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Generalized impedance converter (GIC) filter utilizing composite amplifier

机译:利用复合放大器的通用阻抗转换器(GIC)滤波器

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摘要

In this research, a continuous analog generalized impedance converter (GIC) 4th order band pass filter is investigated in detail. Various classroom software aids such as MATLAB, P-SPICE and MAPLE are utilized to simulate varies circuit parameter changes in ideal and non-ideal GIC filter, such as network sensitivity, effects of resistor value, capactor value and reduction of gain bandwidth product (GBWP), on the center frequency and Q factor. All simulated results are used to evaluate the actual circuit implementation prior to future GIC filter chip fabrication. A composite operational amplifier utilizing the BiCMOS standard operational amplifier that was designed and introduced in a previous thesis is presented and its improved performance is investigated. The composite amplifier (C20A2) is designed using Silvaco EXPERT and simulated with Silvaco SmartSpice. The results show the gain bandwidth product (GBWP), common mode rejection ratio (CMRR), and open loop gain are considerably improved. This sets the basic foundation for future students to incorporate the newly designed composite operational amplifier into the GIC filter to further enhance filter performance.
机译:在这项研究中,对连续模拟通用阻抗转换器(GIC)四阶带通滤波器进行了详细研究。利用各种教室软件辅助工具(例如MATLAB,P-SPICE和MAPLE)来模拟理想和非理想GIC滤波器中电路参数的变化,例如网络灵敏度,电阻值,电容值的影响以及增益带宽乘积(GBWP)的降低),中心频率和Q因子。所有仿真结果都用于评估将来的GIC滤波器芯片制造之前的实际电路实现。提出了一种采用BiCMOS标准运算放大器的复合运算放大器,该复合运算放大器是在上一篇论文中设计和介绍的,并对其性能进行了研究。复合放大器(C20A2)使用Silvaco EXPERT设计,并使用Silvaco SmartSpice仿真。结果表明,增益带宽乘积(GBWP),共模抑制比(CMRR)和开环增益得到了显着改善。这为将来的学生将新设计的复合运算放大器集成到GIC滤波器中以进一步提高滤波器性能奠定了基础。

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  • 作者

    Cheong Heng Wan.;

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  • 年度 2005
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