Transcription of Second-Order Circuits [相容模式]
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2012/10/241 Second-Order Circuits Introduction Finding Initial and Final Values The Source-Free SeriesRLCC ircuit The Source-Free ParallelRLCC ircuit Step Response of a SeriesRLCC ircuit Step Response of a ParallelRLCC ircuit General Second-Order Circuits Duality ApplicationsIntroduction A Second-Order circuit is characterized by asecond- order differential equation. It consists of resistors and the equivalent oftwo energy storage Initial and Final Values v(0),i(0),dv(0)/dt,di(0)/dt,v( ), andi( ) Two key points: vandiare defined according to thepassive signconvention. Continuity properties: Capacitor voltage:(VS-like) Inductor current:(IS-like))0()0()0()0( LLCC iivvvi+_Example).
2012/10/24 1 Second-Order Circuits •Introduction •Finding Initial and Final Values •The Source-Free Series RLC Circuit •The Source-Free Parallel RLC Circuit •Step Response of a Series RLC Circuit
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Application of Second Order Differential Equations, Of second order, Differential, Applications, Applications of Second-Order Differential Equations, Applications of Second-Order Differential Equations Second, Order, ELEMENTARY DIFFERENTIAL EQUATIONS, DIFFERENTIAL EQUATIONS, Second, Order linear differential, 4 DACs FOR DSP APPLICATIONS, Analog, DACS FOR DSP APPLICATIONS, Bit, Bipolar, Simultaneous Sampling ADC Data, Analog Devices, 903A Comparison of Differential Termination, Differential Equations I