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    • 1. 发明申请
    • System and method for limiting the size of a local storage of a processor
    • 用于限制处理器的本地存储器的大小的系统和方法
    • US20070043926A1
    • 2007-02-22
    • US11208376
    • 2005-08-19
    • Adam BurnsMichael DayBrian FlachsH. HofsteeCharles JohnsJohn Liberty
    • Adam BurnsMichael DayBrian FlachsH. HofsteeCharles JohnsJohn Liberty
    • G06F12/00
    • G06F12/0661G06F12/0223
    • A system and method for limiting the size of a local storage of a processor are provided. A facility is provided in association with a processor for setting a local storage size limit. This facility is a privileged facility and can only be accessed by the operating system running on a control processor in the multiprocessor system or the associated processor itself. The operating system sets the value stored in the local storage limit register when the operating system initializes a context switch in the processor. When the processor accesses the local storage using a request address, the local storage address corresponding to the request address is compared against the local storage limit size value in order to determine if the local storage address, or a modulo of the local storage address, is used to access the local storage.
    • 提供了用于限制处理器的本地存储器的大小的系统和方法。 与用于设置本地存储大小限制的处理器相关联地提供设施。 该设施是一种特权设施,只能由在多处理器系统或相关处理器本身的控制处理器上运行的操作系统访问。 当操作系统初始化处理器中的上下文切换时,操作系统设置存储在本地存储限制寄存器中的值。 当处理器使用请求地址访问本地存储器时,将与请求地址相对应的本地存储地址与本地存储限制大小值进行比较,以便确定本地存储地址或本地存储地址的模数是否为 用于访问本地存储。
    • 3. 发明授权
    • Ground offset monitor and compensator
    • 接地偏移监视器和补偿器
    • US09151783B2
    • 2015-10-06
    • US13457087
    • 2012-04-26
    • Edvard MkrtchyanDino Anthony ToffolonAdam Burns
    • Edvard MkrtchyanDino Anthony ToffolonAdam Burns
    • H04L25/06G01R19/10G06F1/26
    • G01R15/12G01R17/00G01R19/10G06F1/266H04L25/061
    • Methods and systems are described for monitoring and compensating an offset between a reference voltage used in a first device and a corresponding reference voltage used in a second device. The first device can include offset circuitry. The offset circuitry receives two voltage signals. The first voltage signal is equal to a first voltage value that is used as a reference voltage in the first device. The second voltage signal can be a time-varying voltage signal that has a known relationship with a second voltage value that is used as a reference voltage in the second device. The offset circuitry can then determine the second voltage value from the second voltage signal, and output an offset value based on a difference between the first voltage value and the second voltage value.
    • 描述了用于监测和补偿在第一装置中使用的参考电压与在第二装置中使用的相应参考电压之间的偏移的方法和系统。 第一设备可以包括偏移电路。 偏移电路接收两个电压信号。 第一电压信号等于在第一装置中用作参考电压的第一电压值。 第二电压信号可以是与在第二装置中用作参考电压的第二电压值具有已知关系的时变电压信号。 偏移电路然后可以从第二电压信号确定第二电压值,并且基于第一电压值和第二电压值之间的差输出偏移值。
    • 4. 发明申请
    • FRACTIONAL FREQUENCY DIVISION OR MULTIPLICATION USING AN OVERSAMPLED PHASE ROTATOR
    • 使用超级相位旋转器的部分频率分段或多路复用
    • US20120294336A1
    • 2012-11-22
    • US13108878
    • 2011-05-16
    • Adam BurnsDino Anthony Toffolon
    • Adam BurnsDino Anthony Toffolon
    • H04B1/38H03H11/20
    • H03L7/18H03L7/081
    • Circuits and systems for generating multiple frequencies are disclosed. In some embodiments, a circuit can include a first node, a second node, and a programmable phase rotator. The first node can receive a first signal having frequency f1, and the second node can output a second signal having frequency f2 that is different from f1. In some embodiments, a frequency divider can generate a third signal having frequency f3 based on the second signal. In some embodiments, a frequency divider can generate the first signal based on a reference signal having frequency f4. The programmable phase rotator can be capable of updating, at an update frequency that is substantially equal to f1 and/or f4, a phase difference between the first signal and the second signal. In some embodiments, the circuit can be part of a USB (Universal Serial Bus) 3.0 physical layer (PHY) circuit.
