• Title/Summary/Keyword: Feedforward amplifier

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A Linear Power Amplifier Design Using an Analog Feedforward Method

  • Park, Ung-Hee;Noh, Haeng-Sook
    • ETRI Journal
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    • v.29 no.4
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    • pp.536-538
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    • 2007
  • We propose and describe the fabrication of a linear power amplifier (LPA) using a new analog feedforward method for the IMT-2000 frequency band (2,110-2,170 MHz). The proposed analog feedforward circuit, which operates without a pilot tone or a microprocessor, is a small and simple structure. When the output power of the fabricated LPA is about 44 dBm for a two-tone input signal in the IMT-2000 frequency band, the magnitude of the intermodulation signals is below -60 dBc and the power efficiency is about 7%. In comparison to the fabricated main amplifier, the magnitude of the third intermodulation signal decreases over 24 dB in the IMT-2000 frequency band.

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A Study on Implementation and Performance Evaluation of Error Amplifier for the Feedforward Linear Power Amplifier (Feedforward 선형 전력증폭기를 위한 에러증폭기의 구현 및 성능평가에 관한 연구)

  • Jeon, Joong-Sung;Cho, Hee-Jea;Kim, Seon-Keun;Kim, Ki-Moon
    • Journal of Navigation and Port Research
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    • v.27 no.2
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    • pp.209-215
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    • 2003
  • In this paper. We tested and fabricated the error amplifier for the 15 Watt linear power amplifier for the IMT-2000 baseband station. The error amplifier was comprised of subtractor for detecting intermodulation distortion, variable attenuator for control amplitude, variable phase shifter for control phase, low power amplifier and high power amplifier. This component was designed on the RO4350 substrate and integrated the aluminum case with active biasing circuit. For suppression of spurious, the through capacitance was used. The characteristics of error amplifier measured up to 45 dB gain, $\pm$0.66 dB gain flatness and -15 dB input return loss. Results of application to the 15 Watt feedforward Linear Power Amplifier, the error amplifier improved with 27 dB cancellation from 34 dBc to 61 dBc IM$_3$.

A Feedforward Linear Power Amplifier using Error Feedback Technique (에러 피드백 기술을 이용한 피드 포워드 선형 전력 증폭기)

  • 김완종;조경준;김종헌;김남영;이종철;이병제
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.11 no.8
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    • pp.1407-1413
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    • 2000
  • This paper presents a feedforward linear power amplifier (LPA) using error feedback technique to achieve low intermodulation distortions(IMD) of power amplifiers for base stations. Especially, the proposed linear power amplifier is applied to feedforward technique combined with error feedback technique, which has no loss of amplifier gain unlike typical feedback technique. The proposed LPA is designed by using HP ADS ver. 1.3, fabricated. When two-tone signals at 1850 MHz and 1851.25 MHz with -7 dBm/tone from synthesizers are injected into the main power amplifier with gain of 28 dB and P1dB of 1W, the proposed LPA could reduce more than 35 dB.

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A Design of Ultra Wide-Band Feedforward Amplifier Using Equal Group-Delayed Signal Canceller (동일 군속도 지연 신호 상쇄기를 이용한 광대역 Feedforward증폭기 설계)

  • Jeong Yong-Chae;Ahn Dal;Kim Hong-Gi;Kim Chul-Dong;Chang Ik-Soo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.16 no.8 s.99
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    • pp.825-834
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    • 2005
  • In this paper, a new signal canceller that input signals are equally group-delayed and cancelled each other is proposed and feedforward linearizing power amplifier that adopt the proposed signal cancellers is fabricated. Although the conventional signal canceller can't matches the phase and the group delay time of input signals simultaneously, the proposed signal canceller matches those simultaneously. Simultaneous matching of the phase and the group delay time can makes wideband signal cancellation. The main signal cancellation loop of the fabricated feedforward amplifier with the proposed signal cancellers cancel input signal more than 26.3 dB and the intermodulation distortion signal cancellation loop cancel more than 15.2 dB for 200 MHz bandwidth. And the proposed feedforward power amplifier improves C/I ratio by 20.8 dB with two tones at 2,115 MHz, 2,165 MHz, respectively.

Design and Fabrication of Predistorter for PCS Using Feedforward Method (Feedforward 방식을 이용한 PCS용 Predistorter의 설계 및 제작)

  • 최현주;박명석;박천석
    • Proceedings of the IEEK Conference
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    • 2000.11a
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    • pp.349-352
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    • 2000
  • In this paper, predistorter for PCS has been designed and fabricated. In predistorter system IMD signal generator was very important element. In this LPA IMD signal generator was fabricated using main signal cancellation and error signal cancellation of feedforward method and two amplifier that had same IMD characteristics. This LPA showed IMD characteristics of 52㏈c operation in 48㏈m(60W) and made 12㏈ IMD characteristic improvement when it was excited by two tone. In this LPA, to make more IMD characteristic improvement the IMD characteristic resemblance between main amplifier and predistortion amplifier is very important.

