Please use this identifier to cite or link to this item: https://doi.org/10.1109/NER.2011.5910598
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dc.titleA monolithic programmable nerve/muscle stimulator
dc.contributor.authorTan, J.Y.J.
dc.contributor.authorLiu, X.
dc.contributor.authorWee, K.H.
dc.contributor.authorYen, S.-C.
dc.contributor.authorXu, Y.P.
dc.contributor.authorTan, T.C.
dc.date.accessioned2014-06-19T02:54:23Z
dc.date.available2014-06-19T02:54:23Z
dc.date.issued2011
dc.identifier.citationTan, J.Y.J.,Liu, X.,Wee, K.H.,Yen, S.-C.,Xu, Y.P.,Tan, T.C. (2011). A monolithic programmable nerve/muscle stimulator. 2011 5th International IEEE/EMBS Conference on Neural Engineering, NER 2011 : 511-514. ScholarBank@NUS Repository. <a href="https://doi.org/10.1109/NER.2011.5910598" target="_blank">https://doi.org/10.1109/NER.2011.5910598</a>
dc.identifier.isbn9781424441402
dc.identifier.urihttp://scholarbank.nus.edu.sg/handle/10635/68888
dc.description.abstractThis paper presents a monolithic single-channel programmable nerve/muscle stimulator implemented in a 0.35m CMOS technology. It consists of a 10-bit current output digital-to-analog converter (DAC) to generate the required cathodic and anodic currents, and a simple digital circuit to control the operation of the stimulator and its programmable stimulation parameters. The proposed stimulator produces balanced biphasic current pulses, with programmable amplitude, frequency and pulse width. The experimental results show that the stimulator can provide cathodic current with amplitudes ranging from 10A to 10mA, and adjustable pulse widths from 8s to 120s at a clock of 125kHz. The amplitude of the anodic current s designed to be half of the cathodic current to facilitate charge balance. The measured charge mismatch is less than 63nC. © 2011 IEEE.
dc.description.urihttp://libproxy1.nus.edu.sg/login?url=http://dx.doi.org/10.1109/NER.2011.5910598
dc.sourceScopus
dc.typeConference Paper
dc.contributor.departmentELECTRICAL & COMPUTER ENGINEERING
dc.description.doi10.1109/NER.2011.5910598
dc.description.sourcetitle2011 5th International IEEE/EMBS Conference on Neural Engineering, NER 2011
dc.description.page511-514
dc.identifier.isiutNOT_IN_WOS
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