• Title/Summary/Keyword: Power-Divider

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A Novel Unequal Broadband Out-of-Phase Power Divider Using DSPSLs

  • Lu, Yun Long;Dai, Gao-Le;Li, Kai
    • ETRI Journal
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    • v.36 no.1
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    • pp.116-123
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    • 2014
  • In this paper, a novel unequal broadband out-of-phase power divider (PD) is presented. Double-sided parallel-strip lines (DSPSLs) are employed to achieve an out-of-phase response. Also, an asymmetric dual-band matching structure with two external isolation resistors is utilized to obtain arbitrary unequal power division, in which the resistors are directly grounded for heat sinking. A through ground via (TGV), connecting the top and bottom sides of the DSPSLs, is used to short the isolation components. Additionally, this property can efficiently improve the broadband matching and isolation bandwidths. To investigate the proposed divider in detail, a set of design equations are derived based on the circuit theory and transmission line theory. The theoretical analysis shows that broadband responses can be obtained as proper frequency ratios are adopted. To verify the proposed concept, a sample divider with a power division of 2:1 is demonstrated. The measured results exhibit a broad bandwidth from 1.19 GHz to 2.19 GHz (59.2%) with a return loss better than 10 dB and port isolation of 18 dB.

An Analysis and Design of Omnidirectional Lossy Power Combiner/Divider (Omnidirectional Lossy Power 결합기/분배기 해석 및 설계)

  • An, Ka-Ram;Kang, Hyun-Il;Park, Jong-Ae;Park, Jun-Seok;Lim, Jae-Bong;Cho, Hong-Goo
    • Proceedings of the KIEE Conference
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    • 2004.07c
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    • pp.2046-2048
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    • 2004
  • In this paper, we have proposed a novel omnidirectional power divider/combiner configuration. By using the even- and odd- mode analysis. we analyse the proposed power divider/combiner circuit. In order to show the validity of the presented power divider/combiner circuit. We have designed and implemented the proposed circuit of the center frequency of 2.3GHz.

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Design of A Microwave Planar Broadband Power Divider (마이크로파대 평면형 광대역 전력 분배기 설계)

  • Park, Jun-Seok;Kim, hyeong-Seok;Ahn, Dal;Kang, Kwang-yong
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.12 no.4
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    • pp.651-658
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    • 2001
  • A novel multi-section power divider configuration is proposed to obtain wide-band frequency performance up to microwave frequency region. Design procedures for the proposed microwave broadband power divider are composed of a planar multi-section three-ports hybrid and a waveguide transformer design procedures. The multi-section power divider is based on design theory of the optimum quarter-wave transformer. Furthermore, in order to obtain the broadband isolation performance between the two adjacent output ports, the odd mode equivalent circuit should be matched by using the lossy element such as resistor. The derived design formula for calculating these odd mode matching elements is based on the singly terminated filter design theory. The waveguide transformer section is designed to suppress the propagation of the higher order modes such as waveguide modes due to employing the metallic electric wall. Thus, each section of the designed waveguide transformer should be operated with evanescent mode over the whole design frequency band of the proposed microwave broadband power divider. This paper presents several simulations and experimental results of multi-section power divider to show validity of the proposed microwave broadband power divider configuration. Simulation and experiment show excellent performance of multi section power divider.

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New UWB 1:2 Power Divider with Flat In-Band Splitting and Bandpass Filtering Functions

  • Duong, Thai Hoa;Kim, Ihn-Seok
    • Journal of electromagnetic engineering and science
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    • v.10 no.1
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    • pp.28-34
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    • 2010
  • This paper introduces a new U.S. ultra-wideband(UWB: 3.1~10.6 GHz) 1:2 power divider based on a single section Wilkinson type configuration. The divider provides very flat in-band power splitting, high isolation, low insertion loss, sharp roll-off bandpass filtering, and DC blocking characteristics. The circuit consists of a $\lambda$/4 Y resonator, three capacitively coupled $\lambda$/2 short-circuited lines, and a resistor between the two output ports. The circuit structure was simulated with ADS and HFSS, and realized with low-temperature co-fired ceramic(LTCC) green tape, which has a dielectric constant of 7.8. $|S_{11}|$ better than 10 dB, $|S_{21}|$ and $|S_{31}|$ less than 3.2 dB, with both $|S_{22}|$ and $|S_{32}|$ measured as better than 12 dB for the whole UWB band. Measurement results agree closely with HFSS simulation results. The power divider has a compact size of $4\times9\times0.6mm^3$.

