Real-time spectrum analysis in microstrip technology
暂无分享,去创建一个
Txema Lopetegi | Mario Sorolla | M. J. Erro | Miguel A. Muriel | M. Guglielmi | M. J. Garde | Miguel A. G. Laso | David Benito | M. Guglielmi | M. Muriel | M. Sorolla | T. Lopetegi | M. Laso | M. Erro | D. Benito
[1] Y. Tong,et al. Fibre dispersion or pulse spectrum measurement using a sampling oscilloscope , 1997 .
[2] A. Lohmann,et al. Temporal filtering with time lenses. , 1992, Applied optics.
[3] A. Papoulis. Systems and transforms with applications in optics , 1981 .
[4] R. S. Withers,et al. Superconductive tapped delay lines for microwave analog signal processing , 1983 .
[5] S. Qian,et al. Joint time-frequency analysis : methods and applications , 1996 .
[6] Khaled H. Hamed,et al. Time-frequency analysis , 2003 .
[7] Txema Lopetegi,et al. New microstrip "Wiggly-Line" filters with spurious passband suppression , 2001 .
[8] M. Guglielmi,et al. Chirped delay lines in microstrip technology , 2001, IEEE Microwave and Wireless Components Letters.
[9] M A Muriel,et al. Real-time Fourier transformer based on fiber gratings. , 1999, Optics letters.
[10] Txema Lopetegi,et al. Optimization of Tapered Bragg Reflectors in Microstrip Technology , 2000 .
[11] Tatsuo Itoh,et al. Novel 2-D photonic bandgap structure for microstrip lines , 1998 .
[12] M. J. Erro,et al. A novel electrically tunable dispersion compensation system , 1999 .
[13] Txema Lopetegi,et al. Multiple-frequency-tuned photonic bandgap microstrip structures , 2000 .
[14] A. Papoulis. PULSE COMPRESSION, FIBER COMMUNICATIONS, AND DIFFRACTION : A UNIFIED APPROACH , 1994 .
[15] Frederick Huang. Quasi-transversal synthesis of microwave chirped filters , 1992 .
[16] Robert Weigel,et al. SAW devices and their wireless communications applications , 2002 .
[17] Txema Lopetegi,et al. ANALYSIS OF NEW PERIODIC STRUCTURES IN MICROSTRIP BY FDTD , 2000 .
[18] H. Unger,et al. Waveguide tapers, transitions, and couplers , 1979 .
[19] T. Ueda,et al. An Approximate Dispersion Formula of Microstrip Lines for Computer Aided Design of Microwave Integrated Circuits , 1979 .
[20] Moshe Nazarathy,et al. Temporal imaging with a time lens: erratum , 1990 .
[21] R. W. Ralston,et al. High temperature superconductive wideband compressive receivers , 1996 .
[22] T. Lopetegi,et al. Analysis and design of periodic structures for microstrip lines by using the coupled mode theory , 2002, IEEE Microwave and Wireless Components Letters.
[23] D Mendlovic,et al. Temporal perfect-shuffle optical processor. , 1992, Optics letters.
[24] F Huang. Addendum to 'Possible design procedure for low-loss 180 degrees reflecting arrays in SAW devices' (Jan 88 57-60). , 1989, IEEE transactions on ultrasonics, ferroelectrics, and frequency control.
[25] J. Klauder,et al. The theory and design of chirp radars , 1960 .
[26] M. B. Steer,et al. Foundations of Interconnect and Microstrip Design: Edwards/Foundations of Interconnect and Microstrip Design , 2000 .
[27] F. Huang,et al. Possible design procedure for low-loss 180 degrees reflecting arrays in SAW devices , 1988, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[28] B. Kolner,et al. Temporal imaging with a time lens. , 1989, Optics letters.
[29] M.A. Jack,et al. The theory, design, and applications of surface acoustic wave Fourier-transform processors , 1980, Proceedings of the IEEE.
[30] K. Rauschenbach,et al. A new wide-band pulse-restoration technique for digital fiber-optic communication systems using temporal gratings , 1999, IEEE Photonics Technology Letters.
[31] O. W. Otto,et al. Real-time Fourier transform with a surface-wave convolver , 1972 .
[32] Txema Lopetegi,et al. Novel photonic bandgap microstrip structures using network topology , 2000 .
[33] B. Kolner. Space-time duality and the theory of temporal imaging , 1994 .
[35] Real‐time spectral analysis of far‐infrared laser pulses using an SAW dispersive delay line , 1979 .
[36] F. Huang. Low loss quasitransversal microwave filters with specified amplitude and phase characteristics , 1993 .
[37] T Jannson,et al. Real-time Fourier transformation in dispersive optical fibers. , 1983, Optics letters.