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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >High-performance CMOS CCI in a 0.35 mu m CMOS technology and a new all-pass filter application
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High-performance CMOS CCI in a 0.35 mu m CMOS technology and a new all-pass filter application

机译:采用0.35μmCMOS技术的高性能CMOS CCI和新的全通滤波器应用

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A differential pair-based, high-performance, first-generation current conveyor is proposed. The proposed circuit is laid out using the Mentor Graphics IC Station layout editor. The performance characteristics have been determined from HSpice postlayout simulations using the Austria Mikro Systeme 0.35 mu m, 3.3 V process parameters. During the simulations, pm 1.65 V supply voltages and a 25 mu A biasing current are used. The power consumption is about 1.12 mW. The circuit also has very high voltage swings on ports X and Y, a very small impedance value on port X, high impedance values on ports Y and Z, and high-valued current and voltage transfer bandwidths. It is shown that the presented circuit can satisfy both the low-voltage/low-power and high-frequency performance current conveyor needs of the analog circuit applications. Furthermore, 2 new all-pass filter circuits as application examples are given and a procedure that can be used to search for the opportunities that would result from the use of the modified current conveyors is presented. Some special circuit topologies and new circuit function possibilities can be obtained by redesigning circuits with modified current conveyors, which is not possible with a standard current conveyor. The proposed approach is expected to allow deeper insight into circuit synthesis using modified current conveyors.
机译:提出了一种基于差分对的高性能第一代电流传送器。建议的电路使用Mentor Graphics IC Station布局编辑器进行布局。通过使用奥地利Mikro Systeme 0.35μm,3.3 V工艺参数的HSpice后布局仿真确定了性能特性。在仿真过程中,使用 pm 1.65 V电源电压和25 mu A的偏置电流。功耗约为1.12 mW。该电路在端口X和Y上还有很高的电压摆幅,在端口X上有非常小的阻抗值,在端口Y和Z上有很高的阻抗值,以及高价值的电流和电压传输带宽。结果表明,所提出的电路可以同时满足模拟电路应用的低电压/低功率和高频性能电流传输器的需求。此外,给出了两个新的全通滤波器电路作为应用示例,并提出了一种可用于搜索因使用改进的电流输送机而产生的机会的过程。通过使用改良的电流传输器重新设计电路,可以获得某些特殊的电路拓扑和新的电路功能可能性,而标准电流传输器则无法实现。预期所提出的方法将允许更深入地了解使用改进的电流传送器的电路综合。

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