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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A 0.75–2.5-GHz All-Digital RF Transmitter With Integrated Class-E Power Amplifier for Spectrum Sharing Applications in 5G Radios
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A 0.75–2.5-GHz All-Digital RF Transmitter With Integrated Class-E Power Amplifier for Spectrum Sharing Applications in 5G Radios

机译:一个0.75-2.5 -GHz全数字RF发射器,集成Class-E功率放大器,用于5G无线电的频谱共享应用

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摘要

We propose a digitally intensive, reconfigurable RF transmitter with an integrated, tunable Class-E power amplifier (PA) which can be configured to operate from 0.75 to 2.5 GHz in discrete bands, while delivering an output power of 11.5 dBm up to 1.5 GHz and 6.5 dBm up to 2.5 GHz. Digital signal processing is exploited to suppress sampling spurs up to the harmonics of the carrier, thus eliminating the need for sharp RF filters. The proposed techniques make the transmitter adaptable to signals of different bandwidths and to different carrier frequencies with minimal overhead in power and area when compared to other digital transmitter designs. Digital predistortion is used to linearize the PA. The transmitter also includes clock correction circuitry for correcting duty cycle and quadrature errors. A generic design methodology is mathematically developed for a reconfigurable Class-E PA with a fixed series inductor. This transmitter scales well with technology and can be potentially used for spectrum sharing (SS) applications in fifth generation (5G) radios. Implemented in a 130-nm CMOS technology, the proposed transmitter occupies an area of 1 mm(2). A maximum output power of 13.7 dBm with a maximum efficiency of 27% is obtained at 1 GHz.
机译:我们提出了一种数字密集型可重构的RF发射器,具有集成的可调式-2功率放大器(PA),可以配置为在离散带中的0.75到2.5 GHz,同时提供11.5 dBm的输出功率,高达1.5 GHz和6.5 dbm高达2.5 GHz。利用数字信号处理来抑制采样泡沫到载体的谐波,从而消除了对尖锐RF滤波器的需求。所提出的技术使得发射机适用于不同带宽的信号和不同的载波频率,与其他数字发射器设计相比,在功率和区域中具有最小的开销。数字预失真用于线性化PA。发射机还包括时钟校正电路,用于校正占空比和正交误差。使用固定系列电感器的可重新配置Clase-E PA在数学开发了通用设计方法。该发射器用技术缩放良好,可以用于第五代(5G)无线电中的频谱共享(SS)应用。在130nm CMOS技术中实现,所提出的发射器占地面积为1mm(2)。最大输出功率为13.7 dBm,最大效率为27%,以1GHz获得。

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