李杨先, 顾晓峰, 浦寿杰, 徐振, 于宗光. 斩波稳定型开关电容积分器的设计[J]. 微电子学与计算机, 2010, 27(5): 153-156.
引用本文: 李杨先, 顾晓峰, 浦寿杰, 徐振, 于宗光. 斩波稳定型开关电容积分器的设计[J]. 微电子学与计算机, 2010, 27(5): 153-156.
LI Yang-xian, GU Xiao-feng, PU Shou-jie, XU Zhen, YU Zong-guang. Design of Chopper-Stabilized Switched-Capacitor Integrator[J]. Microelectronics & Computer, 2010, 27(5): 153-156.
Citation: LI Yang-xian, GU Xiao-feng, PU Shou-jie, XU Zhen, YU Zong-guang. Design of Chopper-Stabilized Switched-Capacitor Integrator[J]. Microelectronics & Computer, 2010, 27(5): 153-156.

斩波稳定型开关电容积分器的设计

Design of Chopper-Stabilized Switched-Capacitor Integrator

  • 摘要: 利用斩波稳定技术,设计了一种用在Σ-Δ调制器中的低噪声全差分开关电容积分器,电路中的运算放大器采用套筒式共源共栅结构.详细分析了开关电容积分器中存在的非理想特性,同时讨论了斩波稳定的原理,在此基础上对积分器中的运算放大器、开关和电容进行了具体设计.经Cadence环境下的Spectre仿真验证,在3.3V电源电压下,运算放大器的单位增益带宽为110MHz,开环直流电压增益达76dB,积分器在14kHz处的等效输入噪声电压为0.2μV·Hz-1/2.

     

    Abstract: A low noise fully differential switched-capacitor integrator used in the Σ-Δ modulator was designed by using the chopper stabilization technology. The telescopic cascode structure was adopted in the operational amplifier. Various nonidealities in the switched-capacitor integrator were analyzed in detail. The principle of chopper stabilization was also discussed. Finally, the detailed designs of the operational amplifier, switches and capacitors in the integrator were completed. The Spectre simulation under the Cadence environment indicates that, at a power supply of 3.3 V, the operational amplifier has a unity-gain bandwidth of 110 MHz, an open-loop gain of 76 dB, and the switched-capacitor integrator has an equivalent input noise voltage of 0.2 μV·Hz-1/2 at 14kHz.

     

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