• Title/Summary/Keyword: Way power divider

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A Study of 4way Power Divider using Defected Ground Structure with Spiral Shape (나선형 DGS를 이용한 4way Power Divider에 관한 연구)

  • Lee Sin-Jae;Kang Jung-Hoon;Ahn Dal
    • Proceedings of the KAIS Fall Conference
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    • 2004.06a
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    • pp.151-154
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    • 2004
  • 본 논문에서는 기존 Wilkenson Power Divider의 소형화를 위해 마이크로스트립 선로에 DGS를 삽입하였다. 특성 임피던스 70.7$\Omega$$\lambda$/4 마이 크로스트림 선로를 50$\Omega$ 마이크로스트립 선로에 나선형 DGS를 삽입하여 70.7$\Omega$ 선로를 구현하였다. 이 나선형 DGS를 갖는 마이크로스트립 선로의 소형화를 확인하기 위해 각각 3dB Wilkenson Power Divider와 4way Power Divider를 제작하였다. 제작된 3dB Power Divider는 기존의 3dB Power Divider의 70.7$\Omega$ 전송선로의 길이가 31.95mm인 것에 반해 나선형 DGS를 갖는 50$\Omega$ 전송선로는 21.22mm로 약 10mm (약 $30\%$) 정도 길이가 줄었음을 알 수 있다. 또한 이 3dB Power Divider를 사용하여 4way Power Divider를 구현하였다. 이와 같이 마이크로스트립 선로에 DGS를 삽입함으로 인해 선로의 길이를 줄여 소형화 할 수 있음을 알 수 있다.

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A Design of Broadband N-way Resistance Power Divider (광대역 특성을 갖는 N-way 저항성 전력 분배기 설계)

  • Kang, Min-Ki;Baek, Seung-Ho;Lee, So-Hyun;Jang, Dae-Hoon;Lim, Jong-Sik;Choi, Heung-Taek;Ahn, Dal
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.5
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    • pp.962-966
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    • 2009
  • In this paper, N-way resistance power divider is described for wideband frequency characteristic. For this, we derived in design equation of a N-way resistance power divider using 3-way resistance power divider. We designed 8-way resistance power divider that can divide same power by 7 output and measurement result of fabricated resistance power divider is observed to prove the validity of derived design equation. Fabricated resistance power divider shown equal power division ratio and reflection loss displayed excellent characteristic by about -25dB in broadband from DC to 3GHz.

A 20-way Stripline Power Divider for an S band Linear Array Antenna with Low Loss and Low Side Lobe Level (S 대역 선형 배열 안테나 급전회로를 위한 저손실, 저부엽 20-출력 스트립라인 전력분배기)

  • Kwon, Tae-Min;Kim, Dong-Wook
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.47 no.7
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    • pp.128-134
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    • 2010
  • In this paper, a high-power 20-way stripline power divider with low insertion loss and low side lobe level is successfully designed, fabricated and measured as a feed network for an S-band linear array antenna having Dolph-Chebyshev current distribution which has a narrow beam width and very low side lobe level (SLL). The 20-way stripline power divider consists of an 8-way power divider, three 4-way power dividers and three ring hybrids. It utilizes a T-junction structure as a basic element for power dividing. Notches and modified input/output N-to-stripline transitions are used for improving insertion loss and return loss. The fabricated power divider shows insertion loss less than 0.3 ㏈ and rms phase mismatch less than 8o in the full bandwidth. A final 40-way power divider is synthesized by combining symmetrically two 20-way power dividers and is expected to have SLL over 40 dB, based on the measured results of the 20-way power divider.

Wide-Bandwidth Wilkinson Power Divider for Three-Way Output Ports Integrated with Defected Ground Structure

  • Sreyrong Chhit;Jae Bok Lee;Dal Ahn;Youna Jang
    • Journal of information and communication convergence engineering
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    • v.22 no.1
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    • pp.14-22
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    • 2024
  • This study presents the design of a Wilkinson power divider for three-way output ports (WPD3OP), which incorporates a defected ground structure (DGS). An asymmetric power divider is integrated into the output ports of the conventional Wilkinson power divider (WPD), establishing a three-way output port configuration. The DGS introduces periodic or irregular patterns into the ground plane to suppress unwanted electromagnetic wave propagation, and its incorporation can enhance the performance of the power divider, in terms of the power-division ratio, isolation, and bandwidth, by reducing spurious resonances. The proposed design algorithm for an asymmetric power divider for three-way output ports is analyzed via circuit simulations using High-Frequency Simulation Software (HFSS). The results verify the validity of the proposed method. The analysis of the WPD3OP integrated with DGS certifies the achievement of a center frequency of 2 GHz. This confirmation is supported by schematic ideal design simulation results and measurements encompassing insertion losses, return losses, and isolation.

Design of Lumped Element type N-Way Power Divider with Harmonic Suppress characteristic (고조파 억제 특성을 갖는 집중 소자형 N-Way 전력 분배기 설계)

  • Lee Sang-Hyun;Park Jun-Seok;Kim Heong-Seok;Lim Jae-Bong;Cho Hong-Goo
    • 한국정보통신설비학회:학술대회논문집
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    • 2003.08a
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    • pp.85-87
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    • 2003
  • In this paper, Surppose lumped element type power divider with superior Harmonic suppress characteristic This power divider is small than general power divider(Wilkinson power divider) in low frequency. The lumped element type power divider have applicationa Filter theory. The lumped element type power divider employ neighborhood low frequency as 10MHz.