High Performance Wilkinson Power Divider Using Integrated Passive Technology on SI-GaAs Substrate

  • Wang, Cong;Qian, Cheng;Li, De-Zhong;Huang, Wen-Cheng;Kim, Nam-Young
    • Journal of electromagnetic engineering and science
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    • v.8 no.3
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    • pp.129-133
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    • 2008
  • An integrated passive device(IPD) technology by semi-insulating(SI)-GaAs-based fabrication has been developed to meet the ever increasing needs of size and cost reduction in wireless applications. This technology includes reliable NiCr thin film resistor, thick plated Cu/Au metal process to reduce resistive loss, high breakdown voltage metal-insulator-metal(MIM) capacitor due to a thinner dielectric thickness, lowest parasitic effect by multi air-bridged metal layers, air-bridges for inductor underpass and capacitor pick-up, and low chip cost by only 6 process layers. This paper presents the Wilkinson power divider with excellent performance for digital cellular system(DCS). The insertion loss of this power divider is - 0.43 dB and the port isolation greater than - 22 dB over the entire band. Return loss in input and output ports are - 23.4 dB and - 25.4 dB, respectively. The Wilkinson power divider based on SI-GaAs substrates is designed within die size of $1.42\;mm^2$.

Design of an Improved Weakly-Coupled Power Divider and a Generalized n-Way Power Divider for CATV and/or MATV Systems (CATV 및 MATV 시스템용 개량된 약결합 전력분배기와 일반화된 n-분기 전력분배기의 설계에 관한 연구)

  • Kim, Dong Il;Chung, Se-Mo;Choi, Jai Chul;Son, Jin-Hyeon;Ryu, Dea Keun;Hong, Tchang-Hee
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.24 no.1
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    • pp.115-122
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    • 1987
  • In this paper, we proposed an improved weakly-coupled power divider(TAP UNIT) for CATV and/or MATV systems, by which the degree of freedom in design and density of coupling interval are signifcantly increased compared with the intrinsic one even though the turn ratios are still of discrete values. On the other hand, the new design theory of a generalized n-way power divider with arbitrary dividing ratios, for CATV and/or MATV systems, which consists of ideal multiwinding transformers and resistors only was presented. Since the circuit elements is not frequency dependent, the proposed power divider is to be of considerably broad bandwidth. Furthermore, the experimental verification has been achieved, and, hence, the validity of the design theory proposed here is confirmed.

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Design of miniaturized power divider multiple coupled line on RFIC/MMIC for application to vessel wireless communication components (선박 무선통신소자에의 응용을 위한 다중결합 선로를 이용한 RFIC/MMIC용 초소형 전력분배기의 설계)

  • Lee, Dong-Hwan;Yun, Young
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2005.06a
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    • pp.401-405
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    • 2005
  • This paper proposed a miniaturization passive element employing the multiple microstrip line. As a result of this method, we realized the transmission line miniaturized. The applying structure designed and evaluated a power divider on GaAS MMIC circuit. It draws a plan in a center Frequency as the observation could do good characteristic.

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Compact Wilkinon Power Divider Design and Simulation Using IPD Technology

  • Cong, Wang;Kim, Nam-Young
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.186-188
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    • 2008
  • The wireless communication revolution has spawned a revival of interest in the design and optimization of radio transceivers. Radio transmit modules continue to shrink in die size and cost, requiring novel approaches for integration of the numerous passive elements of the radio front-end. A 3 dB Wilkinson power divider based on GaAs substrates, for DCS 1710-1880 MHz band was designed and fabricated showing excellent performance.

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The variable power divider circuit to use the ring-hybrid coupler (링-하이브리드 커플러를 이용한 가변 전력 분배기 회로)

  • Park, Ung-hee
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.20 no.2
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    • pp.253-259
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    • 2016
  • This paper introduces a new variable power divider circuit with an arbitrary power division ratio ranging from $1:{\infty}$ to ${\infty}:1$. The proposed power divider circuit consists of one branch-line coupler to be a good input matching characteristic, two variable phase shifters with 90-degree phase variation to be connected two output paths of the branch-line coupler, and one ring-hybrid coupler to combine output signals of two variable phase shifter. The power division ratio between the two output ports of the proposed power divider can be easily controlled by the phase variation of the two phase shifter. The proposed power divider circuit fabricates on laminated RF-35 (h = 20 mil, er=3.5; Taconic) with a center frequency of 2 GHz. The power division ratio of the fabricated prototype varies from about 1:1000 to 5000000:1, with an input reflection characteristic(S11) of below -20 dB, an insertion loss of about -1.0 dB, and an isolation characteristic of below -17 dB between two output ports in the range 1.9-2.1 GHz.

Fully Printed Dual-Band Power Divider Miniaturized by CRLH Phase-Shift Lines

  • Eom, Da-Jeong;Kahng, Sungtek
    • ETRI Journal
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    • v.35 no.1
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    • pp.150-153
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    • 2013
  • In this letter, a compact and fully printed composite right- and left-handed (CRLH) dual-band power divider is proposed. The branches of the conventional Wilkinson power divider are replaced by subwavelength CRLH phase-shift lines having $+90^{\circ}$ for one frequency and $-90^{\circ}$ for another frequency for dual-band and miniaturization performance. Equations are derived for the even- and odd-mode analysis combined with the dual-band CRLH circuit. A PCS and a WLAN band are chosen as the test case and the circuit approach agrees with the CAD simulation and the measurement. Additionally, the CRLH property is shown with the dispersion diagram and the eightfold size reduction is noted.