Two-stage unbuffered CFOA based non-inverting resistive-feedback amplifier: a study based on the description of the operational transconductance conveyor (OTC)

被引:0
作者
Hervé Barthélemy
Remy Vauché
Valentin Giès
Sylvain Bourdel
Jean Gaubert
机构
[1] Université de Toulon,IM2NP – UMR 7334
[2] Aix-Marseille Université,IM2NP – UMR 7334
[3] Grenoble INP – Minatec,IMEP
来源
Analog Integrated Circuits and Signal Processing | 2018年 / 97卷
关键词
Opamp; Current feedback amplifier; Transconductance amplifier; Diamond transistor; Current conveyor;
D O I
暂无
中图分类号
学科分类号
摘要
A study of the non-inverting amplifier based on a two stages CMOS unbuffered current-feedback-operational-amplifier (UCFOA) is proposed in this paper. Using a small-signal equivalent circuit (macro-model) of the non-inverting amplifier, a theoretical explanation of the closed loop gain is given. The opamp phase margin and its bandwidth have been estimated from the quality factor Q of resonance and using a novel description of the UCVFOA input stage called Operational Transconductance Conveyor (OTC). The OTC description can be seen as an extension of type II second generation current conveyors. Based on the fundamental parameters of the proposed OTC, a theoretical approach given in this paper explains how to evaluate precisely the value of the UCFOA compensation capacitance. PSPICE was used to simulate both the theoretical macro-model and the CMOS configuration from a 0.35 μm typical BSIM3V3 transistor models.
引用
收藏
页码:243 / 252
页数:9
相关论文
共 13 条
[1]  
Black HS(1977)Inventing the negative feedback amplifier IEEE Spectrum 14 54-60
[2]  
Bandyopadhyay S(2014)Design of two stage CMOS operational amplifier in 180 nm technology with low power and high CMRR International Journal of Recent Trends in Engineering and Technology 11 239-247
[3]  
Mukherjee D(1993)High-performance CMOS continuous-time filters: design considerations for OTA-C integrators and full CMOS resistors The Springer International Series in Engineering and Computer Science 223 67-119
[4]  
Chatterjee R(1968)The current conveyor: A new circuit building block Proceeding IEEE CAS 56 1368-1369
[5]  
Silva-Martínez J(1996)High frequency applications based on a new current-controlled conveyor IEEE Transactions on Circuits and Systems I: Fundamental Theory and Applications 43 82-91
[6]  
Steyaert M(undefined)undefined undefined undefined undefined-undefined
[7]  
Sansen W(undefined)undefined undefined undefined undefined-undefined
[8]  
Smith KC(undefined)undefined undefined undefined undefined-undefined
[9]  
Sedra A(undefined)undefined undefined undefined undefined-undefined
[10]  
Fabre A(undefined)undefined undefined undefined undefined-undefined