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A 14-bit extended-range incremental #x03A3;#x0394; ADC matlab-model based on 90nm CMOS-technology

机译:基于90nm CMOS技术的14位扩展范围增量ΣΔADC Matlab模型

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In this paper a complete Matlab-Based-Model of a high resolution second-order multi- channel incremental A-to-D-Converter is presented. The A-to-D-Converter model includes the most relevant non-idealities for future transistor- level implementation. The reference technology used for the model is the 90nm CMOS node. The analog part of the A-to-D-Converter will be implemented by switched-capacitors integrators, so that the passive components and MOS transistor matching parameters are included in the Model. CMOS Process deviation is also taken into account, since the Matlab-Based model has the feature to set the Opamp finite dc-gain and bandwidth. External slew-rate limitation is also modeled in the Opamp. The system complies with the overall specifications of the biomedical systems and combines the advantages of oversampling with resolution improvement thanks to an extended-counting-based technique. The final simulations results validate the model, with a signal-to-noise-distortion ratio of 92.1 dB within a 500 kHz bandwidth at a 16 MHz sample frequency.
机译:本文提出了一个完整的基于Matlab的高分辨率二阶多通道增量式A / D转换器模型。模数转换器模型包括与未来晶体管级实现最相关的非理想性。该模型使用的参考技术是90nm CMOS节点。模数转换器的模拟部分将由开关电容积分器实现,因此该模型中将包含无源组件和MOS晶体管匹配参数。由于基于Matlab的模型具有设置Opamp有限直流增益和带宽的功能,因此还考虑了CMOS工艺偏差。外部摆率限制也建立在运算放大器中。该系统符合生物医学系统的总体规格,并结合了基于扩展计数技术的过采样和分辨率提高的优势。最终的仿真结果验证了该模型,该模型在500 MHz带宽,16 MHz采样频率下的信噪比为92.1 dB。

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