Uploaded May 2021 | Updated September 2026, 3 weeks ago
In this video, the third method (weaver's method) for the generation of SSB-SC (Single Sideband Suppressed Carrier) signal is explained in detail.
Timestamps :
0:00 Introduction
0:58 Weaver's Method of SSB Generation
11:33 Mathematical derivation of Weaver's Method (for single-tone SSB-SC signal)
For Handwritten Notes, check this link:
allaboutelectronics.org/single-sideband-modulation-ssb-sc
There are three different methods for generating the single sideband modulated signal.
1) Phase-Shift Method
2) Filter Method (Selective Filter Method)
3) Third Method (Weaver's Method)
Third Method (Weaver's Method) for SSB Generation
In this video, the third method (Weaver's Method) for generating the SSB signal is explained using the block diagram and frequency spectrum. And at the later part of the video, the mathematical derivation of the Weaver's Method is explained for single-tone SSB-SC signal.
Unlike the phase shift method, Weaver's method uses narrowband phase shifters. (For single frequency phase shift).
This method requires 4- balanced modulators, 2 low pass filters, and 2 narrow band phase shifters.
With the help of a -90 degree phase shifter, the quadrature component of the carrier signal is generated.
The link for the other useful videos related to modulation:
1) Single Sideband Modulation Explained
youtu.be/0PyLguMXRfc
2) SSB Generation: Phase Shift Method and Filter Method
youtu.be/UCa7rOFp8js
3) Amplitude Modulation (AM) Explained:
youtu.be/Yryi1bbmUjU
4) Double Sideband Suppressed Carrier (DSB-SC) Explained:
youtu.be/3wBlB-TFwkQ
This video will be helpful to all the students of science and engineering in understanding Weaver's Method for SSB signal generation.
#ALLABOUTELECTRONICS
#SingleSidebandModulation
#modulation
#SSBSCModulation
--------------------------------------------------------------------------------------------------
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--------------------------------------------------------------------------------------------------
Music Credit: bensound.com
In this video, the third method (weaver's method) for the generation of SSB-SC (Single Sideband Suppressed Carrier) signal is explained in detail.
Timestamps :
0:00 Introduction
0:58 Weaver's Method of SSB Generation
11:33 Mathematical derivation of Weaver's Method (for single-tone SSB-SC signal)
For Handwritten Notes, check this link:
allaboutelectronics.org/single-sideband-modulation-ssb-sc
There are three different methods for generating the single sideband modulated signal.
1) Phase-Shift Method
2) Filter Method (Selective Filter Method)
3) Third Method (Weaver's Method)
Third Method (Weaver's Method) for SSB Generation
In this video, the third method (Weaver's Method) for generating the SSB signal is explained using the block diagram and frequency spectrum. And at the later part of the video, the mathematical derivation of the Weaver's Method is explained for single-tone SSB-SC signal.
Unlike the phase shift method, Weaver's method uses narrowband phase shifters. (For single frequency phase shift).
This method requires 4- balanced modulators, 2 low pass filters, and 2 narrow band phase shifters.
With the help of a -90 degree phase shifter, the quadrature component of the carrier signal is generated.
The link for the other useful videos related to modulation:
1) Single Sideband Modulation Explained
youtu.be/0PyLguMXRfc
2) SSB Generation: Phase Shift Method and Filter Method
youtu.be/UCa7rOFp8js
3) Amplitude Modulation (AM) Explained:
youtu.be/Yryi1bbmUjU
4) Double Sideband Suppressed Carrier (DSB-SC) Explained:
youtu.be/3wBlB-TFwkQ
This video will be helpful to all the students of science and engineering in understanding Weaver's Method for SSB signal generation.
#ALLABOUTELECTRONICS
#SingleSidebandModulation
#modulation
#SSBSCModulation
--------------------------------------------------------------------------------------------------
Follow my second channel:
youtube.com/channel/UCGA2TO8ylVqFHpucwn_6Jlw
Follow me on Facebook:
facebook.com/ALLABOUTELECRONICS
Follow me on Instagram:
instagram.com/all_about.electronics
--------------------------------------------------------------------------------------------------
Music Credit: bensound.com










