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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >An Ultra-Low-Power Long Range Battery/Passive RFID Tag for UHF and Microwave Bands With a Current Consumption of 700 nA at 1.5 V
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An Ultra-Low-Power Long Range Battery/Passive RFID Tag for UHF and Microwave Bands With a Current Consumption of 700 nA at 1.5 V

机译:用于UHF和微波频段的超低功耗远程电池/无源RFID标签,在1.5 V时的电流消耗为700 nA

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摘要

We present for the first time, a fully integrated battery powered RFID integrated circuit (IC) for operation at ultrahigh frequency (UHF) and microwave bands. The battery powered RFID IC can also work as a passive RFID tag without a battery or when the battery has died (i.e., voltage has dropped below 1.3 V); this novel dual passive and battery operation allays one of the major drawbacks of currently available active tags, namely that the tag cannot be used once the battery has died. When powered by a battery, the current consumption is 700 nA at 1.5 V (400 nA if internal signals are not brought out on test pads). This ultra-low-power consumption permits the use of a very small capacity battery of 100 mA-hr for lifetimes exceeding ten years; as a result a battery tag that is very close to a passive tag both in form factor and cost is made possible. The chip is built on a 1-mum digital CMOS process with dual poly layers, EEPROM and Schottky diodes. The RF threshold power at 2.45 GHz is -19 dBm which is the lowest ever reported threshold power for RFID tags and has a range exceeding 3.5 m under FCC unlicensed operation at the 2.4-GHz microwave band. The low threshold is achieved with architectural choices and low-power circuit design techniques. At 915 MHz, based on the experimentally measured tag impedance (92-j837) and the threshold spec of the tag (200 mV), the theoretical minimum range is 24 m. The tag initially is in a "low-power" mode to conserve power and when issued the appropriate command, it operates in "full-power" mode. The chip has on-chip voltage regulators, clock and data recovery circuits, EEPROM and a digital state machine that implements the ISO 18000-4 B protocol in the "full-power" mode. We provide detailed explanation of the clock recovery circuits and the implementation of the binary sort algorithm, which includes a pseudorandom number generator. Other than the antenna board and a battery, no external components are used.
机译:我们首次展示了一种完全集成的电池供电的RFID集成电路(IC),可在超高频(UHF)和微波频带下运行。电池供电的RFID IC也可以在无电池或电池耗尽时(即电压降至1.3 V以下)用作无源RFID标签;这种新颖的双重无源和电池操作消除了当前可用有源标签的主要缺点之一,即一旦电池耗尽,就无法使用该标签。如果使用电池供电,则在1.5 V时的电流消耗为700 nA(如果内部信号没有从测试焊盘上引出,则为400 nA)。这种超低功耗允许使用100 mA-hr的超小容量电池,使用寿命超过十年;结果,使得在形状因数和成本上都非常接近无源标签的电池标签成为可能。该芯片基于具有双多晶硅层,EEPROM和肖特基二极管的1微米数字CMOS工艺构建。在2.45 GHz处的RF阈值功率为-19 dBm,这是有史以来针对RFID标签的最低阈值功率,在2.4 GHz微波频带的FCC无许可证操作下,其范围超过3.5 m。低阈值可通过架构选择和低功耗电路设计技术来实现。在915 MHz时,根据实验测量的标签阻抗(92-j837)和标签的阈值规格(200 mV),理论最小范围为24 m。标签最初处于“低功耗”模式以节省功率,并且在发出适当的命令后,它将以“全功耗”模式运行。该芯片具有片上稳压器,时钟和数据恢复电路,EEPROM和数字状态机,该状态机以“全功率”模式实现ISO 18000-4 B协议。我们提供了时钟恢复电路和二进制排序算法(包括伪随机数生成器)的实现的详细说明。除天线板和电池外,不使用任何外部组件。

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