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휴대전화기용 GaAs FET 고주파전력증폭기

  • 염경환;이승학
    • Information and Communications Magazine
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    • v.12 no.1
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    • pp.59-69
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    • 1995
  • 이동통신에 대한 수요가 급증하고 있는 이즈음 Battery의 효율적인 사용이 휴대 전화기에 있어서 중요한 문제점으로 부각되고 있다. 본 논문은 LTI에서 1991년 후반부터 개발을 시작 1992년에 개발완료한 아날로그 방식의 5.8V 휴대전화기용 고주파전력 증폭기에 관한 것으로 이것의 일반적인 설계 방법과, 시험 및 생산 방법을 기술하고자 한다. 이와 같이 설계된 고주파 전력증폭기는 양산성이 있으며, 효율 60% typ. 출력 31.5dBm 이상 그리고 2차 3차, 및 4차 고조파가 모두 30 dBc 미만이며 그 외에 load missmatch, Noise, Spurious 특성이 휴대전화기에 적용하기 알맞게 안전하도록 설계되어 있다. 또한 장착의 효율성을 위해 크기를 최소화하여 1.4cc의 체적을 갖고 있다.

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Analysis of Phase Noise Characteristics of Voltage-Control Microwave Oscillator (전압제어 마이크로파 발진기의 위상잡음 특성 분석)

  • 강진래;이승욱;김영진;이영철
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2001.10a
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    • pp.242-245
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    • 2001
  • 본 논문은 디지털 위성용 하향변환기에 적용되는 고안정 전압제어 마이크로파 발진기의 위상잡음 특성을 분석하였다. 전압제어 마이크로파 발진기는 능동소자의 비선형 등가모델과 궤환회로의 영향을 고려하여 유전체 공진 마이크로파 발진기를 위상잡음과 출력 전력에 절충(trade-off)하여 설계하였고, 13.25GHz의 발진주파수에서 출력이득은 12dBm이고, 위상잡음은 옵셋 주파수 100KHz 에서 -107.91dBc를 보였다. 바렉터 다이오드 동작에 의한 튜닝 범위는 2MHz/V로 위상동기 발진기에 응용할 수 있음을 보였다.

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A 15-GHz CMOS Multiphase Rotary Traveling-Wave Voltage-Controlled Oscillator

  • Zhang, Changchun;Wang, Zhigong;Zhao, Yan;Park, Sung-Min
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.12 no.3
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    • pp.255-265
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    • 2012
  • This paper presents a 15-GHz multiphase rotary traveling-wave voltage-controlled oscillator (RTW VCO) where a shielded coplanar stripline (CPS) is exploited to provide better shielding protection and lower phase noise at a moderate cost of characteristic impedance and power consumption. Test chips were implemented in a standard 90-nm CMOS process, demonstrating the measured results of 2-GHz frequency tuning range, -11.3-dBm output power, -109.6-dBc/Hz phase noise at 1-MHz offset, and 2-ps RMS clock jitter at 15 GHz. The chip core occupies the area of $0.2mm^2$ and dissipates 12 mW from a single 1.2-V supply.

A 2.4-GHz Low-Power Direct-Conversion Transmitter Based on Current-Mode Operation (전류 모드 동작에 기반한 2.4GHz 저전력 직접 변환 송신기)

  • Choi, Joon-Woo;Lee, Hyung-Su;Choi, Chi-Hoon;Park, Sung-Kyung;Nam, Il-Ku
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.48 no.12
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    • pp.91-96
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    • 2011
  • In this paper, a low-power direct-conversion transmitter based on current-mode operation, which satisfies the IEEE 802.15.4 standard, is proposed and implemented in a $0.13{\mu}m$ CMOS technology. The proposed transmitter consists of DACs, LPFs, variable gain I/Q up-conversion mixer, a divide-by-two circuit with LO buffer, and a drive amplifier. By combining DAC, LPF, and variable gain I/Q up-conversion mixer with a simple current mirror configuration, the transmitter's power consumption is reduced and its linearity is improved. The drive amplifier is a cascode amplifier with gain controls and the 2.4GHz I/Q differential LO signals are generated by a divide-by-two current-mode-logic (CML) circuit with an external 4.8GHz input signal. The implemented transmitter has 30dB of gain control range, 0dBm of maximum transmit output power, 33dBc of local oscillator leakage, and 40dBc of the transmit third harmonic component. The transmitter dissipates 10.2mW from a 1.2V supply and the die area of the transmitter is $1.76mm{\times}1.26mm$.

Dual-Band VCO using Composite Right/Left-Handed Transmission Line and Tunable Negative Resistanc based on Pin Diode (Composite Right/Left-Handed 전송 선로와 Pin Diode를 이용한 조절 가능한 부성 저항을 이용한 이중 대역 전압 제어 발진기)

  • Choi, Jae-Won;Seo, Chul-Hun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.44 no.12
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    • pp.16-21
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    • 2007
  • In this paper, the dual-band voltage-controled oscillator (VCO) using the composite right/left-handed (CRLH) transmission line (TL) and the tunable negative resistance based on the fin diode is presented. It is demonstrated that the CRLH TL can lead to metamaterial transmission line with the dual-band tuning capability. The dual-band operation of the CRLH TL is achieved by the frequency offset and the phase slope of the CRLH TL, and the frequency ratio of the two operating frequencies can be a non-integer. Each frequency band of VCO has to operate independently, so we have used the tunable negative resistance based on the pin diode. When the forward bias has been into the pin diode, the phase noise of VCO is $-108.34\sim-106.67$ dBc/Hz @ 100 kHz in the tuning range, $2.423\sim2.597$ GHz, whereas when the reverse bias has been fed into the pin diode, that of VCO is $-114.16\sim-113.33$ dBc/Hz @ 100 kHz in the tuning range, $5.137\sim5.354$ GHz.

