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1)  microwave ferrite switch
微波铁氧体开关
2)  ferrite switch
铁氧体开关
3)  microwave ferrite
微波铁氧体
1.
According to the functional requirement and material characteristic of microwave ferrite substrates,the simulation process of relative motion trace was studied in the parallel lapping and polishing area by using coordinate transformation method,and it provided the theoretic foundation for the reasonable selection of processing parameters.
针对微波铁氧体基片的功能要求和材料特性,基于坐标变换法对平行式研磨、抛光加工区域的相对运动轨迹进行仿真研究,为合理选择工艺参数提供理论依据;通过正交化实验分析各种工艺参数对研磨效率的影响规律;在此基础上,采用优化组合的工艺参数进行微波铁氧体基片平行式研磨和抛光加工,技术指标均达到或超过了使用要求。
2.
The wide temperature stability and high power are the important properties of microwave ferrite s research all the time.
宽温度稳定性,大功率一直是微波铁氧体材料研究的重点。
3.
A novel microwave ferrite thin-film transformer based on Si IC technology was presented.
实现了一种新型的基于硅IC工艺的微波铁氧体集成薄膜变压器。
4)  reciprocal ferrite switch
互易铁氧体开关
5)  ferrite stripline switch
铁氧体带线开关
6)  ferrite microwave substrate
微波铁氧体基片
1.
According to the functional requirements, structural characteristics and grinding features of ferrite microwave substrates, the comparison results and cause of grinding force between ELID grinding and common grinding were analyzed by a great deal of machining experiments, and the changing rules of grinding force with some processing parameters were studied.
针对微波铁氧体基片的功能要求、材料特性和磨削工艺特点,通过大量实验分析了铁氧体基片ELID磨削与普通磨削的磨削力对比结果和形成原因,以及磨削力随工艺参数的变化规律,在此基础上,对ELID磨削效率、表面质量及磨削中出现的问题和解决途径进行了深入研究。
补充资料:微波铁氧体
分子式:
CAS号:

性质:见旋磁铁氧体

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