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Implementing method of optimum front-end conditioner based on Butterworth filter 被引量:2

Implementing method of optimum front-end conditioner based on Butterworth filter
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摘要 The front-end conditioner is an essential part of digital systems of nuclear spectrometer, which functions in two ways: (1) prevents saturation of the subsequent ADC; (2) limits the bandwidth of frequency to realize anti-aliasing. To realize the above-mentioned functions, an optimum front-end conditioner for a resistive feedback charge-sensitive preamplifier is designed. In the conditioner, the pole-zero compensation (P/Z compensation) tech- nique was used to effectively filter signals from the preamplifier. The Butterworth filter was improved after the pole-zero position was optimally set up to shape the wave of output, which tallied with the whole system. The front-end conditioner can resolve the aberration of waveform of nuclear signals in a regular Butterworth filter. Com- pared with the traditional triple-pole filtering circuitry, the circuitry of this conditioner is more compact and flexible. Moreover, its output waveform is more symmetrical and the signal-to-noise ratio (SNR) is higher. The improvement in the resolution of spectrometer is also significant. The front-end conditioner is an essential part of digital systems of nuclear spectrometer, which functions in two ways: (1) prevents saturation of the subsequent ADC; (2) limits the bandwidth of frequency to realize anti-aliasing. To realize the above-mentioned functions, an optimum front-end conditioner for a resistive feedback charge-sensitive preamplifier is designed. In the conditioner, the pole-zero compensation (P/Z compensation) technique was used to effectively filter signals from the preamplifier. The Butterworth filter was improved after the pole-zero position was optimally set up to shape the wave of output, which tallied with the whole system. The front-end conditioner can resolve the aberration of waveform of nuclear signals in a regular Butterworth filter. Compared with the traditional triple-pole filtering circuitry, the circuitry of this conditioner is more compact and flexible. Moreover, its output waveform is more symmetrical and the signal-to-noise ratio (SNR) is higher. The improvement in the resolution of spectrometer is also significant.
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2006年第4期232-236,共5页 核技术(英文)
关键词 数字式核子能谱仪 极点-零点补偿 巴特沃斯滤波器 前端调节器 Digital nuclear spectrometer, Pole-zero compensation, Butterworth filter
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  • 1Geraci A, Ripamonti G Nucl Instr Meth Phys Res, 1998,A403:455-464
  • 2Pullia A, Gritti G .IEEE Transactions on Nuclear Science,1997, 44(3): 331-337
  • 3Nicholson P W. Nuclear Electronics, Wiliy-Interscience Publication 1974, 6
  • 4Geraci A, Pullia A. Automatic pole-zero/zero-pole digital compensator for high-resolution spectroscopy design and experiments 0-7803-5021-9/99, 1999 IEEE.891-895.
  • 5Baker B C. Anti-aliasing, analog filters for data acquisition systems microchip technology, 1999 AN699,http://wwl .microchip.com/downloads/en/AppNotes/00699b.pdf

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