• Title/Summary/Keyword: Wilkinson Divider

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Design of a 1 × 2 Array Microstrip Antenna for Active Beam Compensation at X-band (X-밴드 능동적 빔 보상 1 × 2 배열 마이크로스트립 안테나 설계)

  • Choi, Yoon-Seon;Woo, Jong-Myung
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.15 no.2
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    • pp.111-118
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    • 2016
  • This paper presents an X-band (9.375 GHz) $1{\times}2$ array microstrip antenna which is capable of active beam compensation for installation of an unmanned aerial vehicle (UAV). First of all, a basic $1{\times}2$ array microstrip antenna incorporated with wilkinson power divider was designed and performance of the array antenna was verified. Next, to verify beam steering performance of the designed array microstrip antenna, we fabricated a phase shifter, and the wilkinson power divider as module structure and measured characteristics of beam steering according to phase shifting. The main lobe is 0.6 dBi at $0^{\circ}$, and the side lobe decreased 18.8 dB. The reliable radiation pattern was achieved. Finally, an active beam steering microstrip array antenna attached with the phase shifter and the power divider on the back side of the antenna was designed and fabricated to install wing of UAV for compactness. The maximum gain is 0.1 dBi. Therefore, we obtained a basic antenna technology for compensating beam error according to wing deformation of an UAV installed array antennas.

A Design of 3 dB Power Divider using Slow-wave Characteristic (Slow-wave 특성을 이용한 3 dB 전력 분배기 설계)

  • Kim, Chul-Soo;Park, Jun-Seok;Ahn, Dal;Kim, Geun-young
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.10 no.5
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    • pp.694-700
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    • 1999
  • In this paper, we studied the design of power divider using the slow-wave effect of Photonic Bandgap structure, which is etched on the ground plane. The proposed PBG structure can provides the changing of the characteristic impedance of the transmission line and the group delay velocity characteristic. Therefore we can make wider width than the width of conventional transmission line and decrease the length of transmission line. We presented the application for power divider using the characteristic impedance and electrical length extracted from scattering parameter. As adding proposed defect units, the effect of defect is studied. The experimental results show good agreements with the simulated results.

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Control of Phase and Phase Slope with Reinvestigation of 1D CRLH Transmission Lines

  • Jeon, Dongho;Lee, Bomson
    • Journal of electromagnetic engineering and science
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    • v.12 no.4
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    • pp.280-286
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    • 2012
  • The conventionally classified waves are reclassified in this paper, including the waves associated with metamaterial (MTM) transmission lines. Various types of guided waves in periodic structures are analyzed for 1D Composite Right/Left Handed (CRLH) transmission lines (TL). In addition, dispersion diagrams for 1D CRLH, RH, and LH TLs are presented in terms of radiation conditions. We have refined the design equations of the conventional 1D CRLH TL and proposed a condition to realize the desired phase shift and its slope per unit cell. This condition has been applied to the conventional Wilkinson power divider and realized into MTM added $90^{\circ}$ hybrid coupler. Based on the 10 dB return loss and the $90{\pm}10^{\circ}$ phase shift, the bandwidths of the MTM added $90^{\circ}$ hybrid coupler are 82.25% and 103.5% against the conventional 23% and 52.5%, respectively.

Bandwidth Enhancement of Circularly Polarized Dielectric Resonator Antenna

  • Sun, Ru-Ying
    • ETRI Journal
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    • v.37 no.1
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    • pp.26-31
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    • 2015
  • Axial-ratio (AR) bandwidth enhancement is achieved for a circularly polarized (CP) cylindrical dielectric resonator antenna (DRA) using a wideband hybrid coupler (WHC) combined with dual probe feed. The presented WHC, comprised of a Wilkinson power divider and a wideband $90^{\circ}$ shifter, delivers good characteristics in terms of 3 dB power splitting and consistent $90^{\circ}$ (${\pm}5^{\circ}$) phase shifting over a wide bandwidth. In turn, the proposed CP DRA, for the employment of the WHC, in place of conventional designs, provides a significant enhancement on AR bandwidth and impedance matching. The antenna prototype with the WHC exhibits a 3 dB AR bandwidth of 48.66%, an impedance bandwidth of 52.5% for voltage standing wave ratio (VSWR) ${\leq}2$, and a bandwidth of 44.66% for a gain of no less than 3 dBi. Experiments demonstrate that the proposed WHC is suitable for broadband CP DRA design.

Design of Size Reduced Wilkinson Power Divider Using Substrate Integrated Artificial Dielectric (SIAD) (적층형 가유전체 구조를 이용한 소형화된 윌킨슨 전력분배기의 설계)

  • Koo, Ja-Kyung;Lim, Jong-Sik;Ahn, Dal
    • Proceedings of the KAIS Fall Conference
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    • 2009.05a
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    • pp.300-302
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    • 2009
  • 적층형 가유전체 구조는 유효유전율과 유효투자율은 주어진 표준형 전송선로의 경우보다 증가하므로 결과적으로 전송선로의 길이를 짧게 할 수 있는 장점이 있다. 따라서 회로의 소형화에 유용하게 사용될 수 있는데, 본 논문에서는 한 예로써 대표적인 무선 회로인 윌킨슨 전력분배기의 소형화된 회로에 대하여 기술하고 있다. 표준형 회로와 적층형 가유전체 구조를 이용하여 소형화한 윌킨슨 전력분배기를 2GHz 대역에서 설계하여 실제로 제작하여 측정한 결과를 제시한다. 종래의 표준형 회로와 비교할 때, 동일한 성능을 유지하면서도 회로의 크기가 32%만큼 감소한 결과가 소개된다.

