Design of Microstrip Hairpin Bandpass Filter for X-Band Radar Navigation

Author(s):  
Basith Adli ◽  
Rina Mardiati ◽  
Yudi Yuliyus Maulana
Author(s):  
Samundra K. Thapa ◽  
Baichuan Chen ◽  
Adel Barakat ◽  
Kuniaki Yoshitomi ◽  
Ramesh K. Pokharel

2006 ◽  
Vol 48 (11) ◽  
pp. 2246-2249
Author(s):  
Boon Tiong Tan ◽  
Siou Teck Chew ◽  
Mook Seng Leong ◽  
Ban Leong Ooi

Author(s):  
M. F. Ain ◽  
Z. A. Ahmad ◽  
M.A. Othman ◽  
I. A. Zubir ◽  
S. D. Hutagalung ◽  
...  

Author(s):  
M F Ain ◽  
Z A Ahmad ◽  
M A Othman ◽  
I A Zubir ◽  
S D Hutagalung ◽  
...  

Circuit World ◽  
2020 ◽  
Vol ahead-of-print (ahead-of-print) ◽  
Author(s):  
Sandhya Ramalingam ◽  
Umma Habiba Hyder Ali ◽  
Sharmeela Chenniappan

Purpose This paper aims to design a dual mode X-band substrate integrated waveguide (SIW) bandpass filter in the conventional SIW structure. A pair of back-to-back square and split ring resonator is introduced in the single-layer SIW bandpass filter. The various coupling configurations of SIW bandpass filter using split square ring slot resonator is designed to obtain dual resonant mode in the passband. It is shown that the measured results agree with the simulated results to meet compact size, lower the transmission coefficient, better reflection coefficient, sharp sideband rejection and minimal group delay. Design/methodology/approach A spurious suppression of wideband response is suppressed using an open stub in the transmission line. The width and length of the stub are tuned to suppress the wideband spurs in the stopband. The measured 3 dB bandwidth is from 8.76 to 14.24 GHz with a fractional bandwidth of 48.04% at a center frequency of 11.63 GHz, 12.59 GHz. The structure is analyzed using the equivalent circuit model, and the simulated analysis is based on an advanced design system software. Findings This paper discusses the characteristics of resonator below the waveguide cut-off frequency with their working principles and applications. Considering the difficulties in combining the resonators with a metallic waveguide, a new guided wave structure – the SIW is designed, which is synthesized on a planar substrate with linear periodic arrays of metallized via based on the printed circuit board. Originality/value This study has investigated the wave propagation problem of the SIW loaded by square ring slot-loaded resonator. The electric dipole nature of the resonator has been used to achieve a forward passband in a waveguide environment. The proposed filters have numerous advantages such as high-quality factor, low insertion loss, easy to integrate with the other planar circuits and, most importantly, compact size.


2020 ◽  
Vol 82 (2) ◽  
Author(s):  
Mohammad Rashed Iqbal Farque ◽  
Md. Jubaer Alam ◽  
Muhamad Roszaini Roslan ◽  
Mohammad Tariqul Islam

An elliptical thumb printed nested circular mixed loop resonator (MLR) is introduced in this article to design a multiple bandpass filter for microwave applications. The proposed structure is composed of a series of loop resonators on a Rogers RT-5880 dielectric substrate, where the overall system is developed into a 377Ω framework. Similar structure is designed on both sides of the substrate and an investigation is made on scattering parameters, relative permittivity, permeability, refractive index and current distributions. The 12 ´ 14 mm2 structure is designed and evaluated by a simulation software CST microwave studio and the metamaterial characteristics have been classified by Nicolson-Ross-Weir method at the filtering frequencies. The proposed filter shows resonances at 2.65 GHz, 5.85 GHz, 7.12 GHz, and 8.59 GHz, and the measured results are compared with the simulated ones. With a favorable design and double-negative characteristics, this design is suitable for multiple bandpass filter particularly for S, C, and X-band applications.


Sign in / Sign up

Export Citation Format

Share Document