2006Unpublished venueRequires access

Noise shaping sigma delta modulation techniques and models simulation

Yuanyuan Zhang, Yanfeng Jiang

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Abstract

With high resolution ADC has been widespread used in communication and multimedia, oversampling Sigma-Delta ADC becomes the main path of implementing high resolution ADC. Oversampling Sigma-Delta ADC is composed of two basic blocks: a noise shaping sigma delta modulator and a digital signal processing block for filtering and decimation. This paper mainly discuss noise shaping sigma delta modulation techniques, theory and structure. Followed by a discussion of the advantage of high-order structure, then discussed its stability. This paper use the method of adding gain (<1) before the integrator to solve stable problem. In this paper, precise models of fourth-order structure are presented followed by SIMULINK, implemented a modulator with an oversampling frequency of 2.5 MHz

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What this paper is about

With high resolution ADC has been widespread used in communication and multimedia, oversampling Sigma-Delta ADC becomes the main path of implementing high resolution ADC. Oversampling Sigma-Delta ADC is composed of two basic blocks: a noise shaping sigma delta modulator and a digital signal processing block for filtering and decimation. This paper mainly discuss noise shaping sigma delta modulation techniques, theory and structure. Followed by a discussion of the advantage of high-order structure, then discussed its stability. This paper use the method of adding gain (<1) before the integrator to solve stable problem. In this paper, precise models of fourth-order structure are presented followed by SIMULINK, implemented a modulator with an oversampling frequency of 2.5 MHz

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Available abstract

With high resolution ADC has been widespread used in communication and multimedia, oversampling Sigma-Delta ADC becomes the main path of implementing high resolution ADC. Oversampling Sigma-Delta ADC is composed of two basic blocks: a noise shaping sigma delta modulator and a digital signal processing block for filtering and decimation. This paper mainly discuss noise shaping sigma delta modulation techniques, theory and structure. Followed by a discussion of the advantage of high-order structure, then discussed its stability. This paper use the method of adding gain (<1) before the integrator to solve stable problem. In this paper, precise models of fourth-order structure are presented followed by SIMULINK, implemented a modulator with an oversampling frequency of 2.5 MHz

Key concepts: Oversampling, Delta-sigma modulation, Integrator, Noise shaping, Decimation, Delta modulation, Noise (video), Modulation (music)

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