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Nonius based time-to-digital converter for low-power RFID sensory systems

机译:基于Nonius的时间数字转换器,用于低功耗RFID传感系统

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This paper presents a nonius-based time-to-digital converter (TDC) for its use as part of a RFID tag sensor. The TDC can digitize any physical magnitude previously converted to time delay and it exploits the benefits of time domain conversion: high resolution with reduced power consumption and low voltage operation. A high level study is carried out to analyze the feasibility of the nonius-based TDC for RFID sensing applications. A calibration strategy tailored for RFID sensing applications is proposed that makes the TDC very robust against process and mismatch variations. Subgate resolution is analyzed to overcome the technology gate delay limits. An implementation of the converter using a 0.18-µm CMOS standard process has been analyzed for human body temperature sensing applications. A resolution of 0.035°C and accuracy value of 0.053°C are achieved in the range from 35°C to 43°C. The average power consumption of the converter is only 3.9nW at 10 samples per second from a 1.8V voltage supply.
机译:本文提出了一种基于非因数的时间数字转换器(TDC),该时间数字转换器用作RFID​​标签传感器的一部分。 TDC可以将先前转换为时间延迟的任何物理幅度数字化,并且可以利用时域转换的优势:高分辨率,低功耗和低电压运行。进行了高层研究,以分析基于非因数的TDC在RFID传感应用中的可行性。提出了针对RFID感应应用量身定制的校准策略,该策略使TDC能够非常稳定地抵抗过程和失配变化。分析子门分辨率以克服技术门延迟限制。对于人体温度感测应用,已经分析了采用0.18 µm CMOS标准工艺的转换器实现。在35°C至43°C的范围内,可实现0.035°C的分辨率和0.053°C的精度值。在1.8V电压电源下,每秒10个采样时,转换器的平均功耗仅为3.9nW。

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