首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Radix-based digital calibration techniques for multi-stage recycling pipelined ADCs
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Radix-based digital calibration techniques for multi-stage recycling pipelined ADCs

机译:用于多级回收流水线ADC的基于Radix的数字校准技术

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This work describes a digital-domain self-calibration technique for multistage pipelined analog-to-digital converters (ADCs). By making the signal paths of both the input and the reference voltage the same, all error factors within a stage are merged into a single term which represents the equivalent radix number. The initially estimated radix for each stage mathematically iterates to the final correct value via an incremental update algorithm, after foreground calibration measurements are obtained during ADCs recycling mode of operation. In this way, an accurate calibration is achieved using a modified radix-based calculation. Two different single-bit-per-stage ADC adaptation/calibration methods are presented as examples. The proposed technique compensates for linear errors such as capacitor mismatches as well as finite opamp gain.
机译:这项工作描述了一种用于多级流水线模数转换器(ADC)的数字域自校准技术。通过使输入电压和参考电压的信号路径相同,可以将级内的所有误差因子合并为一个表示等效基数的项。在ADC回收操作模式期间获得前景校准测量值之后,每个阶段的初始估计基数通过增量更新算法在数学上迭代到最终正确值。以这种方式,使用基于基数的修改后的计算可以实现准确的校准。举例说明了两种不同的每级一位ADC自适应/校准方法。所提出的技术补偿了线性误差,例如电容器失配以及有限的运算放大器增益。

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