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    • 1. 发明授权
    • Avoiding device stressing
    • 避免设备强调
    • US07694243B2
    • 2010-04-06
    • US11964894
    • 2007-12-27
    • Hibourahima CamaraLouis C. HsuJames D. RockrohrKarl D. SelanderHuihao XuSteven J. Zier
    • Hibourahima CamaraLouis C. HsuJames D. RockrohrKarl D. SelanderHuihao XuSteven J. Zier
    • G06F17/50
    • H03K19/00315
    • A system for protecting a weak device operating in micro-electronic circuit and a design structure including the system embodied in a machine readable medium are disclosed. The system includes a high voltage power supply from high voltage overstressing prevents the weak device from failing during power-up, power-down, and when a low voltage power supply in a multiple power supply system is absent. The system further includes a low voltage power supply detection circuit configured to detect circuit power-up, circuit power-down, and when the low voltage power supply is absent, and generate a control signal upon detection. The system further includes a controlled current mirror device configured to provide a trickle current to maintain a conduction channel in the weak device in response to the control signal received from the low voltage power supply detection circuit during circuit power-up, circuit power-down, and when the low voltage power supply is absent.
    • 公开了一种用于保护在微电子电路中操作的弱设备的系统和包括体现在机器可读介质中的系统的设计结构。 该系统包括来自高压过应力的高压电源,防止弱电装置在上电,掉电期间以及当多电源系统中的低电压电源不存在时发生故障。 该系统还包括:低电压电源检测电路,被配置为检测电路上电,电路断电以及当低电压电源不存在时,并在检测时产生控制信号。 该系统还包括被配置为提供涓流电流的受控电流镜装置,以响应于在电路加电,电路断电期间从低电压电源检测电路接收的控制信号来保持弱装置中的导通通道, 并且当低电压电源不存在时。
    • 2. 发明申请
    • AVOIDING DEVICE STRESSING
    • 避免设备压力
    • US20090172614A1
    • 2009-07-02
    • US11964894
    • 2007-12-27
    • Hibourahima CamaraLouis C. HsuJames D. RockrohrKarl D. SelanderHuihao XuSteven J. Zier
    • Hibourahima CamaraLouis C. HsuJames D. RockrohrKarl D. SelanderHuihao XuSteven J. Zier
    • G06F17/50
    • H03K19/00315
    • A system for protecting a weak device operating in micro-electronic circuit and a design structure including the system embodied in a machine readable medium are disclosed. The system includes a high voltage power supply from high voltage overstressing prevents the weak device from failing during power-up, power-down, and when a low voltage power supply in a multiple power supply system is absent. The system further includes a low voltage power supply detection circuit configured to detect circuit power-up, circuit power-down, and when the low voltage power supply is absent, and generate a control signal upon detection. The system further includes a controlled current mirror device configured to provide a trickle current to maintain a conduction channel in the weak device in response to the control signal received from the low voltage power supply detection circuit during circuit power-up, circuit power-down, and when the low voltage power supply is absent.
    • 公开了一种用于保护在微电子电路中操作的弱设备的系统和包括体现在机器可读介质中的系统的设计结构。 该系统包括来自高压过应力的高压电源,防止弱电装置在上电,掉电期间以及当多电源系统中的低电压电源不存在时发生故障。 该系统还包括:低电压电源检测电路,被配置为检测电路上电,电路断电以及当低电压电源不存在时,并在检测时产生控制信号。 该系统还包括被配置为提供涓流电流的受控电流镜装置,以响应于在电路加电,电路断电期间从低电压电源检测电路接收的控制信号来保持弱装置中的导通通道, 并且当低电压电源不存在时。
    • 8. 发明授权
    • Reference current generation system
    • 参考电流发电系统
    • US07132821B2
    • 2006-11-07
    • US11103314
    • 2005-04-11
    • Hibourahima CamaraLouis Lu-Chen HsuKarl D. SelanderMichael A. Sorna
    • Hibourahima CamaraLouis Lu-Chen HsuKarl D. SelanderMichael A. Sorna
    • G05F3/16G05F1/10H03F3/45
    • G05F1/565
    • Systems are provided for generating and distributing a plurality of reference currents on an integrated circuit. More particularly, an integrated circuit is provided which includes a reference current generating system. The reference current generating system includes a first reference current generator disposed at a first location of the integrated circuit which is operable to generate a plurality of first reference currents. A plurality of second reference current generators are disposed at a plurality of second locations of the integrated circuit. Each of the second reference current generators are operable to generate a second reference current from one of the plurality of first reference currents. In a particular example, the first location at which the first reference current generator is disposed is a central location and the second locations are disposed remote from the first location.
    • 提供了用于在集成电路上生成和分配多个参考电流的系统。 更具体地,提供了包括参考电流产生系统的集成电路。 参考电流产生系统包括设置在集成电路的第一位置处的第一参考电流发生器,其可操作以产生多个第一参考电流。 多个第二参考电流发生器设置在集成电路的多个第二位置处。 每个第二参考电流发生器可操作以从多个第一参考电流之一产生第二参考电流。 在特定示例中,设置第一参考电流发生器的第一位置是中心位置,并且第二位置远离第一位置设置。
    • 9. 发明授权
    • Reference current generation system and method
    • 参考电流发电系统及方法
    • US06891357B2
    • 2005-05-10
    • US10249545
    • 2003-04-17
    • Hibourahima CamaraLouis Lu-Chen HsuKarl D. SelanderMichael A. Sorna
    • Hibourahima CamaraLouis Lu-Chen HsuKarl D. SelanderMichael A. Sorna
    • G05F1/565G05F3/16G05F1/10
    • G05F1/565
    • As disclosed herein, systems and methods are provided for generating and distributing a plurality of reference currents on an integrated circuit. In a particular embodiment, an integrated circuit is disclosed which includes a reference current generator adapted to generate a plurality of reference currents. Such circuit includes an operational amplifier coupled to receive, at a first polarity input, a reference voltage, and a first transistor Q1 having a biasing input coupled to an output of the operational amplifier. The first transistor also has an output coupled to a fixed potential through a first resistor R1, and the output of the first transistor Q1 is further coupled as feedback to a second polarity input of the operational amplifier. One or more second transistors Qi are provided in the circuit, each of which has a biasing input coupled to the output of the operational amplifier, and an output coupled to the fixed potential through a respective second resistor Ri. In order to conserve chip area and power, the outputs of the second transistors Qi are not coupled as feedback to the operational amplifier. By the action of the operational amplifier, bias is maintained on the first transistor Q1 and each of the second transistors Qi for each to conduct a reference current Isi.
    • 如本文所公开的,提供了用于在集成电路上产生和分配多个参考电流的系统和方法。 在特定实施例中,公开了一种集成电路,其包括适于产生多个参考电流的参考电流发生器。 这种电路包括运算放大器,耦合以在第一极性输入处接收参考电压,以及具有耦合到运算放大器的输出的偏置输入的第一晶体管Q1。 第一晶体管还具有通过第一电阻器R 1耦合到固定电位的输出,并且第一晶体管Q1的输出进一步耦合到反馈到运算放大器的第二极性输入端。 一个或多个第二晶体管Qi被提供在电路中,每个具有耦合到运算放大器的输出的偏置输入,以及通过相应的第二电阻器R1耦合到固定电位的输出。 为了节省芯片面积和功率,第二晶体管Qi的输出不作为反馈耦合到运算放大器。 通过运算放大器的作用,第一晶体管Q 1和第二晶体管Q i中的每一个都保持偏置来导通参考电流Isi。