Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2....

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Chapter 10 Diodes

Transcript of Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2....

Page 1: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Chapter 10 Diodes

Page 2: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Chapter 10 Diodes

1. Understand diode operation and select diodes for various applications.

2. Analyze nonlinear circuits using the graphical load-line technique.

Page 3: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

3. Analyze and design simple voltage-regulator circuits.

4. Solve circuits using the ideal-diode model andpiecewise-linear models.

5. Understand various rectifier and wave-shaping circuits.

6. Understand small-signal equivalent circuits.

Page 4: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 5: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 6: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Shockley Equation

1exp

T

DsD nV

vIi

q

kTVT

k = 1.38 × 10–23 J/K is Boltzmann’s constant and q = 1.60 × 10–19 C is the magnitude of the electrical charge of an electron, n is the emission coefficient (between 1 and 2). Is is the saturation current. At a temperature of 300 K, we have mV 26TV

Page 7: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Zener Diodes

Diodes that are intended to operate in the breakdown region are called Zener diodes.

Page 8: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 9: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

LOAD-LINE ANALYSIS OF DIODE CIRCUITS

DDSS vRiV

Page 10: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 11: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 12: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 13: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 14: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

ZENER-DIODE VOLTAGE-REGULATOR

CIRCUITSA voltage regulator circuit provides a nearly constant voltage to a load from a variable source.

0 DDSS vRiV

Page 15: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 16: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 17: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Load-Line Analysis of Complex Circuits

Page 18: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 19: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 20: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 21: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 22: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

IDEAL-DIODE MODEL

The ideal diode acts as a shortcircuit for forward currentsand as an open circuit withreverse voltage applied.

Page 23: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Assumed States for Analysis of Ideal-Diode

Circuits1. Assume a state for each diode, either on (i.e., a short circuit) or off (i.e., an open circuit). For n diodes there are 2n possible combinations of diode states.

2. Analyze the circuit to determine the current through the diodes assumed to be on and the voltage across the diodes assumed to be off.

Page 24: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

3. Check to see if the result is consistent with the assumed state for each diode. Current must flow in the forward direction for diodes assumed to be on. Furthermore, the voltage across the diodes assumed to be off must be positive at the cathode (i.e., reverse bias).

4. If the results are consistent with the assumed states, the analysis is finished. Otherwise, return to step 1 and choose a different combination of diode states.

Page 25: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 26: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 27: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 28: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

PIECEWISE-LINEAR DIODE MODELS

aa ViRv

Page 29: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 30: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 31: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 32: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 33: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 34: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 35: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 36: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 37: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

r

L

V

TIC

2r

mL

VVV

Page 38: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 39: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 40: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Peak Inverse VoltageAn important aspect of rectifier circuits is the peak inverse voltage (PIV) across the diodes.

r

L

V

TIC

2

The capacitance required for a full-wave rectifier is given by:

Page 41: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 42: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 43: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 44: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 45: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 46: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 47: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 48: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 49: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 50: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

LINEAR SMALL-SIGNAL EQUIVALENT CIRCUITS

The small-signal equivalentcircuit for a diode is a resistance.

D

QD

DD v

dv

dii

1

QD

Dd dv

dir

d

dd r

vi

Page 51: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 52: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 53: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Notation for Currents and Voltages in Electronic

Circuits vD and iD represent the total instantaneous diode voltage and current. At times, we may wish to emphasize the time-varying nature of these quantities, and then we use vD(t) and iD(t)

VDQ and IDQ represent the dc diode current and voltage at the quiescent point.

Page 54: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

vd and id represent the (small) ac signals. If we wish to emphasize their time varying nature, we use vd(t) and id(t).

Page 55: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 56: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 57: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 58: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.
Page 59: Chapter 10 Diodes. 1. Understand diode operation and select diodes for various applications. 2. Analyze nonlinear circuits using the graphical load-line.

Problem Set

• 6, 8, 15, 19, 29, 32, 34, 41, 51, 61, 62, 70, 73