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24-bit low-power low-cost digital audio sigma-delta DAC

机译:24位低功耗低成本数字音频sigma-delta DAC

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This paper describes a low-power low-cost 24-bit Σ-Δ digital-to-analog converter (DAC) for portable digital-audio applications. The interpolation filter uses a no-multiplier scheme to implement the arithmetic units and reading-writing common storage scheme for the delay-line to significantly reduce the die area. A 15-level quantizer, third-order, single-stageΣ-Δ modulator is employed to reduce the passband quantization noise, relax the out-of-band filtering requirements, and enhance immunity to clock jitter. A data weighted averaging algorithm is used to mitigate the nonlinearity caused by capacitor mismatch. A direct charge transfer switched-capacitor low-pass filter (DCT-SC LPF) is used to reconstruct the analog signal to reduce the kTIC noise and capacitor mismatch effect with a small increase of the power dissipation. The chip was fabricated in the SMIC 0.13 μrn 1 P5M CMOS process. The cell area of the digital part is 0.056 rnrn2 and the total area of the analog part is 0.34 rnm2. The supply voltage is 1.2 V for the digital circuit and 3.3 V for the analog circuit. The power consumption of the analog part is 3.5 mW. The audio DAC achieves a 100 dB dynamic range and an 84 dB peak signal-to-noise-plus-distortion ratio over a 20 kHz passband. The results show that these performances are good enough for high quality portable audio applications.
机译:本文介绍了一种用于便携式数字音频应用的低功耗低成本24位Σ-Δ数模转换器(DAC)。插值滤波器使用无乘法器方案来实现算术单元,并为延迟线使用读写公共存储方案,以显着减小芯片面积。采用15级量化器,三阶,单级Σ-Δ调制器来降低通带量化噪声,放宽带外滤波要求并增强对时钟抖动的抵抗力。数据加权平均算法用于减轻由电容器失配引起的非线性。使用直接电荷转移开关电容器低通滤波器(DCT-SC LPF)来重建模拟信号,以降低kTIC噪声和电容器失配效应,同时功耗增加很小。该芯片采用SMIC 0.13μm1 P5M CMOS工艺制造。数字部分的单元格面积为0.056 rnrn 2 ,模拟部分的总面积为0.34 rnm 2 。数字电路的电源电压为1.2 V,模拟电路的电源电压为3.3V。模拟部分的功耗为3.5 mW。音频DAC在20 kHz通带上可实现100 dB的动态范围和84 dB的峰峰值信噪加失真比。结果表明,这些性能足以满足高质量便携式音频应用的需求。

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