• 제목/요약/키워드: BM3D

검색결과 838건 처리시간 0.033초

Miller 커패시터를 이용한 넓은 가변 범위의 LC-tank 전압 제어 발진기 (Wide Tuning Range Varactor Diodeless LC-tank VCO)

  • 류지열;류승탁;정상화;조규형
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 D
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    • pp.2579-2581
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    • 2001
  • 넓은 가변 범위를 가지는 LC 탱크 전압 제어 발진기에 관해 본 논문에서 소개하고자 한다. LC 탱크 전압 제어 발진기의 발진을 소멸시키는 밀러 증폭기의 ESR을 제거함으로써 넓은 가변 범위를 얻을 수 있다. LC 탱크 전압 제어 발진기는 발진기 코어와 버퍼, 밴드갭(bandgap) 기준 전압 발생기 그리고 드라이브 증폭기로 구성되어 있다. 발진기 코어는 1.3mA의 전류를 소모하고 약 1GHz의 가변 범위를 가진다. 출력주파수의 가변 범위내에 발진기의 출력 전력은 3dBm 이내로 변한다. 이러한 LC 탱크 전압 제어 발진기는 BiCMOS 공정을 이용하여 제작되었고 2.7V 단일 전원에서 31.5mW의 전력을 소모한다.

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장갑표적 감지센서용 94GHz 도파관 하모닉 전압조정발진기 설계 기법 (A Design Method of the 94GHz(W-Band) Waveguide Harmonic Voltage Controlled Oscillator for the Armor Sensor)

  • 노진입;최재현;리준문;안병철
    • 한국군사과학기술학회지
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    • 제8권3호
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    • pp.64-72
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    • 2005
  • In this paper, we propose a design method of the millimeter-wave(W-Band) waveguide cavity harmonic voltage controlled oscillator(VCO) using a Gunn diode for the armor sensor. Using the 3-dimensional simulation tool(Ansoft $HFSS^{TM}$), we were able to find the impedance matching point between waveguide and Gunn diode and estimate the oscillation frequency. A varactor diode is used for the frequency tuning, and we find out the equation for the calculation of the tunable frequency range. The designed VCO shows good performances; 17dBm output power at 94GHz center frequency, 520MHz frequency tuning range similar to the estimated value(480MHz).

A Feedback Wideband CMOS LNA Employing Active Inductor-Based Bandwidth Extension Technique

  • Choi, Jaeyoung;Kim, Sanggil;Im, Donggu
    • 스마트미디어저널
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    • 제4권2호
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    • pp.55-61
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    • 2015
  • A bandwidth-enhanced ultra-wide band (UWB) CMOS balun-LNA is implemented as a part of a software defined radio (SDR) receiver which supports multi-band and multi-standard. The proposed balun-LNA is composed of a single-to-differential converter, a differential-to-single voltage summer with inductive shunt peaking, a negative feedback network, and a differential output buffer with composite common-drain (CD) and common-source (CS) amplifiers. By feeding the single-ended output of the voltage summer to the input of the LNA through a feedback network, a wideband balun-LNA exploiting negative feedback is implemented. By adopting a source follower-based inductive shunt peaking, the proposed balun-LNA achieves a wider gain bandwidth. Two LNA design examples are presented to demonstrate the usefulness of the proposed approach. The LNA I adopts the CS amplifier with a common gate common source (CGCS) balun load as the S-to-D converter for high gain and low noise figure (NF) and the LNA II uses the differential amplifier with the ac-grounded second input terminal as the S-to-D converter for high second-order input-referred intercept point (IIP2). The 3 dB gain bandwidth of the proposed balun-LNA (LNA I) is above 5 GHz and the NF is below 4 dB from 100 MHz to 5 GHz. An average power gain of 18 dB and an IIP3 of -8 ~ -2 dBm are obtained. In simulation, IIP2 of the LNA II is at least 5 dB higher than that of the LNA I with same power consumption.

