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    • 1. 发明授权
    • Dual elevation weapon station and method of use
    • 双高程武器站和使用方法
    • US07921762B1
    • 2011-04-12
    • US12660099
    • 2010-02-18
    • James P. Quinn
    • James P. Quinn
    • F41G3/16
    • F41G3/16F41A27/28F41G3/06
    • A gimbaled weapon system (GWS) is disclosed having a sighting system, a control unit, a weapon cradle for receiving a weapon, and an operator interface for the GWS located remotely from the weapon cradle and the sighting system. The weapon cradle is elevated using a first elevation drive. The weapon cradle is co-located with the sighting system as a unit in the GWS. The sighting system includes a thermal video camera and a visible spectrum video camera, the thermal video camera and the visible spectrum video camera each producing a video output. The thermal and visible spectrum video outputs are provided to the operator interface for the GWS for display on a display included in the operator interface.
    • 公开了一种万向武器系统(GWS),其具有瞄准系统,控制单元,用于接收武器的武器支架和用于远离武器支架和瞄准系统的GWS的操作者界面。 武器支架使用第一升降驱动器升高。 武器摇篮与GWS中的瞄准系统是一个单位。 瞄准系统包括热像机和可见光谱摄像机,热摄像机和可见光谱摄像机均产生视频输出。 将热和可见光谱视频输出提供给用于GWS的操作员界面以显示在操作员界面中的显示器上。
    • 2. 发明授权
    • Dual elevation weapon station and method of use
    • 双高程武器站和使用方法
    • US07493846B2
    • 2009-02-24
    • US11800268
    • 2007-05-03
    • James P. Quinn
    • James P. Quinn
    • F41G3/14
    • F41G3/16F41A27/28F41G3/06
    • A gimbaled weapon system (GWS) includes a method of recording target engagement during operation of the GWS. The GWS includes a sighting system, a weapon cradle and a weapon, wherein the weapon cradle is elevated using a first elevation drive. The sighting system is moved in elevation relative to the weapon cradle using a second elevation drive. A visual image of a target is acquired using the sighting system based on signals received from an observation unit located remotely from the GWS. The visual image of the target is recorded on a storage media for later playback for display by the gunner at the observation unit or optionally by a commander at a separate commander observation unit.
    • 万向武​​器系统(GWS)包括在GWS运行期间记录目标参与的方法。 GWS包括瞄准系统,武器摇篮和武器,其中武器支架使用第一升降驱动器升高。 瞄准系统使用第二升降驱动器相对于武器支架移动高度。 基于从远离GWS的观测单元接收的信号,使用瞄准系统获取目标的视觉图像。 目标的视觉图像被记录在存储介质上以供稍后播放,由观察单元上的枪手显示,或者可选地由指挥官在单独的指挥员观察单元处显示。
    • 3. 发明申请
    • Rounds counter remotely located from gun
    • 从枪口远处摆放计数器
    • US20080289485A1
    • 2008-11-27
    • US11805989
    • 2007-05-24
    • James P. QuinnJason L. SeelyeMark PrichardJames T. Dillon
    • James P. QuinnJason L. SeelyeMark PrichardJames T. Dillon
    • F41A35/00
    • F41A19/01
    • A rounds counter for a weapon mount is disclosed. The rounds counter is mounted on the mount in a remote location from the weapon itself, such as to a pedestal supporting a gimbal rotating the weapon mount in azimuth, inside an elevation drive housing, or to other structure. The mounting location is selected to be one where shock loads are relatively high, as compared to other locations on the mount. The rounds counter includes a sensor which senses shock due to the firing of the weapon, such as an accelerometer or strain gauge. The sensor could also be an acoustic transducer. Analog and digital circuitry for processing the sensor signal and to count the firing of the gun is also disclosed. The rounds counter is particularly useful as a common, single rounds counter unit for a weapon mount is adapted to receive and fire a variety of weapons, such as remotely operated weapon mounts mounted to military vehicles and patrol watercraft adapted to receive and fire four different types of guns.
