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Analysis of Four-Stage Charge Pump Circuit for UHF RFID Tag Design

机译:UHF RFID标签设计四级电荷泵电路分析

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This work presents the analysis of a charge pump circuit for UHF RFID tag design using 22nm CMOS technology. A charge pump circuit is basically a DC to DC converter. This circuit can be used in many systems for its high performance and low power consumption. Hence, this voltage charge pump circuit can be used in low voltage applications such as in RFID tag's EEPROM. This charge pump circuit has been used as a part of the power supply unit of a fully integrated RFID transponder IC. This modified circuit can generate a stable output voltage with low power dissipation and higher gain for RFID applications. Measured output of this circuit at 433MHz frequency with 1pF of pumping capacitor value, is 3.48V which is more than the value of the industry standardized voltage 3.3V. The extensive simulations are done by using T-spice simulator.
机译:这项工作介绍了使用22nm CMOS技术的UHF RFID标签设计的电荷泵电路的分析。电荷泵电路基本上是DC转换器的DC。该电路可用于许多系统,以实现其高性能和低功耗。因此,该电压电荷泵电路可用于低压应用,例如RFID标签的EEPROM。该电荷泵电路已被用作完全集成的RFID应答器IC的电源单元的一部分。该改进的电路可以产生具有低功耗和RFID应用的更高功耗和更高增益的稳定输出电压。以433MHz频率测量该电路的输出,泵送电容值1PF为3.48V,比行业标准化电压为3.3V的值。通过使用T-Spice Simulator完成广泛的模拟。

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