This paper presents a novel design of miniaturized substrate-integrated waveguide (SIW) filter loaded with a pair of unit-cell resonators. Two identical open-loop resonators are connected face-to-face to form a unit-cell. A pair of unit-cells is engraved on the surface of the SIW to develop an evanescent-mode bandpass filter. The proposed unit-cells behave as an electric-dipole and produce a passband smaller than the waveguide frequency. This reduction in resonant frequency allows us to achieve size miniaturization. An equivalent electrical-circuit model is developed and investigate for characterization of passband and transmission-zero. This filter structure is then employed to develop a SIW planar diplexer. Two SIW filter structures loade...
[EN] Substrate integrated waveguide (SIW) technology [1], [2] is a well established and successful a...
Novel diplexer and dual-band filter using a squire open-loop with inset feeding and folded lines are...
4th IASTED International Conference on Circuits, Signals, and Systems -- NOV 20-22, 2006 -- San Fran...
In this paper, two miniaturized planar diplexers based on the substrate integrated waveguide (SIW) s...
With the development of microwave wireless communication technology, microwave passive frequency sel...
This paper presents a new design of planar diplexer based on substrate integrated waveguide single m...
This paper presents a novel miniaturized substrate integrated waveguide filter by combining both hal...
The SIW technology combines complete shielding and fairly low losses with simple and cost-effective ...
In this paper, a compact 6.8/7.6 GHz diplexer is provided with the help of substrate integrated wave...
A microwave diplexer implemented by using the twenty-first century substrate integrated waveguide (S...
This paper presents a substrate integrated waveguide (SIW) Chebyshev bandpass filter using the low c...
In this paper, the substrate integrated waveguide (SIW) resonator is designed to study the influence...
The substrate integrated waveguide (SIW) structure is the candidate for many application in microwav...
A novel configuration of interdigital bandpass filter based on the substrate integrated waveguide (S...
This paper presents a miniaturized bandpass filter (BPF) with characteristics of wider passband and ...
[EN] Substrate integrated waveguide (SIW) technology [1], [2] is a well established and successful a...
Novel diplexer and dual-band filter using a squire open-loop with inset feeding and folded lines are...
4th IASTED International Conference on Circuits, Signals, and Systems -- NOV 20-22, 2006 -- San Fran...
In this paper, two miniaturized planar diplexers based on the substrate integrated waveguide (SIW) s...
With the development of microwave wireless communication technology, microwave passive frequency sel...
This paper presents a new design of planar diplexer based on substrate integrated waveguide single m...
This paper presents a novel miniaturized substrate integrated waveguide filter by combining both hal...
The SIW technology combines complete shielding and fairly low losses with simple and cost-effective ...
In this paper, a compact 6.8/7.6 GHz diplexer is provided with the help of substrate integrated wave...
A microwave diplexer implemented by using the twenty-first century substrate integrated waveguide (S...
This paper presents a substrate integrated waveguide (SIW) Chebyshev bandpass filter using the low c...
In this paper, the substrate integrated waveguide (SIW) resonator is designed to study the influence...
The substrate integrated waveguide (SIW) structure is the candidate for many application in microwav...
A novel configuration of interdigital bandpass filter based on the substrate integrated waveguide (S...
This paper presents a miniaturized bandpass filter (BPF) with characteristics of wider passband and ...
[EN] Substrate integrated waveguide (SIW) technology [1], [2] is a well established and successful a...
Novel diplexer and dual-band filter using a squire open-loop with inset feeding and folded lines are...
4th IASTED International Conference on Circuits, Signals, and Systems -- NOV 20-22, 2006 -- San Fran...