⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文提出了一种基于频率分割的无线功率和数据传输集成电路,用于神经假体,能够同时提供115mW功率和超过1Mb/s的数据传输速率。解决了光遗传学耳蜗植入体对高功率和高数据率的苛刻需求。
electrical cochlear implants (CIs) have given >500,000 patients worldwide a better life to date. However, the electrical neural stimulation has limited spatial resolution due to the spread of stimulation current, which reduces the number of effective channels to <10 and results in a restricted perception of sound. Recently developed CIs such as optogenetic CIs have overcome this limitation, enabling much higher effective channel count [1]. However, such CIs require much larger power consumption (>100mW) and a higher data transmission rate (>1Mb/s) than conventional CIs. As a result, designing a simultaneous wireless power and data transfer (SWPDT) system becomes challenging. Also, due to the short distance between transmitter (TX) and receiver (RX) coils
Yechan Park1, Seok-Tae Koh1, Jeongeun Lee2, Hongkyun Kim1, Jaesuk Choi1,
Sohmyung Ha3, Chul Kim1, Minkyu Je1 KAIST, Daejeon, Korea Samsung Electronics, Hwaseong, Korea 3 New York University Abu Dhabi, Abu Dhabi, United Arab Emirates 1 2 The