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Trinity Antennas: flexible active radio frequency systems with intrinsic heat spreading

delete2026-08-04
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OA
AI
Y
Yizhou Jiang
Y
Yanzhen Li
E
Evgeny Zamburg *
G
Gan Zhang
J
Jin Feng Leong
X
Xiangyu Zhang
L
Lanrik Kester
L
Ling Cai
C
Chenggang Zhuang
T
Theng Huat Gan
X
Xiaodong Chen
A
Aaron Voon-Yew Thean *
DOI:10.1038/s41528-026-00627-4delete
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Abstract

Abstract

En 中文
Conformal, high-density, and high-power integration for radio frequency systems is critical to future wireless communications. Alumina ceramic offers significant potential owing to its ultra-low dielectric loss tangent. However, wireless systems that exploit alumina’s thermal advantages remain unexplored. In this work, we developed a flexible alumina-based radio frequency system that integrates active components and antenna patches on a single substrate, achieving intrinsic heat spreading and high electromagnetic performance simultaneously, while maintaining its mechanical flexibility. An X-band array prototype demonstrated uniform temperature distribution with an average reduction of 11.5 °C in the power amplifier temperature at 1.1 W dissipation, and a larger mm-wave array further validated the scalability of our strategy and its robustness at higher frequencies. These results confirm flexible alumina as a promising substrate that is a suitable electromagnetic medium with heat-spreading capability. This work also demonstrates the use of material-circuit co-optimization in which electromagnetic performance and thermal behaviors are jointly engineered.

Journal

npj Flexible Electronics cover
npj Flexible Electronics
IF:
15.5
Papers:
656
Citations:
4.6K

Organization

N
Nanyang Technological University
Scholars:
4.9W
Papers: 4.7W
Citations: 8.1W
T
Temasek Laboratories
Scholars:
2
Papers: 2
Citations: 0
N
National University of Singapore
Scholars:
7.4W
Papers: 6.4W
Citations: 11.4W
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