• Title/Summary/Keyword: RF Coupler

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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.

Design and Fabrication of a Wideband Single-Balanced-Mixer using Planar Balun (평판형 발룬을 이용한 단일 평형 광대역 주파수 혼합기의 설계 및 제작)

  • 김성민;정재호;최현철
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.10 no.1
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    • pp.90-98
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    • 1999
  • This paper presents a wideband single-balanced mixer using a diode which can be used in RF receiver of microwave measurement systems. For wideband characteristic, local oscillator(LO) signal is provided to diode with low loss using a coplanar waveguide-to-slotline balun. For high isolation characteristic radio frequency (RF) port and intermediate frequency (IF) port are designed using directional coupler. This mixer presents 30.5~31.17dB conversion loss whose flatness is within 1dB for 9 kHz~2.6 GHz wideband RF signal, and above 30 dB isolation for LO signal.

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A Study on Design and Fabrication of High Isolation W-band MIMIC Single-balanced Mixer (높은 격리도 특성의 W-밴드용 MIMIC 단일 평형 주파수 혼합기의 설계 및 제작 연구)

  • Yi, Sang-Yong;Lee, Mun-Kyo;An, Dan;Lee, Bok-Hyung;Lim, Byeong-Ok;Rhee, Jin-Koo
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.44 no.11
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    • pp.48-53
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    • 2007
  • In this paper, a high LO-RF isolation W-band MIMIC single-balanced mixer was designed and fabricated using a branch line coupler and a ${\lambda}/4$ transmission line. The W-band MIMIC single-balanced mixer was designed using the $0.1\;{\mu}m$ InGaAs/InAlAs/GaAs Metamorphic HEMT diode. The fabricated MHEMT was obtained the cut-off frequency($f_T$) of 154 GHz and the maximum oscillation frequency($f_{max}$) of 454 GHz. The designed MIMIC single-balanced mixer was fabricated using $0.1\;{\mu}m$ MHEMT MIMIC process. From the measurement, the conversion loss of the single-balanced mixer was 12.8 dB at an LO power of 8.6 dBm. P1 dB(1 dB compression point) of input and output were 5 dBm and -8.9 dBm, respectively. The LO-RF isolations of single-balanced mixer was obtained 37.2 dB at 94 GHz. We obtained in this study a higher LO-RF isolation compared to some other balanced mixers in millimeter-wave frequencies.

High LO-RF Isolation W-band MIMIC Single-balanced Mixer (높은 LO-RF 격리 특성의 W-band MIMIC Single-balanced 믹서)

  • An Dan;Lee Bok-Hyung;Lim Byeong-Ok;Lee Mun-Kyo;Lee Sang-Jin;Jin Jin-Min;Go Du-Hyun;Kim Sung-Chan;Shin Dong-Hoon;Park Hyung-Moo;Park Hyim-Chang;Kim Sam-Dong;Rhee Jin-Koo
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.42 no.6 s.336
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    • pp.67-74
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    • 2005
  • In this paper, high LO-RF isolation W-band MIMIC single-balanced mixer was designed and fabricated using a branch line coupler and a $\lambda$/4 transmission line. The simulation results of the designed 94 GHz balun show return loss of -27.9 dB, coupling of -4.26 dB, and thru of -3.77 dB at 94 GHz, respectively. The isolation and phase difference were 23.5 dB and $180.2^{\circ}$ at 94 GHz. The W-band MIMIC single-balanced mixer was designed using the 0.1 $\mu$m InGaAs/InAlAs/GaAs Metamorphic HEMT diode. The fabricated MHEMT was obtained the cut-off frequency(fT) of 189 GHz and the maximum oscillation frequency(fmax) of 334 GHz. The designed MIMIC single-balanced mixer was fabricated using 0.1 $\mu$m MHEMT MIMIC Process. From the measurement, the conversion loss of the single-balanced mixer was 23.1 dB at an LO power of 10 dBm. Pl dB(1 dB compression point) of input and output were 10 dBm and -13.9 dBm respectively. The LO-RF isolations of single-balanced mixer was obtained 45.5 dB at 94.19 GHz. We obtained in this study a higher LO-RF isolation compared to some other balanced mixers in millimeter-wave frequencies.

Implementation of Self-Interference Signal Cancelation System in RF/Analog for In-Band Full Duplex (동일대역 전이중 통신을 위한 RF/아날로그 영역에서의 자기간섭 신호 제거 시스템 구현)

  • Lee, Jiho;Chang, Kapseok;Kim, Youngsik
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.27 no.3
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    • pp.277-283
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    • 2016
  • In this paper, a system of self-interference signal cancelation for in-band full duplex has been implemented and tested in RF/analog region. The system performance has been evaluated with NI5791 platform and NI Flex RIO. Due to the low power level of the NI5791, the RF signal is amplified by SKYWORKS SE2565T power amplifier. A circulator is used to feed the antenna both the transmitter and receiver. The RF FIR filter is designed by twelve delay taps in two different groups, and the interval between each delay tap is designed to have 100 ps. The amplified signal is distributed to antenna and the FIR filter by use of a 10 dB directional coupler. The tap coefficients of the RF FIR filter are tuned to estimate the self-interference signal coming from antenna reflection and the leakage of the circulator, and the self-interference signal is subtracted. The system is test with 802.11a/g 20 MHz OFMD at 2.56 GHz, and the output power of the amplifier of 0 dBm. The self-interference signal is canceled out by 53 dB.

