Transient Response of Passive Circuits Assignment Help
Transient response is the manner a circuit responds to the energies stored in inductors and capacitors. Circuit theory is an important component of electrical engineering. BookMyEssay is a leading service provider of online Transient Response of Passive Circuits assignment help. All the engineering students can get excellent solutions related to this topic with the help of our highly competent electrical engineering experts. We offer the best services timely and at low cost. Our assignment services are fast and convenient that proves helpful for all engineering students. We make sure that the students score top grades.
What is Transient Response of Passive Circuits?
The Transient Response or Natural Response is the manner a circuit responds to energies that are stored in elements such as inductors and capacitors. If any energy is stored in a capacitor then the energy can be absorbed or dissipated by resistors. The way that energy is absorbed is known as Transient Response.
When an input is applied to an electric circuit, the output takes a certain amount of time to reach a steady state. Therefore, the output shall be in a transient stage until it reaches a steady state. So, an electric circuit’s response is called a transient stage. The transient response shall be zero for bigger values of time response or ‘t’.
Presence and Absence of Transients
Transients occur in responses because of sudden changes in a source because of switching action or when applied to an electric circuit. There are two switching actions. These are a closing switch and opening switch.
- Transient shall not be present in an electrical circuit or network response if it has only resistances. A resistor has the capability to adjust the amount of current and voltage.
- The transient part happens in the response of network or an electrical circuit because of the presence of elements such as capacitor and inductor. They cannot alter the energy that is stored in these elements immediately. You can find these discussed elaborately in our Transient Response of Passive Circuits assessment help.
Capacitor Transient Response
As capacitors store energy in an electric field form, they act like secondary-cell batteries. They can store as well as release electrical energy. A completely discharged capacitor has zero volts in its terminals and charged capacitors maintain steady voltage in its terminals, like a battery.
When capacitors are there in a circuit with other voltage sources, they absorb energy from the sources similarly a secondary-cell battery becoming charged when connected to the generator. A completely charged capacitor that have a a zero terminal voltage act initially as a short-circuit and draws maximum current for charging.
With time, the terminal voltage of the capacitor rises for meeting the applied voltage and the current in the capacitor reduces correspondingly. Once the capacitor reaches the full voltage stage, it shall stop drawing current and behave as an open-circuit.
When a switch is closed, the voltage in the capacitor is zero, thus, it initially behaves as if it is a short-circuit. Afterward, the voltage in the capacitor rises to an equal battery voltage that ends in a condition, where a capacitor acts as an open-circuit.
RC Circuit
RC Circuit or Resistor Capacitor Circuit consists of a Resistor and a Capacitor connected either in parallel or series to a current source or voltage. These circuits are also known as RC networks or RC filters as they are commonly used in a filtering application.
RC circuit may be used to prepare crude filters such as high-pass, low-pass, and Band-Pass filters. A first order RC circuit consists of a single Capacitor and Resistor.
RL Circuit
RL Circuit or Resistor Inductor Circuit comprises of a Resistor and an Inductor connected either in parallel or in series. A Series RL circuit is driven by a voltage source and a parallel RC circuit is driven by a current source. RL circuit is used commonly in passive filters.
The Capacitors, Resistors, and Inductors are simple and normal components, however, when they combine they form circuits such as RC/RL and they show complex behavior that makes them suitable for many applications. According to our Transient Response of Passive Circuits coursework experts, they can be used in signal processing, communication systems, RF amplifiers, radio wave transmitters, Filtering circuits, Oscillator circuits, and many more.
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