File:Quadrature demodulation.svg

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Revision as of 10:37, 20 May 2023 by Persune (talk | contribs) (This diagram illustrates quadrature demodulation, used in decoding composite signals to color YUV. More details can be found on the NTSC video page. The three graphs on the left shows how the Y, U, and V component signals are decoded using the composite signal and a reference carrier wave. The polar graph on the right shows the resulting color phase and saturation of the decoded color. The Y component (shown in orange) is decoded by low passing or comb filtering the input signal. (show...)
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Original file(SVG file, nominally 1,440 × 810 pixels, file size: 86 KB)

Summary

This diagram illustrates quadrature demodulation, used in decoding composite signals to color YUV. More details can be found on the NTSC video page.

The three graphs on the left shows how the Y, U, and V component signals are decoded using the composite signal and a reference carrier wave.

The polar graph on the right shows the resulting color phase and saturation of the decoded color.

The Y component (shown in orange) is decoded by low passing or comb filtering the input signal. (shown in blue)

The U component is decoded by multiplying the composite signal to a reference carrier wave (resulting wave shown in blue.) This signal can then be low passed or comb filtered to obtain the U component (shown in orange).

The V component is decoded in the same way as the U component, but instead with using another reference carrier wave which is phase offset by 90 degrees.

This diagram, and the source code that generates this is distributed under a MIT-0 No Attribution license.

File history

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Date/TimeThumbnailDimensionsUserComment
current10:37, 20 May 2023Thumbnail for version as of 10:37, 20 May 20231,440 × 810 (86 KB)Persune (talk | contribs)This diagram illustrates quadrature demodulation, used in decoding composite signals to color YUV. More details can be found on the NTSC video page. The three graphs on the left shows how the Y, U, and V component signals are decoded using the composite signal and a reference carrier wave. The polar graph on the right shows the resulting color phase and saturation of the decoded color. The Y component (shown in orange) is decoded by low passing or comb filtering the input signal. (show...

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