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首页> 外文期刊>IEEE Journal of Solid-State Circuits >High-Throughput Signal Component Separator for Asymmetric Multi-Level Outphasing Power Amplifiers
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High-Throughput Signal Component Separator for Asymmetric Multi-Level Outphasing Power Amplifiers

机译:用于不对称多级异相功率放大器的高通量信号分量分离器

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摘要

This paper presents an energy-efficient high-throughput and high-precision signal component separator (SCS) chip design for the asymmetric-multilevel-outphasing (AMO) power amplifier. It uses a fixed-point piece-wise linear functional approximation developed to improve the hardware efficiency of the outphasing signal processing functions. The chip is fabricated in 45 nm SOI CMOS process and the SCS consumes an active area of 1.5 mm2. The new algorithm enables the SCS to run at a throughput of 3.4 GSamples/s producing the phases with 12-bit accuracy. Compared to traditional low-throughput AMO SCS implementations, at 0.8 GSamples/s this design improves the area efficiency by 25× and the energy-efficiency by 2×. This fastest high-precision SCS to date enables a new class of high-throughput mm-wave and base station transmitters that can operate at high area, energy and spectral efficiency.
机译:本文提出了一种用于非对称多电平输出(AMO)功率放大器的高能效,高吞吐量,高精度信号分量分离器(SCS)芯片设计。它使用开发的定点分段线性函数逼近来提高异相信号处理功能的硬件效率。该芯片采用45 nm SOI CMOS工艺制造,SCS的有源区面积为1.5 mm 2 。新算法使SCS能够以3.4 GSamples / s的吞吐量运行,从而产生具有12位精度的相位。与传统的低吞吐量AMO SCS实现相比,该设计以0.8 GSamples / s的速度将面积效率提高了25倍,将能源效率提高了2倍。迄今为止,这种最快的高精度SCS使得新型高吞吐量毫米波和基站发射机可以在高面积,能量和频谱效率下运行。

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