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    • 25. 发明申请
    • Voltage Regulator Module with Power Gating and Bypass
    • 具有电源门控和旁路的稳压器模块
    • US20120119717A1
    • 2012-05-17
    • US12944392
    • 2010-11-11
    • Pradip BoseAlper BuyuktosunogluHans M. JocobsonSeongwon Kim
    • Pradip BoseAlper BuyuktosunogluHans M. JocobsonSeongwon Kim
    • G05F1/10
    • G05F1/575G05F1/565
    • Mechanisms are provided for either power gating or bypassing a voltage regulator. Responsive to receiving an asserted power gate signal to power gate the output voltage of the voltage regulator, at least one of first control circuitry power gates the output voltage of a first circuit or second control circuitry power gates the output voltage of a second circuit such that substantially no voltage to is output by the first circuit to a primary output node. Responsive to receiving an asserted bypass signal to bypass the output voltage of the voltage regulator, at least one of the first control circuitry bypasses the output voltage of the first circuit or the second control circuitry bypasses the output voltage of a second circuit such that substantially the voltage of a voltage source is output by the first circuit to the primary output node.
    • 提供电源门控或旁路电压调节器的机制。 响应于接收到被断言的电源门信号以对所述电压调节器的输出电压进行电源门控,第一控制电路电源的至少一个功率门是第一电路或第二控制电路电路的输出电压门控第二电路的输出电压,使得 基本上没有电压被第一电路输出到主输出节点。 响应于接收断言的旁路信号以绕过电压调节器的输出电压,第一控制电路中的至少一个旁路第一电路或第二控制电路的输出电压旁路第二电路的输出电压,使得基本上 电压源的电压由第一电路输出到主输出节点。
    • 27. 发明授权
    • Self-synchronizing pseudorandom bit sequence checker
    • 自同步伪随机比特序列检验器
    • US07757142B2
    • 2010-07-13
    • US12174327
    • 2008-07-16
    • Mohit KapurSeongwon Kim
    • Mohit KapurSeongwon Kim
    • G01R31/28G06F11/00
    • H04L1/242
    • Self-synchronizing techniques for checking the accuracy of a pseudorandom bit sequence (PRBS) are provided. The PRBS being checked may be generated by a device (e.g., a device under test) in response to a PRBS received by the device (e.g., from a PRBS generator). In an aspect of the invention, a PRBS checking technique includes the following steps/operations. For a given clock cycle, the presence of an error bit in the PRBS generated by the device is detected. The error bit represents a mismatch between the PRBS input to the device and the PRBS output from the device. Then, propagation of the error bit is prohibited for subsequent clock cycles. The prohibition step/operation may serve to avoid multiple errors being counted for a single error occurrence and/or masking errors in the PRBS output by the device.
    • 提供了用于检查伪随机比特序列(PRBS)的准确性的自同步技术。 被检查的PRBS可以由设备(例如,被测设备)响应于设备接收的PRBS(例如,从PRBS生成器)生成。 在本发明的一个方面,PRBS检查技术包括以下步骤/操作。 对于给定的时钟周期,检测到由设备产生的PRBS中存在错误位。 错误位表示设备的PRBS输入与设备的PRBS输出之间的不匹配。 然后,错误位的传播在后续的时钟周期被禁止。 禁止步骤/操作可以用于避免针对设备的PRBS输出中的单个错误发生和/或屏蔽错误而计数多个错误。
    • 28. 发明申请
    • Self-Synchronizing Pseudorandom Bit Sequence Checker
    • 自同步伪随机比特序列检测器
    • US20080276139A1
    • 2008-11-06
    • US12174327
    • 2008-07-16
    • Mohit KapurSeongwon Kim
    • Mohit KapurSeongwon Kim
    • G01R31/3177G06F11/25
    • H04L1/242
    • Self-synchronizing techniques for checking the accuracy of a pseudorandom bit sequence (PRBS) are provided. The PRBS being checked may be generated by a device (e.g., a device under test) in response to a PRBS received by the device (e.g., from a PRBS generator). In an aspect of the invention, a PRBS checking technique includes the following steps/operations. For a given clock cycle, the presence of an error bit in the PRBS generated by the device is detected. The error bit represents a mismatch between the PRBS input to the device and the PRBS output from the device. Then, propagation of the error bit is prohibited for subsequent clock cycles. The prohibition step/operation may serve to avoid multiple errors being counted for a single error occurrence and/or masking errors in the PRBS output by the device.
    • 提供了用于检查伪随机比特序列(PRBS)的准确性的自同步技术。 被检查的PRBS可以由设备(例如,被测设备)响应于设备接收的PRBS(例如,从PRBS生成器)生成。 在本发明的一个方面,PRBS检查技术包括以下步骤/操作。 对于给定的时钟周期,检测到由设备产生的PRBS中存在错误位。 错误位表示设备的PRBS输入与设备的PRBS输出之间的不匹配。 然后,错误位的传播在后续的时钟周期被禁止。 禁止步骤/操作可以用于避免针对设备的PRBS输出中的单个错误发生和/或屏蔽错误而计数多个错误。