← 返回 JSSC 论文列表JSSC 2021第12期RF & Wireless22nm FD-SOIPhased Array
A Low-Power Reflection-Coefficient Sensor for 28-GHz Beamforming Transmitters in 22-nm FD-SOI CMOS Ya n g Z h a n g, Member , IEEE
一种用于28GHz波束成形发射机的低功耗反射系数传感器,提升5G毫米波相控阵性能。
22nm FD-SOI, 13.2mW功耗, 0.024mm²面积, |Γ|检测范围0.2-0.7, 最大相位误差40°
毫米波相控阵功率放大器阻抗传感5G
▸集成式低损耗传感元件设计:该方法创新通过在PA输出匹配网络中集成传感元件,实现了小于0.2 dB的插入损耗和可忽略的面积代价,解决了传统外置传感器的高损耗问题。
▸全范围相位检测器提高分辨率:电路创新提出了一种新型相位检测器结构,支持从Γ=0.2到0.7的全范围检测,相位检测误差低至0.14°,显著提升了毫米波阵列的阻抗匹配精度。
▸幅度不敏感的相位检测技术:系统创新采用独特的信号处理算法,使相位检测结果不受电压幅度波动影响,在VSWR=5.67的极端负载条件下仍保持40°相位误差的稳定性。
▸22nm FD-SOI工艺实现微型化:工艺创新将传感器面积压缩至0.024mm²,功耗仅13.2mW,为5G毫米波相控阵提供了高集成度解决方案。
Abstract
Active load impedance variations in a phased array transmitter cause significant power amplifier (PA) performance degradation, in terms of output power, linearity, and power-added efficiency, which are key parameters to enable high-speed data throughputs using spectrally efficient modulation schemes. The system performance can be restored by using PAs having active or passive reconfigurability with the help of antenna impedance sensors. This article presents a low-power reflection-coefficient sensor for 5G millimeter-wave phased-array applications. The complex load impedance of the PA is determined based on the complex voltage over a sensing element, which can be integrated and co-designed with the PA output matching network, with minimal loss (<0.2 dB) and a negligible area penalty. A full-range phase detector with improved detection resolution is proposed, enabling an amplitude-insensitive phase detection. Fabricated in a 22 nm FD-SOI process, the sensor prototype occupies a silicon area of 0.024 mm 2 and consumes 13.2 mW power. The sensor demonstrates a wide detection range with || up to 0.7 (VSWR 5.67) in a load-pull test at 28 GHz. From circle of 0.2 up to 0.7, the maximum detection errors in the magnitude and phase of the are 0.14 ◦ and 40◦, respectively.