Seem to have lost work on component failure modes
-- the derivation of -- bolocks.
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@ -2,6 +2,6 @@ Write up detailed failure modes essay for R and OPAMP with ref to EN298, FMD-91,
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Get thesis template, have emailed Aidian on this.
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Get thesis template, have emailed Aidian on this.
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Start writing up approvals backgrouns to static FMEA.
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Start writing up approvals backgrounds to static FMEA.
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@ -74,7 +74,7 @@ Let us first define a component.
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%This is anything with which we use to build a product or system.
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%This is anything with which we use to build a product or system.
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This is anything we use to build a product or system.
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This is anything we use to build a product or system.
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It could be something quite complicated
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It could be something quite complicated
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like an integrated microcontroller, or quite simple like the humble resistor.
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like an integrated micro controller, or quite simple like the humble resistor.
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We can define a
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We can define a
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component by its name, a manufacturers' part number and perhaps
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component by its name, a manufacturers' part number and perhaps
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@ -160,7 +160,7 @@ Parameter change not considered for EN298 because the resistors are down-rated f
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maximum possible voltage exposure -- find refs.
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maximum possible voltage exposure -- find refs.
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FMD-91 gives the following percentatges for failure rates in
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FMD-91 gives the following percentages for failure rates in
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\label{downrate}
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\label{downrate}
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The parameter change, is usually a failure mode associated with over stressing the component.
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The parameter change, is usually a failure mode associated with over stressing the component.
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In a system designed to typical safety critical constraints (as in EN298)
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In a system designed to typical safety critical constraints (as in EN298)
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@ -171,7 +171,7 @@ these environmentally induced failure modes need not be considered.
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Literature suggests, latch up, latch down and oscillation.
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Literature suggests, latch up, latch down and oscillation.
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FMD-91 states, V+ disconnected, V- V+ shorted, NOOP and Low slew.
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FMD-91 states, V+ disconnected, V- V+ shorted, NOOP and Low slew.
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EN298 does not specifgically include OP_AMPS and these would fall under
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EN298 does not specifically define OP\_AMPS failure modes; these would fall under the procedure outlined in
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table \cite{en298}[A.1 note e].
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table \cite{en298}[A.1 note e].
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This demands that all open connections, and shorts between adjacent pins be considered.
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This demands that all open connections, and shorts between adjacent pins be considered.
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We can examine these failure modes by taking our 358 op-amp and examining
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We can examine these failure modes by taking our 358 op-amp and examining
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@ -935,7 +935,7 @@ are added to UML diagram in figure \ref{fig:cfg} and represented in figure \ref
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\begin{figure}[h]
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\begin{figure}[h]
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\centering
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\centering
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\includegraphics[width=400pt,keepaspectratio=true]{../master_uml.jpg}
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\includegraphics[width=400pt,keepaspectratio=true]{master_uml.jpg}
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% cfg2.jpg: 702x464 pixel, 72dpi, 24.76x16.37 cm, bb=0 0 702 464
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% cfg2.jpg: 702x464 pixel, 72dpi, 24.76x16.37 cm, bb=0 0 702 464
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\caption{Complete UML diagram}
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\caption{Complete UML diagram}
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\label{fig:cfg2}
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\label{fig:cfg2}
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@ -943,6 +943,7 @@ are added to UML diagram in figure \ref{fig:cfg} and represented in figure \ref
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\subsection{Ontological work on FMEA}
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\subsection{Ontological work on FMEA}
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Ontological work on FMEA reviewed so far, has concentrated on
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Ontological work on FMEA reviewed so far, has concentrated on
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