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Development of an Ultra-low Power Current Reference Circuit for Passive RFID Application in 90nm CMOS Technology

机译:在90nm CMOS技术中开发用于无源RFID应用的超低功率电流参考电路

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This research study involved the analog CMOS design of an ultra-low power current reference applicable on wireless devices, especially on passive RFID tags. Passive RFID are battery-less circuit that needs to convert incoming RF power into a DC voltage using rectifier circuit. However, the tag can be read only at very short distances, typically a few feet at most. This greatly limits the device for certain applications. From this, a low power current reference for passive RFID applications is introduced. It is important to improve the usual way of reading tags in order to attain efficiency. This research aimed to develop an ultra-low power current reference for passive RFID application that will lower the tag circuit power consumption to longer the maximum distance required by the communication between the reader and the tag. This study is planned to be implemented on the tollgate system in the Philippines. The main application of this study was the passive RFID tag to be placed on cars. By that, the paper aimed to establish a current reference that has a stable behaviour with temperature and supply variations. This is to ensure that the reference circuit will still function, even if it was placed on different areas in the Philippines.
机译:本研究涉及适用于无线设备的超低功率电流参考的模拟CMOS设计,尤其是在被动RFID标签上。无源RFID是使用整流电路将输入的RF电源转换为直流电压的电池电路。但是,标签只能在非常短的距离下读取,通常最多几英尺。这极大地限制了某些应用程序的设备。由此,引入了无源RFID应用的低功率电流参考。重要的是要提高常用方式阅读标签以获得效率。该研究旨在为被动RFID应用开发超低功率电流参考,这将降低标签电路功耗,以更长读取器与标签之间的通信所需的最大距离。本研究计划在菲律宾的收费系统上实施。本研究的主要应用是要放在汽车上的被动RFID标签。由此,旨在建立具有稳定行为的当前参考,具有温度和供应变化。这是为了确保参考电路仍将起作用,即使它被放置在菲律宾的不同区域。

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