Design of Wideband In-Phase and Out-of-Phase Power Dividers Using Microstrip-to-Slotline Transitions and Slotline Resonators
A new class of in-phase and out-of-phase power dividers with constant equal-ripple frequency response and wide operating bandwidth is presented in this paper. The proposed design is based on microstrip-to-slotline transitions and slotline resonators. A slotted T-junction is adopted to split the powe...
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Published in | IEEE transactions on microwave theory and techniques Vol. 67; no. 4; pp. 1412 - 1424 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.04.2019
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | A new class of in-phase and out-of-phase power dividers with constant equal-ripple frequency response and wide operating bandwidth is presented in this paper. The proposed design is based on microstrip-to-slotline transitions and slotline resonators. A slotted T-junction is adopted to split the power into two parts and obtain wideband isolation between the two output signals at the same time. The characteristic impedance of the transitions and resonators determines the operating bandwidth and in-band magnitude response. By reversing the placement direction of the slotline-to-microstrip transition, the electrical field is reversed, thus resulting in out-of-phase responses between output ports. A thorough analysis of the relations between the structure and the characteristic functions is provided to guide the selection of parameters of the structure in order to meet the design objectives. In the structure, simulation and measurement are conducted to verify the design method. For both in-phase and out-of-phase cases, more than 110% bandwidth has been achieved with excellent matching at all ports and isolation of output signals. Constant in-band ripple is obtained within the operating band of the power dividers, indicating that the proposed design can realise minimal power deviations, which is extremely desired in wireless systems. |
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AbstractList | A new class of in-phase and out-of-phase power dividers with constant equal-ripple frequency response and wide operating bandwidth is presented in this paper. The proposed design is based on microstrip-to-slotline transitions and slotline resonators. A slotted T-junction is adopted to split the power into two parts and obtain wideband isolation between the two output signals at the same time. The characteristic impedance of the transitions and resonators determines the operating bandwidth and in-band magnitude response. By reversing the placement direction of the slotline-to-microstrip transition, the electrical field is reversed, thus resulting in out-of-phase responses between output ports. A thorough analysis of the relations between the structure and the characteristic functions is provided to guide the selection of parameters of the structure in order to meet the design objectives. In the structure, simulation and measurement are conducted to verify the design method. For both in-phase and out-of-phase cases, more than 110% bandwidth has been achieved with excellent matching at all ports and isolation of output signals. Constant in-band ripple is obtained within the operating band of the power dividers, indicating that the proposed design can realise minimal power deviations, which is extremely desired in wireless systems. |
Author | Guo, Y. Jay Cheng, Zhiqun Zhu, He |
Author_xml | – sequence: 1 givenname: He orcidid: 0000-0002-5157-8457 surname: Zhu fullname: Zhu, He email: he.zhu@uts.edu.au organization: Global Big Data Technologies Center, University of Technology Sydney, Ultimo, NSW, Australia – sequence: 2 givenname: Zhiqun surname: Cheng fullname: Cheng, Zhiqun organization: School of Electronic Engineering, Hangzhou Dianzi University, Hangzhou, China – sequence: 3 givenname: Y. Jay orcidid: 0000-0001-6008-9682 surname: Guo fullname: Guo, Y. Jay organization: Global Big Data Technologies Center, University of Technology Sydney, Ultimo, NSW, Australia |
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SubjectTerms | Bandwidths Broadband Characteristic functions Frequency response In phase Microstrip microstrip-to-slotline transitions Microwave theory and techniques out of phase planar Ports power divider Power dividers Resonators Slot lines slotline resonators Wideband |
Title | Design of Wideband In-Phase and Out-of-Phase Power Dividers Using Microstrip-to-Slotline Transitions and Slotline Resonators |
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