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Titlebook: Handbook of Modern Ferromagnetic Materials; Alex Goldman Book 1999 Springer Science+Business Media New York 1999 Metall.alloy.communicatio

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Metallic Alloys for Magnetic Shielding Applications,60 Hz.) and higher field strengths whereas the high permeability NiFe alloys are useful at higher efficiencies and lower fields. The 50 percent NiFe alloys have properties intermediate to the two mentioned materials. The next chapter will deal with the NiFe alloys for high permeability low-level app
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High-Permeability High-Frequency Metal Strip,ow level uses but the permeabilities will be much lower. The reason for its use lies in the ability to resist temperature, DC bias and other changes, prevent saturation in the magnetic material and act as inductors in medium frequency L-C resonant circuits.
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Chemical Aspects of Ferrites,difficult, if not hopeless, task for the designer of ferrite materials to depend strictly on random magnetic testing for these properties in the search for the optimum material. It is much more fruitful to correlate these properties with the relevant chemical and ceramic characteristics and by contr
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Microstructural Aspects of Ferrites,ctating the manner in which ferrites are processed. The next chapter will build on our knowledge and review the processing steps that have been used by conventional means and by non-conventional means. The chapter will discuss powder preparation, pressing and firing steps. In addition, there will be
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Soft Magnetic Materials for EMI Suppression,unit of inductance. This characteristic gave them greater frequency specificity in LC filter circuits and low losses in transformers. Their use in analog circuits in telephony, radio and other telecommunications applications satisfied the requirements and had few problems. The introduction of transi
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