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Inductor Arising from Faraday's law, the inductance L may be defined in terms of the emf generated to oppose a given change in current: Faraday's lawemf.

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Presentation on theme: "Inductor Arising from Faraday's law, the inductance L may be defined in terms of the emf generated to oppose a given change in current: Faraday's lawemf."— Presentation transcript:

1 Inductor Arising from Faraday's law, the inductance L may be defined in terms of the emf generated to oppose a given change in current: Faraday's lawemf

2 Resistor A.C. Response

3 Capacitor A.C. Response

4 Inductor A.C. Response

5 ELI the ICE man

6 Impedance While Ohm's Law applies directly to resistors in DC or in AC circuits, the form of the current-voltage relationship in AC circuits in general is modified to the form:Ohm's LawDC AC circuits where I and V are the rms or "effective" values. The quantity Z is called impedance. For a pure resistor, Z = R. Because the phase affects the impedance and because the contributions of capacitors and inductors differ in phase from resistive components by 90 degrees, a process like vector addition (phasors) is used to develop expressions for impedance.rmsphasecapacitorsinductorsphasors

7 Impedance, Z RC circuit LC circuit

8 Series LCR Circuit The resonance of a series RLC circuit occurs when the inductive and capacitive reactances are equal in magnitude but cancel each other because they are 180 degrees apart in phase. The sharp minimum in impedance which occurs is useful in tuning applications.resonanceRLC circuitinductive capacitivephase

9 Tuning in LC circuits have a resonance property like mechanical systems such as a pendulum or a mass on a spring: there is a special frequency that it likes to oscillate at, and therefore responds strongly to. They can be used to tune in to a specific frequency, for example in the station selector of a radio or television. In an LC circuit, electric charge oscillates back and forth just like the position of a mass on a spring oscillates.

10 mechanical springLC circuit position: x charge: Q velocity: current: kinetic energy: inductor's energy: potential energy: capacitor's energy: frequency:

11 Audio Crossover network

12 Speaker systems

13 Impedance Matching As a general rule, the maximum power transfer from an active device like an amplifier to an external device like a speaker occurs when the impedance of the external device matches that of the source. That optimum power is 50% of the total power when the impedance of the amplifier is matched to that of the speaker. Improper impedance matching can lead to excessive power use, distortion, and noise problems.powerimpedance


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