2014Journal of Electromagnetic Waves and ApplicationsRequires access

A novel design of dual-band Wilkinson power divider with simple structure and wide band-ratios characteristics

Xi Li, Yang Lin

Open publisher page 7 citations

Abstract

The design and analysis of a dual-band equal-split Wilkinson power divider are presented in this paper. It is proved that a coupled line with a pair of stubs structure is capable of the dual-band operation in the Wilkinson power divider. Moreover, the overall structure of power divider can be simplified with small number of transmission line sections using the proposed method, and the proposed divider can achieve dual-band operation over a wide range of band-ratios. For verification, a microwave power divider operating at 1 and 2.5 GHz is fabricated, and the experimental results show that the designed power divider fulfills all the features of a conventional Wilkinson power divider, such as an equal power split and impedance matching at ports.

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What this paper is about

The design and analysis of a dual-band equal-split Wilkinson power divider are presented in this paper. It is proved that a coupled line with a pair of stubs structure is capable of the dual-band operation in the Wilkinson power divider. Moreover, the overall structure of power divider can be simplified with small number of transmission line sections using the proposed method, and the proposed divider can achieve dual-band operation over a wide range of band-ratios. For verification, a microwave power divider operating at 1 and 2.5 GHz is fabricated, and the experimental results show that the designed power divider fulfills all the features of a conventional Wilkinson power divider, such as an equal power split and impedance matching at ports.

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Available abstract

The design and analysis of a dual-band equal-split Wilkinson power divider are presented in this paper. It is proved that a coupled line with a pair of stubs structure is capable of the dual-band operation in the Wilkinson power divider. Moreover, the overall structure of power divider can be simplified with small number of transmission line sections using the proposed method, and the proposed divider can achieve dual-band operation over a wide range of band-ratios. For verification, a microwave power divider operating at 1 and 2.5 GHz is fabricated, and the experimental results show that the designed power divider fulfills all the features of a conventional Wilkinson power divider, such as an equal power split and impedance matching at ports.

Key concepts: Wilkinson power divider, Power dividers and directional couplers, Current divider, Multi-band device, Transmission line, Electric power transmission, Power (physics), Impedance matching

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