    • 披露了一个用于武器装置的回合计数器。 圆形计数器安装在远离武器本身的位置上的安装座上,诸如支撑支架的支架,该支架将方位角上的武器支架旋转,仰角驱动器外壳内或其他结构。 与安装座上的其他位置相比,安装位置选择为冲击载荷相对较高的位置。 回合计数器包括感测由于诸如加速度计或应变计的武器的射击引起的冲击的传感器。 传感器也可以是声学换能器。 还公开了用于处理传感器信号并计数枪的点火的模拟和数字电路。 回合计数器特别有用,因为用于武器支架的常见的单回计数器单元适于接收和发射各种武器,例如安装在军用车辆上的远程操作的武器支架和适于接收和发射四种不同类型的巡逻船只 的枪支
    • 4. 发明授权
    • Dual elecation weapon station and method of use
    • 双高程武器站和使用方法
    • US07921761B1
    • 2011-04-12
    • US12660097
    • 2010-02-18
    • James P. Quinn
    • James P. Quinn
    • F41G3/16F41G3/06
    • F41G3/16F41A27/28F41G3/06
    • A gimbaled weapon system (GWS) is disclosed having a sighting system, a control unit, a weapon cradle and an operator interface for the GWS located remotely from the weapon cradle and the sighting system. The weapon cradle is elevated using a first elevation drive. The weapon cradle is co-located with the sighting system as a unit in the GWS. The GWS includes a second elevation drive elevating the sighting system independently of the elevation of the weapon cradle by the first elevation drive. A network of multiple, mobile target sensors located remotely from the GWS provide coordinates or location of a target to the control unit of the GWS.
    • 公开了一种万向武器系统(GWS),其具有瞄准系统,控制单元,武器支架和用于远离武器支架和瞄准系统的GWS的操作者接口。 武器支架使用第一升降驱动器升高。 武器摇篮与GWS中的瞄准系统是一个单位。 GWS包括第二升降驱动器,其通过第一升降驱动器独立于武器支架的高度升高瞄准系统。 位于远离GWS的多个移动目标传感器的网络将目标的坐标或位置提供给GWS的控制单元。
    • 5. 发明授权
    • Rounds counter remotely located from gun
    • 从枪口远处摆放计数器
    • US07802391B2
    • 2010-09-28
    • US12586211
    • 2009-09-17
    • James P. QuinnJason L. SeelyeMark PrichardJames T. Dillon
    • James P. QuinnJason L. SeelyeMark PrichardJames T. Dillon
    • F41A9/62
    • F41A19/01
    • A rounds counter for a weapon mount is disclosed. The rounds counter is mounted on the mount in a remote location from the weapon itself, such as to a pedestal supporting a gimbal rotating the weapon mount in azimuth, inside an elevation drive housing, or to other structure. The mounting location is selected to be one where shock loads are relatively high, as compared to other locations on the mount. The rounds counter includes a sensor which senses shock due to the firing of the weapon, such as an accelerometer or strain gauge. The sensor could also be an acoustic transducer. Analog and digital circuitry for processing the sensor signal and to count the firing of the gun is also disclosed. The rounds counter is particularly useful as a common, single rounds counter unit for a weapon mount is adapted to receive and fire a variety of weapons, such as remotely operated weapon mounts mounted to military vehicles and patrol watercraft adapted to receive and fire four different types of guns.
    • 披露了一个用于武器装置的回合计数器。 圆形计数器安装在远离武器本身的位置上的安装座上,诸如支撑支架的支架,该支架将方位角上的武器支架旋转,仰角驱动器外壳内或其他结构。 与安装座上的其他位置相比,安装位置选择为冲击载荷相对较高的位置。 回合计数器包括感测由于诸如加速度计或应变计的武器的射击引起的冲击的传感器。 传感器也可以是声学换能器。 还公开了用于处理传感器信号并计数枪的点火的模拟和数字电路。 回合计数器特别有用,因为用于武器支架的常见的单回计数器单元适于接收和发射各种武器,例如安装在军用车辆上的远程操作的武器支架和适于接收和发射四种不同类型的巡逻船只 的枪支
    • 8. 发明授权
    • Dual elevation weapon station and method of use
    • 双高程武器站和使用方法
    • US07946212B1
    • 2011-05-24
    • US12660037
    • 2010-02-18
    • James P. Quinn
    • James P. Quinn
    • F41G3/18
    • F41G3/16F41A27/28F41G3/06
    • A gimbaled weapon system (GWS) includes a sighting system, a control unit, a weapon cradle for receiving a weapon, and an operator interface for the GWS located remotely from the weapon cradle and the sighting system. The weapon cradle is co-located with the sighting system as a unit in the GWS. The GWS includes four independent axis drives: a first elevation drive for elevating the weapon cradle; a first azimuth drive for rotation the weapon cradle in azimuth; a second elevation drive elevating the sighting system independently of the elevation of the weapon cradle by the first elevation drive; and a second azimuth drive for rotating the sighting system independent of the weapon cradle in azimuth.
