铁氧体磁芯

  • 网络ferrite core
铁氧体磁芯铁氧体磁芯
  1. 介绍了在电视接收机、显示器行扫描电路中的磁饱和电抗元件(行线性校正线圈)的原理及对铁氧体磁芯材料性能和工艺的要求。

    This article describes the principium of line scan revise winding used in the line scan circuit of TV receiver and display , and the requirement for the characteristics of the ferrite core .

  2. 首先,作者分析了一些电磁干扰抑制器件,如:铁氧体磁芯、滤波器、气体放电管、ZnO变阻器、瞬态电压抑制器等。

    A number of Protection Device , such as ferrite core , filter , gas tube arresters , metal oxide variators , transient voltage suppressors , are tested .

  3. 抗EMI铁氧体磁芯在计算机上的应用

    EMI-Resistant Ferrite Cores and Its Application in Computer

  4. CMT偏转线圈铁氧体磁芯高频磁滞回线的测量

    The High Frequency Hysteresis Loop Measurement for Ferrite of CMT Deflection Yoke Core

  5. 目前脉冲变压器的磁芯一般采用U形铁氧体磁芯,绕组有采用锥形、扁平和圆形多股绕组。

    In general , the magnetic is usually adopts the u-shaped ferrite magnetic cores , the winding often use taper , flat and more strands of round windings .

  6. 用插入损耗法和伏安法得出偏磁状态下的铁氧体磁芯的H~μr和f~μr曲线。

    Use the volt - ampere method and measure the insertion loss of the coil inductance to obtain the curves of H ~ μ r and f ~ μ r of ferrite in bias magnetic field .

  7. 板垣先生从1981年加入TDK以来至2004年,一直担任铁氧体磁芯项目的工程师。

    He Joined TDK in1981 , and he started his career with TDK as an engineer of Ferrite Cores until the year of2004 .

  8. 高频功率铁氧体磁芯损耗的控制

    Control of Magnetic Core Losses for High Frequency Power Ferrite

  9. 回转窑是铁氧体磁芯生产的关键设备。

    The revolving kiln is the key equipment in the oxide magnetic-core production .

  10. 详细分析了功率铁氧体磁芯损耗的组成及其控制方法。

    The components of core losses and their controlling methods are analyzed in detail .

  11. 实验结果显示,铁氧体磁芯使大部分磁通限定在磁体内部,但仍有部分磁通散布于磁体外。

    Experiment results show that much of the magnetic flux has been restricted inside the ferrite core , but there is still some diffusion .

  12. 为保证磁铁电磁参数一致,对铁氧体磁芯材料电磁特性做了有针对性的相对测量,根据测量结果合理安排磁铁制造工艺。

    To assure this similarity , the electromagnetic properties of ferrite core were relatively measured with pertinence and according to the measurement the techniques of making magnets were arranged reasonably .

  13. 我们是一家有130年历史的美国独资企业,主要生产多种铁氧体磁芯、磁环及电子元器件,用于解决防电磁干扰、变压器和电感应用。

    Steward is a leading manufacturer of an extensive line of solution-focused soft ferrite powder , cores , and components , primarily for EMI suppression , transformer and inductive applications .

  14. 探讨了铁氧体磁芯对螺线管磁场分布规律的影响。在此基础上,探讨了带磁芯的螺线管天线的设计。

    The characteristics of the ferrite soft magnetic materials are put into , as well with the effect on the maps of the magnetic fields of the solenoid antenna with the magnetic core , and then the design of the solenoid antenna is discussed .

  15. 掺Cd和Zn的Li-Mn铁氧体记忆磁芯

    Magnetic Memory Cores of the Cd and Zn Doped Li-Mn Ferrite

  16. 少量MoO3的添加对Li&Mn铁氧体记忆磁芯性能的影响

    Properties of the Li-Mn Ferrite Memory Cores , Dopeed With MoO _3

  17. 高分子磁体/铁氧体复合磁芯的电磁损耗及应用

    Polymer Magnet / Ferrite Composite Cores : Electromagnetic Loss and Applications

  18. 批量生产的高磁导率铁氧体材料与磁芯

    Mass-Produced High-Permeability Soft Ferrite Materials and Cores

  19. 数值计算结果表明:选择合理的铁氧体电导率和磁芯结构参数,可以基本消除磁芯中涡流对脉冲磁场分布的影响。

    The result of quantitative analysis demonstrates that , to determine the conductivity of ferrite material and parameters of magnetic core reasonably can eliminate the effects of eddy current on the magnetic field properties .

  20. 研究了高起始磁导率(6000~20000)铁氧体和由该磁芯制成的变压器的电感频率依赖关系。

    The research of the high initial permeability ( 6000 ~ 20000 ) ferrite and the frequency dependence of inductance of the ferrite transformer made by high permeability ferrite core are presented .

  21. 通过高电压模拟试验,观测了铁氧体、非晶磁芯和金属磁粉芯三种材料的磁环,特别观测了磁饱和的影响。

    High voltage simulation tests were performed on the magnetic rings of three kind materials , i.e. ferrite , amorphous and microcrystalline and metallic magnetic powder core . Special attentions were paid on the influence of magnetic saturation .

  22. 根据传输线变压器串并联同时耦合的原理,设计了一种13dB铁氧体定向耦合器,该定向耦合器是用漆包线绕在射频铁氧体磁芯上做成。

    This paper designs a 13 dB ferrite directional coupler , which is made by winding enamel-insulated copper wires around a radio frequency ferrite core .