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JSSC 2019第12期RF & Wireless45nmPower AmplifierNeural Network Accelerator

A Super-Resolution Mixed-Signal Doherty Power Amplifier for Simultaneous Linearity and Efficiency Enhancement Fei Wang , Student Member , IEEE,T s o - W e iL i, Member , IEEE

提出一种混合信号Doherty功率放大器,同时提升线性度和效率。
45nm SOI CMOS, 27 GHz, 40.1% PAE, 23.3-dBm Psat
混合信号Doherty功率放大器线性度效率毫米波
创新点1:混合信号Doherty架构(系统创新) - 结合模拟主功放和数字辅助功放,动态调整辅助功放的加权系数以实现最优负载调制,显著提升线性度和回退效率,峰值PAE达40.1%,6dB回退PAE提升1.68倍。
创新点2:非均匀量化抑制量化噪声(方法创新) - 通过非均匀量化技术降低数字功放控制信号的量化噪声,减少对毫米波设计的ENOB需求,支持12Gb/s 64-QAM信号传输,EVM低至-24.5dB。
创新点3:准一阶保持操作减少频谱镜像(电路创新) - 采用准一阶保持操作大幅抑制频谱镜像,提升信号分辨率,使3-bit控制实现超分辨率性能,无需复杂DPD即可满足高线性度要求。
创新点4:毫米波兼容性设计(系统创新) - 通过混合信号Doherty操作和NUQ技术降低对高ENOB的依赖,简化毫米波或化合物功放设计,实测27GHz频段下饱和输出功率达23.3dBm。
Abstract
This article presents a mixed-signal Doherty power amplifier (MSDPA) architecture for simultaneous linearity and efficiency enhancement. The MSDPA comprises one analog power amplifier (PA) as the main PA and one binary-weighted dig- ital PA as the auxiliary PA. The MSDPA input is a generic envelope-varying complex-modulated signal. Based on the real- time amplitude-modulated (AM) envelope, auxiliary digital PA weightings are dynamically turned-on to perform optimum Doherty load modulation for superior linearity and back-off efficiency. Moreover, quantization noise is largely suppressed by the mixed-signal Doherty operation and nonuniform quantization (NUQ), while spectral images are substantially reduced by the quasi-first-order hold (quasi-F OH) operation, which together achieves super-resolution over conventional digital PAs; this makes the MSDPA conducive to millimeter-wave (mm-Wave) or compound PA designs by obviating the need for a large effective number of bits (ENOB) on AM digital controls. As a proof of concept, a 3-bit MSDPA is implemented at 27 GHz in a 45-nm silicon-on-insulator (SOI) CMOS process. The prototype PA achieves 40.1% peak power-added efficiency (PAE), 23.3-dBm saturated output power ( P sat), and 39.4% PAE for 22.4-dBm P1dB at 27 GHz in continuous-wave (CW) measurements. The PAE at 6-dB power back-off (PBO) is 33.1%, which corresponds t oa1 . 6 8× improvement over a normalized Class-B PA. With only three control bits, the MSDPA PA supports a 12-Gb/s 64-QAM s