100-Channel wireless neural recording system with 54-Mb/s data link and 40%-efficiency power link

Solid State Circuits Conference(2012)

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摘要
For real-time monitoring of brain activities, a highdata-rate, low-power, and highly mobile neural recording system is desirable. This paper presents a complete chipset for a 100-channel wireless neural recording system, which consists of 3 ICs - a neural interface (NI) IC and a wireless power RX and data TX IC for an implant unit (IU), and a wireless data RX IC for an external head unit (EHU). With a dual S/H NI architecture and a burst-mode (BM) wideband (WB) FSK TX, the IU achieves a 100-channel recording and wireless transmission at 54.24Mb/s while consuming only 6.6mW. Using power coupling with optimal resonant load transformation and high-efficiency rectifier and LDO circuits, the whole wireless power link achieves 40% efficiency over 1cm distance with 0.5cm tissue in between. The EHU needs to transmit the RF power lower than 30mW to operate the IU. The EHU is implemented using a crystal-less BM WB FSK RX consuming only 14.4mW at 27.12Mb/s.
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关键词
cmos integrated circuits,biomedical electronics,frequency shift keying,low-power electronics,neural chips,neurophysiology,prosthetics,rectifiers,ldo circuits,bit rate 27.12 mbit/s,bit rate 54.24 mbit/s,brain activities,burst-mode wideband fsk tx,data link,external head unit,high efficiency rectifier,implant unit,mobile neural recording system,neural interface ic,power 14.4 mw,power 6.6 mw,power coupling,real time monitoring,size 0.5 cm,wireless data rx ic,wireless data tx ic,wireless neural recording system,wireless power rx ic,wireless power link,low power electronics
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