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Design of 3 GHz stripline ferrite circulator for radar applications

机译:雷达应用的3 GHz带状线铁氧体环行器设计

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This paper presents a design of three port stripline circulator using magnetized ferrite. The design is proposed to comply a radar system at 3 GHz operation. The geometry design consists of two ferrite planar disk resonators separated by a disk center conductor symmetrically coupled by three port of transmission line. In the design process, the ferrite material is magnetized perpendicularly to the plane of the device by a static magnetic field to obtain all three port are matched. The ferrite of Ni-Zn material, the saturation magnetization of 2400 Gauss and ferromagnetic linewidth of 200 Oe were used for disk resonator and Cu metal as conductor of the transmission line. The EM simulation software was used to simulate, optimize and record the design parameter in order to achieve good insertion loss (S21), return loss (S11) and isolation (S31). The simulation experiment has done by the difference of magnetization. The best result recorded for 3 GHz at 1600 Oe of magnetization, namely; -0.411 dB of S21, -28.111 dB of S11, and -41.831 dB of S31.
机译:本文提出了一种使用磁化铁氧体的三端口带状线环行器的设计。建议该设计符合3 GHz操作下的雷达系统。几何结构设计包括两个铁氧体平面盘谐振器,这些谐振器由一个盘中心导体分隔开,该盘中心导体通过传输线的三个端口对称耦合。在设计过程中,铁氧体材料通过静磁场垂直于设备平面磁化,以获得所有三个端口都匹配。将Ni-Zn材料的铁氧体,2400高斯的饱和磁化强度和200 Oe的铁磁线宽用于磁盘谐振器,并将Cu金属用作传输线的导体。 EM仿真软件用于仿真,优化和记录设计参数,以实现良好的插入损耗(S21),回波损耗(S11)和隔离(S31)。通过磁化强度的差异进行了仿真实验。磁化强度为1600 Oe时3 GHz记录的最佳结果,即: S21为-0.411 dB,S11为-28.111 dB,S31为-41.831 dB。

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