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DIGITAL TO ANALOG CONVERSION
Soumen Santra
MCA, M.Tech, SCJP, MCP
CONTENTS
1. Introduction
2. Different Mechanisms
3. Amplitude Shift Keying (ASK)
4. Frequency Shift Keying (FSK)
5. Phase Shift Keying (PSK)
6. Quadrature Amplitude Modulation(QAM)
7. REFERENCES
INTRODUCTION
Digital-to-analog conversion is the process of changing one of the
characteristics of an analog signal based on the information in digital data.
This figure shows the relationship between the digital information, the
digital-to-analog modulating process, and the resultant analog signal.
SOUMEN SANTRA
DIFFERENT MECHANISMS
1) Amplitude Shift Keying (ASK) [Diagram]
2) Frequency Shift Keying (FSK) [Diagram]
3) Phase Shift Keying (PSK) [Diagram]
4) Quadrature Amplitude Modulation(QAM)
SOUMEN SANTRA
Amplitude Shift Keying (ASK)
• In this keying both frequency and phase
remain constant, but the amplitude changes to
create signal elements for a carrier signal.
• ASK is normally implemented using only two
levels. This is referred to as Binary Amplitude
Shift Keying or On-Off Keying(OOK).
• The peak amplitude of one signal level is 0, the
other is the same as the amplitude of the
carrier frequency. SOUMEN SANTRA
Amplitude Shift Keying (ASK)
Bandwidth for ASK :-
B = (1+d)*s
B = Bandwidth
s = Signal Rate
d = factor depending on modulation and filtering process. It’s value
ranges from 0 to 1 SOUMEN SANTRA
SOUMEN SANTRA
Frequency Shift Keying (FSK)
• In this, the frequency of the carrier signal is
varied to represent data.
• The frequency of the modulated signal is
constant for the duration of one signal element,
but changes for the next signal element if the
data element changes.
• Both peak amplitude and phase remain
constant for all signal elements. SOUMEN SANTRA
Frequency Shift Keying (FSK)
Bandwidth for FSK :-
B = (1+d)*s+2f’
2f’=The differences between the two assumed frequency
SOUMEN SANTRA
Phase Shift Keying (PSK)
• The phase of the carrier is varied to represent two or
more different signal elements.
• Both peak amplitude and frequency remain constant
as the phase changes.
• The simplest PSK is Binary PSK, in which we have
only two signal elements, one with a phase of 0
degree, and the other with a phase of 180 degree.
• Binary PSK is as simple as binary ASK with one big
advantage – it is less susceptible to noise. SOUMEN SANTRA
Phase Shift Keying (PSK)
Bandwidth for ASK :-
B = (1+d)*s
B = Bandwidth
s = Signal Rate
d = factor depending on modulation
and filtering process. It’s value ranges
from 0 to 1 SOUMEN SANTRA
Quadrature Amplitude Modulation(QAM)
• A mechanism combines changing both the amplitude phase,
called Quadrature Amplitude Modulation.
SOUMEN SANTRA
REFERENCES
DATA COMMUNICATIONS AND NETWORKING – BEHROUZ A FOROUZAN
SOUMEN SANTRA
THANK YOU
GIVE FEEDBACK
SOUMEN SANTRA

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Digital to Analog Conversion

  • 1. DIGITAL TO ANALOG CONVERSION Soumen Santra MCA, M.Tech, SCJP, MCP
  • 2. CONTENTS 1. Introduction 2. Different Mechanisms 3. Amplitude Shift Keying (ASK) 4. Frequency Shift Keying (FSK) 5. Phase Shift Keying (PSK) 6. Quadrature Amplitude Modulation(QAM) 7. REFERENCES
  • 3. INTRODUCTION Digital-to-analog conversion is the process of changing one of the characteristics of an analog signal based on the information in digital data. This figure shows the relationship between the digital information, the digital-to-analog modulating process, and the resultant analog signal. SOUMEN SANTRA
  • 4. DIFFERENT MECHANISMS 1) Amplitude Shift Keying (ASK) [Diagram] 2) Frequency Shift Keying (FSK) [Diagram] 3) Phase Shift Keying (PSK) [Diagram] 4) Quadrature Amplitude Modulation(QAM) SOUMEN SANTRA
  • 5. Amplitude Shift Keying (ASK) • In this keying both frequency and phase remain constant, but the amplitude changes to create signal elements for a carrier signal. • ASK is normally implemented using only two levels. This is referred to as Binary Amplitude Shift Keying or On-Off Keying(OOK). • The peak amplitude of one signal level is 0, the other is the same as the amplitude of the carrier frequency. SOUMEN SANTRA
  • 6. Amplitude Shift Keying (ASK) Bandwidth for ASK :- B = (1+d)*s B = Bandwidth s = Signal Rate d = factor depending on modulation and filtering process. It’s value ranges from 0 to 1 SOUMEN SANTRA SOUMEN SANTRA
  • 7. Frequency Shift Keying (FSK) • In this, the frequency of the carrier signal is varied to represent data. • The frequency of the modulated signal is constant for the duration of one signal element, but changes for the next signal element if the data element changes. • Both peak amplitude and phase remain constant for all signal elements. SOUMEN SANTRA
  • 8. Frequency Shift Keying (FSK) Bandwidth for FSK :- B = (1+d)*s+2f’ 2f’=The differences between the two assumed frequency SOUMEN SANTRA
  • 9. Phase Shift Keying (PSK) • The phase of the carrier is varied to represent two or more different signal elements. • Both peak amplitude and frequency remain constant as the phase changes. • The simplest PSK is Binary PSK, in which we have only two signal elements, one with a phase of 0 degree, and the other with a phase of 180 degree. • Binary PSK is as simple as binary ASK with one big advantage – it is less susceptible to noise. SOUMEN SANTRA
  • 10. Phase Shift Keying (PSK) Bandwidth for ASK :- B = (1+d)*s B = Bandwidth s = Signal Rate d = factor depending on modulation and filtering process. It’s value ranges from 0 to 1 SOUMEN SANTRA
  • 11. Quadrature Amplitude Modulation(QAM) • A mechanism combines changing both the amplitude phase, called Quadrature Amplitude Modulation. SOUMEN SANTRA
  • 12. REFERENCES DATA COMMUNICATIONS AND NETWORKING – BEHROUZ A FOROUZAN SOUMEN SANTRA