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High Efficiency Power Management Unit for Implantable Optical-Electrical Stimulators

Authors :
Noora Almarri
Dai Jiang
Peter J. Langlois
Mohamad Rahal
Andreas Demosthenous
Source :
IEEE Open Journal of Circuits and Systems, Vol 4, Pp 3-14 (2023)
Publication Year :
2023
Publisher :
IEEE, 2023.

Abstract

Battery-less active implantable devices are of interest because they offer longer life span and eliminate costly battery replacement surgical interventions. This is possible as a result of advances in inductive power transfer and development of power management circuits to maximize the overall power transfer and provide various voltage levels for multi-functional implantable devices. Rehabilitation therapy using optical stimulation of genetically modified peripheral neurons requires high current loads. Standard rectification topologies are inefficient and have associated voltage drops unsuited for miniaturized implants. This paper presents an integrated power management unit (PMU) for an optical-electrical stimulator to be used in the treatment of motor neurone disease. It includes a power-efficient regulating rectifier with a novel body biased high-speed comparator providing 3.3 V for the operation of the stimulator, a 3-stage latch-up charge pump with 12 V output for the input stage of the optical-electrical stimulator, and 1.8 V for digital control logic. The chip was fabricated in a $0.18 ~\mu \text{m}$ CMOS process. Measured results show that for a regulated output of 3.3 V delivering 30.3 mW power, the peak power conversion efficiency is 84.2% at 6.78 MHz inductive link tunable frequency reducing to 70.3% at 13.56 MHz. The charge pump with on chip capacitors has 90.9% measured voltage conversion efficiency.

Details

Language :
English
ISSN :
26441225
Volume :
4
Database :
Directory of Open Access Journals
Journal :
IEEE Open Journal of Circuits and Systems
Publication Type :
Academic Journal
Accession number :
edsdoj.458e6bd9c604ed7b682adf2cfd6ee7c
Document Type :
article
Full Text :
https://doi.org/10.1109/OJCAS.2023.3240644