yes to YUV(EBU) Converter - Color Space Converter
yes color space introduction
Also known as the yes color space.There are 3 channels in total, luminance,range from 0 to 1.e-factor,range from 0 to 1.s-factor,range from 0 to 1.
The Yes color space is a transformation of the XYZ color space designed to separate luminance information (Y) from the color information (E and S).
Yes color space.
In the Yes color space, colors are expressed through luminance (Y) and two color information channels (E and S), simplifying the representation of colors.
This color space is often used in image processing tasks where separation of luminance and chroma information is needed, such as image segmentation and feature extraction.
With its simplified representation, the Yes color space can offer intuitive color information for specific image processing applications like image enhancement and color feature analysis.
YUV(EBU) color space introduction
Also known as the YUV(EBU) color space.There are 3 channels in total,Y,range from 0 to 1.U,range from -0.5 to 0.5.V,range from -0.5 to 0.5.
Origin: The YUV color space was designed for analog video signal transmission, separating luminance information (Y) from chrominance information (U and V) to improve the efficiency of color transmission and ensure compatibility with black and white television.
Primary Names: YUV color space, where 'Y' represents the luminance component, and 'U' and 'V' represent the chrominance components, describing the difference in color from a reference white.
Typically expressed as a triplet, for example: YUV(0.5, -0.33, 0.25) represents a color with specific luminance and chrominance.
Usage Scope: Mainly used in analog video transmission and compression. In modern applications, YUV is common in digital video encoding and broadcasting, video editing software, and image processing.
Additionally, the YUV format is very effective in color processing to reduce bandwidth requirements because it allows the resolution of chrominance components to be reduced during transmission rather than luminance components, taking advantage of the human eye's greater sensitivity to luminance over chrominance changes.
You might also want to convert yes color space to these formats:
yes to HEX converteryes to RGB(sRGB) converteryes to CMYK converteryes to CMY converteryes to XYZ(ciexyz,cie1931,XYZ D65) converteryes to HSL converteryes to HSV(HSB) converteryes to HSI converteryes to HWB converteryes to xyY(Yxy,yxy) converteryes to YIQ converteryes to YDbDr converteryes to YCgCo converteryes to YPbPr(Y/PB/PR,YPRPB,PRPBY,PBPRY,Y/Pb/Pr,YPrPb,PrPbY,PbPrY,Y/R-Y/B-Y,Y(R-Y)(B-Y),R-Y,B-Y) converteryes to YCbCr(YCC) converteryes to xvYCC converteryes to YcCbcCrc converteryes to UCS(cie1960) converteryes to UVW(cieuvw,cie1964) converteryes to JPEG converteryes to LAB(cielab) converteryes to LABh(hunter-lab,hlab) converteryes to lms converteryes to LCHab(cielch,LCH,HLC,LSH) converteryes to LUV(cieluv,cie1976) converteryes to LCHuv(cielchuv) converteryes to HSLuv(HuSL) converteryes to HPLuv(HuSLp) converteryes to Coloroid(ATV) converteryes to HCG(HSG) converteryes to HCY converteryes to TSL converteryes to OSA-UCS converteryes to HSP converteryes to Adobe® 98 RGB compatible converteryes to Linear Adobe® 98 RGB compatible converteryes to ACEScc converteryes to ACEScg converteryes to ICTCP converteryes to JzCzHz converteryes to Jzazbz converteryes to LCH converteryes to Lab D65 converteryes to Oklch converteryes to Oklab converteryes to P3 converteryes to Linear P3 converteryes to ProPhoto RGB converteryes to Linear ProPhoto RGB converteryes to REC.2020 converteryes to Linear REC.2020 converteryes to REC.2100-HLG converteryes to REC.2100-PQ converteryes to Absolute XYZ D65 converteryes to XYZ D50 converteryes to Linear sRGB converteryes to DLCH(DIN99 LCH) converteryes to DIN99 Lab(DLAB) converteryes to OKHSL converteryes to OKHSV converteryes to XYB converteryes to CubeHelix converter