On designing linearly tunable high-Q OTA-C filters with low sensitivity
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This paper discusses a design approach for a high-Q low-sensitivity OTA-C biquad bandpass section. An optimal relationship is established between transconductances defining the differenceβ - γ in the Q-factor denominator, setting the Q-sensitivity to tuning voltages around unity. A 30-MHz filter was designed based on a 0.35μn CMOS process and VDD=3.3V. A range of circuit simulation supports the theoretical analysis. Q-factor spans from 20.5 to 60, while ensuring filter stability along the tuning range. Although a Mode-operating OTA is used, the procedure can be extended to other types of transconductor.
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Aspect ratio, CMOS integrated circuits, Computer simulation, Electric potential, Integrated circuit layout, Q factor measurement, Sensitivity analysis, Transconductance, Triodes, Tuning, Biquad loops, Circuit simulation, Filter Designs, Filter stability, Bandpass filters
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Proceedings - IEEE International Symposium on Circuits and Systems, v. 1.