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首页> 外文期刊>Circuits, Devices & Systems, IET >78 nW ultra-low-power 17 kS/s two-step-successive approximation register analogue-to-digital converter for RFID and sensing applications
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78 nW ultra-low-power 17 kS/s two-step-successive approximation register analogue-to-digital converter for RFID and sensing applications

机译:78 nW超低功耗17 kS / s两步成功近似寄存器模数转换器,用于RFID和传感应用

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摘要

In this study an ultra-low-power successive approximation register (SAR) analogue-to-digital converter (ADC) for radio frequency identification (RFID) applications is presented. Several techniques are used to further reduce power consumption and relatively elevate the speed of the conventional SAR ADC. These techniques include a low-power comparator with no static current, a dual-stage (resistor-string/capacitive dividing) architecture as digital-to-analogue converter (DAC), and utilising low-power design with the aid of low supply voltages: 0.7 V for DAC, and 0.5 V for SAR block and pulse generator circuitry (PGC). In the DAC architecture fine search will be performed by only two C and 15C capacitors which reduce the silicon area significantly. The circuit designed in 0.18 mm complementary metal-oxide-semiconductor (CMOS), technology and post-layout simulations show that the 8-bit core ADC consumes almost 78.4 nW at 17.8 kS/s speed whereas the PGC block consumes 84.1 nW. The results show that the proposed ADC has higher speed with almost the same power consumption in comparison to its charge redistribution counterparts.
机译:在这项研究中,提出了一种用于射频识别(RFID)应用的超低功耗逐次逼近寄存器(SAR)模数转换器(ADC)。使用了几种技术来进一步降低功耗并相对提高传统SAR ADC的速度。这些技术包括没有静态电流的低功耗比较器,作为数模转换器(DAC)的双级(电阻串/电容分压)架构以及利用低电源设计的低电源电压:DAC为0.7 V,SAR模块和脉冲发生器电路(PGC)为0.5V。在DAC架构中,仅需两个C和15C电容器即可进行精细搜索,从而大大减少了硅面积。该电路采用0.18 mm互补金属氧化物半导体(CMOS)设计,技术和布局后仿真显示,该8位内核ADC在17.8 kS / s的速度下消耗近78.4 nW,而PGC模块的消耗为84.1 nW。结果表明,与电荷重新分配模型相比,拟议的ADC具有更高的速度和几乎相同的功耗。

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