A compact Ultra-Wide Band (UWB) Wilkinson power divider with different unequal split ratios of 2:1 and 3:1 using three optimized resistors is analyzed, designed and fabricated in this study. A 31.1% size reduction in each λ/4 uniform transmission line (UTL) of the divider is achieved by applying non-uniform transmission lines (NTLs) theory. The proposed divider is contributed to be suitable as a feeder to currently used wireless communication networks such as cognitive radios (CR), resulting in good impedance matching to its entire ports. In addition, the optimized resistors used provided good isolation between the output ports. The simulation is carried out in this study uses High Frequency Structure Simulator (HFSS) software. The simulati...
A compact ultra-wideband in-phase power divider using a three-line coupled structure is proposed. Th...
A three-port power divider consisting of a directional coupler, a Wilkinson power divider, and two t...
This paper is under in-depth investigation due to suspicion of possible plagiarism on a high similar...
In this paper, compact Ultra-Wide Band (UWB) 1:2:1 unequal split modified Bagley Power Divider (BPD)...
In this work, compact extended ultra-wideband (UWB) Wilkinson power dividers (WPDs) using tapered tr...
This paper presents a new miniaturized multi-section Wilkinson power divider based on coupled-line f...
In this article compact N-way Ultra Wide Band (UWB) equal and unequal split Wilkinson Power Divider ...
NoThe design of a physically small, equal phase and equal power, 1-to-4 ultra-wideband Wilkinson pow...
This paper presents analysis and design of a wideband Wilkinson power divider for wireless applicati...
Abstract—A power divider with ultra-wideband (UWB) performance has been designed. The quarter-wave t...
This paper proposed three modified Wilkinson power dividers in order to achieve a size reduction and...
We propose a compact wideband multi-way power divider/combiner with planar structure for application...
In this paper, a novel analytical design technique is presented to implement a coupled-line wideband...
Abstract—This paper presents the design of a novel dual-band unequal Wilkinson power divider. The pr...
In the field of RF/Microwave Engineering, the Wilkinson Power divider is a passive device frequently...
A compact ultra-wideband in-phase power divider using a three-line coupled structure is proposed. Th...
A three-port power divider consisting of a directional coupler, a Wilkinson power divider, and two t...
This paper is under in-depth investigation due to suspicion of possible plagiarism on a high similar...
In this paper, compact Ultra-Wide Band (UWB) 1:2:1 unequal split modified Bagley Power Divider (BPD)...
In this work, compact extended ultra-wideband (UWB) Wilkinson power dividers (WPDs) using tapered tr...
This paper presents a new miniaturized multi-section Wilkinson power divider based on coupled-line f...
In this article compact N-way Ultra Wide Band (UWB) equal and unequal split Wilkinson Power Divider ...
NoThe design of a physically small, equal phase and equal power, 1-to-4 ultra-wideband Wilkinson pow...
This paper presents analysis and design of a wideband Wilkinson power divider for wireless applicati...
Abstract—A power divider with ultra-wideband (UWB) performance has been designed. The quarter-wave t...
This paper proposed three modified Wilkinson power dividers in order to achieve a size reduction and...
We propose a compact wideband multi-way power divider/combiner with planar structure for application...
In this paper, a novel analytical design technique is presented to implement a coupled-line wideband...
Abstract—This paper presents the design of a novel dual-band unequal Wilkinson power divider. The pr...
In the field of RF/Microwave Engineering, the Wilkinson Power divider is a passive device frequently...
A compact ultra-wideband in-phase power divider using a three-line coupled structure is proposed. Th...
A three-port power divider consisting of a directional coupler, a Wilkinson power divider, and two t...
This paper is under in-depth investigation due to suspicion of possible plagiarism on a high similar...