This paper presents a new miniaturized multi-section Wilkinson power divider based on coupled-line for ultra-wideband operation. The proposed divider is composed of three-sections. An even- and odd-mode analysis is used to calculate the characteristics impedances at the designed frequency, and the performance is optimized for ultra-wideband operation from 0.9 to 4.1 GHz. The realized power divider has return loss lower than -10 dB and insertion loss better than -3.8 dB for the frequency band 0.9-4.1 GHz. Moreover, it occupies more than 60% smaller circuit area compared to conventional ring structure Wilkinson power divider. The measurement results show the good agreement with simulated ones
A novel structure that can operate as an in-phase and out-of-phase power divider across 100% fractio...
A compact ultra-wideband in-phase power divider using a three-line coupled structure is proposed. Th...
In this study, a compact four equal way Wilkinson Power Divider (WPD) circuit design was designed fo...
This paper presents a new miniaturized multi-section Wilkinson power divider based on coupled-line f...
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...
In this work, compact extended ultra-wideband (UWB) Wilkinson power dividers (WPDs) using tapered tr...
A compact Ultra-Wide Band (UWB) Wilkinson power divider with different unequal split ratios of 2:1 a...
Abstract—This paper presents dual-band equal/unequal Wilkinson power dividers based on a coupled-lin...
In this paper, a novel analytical design technique is presented to implement a coupled-line wideband...
The design of a modified Wilkinson power divider for wideband applications is presented. Instead of ...
This paper proposed three modified Wilkinson power dividers in order to achieve a size reduction and...
Abstract—A power divider with ultra-wideband (UWB) performance has been designed. The quarter-wave t...
This paper presents a design of compact dual-band Wilkinson power divider (WPD). The cascaded pi-sha...
In this paper, a Wilkinson power divider is modified using four-series delta-stub and folded stepped...
A novel structure that can operate as an in-phase and out-of-phase power divider across 100% fractio...
A compact ultra-wideband in-phase power divider using a three-line coupled structure is proposed. Th...
In this study, a compact four equal way Wilkinson Power Divider (WPD) circuit design was designed fo...
This paper presents a new miniaturized multi-section Wilkinson power divider based on coupled-line f...
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...
In this work, compact extended ultra-wideband (UWB) Wilkinson power dividers (WPDs) using tapered tr...
A compact Ultra-Wide Band (UWB) Wilkinson power divider with different unequal split ratios of 2:1 a...
Abstract—This paper presents dual-band equal/unequal Wilkinson power dividers based on a coupled-lin...
In this paper, a novel analytical design technique is presented to implement a coupled-line wideband...
The design of a modified Wilkinson power divider for wideband applications is presented. Instead of ...
This paper proposed three modified Wilkinson power dividers in order to achieve a size reduction and...
Abstract—A power divider with ultra-wideband (UWB) performance has been designed. The quarter-wave t...
This paper presents a design of compact dual-band Wilkinson power divider (WPD). The cascaded pi-sha...
In this paper, a Wilkinson power divider is modified using four-series delta-stub and folded stepped...
A novel structure that can operate as an in-phase and out-of-phase power divider across 100% fractio...
A compact ultra-wideband in-phase power divider using a three-line coupled structure is proposed. Th...
In this study, a compact four equal way Wilkinson Power Divider (WPD) circuit design was designed fo...