C. Réalisation-des, 73 423 Conditions de frittage, pp.424-74

. Références-bibliographiques-[-ben-]-l, J. Benziada, and . Ravez, Ferroelectric BaTiO 3 ceramics sintered at low temperature with the aid of a mixture of CaF 2 and LiF, J. of fluorine chemistry, vol.73, pp.69-71, 1995.

]. S. Duguey, R. Lebourgeois, J. P. Ganne, and J. M. Heintz, High frequency dielectric properties of hot-pressed Ag(NbxTa1???x)O3 solid solutions E-P-09, Journal of the European Ceramic Society, vol.27, issue.2-3, pp.1087-1091, 2007.
DOI : 10.1016/j.jeurceramsoc.2006.05.018

]. S. Duguey, R. Lebourgeois, C. Grattepain, J. M. Heintz, and J. P. Ganne, Study of copper substitutions in Ag(NbxTa1???x)O3 solid solutions, Journal of the European Ceramic Society, vol.27, issue.2-3, pp.1171-1175, 2007.
DOI : 10.1016/j.jeurceramsoc.2006.05.019

URL : https://hal.archives-ouvertes.fr/hal-00125234

]. P. Fleury, Sytem V 2 O 5 -Ag 2 O, Rev. Chim. Miner, vol.6, issue.819, p.51969

]. P. Fleury, Sytem V 2 O 5 -CuO in O 2, C. R. Acad Sci., Ser. C, pp.263-285, 1966.

J. P. Ganne, M. Pate, O. Durand, and C. Grattepain, Dielectric Properties of High-K LTCC Materials, J. Am. Ceram. Soc, vol.30, issue.7, 2005.
DOI : 10.1002/9781118407899.ch22

]. L. Groat, J. L. Jambor, and B. C. Pemberton, THE CRYSTAL STRUCTURE OF ARGENTOJAROSITE, AgFe3(SO4)2(OH)6, The Canadian Mineralogist, vol.41, issue.4, pp.921-928, 2003.
DOI : 10.2113/gscanmin.41.4.921

]. J. Haussonne, G. Desgardin, P. Bajolet, and B. Raveau, Barium Titanate Perovskite Sintered with Lithium Fluoride, Journal of the American Ceramic Society, vol.11, issue.3, pp.801-807, 1983.
DOI : 10.1111/j.1151-2916.1983.tb10566.x

]. J. Haussonne, O. Regreny, and J. Lostec, Sintering of various perovskites with lithium salts, 6 th CIMTEC World Congress on Hightech Ceramics, 1986.

]. T. Hu and . Hu, BST-based low temperature co-fired ceramic (LTCC) modules for microwave tunable components, 2004.

]. A. Jon and . Jonscher, Dielectric relaxation in solids, 1983.

]. A. Kan and . Kania, AgNb 1-x Ta x O 3 solid solutions -dielectric properties and phase transitions, Phase transitions, pp.131-140, 1983.

]. S. Kazaoui, J. Ravez, C. Ellisalde, and M. Maglione, derived materials, High frequency dielectric relaxation in BaTiO 3 derived materials, pp.85-99, 1992.
DOI : 10.1103/PhysRevB.42.6416

]. H. Kim, T. Shrout, C. Randall, and M. Lanagan, Low-temperature sintering and dielectric properties of Ag(Nb.Ta)O 3 composite ceramics, J. Am. Ceram. Soc, pp.85-96, 2002.

]. J. Kim, J. S. Hardy, and K. S. Weil, Effect of CuO content on the wetting behaviour and mechanical properties of a Ag -CuO braze for ceramic joining, J. Am. Ceram. Soc, pp.88-97, 1976.

]. C. Kittel, Introduction to solid state physics, 1961.

]. R. Lebourgeois, M. Paté, and S. Duguey, Céramique diélectrique à basse température de frittage ayant une permittivité élevée et des pertes faibles pour applications radiofréquences, E-repository, réf. TPI, p.250381, 2005.

R. J. Ageron, G. E. Bacon, and F. F. Roberts, Ferrites NiZnCu à basse température de frittage pour composants H- VHF intégrés, Thèse de l'I.N.P.G. soutenue en nov, Acta Cryst, vol.6, pp.65-62, 1953.

]. L. Chen, C. S. Hsi, S. L. Fu, and J. Y. Lin, Co-sintering of Ni-Zn-Cu ferrite with low-temperature cofired ceramic substrates, J.J.A.P, vol.39, pp.150-154, 2000.

]. S. Chi, . M. Chikazumicor-]-l, J. M. Corliss, F. G. Hastings, H. Brockman et al., Physics of ferromagnetism, Phys. Rev, vol.90, pp.1013-1018, 1928.

]. J. Hsu, W. S. Ko, H. D. Shen, and C. J. Chen, Low temperature fired NiCuZn ferrite, IEEE Transactions on magnetics, vol.30, p.6, 1994.

]. J. Hsu, W. S. Ko, and C. J. Chen, The effect of V 2 O 5 on the sintering of NiCuZn ferrite, IEEE Transactions on magnetics, vol.31, p.6, 1995.

