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The Use of Manganese-Doped Iron Garnets and High Dielectric Constant Loading for Microwave Latching Ferrite Phasers

机译:掺锰铁石榴石和高介电常数负载在微波闩锁铁氧体相位器中的应用

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The characteristics of ferrite materials desired for microwave devices with the material operated in the remanent state have been reviewed by Ince and Temme. The major deficiencies in the material for such applications have been the sensitivities of the remanent magnetization to both temperature and stress. Of the two most commonly used material systems, Mg-Mn ferrites and yttritum-iron garnets, the temperature sensitivity of the remanent magnetization of the garnet is less severe, particularly at low magnetization values. However, the stress sensitivity of the garnet is significantly greater than that of the ferrites and consequently, presents a serious problem for latching devices. Following earlier attempts to reduce the stress sensitivity through rare earth additions, which proved lossy, Dionne, et al. have shown that a small manganese addition to yttrium-iron garnet is effective for the reduction of magnetostriction. They have presented data suggesting that the microwave characteristics would also be satisfactory.
机译:因斯和特姆(Ince and Temme)审查了微波设备在剩余状态下工作所需的铁氧体材料的特性。用于此类应用的材料的主要缺陷是剩余磁化对温度和应力的敏感性。在两种最常用的材料体系(Mg-Mn铁氧体和钇铁石榴石)中,石榴石的剩余磁化强度的温度敏感性较轻,特别是在低磁化强度的情况下。然而,石榴石的应力敏感性明显大于铁氧体的应力敏感性,因此,对于闩锁装置提出了严重的问题。早先尝试通过添加稀土来降低应力敏感性,这被证明是有损失的,Dionne等人。已经表明,在钇铁石榴石中加入少量锰对于减少磁致伸缩是有效的。他们提供的数据表明微波特性也将令人满意。

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