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◆ Journal of Semiconductors2026-06-01· Miniaturization

A 2 mm × 2 mm battery-free neural interface achieving 72-channel wireless simultaneous recording by dual overlapped on-chip antennas

Yili Shen, Y Zhang, Changgui Yang, Yuxuan Luo, Bo Zhao

原始摘要(英文原文)· Original abstract
Abstract Battery-free radio systems utilizing wireless power transfer (WPT) further facilitate the miniaturization of neural implants. However, simultaneous monitoring of multiple neuronal activities is required to obtain high-fidelity neural signals. Consequently, the integration of numerous channels on a single chip and the wireless transmission of massive multi-channel data pose significant challenges for implantable battery-free neural interfaces. This work introduces dual overlapped on-chip antennas to eliminate the need for a battery in the neural implants and enable high-data-rate backscatter for transmitting the massive data acquired simultaneously from 72 channels. Additionally, an orthogonal coding and sampling technique is employed to reduce both power consumption and area per channel. Fabricated in a 65 nm CMOS process, the proposed chip integrates 72 neural recording channels within a 2 mm × 2 mm area and achieves a backscatter data rate of 18 Mbps.
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A 2 mm × 2 mm battery-free neural interface achieving 72-channel wireless simultaneous recording by dual overlapped on-chip antennas — 科研速览 Science Skim