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This document presents cutting-edge methodologies applicable to data management in circuit analysis, detailing systematic approaches like GMBUl, fµBil, and TItaMg configurations. Each section outlines the intricacies of various utilities (U(V), I(A)) used to optimize circuit performance and enhance understanding of electrical parameters. The structured format enables easy navigation through specific configurations, fostering comparable insights across diverse implementations. Essential for engineers and researchers, this comprehensive guide serves as a valuable resource for improving circuit analysis efficiency.
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BTB c,ab;GUmcMeBaHCnita BiesaFn_ U(V) CnitacMh 3.04 0 I(A) GMBUl1 0.18 2.82 GMBUl2 2.71 0.35 GMBUl3 2.62 0.50 GMBUl4 2.53 0.64 SOPHAL
BiesaFn_ U(V) I(A) CnitacMh 3.04 0 GMBUl1 0.18 2.82 GMBUl2 2.71 0.35 GMBUl3 2.62 0.50 GMBUl4 2.53 0.64 sg;RkabtagTMnak;TMngrvagUnigI SOPHAL BTB U(V) I(A)
BiesaFn_ U(V) I(mA) esoKVIcMhr 0 0 c,ab;GUmcMeBaHersIusþr BTB SOPHAL fµBil1kUn 1.45 12.2 fµBil2kUn 2.96 24.9 fµBil3kUn 4.39 37.0 fµBil4kUn 5.88 49.7
BiesaFn_ U(V) I(mA) esoKVIcMhr 0 0 sg;RkabtagGnuKn_rvagU nigI BTB U(V) SOPHAL fµBil1kUn 1.45 12.2 fµBil2kUn 2.96 24.9 fµBil3kUn 4.39 37.0 fµBil4kUn 5.88 49.7 I(mA)
c,ab;GUmcMeBaHeRKOgTTYl TItaMg1 TItaMg2 TItaMg3 TItaMg4 TItaMg5 TItaMg6 6 5 4 3 2 1 BTB taraglT§plBiesaFn_ Sophal E’ BiesaFn_ U(V) 3.64 4.02 4.22 4.52 5.15 4.88 I(A) 0 0.06 0.12 0.18 0.21 0.09 0.15
sg;RkabtagTMnak;TMngrvag U nig I TItaMg1 TItaMg2 TItaMg3 TItaMg4 TItaMg5 TItaMg6 BiesaFn_ E’ U(V) 3 4.02 5.15 3.64 4.22 4.52 4.88 BTB I(A) 0.21 0 0.06 0.12 0.15 0.18 0.09 U(V) SOPHAL I(A)