Title :
Real-Time Spectrum Analysis in Microstrip Technology
Author :
Laso, M.A.G. ; Lopetegi, T. ; Erro, M.J. ; Castillo, M. ; Benito, D. ; Garde, M.J. ; Muriel, M.A. ; Sorolla, M. ; Guglielmi, M.
Author_Institution :
Electrical and Electronic Eng. Dept., Public University of Navarre, Campus ArrosadÃ\xada, E-31006 Pamplona, Spain. Phone: +34 948 169324; Fax: +34 948 169720; e-mail: mario@unavarra.es
Abstract :
We report on a time-domain analog to the spatial far-field Fraunhofer diffraction using microstrip lines with chirped distributed Bragg coupling between the fundamental microstrip mode and the same but counter-propagating mode. The chirping of the microstrip impedance yields to linear group delays within the reflected bandwidth. Under the condition of a temporal equivalent of the spatial Fraunhofer inequality, the distortion of a frequency-limited pulse results in an output reflected signal whose complex envelope is, except a phase factor, proportional to the Fourier Transform of the input pulse envelope. This has important temporal applications and, in particular, the devices designed in this paper work as real-time energy spectral density analyzers.
Keywords :
Bandwidth; Chirp; Delay lines; Diffraction; Fourier transforms; Frequency; Impedance; Microstrip; Phase distortion; Time domain analysis;
Conference_Titel :
Microwave Conference, 2001. 31st European
Conference_Location :
London, England
DOI :
10.1109/EUMA.2001.339009