Design of low-voltage and low-power current-mode DTMOS transistor based full-wave/half-wave rectifier

M Yildirim - Analog Integrated Circuits and Signal Processing, 2021 - Springer
A low-voltage and low-power current mode rectifier based on dynamic threshold MOS
(DTMOS) transistor is proposed in this paper. The suggested one input–two output rectifier …

A new tunable current-mode peak detector

PB Petrović - Microelectronics Journal, 2014 - Elsevier
The paper presents a completely new realization of peak detector/full-wave rectifier of input
sinusoidal signals employing four CCCIIs (controlled current conveyors), metal-oxide …

A CMOS current rectifier configuration suitable for integration

E Yuce, H Alpaslan - Journal of Circuits, Systems, and Computers, 2012 - World Scientific
In this paper, a CMOS-based one input-two output current-mode (CM) circuit structure for
providing full-wave rectification and half-wave rectifications to clarify the theory is proposed …

A linearly/electronically controllable high gain VDGA and its applications

M Siripruchyanun, J Hirunporm - AEU-International Journal of Electronics …, 2023 - Elsevier
Since the transconductance gains of an active building block namely voltage differencing
gain amplifier (VDGA) is directly proportional to nonlinear (square root) function of external …

Electronically controllable precision rectifiers based on voltage differencing gain amplifier

J Hirunporm, W Saksiri… - 2021 18th International …, 2021 - ieeexplore.ieee.org
This article presents voltage differencing gain amplifier (VDGA)-based half wave and full
wave precision rectifiers. Its circuit structures comprise only 1 VDGA for half wave rectifier …

Current-mode precision full-wave rectifier using two WTA cells

J Koton, A Lahiri, N Herencsar… - 2011 34th International …, 2011 - ieeexplore.ieee.org
In this paper a fully CMOS implementation of current-mode full-wave precision rectifier is
presented. The structure is generally based on the recently presented Lazzaro's winner …

[引用][C] Appendix 1: Additional References for Further Reading

R Senani - 2015