Wang Yan, Zhang Xiaoyue, Yang Xing, Wang Zhiji, Yan Yuefei, Du Biao, Zhang Jiliang, Wang Congsi
School of Information and Control Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
School of Mechano-Electronic Engineering, Xidian University, Xi'an 710071, China.
Micromachines (Basel). 2023 Aug 31;14(9):1705. doi: 10.3390/mi14091705.
High in reliability, multi in function, and strong in tracking and detecting, active phased array antennas have been widely applied in radar systems. Heat dissipation is a major technological barrier preventing the realization of next-generation high-performance phased array antennas. As a result of the advancement of miniaturization and the integration of microelectronics technology, the study and development of embedded direct cooling or heat dissipation has significantly enhanced the heat dissipation effect. In this paper, a novel swept-back fishnet-embedded microchannel topology (SBFEMCT) is designed, and various microchannel models with different fishnet runner mesh density ratios and different fishnet runner layers are established to characterize the chip Tmax, runner Pmax, and Vmax and analyze the thermal effect of SBFEMCT under these two operating conditions. The Pmax is reduced to 72.37% and 57.12% of the original at mesh density ratios of 0.5, 0.25, and 0.125, respectively. The maximum temperature reduction figures are average with little change in maximum velocity and a small increase in maximum pressure drop across the number of fishnet runner layers from 0 to 4. This paper provides a study of the latest embedded thermal dissipation from the dimension of a single chip to provide a certain degree of new ideas and references for solving the thermal technology bottleneck of next-generation high-performance phased array antennas.
有源相控阵天线可靠性高、功能多样、跟踪探测能力强,已在雷达系统中得到广泛应用。散热是阻碍下一代高性能相控阵天线实现的主要技术障碍。随着微电子技术小型化和集成化的发展,嵌入式直接冷却或散热的研究与开发显著提高了散热效果。本文设计了一种新型的后掠式鱼网嵌入式微通道拓扑结构(SBFEMCT),并建立了不同鱼网流道网格密度比和不同鱼网流道层数的各种微通道模型,以表征芯片的最高温度(Tmax)、流道的最大功率(Pmax)和最大流速(Vmax),并分析这两种工况下SBFEMCT的热效应。在网格密度比分别为0.5、0.25和0.125时,Pmax分别降至原来的72.37%和57.12%。随着鱼网流道层数从0增加到4,最大降温数值平均,最大流速变化不大,最大压降略有增加。本文从单芯片维度对最新的嵌入式散热进行了研究,为解决下一代高性能相控阵天线的热技术瓶颈提供了一定的新思路和参考。