1)  power factor correction
					
	
					
				
				
	
					
				功率因数校正
				1.
					The correspondence power supply with the power factor correction and put to pull out the function of the heat;
						
						带功率因数校正器和热插拔功能的通信电源
					2.
					An automatic storage battery charger based on active power factor correction;
					
					
						
						
					
						基于功率因数校正的蓄电池全自动充电器
					3.
					Designing the power factor correction system based on DSP;
					
					
						
						
					
						基于DSP控制的功率因数校正系统的设计
					
					2)  PFC
					
	
					
				
				
	
					
				功率因数校正
				1.
					Design of Partial Switching PFC;
					
					
						
						
					
						部分开关式功率因数校正设计
					2.
					The Simulated Study of High PFC Technology in Matlab;
					
					
						
						
					
						基于Matlab的高功率因数校正技术的仿真研究
					3.
					Design of DSP Controlled Digital PFC Converter;
					
					
						
						
					
						一种基于DSP的数字功率因数校正设计
					
					3)  power factor correction(PFC)
					
	
					
				
				
	
					
				功率因数校正
				1.
					Pulse-wide modulation(PWM) rectifier is a novel type of power factor correction(PFC),having many superior performances than the no-controlled rectifier,such as: high power factor,nearly sinusoidal supply current,working in regeneration,excellent dynamic performance and so on.
						
						PWM整流器是一种新型的功率因数校正方式,具有高功率因数、输入电流波形正弦、能量可双向流动、动态响应性能较快等优点。
					2.
					A basic principle and its application of power factor correction(PFC)control based on a motor control digital signal processor(DSP)—ADMC401are introduced in detail.
						
						详细介绍了基于电机控制DSP芯片———ADMC401的单相功率因数校正 (PFC)控制的基本原理及其应用。
					3.
					According to the design ideology of softswitched extended-period quasi-resonant two-level Boost converter circuit,a soft switching cell of extend-period quasi-resonant had been added to the three-level Boost converter for power factor correction(PFC) applications,then a fully and simple soft-switched extended-period quasi-resonant three-level Boost converter for PFC circuit can be obtained.
						
						参照两电平Boost电路中的扩展周期准谐振软开关电路的设计思想,将原有三电平Boost功率因数校正(powerfactor correction,PFC)电路结合扩展周期准谐振电路单元,给出一种简化型的三电平Boost PFC扩展周期准谐振软开关电路。
					
					4)  power factor correction (PFC)
					
	
					
				
				
	
					
				功率因数校正
				1.
					A novel sampling algorithm is presented for DSP controlled power factor correction (PFC) converters, which can successfully avoid the influences of the oscillation brought by the operational high - frequency switching in PFC circuit.
						
						为DSP控制的功率因数校正(PFC)变换器提出了一种新的采样算法,它能够很好地消除PFC电路中高频开关动作产生的振荡对数字采样的影响。
					2.
					The principle and converting process of power factor correction (PFC) by using BUCK-BOOST converter is analyzed in this paper in detail,and Matlab-based simulation models for the BUCK-BOOST converter are given.
						
						详细分析了用BUCK BOOST实现电路功率因数校正的原理和变换过程,并给出了BUCK BOOST电路的Matlab仿真分析的模型。
					3.
					A three-phase single-stage power factor correction (PFC) converter based on full-bridge structure is presented,which operates in discontinuous conduction mode (DCM).
						
						介绍了一种基于全桥结构的三相单级功率因数校正(PFC)变换器,该变换器工作于电感电流断续模式(DCM),电感电流即输入电流的峰值自动跟踪输入电压,可实现功率因数校正。
					
					5)  power-factor-correction
					
	
					
				
				
	
					
				功率因数校正
				1.
					Research on Power-Factor-Correction Technique Based on SEPIC Converter;
					
					
						
						
					
						基于SEPIC变换器的功率因数校正技术研究
					2.
					Because of switching actions, power-factor-correction (PFC) Boost converters are essentially piecewise smooth nonlinear systems, which leads to the occurrence of fast-scale bifurcations.
						
						由于开关的动作,功率因数校正(power-factor-correc-tion,PFC)Boost变换器本质上是分段光滑的非线性系统,从而导致快时标分岔的产生。
					
					6)  PFC
					
	
					
				
				
	
					
				功率因数校正(PFC)
				1.
					The principle of the inversion are welding power souree and the necessity to use PFC are introduced.
						
						介绍了逆变式直流弧焊电源的基本原理,以及在逆变式直流弧焊电源中采用功率因数校正(PFC)的必要性,分析了PFC的原理和利用通用的脉宽调制集成电路3524实现PFC控制的方法,给出了具有PFC功能的逆变式直流弧焊电源的实际电路。
					2.
					PFC is one of the key points in the design of power supply.
					
					
						
						
					
						功率因数校正(PFC)是电源设计中的关键内容之一。
					补充资料:校正
		校对订正:~错字ㄧ重新~炮位。
		
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