Sensitifitas sensor Magnetoimpedansi pada sistem Multilapisan [Ni80Fe20/Cu]N hasil Elektrodeposisi Substrat Cu-Printed Circuit Board
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Sinnecker, J. P., Knobel, M., Pirota, K. R., Garcı´a, J. M., Asenjo, A., Va´zquez, M. 2000. Frequency dependence of the magnetoimpedance in amorphous CoP electrodeposited layers. Journal Of Applied Physics, vol 87, no.9.
Uppili, H., Daglen, B. 2013. Bi-Directional Giant Magneto Impedance Sensor. Advances in Materials Physics and Chemistry, vol 3, pp. 249-254.
Tung, M. T., Hang Le, T. T., Tuan, L. A., Nghi, N. H., & Phan, M. H. (2014). Influence of electrodeposition on the magnetic impedance properties of CoP/Cu wires. Physica B Elsevier, 442, 16-20.
Gupta, R., Gupta M., and Gutberlet, T. (2008). Magnetization in permalloy thin films. Pramana- Journal of Physics, 71, 1123-1127.
Nahrun,A. A., Ismail., Wicaksono, B. A., Amirudin, M., Nuryani., & Purnama, B. (2015). Penumbuhan multilayer [NiFe/Cu] dengan metode elektrodeposisi sebagai bahan dasar sensor magneto impedansi. Seminar Nasional Fisika dan Pembelajarannya, FM1-FM4.
Phan, M.H., dan Peng, H.X. 2008. Giant magnetoimpedance materials: Fundamentals and applications. Progress in Materials Science, vol 53, pp. 323-420.
Tuan, L.A., Huy, N.T., and Huy, P.T., 2009. Giant magnetoimpedance in layered composite micro-wires for high-sensitivity magnetic sensor applications. Journal of Physics: Conference Series 187 012044
Maulana F, Nuryani, and Purnama B 2017 journal of physic conference series, 1 vol 795
Panina, L.V., & Makhnovskiy, D.P. (2003). Magnetoimpedance in Multilayered Films for Miniature Magnetic Sensors: Book chapter in Introduction to Complex Mediums for Optics and Electromagnetics. Plymouth: SPIE Optical Engineering Press.
Borge, A. (2005). Giant magneto-impedance effect in thin film layered structures. Thesis, Department of Electrical and Computer Engineering University of Central Florida.
Makhnovskiy, D.P., & Panina, L.V. (2005). Field and stress tunable microwave composite materials based on ferromagnetic wires : Progress in Ferromagnetic Research. Plymouth: Nova Science Publisher.
Ismail., Wicaksono, B. A., Nuryani., & Purnama, B. (2015). Pengaruh jumlah multilapisan [Ni80Fe20/Cu]N terhadap efek magnetoimpedansi pada kawat Cu hasil elektrodeposisi. Jurnal Materi dan Pembelajaran Fisika (JMPF), 2, 9-12.
Seet Hang Li. (2008). Research And Development Of Super Permeability Nife/Cu Composite Wires For Micro Magnetic Sensors. Thesis, National University Of Singapore.
Sirisathitkul, C., and Jantaratana, P. (2009). Magnetoimpedance of electroplated wires with large core diameters. J. Mater. Sci. Technol, 25(6), 825-828
Zhang, Y., Dong, J., Sun, X., Liu, Q., and Wang, J. (2013). Interface coupling-induced enhancement of magnetoimpedance effect in heterogeneous nanobrush by adjusting textures of Co nanowires. Nanoscale Research Letters, 8, 471.
Kanani, N. (2004). Electroplating Basic Principles, Processes and Practice. Berlin: Elsevier.
Morikawa T., Y. Nishibe, H. Yamadera, Y. Nanomura, M. Takeuchi, Y. Taga, (1997). Giant Magneto-Impedance in Layered thin films. IEEE Transactions on Magnetics vol. 33, No. 5.
Hanafi, E.P., Utari., & Purnama, B. (2013). Magneto-impedansi pada kumparan kawat Fe. Jurnal Fisika & Aplikasinya, 9 (2), 63-65.
DOI: http://dx.doi.org/10.28989/senatik.v6i0.411
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