Entrar

Street lamps equipped with RLC surge protectors are an excellent example of applying circuit analysis in practical scenarios. These surge protectors safeguard the lamp's components against sudden voltage spikes.

A simplified parallel RLC circuit model with a DC input source generating a step response is employed in this context. When the switch is turned on, Kirchhoff's current law is applied, leading to a second-order differential equation.

Equation1

Interestingly, this equation's solution comprises both transient and steady-state responses. The transient response gradually diminishes over time, exhibiting similarities to the source-free series RLC circuit solutions under different damping conditions. If the damping factor surpasses the resonant frequency, the response becomes overdamped.

Equation2

When these two factors match, the response is critically damped.

Equation3

The response turns underdamped if the damping factor is less than the resonant frequency.

Equation4

The steady-state response corresponds to the final inductor current, aligning with the source current. Determining the constants involved relies on the initial conditions of the circuit.

Notably, only the transient response remains when the input source current is eliminated. Parallel RLC circuits find extensive applications, particularly in communications networks and filter designs. Understanding their behavior under different damping scenarios contributes to adequate surge protection and circuit design in practical settings.

Tags

Parallel RLC CircuitsSurge ProtectorsCircuit AnalysisVoltage SpikesDC Input SourceStep ResponseKirchhoff s Current LawDifferential EquationTransient ResponseSteady state ResponseDamping FactorResonant FrequencyCritically DampedUnderdampedCommunications NetworksFilter Designs

Do Capítulo 5:

article

Now Playing

5.11 : Parallel RLC Circuits

First and Second-Order Circuits

668 Visualizações

article

5.1 : First-Order Circuits

First and Second-Order Circuits

1.1K Visualizações

article

5.2 : RC Circuit without Source

First and Second-Order Circuits

807 Visualizações

article

5.3 : RC Circuit with Source

First and Second-Order Circuits

750 Visualizações

article

5.4 : RL Circuit without Source

First and Second-Order Circuits

737 Visualizações

article

5.5 : RL Circuit with Source

First and Second-Order Circuits

598 Visualizações

article

5.6 : Design Example: Frog Muscle Response

First and Second-Order Circuits

173 Visualizações

article

5.7 : Second-Order Circuits

First and Second-Order Circuits

1.1K Visualizações

article

5.8 : Series RLC Circuit without Source

First and Second-Order Circuits

890 Visualizações

article

5.9 : Types of Responses of Series RLC Circuits

First and Second-Order Circuits

679 Visualizações

article

5.10 : Series RLC Circuit with Source

First and Second-Order Circuits

255 Visualizações

article

5.12 : Second-order Op Amp Circuits

First and Second-Order Circuits

203 Visualizações

article

5.13 : Design Example: Underdamped Parallel RLC Circuit

First and Second-Order Circuits

197 Visualizações

JoVE Logo

Privacidade

Termos de uso

Políticas

Pesquisa

Educação

SOBRE A JoVE

Copyright © 2025 MyJoVE Corporation. Todos os direitos reservados