Design of high temperature superconducting contiguous-band diplexer
Author:
Publisher
Elsevier BV
Subject
Multidisciplinary
Link
http://link.springer.com/content/pdf/10.1007/s11434-009-0055-0
Reference9 articles.
1. Mansour R R, Romano T, Ye S, et al. Development of space qualifiable HTS communication subsystems. IEEE Trans. Applied Superconductivity. 2001, 11(1). 806–811
2. Mansour R R. High temperature superconductor communication satellite subsystems. Microwave Conference. 2000 Asia-Pacific: 587–591
3. Jeffries R F, Greed R B, Voyce D C, et al. Further development of a future ESM channeliser with high temperature superconducting filters. IEEE Trans. Applied Superconductivity. 2001, 11(1). 410–413
4. Rhodes J D, Levy R. A generalized multiplexer theory. IEEE Trans-MTT. 1979, 27. 99–111
5. Rhodes J D, Levy R. Design of General manifold multiplexer, IEEE Trans-MTT, 1979, 27: 111–123
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1. Miniaturized High-Temperature Superconducting Diplexer Using Common Resonator and Cross Coupling Structure;IEEE Transactions on Applied Superconductivity;2017-06
2. Design and Optimization of a Superconducting Contiguous Diplexer Comprising Doubly Terminated Filters;IEEE Transactions on Applied Superconductivity;2013-08
3. Development of cryogenically-cooled low noise amplifier for mobile base station receivers;Chinese Science Bulletin;2011-12
4. Structural and dielectric relaxor properties of yttrium-doped Ba(Zr0.25Ti0.75)O3 ceramics;Materials Chemistry and Physics;2010-05
5. Development of X-band high temperature superconducting filters;Chinese Science Bulletin;2010-01
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