Results 1 to 10 of about 19,056 (144)

A Fast Transient Response Capacitor-Less LDO with Transient Enhancement Technology [PDF]

open access: yesMicromachines
This paper proposes a fast transient load response capacitor-less low-dropout regulator (CL-LDO) for digital analog hybrid circuits in the 180 nm process, capable of converting input voltages from 1.2 V to 1.8 V into an output voltage of 1 V.
Chufan Chen   +4 more
doaj   +4 more sources

A Multipath Output-Capacitor-Less LDO Regulator

open access: yesIEEE Access, 2022
A multipath output-capacitor-less low-dropout (OCL-LDO) regulator with feedforward path compensation is presented to achieve low power consumption and fast transient response. The proposed OCL-LDO does not require output capacitance and remains stable at
Shao-Ku Kao   +2 more
doaj   +2 more sources

InGaAs Capacitor-Less DRAM Cells TCAD Demonstration

open access: yesIEEE Journal of the Electron Devices Society, 2018
2D numerical TCAD simulations are used to infer the behavior of III-V capacitor-less dynamic RAM (DRAM) cells. In particular, indium gallium arsenide on insulator technology is selected to verify the viability of III-V meta-stable-dip RAM cells. The cell
Carlos Navarro   +7 more
doaj   +3 more sources

Novel Single-Stage Electrolytic Capacitor-Less Buck-Boost Inverter

open access: yesEnergies
Nowadays, single-phase, single-stage, buck-boost power inverters are mostly considered to be used for renewable energy source applications due to their wide range of capabilities.
Youn-Ok Choi, Khai M. Nguyen
doaj   +2 more sources

A fast transient response on-chip low-dropout regulator

open access: yesDianzi Jishu Yingyong, 2023
: Based on dual active feedback with miller capacitor compensation (DAFMCC), a novel single pole system of capacitor-less on-chip low-dropout (LDO) voltage regulator circuit is presented.
Xu Qinghao
doaj   +1 more source

A Temperature Prediction Method for DC-Link Film Capacitor in Electric Vehicle

open access: yesKongzhi Yu Xinxi Jishu, 2022
In EV/HEV application, the maximum internal temperature allowed for film capacitor should be less than 105 ℃, which leaves especial limited temperature margin as the capacitor works in high ambient temperature of 85 ℃.
WU Chundong, LI Yun, ZHANG Jingyan
doaj   +3 more sources

Transformer-Less Switched-Capacitor Quasi-Switched Boost DC-DC Converter

open access: yesEnergies, 2021
In this article, a quasi-switched boost converter based on the switched-capacitor technique with high step-up voltage capability is dealt with and analyzed.
Truong-Duy Duong   +4 more
doaj   +1 more source

Review of electrolytic capacitor-less PMSM drives [PDF]

open access: yesSCIENTIA SINICA Technologica, 2020
Electrolytic capacitor-less permanent magnet synchronous motor (PMSM) drives could improve the reliability and reduce the cost and volume of a drive system, which would be an important improvement over a conventional motor drive system. This has been successfully applied in aerospace, industry, and household applications. In this study, the development
NanNan ZHAO, DianGuo XU, GaoLin WANG
openaire   +1 more source

Improved Modulation Strategy Based on Minimum Energy Storage Principle for Electrolytic-Capacitor-Less Six-Switch Converter

open access: yesApplied Sciences, 2021
An improved modulation strategy based on minimum energy storage for DC-link capacitance reduction in a six-switch AC-AC converter is proposed. The proposed modulation strategy enables the energy on the capacitor to accumulate and release twice each in a ...
Qingyang Tan, Liangzong He
doaj   +1 more source

Reduction of torque ripple in an electrolytic capacitor-less BLDC motor drive by simultaneous speed and torque control method

open access: yesAin Shams Engineering Journal, 2021
Brushless DC motors have been widely used in both industrial and non-industrial applications. Commercialization of these drives by reducing their price and increasing reliability, are among the main goals of manufacturers and researchers.
Ehsan Boloor Kashani   +1 more
doaj   +1 more source

Home - About - Disclaimer - Privacy