无线
天线(收音机)
功率(物理)
声学
电气工程
材料科学
计算机科学
电信
物理
工程类
量子力学
作者
Yubin Cai,Baju Joy,B. X. E. Desbiolles,Viktor Schell,Shubham Yadav,David Bono,Deblina Sarkar
标识
DOI:10.1109/tap.2025.3594009
摘要
Wireless battery-free implants can harvest power from externally applied waves, yet powering deep-tissue implants remains complex. Although optical waves undergo absorption in dense tissue structures and acoustic waves encounter interference from impedance mismatch, kHz RF waves achieve superior tissue penetration. However, miniaturizing RF antennas is challenging. Our study introduces a solution via an ultra-miniaturized magnetoelectric antenna, 200 μm in diameter, operating at the low frequency (LF) band. This antenna relies on the magnetoelectric effect, converting incident magnetic waves into electric charges through a mechanical coupling between magnetostrictive and piezoelectric thin films of 250 nm in thickness. Our device has a magnetoelectric coupling coefficient of 768 V ∙ cm-1Oe-1 at 109.3 kHz, showcasing its efficacy even in regions deep inside the body. Moreover, our device fabrication is VLSI-compatible, promising potential integration with CMOS circuitry and positioning it as a prospective frontrunner for minimally invasive bioelectric applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI