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A ratio-independent algorithmic analog-to-digital converter combining current mode and dynamic techniques

机译:结合电流模式和动态技术的比例无关算法模数转换器

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An algorithmic analog-to-digital converter (ADC) that combines current mode and dynamic techniques is presented. The converter does not rely on high-gain amplifiers or well-matched components to achieve high resolution and is inherently insensitive to the amplifier's offset voltage. An analysis of the converter's limitations indicates that the resolution of practical circuits will be limited by the switch-induced charge injection. Ultimately, however, the kT/C noise leads to an area/resolution tradeoff and the transistor's thermal noise leads to a speed/power tradeoff. A prototype fabricated using a 3- mu m CMOS process achieved 10-bit resolution at a sampling rate of 25 kHz on an area of only 0.18 mm/sup 2/.
机译:提出了一种将电流模式和动态技术相结合的算法模数转换器(ADC)。该转换器不依靠高增益放大器或匹配良好的组件来实现高分辨率,并且固有地对放大器的失调电压不敏感。对转换器限制的分析表明,实际电路的分辨率将受到开关感应电荷注入的限制。然而,最终,kT / C噪声导致面积/分辨率的折衷,而晶体管的热噪声导致速度/功率的折衷。使用3微米CMOS工艺制造的原型在仅0.18 mm / sup 2 /的面积上以25 kHz的采样率实现了10位分辨率。

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