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Published byMarvin Miles Modified over 9 years ago
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Lesson 11 AC Circuits AC Ciruits Power Maximum and Instantaneous voltage drops and current Phasor Diagrams Phase angle RLC Circuits Resonance frequency High and Low pass filters Step up and Step down Transformers
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AC Generator
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AC emf source
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rms current Effective(Integrated) values of I and V it I max sin t 2 f 2 T ; T is the period of oscillation Instantaneous power it vt Heat dissipated= Power used in load it 2 R I m 2 R sin 2 t Average power over one cycle P ave 1 T I m 2 R sin 2 t 0 T dt I m 2 R 1 T sin 2 t 0 T dt I m 2 R 2 Define P ave I rms 2 R I I m 2
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Alternating Alternating Current Circuits
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t) V eff and v(t) I eff and i(t) ac-R circuit
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Phasor diagram for R i R (t) tt I Rm sin( t)= Phasor Diagram Current through Load Resistance
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Phasor diagram for R cont. v R (t) tt V Rm sin( t)= Phasor Diagram PD across Load Resistance
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Instantaneous current and voltage
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ac-C circuit t) v C (t) i C (t) v C (t) tt i C (t) Current in Circuit and PD across Capacitor
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ac-L circuit v L (t) tt i L (t) t) v L (t) i L (t) Current in Circuit and PD across Inductor
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The phase angle between the current and the voltage: In the resistor is 0 rad In the capacitor is - rad ( Current Ahead) In the inductor is + rad (Current Behind) Summary
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Series RLC circuit Series RLC circuit series ac-RLC circuit
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Instantaneous current Current through all elements is the same Thus the instantaneous PD’s must be out of phase
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Picture Total Potential Drop across R, L & C.
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Phasor Diagram for RLC circuit I v L (t) v R (t) v C (t)
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Instantaneous PD
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Phasor Diagram for RLC circuit II v L (t) v R (t) v C (t) v RLC (t)
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Instantaneous PD as projection onto y-axis v RLC (t) v(t 1 ) v(t 2 )
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Phase Angle Phase Angle v RLC (t) tan V Lm V Cm V Rm I m X L I m X C I m R X L X C R tan 1 X L X C R
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series ac-RLC graph
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Impedance The magnitude of the Total Potential Phasor is V m V R 2 V Lm V Cm 2 I m 2 R 2 I m X L I m X C 2 I m R 2 X L X C 2 I m Z Impedance: Z R 2 X L X C 2
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Table of definitions
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Impedance and reactance
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Generalized Ohm's Law. ImpedanceZ R 2 X L X C 2
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Phase Angle between total PD across circuit and the current
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Power Factor Power is only used in AC circuit in load resistance Pt it 2 R (energy is not used in inductor or capacitor) I m 2 sin 2 t - R (current is always in phase with PD across total resistance) P ave =I rms 2 R I m 2 2 R Z I R I R Z I cos Power Factor
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Angular frequency dependence Power and current depend on angular frequency of circuit
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Max I ; Min Z I m V m Z m Z Z R 2 X L X C 2 R 2 L 1 C 2 R 2 2 LC 1 C 2 Z is a minimum when 2 LC 1 0 which occurs when 0 1 LC X L X C
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P ave 1 2 I m 2 R 1 2 V m 2 R Z 2 1 2 V m 2 R R 2 L 1 C 2 1 2 V m 2 R R 2 L 2 2 2 0 2 2 1 2 V m 2 R 2 R 2 2 L 2 2 0 2 2 Power as a function of
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Resonance Circuit uses most power / current when it is in RESONANCE with applied frequency
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I max and P ave versus ImIm P ave
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Width of Power curve is a measure of the QUALITY of the circuit Small width - High Quality Sharpness of response to external frequency Quality of circuit
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RC Filters I RC Filters V out V in Low Pass Filter
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RC Filters V out V in RC Filters II High Pass Filter
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Transformers I Step up and Step down Transformers
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Transformers II V 1 N 1 d B dt V 2 N 2 d B Fluxes are the same V 2 N 2 N 1 V 1
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