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Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications of diodes.

Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

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Page 1: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Diodes

1. Basic diode concept.

2. Load-line analysis of diode circuit.

3. Zener-diode voltage regulator circuit.

4. Ideal-diode model.

5. Applications of diodes.

Page 2: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

BASIC DIODE CONCEPTS

Page 3: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 4: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 5: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 6: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

A pn junction

Page 7: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Drift and diffusion currents in a pn junction

Page 8: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 9: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.7

Forward- and reverse-biased pn junctions

Page 10: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.8, 9.9

Semiconductor diode i-v characteristic

Semiconductor diode circuit symbol

Page 11: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.10

The i-v characteristic of the semiconductor diode

Page 12: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 13: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

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. At atemperature of 300 K, we have mV 26TV

Page 14: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Exercise 10.1

At a temperature of 300K, a certain junction

diode has iD = 0.1mA for vD = 0.6V. Assume

that n is unity and use VT = 0.026V. find the

value of the saturation current Is.

1exp

T

DsD nV

vIi

A

nVv

iIs

TD

D

15

4

10502.9

1)026.0/6.0exp(10

1)/exp(

Page 15: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

LOAD-LINE ANASYSIS OF DIODE CIRCUITS

Page 16: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 17: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

LOAD-LINE ANALYSIS OF DIODE CIRCUITS

DDSS vRiV By applying KVL, we get

But two unknowns, we need one more equation relating iD and vD to solve the problem.

Page 18: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 19: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Example 10.1If the circuit of Figure 10.5 has Vss = 2V,

R = 1k, and a diode with the characteristic shown in Figure 10.7, find the diode voltage and current at the operating point.

Example 10.2Repeat Example 10.1 if Vss = 10V, R = 10k

Page 20: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Vss=10, R=10k

Vss = 2, R = 1k

Vss = i R + VD

Page 21: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

ZENER-DIODE VOLTAGE-REGULATOR CIRCUITS

Page 22: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

What is a Zener diode?

Page 23: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Zener Diodes

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

Page 24: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Breakdown

region

Page 25: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

ZENER-DIODE VOLTAGE-REGULATOR

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

0 DDSS vRiV

Page 26: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Example 10.3

The voltage-regulator circuit of Figure 10.9

has R = 1k and use a Zener diode having the

characteristic shown in Figure 10.10. Find the

output voltage for Vss = 15V. Repeat for Vss =

20V.

Page 27: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

R = 1k

Vss + i R +VD = 0i = 0, VD = -Vss

VD = 0, i = Vss/R

Page 28: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

IDEAL-DIODE MODEL

Page 29: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

IDEAL-DIODE MODEL

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

Page 30: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 31: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.11

Large-signal on/off diode model

Page 32: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.12, 9.13, 9.14

Circuit containing ideal diode Circuit of Figure 9.12, assuming that the ideal diode conducts

Figure 9.13

Circuit of Figure 9.12, assuming that the ideal diode does not conduct

Figure 9.14

Page 33: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.15, 9.16, 9.17

Figure 9.17

Figure 9.16

Page 34: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Summary of Guidelines to analysis ideal-diode

circuits

Page 35: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

APPLICATION OF DIODES

Page 36: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.45

DC power supply

Page 37: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

RECTIFIER CIRCUITS

Page 38: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Half-Wave Rectifier Circuits

Page 39: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 40: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.20, 9.21

Ideal diode rectifier input and output voltages

Page 41: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

As Vs reaches VB, then diode starts to conduct

Page 42: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 43: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 44: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

r

L

V

TIC

2r

mL

VVV

Vr/ 2

Page 45: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Full-Wave Rectifier Circuits

Page 46: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 47: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications
Page 48: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Full-wave rectifier

Page 49: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.42

Operation of bridge rectifier

Page 50: Diodes 1. Basic diode concept. 2. Load-line analysis of diode circuit. 3. Zener-diode voltage regulator circuit. 4. Ideal-diode model. 5. Applications

Figure 9.49

(a) A Zener diode voltage regulator;

(b) (b) simplified circuit for Zener regulator