Faculty of Electronic Engineering Technology, Universiti Malaysia Perlis (UniMAP), Arau 02600, Perlis, Malaysia.
Advanced Communication Engineering, Centre of Excellence (ACE), Universiti Malaysia Perlis (UniMAP), Kangar 01000, Perlis, Malaysia.
Sensors (Basel). 2022 Dec 11;22(24):9712. doi: 10.3390/s22249712.
The rapid growth of wireless technology has improved the network's technology from 4G to 5G, with sub-6 GHz being the centre of attention as the primary communication spectrum band. To effectively benefit this exclusive network, the improvement in the mm-wave detection of this range is crucial. In this work, a silicon self-switching device (SSD) based full-wave bridge rectifier was proposed as a candidate for a usable RF-DC converter in this frequency range. SSD has a similar operation to a conventional pn junction diode, but with advantages in fabrication simplicity where it does not require doping and junctions. The optimized structure of the SSD was cascaded and arranged to create a functional full-wave bridge rectifier with a quadratic relationship between the input voltage and outputs current. AC transient analysis and theoretical calculation performed on the full-wave rectifier shows an estimated cut-off frequency at ~12 GHz, with calculated responsivity and noise equivalent power of 1956.72 V/W and 2.3753 pW/Hz, respectively. These results show the capability of silicon SSD to function as a full-wave bridge rectifier and is a potential candidate for RF-DC conversion in the targeted 5G frequency band and can be exploited for future energy harvesting application.
无线技术的快速发展将网络技术从 4G 提升到了 5G,其中 sub-6GHz 成为主要的通信频谱频段。为了有效利用这一专用网络,该频段的毫米波检测的改进至关重要。在这项工作中,提出了一种基于硅自切换器件(SSD)的全波桥整流器,作为该频率范围内可用射频-直流转换器的候选器件。SSD 的工作原理与传统的 pn 结二极管类似,但在制造上具有优势,因为它不需要掺杂和结。优化后的 SSD 结构被级联和排列,以创建具有输入电压和输出电流之间二次关系的功能全波桥整流器。对全波整流器进行的交流瞬态分析和理论计算表明,其截止频率约为 12GHz,计算出的响应率和噪声等效功率分别为 1956.72V/W 和 2.3753pW/Hz。这些结果表明,硅 SSD 有能力作为全波桥整流器发挥作用,是目标 5G 频带中射频-直流转换的潜在候选器件,并可用于未来的能量收集应用。