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Pulse-amplitude modulation, acronym PAM, is a form of
signal modulation where the message information is
encoded in the amplitude of a series of signal pulses.
Example: A two bit modulator (PAM-4) will take two bits at a
time and will map the signal amplitude to one of four
possible levels, for example −3 volts, −1 volt, 1 volt, and 3
volts.
Demodulation is performed by detecting the amplitude
level of the carrier at every symbol period.
Pulse-amplitude modulation is widely used in baseband
transmission of digital data, with non-baseband
applications having been largely superseded by pulsecode modulation, and, more recently, by pulse-position
modulation.
Analog pulse modulation

PAM

PWM

PPM

Digital pulse modulation

PCM

DM

ADM
 In the pulse amplitude modulation of pulsed carrier

is changed in proportion with the instantaneous
amplitude of the modulating signal x(t). So the
information is continued in the amplitude variation of
PAM signal.
 the carrier is in the form of train of narrow pulses .
 If you compare the PAM system with the sampling
process ,you will find these two processes are
identical.
 The PAM signal is then sent by either wire or cable or
it is used to modulate a carrier.
 Natural PAM (Chopper PAM)

 Flat top PAM
 Generation of natural PAM
Continuous
modulating
signal x(t)

Low pass
filter

Multiplier

Pulse train
generator

PAM
signal
MOSFET
acting as
switch

x(t)

c(t)

Natural
RL PAM
Signal
PAM signal

Low pass
filter

Demodulated
PAM signal
 The PAM signal can be detected

(demodulated) by passing it through a low
pass filter.
 The low pass filter cutoff frequency is

adjusted to fm so that all the high frequency
ripple is removed and the original modulating
signal is recovered back.
Waveform of Flat-top PAM
Due to the aperture effect an amplitude
distortion introduces.
This distortion can be corrected by equalizer
Advantages:
 Better SNR due to increased signal power.
 Generation is easy.

Disadvantage:
 Aperture effect introduces distortion.
Parameters

Natural PAM

Flat top PAM

Nature of sampling

Train of finite duration
pulses

Train of finite duration pulses

Circuit arrangement Uses a chopper

Uses a sample n hold circuit

Signal power

Increases with increase in
the pulse width

Increases with increase in the
pulse width

Bandwidth
requirement

Increases with the
reduction in pulse width

Increases with reduction in
the pulse width

Effect of noise

Moderate

Moderate

Waveforms
 Since the information is contained in the amplitude

variations, the noise will contaminate the information
 Q. Explain generation and demodulation of PAM

signal with the help of suitable diagrams.
(10 marks-May 2008)

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Pulse amplitude modulation (PAM)

  • 1.
  • 2. Pulse-amplitude modulation, acronym PAM, is a form of signal modulation where the message information is encoded in the amplitude of a series of signal pulses. Example: A two bit modulator (PAM-4) will take two bits at a time and will map the signal amplitude to one of four possible levels, for example −3 volts, −1 volt, 1 volt, and 3 volts. Demodulation is performed by detecting the amplitude level of the carrier at every symbol period. Pulse-amplitude modulation is widely used in baseband transmission of digital data, with non-baseband applications having been largely superseded by pulsecode modulation, and, more recently, by pulse-position modulation.
  • 3. Analog pulse modulation PAM PWM PPM Digital pulse modulation PCM DM ADM
  • 4.  In the pulse amplitude modulation of pulsed carrier is changed in proportion with the instantaneous amplitude of the modulating signal x(t). So the information is continued in the amplitude variation of PAM signal.  the carrier is in the form of train of narrow pulses .  If you compare the PAM system with the sampling process ,you will find these two processes are identical.  The PAM signal is then sent by either wire or cable or it is used to modulate a carrier.
  • 5.  Natural PAM (Chopper PAM)  Flat top PAM
  • 6.  Generation of natural PAM Continuous modulating signal x(t) Low pass filter Multiplier Pulse train generator PAM signal
  • 7.
  • 8.
  • 11.  The PAM signal can be detected (demodulated) by passing it through a low pass filter.  The low pass filter cutoff frequency is adjusted to fm so that all the high frequency ripple is removed and the original modulating signal is recovered back.
  • 12.
  • 13.
  • 15. Due to the aperture effect an amplitude distortion introduces. This distortion can be corrected by equalizer
  • 16. Advantages:  Better SNR due to increased signal power.  Generation is easy. Disadvantage:  Aperture effect introduces distortion.
  • 17. Parameters Natural PAM Flat top PAM Nature of sampling Train of finite duration pulses Train of finite duration pulses Circuit arrangement Uses a chopper Uses a sample n hold circuit Signal power Increases with increase in the pulse width Increases with increase in the pulse width Bandwidth requirement Increases with the reduction in pulse width Increases with reduction in the pulse width Effect of noise Moderate Moderate Waveforms
  • 18.  Since the information is contained in the amplitude variations, the noise will contaminate the information
  • 19.  Q. Explain generation and demodulation of PAM signal with the help of suitable diagrams. (10 marks-May 2008)