• Title/Summary/Keyword: 40-GHz

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Wibro / WiFi dual-band antenna design for wireless broadband communication (무선 광대역 통신을 위한 Wibro/WiFi 이중대역 안테나 설계)

  • Kim, Gyeong-Rok;Kang, Sung-Woon;Hong, Yong-Pyo;Kim, Kab-Ki
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.05a
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    • pp.449-452
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    • 2018
  • In this paper, we design a Wibro / WiFi dual band microstrip antenna for wireless broadband communication. The proposed antenna is designed to have the characteristics of FR-4 (er = 4.3), size of $40[mm]{\times}40[mm]$, and usable in 2.31[GHz] and 5.8[GHz] bands of Wibro / WiFi. The simulation is performed by CST Microwave Studio 2014 The simulation result shows that the gain is 2.308[dB] at 2.31[GHz] and 2.985[dB] at 5.8[GHz]. S-parameters were also found to be less than -10[dB] (WSWR2: 1) in the desired frequency band, and a small number of parameters and a compact antenna were designed. It is expected that many users will use the mobile communication antenna for accurate and fast communication for smooth wireless broadband communication.

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Design of a 40 GHz CMOS Phase-Locked Loop Frequency Synthesizer Using Wide-Band Injection-Locked Frequency Divider (광대역 주입동기식 주파수 분주기 기반 40 GHz CMOS PLL 주파수 합성기 설계)

  • Nam, Woongtae;Sohn, Jihoon;Shin, Hyunchol
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.27 no.8
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    • pp.717-724
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    • 2016
  • This paper presents design of a 40 GHz CMOS PLL frequency synthesizer for a 60 GHz sliding-IF RF transceiver. For stable locking over a wide bandwith for a injection-locked frequency divider, an inductive-peaking technique is employed so that it ensures the PLL can safely lock across the very wide tuning range of the VCO. Also, Injection-locked type LC-buffer with low-phase noise and low-power consumption is added in between the VCO and ILFD so that it can block any undesirable interaction and performance degradation between VCO and ILFD. The PLL is designed in 65 nm CMOS precess. It covers from 37.9 to 45.3 GHz of the output frequency. and its power consumption is 74 mA from 1.2 V power supply.

Compact Dual-band Double Dipole Quasi-Yagi Antenna with V-shaped Ground Plane (V-모양 접지면을 가지는 소형 이중 대역 이중 다이폴 준-야기 안테나)

  • Yeo, Junho;Lee, Jong-Ig
    • Journal of Advanced Navigation Technology
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    • v.22 no.5
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    • pp.436-441
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    • 2018
  • In this paper, a design method for a compact double dipole quasi-Yagi antenna with a V-shaped ground plane operating in dual bands including 2.45 GHz and 5 GHz wireless LAN frequency bands is studied. First, a quasi-Yagi antenna operating in the 2.45 GHz band is designed, and a V-shaped ground plane is used instead of a conventional strip ground plane to reduce the length of the antenna. A second dipole is connected to the dipole driver of the quasi-Yagi antenna for 2.45 GHz band and a director is appended for 5 GHz band operation. A prototype of the proposed dual-band antenna operating at 2.45 GHz WLAN band and 4.57-7.11 GHz band is fabricated on an FR4 substrate with a dimension of 40 mm by 55 mm. Fabricated antenna shows frequency bands of 2.33-2.75 GHz and 4.38-7.5 GHz for a voltage standing wave ratio less than 2. Measured gain remains more than 4 dBi in both bands.

Fabrication of Transimpedance Amplifier Module and Post-Amplifier Module for 40 Gb/s Optical Communication Systems

  • Lee, Jong-Min;Min, Byoung-Gue;Kim, Seong-Il;Lee, Kyung-Ho;Kim, Hae-Cheon
    • ETRI Journal
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    • v.31 no.6
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    • pp.749-754
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    • 2009
  • The design and performance of an InGaAs/InP transimpedance amplifier and post amplifier for 40 Gb/s receiver applications are presented. We fabricated the 40 Gb/s transimpedance amplifier and post amplifier using InGaAs/InP heterojunction bipolar transistor (HBT) technology. The developed InGaAs/InP HBTs show a cut-off frequency ($f_T$) of 129 GHz and a maximum oscillation frequency ($f_{max}$) of 175 GHz. The developed transimpedance amplifier provides a bandwidth of 33.5 GHz and a gain of 40.1 $dB{\Omega}$. A 40 Gb/s data clean eye with 146 mV amplitude of the transimpedance amplifier module is achieved. The fabricated post amplifier demonstrates a very wide bandwidth of 36 GHz and a gain of 20.2 dB. The post-amplifier module was fabricated using a Teflon PCB substrate and shows a good eye opening and an output voltage swing above 520 mV.

