会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明授权
    • Method and device for matrix of explosive cells
    • 爆炸细胞基质的方法和装置
    • US08119958B2
    • 2012-02-21
    • US12389271
    • 2009-02-19
    • Christian AdamsKenneth S. GurleyTara Y. RohterPatrick A. Nelson
    • Christian AdamsKenneth S. GurleyTara Y. RohterPatrick A. Nelson
    • F42B15/01H01H37/76F42B15/00
    • F42B10/661F41G7/30
    • A matrix of explosive cells can include plural explosive cells formed in an array in a common substrate. Each cell can be formed as a recess filled with explosive material. An ignition device has an addressable ignition source for each cell. This matrix can be used in combination with a projectile guidance system. The projectile guidance system includes an antenna, a transceiver and a control processor. A method of guiding a projectile can include firing a projectile at a target, tracking the projectile and the target, determining a desired change in a flight path of the projectile, transmitting guidance commands to effect the desired change in the projectile's flight path to the projectile, receiving the guidance commands onboard the projectile and selectively igniting an explosive cell in a matrix of addressable explosive cells contained in a common substrate using the guidance commands.
    • 爆炸性细胞的基质可以包括在共同的基底中以阵列形成的多个爆炸细胞。 每个电池可以形成为充满爆炸性材料的凹槽。 点火装置具有用于每个电池的可寻址点火源。 该矩阵可与射弹引导系统结合使用。 射弹引导系统包括天线,收发器和控制处理器。 引导射弹的方法可以包括在目标射击射弹,跟踪射弹和目标,确定射弹飞行路径中所需的变化,传递指导命令,以实现弹丸对射弹飞行路径的期望变化 接收射弹的引导命令,并使用引导命令选择性地点燃容纳在共同的基底中的可寻址的爆炸性细胞的矩阵中的爆炸性细胞。
    • 16. 发明申请
    • METHOD AND DEVICE FOR MATRIX OF EXPLOSIVE CELLS
    • 爆炸细胞矩阵的方法和装置
    • US20120012690A1
    • 2012-01-19
    • US12389271
    • 2009-02-19
    • Christian AdamsKenneth S. GurleyTara Y. RohterPatrick A. Nelson
    • Christian AdamsKenneth S. GurleyTara Y. RohterPatrick A. Nelson
    • F42B15/00F42B3/12F42B12/44F42B3/00F42C11/00F41G7/00
    • F42B10/661F41G7/30
    • A matrix of explosive cells can include plural explosive cells formed in an array in a common substrate. Each cell can be formed as a recess filled with explosive material. An ignition device has an addressable ignition source for each cell. This matrix can be used in combination with a projectile guidance system. The projectile guidance system includes an antenna, a transceiver and a control processor. A method of guiding a projectile can include firing a projectile at a target, tracking the projectile and the target, determining a desired change in a flight path of the projectile, transmitting guidance commands to effect the desired change in the projectile's flight path to the projectile, receiving the guidance commands onboard the projectile and selectively igniting an explosive cell in a matrix of addressable explosive cells contained in a common substrate using the guidance commands.
    • 爆炸性细胞的基质可以包括在共同的基底中以阵列形成的多个爆炸细胞。 每个电池可以形成为充满爆炸性材料的凹槽。 点火装置具有用于每个电池的可寻址点火源。 该矩阵可与射弹引导系统结合使用。 射弹引导系统包括天线,收发器和控制处理器。 引导射弹的方法可以包括在目标射击射弹,跟踪射弹和目标,确定射弹飞行路径中所需的变化,传递指导指令,以实现弹丸对射弹飞行路径的期望变化 接收射弹的引导命令,并使用引导命令选择性地点燃容纳在共同的基底中的可寻址的爆炸性细胞的矩阵中的爆炸性细胞。
    • 17. 发明授权
    • Nanostructured combination key-lock
    • 纳米结构组合键锁
    • US07667570B1
    • 2010-02-23
    • US11128505
    • 2005-05-12
    • Christian Adams
    • Christian Adams
    • G06F7/04
    • G07C9/00706G07C9/00722Y10T70/424Y10T70/5066Y10T70/5279
    • A lock and key mechanism comprising a sensor detecting friction between first and second nanostructured surfaces and a controller receiving output from the sensor and comparing same to stored values. Also a method for activating or deactivating a lock comprising providing a first nanostructured surface, causing a second nanostructured surface to frictionally interact with the first nanostructured surface, sensing the interaction with a sensor, the sensor producing an output signal, and via a controller comparing the sensor output signal to a reference signal.
    • 一种锁和键机构,包括检测第一和第二纳米结构表面之间的摩擦的传感器以及接收来自传感器的输出并将其与存储值进行比较的控制器。 还有一种用于激活或去激活锁的方法,包括提供第一纳米结构化表面,使得第二纳米结构化表面与第一纳米结构化表面摩擦相互作用,感测与传感器的相互作用,传感器产生输出信号,以及经由控制器比较 传感器输出信号到参考信号。