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Ultrasonically Powered and Controlled Microsystem for Dual-Wavelength Optogenetics With a Multiload Regulation Scheme

Authors :
Amin Rashidi
Milad Zamani
Tanmay Mondal
Seyedsina Hosseini
Kjeld Laursen
Brian Corbett
Farshad Moradi
Source :
Rashidi, A, Zamani, M, Mondal, T, Hosseini, S, Laursen, K, Corbett, B & Moradi, F 2023, ' Ultrasonically Powered and Controlled Microsystem for Dual-Wavelength Optogenetics With a Multiload Regulation Scheme ', IEEE Solid-State Circuits Letters, pp. 33-36 . https://doi.org/10.1109/LSSC.2023.3239601
Publication Year :
2023
Publisher :
Institute of Electrical and Electronics Engineers (IEEE), 2023.

Abstract

This letter presents an ultrasonically powered dual-wavelength optogenetic device that targets simultaneous excitation and inhibition of neural activities, or in a broader sense, optical stimulation in two distinct wavelengths for targeting different populations of neurons. This can be applied to a variety of neurological disorders. The device features a load regulator circuit that shares the available power budget between two LEDs in a power-efficient and controlled way suppressing the need for adaptive matching and overvoltage protection circuits. Furthermore, the regulator circuit is capable of detecting power burst availability on the device and generating a control signal, accordingly. For 5.25 -mW acoustic power at the device's surface, the rectified voltage, and the total current load of the system are regulated to 2.79 V and 600A , respectively. The maximum chip and device efficiencies of 92.5% and 31.8% are measured, respectively. The total die area in 180- nm CMOS technology nose and the estimated system volume are 0.16/2 and 0.572/3 , respectively.

Details

ISSN :
25739603
Volume :
6
Database :
OpenAIRE
Journal :
IEEE Solid-State Circuits Letters
Accession number :
edsair.doi.dedup.....cca28523fa2dc9f170c504f4cc145205