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Analysis of circuit conditions for optimum intermodulation and gain in bipolar cascomp amplifiers with non-ideal error correction

机译:分析具有非理想误差的双极cascomp放大器中最佳互调和增益的电路条件

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摘要

The cascoded-compensation or `Cascomp' amplifier offers excellent distortion reduction and thermal distortion rejection, but has not seen widespread use because of a limited gain and increased complexity compared with other topologies. The original theory showed that with the addition of an ideal error amplifier the circuit will completely compensate distortion for suitably chosen degeneration and bias values. This research presents a new, rigorous mathematical proof for conditions of compensation. The authors further develop the proof to include the non-idealities of the error amplifier. It is shown that there exists a second bias point, not exposed by the original analysis that offers improved gain while maintaining distortion cancellation. By reducing the error amplifier degeneration resistance, one can increase a Cascomp circuit's overall gain by several dB while maintaining theoretically perfect distortion compensation. A robust bias point is proposed, which takes the advantage of this new theory by optimising circuit values resulting in a comparatively broader and deeper third-order distortion null. The proposed theory is confirmed with simulation and measurement that show agreement within the bounds of process and component error limits.
机译:级联补偿或“ Cascomp”放大器可提供出色的失真降低和热失真抑制性能,但由于增益有限且与其他拓扑结构相比复杂性尚未得到广泛应用。原始理论表明,通过添加理想误差放大器,电路将针对适当选择的退化和偏置值完全补偿失真。这项研究为补偿条件提出了一个新的,严格的数学证明。作者进一步开发了包括误差放大器的非理想性的证明。结果表明,存在第二个偏置点,该偏置点未被原始分析所暴露,该偏置点在保持失真消除的同时提供了改善的增益。通过降低误差放大器的退化电阻,可以在保持理论上完美的失真补偿的同时,将Cascomp电路的整体增益提高几dB。提出了一个鲁棒的偏置点,该偏置点通过优化电路值来利用这种新理论,从而产生了相对更宽和更深的三阶失真零点。仿真和测量结果证实了所提出的理论,在过程误差和部件误差极限的范围内显示出一致性。

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