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    • 3. 发明授权
    • Security system and method
    • 安全系统和方法
    • US07818572B2
    • 2010-10-19
    • US10902683
    • 2004-07-28
    • Roger Green StewartDaniel Noah Paley
    • Roger Green StewartDaniel Noah Paley
    • H04L9/12H04L9/14H04L9/16
    • H04L9/3271H04L63/0428H04L67/02H04L2209/805
    • A first embodiment provides a process and system for simple, secure exchange of random numbers between two devices by combining a random number and a secret code (e.g., password) to generate a first challenge code, extracting the random number using the password at the second device, combining the first random number with a second random number, and returning the combination to the first device, which extracts the second random number from the second challenge code using its first random number. A CRC can be added to authenticate the sender. Another embodiment provides a system and method for generating a seedless pseudo-random number. The Yet another embodiment provides a system and method for generating data encryption coding with variable clocking.
    • 第一实施例提供了一种用于通过组合随机数和密码(例如密码)来简单,安全地交换两个设备之间的随机数的过程和系统,以产生第一质询代码,使用第二个密码的密码提取随机数 将所述第一随机数与第二随机数进行组合,并将所述组合返回到所述第一设备,所述第一设备使用其第一随机数从所述第二询问代码中提取所述第二随机数。 可以添加CRC来验证发件人。 另一实施例提供了一种用于产生无籽伪随机数的系统和方法。 另一个实施例提供了一种用于利用可变计时产生数据加密编码的系统和方法。
    • 5. 发明授权
    • Security system and method
    • 安全系统和方法
    • US09071447B2
    • 2015-06-30
    • US13550422
    • 2012-07-16
    • Roger Green StewartDaniel Noah Paley
    • Roger Green StewartDaniel Noah Paley
    • G06F21/00H04L9/32
    • H04L9/3271H04L63/0428H04L67/02H04L2209/805
    • A method for generating data encryption coding with variable clocking according to one embodiment includes storing a secret code in a first register; storing a locally-generated random number in a second register; storing a second random number generated at a remote device in the second register; extracting bits from the first register; extracting bits from the second register; setting a state of a clock generator in response to one or more bits from each register, the clock generator generating a clock signal controlling operation of the first register, the clock signal varying depending on the state of the clock generator.
    • 根据一个实施例的用于产生具有可变时钟的数据加密编码的方法包括将密码存储在第一寄存器中; 将本地生成的随机数存储在第二寄存器中; 将在远程设备产生的第二随机数存储在所述第二寄存器中; 从第一寄存器提取位; 从第二寄存器提取位; 响应于来自每个寄存器的一个或多个位设置时钟发生器的状态,时钟发生器产生控制第一寄存器的操作的时钟信号,时钟信号根据时钟发生器的状态而变化。
    • 7. 发明授权
    • Battery activation circuit
    • 电池启动电路
    • US07612652B2
    • 2009-11-03
    • US11007973
    • 2004-12-08
    • Roger Green StewartDaniel Noah Paley
    • Roger Green StewartDaniel Noah Paley
    • H04Q5/22
    • G06K19/0705G06K19/0707G06K19/0712G06K19/0723
    • A system and method for selectively activating a device based on an activate command. A circuit, in low power mode, listens for an activate command. The activate command includes a preamplifer centering sequence, an interrupt signal, and an activate code. The circuit receives a signal that may or may not be an activate command, self-biases the signal based on the preamplifer centering in the preamp/gain control, then determines whether the interrupt signal is of the proper length in the interrupt circuit. If the interrupt is not the proper length, the process stops. If it is the proper length, the command is recognized as an activate command, and a data slicer compares the activate code to a prestored value. If the activate code matches the prestored value, the device is powered up. If they do not match, the device is not initiated.
    • 一种用于基于激活命令选择性地激活设备的系统和方法。 在低功率模式下的电路监听激活命令。 激活命令包括前置放大器对中序列,中断信号和激活码。 该电路接收可能激活命令或不是激活命令的信号,根据前置放大器/增益控制中的前置放大器定心自身偏置信号,然后确定中断信号在中断电路中是否具有合适的长度。 如果中断不正确的长度,程序停止。 如果它是适当的长度,则该命令被识别为激活命令,并且数据限幅器将激活代码与预存值进行比较。 如果激活码与预先存储的值相匹配,则设备通电。 如果它们不匹配,则不启动该设备。