T11 to YUV Converter

Rasterize CID Type 2 fonts into raw YUV pixel data for video use

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Video Native

YUV is the foundational color space for video systems — render your T11 font directly into pixel data that video hardware processes natively.

Raw Pixel Data

Uncompressed YUV feeds directly into video encoders, hardware scalers, and broadcast equipment without any intermediate decode step.

Secure Files

T11 uploads are deleted after conversion and YUV outputs are purged within 24 hours to protect your assets.

How to convert T11 to YUV

1

Select files from Computer, Google Drive, Dropbox, URL or by dragging it on the page.

2

Choose yuv or any other format you need as a result (more than 200 formats supported)

3

Let the file convert and you can download your yuv file right afterwards

About formats

T11 (Type 11) is a PostScript font type defined by Adobe Systems as part of the CID-keyed font architecture, combining CID glyph addressing with TrueType outline data wrapped in a Type 42 PostScript shell. In Adobe's font type numbering, Types 9, 10, and 11 are CID-keyed counterparts to Types 1, 3, and 42 respectively — so Type 11 is essentially a CID-keyed Type 42, designed for TrueType fonts that contain very large glyph sets, particularly CJK (Chinese, Japanese, Korean) character collections. The format allows PostScript interpreters with TrueType rasterizer support to render CJK TrueType fonts while using CID numeric indexing instead of glyph names, which is critical for character sets numbering in the tens of thousands. Glyph outlines remain in native TrueType quadratic spline format, preserving the original hinting instructions, while the CID layer provides efficient glyph access and subsetting through CMap resources. One advantage is direct TrueType rendering quality — unlike converting TrueType outlines to PostScript cubics, Type 11 passes the original outlines to the rasterizer intact, preserving hand-tuned grid-fitting instructions. The CID indexing provides another benefit by supporting multiple encoding schemes (Unicode, national standards) mapped to the same glyph collection without data duplication. Type 11 fonts appear primarily in professional CJK print production and PDF document workflows where large TrueType-based character sets must be embedded in PostScript-derived output.
Developer: Adobe Systems
Initial release: 1993
YUV is a raw pixel data format storing images in the Y'UV color model, where image data is separated into a luminance component (Y', representing brightness) and two chrominance components (U/Cb and V/Cr, representing color difference signals). The YUV color model originated with analog color television broadcasting — specifically the NTSC system adopted in 1953 and the PAL system in 1967 — where backward compatibility with existing black-and-white receivers required separating brightness from color information. In digital imaging, the ITU-R BT.601 standard (1982) formalized the digital YCbCr encoding derived from the analog YUV model, defining the conversion matrices and sample precision used by virtually all digital video and broadcast systems. YUV raw files contain no header, compression, or metadata — they are flat sequences of luminance and chrominance samples in a specified ordering (4:4:4, 4:2:2, 4:2:0, or other subsampling ratios), requiring external specification of dimensions, bit depth, and subsampling scheme. The 4:2:0 subsampling mode (where chrominance has half the horizontal and half the vertical resolution of luminance) is particularly common, used by H.264, H.265, AV1, and most consumer video codecs. One advantage is direct video pipeline compatibility: YUV data is the native input format for video encoders, hardware display controllers, and camera sensor ISPs, making raw YUV the most direct representation for frame-accurate video processing and analysis. The perceptual efficiency of the YUV color model is another fundamental strength — separating luma from chroma enables effective subsampling that halves or quarters the color data with minimal visible impact. YUV data is processed by FFmpeg, ImageMagick, and all video processing tools.
Developer: ITU-T (CCIR)
Initial release: 1982

Frequently Asked Questions

Why convert T11 to YUV?

YUV separates brightness from color information — the native color model for video. Rendering T11 glyphs as YUV creates text elements for video hardware.

How do I open a YUV file?

YUV files are viewed with FFplay, VLC (with manual parameters), and loaded in video processing tools like FFmpeg, AviSynth, or VapourSynth.

Is YUV compressed?

No — YUV stores raw pixel values without compression. This makes it suitable for real-time video processing where decode latency must be minimized.

Do I need to register to convert T11 to YUV?

No account is required. You can convert T11 to YUV directly without signing up — just upload, convert, and download.

Is T11 to YUV free?

Yes, Convertio offers free T11 to YUV conversion — entirely cloud-based with no software to install.