Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
[PDF][PDF] Voltage differencing buffered/inverted amplifiers and their applications for signal generation
This paper presents some interesting new applications in the field of analog signal
processing focused on signal generation. A novel modifications of recently developed and …
processing focused on signal generation. A novel modifications of recently developed and …
A CCII‐based non‐inverting Schmitt trigger and its application as astable multivibrator for capacitive sensor interfacing
This paper presents a novel second‐generation current conveyor (CCII)‐based non‐
inverting Schmitt trigger topology. By means of the use of only three resistances, it is …
inverting Schmitt trigger topology. By means of the use of only three resistances, it is …
Component reduced current‐mode full‐wave rectifier circuits using single active component
This study presents the design of current‐mode full‐wave rectifier circuits using single active
component. The first proposed circuit uses only one operational transconductance amplifier …
component. The first proposed circuit uses only one operational transconductance amplifier …
A low power waveform generator using DCCII with grounded capacitor
V Vijay, A Srinivasulu - International Journal of Public Sector …, 2019 - inderscienceonline.com
As second generation differential current conveyor (DCCII) is an active element, one new
square wave generator is introduced into the current mode applications. The proposed …
square wave generator is introduced into the current mode applications. The proposed …
Novel CMOS MO‐CFDITA based fully electronically controlled square/triangular wave generator with adjustable duty cycle
B Chaturvedi, A Kumar - IET Circuits, Devices & Systems, 2018 - Wiley Online Library
This study presents a novel square/triangular wave generator based on multiple‐output
current follower differential input transconductance amplifier (MO‐CFDITA) with reduced …
current follower differential input transconductance amplifier (MO‐CFDITA) with reduced …
An improved DDCCTA toward its application in different wave-function and PWM generation
Differential difference current conveyor transconductance amplifier (DDCCTA) is an
important building block for current mode circuits. However, the existing DDCCTA circuit …
important building block for current mode circuits. However, the existing DDCCTA circuit …
Novel electronically controlled current-mode Schmitt trigger based on single active element
A Kumar, B Chaturvedi - AEU-International Journal of Electronics and …, 2017 - Elsevier
In this paper, a simple circuit of current-mode Schmitt trigger consists of only single dual-X
current conveyor transconductance amplifier (DXCCTA) is proposed. The proposed Schmitt …
current conveyor transconductance amplifier (DXCCTA) is proposed. The proposed Schmitt …
A high-sensitive current-mode pressure/force detector based on piezoelectric polymer PVDF
This paper introduces new electronic sensor circuits based on the usage of a piezoelectric
Polyvinylidene fluoride-PVDF pressure detector coupled with a current-mode …
Polyvinylidene fluoride-PVDF pressure detector coupled with a current-mode …
A fully electronically controllable Schmitt trigger and duty cycle‐modulated waveform generator
A Kumar, B Chaturvedi… - International Journal of …, 2017 - Wiley Online Library
The paper introduces a new Schmitt trigger consisting of only one multiple‐output current
inverting differential input transconductance amplifier with no passive element. The …
inverting differential input transconductance amplifier with no passive element. The …
A fully/electronically controllable voltage-mode Schmitt trigger based on only single VDGA and its applications
This article is objected to present a new fully/electronically controllable voltage-mode
Schmitt trigger based on a modified voltage differencing gain amplifier (VDGA). It can offer …
Schmitt trigger based on a modified voltage differencing gain amplifier (VDGA). It can offer …