首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Programmable Gm– C Filters Using Floating-Gate Operational Transconductance Amplifiers
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Programmable Gm– C Filters Using Floating-Gate Operational Transconductance Amplifiers

机译:使用浮栅运算跨导放大器的可编程Gm–C滤波器

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We present programmable, fully differential Gm-C second-order sections (SOS) showing tunability over a wide range of frequencies. The SOSs use floating-gate operational transconductance amplifiers (FG-OTAs) to realize tunability. We present two FG programmable OTAs. The OTAs have a pFET input stage and employ current mirror topology. An FG common-mode feedback (CMFB) circuit as well as a conventional CMFB circuit is described for use with these OTAs. Their performance is compared. Expressions are derived for the differential and common-mode frequency response of the OTAs. Typical simulation and experimental results are shown for prototypes fabricated in a 0.5-mum CMOS process available through MOSIS. The prototypes operate from a single 3.3-V supply with typical bias currents in the 10-100-nA range. We present experimental results showing frequency-and Q-tuning for a low-pass SOS (LPSOS) and a bandpass SOS (BPSOS) designed using these FG-OTAs also fabricated in a 0.5-mum CMOS process. Measured 1-dB compression for LPSOS and BPSOS are -15 and -11 dBm, respectively
机译:我们介绍了可编程的全差分Gm-C二阶部分(SOS),显示了在广泛频率范围内的可调性。 SOS使用浮栅运算跨导放大器(FG-OTA)实现可调性。我们介绍了两个FG可编程OTA。 OTA具有pFET输入级并采用电流镜拓扑。描述了与这些OTA一起使用的FG共模反馈(CMFB)电路和常规CMFB电路。比较他们的表现。导出了OTA的差分和共模频率响应的表达式。显示了通过MOSIS提供的采用0.5微米CMOS工艺制造的原型的典型仿真和实验结果。原型采用3.3V单电源供电,典型偏置电流在10-100nA范围内。我们提供的实验结果表明,使用这些FG-OTA设计的低通SOS(LPSOS)和带通SOS(BPSOS)的频率和Q调谐也在0.5微米CMOS工艺中制造。 LPSOS和BPSOS的测得的1-dB压缩分别为-15和-11 dBm

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