]. J. Jean and C. H. Lee, Low-fire NiO-CuO-ZnO ferrite with Bi 2 O 3, J.J.A.P, vol.38, pp.3508-3512, 1999.

]. J. Jean and C. H. Lee, Processing and properties of low-fire Ni-Cu-Zn ferrite with V 2 O 5, J.J.A.P, vol.40, pp.2232-2236, 2001.

]. R. Lebourgeois, Ferrites faibles pertes pour applications fréquentielles, Techniques de l'ingénieur, traité Electronique, 2000.

]. R. Lebourgeois, G. Peyresoubes, R. Lebourgeois, S. Duguey, and &. Ganne, Ferrites à faibles pertes et à perméabilité réglable pour applications à forte puissance et large bande en radiofréquence (0,5- 600 MHz) Brevet Influence of V 2 O 5 on the magnetic properties of nickel-zinc-copper-ferrite, Journal of Magnetism and Magnetic Materials, 2001.

]. R. Pauthenet and L. Bochirol, Aimantation spontan??e des ferrites, Journal de Physique et le Radium, vol.12, issue.3, pp.249-251, 1951.
DOI : 10.1051/jphysrad:01951001203024900

]. N. Satya-murthy, M. G. Natera, S. I. Youssef, and R. J. Begun, Yafet-Kittel Angles in Zinc-Nickel Ferrites, Physical Review, vol.181, issue.2, pp.969-977, 1969.
DOI : 10.1103/PhysRev.181.969

. Smit, L. Wijn, P. J. Bibliothèque-techniques-philips-dunod, J. Töpfer, and . Mürbe, Sintering behaviour of Ni-Cu-Zn ferrites for multilayer inductors, Proceedings of the 107th Annual Meeting of the American Ceramic Society, 2005.

«. Le-diélectrique-faible-k:-le-matériau and ». Dp, Détermination de la composition, pp.2111-129

C. Etude-du, 145 31, pp.311-145

R. S. Barth, F. Berchtold, E. Müller, J. Mürbe, and J. Töpfer, Low sintering Ni-Cu-Zn ferrite tapes for LTCC integrated inductors, Proceedings of CICMT 2005

]. L. Chen, C. S. Hsi, S. L. Fu, and J. Y. Lin, Co-sintering of Ni-Zn-Cu ferrite with lowtemperature cofired ceramic substrates, JJAP, vol.39, pp.150-154, 2000.

]. Y. Cho, J. Choi, W. J. Park, I. S. Ko, J. H. Hwang et al., Co-Firing and Shrinkage Matching in Low- and Middle- Permittivity Dielectric Compositions for a Low-Temperature Co-Fired Ceramics System, Materials science forum vols, pp.89-91, 2006.
DOI : 10.1016/S0955-2219(01)00096-6

R. L. Walhers, C. Y. Huang, S. J. Stein, A. H. Feingold, M. Heinz et al., Capacitor and inductor compositions for buried components, IMAPS 2002 Compliant dielectric and magnetic materials for buried components, IMAPS 2002 Materials for capacitive and inductive components integrated with commercially available LTCC systems, IMAPS, 1985.

]. J. Hsu, W. S. Ko, H. D. Shen, and C. J. Chen, Low temperature fired NiCuZn ferrite, IEEE Transactions on magnetics, vol.30, p.6, 1994.

R. E. Mistler, E. R. Twiname, A. Morell, F. Bernard, J. L. Valard et al., Tape casting theory and practice, The American Ceramic Society Silver diffusion analysis by XRD ad EDS in LTCC dielectric tapes, Am. Ceram. Society -Electronic division, Oralando, oct Zero shrinkage of LTCC by self-constrained sintering, C. Modes & A. Kipka J. Appl. Ceram. Technol, pp.2-5, 2000.

]. E. Stouffer, R. R. Draudt, J. F. Knaak, and M. S. Chan, Stack emissions from green tape firing and thick film pastes drying and firing, Du Pont Electronics Applied Technology Report, 1991.

]. E. Twiname, G. L. Messing, and C. A. Randall, Embedding a passive material layer in low temperature cofired packaging, 2001.

R. L. Wahlers, S. J. Stein, C. Y. Huang, M. R. Heinz, and A. H. Feingold, Leadfree multilayer dielectric system for telecommunications, ACERS Feingold, Low profile LTCC transformers, IMAPS 2002. [wah3] R.L. Wahlers, M. Heinz and A.H. Feingold, Lead free dielectric and magnetic materials for integrated passives, 2001.

]. S. Yamanaka, G. Maruyama, and T. Veyama, The thermal decomposition of polyvinylbutyral/PLZT, PMN dielectric powder composite, Revue Nippon Seramikkusu kyokai gakujutsu ronbunshi, pp.657-662, 1992.

]. T. Yamaguchi, Y. Irisawa, K. Hoshi, and H. Kishi, Effect of coefficient of linear expansion on crack generation in cofired magnetic and dielectric materials, Proceedings of the Eighth International Conference on ferrites ICF8, 2000.

.. Analyses-structurales-et-microstructurales, Diffraction des rayons X (DRX), p.31