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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A System-on-Chip EPC Gen-2 Passive UHF RFID Tag With Embedded Temperature Sensor
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A System-on-Chip EPC Gen-2 Passive UHF RFID Tag With Embedded Temperature Sensor

机译:具有嵌入式温度传感器的片上系统EPC Gen-2无源UHF RFID标签

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摘要

This paper presents a system-on-chip passive RFID tag with an embedded temperature sensor for the EPC Gen-2 protocol in the 900-MHz UHF frequency band. A dual-path clock generator is proposed to support both applications with either very accurate link frequency or very low power consumption. On-chip temperature sensing is accomplished with a time-readout scheme to reduce the power consumption. Moreover, a gain-compensation technique is proposed to reduce the temperature sensing error due to process variations by using the same bandgap reference of the tag to generate bias currents for both the current-to-digital converter and the clock generator of the sensor. Also integrated is a 128-bit one-time-programmable (OTP) memory array based on gate-oxide antifuse without extra mask steps. Fabricated in a standard 0.18- $mu$m CMOS process with analog options, the 1.1-mm$^{2}$ tag chip is bonded onto an antenna using flip-chip technology to realize a complete tag inlay, which is successfully demonstrated and evaluated in real-time wireless communications with commercial RFID readers. The tag inlay achieves a sensitivity of ${-}hbox{6}$ dBm and a sensing inaccuracy of ${pm}hbox{0.8}^{circ}$ C ($3 sigma$ inaccuracy) over operating temperature range from ${-}hbox{20}^{circ}$C to 30$^{circ}$C with one-point calibration.
机译:本文提出了一种带有嵌入式温度传感器的片上系统无源RFID标签,该传感器用于900 MHz UHF频段的EPC Gen-2协议。建议使用双路径时钟发生器以非常精确的链路频率或非常低的功耗支持这两种应用。片上温度感测通过计时方案实现,以降低功耗。此外,提出了一种增益补偿技术,以通过使用标签的相同带隙基准来为电流数字转换器和传感器的时钟发生器生成偏置电流,从而减少由于工艺变化而引起的温度感测误差。还集成了一个基于栅极氧化物反熔丝的128位一次性可编程(OTP)存储器阵列,而无需额外的掩模步骤。该1.1-mm $ ^ {2} $标签芯片采用标准的0.18-μmCMOS工艺制造,带有模拟选项,采用倒装芯片技术将其粘贴到天线上,以实现完整的标签嵌体,并成功进行了演示和展示。与商用RFID阅读器进行实时无线通信评估。标签嵌体在$ {-的工作温度范围内达到$ {-} hbox {6} $ dBm的灵敏度和$ {pm} hbox {0.8} ^ {circ} $ C的感测误差($ 3 sigma $误差)。 } hbox {20} ^ {circ} $ C至30 $ ^ {circ} $ C,并进行单点校准。

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