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The Design on a Wideband Active Printed Dipole Antenna using a Balanced Amplifier

  • Lee, Sung-Ho;Kwon, Se-Woong;Lee, Byoung-Moo;Yoon, Young-Joong;Song, Woo-Young
    • Journal of electromagnetic engineering and science
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    • v.2 no.2
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    • pp.112-116
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    • 2002
  • In this paper, the active integrated antenna(AIA) using a wideband printed dipole antenna and a balanced amplifier is designed and fabricated. The proposed active printed dipole antenna has characteristics of easy matching, wide bandwidth and higher output power To feed balanced signal to printed dipole, a Wilkinson power divider and delay lines are used. The measured result shows that, at 6 GHz center frequency, the impedance bandwidth is 22 % (VSWR < 2), 3 dB gain bandwidth is 28 %, the maximum gain is 14.77 dBi, and output power at P1 dB point is 23 dBm.

Implementation and Evaluation of the 100 Watt High Power Amplifier for Broadband Digital TV Repeater (광대역 디지털TV 중계기용 100 Watt 고출력증폭기의 구현 및 특성 측정에 관한 연구)

  • Sung, Jeon-Joong
    • Journal of Advanced Marine Engineering and Technology
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    • v.31 no.5
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    • pp.575-582
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    • 2007
  • In this paper, a 100 Watt high power amplifier has been implemented and performed evaluation, which is operating at UHF band ($470\;{\sim}\;806\;MHz$) for Digital TV repeater. To achieve increase of bandwidth and high power capability, 3-way power combiner and divider of Wilkinson type was adopted. In order to measure the fabricated 100 Watt power amplifier, the estimation technique function which makes equivalent mask was used. As a result of the measurement, the existence of pilot signal is confirmed and the signal transmitted at the rated output power 100 Watt is brought out the flat feature through 6 MHz bandwidth. and it resulted that its value was less than -47 dB at the edge of radiation channel and less than -110 dB at more than 6 MHz position from channel edge.

Development of a New Active Phase Shifter

  • Kim, S.J.;N.H. Myung
    • Proceedings of the IEEK Conference
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    • 2000.07b
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    • pp.1063-1066
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    • 2000
  • ln this paper, a new active phase shifter is proposed using a vector sum method, and it is shown that the proposed phase shifter is more efficient than the others in size, power, number of circuits, and gain. Also a unique digital phase control method of the circuit is suggested. The proposed scheme was designed and implemented using a Wilkinson power combiner/divider, a branch line 3dB quadrature hybrid coupler and variable gain amplifiers (VGAs) using dual gate FETs (DGFETs). Furthermore, it is also shown that the proposed scheme is more efficient and works properly with the digital phase control method.

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Compact and Broadband 90° Coupler Using a Metamaterial (메타 물질을 이용한 초소형, 광대역 90° 커플러)

  • Kim, Hong-Joon
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.23 no.7
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    • pp.844-847
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    • 2012
  • By using LHTL(Left-Handed Transmission Line) which is a form of a metamaterial and conventional RHTL (Right-Handed Transmission Line), we designed, fabricated and tested a broadband $90^{\circ}$ coupler which is a basic circuit for I-Q vector signal generation. Synthetic LHTL and RHTL were implemented with capacitors and inductors only, that the size is minimized. Also, by implementing a Wilkinson power divider which is required for the suggested circuit using a synthetic RHTL, the size of whole circuit is only $11mm{\times}12mm$. For the frequency range 0.8~1.25 GHz, the phase difference at the outputs maintained $90^{\circ}{\pm}5^{\circ}$ and thus, a broadband $90^{\circ}$ coupler could be made in a compact form. for the same frequency range, the insertion loss is less than 1.6 dB and return loss is more than 10.1 dB. To the best of our knowledge, this is the smallest and broadband $90^{\circ}$ coupler for the frequency range and if the circuit is made with MMIC(Monolithic Microwave Integrated Circuit) technology, the size will be reduced much further.

Design and Fabrication of a Ka-Band 10 W Power Amplifier Module (Ka-대역 10 W 전력증폭기 모듈의 설계 및 제작)

  • Kim, Kyeong-Hak;Park, Mi-Ra;Kim, Dong-Wook
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.20 no.3
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    • pp.264-272
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    • 2009
  • In this paper, a Ka-band 10 W power amplifier module is designed and fabricated using MIC(Microwave Integrated Circuit) module technology which combines multiple power MMIC(Monolithic Microwave Integrated Circuit) chips on a thin film substrate. Modified Wilkinson power dividers/combiners are used for millimeter wave modules and CBFGC-PW-Microstrip transitions are utilized for reducing connection loss and suppressing resonance in the high-gain and high-power modules. The power amplifier module consists of seven MMIC chips and operates in a pulsed mode. for the pulsed mode operation, a gate pulse control circuit supplying the control voltage pulses to MMIC chips is designed and applied. The fabricated power amplifier module shows a power gain of about 58 dB and a saturated output power of 39.6 dBm at a center frequency of the interested frequency band.