Linear Characteristics Improvement of X-band TWT Amplifier for Satellite Communication with Linearizer (선형화기를 이용한 위성통신용 X-밴드 TWT 증폭기 선형특성 개선)

  • Choi, Won;Yang, Hong-Sun;Koo, Kyung-Heon
    • Journal of Advanced Navigation Technology
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    • v.15 no.5
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    • pp.789-794
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    • 2011
  • This paper has analyzed the AM-AM and AM-PM characteristics of 7.9 GHz~8.4 GHz X-band TWT used for satellite communication and improved its linearity and IMD performance by using linearizer. The TWT amplifier with the linearizer shows better AM-AM and AM-PM conversion, and has increased 1 dB compression point by 12.3 dB and $2.0^{\circ}/dB$ phase distortion point by 10 dB. The 3rd order intermodulation distortion, IMD3 is measured to be 37.0 dBc that is 16.2 dB improvement at the operating output. This paper also proposed the measurement method of IMD for high power amplifier, and that TWT amplifier can have better linearity and output power by compensating for the AM-PM characteristics.

The Design of Dual Phase LNB for DBS Receiving (DBS 수신을 위한 Dual Phase LNB 설계)

  • Lim, Yun-Doo;Ko, Bong-Jin
    • Journal of Advanced Navigation Technology
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    • v.6 no.3
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    • pp.188-194
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    • 2002
  • DBS is utilized as very useful media in information-oriented society because it covers wide service area and provide high quality services. But DBS needs skill that can receive DBS signal at move. In this paper, it is considered a development of a device to receive DBS and design of a low noise downconverter that use tracking antenna to receive DBS at mobiles unit and ships which navigate in Korea peninsula coast. The structure of dual phase LNB is composed of LNA, BPF, oscillator, mixer, and IF amplifier. And for the position tracking, two input-output phase performed in phase. Measured results showed good performance that with respect to input signal 11.7 GHz~12.2 GHz, noise figure is 0.87 dBmax and conversion gain 62 dB, temperature characterization ${\pm}400$ kHz in respect to - 30 to $60^{\circ}C$, and phase noise -101 dBc/Hz in respect to offset 100 kHz.

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A Study on the characteristic, and Changing Process in Ancient Mesopotamia cities (메소포타미아 고대도시의 변천과정과 특징에 관한 연구)

  • Lee, Seok Woo;Lee, Joo Hyung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.12
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    • pp.6118-6127
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    • 2012
  • The Mesopotamia civilization is developed by physical geography. It began from Sumer civilization at BC 3800 and finished to Assyria and Babylonia civilization at BC 600. Therefore, to examine the changing process of the city of 3,000 years standing, it is important to know the elements of the influence to the initial human civilization and city. This study analyzed the 13 cities, that the city were among the 30 the city in same age. As a result of this study, firstly, functions of the city were gradually transition from the farming culture to the functions of commerce, trade, and military. Secondly, the location of the city was gradually move into northern from southern, it is associated with features of the city. Thirdly, the aspect of urban form, the hills above the city of Tel's shape was gradually coming down to the plains. So later, became a form of urban planning undisturbed terrain. fourthly, urban structure has slowly changed from the temple based city to palace based city.

Implementation and Design of the Voltage Controlled Oscillator Using Ring type DGS Resonator (링형 DGS 공진기를 이용한 전압제어 발진기의 설계 및 구현)

  • Kim, Girae
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.12
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    • pp.2589-2594
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    • 2012
  • In this paper, a novel resonator using ring type DGS is proposed for improvement of phase noise characteristics that is weak point of oscillator using planar type microstrip line resonator, and oscillator for 5.8 GHz band is designed using proposed DGS resonator. The ring type DGS resonator is composed of DGS cell etched on ground plane under $50{\Omega}$ microstrip line. At the fundamental frequency of 5.8 GHz, 7.6 dBm output power and -82.7 dBc@100kHz phase noise have been measured for oscillator with ring type DGS resonator. We designed the voltage controlled oscillator using proposed the DGS resonator with varactor diodes placed between gaps of DGS. Thus, due to its simple fabrication process and planar type, it is expected that the technique in this paper can be widely used for low phase noise oscillators for both MIC and MMIC applications.

Design of a CMOS Frequency Synthesizer for FRS Band (UHF FRS 대역 CMOS PLL 주파수 합성기 설계)

  • Lee, Jeung-Jin;Kim, Young-Sik
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.28 no.12
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    • pp.941-947
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    • 2017
  • This paper reports a fractional-N phase-locked-loop(PLL) frequency synthesizer that is implemented in a $0.35-{\mu}m$ standard CMOS process and generates a quadrature signal for an FRS terminal. The synthesizer consists of a voltage-controlled oscillator(VCO), a charge pump(CP), loop filter(LF), a phase frequency detector(PFD), and a frequency divider. The VCO has been designed with an LC resonant circuit to provide better phase noise and power characteristics, and the CP is designed to be able to adjust the pumping current according to the PFD output. The frequency divider has been designed by a 16-divider pre-scaler and fractional-N divider based on the third delta-sigma modulator($3^{rd}$ DSM). The LF is a third-order RC filter. The measured results show that the proposed device has a dynamic frequency range of 460~510 MHz and -3.86 dBm radio-frequency output power. The phase noise of the output signal is -94.8 dBc/Hz, and the lock-in time is $300{\mu}s$.