A Compact Filtering Coupler with Unwanted Harmonic Rejection Using LC Composite Lines for Communication Systems Applications

Author:

Roshani Saeed,Yahya Salah I.ORCID,Mezaal Yaqeen Sabah,Chaudhary Muhammad AkmalORCID,Al-Hilali Aqeel A.,Ghadi Yazeed YasinORCID,Karimi Mohsen,Roshani SobhanORCID

Abstract

In this paper, new LC lumped components and composite lines are used to create a filtering branch line coupler (FBLC) with a small size and wide suppression band. New composite lines are proposed using applied LC lumped components, which are used as the coupler main branches. The proposed FBLC suppresses second to sixth harmonics with high attention level and provides a wide stopband from 1.6 GHz to 5 GHz with more than 20 dB of attention. The presented coupler is analyzed, designed, simulated, and implemented. The measured results show that the proposed FBLC correctly operates at 800 MHz with less than 0.25 dB of insertion loss. In addition, more than 29 dB of return loss and isolation is measured at operating frequency, which shows the correct performance of the proposed design. The size of the proposed FBLC is equal to 23.7 mm × 25.5 mm (0.086λ × 0.093λ), which shows an 87% size reduction. The proposed FBLC with the designed frequency can be used in the communication systems for narrow-band Internet of things (NB-IoT) and traffic control radar applications.

Publisher

MDPI AG

Subject

Information Systems and Management,Computer Networks and Communications,Modeling and Simulation,Control and Systems Engineering,Software

Reference54 articles.

1. Analysis and design of a Doherty-like RF-input load modulated balanced amplifier;Pednekar;IEEE Trans. Microw. Theory Tech.,2018

2. Breaking the bandwidth limit: A review of broadband Doherty power amplifier design for 5G;Nikandish;IEEE Microw. Mag.,2020

3. Optical design of dilute nitride quantum wells vertical cavity semiconductor optical amplifiers for communication systems;Faten;ARO-Sci. J. Koya Univ.,2016

4. Fast surrogate-assisted frequency scaling of planar antennas with circular polarisation;Koziel;IET Microw. Antennas Propag.,2019

5. Anticipated Impact of In-Car Mobile Calls on the Electromagnetic Interaction of Handset Antenna and Human;Yahya;ARO-Sci. J. Koya Univ.,2014

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