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Design of 2-way broadband power divider with bandwidth of Cellular and PCS band (셀룰러와 PCS대역의 대역폭을 가지는 2-way 광대역 전력 분배기 설계)

  • 정태훈;오준석;최영식;한대현
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2001.10a
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    • pp.205-209
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    • 2001
  • In this paper, we designed power divider that using cellular and PCS band as 2-way device, because each port of designed power divider have reversion that is used to divide the power or compose the power in case of the 2 way, if input port of characteristic impedance with 50$\Omega$ is loading the power then size and phase of power appear on two output port being shared to two parts equally. Usually, divider have division effect of 3dB, but divider have insertion loss when designed in this paper, we have the purpose to design that have good isolation and design that equal insertion loss with minimum insertion loss in the broadband.

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An Eight-Way Radial Switch Based on SIW Power Divider

  • Lee, Dong-Mook;An, Yong-Jun;Yook, Jong-Gwan
    • Journal of electromagnetic engineering and science
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    • v.12 no.3
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    • pp.216-222
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    • 2012
  • This paper presents a single-pole eight-throw switch, based on an eight-way power divider, using substrate integrate waveguide(SIW) technology. Eight sectorial-lines are formed by inserting radial slot-lines on the top plate of SIW power divider. Each sectorial-line can be controlled independently with high level of isolation. The switching is accomplished by altering the capacitance of the varactor on the line, which causes different input impedances to be seen at a central probe to each sectorial line. The proposed structure works as a switching circuit and an eight-way power divider depending on the bias condition. The change in resonant frequency and input impedance are estimated by adapting a tapered transmission line model. The detailed design, fabrication, and measurement are discussed.

Compact Dual-Band Three-Way Metamaterial Power-Divider with a Hybrid CRLH Phase-Shift Line

  • Jang, Kyeongnam;Kahng, Sungtek;Jeon, Jinsu;Wu, Qun
    • Journal of electromagnetic engineering and science
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    • v.14 no.1
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    • pp.15-24
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    • 2014
  • A compact dual-band three-way metamaterial power divider is proposed that has three in-phase outputs. Fully printed composite rightand left-handed (CRLH) unequal and equal power dividers are first implemented for 900-MHz and 2.4-GHz bands with the power-division ratios of 2:1 and 1:1, respectively. An initial 1:1:1 power divider is then achieved by incorporating the input of the two-way equal block into an output of the unequal block, and trimming the interconnection parameters. The condition of an identical phase at the three outputs of the power divider is then met by devising a hybrid CRLH phase-shift line to compensate for the different phase errors at the two frequencies. This scheme is confirmed by predicting the performance of the power divider with circuit analysis and full-wave simulation and measuring the fabricated prototype. They results show agreement; the in-phase outputs as well as the desirable power-division are accomplished and outdo the conventional techniques.

A variable power divider circuit using the combine characteristic of the branchline coupler (브랜치라인 커플러 결합을 이용한 가변 전력 분배기 회로)

  • Park, Ung-hee
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.21 no.2
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    • pp.245-251
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    • 2017
  • The proposed variable pawer divider in this paper is composed of one equal power 2-way Wilkinson power divider, two variable phase shifters with 90-degree phase variation to be connected two output paths of the 2-way power divider, and one branchline coupler to combine output signals of two variable phase shifter. The proposed variable power divider can theoretically have an arbitrary power division ratio ranging from ${\infty}:1$ to ${\infty}:1$ due to 90-degrees phase variation of two phase shifter. The proposed power divider circuit fabricates on laminated TLX-9(h=20 mil, er=2.5; Taconic) with a center frequency of 1.7 GHz. The power division ratio of the fabricated prototype varies from about 1:100 to 200:1, with an input reflection characteristic(S11) of below -16 dB, an insertion loss of about -1.0 dB, and an isolation characteristic of below -17 dB between two output ports in the range 1.65-1.75 GHz.

A Study on the Power Amplifier Development using Traveling wave combiner in X-band (Traveling wave 전력 결합기를 이용한 X-대역 전력증폭기 개발에 관한 연구)

  • Sun, Gwon-Seok;Ha, Sung-Jae
    • The Journal of the Korea institute of electronic communication sciences
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    • v.9 no.12
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    • pp.1331-1336
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    • 2014
  • In this study, we have implemented a PAM(Power Amplifier Module) with 25W output power using by cooperate divider/Combiner circuit in X-band to minimize combine loss on a Al2O3 substrate. The PAM(Power Amplifier Module) is consisted of MMIC and 10way traveling wave divider/Combiner with proposed structure what have showed that 45.2dBm output power, 16dB gain, PAE 26 % and 17dBc@44dBm IMD3 characteristics. This combine/divider structure can be used when multistage passive divider and combiner needs. especially, power amplifier with very compact size.