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    • 3. 发明授权
    • Machine post-launch configuration and option upgrade
    • 机器后启动配置和选项升级
    • US07321966B2
    • 2008-01-22
    • US10447737
    • 2003-05-29
    • Robert A. KoontzChristian RedderHeiko RommelmannDavid S. ShumanChristian G. Midgley
    • Robert A. KoontzChristian RedderHeiko RommelmannDavid S. ShumanChristian G. Midgley
    • G06F15/177
    • G03G15/5066
    • By providing a secure EEPROM (Electrically Erasable Programmable Read Only Memory) device or other non-volatile memory (NVM) as a system operation key (SOK) to control the configurable machine option attributes, various problems associated with machine option configuration and updates may be accommodated. At initial SOK install the identity of the machine is written to the NVM, i.e. the machine serial number. This is performed during the initial machine power up or reboot sequence. As part of the power on or reboot routine the machine will check to ensure no tampering has taken place and that the machine identity and the NVM serial number location data match. A new swapped in SOK can be installed so long as the NVM serial number location has not been previously written to with a conflicting identification number. The machine will then write the serial number to the new SOK thereby protecting it.
    • 通过提供安全EEPROM(电可擦除可编程只读存储器)装置或其他非易失性存储器(NVM)作为系统操作密钥(SOK)来控制可配置的机器选项属性,与机器选项配置和更新相关的各种问题可能是 容纳 在初始SOK安装时,机器的身份将写入NVM,即机器序列号。 这是在初始机器上电或重启序列期间执行的。 作为上电或重启程序的一部分,机器将检查,以确保没有发生篡改,并且机器标识和NVM序列号位置数据匹配。 只要NVM序列号位置以前没有写入与冲突的识别号码,就可以安装新的SOK交换机。 然后机器将序列号写入新的SOK,从而保护它。
    • 4. 发明授权
    • Wireless machine post-launch configuration and option upgrade
    • 无线机后启动配置和选项升级
    • US07197633B2
    • 2007-03-27
    • US10630048
    • 2003-07-30
    • Heiko RommelmannRobert A. KoontzChristian Redder
    • Heiko RommelmannRobert A. KoontzChristian Redder
    • G06F15/177
    • G06F21/575
    • By providing a secure EEPROM (Electrically Erasable Programmable Read Only Memory) device or other non-volatile memory (NVM) with a wireless interface as a system operation key (SOK) to control the configurable machine option attributes, various problems associated with machine option configuration and updates may be accommodated. At initial SOK install the identity of the machine is written to the NVM, i.e. the machine serial number. This is performed during the initial machine power up or reboot sequence. As part of the power on or reboot routine the machine will check via the wireless interface to ensure no tampering has taken place and that the machine identity and the NVM serial number location data match. A new swapped in SOK can be installed so long as the NVM serial number location has not been previously written to with a conflicting identification number. The machine will then write the serial number to the new SOK thereby protecting it.
    • 通过提供安全的EEPROM(电可擦除可编程只读存储器)设备或具有无线接口的其他非易失性存储器(NVM)作为系统操作密钥(SOK)来控制可配置的机器选项属性,与机器选项配置相关的各种问题 并且可以适应更新。 在初始SOK安装时,机器的身份将写入NVM,即机器序列号。 这是在初始机器上电或重启序列期间执行的。 作为电源或重新启动程序的一部分,机器将通过无线接口进行检查,以确保不会发生篡改,并且机器标识和NVM序列号位置数据匹配。 只要NVM序列号位置以前没有写入与冲突的识别号码,就可以安装新的SOK交换机。 然后机器将序列号写入新的SOK,从而保护它。
    • 5. 发明授权
    • Machine post-launch configuration and option upgrade with master key
    • 机器后启动配置和选项升级与主密钥
    • US07334261B2
    • 2008-02-19
    • US10630076
    • 2003-07-30
    • Robert A. KoontzJames A. LongHeiko Rommelmann
    • Robert A. KoontzJames A. LongHeiko Rommelmann
    • G06F9/00
    • G06F21/629G06F21/57G06F21/575G06Q10/02
    • By providing a secure EEPROM (Electrically Erasable Programmable Read Only Memory) device or other non-volatile memory (NVM) in an arrangement of a master key system operation key (SOK) plus any subsequently installed SOK to control the configurable machine option attributes, various problems associated with machine option configuration and updates may be accommodated. At the initial install of either SOK type the identity of the machine is written to the NVM, i.e. the machine serial number. This is performed during the initial machine power up or reboot sequence. If the SOK type is a subsequently installed SOK, the option code(s) from the subsequently installed SOK are written to the master key SOK. As part of the power on or reboot routine the machine will check to ensure no tampering has taken place and that the machine identity and the NVM serial number location data match. A new swapped in SOK can be installed so long as the NVM serial number location has not been previously written to with a conflicting identification number. The machine will then write the serial number to the new SOK thereby protecting it.
    • 通过在主密钥系统操作密钥(SOK)和任何随后安装的SOK的布置中提供安全EEPROM(电可擦除可编程只读存储器)或其他非易失性存储器(NVM),以及任何随后安装的SOK来控制可配置的机器选项属性,各种 可能会适应与机器选项配置和更新相关的问题。 在初始安装SOK类型时,机器的身份被写入NVM,即机器序列号。 这是在初始机器上电或重启序列期间执行的。 如果SOK类型是随后安装的SOK,则来自随后安装的SOK的选项代码被写入主密钥SOK。 作为上电或重启程序的一部分,机器将检查,以确保没有发生篡改,并且机器标识和NVM序列号位置数据匹配。 只要NVM序列号位置以前没有写入与冲突的识别号码,就可以安装新的SOK交换机。 然后机器将序列号写入新的SOK,从而保护它。
    • 7. 发明授权
    • Thermally activated case venting safety apparatus
    • 热活化箱排气安全装置
    • US5155298A
    • 1992-10-13
    • US769933
    • 1991-09-30
    • Robert A. Koontz
    • Robert A. Koontz
    • F42B39/20
    • F42B39/20
    • A thermally activated case venting safety apparatus is used to minimize theotential for detonation of a warhead or other encased explosive when such item is subjected to excessive thermal environments. An aft end closure plate to a warhead casing is secured using an expandable snap ring with a temperature activated releasing mechanism. The snap ring is expanded using a caliper device with an adjustable slide assembly which adjust the snap ring to the required dimensions. An eutectic solder plug or similar plug is attached to the bottom base of the adjustable slide assembly and holds the snap ring in the expanded position. The plug will melt at a predetermined temperature and thus allow the expandable snap ring to retract. Once the snap ring has retracted, the closure plate will be ejected due to the internal case pressure and the warhead case will vent.
    • 使用热活化的箱体排气安全装置来使得当这些物品经受过多的热环境时,使弹头或其它包裹爆炸物的爆炸的可能性最小化。 使用具有温度启动释放机构的可扩张卡环来确保弹头壳体的后端封闭板。 卡环使用带有可调节滑块组件的卡钳装置进行扩展,可将卡环调整到所需尺寸。 共晶焊塞或类似的插头连接到可调节滑动组件的底部底座并将卡环保持在展开位置。 塞子将在预定温度下熔化,从而允许可扩张卡环缩回。 一旦卡环已经缩回,封闭板将由于内部壳体压力而被弹出,并且弹头壳体将被排出。