Ka-Band 위성중계기용 수신하향변환기 모듈 개발 (Development of a Receiver Downconverter Module for Ka-band Satellite Payload)

  • 장동필;염인복;이성팔
    • 한국전자파학회논문지
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    • 제14권1호
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    • pp.68-74
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    • 2003
  • 본 논문에서는 Ka-band 위성중계기에 사용되어지는 수신하향변환기(Receiver-Downconverter) 모듈의 설계 및 제작 그리고 시험 결과에 대하여 기술하였다. 개발된 수신하향변환기는 30.6 GHz∼31 GHz대역의 신호를 입력으로 받아들여 20.8 GHz∼21.2 GHz 대역의 신호를 출력하는 일종의 Downconverter 이지만, 모듈의 입력단에 저잡음 증폭부가 포함된 수신기의 역할도 하고 있다 개발된 모듈은 제작과정 및 시험과정에 있어 위성중계기 부품 제작 규정을 준수하였으며, 그 개발된 성능은 현재까지 알려진 국내외 유사 부품중의 최고의 성능을 보여주고 있다. 측정된 모듈의 성능은 상온에서 1.9 dB의 잡음지수, 55 dB 이득, 58 dBc의 C/I3 값을 보여주고 있다. 제작된 모듈의 크기는 93 mm${\times}$84 mm${\times}$26 mm이며 무게는 240 g으로서 국내외 유사 제품에 비해 소형이다.

A Compact Ka-Band Doppler Radar Sensor for Remote Human Vital Signal Detection

  • Han, Janghoon;Kim, Jeong-Geun;Hong, Songcheol
    • Journal of electromagnetic engineering and science
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    • 제12권4호
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    • pp.234-239
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    • 2012
  • This paper presents a compact K-band Doppler radar sensor for human vital signal detection that uses a radar configuration with only single coupler. The proposed radar front-end configuration can reduce the chip size and the additional RF power loss. The radar front-end IC is composed of a Lange coupler, VCO, and single balanced mixer. The oscillation frequency of the VCO is from 27.3 to 27.8 GHz. The phase noise of the VCO is -91.2 dBc/Hz at a 1 MHz offset frequency, and the output power is -4.8 dBm. The conversion gain of the mixer is about 11 dB. The chip size is $0.89{\times}1.47mm^2$. The compact Ka-band Doppler radar system was developed in order to demonstrate remote human vital signal detection. The radar system consists of a Ka-band Doppler radar module with a $2{\times}2$ patch array antenna, baseband signal conditioning block, DAQ system, and signal processing program. The front-end module size is $2.5{\times}2.5cm^2$. The proposed radar sensor can properly capture a human heartbeat and respiration rate at the distance of 50 cm.

낮은 변환손실과 높은 LO-RF 격리도 특성을 갖는 94 GHz Resistive Mixer 의 제작 (Fabrications of Low Conversion Loss and High LO-RF Isolation 94 GHz Resistive Mixer)

  • 이복형;이진구
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2005년도 추계종합학술대회
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    • pp.921-924
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    • 2005
  • We report low conversion loss and high LO to RF isolation 94 GHz MMIC resistive mixers based on 0.1 ${\mu}m$ InGaAs/InAlAs/GaAs metamorphic HEMT technology. The fabricated resistive mixers applied a one-stage amplifier on RF port of the mixer. By using the one-stage amplifier, we obtained the decrement of conversion loss and the increment of LO to RF isolation. So, we can obtain higher performances than conventional resistive mixers. The modified mixer shows excellent conversion loss of 6.7 dB at a LO power of 10 dBm. We also observed an extremely high isolation characteristic from the MMICs exhibiting the LO-RF isolation of 21 ${\pm}$ 0.5dB in a frequency range of 93.7${\sim}$ 94.3 GHz. The low conversion loss and high LO-RF isolation characteristics of the MMIC modified resistive mixers are mainly attributed to the performance of the MHEMTs exhibiting a maximum transconductance of 654 mS/mm, a current gain cut-off frequency of 173 GHz and a maximum oscillation frequency of 271 GHz.

