dr Davood Zarifi
Employment
- Profesor uczelni ze stop. nauk. dr at Department of Microwave and Antenna Engineering
Keywords Help
- groove gap waveguide
- antennas
- compact power divider, e-plane groove gap waveguide, mmwave, ridge gap waveguide, wideband design.
- directional coupler
- electromagnetic waves
- ka-band applications
- microstrip-fed
- slot array antenna, gap waveguide technology, mmwave, d-band applications.
- superformula
- ultra-wideband
Social media
Contact
- davood.zarifi@pg.edu.pl
Profesor uczelni ze stop. nauk. dr
- Department of Microwave and Antenna Engineering
- Faculty of Electronics, Telecommunications and Informatics
Publication showcase
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Design of Compact and Wideband Groove Gap Waveguide-Based Directional Couplers
This paper proposes a compact cross-shaped groove gap waveguide structure for creating wideband and compact directional couplers with different coupling levels. Groove gap waveguide technology is applied to overcome fabrication challenges of printed and hollow waveguide structures in high frequency bands. The validity of the novel concept is demonstrated through the design and evaluation of several compact broadband directional...
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Millimeter Wave Wideband and Low-Loss Compact Power Divider Based on Gap Waveguide: For Use in Wideband Antenna Array System
This paper presents a wideband and low-loss design of a compact power divider based on gap waveguide technology. The proposed power divider consists of two adjacent E-plane groove gap waveguide and a small ridge section to couple and equally divide the EM energy from the input E-plane groove gap waveguide to the two output ones in-phase. The simulation results show that the proposed waveguide power divider has about 40% impedance...
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D-Band High Gain Planer Slot Array Antenna using Gap Waveguide Technology
A D-band high gain slot array antenna with corporate-fed distribution network based on gap waveguide structures is proposed at 140GHz. To overcome the fabrication challenges at such high frequency, the gap waveguide technology is deployed in which good electrical contact between different parts of the waveguide structure is not required. The proposed sub-array has four radiating slots that are excited by a groove gap cavity and...
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