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1)  auto-inductive coupling
自感耦合
2)  self-induction coupling circuit
自感耦合电路
3)  auto-inductive coupling
自耦变压器耦合,电感耦合
4)  inductively coupled
电感耦合
1.
Designed the control system based on ATmega 16 according to the requirement of inductively coupled plasma spectrum instrument.
针对电感耦合等离子光谱仪控制要求,设计了以ATm ega 64为核心的控制系统,给出了相应的控制方案和器部件选型,并提出软件的模块化设计。
5)  coupled inductor
耦合电感
1.
A coupled inductor was used to substitute inductor, so that the circulating current in the zero state could be zero.
该变换器用耦合电感代替常规电感,耦合电感通过变压器反射到原边,使变换器在零状态时的环流减小到零,实现了外管零电压开通,内管零电流关断。
2.
Based on the analysis of the shortage of the single-phase Boost converter in the high gain applications,a method of adding an equivalent DC voltage source was proposed,and a type of Boost converter using coupled inductor was described.
在分析普通单相Boost变换器在高增益变换场合显现的不足的基础上,提出了串入等效电压源的概念,采用耦合电感实现了高增益变换。
3.
The auxiliary circuit is composed of an auxiliary switch,a coupled inductor(flyback transformer) and a feedback diode.
辅助电路由辅助开关管、耦合电感(反激变压器)和反馈二极管构成。
6)  tapped inductor
耦合电感
1.
A tapped inductor ia attached at the secondary side of transformer instead of common filter inductor,the voltage induced by tapped inductor reflects to the primary side,which makes the circulating current of converter during the zero state decreas-es to zero.
该变换器以耦合电感取代常规滤波电感,耦合电感所感应出的电压通过功率变压器反射回初级,使变换器在零状态时的循环电流减小直至零,以实现内管的零电流关断。
2.
A tapped inductor was adopted to substitute for the normal inductor,so that the circulating current in the zero state could be reset to zero.
利用耦合电感取代常规滤波电感,耦合电感所感应出的电压通过功率变压器反射回原边,使变换器在零状态时的循环电流减小至零,以实现内管的零电流关断。
3.
To overcome the high voltage stress of the secondary side of the transformer, a novel zero-voltage and zero-current-switching (ZVZCS) three level converter is proposed: The free-wheeling primary current is reset to zero through introducing a tapped inductor attached at the secondary side.
针对零电流技术中因引入储能电容而引起的副边高电压应力问题,提出了一种新型的零电压零电流软开关三电平直流变换电路拓扑:通过耦合电感实现电流回零,通过改变耦合电感的变比来方便地设定原边环流置零时间,降低环流损耗,实现内管的零电流关断。
补充资料:发射极耦合逻辑电路
发射极耦合逻辑电路
emitter coupled logic
    以多个晶体管的发射极相互耦合加上射极跟随器组成的逻辑电路。简称ECL电路。ECL电路发展于20世纪50年代末期,是双极型集成电路的基本电路形式。它是一种电流型开关电路,电路中的晶体管工作在非饱和状态 。ECL电路的特点是:①开关速度快(1纳秒左右)。比通常的晶体管-晶体管逻辑电路开关速度快几倍。②可以很方便地组成、扩充电路的逻辑功能,节省元件数。缺点是电路功耗大、电平阈值电压随温度而漂移等 。ECL电路主要用于构成超高速集成电路,如高速、大型、巨型计算机等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条