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A low-power CMOS class-E power amplifier for biotelemetry applications

机译:用于生物遥测应用的低功耗CMOS E类功率放大器

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Designing efficient, fully integrated transceivers that could operate from very low supply voltages and for biomedical implantable electronic systems is a major challenge. This paper presents a fully integrated, 2.4 GHz class-E power amplifier (PA), with a class-F driver stage. The circuit was fabricated in a standard 0.18 /spl mu/m CMOS technology. Measurement results show a maximum drain efficiency of 38 % and a maximum gain of 17 dB. When operating from a 1.2 V supply, the PA delivers an output power of 9 mW with a power-added efficiency (PAE) of 33 %. The supply voltage can go down to 0.6 V with an output power of 2 mW and a PAE of 25 %. The circuit also has a second output to test the effects of using an on-chip filter in low-power designs. This work demonstrates the feasibility of using class-E PAs for short-range, low-power applications.
机译:设计可在非常低的电源电压下运行以及用于生物医学植入式电子系统的高效,完全集成的收发器是一项重大挑战。本文介绍了一个具有F类驱动器级的完全集成的2.4 GHz E类功率放大器(PA)。该电路采用标准的0.18 / spl mu / m CMOS技术制造。测量结果显示最大漏极效率为38%,最大增益为17 dB。当使用1.2 V电源供电时,PA可以提供9 mW的输出功率,且功率附加效率(PAE)为33%。电源电压可以降至0.6 V,输出功率为2 mW,PAE为25%。该电路还具有第二个输出,以测试在低功耗设计中使用片上滤波器的效果。这项工作证明了在短距离,低功耗应用中使用E类功率放大器的可行性。

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