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Magnetic materials can be divided in soft materials (low-coercive field) and hard materials (high-coercive field), which are primarily used for permanent magnets. Soft magnetic materials may be further divided into four broad families: electrical steels, iron-nickel (FeNi) or iron-cobalt (FeCo) alloys, ferrites, and amorphous metals. In the shielding of power-frequency magnetic fields, Fe–(Ni, Co) are generally used; noticeable commercial members of the family are Mumetal, Permalloy, and Permendur.

37, pp. 1248– 1253, 2004. [35] S. Shinagawa, Y. Kumagai, and K. Urabe. ’’ J. , vol. 6, no. 3, pp. 185–190, May 1999. 40 SHIELDING MATERIALS [36] S. Shinagawa, Y. Kumagai, H. Umehara, and P. Jenvanitpanjakul. ’’ Proc. Internat. Conf. Electromagn. Interfer. Compat. ‘99, 6–8 Dec. 1999, pp. 372–375, 1999. [37] J. A. Carrazana-Garcia, M. A. Lopez-Quintela, and J. R. Rey. ’’ IEEE Trans. , vol. 31, no. 6, pp. 3126–3130, Nov. 1995. [38] C. Caloz and T. Itoh. Electromagnetic Metamaterials, Transmission Line Theory and Microwave Applications.

Shokooh-Saremi. ’’ J. Phys. D: Appl. , vol. 37, pp. 1248– 1253, 2004. [35] S. Shinagawa, Y. Kumagai, and K. Urabe. ’’ J. , vol. 6, no. 3, pp. 185–190, May 1999. 40 SHIELDING MATERIALS [36] S. Shinagawa, Y. Kumagai, H. Umehara, and P. Jenvanitpanjakul. ’’ Proc. Internat. Conf. Electromagn. Interfer. Compat. ‘99, 6–8 Dec. 1999, pp. 372–375, 1999. [37] J. A. Carrazana-Garcia, M. A. Lopez-Quintela, and J. R. Rey. ’’ IEEE Trans. , vol. 31, no. 6, pp. 3126–3130, Nov. 1995. [38] C. Caloz and T. Itoh. Electromagnetic Metamaterials, Transmission Line Theory and Microwave Applications.

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