Interdigital-line micrpwave band-pass filters.

1972
Menteşeoğlu, Mustafa Savaş

Suggestions

Multichannel signal analysis software for sound and vibration research
Akbaba, R. Rauf; Çalışkan, Mehmet; Department of Mechanical Engineering (1989)
Interband optical absorption obtained by pseudopotential method for type-II InAs/GaSb SL photodetectors
Akel, Kazim; Hoştut, Mustafa ; Akın, Tayfun; Ergun, Yuksel (2021-05-01)
We have calculated interband optical absorption for InAs/GaSb based type-II superlattice (SL) structures. The empirical pseudopotential method (EPM) has been used as an alternative to the k.p method since it is less sophisticated while providing similar results in the mid wavelength infrared range and long wavelength infrared range atmospherics bands for comparison. EPM results show that the bandgap wavelengths of SLs have been predicted with the underestimating of 0.4 mu m. This corresponds to an uncertain...
Interharmonics analysis of power signals with fundamental frequency deviation using Kalman filtering
Köse, Neslihan; Salor, Oezguel; Leblebicioğlu, Mehmet Kemal (2010-09-01)
In this paper a spectral decomposition-based method for interharmonic computation is proposed for power systems where the fundamental frequency fluctuates significantly. In the proposed method, the frequency domain components of the voltage waveform are obtained by Kalman filtering. Both the system fundamental frequency and the correct spectrum of the voltage waveform, and hence the exact interharrnonics are obtained. The proposed method is tested with both simulated and field data obtained from different e...
Wideband mmic amplifier design
Demir, Şimşek; Toker, Canan; Department of Electrical and Electronics Engineering (1993)
Dual band microstrip implantable antenna design for biomedical applications
Alptekin, Damla; Gençer, Nevzat Güneri; Alatan, Lale; Department of Electrical and Electronics Engineering (2015)
In this study, numerical and experimental analysis of a dual band (Medical Implant Communications Service-MICS; 402 − 405 MHz, Industrial, Scienti c and Medical-ISM; 2.4 − 2.48 GHz) implantable antenna design for biomedical applications are presented. The proposed antenna is in the type of Planar Inverted-F Antenna (PIFA) covered with a superstrate. For miniaturization, the metallic patch of the antenna is meandered and shorting-pin is used between the patch and ground plane. In addition, stacking patch str...
Citation Formats
M. S. Menteşeoğlu, “Interdigital-line micrpwave band-pass filters.,” Middle East Technical University, 1972.