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SEMICONDUCTORS DIODES A device having a PN junction mounted in a container, suitable for conducting and dissipating the heat generated in operation, and having connecting leads: anode & cathode Construction N P Symbol Anode Cathode
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Page 1: Diode

SEMICONDUCTORS DIODESA device having a PN junction mounted in a

container, suitable for conducting and dissipating the heat generated in operation, and having

connecting leads: anode & cathode

Construction

NP

Symbol

Anode Cathode

Page 2: Diode

Diodes

• Diodes are suitable crystal (usually silicon) which have a ‘junction” of p- and n-type material.

• When forward biased, a diode acts as a conductor and current flows.

• When reverse biased, a diode acts as an insulator and no current flows.

Page 3: Diode

Rectifiers • Early methods of changing a.c to d.c used

thermionic tubes or metal form devices.

• Silicon diodes are now widely used to rectify a.c to d.c.

Page 4: Diode

Zener diodes • A Zener diode is a pn silicon junction diode that is

reverse biased and with the supply voltage sufficient to produce the ‘avalanche’ or ‘breakdown’ effect.

• A zener diode must be used in conjunction with a ‘current-limiting’ resistor to keep the current flow through the diode to a safe level.

• A zener diode is used to produce a stable voltage from a supply which is fluctuating.

Page 5: Diode

Zener diodes

• A zener diode will have a negative temperature coefficient.

• Zener diodes are produced with varying degrees of ‘doping’ to obtain a range of working voltages.

• Zener diodes may be connected in series to obtain a desired value of voltage.

• Sketches curves of voltage and current for a zener diode.

Page 6: Diode

Zener diodes

Curves for Current and Voltage in Zener Diode

ZenerCommon

Circuit Diagram using Zener Diode

Page 7: Diode

Light-emitting diodes (LEDs)

• Crystals manufactured from gallium phosphide and gallium arsenide have light-emitting properties when a small electric current is passed through them.

• LED’s are essentially pn diodes operated in forward bias.

• The colour emitted from such a diode depends upon the materials used in its manufacture, and that the usual colours are yellow, green and red.

Page 8: Diode

Light-emitting diodes (LEDs)

• The maximum permitted reverse bias voltages across a LED are low, so a silicon diode is usually connected in parallel with the LED to protect it from excessive reverse bias voltages.

• A resistor is always used in series with a LED as a ‘current limiter’.

• LED’s are used for numeric displays and as indicators in electrical supply systems

Page 9: Diode

Physical structures

Page 10: Diode

Terminal identifications

Page 11: Diode

IDEAL DIOED

When the diode is ON, it acts like

a short circuit and current flow

When the diode is OFF, current is zero, so it acts like an open circuit

Page 12: Diode

V/I CHARACTERISTICS

Page 13: Diode

When diode is FB and applied voltage increase from zero, hardly any current flos through the device in beginning. As soon as VB is reach, current through the diode increase with increase of battery voltage.

When the diode is RB, majority carriers are blocked and a small current flow through diode. As the reverse voltage is increase from zero, the reverse current quickly reach saturation value, Io or leakage current. When reverse voltage exceeds a certain value called zener voltage Vz, leakage current increase sharply and the curve indicating zero resistance at this point.

Page 14: Diode

FORWARD BIASEDWhen voltage is applied across a diode in such a way that the diode allows current,

the diode is said to be forward-biased

D

RV

D

RV

Short circuit

I

Page 15: Diode

When voltage is applied across a diode in such a way that the diode prohibits

current, the diode is said to be reverse-biased

REVERSE BIASED

D

RV

D

RV

Open circuit

I = 0

Page 16: Diode

METER CHECK OF A DIODEMultimeter without “Diode Check”

Page 17: Diode

Forward biased

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Page 19: Diode

Reverse biased

Page 20: Diode

Measure a diode's forward voltage (0.7 V for Si and 0.3 V for Ge)

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Multimeter with “Diode Check”

Page 22: Diode

DIODE RATINGSMaximum DC reverse voltage Maximum forward voltageMaximum (average) forward currentMaximum total dissipationMaximum reverse currentStorage temperature rangeReverse recovery timeOperating junction temperature

Page 23: Diode

APPLICATIONSThe most popular application of the diode: rectification Rectification is the conversion of alternating current (AC) to direct current (DC) Rectification is the conversion of alternating current (AC) to direct current (DC)

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Page 25: Diode

Positive half cycle

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Negative half cycle

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Page 28: Diode

Positive half cycle

Page 29: Diode

Negative half cycle

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Page 32: Diode

Full-wave rectification of three-phase AC

Page 33: Diode

ZENER DIODE

Symbol

Diode that permits current to flow in the forward direction like a normal diode, but also in the reverse direction if the voltage is larger than the rated breakdown voltage known as

"Zener knee voltage" or "Zener voltage"

Page 34: Diode

When forward-biased, zener diodes behave much the same as standard diodes

In reverse-bias mode, they do not conduct until the applied voltage reaches or exceeds the so-called zener voltage, at which point the diode is able to conduct substantial current, and in doing so will try to limit the voltage dropped across it to that zener voltage point. So long as the power dissipated by this reverse current does not exceed the diode's thermal limits, the diode will not be harmed

FORWARD & REVERSE BIASED

Page 35: Diode

Dz

R

V

Please take note of the zener diode's orientation in the above circuit: the diode is reverse-biased, and intentionally so. If we had oriented the diode in the "normal" way, so as to be forward-biased, it just like a regular rectifying diode. If we want to exploit this diode's reverse breakdown properties, we must operate it in its reverse-bias mode.

Page 36: Diode

LIGHT EMITTING DIODES, LED

A forward-biased PN junction which emit visible light when energized.

The color of the emitted light depends on the type of the semiconductor materials used:

GaAs – infrared radiation

GaP – red or green light

GaAsP – red or yellow light

Page 37: Diode

Application of LED

abcdefg

It possible to light any segment by forwarding the particular LED