Micro/Millimeter-wave Photonic Pulse Train Generation by using Low-Speed Electronics and Optical Repetition Rate Multiplication

  • Lee, J.M.;Seo, D.S.
    • Journal of IKEEE
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    • v.11 no.3
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    • pp.117-121
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    • 2007
  • 20 GHz and 40 GHz micro/millimeter-wave photonic pulse trains have been generated from a fiber ring laser with a semiconductor optical amplifier (SOA) by injecting 2 GHz gain-switched Fabry-Perot laser diode (GS-FPLD) output. To achieve efficient cross-gain modulation in the SOA at 20 GHz and 40 GHz, individual lasing modes of the 2 GHz GS-FPLD output separated to 25 and 50 picoseconds respectively by passing dispersion compensating fibers.

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High Power Cavity Type Tunable Filter Using Switch for 1.5 GHz Band (Switch를 이용한 1.5 GHz 대역 고출력 Cavity 기반 Tunable Filter)

  • Ahn, Sehoon;Lee, Minho;Park, Jongcheol;Jeong, Gyetaek
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.27 no.1
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    • pp.1-7
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    • 2016
  • In this paper, the tunable filter based on high power cavity using mechanical switch for 1.5 GHz band is presented. The LPF is inserted to eliminate the spurious wave, coupler is embeded to extract the output power, and then the tunable filter system is configured using mechanical switch. The LPF obtains attenuation over 40 dB between 4 GHz and 12.75 GHz, Coupler is satisfied with coupling value 40 dB and coupling isolation over 55 dB. The tunable filter system using mechanical switch obtains insertion loss 0.88 dB at bypass mode between 1,495.9 MHz and 1,510. 9 MHz, 3.29 dB at fil mode between 1,495.9 MHz and 1,500.9 MHz. It is also satisfied with output power of 132 W at the center frequency 1,498.4 MHz, and switching time below 10 ms.

Two-Ann Microstrip Spiral Antenna with a Circular Aperture on the Ground Plane for Generating a Circularly Polarized Conical Beam (코니컬 빔을 가지는 접지면에 원형 슬롯이 있는 양팔 마이크로스트립 스파이럴 안테나)

  • 오대영;김명기;박익모
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.13 no.9
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    • pp.851-857
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    • 2002
  • A two-arm microstrip spiral antenna with a circular aperture on the ground plane that generates a circularly polarized conical beam is presented in this paper. We obtained circularly polarized conical beam by using two spirals that are excited in-phase from the microstrip feed lines. The main beam directions of the conical beam from the broadside are approximately 40$^{\circ}$ in the range from 5 GHz to 6.5 GHz, and 58$^{\circ}$ from 9 GHz to 11 GHz. Since the proposed antenna has omni-directional conical beam pattern, it is suitable for use in mobile communication systems.

Wavelength and Repetition-Rate Tunable Optical Pulse Generation for Ultrafast OTDM/WDM (초고속 OTDM/WDM을 위한 파장 및 반복율 가변 광 펄스 발생)

  • Choi, Kyoung-Sun;Han, Chong-Min;Seo, Dong-Sun;Jhon, Young-Min;Lee, Seok
    • Journal of IKEEE
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    • v.5 no.2 s.9
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    • pp.201-210
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    • 2001
  • Wavelength and repetition-rate tunable optical pulse-trains for ultrafast optical time- and wavelength division multiplexing are generated from a semiconductor fiber ring laser by optical injection mode-locking. The pulse trains show the pulse with of ${\sim}10$ ps and the wavelength tuning of wider than 30 nm at various repetition-rates of 10 GHz, 20 GHz, 30 GHz and 40 GHz, respectively.

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40 GHz Pulse Train Generation by Spectral Filtering for Repetition Rate Quadruplication

  • Luan, Wanyong;Kang, Kyong-Tae;Seo, Dong-Sun
    • Proceedings of the IEEK Conference
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    • 2008.06a
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    • pp.415-416
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    • 2008
  • We demonstrate a simple method to multiply the repetition rate of an optical pulse train by a fiber Fabry-Parot interferometer (FFPI) spectral filtering. A stable 40 GHz pulse train at 1550 nm is successfully generated by removing unwanted spectral components of a 10 GHz actively mode-locked laser source by passing a high finesse FFPI.

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Farbrication and perfomance of a laser driver IC with broad bandwidth of DC - 18 GHz (DC - 18GHz의 광대역 레이저 구동회로 제작 및 특성)

  • 박성호;이태우;기현철;김충환;김일호;박문평
    • Journal of the Korean Institute of Telematics and Electronics D
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    • v.35D no.1
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    • pp.34-40
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    • 1998
  • For applicating to 10-Gbit/s optical transimission systems, we have designed and fabricated a laser driver IC with extremely-high-operation-frequencies using AlGaAs/GaAs heterojunction bipolar transistors (HBTs), and have investigated its performances. Circuits design andsimulation were performed using SPICE and LIBRA. A discrete AlGaAs/GaAs HBT with the emitter area of 1.5*10 .mu.m$^{2}$, used for the circuit fabrication, exhibited cutoff frequency of 63 GHz andmaximum osciallation frquency of 50 GHZ. After fabrication of MMICs, we observed the very wide bandwidth of DC~18 GHz and the S$_{21}$ gain of 17 dB for a laser driver IC from the on-wafer measurement. Metal-packaged laser driver IC showed the excellent eye opening, the modulation currents of 32 mA, the rise/fall time of 40 ps, measured at the data rates of 10-Gbit/s.

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