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Ultra low-voltage analog circuits for UHF RFID devices in 180 nm CMOS technology

机译:适用于采用180 nm CMOS技术的UHF RFID设备的超低压模拟电路

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Radio-frequency identification by means of passive tags requires low-cost devices featuring extremely low power consumption for long reading distance and compatibility to small printed antennas. The paper describes the design and implementation of the key analog blocks in a RFID chip: power supply regulator, local oscillator and ASK demodulator. The proposed local oscillator exhibits a very low power consumption and achieves a frequency tolerance compatible with the requirements dictated by the ISO 18000-6 standards. In addition, an ultra-low power voltage reference and a regulator based on a zero-voltage threshold device are presented. These circuits are suitable to provide a regulated power supply to the local oscillator and to the core logic of the passive device. Measurements on a chip implemented in 0.18 μm digital CMOS technology validate the results obtained from simulations.
机译:通过无源标签进行射频识别需要低成本的设备,这些设备具有极低的功耗,可实现较长的读取距离并与小型印刷天线兼容。本文介绍了RFID芯片中关键模拟模块的设计和实现:电源调节器,本地振荡器和ASK解调器。拟议中的本地振荡器具有极低的功耗,并达到了与ISO 18000-6标准所规定要求兼容的频率容限。此外,还提出了一种超低功耗电压基准和基于零电压阈值器件的稳压器。这些电路适合为本地振荡器和无源器件的核心逻辑提供稳压电源。在采用0.18μm数字CMOS技术实现的芯片上进行的测量验证了从仿真中获得的结果。

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