一个第二阶段的真VCO ADC,采用适合传感器阵列的数字伪DCO
Dante Loi1, Victor Medina1, Luis Hernandez Corporales1
1Electronics Technology Department, University of Madrid Carlos III, 28911 Leganes, Spain.
Sensors (Basel, Switzerland)
|January 8, 2025
概括
本研究介绍了一种基于电压控制振荡器 (VCO) 的新型模拟数字转换器 (ADC),在1MHz采样速率下实现12位有效位数 (ENOB). 它的可扩展设计大大降低了功耗和芯片面积,非常适合传感器应用.
科学领域:
- 混合信号集成电路设计设计.
- 模拟到数字转换器 (ADCs) 是一个类比转换器.
- 传感器技术 传感器技术
背景情况:
- 传统的ADC面临着电力消耗和适用于现代传感器应用的可扩展性方面的挑战.
- 电压控制振荡器 (VCO) 提供了高分辨率和低功耗数据转换的潜力.
研究的目的:
- 实施和验证基于VCO的新型ADC架构.
- 通过可扩展的数字频率转换器来证明降低功耗和足迹.
- 探索动态性能调整的功率分辨率权衡.
主要方法:
- 在130nm CMOS技术中设计和模拟了一个基于 VCO 的 ADC 架构.
- 使用了一种新的,可扩展的,过程,电压和温度 (PVT) 不变的数字到频率转换器.
- 为了提高性能,采用伪差异化配置.
主要成果:
- 在音频带宽内以1MHz的采样速率达到12位的有效位数 (ENOB).
- 证明了105.57微瓦的低功耗和0.034毫米2的小足迹.
- 验证了分辨率和功耗的动态调整,而不改变采样率.
结论:
- 拟议的基于VCO的ADC为高分辨率数据转换提供了一种节能且可扩展的解决方案.
- 它适用于系统芯片 (SoC) 上的多个实例使其非常适合传感器阵列应用,包括生物医学和空间音频.
- 该架构为动态性能调整,平衡功率和分辨率提供了灵活性.
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