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Differential charge-domain bilinear-Z switched-capacitor pseudo-N-path filters

机译:差分电荷域双线性Z开关电容器伪N路径滤波器

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The charge-domain bilinear-Z transformation is used in conjunction with a fully-differential pseudo-N-path filter design to create a design that has strong potential in the high-frequency bandpass domain. Both low-pass and high-pass N-path designs are examined theoretically and relative comparisons made of component and op-amp gain-sensitivity. Analysis by SWITCAP of component-sensitivity shows that the largest frequency-varying sensitivity is 0.064 dB per 1% component variation. A discrete prototype HP-two-path differential stray-insensitive filter was built as a test vehicle. Results are presented for a design with a bandpass center-frequency of two kHz and a bandwidth of 20 Hz. The clock feedthrough noise was shifted out of the passband by the use of z to z/sup -N/ transformation. Mirror frequency components were found to be about 55 dB below the signal level.
机译:电荷域双线性Z变换与全差分伪N路径滤波器设计结合使用,可创建在高频带通域中具有强大潜力的设计。理论上检查了低通和高通N路径设计,并比较了组件和运算放大器的增益灵敏度。通过SWITCAP对分量灵敏度的分析表明,每1%分量变化的最大频率变化灵敏度为0.064 dB。离散的原型HP两路差分杂散不敏感滤波器被构建为测试工具。给出了带通中心频率为2 kHz,带宽为20 Hz的设计结果。通过使用z到z / sup -N /变换,将时钟馈通噪声移出了通带。发现镜频分量比信号电平低约55 dB。

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