首页> 外文会议>Signal Processing Algorithms, Architectures, Arrangements, and Applications >Design and optimization of operational amplifiers for SC systems - a comparative study in CMOS 0.18 #x00B5;m, 0.35 #x00B5;m, and 0.8 #x00B5;m technologies
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Design and optimization of operational amplifiers for SC systems - a comparative study in CMOS 0.18 #x00B5;m, 0.35 #x00B5;m, and 0.8 #x00B5;m technologies

机译:SC系统运算放大器的设计与优化 - CMOS 0.18µ M,0.35µ m,0.8µ m技术的对比研究

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摘要

Design and optimization of a simple but efficient operational amplifier (OA) for switched-capacitor finite impulse response (SC FIR) filters are presented. The main design criteria are: proper characteristics for application in SC FIR filters, simplicity of the circuit structure, the area in the silicon realization and low power dissipation. The OAs have been realized in three different CMOS technologies, namely AMS 0.8 µm and 0.35 µm as well as TSMC 0.18 µm, for comparison. The best performance has been achieved in the 0.18 µm process, as expected. The gain bandwidth product (GBP) equals 1.9 GHz in this case, while the power dissipation 700 µW at 1.8V power supply. The chip area equals 280 µm2 that is 40 times less than in case of the 0.8 µm process.
机译:提出了一种用于开关电容器有限脉冲响应(SC FIR)滤波器的简单但有效的运算放大器(OA)的设计和优化。 主要设计标准是:在SC FIR滤波器中应用的适当特性,电路结构的简单性,硅实现中的区域和低功耗。 OAS已在三种不同的CMOS技术中实现,即AMS 0.8µ m和0.35µ m以及tsmc 0.18µ m,进行比较。 正如预期的那样,在0.18µ m过程中实现了最佳性能。 在这种情况下,增益带宽产品(GBP)等于1.9 GHz,而功耗700µ w以1.8V电源。 芯片面积等于280µ m 2 ,比0.8µ m进程的情况下的40倍。

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