Low-power oscillator for passive radio frequency identification transponders

Mahzad Azarmehr, R. Rashidzadeh, M. Ahmadi
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引用次数: 8

Abstract

Passive radio frequency identification tags extract energy from incoming electromagnetic waves to power up their internal circuitry. Such a limited source of power demands efficient circuits to minimise the power consumption. In this work a new technique is proposed to design a low-power ring oscillator in which the voltage swing of internal nodes are constrained to lower the dynamic power consumption. The proposed power reduction technique can be employed for RFID tags operating over different frequency bands from low frequency (LF) to microwave. A low-power oscillator operating in the medium-frequency range (6–16 MHz) for applications such as electronic article surveillance and item management has been implemented in this work. Post-layout simulation results using STMicroelectronics CMOS 65 nm technology indicate that the proposed method can reduce the power consumption by more than 25%.
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用于无源射频识别应答器的低功率振荡器
无源射频识别标签从传入的电磁波中提取能量,为其内部电路供电。如此有限的电源需要高效的电路来最小化功耗。本文提出了一种设计低功耗环形振荡器的新技术,该技术可以约束环形振荡器内部节点的电压摆幅,从而降低振荡器的动态功耗。所提出的功耗降低技术可用于从低频(LF)到微波的不同频段的RFID标签。在这项工作中实现了一种工作在中频范围(6-16 MHz)的低功率振荡器,用于电子物品监控和物品管理等应用。采用意法半导体CMOS 65nm工艺的布局后仿真结果表明,该方法可将功耗降低25%以上。
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