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YDbDr to ACEScg Converter - Color Space Converter

YDbDr color space introduction

Also known as the YDbDr color space.There are 3 channels in total, Y,range from 0 to 1.Db,range from -1.333 to 1.333.Dr,range from -1.333 to 1.333.
Origin: The YDbDr color space was designed for the European SECAM color television system for color encoding in analog television broadcasting.
Primary Names: YDbDr color space, where 'Y' represents the luminance component, 'Db' and 'Dr' respectively represent the blue and red difference components.
Typically expressed as a triplet, for example: YDbDr(0.5, -0.1, 0.9) represents a color with specific luminance and chromaticity differences.
Usage Scope: Primarily used in SECAM standard color television broadcasting, which is a color video standard specific to certain countries and regions.
Additionally, compared to PAL and NTSC, SECAM uses frequency division multiplexing to separate the chrominance components, reducing cross-color interference during color image transmission.

ACEScg color space introduction

Also known as the ACEScg color space.There are 3 channels in total,Red,range from 0 to 65504.Green,range from 0 to 65504.Blue,range from 0 to 65504.
ACEScg is part of the ACES (Academy Color Encoding System) workflow, specifically tailored for digital visual effects, computer graphics, and animation. Developed by the Academy of Motion Picture Arts and Sciences, it provides a standardized color management framework for motion picture production, post-production, and archival industries.
ACEScg, stands for Academy Color Encoding System - Computer Graphics.
In the ACEScg color space, colors are represented through Red (R), Green (G), and Blue (B) channels, specifically designed for high dynamic range and wide color gamut image processing.
ACEScg is primarily used in computer graphics, visual effects, and animation for compositing and rendering, offering a wide gamut color space that is optimal for these applications.
ACEScg provides professionals in computer graphics and animation with a unified and consistent approach to handling color, particularly in maintaining color consistency and accuracy across complex multi-software workflows.

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