The suitability of operational transconductance amplifiers (OTAs) as the main active element to obtain basic building blocks for the design of programmable nonlinear continuous-time networks is examined. The main purpose is to show that the OTA, as the active element in basic building blocks, can be efficiently used for nonlinear continuous-time function synthesis. Two efficient nonlinear function synthesis approaches are presented. The first approach is a rational approximation, and the second is a piecewise-linear approach. Test circuits have been integrated using a 3-μm p-well CMOS process. The flexibility of the designed and tested circuits is confirmed
Basic properties of the Operational Transconductance Amplifier (OTA) are discussed. Applications of ...
Though transistor technology can be produced in channel length smaller than 20nm, analog circuits ca...
Implementation of CMOS current-mode analog computational circuits are presented in this paper. A new...
It is shown that the operational transconductance amplifier, as the active element in basic building...
Program year: 1985/1986Digitized from print original stored in HDRThe inherent properties of the Ope...
The authors present an accurate nonlinear macromodel of the operational transconductance amplifier (...
A general framework for performance optimization of continuous-time OTA-C (Operational Transconducta...
The OTA is an amplifier whose differential input voltage produces an output current. Thus, it is a v...
The aim of this paper is the introduction of a CMOS OTA basic block that its transconductance gain c...
A new circuit configuration is presented for synthesizing analog nonlinear functions. The proposed c...
This book is dedicated to the analysis and design of analog CMOS nonlinear function synthesizer stru...
Highly linear operational transconductance amplifier (OTA) is developed, using CMOS differential pai...
This book has its roots in an idea first formulated by Barrie Gilbert in 1975. He showed how bipolar...
This paper describes implementation of CMOS based linear and non-linear analog circuitsusing operati...
Abstract. In the paper, a feedforward linearization method for differential-pair operational transco...
Basic properties of the Operational Transconductance Amplifier (OTA) are discussed. Applications of ...
Though transistor technology can be produced in channel length smaller than 20nm, analog circuits ca...
Implementation of CMOS current-mode analog computational circuits are presented in this paper. A new...
It is shown that the operational transconductance amplifier, as the active element in basic building...
Program year: 1985/1986Digitized from print original stored in HDRThe inherent properties of the Ope...
The authors present an accurate nonlinear macromodel of the operational transconductance amplifier (...
A general framework for performance optimization of continuous-time OTA-C (Operational Transconducta...
The OTA is an amplifier whose differential input voltage produces an output current. Thus, it is a v...
The aim of this paper is the introduction of a CMOS OTA basic block that its transconductance gain c...
A new circuit configuration is presented for synthesizing analog nonlinear functions. The proposed c...
This book is dedicated to the analysis and design of analog CMOS nonlinear function synthesizer stru...
Highly linear operational transconductance amplifier (OTA) is developed, using CMOS differential pai...
This book has its roots in an idea first formulated by Barrie Gilbert in 1975. He showed how bipolar...
This paper describes implementation of CMOS based linear and non-linear analog circuitsusing operati...
Abstract. In the paper, a feedforward linearization method for differential-pair operational transco...
Basic properties of the Operational Transconductance Amplifier (OTA) are discussed. Applications of ...
Though transistor technology can be produced in channel length smaller than 20nm, analog circuits ca...
Implementation of CMOS current-mode analog computational circuits are presented in this paper. A new...