    • 公开了用于产生多个频率的电路和系统。 在一些实施例中,电路可以包括第一节点,第二节点和可编程相位旋转器。 第一节点可以接收具有频率f1的第一信号,并且第二节点可以输出具有与f1不同的频率f2的第二信号。 在一些实施例中,分频器可以基于第二信号产生具有频率f 3的第三信号。 在一些实施例中,分频器可以基于具有频率f4的参考信号来产生第一信号。 可编程相位旋转器能够以基本上等于f1和/或f4的更新频率更新第一信号和第二信号之间的相位差。 在一些实施例中,电路可以是USB(通用串行总线)3.0物理层(PHY)电路的一部分。
    • 5. 发明授权
    • Fractional frequency division or multiplication by using an oversampled phase rotator for reducing jitter
    • 通过使用过采样相位旋转器进行分数分频或乘法,以减少抖动
    • US08656203B2
    • 2014-02-18
    • US13108878
    • 2011-05-16
    • Adam BurnsDino Anthony Toffolon
    • Adam BurnsDino Anthony Toffolon
    • G06F1/08
    • H03L7/18H03L7/081
    • Circuits and systems for generating multiple frequencies are disclosed. In some embodiments, a circuit can include a first node, a second node, and a programmable phase rotator. The first node can receive a first signal having frequency f1, and the second node can output a second signal having frequency f2 that is different from f1. In some embodiments, a frequency divider can generate a third signal having frequency f3 based on the second signal. In some embodiments, a frequency divider can generate the first signal based on a reference signal having frequency f4. The programmable phase rotator can be capable of updating, at an update frequency that is substantially equal to f1 and/or f4, a phase difference between the first signal and the second signal. In some embodiments, the circuit can be part of a USB (Universal Serial Bus) 3.0 physical layer (PHY) circuit.
    • 公开了用于产生多个频率的电路和系统。 在一些实施例中,电路可以包括第一节点,第二节点和可编程相位旋转器。 第一节点可以接收具有频率f1的第一信号,并且第二节点可以输出具有与f1不同的频率f2的第二信号。 在一些实施例中,分频器可以基于第二信号产生具有频率f 3的第三信号。 在一些实施例中,分频器可以基于具有频率f4的参考信号来产生第一信号。 可编程相位旋转器能够以基本上等于f1和/或f4的更新频率更新第一信号和第二信号之间的相位差。 在一些实施例中,电路可以是USB(通用串行总线)3.0物理层(PHY)电路的一部分。
    • 6. 发明申请
    • GROUND OFFSET MONITOR AND COMPENSATOR
    • 接地偏移监视器和补偿器
    • US20130285641A1
    • 2013-10-31
    • US13457087
    • 2012-04-26
    • Edvard MkrtchyanDino Anthony ToffolonAdam Burns
    • Edvard MkrtchyanDino Anthony ToffolonAdam Burns
    • G01R19/00
    • G01R15/12G01R17/00G01R19/10G06F1/266H04L25/061
    • Methods and systems are described for monitoring and compensating an offset between a reference voltage used in a first device and a corresponding reference voltage used in a second device. The first device can include offset circuitry. The offset circuitry receives two voltage signals. The first voltage signal is equal to a first voltage value that is used as a reference voltage in the first device. The second voltage signal can be a time-varying voltage signal that has a known relationship with a second voltage value that is used as a reference voltage in the second device. The offset circuitry can then determine the second voltage value from the second voltage signal, and output an offset value based on a difference between the first voltage value and the second voltage value.
    • 描述了用于监测和补偿在第一装置中使用的参考电压与在第二装置中使用的相应参考电压之间的偏移的方法和系统。 第一设备可以包括偏移电路。 偏移电路接收两个电压信号。 第一电压信号等于在第一装置中用作参考电压的第一电压值。 第二电压信号可以是与在第二装置中用作参考电压的第二电压值具有已知关系的时变电压信号。 偏移电路然后可以从第二电压信号确定第二电压值,并且基于第一电压值和第二电压值之间的差输出偏移值。