端子包括正极输入端子和负极输入端子,当将电池模块安装在电池供电的装置中并被朝向输入端子时,负极输入端子定位成与电池模块的各个导电接触件和罐体接触。
    • 4. 发明申请
    • CARRIAGE FOR OPTICAL ELEMENTS IN AN OPTICAL TELESCOPE
    • 运输光学元件在光学电缆
    • US20060193038A1
    • 2006-08-31
    • US11381057
    • 2006-05-01
    • Rick ReganRodney OttemanErik Halverson
    • Rick ReganRodney OttemanErik Halverson
    • G02B23/08G02B23/22
    • G02B23/16G02B7/04G02B23/02
    • A compact spotting scope includes a housing with an outer surface having a grasping region sized and shaped to fit in the palm of a user's hand so that the spotting scope can be held at eye level with one hand in an ergonomic arm and wrist position for steady support. An optical element positioned within the housing is adjusted by manually rotating a side-mounted adjustment knob that extends laterally from the outer surface of the housing opposite the grasping region. The side-mounted position of the adjustment knob allows the arm and wrist of the focusing hand to be maintained in an ergonomic position during manipulation of the adjustment knob, thereby further facilitating steady support. An internal support member of the spotting scope includes a frame portion and a generally tubular portion, which are preferably formed together of unitary one-piece construction for aligning optical elements of the spotting scope.
    • 紧凑的检测范围包括具有外表面的壳体,外壳具有抓握区域,其尺寸和形状适于装配在使用者的手掌中,使得点眼范围可以用一只手保持在眼睛水平,其中一只手在人体工程学臂和手腕位置用于稳定 支持。 通过手动旋转侧面安装的调节旋钮来调节定位在壳体内的光学元件,该侧面安装的调节旋钮从外壳的与抓握区域相对的外表面横向延伸。 调节旋钮的侧面安装位置允许在操纵调节旋钮期间将聚焦手的手臂和手腕保持在人体工程学位置,从而进一步促进稳定的支撑。 点样镜的内部支撑构件包括框架部分和大致管状部分,其优选地形成为一体的单件结构,用于对准点样范围的光学元件。