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    • 3. 发明授权
    • Device for sensing projectile velocity in an underwater environment
    • 用于在水下环境中感测射弹速度的装置
    • US06563302B1
    • 2003-05-13
    • US09565243
    • 2000-04-28
    • John R. RaposaDaniel P. Thivierge
    • John R. RaposaDaniel P. Thivierge
    • G01P366
    • G01P3/665
    • A device for sensing projectile velocity in an underwater environment is provided. The device includes a plurality of evenly spaced voltage coil members positioned in the path of a projectile. Each voltage coil member includes a support frame having an opening therein and a magnetic coil mounted on the support frame, and a sensing member connected to each support frame. The sensing member includes means for outputting a signal responsive to passage of the projectile through the voltage coil member, and a logic arrangement for determining a difference between passage of the projectile between adjacent ones of said plurality of voltage coil members throughout the run thereof, thereby determining a velocity of the projectile.
    • 提供了一种用于在水下环境中检测弹丸速度的装置。 该装置包括定位在射弹的路径中的多个均匀间隔的电压线圈构件。 每个电压线圈构件包括其中具有开口的支撑框架和安装在支撑框架上的电磁线圈,以及连接到每个支撑框架的感测构件。 感测构件包括用于输出响应于射弹通过电压线圈构件的信号的装置,以及用于确定在其整个行程中在相邻的所述多个电压线圈构件中的射弹之间的差异的逻辑装置,由此 确定射弹的速度。
    • 4. 发明授权
    • Accurately measuring vehicle speed between fixed points of a path
    • 准确测量路径固定点之间的车速
    • US06272443B1
    • 2001-08-07
    • US08771535
    • 1996-12-23
    • Friedrich Motzko
    • Friedrich Motzko
    • G01P366
    • G01P3/803B60W40/068G01P3/66G08G1/052
    • The invention concerns a test procedure for measuring the speed of individual objects, in which the test objects (5) are recorded one after another by three sensors (1, 2, 3) arranged on the trajectory. The time that the test object takes to go the distance from the first sensor (1) to the second sensor (2) is determined by means of a time-interval measuring device controlled by the sensors through the test signals (11a, 11b). The test signal outcome (11b) occurring at the second sensor (2) is stored and, during the recording of the test object through the third sensor (3), cross-correlated with the test signal outcome (11c) occurring at this occasion, whereby a corrected value results through the proposed assessment procedure in real time for the first-recorded time test value, which greatly reduces its test error.
    • 本发明涉及用于测量单个物体的速度的测试程序,其中通过布置在轨迹上的三个传感器(1,2,3)一个接一个地记录测试对象(5)。 测试对象从第一传感器(1)到第二传感器(2)的距离的距离由通过测试信号(11a,11b)由传感器控制的时间间隔测量装置确定。 存储在第二传感器(2)处发生的测试信号结果(11b),并且在通过第三传感器(3)记录测试对象期间与在该场合发生的测试信号结果(11c)交叉相关时, 由此通过建议的评估程序对第一次记录的时间测试值进行实时校正,从而大大降低了测试误差。
    • 5. 发明授权
    • Bow-mounted apparatus for detection and quantification of deviations in dynamic arrow position
    • 弓形装置,用于检测和量化动态箭头位置的偏差
    • US06191574B1
    • 2001-02-20
    • US09008988
    • 1998-01-20
    • John Patrick Dilger
    • John Patrick Dilger
    • G01P366
    • F41B5/14F41B5/1484G01P3/66
    • An apparatus for quantifying the position of a released arrow as it passes across the bow riser. A low power, electronics measurement unit attached onto or mounted internal to a bow in communication with a sensor detects a signal from an arrow shaft for the purposes of collecting data pertaining to arrow position. The electronics measurement unit provides a user configurable gain to control the variation and sensitivity of the collected data. The optical trigger mechanism used to stimulate the sensor does not require arrow shaft modification. Statistical parameters of the collected data are displayed on the bow and are used to determine and improve archery tackle performance.
    • 释放箭头当穿过弓形提升器时的位置的量化装置。 附接到或安装在与传感器通信的弓的内部的低功率电子测量单元检测来自箭头轴的信号,以收集与箭头位置有关的数据。 电子测量单元提供用户可配置的增益,以控制收集的数据的变化和灵敏度。 用于刺激传感器的光学触发机构不需要改变箭头轴。 收集的数据的统计参数显示在弓上,用于确定和提高射箭滑车的性能。
    • 7. 发明授权
    • Underwater high speed projectile speed sensing device
    • 水下高速射弹速度传感装置
    • US06498476B1
    • 2002-12-24
    • US09565234
    • 2000-04-28
    • John R. RaposaDaniel P. Thivierge
    • John R. RaposaDaniel P. Thivierge
    • G01P366
    • F42B35/00G01P3/665
    • A device for sensing projectile velocity in an underwater environment is provided. The device includes a plurality of evenly spaced break screen members positioned in a path of the projectile. Each break screen member includes a support member, a pair of transparent sheets spanning the support member, a continuous resistive trace sandwiched between the transparent sheets, and a sensing member correspondingly connected to each resistive trace. The sensing member includes means for outputting a signal responsive to impact of the projectile against the break screen, and a logic arrangement for determining a difference between impact of at two adjacent break screens throughout the run of break screens, thereby determining a velocity of the projectile.
    • 提供了一种用于在水下环境中检测弹丸速度的装置。 该装置包括定位在射弹的路径中的多个均匀分布的断开屏元件。 每个中断屏幕构件包括支撑构件,跨越支撑构件的一对透明薄片,夹在透明薄片之间的连续电阻迹线以及对应地连接到每个电阻迹线的感测构件。 感测构件包括用于输出响应于弹丸对击穿屏幕的冲击的信号的装置,以及用于确定在断续屏幕整个运行期间两个相邻断裂屏幕的冲击之间的差异的逻辑装置,由此确定射​​弹的速度 。
    • 8. 发明授权
    • Speed sensing circuit for underwater projectiles
    • 水下射弹速度检测电路
    • US06388438B1
    • 2002-05-14
    • US09565235
    • 2000-04-28
    • John R. RaposaDaniel P. Thivierge
    • John R. RaposaDaniel P. Thivierge
    • G01P366
    • G01P3/665
    • A system for sensing projectile velocity and position having a plurality of support members positioned in a path of said projectile. Each support member has an aperture with a resistive trace supported in the aperture. The resistive trace can be separated by the projectile's passage. A sensing circuit is joined to each resistive trace and provides a signal indicating separation of the resistive trace. This signal is provided to a logic circuit which provides a single signal indicating separation of each said resistive trace. A data acquisition system provides an output indicating said projectile velocity and position with respect to time.
    • 一种用于检测射弹速度和位置的系统,其具有定位在所述射弹的路径中的多个支撑构件。 每个支撑构件具有支撑在孔中的电阻迹线的孔。 电阻迹线可以被射弹的通道分开。 感测电路连接到每个电阻迹线,并提供指示电阻迹线分离的信号。 该信号被提供给逻辑电路,其提供指示每个所述电阻迹线的分离的单个信号。 数据采集​​系统提供指示相对于时间的所述射弹速度和位置的输出。