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The signal coming from the antenna is divided into two equal parts using a power divider.
The proposed Gysel power divider provides a high power-handling advantage over Wilkinson power divider.
The simulation and measurement results of the designed power divider indicate the effectiveness of the proposed power divider.
A compact in-phase power divider is introduced.
A prototype of the proposed power divider is designed, fabricated, and measured.
A power divider can be utilized as a feeding network of an antenna array.
For the synthesis of a radiation pattern, an unequal-split power divider is required.
The measured 15 dB return-loss bandwidth of the power divider is about 600 MHz.
The proposed power divider consists of three metallic layers and two dielectric layers.
A sample power divider is designed at 1 GHz to verify the design procedure.
The coupling resonance theory is used to analyze the N-way bandpass-filtering power divider.
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