Put today on abstract
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@ -41,6 +41,7 @@ Function $fm$ applied to a component returns its failure modes.
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The circuits specified are not typical safety critical circuitry which usually
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The circuits specified are not typical safety critical circuitry which usually
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has both redundancy and self~checking and/or diagnostic features build in.
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has both redundancy and self~checking and/or diagnostic features build in.
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These are examples of the FMMD methodology being applied to some standard electronic circuits.
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These are examples of the FMMD methodology being applied to some standard electronic circuits.
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\today
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\end{abstract}
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\end{abstract}
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\maketitle
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\maketitle
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\tableofcontents
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\tableofcontents
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@ -892,7 +893,7 @@ We can now form a {\fg} from the OPAMP and the $INVPD$
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\textbf{Failure Scenario} & & \textbf{Inverted Amp Effect} & & \textbf{Symptom} \\ \hline
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\textbf{Failure Scenario} & & \textbf{Inverted Amp Effect} & & \textbf{Symptom} \\ \hline
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\hline
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\hline
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FS1: INVPD LOW & & NEGATIVE - input & & $ HIGH $ \\
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FS1: INVPD LOW & & NEGATIVE - input & & $ HIGH $ \\
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FS2: INVPD HIGH & & Positive - input & & $ LOW $
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FS2: INVPD HIGH & & Positive - input & & $ LOW $ \\
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FS5: AMP L\_DN & & $ INVAMP_{low} $ & & $ LOW $ \\ \hline
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FS5: AMP L\_DN & & $ INVAMP_{low} $ & & $ LOW $ \\ \hline
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