LTCC 적층 필터 동향

  • 황희용
    • The Proceeding of the Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.3
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    • pp.50-57
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    • 2003
  • 현재의 LTCC 필터는 주파수 대역이나 서비스의 종류에 따라서 다르지만 대개 LPF, BPF, x-plexer 등 단품에서 Balun, Antenna, Coupler, RF-lC Chip, Matching회로 등과의 복합부품화, 복합모듈화의 형태로 진행되고 있다. LTCC기술을 간단히 요약하고 LTCC 필터 설계의 주요 측면을 살펴본 후, 휴대 단말기 분야뿐 아니라 최근의 2.4 GHz, 5.2 GHz, 5.8 GHz의 WLAN의 LTCC 필터, Waveguide형 LTCC 필터, Module화 등의 예를 보인다. 최신의 시장 예측기관의 조사 자료도 같이 살펴보고 향후 전망을 해 본다.

Ka-band high-$T_c$ superconductor and III-V semiconductor hybrid balanced mixer

  • Kwak, M.H.;Suh, J.D.;Kang, Kwang-Yong;Han, S.K.
    • 한국초전도학회:학술대회논문집
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    • v.10
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    • pp.15-20
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    • 2000
  • We demonstrated a single balanced mixer of the combination of high-T. superconductor (HTS) and III-V GaAs beam lead Schottky diodes operating in the mini-cryogenic chamber. The HTS hybrid mixer was designed with a center frequency of 27.5 GHz and a bandwidth of 1 GHz, and consisted of a rat-race coupler circuit with beam-lead diodes attached to its balanced ports. The HTS hybrid mixer with 1 GHz RF bandwidths exhibits a conversion loss of 6 dB. A LO-to-RF isolation was greater than 40 dB in the range of operating frequencies. Since the HTS/III-V hybrid mixer devices have lower noise and conversion loss, this technique provide us with new capabilities that can be effectively utilized in the field of local-point distribution service (LMDS) systems.

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Design of a Single-Balanced Diode Mixer at 24GHz (24GHz대역 단일 평형 다이오드 주파수 혼합기의 설계 및 제작)

  • 강상록;박창현;김장구;조현식;한석균;최병하
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2003.10a
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    • pp.66-70
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    • 2003
  • In this paper a plannar singly balanced diode Miter for 24GHz band application is designed and implemented using a microstrip line and two schottky barrier beam lead mixer diodes. The implemented mixer have a conversion loss of 6 [dB], LO/RF isolation of 23 [dB], input 1dB compression point of 4 [dBm]. this diode mixer would be useful for homedyne radar.

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RF Channel Characteristics of the Medium-voltage Power Line for PLC (전력선통신을 위한 중 전압용 전력선의 RF채널 특성)

  • Kim, Seon-Hyo;Kim, Gwan-Ho;Lee, Hyeong-Cheol;Sin, Cheol-Jae
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.51 no.7
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    • pp.316-321
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    • 2002
  • In this Paper, the channel characteristics of the medium voltage(22.9kV) power line to analysis the broadband power line communication in the frequency range up to 30MHz was measured. With the sideband electrical coupler in the operating frequency range from DC to 30MHz, we measured characteristic impedance, noise and attenuation of the medium voltage power line, and then characteristic impedance was measured at the state of unloaded medium voltage power line by Scattering parameter method of Vector Network Analyzer. As a measurement result, Channel impedance shows 100~380$\Omega$ at the less than 15MHz and 70~230$\Omega$ at the more than 15 MHz. Noise characteristics of power line shows -75dBm at 20MHz and Narrowband interference noise was from 3 MHz to 7MHz.

Compact S-Band Antenna Hat for RF Compatibility Testing of Launch Vehicle (발사체의 RF 호환성 시험을 위한 소형 S-밴드 안테나 햇)

  • Kim, Sung-Wan;Park, Dong-Chul
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.26 no.2
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    • pp.148-157
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    • 2015
  • In this paper, we propose a compact antenna hat to perform RF compatibility testing efficiently between the launch vehicle and ground stations. The proposed structure implements a small size and low loss using the conductive shield instead of the conventional RF absorber. The S-band antenna hat, which is fabricated for an inverted-F onboard antenna with the size of $74mm{\times}13mm{\times}16mm$, has the small enclosure of $88mm{\times}35mm{\times}44mm$, the return loss of 25.6 dB, the insertion loss of 0.26 dB, and the leakage loss of 49.4 dB at the center frequency of 2.25 GHz. The simulated and measured results show a good agreement.