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A UHF CMOS Variable Gain LNA with Wideband Input Impedance Matching and GSM Interoperability

  • Woo, Doo Hyung;Nam, Ilku;Lee, Ockgoo;Im, Donggu
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제17권4호
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    • pp.499-504
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    • 2017
  • A UHF CMOS variable gain low-noise amplifier (LNA) is designed for mobile digital TV tuners. The proposed LNA adopts a feedback topology to cover a wide frequency range from 474 to 868 MHz, and it supports the notch filter function for the interoperability with the GSM terminal. In order to handle harmonic distortion by strong interferers, the gain of the proposed LNA is step-controlled while keeping almost the same input impedance. The proposed LNA is implemented in a $0.11{\mu}m$ CMOS process and consumes 6 mA at a 1.5 V supply voltage. In the measurement, it shows the power gain of greater than 16 dB, NF of less than 1.7 dB, and IIP3 of greater than -1.7 dBm for the UHF band.

Generalized Analysis on the Combined Effect of SPM and Fiber Chromatic Dispersion on Subcarrier Multiplexed Optical Transmission Systems for RoF Applications

  • Kim, Kyoung-Soo;Lee, Jae-Hoon;Jeong, Ji-Chai
    • Journal of the Optical Society of Korea
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    • 제15권2호
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    • pp.132-139
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    • 2011
  • We investigate theoretically the combined effect of fiber chromatic dispersion and self-phase modulation (SPM) on multi-channel subcarrier multiplexed (SCM) optical transmission systems in terms of the detected RF carrier power and SPM-induced power gain after transmission over single-mode fiber (SMF) links. According to the calculated power gain due to the SPM effect at the transmission distance of P3dB using the detected radio-frequency (RF) carrier power after photo-detection, the power gain is significantly degraded with large optical modulation index (OMI), small SCM channel spacing, and large fiber launching power because of the increased interaction between subcarrier channels. The nonlinear phase shift due to linear and nonlinear fiber characteristics is investigated to explain these results in detail. The numerical simulation results show that the OMI per SCM channel has to be smaller than 10 % for the fiber launching power of 10 dBm to guarantee prevention of SPM-induced power gain degradation below 0.5 dB for the SCM system with the channel spacing of 100 MHz. This result is expected to be utilized for the optical transmission systems using the SCM technology in future radio-over-fiber (RoF) networks.

Highly Linear 2-Stage Doherty Power Amplifier Using GaN MMIC

  • Jee, Seunghoon;Lee, Juyeon;Kim, Seokhyeon;Park, Yunsik;Kim, Bumman
    • Journal of electromagnetic engineering and science
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    • 제14권4호
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    • pp.399-404
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    • 2014
  • A power amplifier (PA) for a femto-cell base station should be highly efficient, linear and small. The efficiency for amplification of a high peak-to-average power ratio (PAPR) signal was improved by designing an asymmetric Doherty PA (DPA). The linearity was improved by applying third-order inter-modulation (IM3) cancellation method. A small size is achieved by designing the DPA using GaN MMIC process. The implemented 2-stage DPA delivers a power-added efficiency (PAE) of 38.6% and a gain of 33.4 dB with an average power of 34.2 dBm for a 7.2 dB PAPR 10 MHz bandwidth LTE signal at 2.14 GHz.

유도성 리액턴스 변화를 이용한 VCO의 설계 및 동작 연구 (A Design and Performance Investigation of VCO using Inductive Reactance Variation)

  • 오세환;서석태;구경완;이원희;허정
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 추계학술대회 논문집
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    • pp.405-408
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    • 2000
  • We designed and fabricated VCO using inductive reactance variation at 2GHz. A varactor diode is one of the main devices in VCO, which varies capacitance depending on reverse voltage. In this paper, a varactor diode is not used as a variable capacitive reactance device but as an inductive device. The circuit design and simulation have been carried out using HP-MDS. The fabricated VCO is measured using the HP 8532B spectrum analyzer and the HP 4352B VCO/PLL analyzer. The experimental result shows the phase noise -110dBc/Hz at a 100kHz offset frequency, the control voltage sensitivity of 23MHz/V and a -3.5dBm output power with a D.C. current consumption of 5.9mA. The simulation and measurements show exact agreement except with regard to the oscillation frequency. The measured oscillation frequency is lower than the simulation result because there is some parasitic inductance in the PCB layout.

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