This method can be applied to high-speed active switched capacitor networks and its related fields. 该方法可望应用于高速有源开关电容网络及其相关领域。
Intelligent Thyristor Switched Capacitor Compensating System Controlled by Microcomputer 晶闸管控制的单相–三相变换器(英文)智能型晶闸管投切电容器无功补偿微机控制系统
An auto-tracking filter of switched capacitor is recommended. 介绍了一种开关电容式自动跟踪滤波器。
Meanwhile, the switched capacitor notch filter is designed, which can adjust center frequency freely by changing the switching clock frequency and make the center frequency highly accurate and stable. 介绍了数字化开关电容滤波技术,并设计了可以通过改变开关时钟频率来自由调整中心频率的开关电容带阻滤波器,使中心频率具有很高的精度和稳定度。
An Improved Topology of ZCS Resonant Switched Capacitor DC/ DC Converter ZCS谐振开关电容变换器的拓扑结构改进
This device can be used not only in reactive switched capacitor of electric railway but also of other industries. 该装置不仅可应用于电气化铁道,也可用于其它工业的无功补偿。
General Law of Sneak Circuit Analysis in Step-Up Resonant Switched Capacitor Converters 升压式谐振开关电容变换器中潜电路的一般规律
Design of A Switched Capacitor Filter for Radio Data System Multi-Path Detection Application 用于RDS多径检测的开关电容滤波器设计
Design of Switched Capacitor Filters Using Signal Flow Graphs and General Integrator 用信号流图和通用积分器设计开关电容滤波器
Design on Switched Capacitor DC DC Converters 开关电容DC-DC变换器的设计方法
The approaches in this paper are useful for analysis of switched capacitor networks and switched power converter circuits. 所述方法适用于开关电容网络和各种开关电源电路的分析,其中灵敏度分析可用于网络的优化设计。
Application of Switched Capacitor Converter in DC Brushless Motor Driver Circuit 开关电容变换器在直流无刷电机驱动电路中的应用
The design of the switched capacitor filter is one of the research focuses in circuit and system. 开关电容滤波器设计是电路与系统领域里的研究热点之一。
Study on Design and Simulation for Switched Capacitor Filters 开关电容滤波器设计与仿真方法的研究
Simulation results were obtained using MATLAB and Pspice, and several modulator circuits with switched capacitor were designed. 设计了由开关电容构成的∑Δ调制器电路,并给出了用电路的计算机辅助分析工具pspice仿真的结果及对其性能与参数关系的分析。
With low pass switched capacitor filter as an example, this paper introduced the operating principle and characteristics of switched capacitor filter and made detailed analysis and an approach to its use. 以低通开关电容滤波器为例介绍了开关电容滤波器的工作原理及特点,并对其设计方法进行了详细分析和探讨。
This paper deals with a new topology of switched capacitor DC DC converter. 论述一种新的开关电容DC-DC变换器的拓扑结构。
A switched capacitor circuit simulation and optimization program 一个开关电容电路的模拟和优化程序
Study of sneak circuit in Resonant Switched Capacitor Converters 谐振开关电容变换器中潜电路现象的研究
This paper summarizes the switched capacitor filter and switched current filter design methods. 本文对开关电容滤波器和开关电流滤波器的设计方法作了综述。
A comparison between switched current and switched capacitor techniques is made. 对开关电流技术与开关电容技术的一些基本特征进行了比较。
The filter section uses switched capacitor techniques for high-and low-group fil-ters and dial-tone rejection. 在滤波部分,高组滤波和拨号音频滤波等使用了开关电容技术。
Problems of fault diagnosis in frequency domain for the linear switched capacitor networks ( SCN's) are systematically discussed. Based on the z domain analysis of SCN's, general approaches to implement the frequency domain diagnosis are presented. 本文系统地研究了线性开关电容网络(SCN)的频域故障诊断问题,提出了基于SCN的z域分析,对SCN进行频域诊断的一般途径。
Auxiliary feedback amplifiers and switched capacitor common mode feedback circuit are employed. 共模反馈电路由开关电容共模反馈电路实现。
The design of low power switched capacitor biquadratic filter based on switched-opamp ( SO) technique is analyzed. 对用开关运放(SO)技术实现低功耗双二阶开关电容电路进行了分析。
Two schemes for implementation of continuous time Hopfield neural network based on the switched capacitor technique are described. 采用开关电容技术对此进行了研究。讨论了连续时间Hopfield神经元的两种开关电容实现方案。
A low loss electronically tunable filter was demonstrated using HTS/ Au MEMS switched capacitor arrays. 描述了一种使用HTS/AuMEMS开关电容器阵的低插损电子调谐式滤波器。
Therefore, in this thesis the switched capacitor DC-DC converters have been thoroughly studied. 所以本文就开关电容变换器开展了深入的研究。
Thyristor Switched Capacitor ( TSC) of is a simple compensator and has been widely used. 晶闸管投切电容器(TSC)一种简单易行的补偿措施,并已得到广泛应用。
To adapt to different applications, switched capacitor DC-DC converters are divided to single and multi-stage. 根据应用环境的不同,开关电容变换器又有单级和多级之分,本文分别就这两类开关电容变换器进行分析与设计。