首页> 外文会议>Proceedings of 2010 IEEE International Symposium on Circuits and Systems >A 0.5 V-1.4 V supply-independent frequency-based analog-to-digital converter with fast start-up time for wireless sensor networks
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A 0.5 V-1.4 V supply-independent frequency-based analog-to-digital converter with fast start-up time for wireless sensor networks

机译:0.5 V-1.4 V独立于电源的基于频率的模数转换器,具有快速启动时间,适用于无线传感器网络

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RF-powered wireless sensor networks demand for ultra-low-energy A/D converters. Such systems have specific requirements, like fast start-up time and supply voltage independence. The presented A/D converter is based on a digital phase locked loop. Two closely matched ring oscillators perform the analog to frequency conversion. The digital output is generated by an in-loop digital proportional-integral filter. The acquisition of the PLL is splitted into coarse and fine tuning to reduce the locking time to less than 30µs. A UMC130 CMOS technology is used to simulate a temperature sensor interface. The energy consumption is maximally 212 pJ per conversion and the effective number of bits is 7 bit in a 0.5 V-1.4 V supply voltage range.
机译:射频供电的无线传感器网络对超低功耗A / D转换器的需求。这样的系统具有特定的要求,例如快速启动时间和电源电压独立性。提出的A / D转换器基于数字锁相环。两个紧密匹配的环形振荡器执行模拟到频率的转换。数字输出由环路内数字比例积分滤波器生成。 PLL的采集分为粗调和精调,以将锁定时间缩短至不到30µs。 UMC130 CMOS技术用于模拟温度传感器接口。每次转换的能耗最大为212 pJ,在0.5 V至1.4 V的电源电压范围内,有效位数为7位。

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