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Ultra-Low Power Circuit Design for Miniaturized IoT Platform

dc.contributor.authorLim, Wootaek
dc.date.accessioned2018-10-25T17:38:33Z
dc.date.availableNO_RESTRICTION
dc.date.available2018-10-25T17:38:33Z
dc.date.issued2018
dc.date.submitted2018
dc.identifier.urihttps://hdl.handle.net/2027.42/145862
dc.description.abstractThis thesis examines the ultra-low power circuit techniques for mm-scale Internet of Things (IoT) platforms. The IoT devices are known for their small form factors and limited battery capacity and lifespan. So, ultra-low power consumption of always-on blocks is required for the IoT devices that adopt aggressive duty-cycling for high power efficiency and long lifespan. Several problems need to be addressed regarding IoT device designs, such as ultra-low power circuit design techniques for sleep mode and energy-efficient and fast data rate transmission for active mode communication. Therefore, this thesis highlights the ultra-low power always-on systems, focusing on energy efficient optical transmission in order to miniaturize the IoT systems. First, this thesis presents a battery-less sub-nW micro-controller for an always-operating system implemented with a newly proposed logic family. Second, it proposes an always-operating sub-nW light-to-digital converter to measure instant light intensity and cumulative light exposure, which employs the characteristics of this proposed logic family. Third, it presents an ultra-low standby power optical wake-up receiver with ambient light canceling using dual-mode operation. Finally, an energy-efficient low power optical transmitter for an implantable IoT device is suggested. Implications for future research are also provided.
dc.language.isoen_US
dc.subjectultra-low power circuit design
dc.titleUltra-Low Power Circuit Design for Miniaturized IoT Platform
dc.typeThesisen_US
dc.description.thesisdegreenamePhDen_US
dc.description.thesisdegreedisciplineElectrical Engineering
dc.description.thesisdegreegrantorUniversity of Michigan, Horace H. Rackham School of Graduate Studies
dc.contributor.committeememberBlaauw, David
dc.contributor.committeememberScruggs, Jeffrey T
dc.contributor.committeememberKim, Hun Seok
dc.contributor.committeememberSylvester, Dennis Michael
dc.subject.hlbsecondlevelElectrical Engineering
dc.subject.hlbtoplevelEngineering
dc.description.bitstreamurlhttps://deepblue.lib.umich.edu/bitstream/2027.42/145862/1/imhotep_1.pdf
dc.owningcollnameDissertations and Theses (Ph.D. and Master's)


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