    • 万向武​​器系统(GWS)包括瞄准系统,控制单元,用于接收武器的武器支架,以及远离武器支架和瞄准系统的GWS的操作者界面。 武器摇篮与GWS中的瞄准系统是一个单位。 GWS包括四个独立的轴驱动器:用于升高武器支架的第一升降驱动器; 在方位角旋转武器摇篮的第一个方位驱动器; 第二升降驱动器,通过第一升降驱动器独立于武器支架的高度升高瞄准系统; 以及用于在方位角独立于武器支架旋转瞄准系统的第二方位驱动器。
    • 9. 发明授权
    • Rounds counter remotely located from gun
    • 从枪口远处摆放计数器
    • US07614333B2
    • 2009-11-10
    • US11805989
    • 2007-05-24
    • James P. QuinnJason L. SeelyeMark PrichardJames T. Dillon
    • James P. QuinnJason L. SeelyeMark PrichardJames T. Dillon
    • F41F5/00F41A23/00F41A9/53
    • F41A19/01
    • A rounds counter for a weapon mount is disclosed. The rounds counter is mounted on the mount in a remote location from the weapon itself, such as to a pedestal supporting a gimbal rotating the weapon mount in azimuth, inside an elevation drive housing, or to other structure. The mounting location is selected to be one where shock loads are relatively high, as compared to other locations on the mount. The rounds counter includes a sensor which senses shock due to the firing of the weapon, such as an accelerometer or strain gauge. The sensor could also be an acoustic transducer. Analog and digital circuitry for processing the sensor signal and to count the firing of the gun is also disclosed. The rounds counter is particularly useful as a common, single rounds counter unit for a weapon mount is adapted to receive and fire a variety of weapons, such as remotely operated weapon mounts mounted to military vehicles and patrol watercraft adapted to receive and fire four different types of guns.
    • 披露了一个用于武器装置的回合计数器。 圆形计数器安装在远离武器本身的位置上的安装座上,诸如支撑支架的支架,该支架将方位角上的武器支架旋转,仰角驱动器外壳内或其他结构。 与安装座上的其他位置相比,安装位置选择为冲击载荷相对较高的位置。 回合计数器包括感测由于诸如加速度计或应变计的武器的射击引起的冲击的传感器。 传感器也可以是声学换能器。 还公开了用于处理传感器信号并计数枪的点火的模拟和数字电路。 回合计数器特别有用,因为用于武器支架的常见的单回计数器单元适于接收和发射各种武器,例如安装在军用车辆上的远程操作的武器支架和适于接收和发射四种不同类型的巡逻船只 的枪支
    • 10. 发明申请
    • Dual elevation weapon station and method of use
    • 双高程武器站和使用方法
    • US20090139393A1
    • 2009-06-04
    • US12288907
    • 2008-10-23
    • James P. Quinn
    • James P. Quinn
    • F41G5/08
    • F41G3/16F41A27/28F41G3/06
    • A method is described of preventing weapon fire during operation of a self-contained gimbaled weapon system (GWS). The GWS has a sighting system, a weapon and a weapon cradle. The the weapon cradle is elevated by an operator using a first elevation drive and moved in azimuth using an azimuth drive. In the method, the sighting system is moved using a second elevation drive and the azimuth drive to acquire a target based on signals received from a first operator interface and display unit located remotely from the GWS. The method further involves observing target information received from the first operator interface and display unit using a second operator interface and display unit, and overriding operator control of the weapon based on the observation of the second operator interface and display unit to prevent weapon fire for a controlled time interval.
    • 描述了在独立的万向武器系统(GWS)的操作期间防止武器射击的方法。 GWS有瞄准系统,武器和武器摇篮。 武器支架由操作员使用第一升降驱动器升高,并使用方位驱动器在方位角移动。 在该方法中,使用第二升降驱动器和方位驱动器移动瞄准系统,以基于从位于远离GWS的第一操作者接口和显示单元接收的信号来获取目标。 该方法还包括使用第二操作者界面和显示单元来观察从第一操作员接口和显示单元接收到的目标信息,并且基于第二操作员界面和显示单元的观察来覆盖操作员对武器的控制,以防止武器 控制时间间隔。