以kT/q为中间值的逐次逼近模数转换器

R. Wolffenbuttel
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引用次数: 0

摘要

传统的逐次逼近模数转换器由一个明显可区分的模数转换器组成,通常基于R-2R电阻阶梯,在反馈回路中为输入比较器提供SA寄存器内容的模拟对应物。在连续的转换步骤中,实现了输入电压的SA寄存器估计的细化。从MSB开始,较低有效位是在SA寄存器的前位设置和数模转换器输出与实际输入电压的比较后确定的。转换精度在很大程度上取决于数模转换器中精密元件的匹配。因此,通常不考虑导线磁芯的性质。尽管如此,这种电路显示出有趣的特性,可以降低AD转换器的总电路复杂性,这将允许电路在具有保守设计规则的双极工艺中实现,而不是CMOS工艺。这是智能传感器中一个有趣的特性,在智能传感器中,与传感器过程的过程兼容性是必不可少的,而只需要适度的分辨率。在提出的新方法中,采用了一个translinear铁芯作为比较器和数模转换器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Successive Approximation AD Converter using kT/q as an Intermediate
Conventional Successive Approximation AD converters consist of a clearly distinguishable DA converter, usually based on a R-2R resistor ladder, in a feedback loop for providing the analog counterpart of the SA register content to the input comparator. In successive conversion steps a refining of the SA register estimate of the input voltage is realised. Starting from the MSB the lesser significant bits are determined after setting of the previous bit in the SA register and comparison of the DA converter output with the actual input voltage. The conversion accuracy is largely determined by the matching of precision components in the DA converter. For this reason the properties of a translinear core are usually not taken into consideration. Nevertheless, such a circuit reveals interesting features for reducing the total circuit complexity of the AD converter, which would allow the circuit to be realised in a bipolar process with conservative design rules instead of a CMOS process. This is an interesting property in smart sensors where process compatibilty with the sensor process is essential, whereas only a moderate resolution is required. In the novel approach presented, a translinear core is employed to serve as both the comparator and the DA converter.
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