Single Event Radiation Hardening of Sub-Sampling Phase-Locked Loops

dc.contributor.committeeChairLloyd W. Massengill
dc.contributor.committeeMemberJeffrey S. Kauppila
dc.creatorRichards, Ellis William
dc.date.accessioned2020-08-24T11:53:49Z
dc.date.available2020-11-14
dc.date.issued2019-11-14
dc.description.abstractThe phase-locked loop (PLL) is a fundamental building block of modern microelectronics. Due to its utility and adaptability this circuit serves countless functions throughout a wide range of systems. This work presents radiation-hardened by design techniques applied to a 15 GHz quadrature sub-sampling phase-locked loop at a sub-50nm partially depleted silicon-on-insulator technology node. Radiation hardening techniques are integrated in a sub-sampling architecture for robust noise and radiation performance. Experimentally validated bias dependent single event models are used to characterize the radiation response and the applicability of existing radiation-hardened by design techniques to sub-sampling phase-locked loops is examined. A significant vulnerability introduced in dual-loop PLL architectures such as sub-sampling is identified and mitigated with a proposed technique. Favorable noise and loop perturbation suppression characteristics of the sub-sampling architecture are leveraged to develop a high-performance radiation-hardened by design phase-locked loop maintaining performance specifications comparable to unhardened designs.
dc.format.mimetypeapplication/pdf
dc.identifier.urihttps://etd.library.vanderbilt.edu/etd-11142019-122836
dc.identifier.urihttp://hdl.handle.net/1803/15535
dc.subjectphase-locked loop
dc.subjectRHBD
dc.subjectsub-sampling
dc.subjectPLL
dc.subjectSET
dc.subjectsingle event transient
dc.titleSingle Event Radiation Hardening of Sub-Sampling Phase-Locked Loops
dc.typethesis
dc.type.materialtext
local.embargo.lift2020-11-14
local.embargo.terms2020-11-14
thesis.degree.disciplineElectrical Engineering
thesis.degree.grantorVanderbilt University
thesis.degree.levelthesis
thesis.degree.nameME

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