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A Study on Predistortor using the Feedforward type (Feedforward 방식을 이용한 Predistortor에 관한 연구)

  • 권성준;임성규;최진일;이상웅;김상태;라극환
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.31A no.5
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    • pp.68-75
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    • 1994
  • A new Predistortor that is designed using Feedforward type is proposed to overcome the nonlinearity of HPA (High Power Amplifier). HPA has the nonlinearity of the gain compression and phase distorton, so digital communication system of multi-carrier TDMA needs the linear RF transmitter. Using IMD (Intermodulation Distortion) of drive amplifier, as Feedforward type, the inverse IMD is coupled to the main loop with variable attenuators, phase shifters, and sub-amplifiers well designed. At the input of main amplifier, the over-coupled IMD surpresses the main amplifier 's IMD. Adjusting the level and phase of IMD at the sub loop, C/I of HPA is better than before correction.

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A Feedforward High Power Amplifier with Loops that can Reduce RX Band Noise as well as Intermodulation Distortion Signals (수신 대력 잡음과 혼변조 왜곡 신호 제거 루프를 갖는 Feedforward 대전력 증폭기 설계)

    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.12 no.2
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    • pp.308-315
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    • 2001
  • In this paper, a new power amplifier is proposed for reduction of amplified RX band noise signals as well as intermodulation distortion signals using feedforward technique. This power amplifier is implemented for IMT-2000 basestation TX frequency band. Both TX band intermodulation distortion signals and RX band noise signals are reduced by controlling variable attenuator, phase shifter and error amplifier. The proposed power amplifier, which contains two loops-intermodulation distortion signals cancellation loop and RX band noise signals cancellation loop, can provide duplexer with low TX path insertion loss for various wireless communication systems due to choice of loose RX attenuation characteristic. The principle of the proposed amplifier is described graphically based on the conceptual schematic diagram. A two-tone test for power amplifier is done at 2.14GHz with frequency spacing of 5MHz, and RX band rejection test is done over RX full band of 60MHz with 1.95GHz center frequency. Experimental results represent that the cancellation performance of intermodulation distortion signals and RX band noise signals are more than 3 1dB and 21dB, respectively.

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A Study on the Effects of Gain Flatness of Feedforward Power Amplifier for IMT-2000 Band (IMT-2000용 피드포워드 전력 증폭기의 이득 평탄도의 영향에 관한 연구)

  • 정성찬;박천석
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.7
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    • pp.762-768
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    • 2003
  • This paper reports the effects of gain flatness for linearity improvement of feedforward power amplifier fur IMT-2000 band. To investigate the operational characteristics for gain flatness of each amplifier, WCDMA 4FA input signal was used and measured 10 W output power. Especially, linearity improvement for variation of gain flatness of each amplifier was investigated that have an effect on linearity improvement such as delay line, phase, and amplitude imbalances. Variation of gain flatness of main amplifier is 40 MHz and of error amplifier is 40 MHz and 80 MHz bandwidth, respectively. Measured results, gain flatness of main amplifier is less than 1.5 dB and of error amplifier is less than 0.5 dB for more than 20 dB improvement at 5 MHz offset. In addition to that results, the characteristics of feedforward amplifier are drastically varied by gain flatness of error amplifier and it is shown that gain flatness of error amplifier is more important factor for linearity improvement.

Design and Implementation of a Linearizer Using the Feedforward Loop without Delay Lines (지연 선로가 없는 Feedforward Loop를 이용한 선형화기의 설계 및 제작)

  • 정승환;조경준;김완종;안창엽;김종헌
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.11 no.1
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    • pp.116-123
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    • 2000
  • This paper presents a linearizer using the feedforward loop which can be applied to PCS base-station applications. This linearizer used a IM amplifier and an auxiliary amplifier in order to remove delay lines used in the predistortor using the feedforward technique. The delay line in error loop is changed by the main power amplifier(PA) and the error amplifier is utilized to amplify the error signal which fed to the output of main amplifier. The linearizer was simulated by HP ADS ver 1.1 and fabricated on GML 1000 with thickness of 0.8 mm and dielectric constant of 3.2. Two-tone signals at 1.85 GHz and 1.851 GHz with -7dBm/tone from synthesizers are injected into the main PA. The main PA with a 27 dB gain and a $P_{1dB}$ of 29 dBm(two-tone) was utilized. The reduction of intermodulation distortion (IMD) is around 17 dB.

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A Study on the Efficiency Improvement of Linear Power Amplifier for Mobile Communication Repeater Applications (이동 통신 중계기용 선형 전력 증폭기 효율 개선에 관한 연구)

  • An, Jeong-Sig;Lee, Jong-Arc
    • Journal of IKEEE
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    • v.3 no.2 s.5
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    • pp.215-220
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    • 1999
  • In fabricated linear power amplifier(LPA), the third-order inter-modulation distortion(IMD) for main amplifier alone is 10.61dBc, and the IMD for LPA with predistorter and feedforward loop combined is 32.50dBc. Therefore, the IMD characteristic results an improvement of approximately 22dB. The main amplifier efficiency with single tone input is close to 30%, and the efficiency of the overall LPA with predistorter is 27.4% and predicted feedforward loop efficiency without predistorter is about 20%. Therefore, LPA with predistorter and feedforward loop combined is improved by 7.4%.

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