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A supply-scalable differential amplifier with pulse-controlled common-mode feedback

机译:具有脉冲控制共模反馈的电源可扩展差分放大器

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This paper proposes a pulse-controlled common-mode feedback circuit for a supply-scalable fully-differential amplifier. The pulse-controlled common-mode feedback circuit overcomes the large area cost associated with a conventional R-C common-mode feedback circuit while maintaining high gain and large output signal range of the amplifier. The amplifier is implemented in low power/leakage 65nm CMOS technology with NMOS and PMOS threshold voltages of 0.36V and −0.44V and operates at a supply voltage from 0.6V to 1.2V. The prototype has an active area of 0.01mm and consumes 1.21mW at 0.6V, 1.94mW at 0.9V and 3.07mW at 1.2V. The measured output noise spectrum density is 21.5nV/ √Hz at 0.6V, 26.1nV/√Hz at 0.9V and 30.3nV/√Hz at 1.2V. For a total harmonic distortion of 1%, the maximum signal of the amplifier with frequency 10MHz is measured as −2.3dBm at 0.6V, 3.8dBm at 0.9V and 6.1dBm at 1.2V; as expected, the linearity of the amplifier depends on its signal headroom which scales with the supply voltage.
机译:本文提出了一种用于电源可缩放的全差分放大器的脉冲控制共模反馈电路。脉冲控制共模反馈电路克服了与常规R-C共模反馈电路相关的大面积成本,同时保持了放大器的高增益和大输出信号范围。该放大器采用低功耗/漏电65nm CMOS技术实现,具有0.36V和-0.44V的NMOS和PMOS阈值电压,并在0.6V至1.2V的电源电压下工作。该原型的有效面积为0.01mm,0.6V时的功耗为1.21mW,0.9V时的功耗为1.94mW,1.2V时的功耗为3.07mW。测得的输出噪声频谱密度在0.6V时为21.5nV /√Hz,在0.9V时为26.1nV /√Hz,在1.2V时为30.3nV /√Hz。对于总谐波失真为1%的情况,频率为10MHz的放大器的最大信号在0.6V时测得为-2.3dBm,在0.9V时测得为3.8dBm,在1.2V时测得为6.1dBm。如预期的那样,放大器的线性度取决于其信号裕量,该裕量随电源电压变化。

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