CID to PAL Converter

Render CID font glyphs as PAL-encoded image data online for free

Drop files here. 1 GB maximum file size or Sign Up
to
Facebook Amazon Microsoft Tesla Nestle Walmart L'Oreal

Broadcast Format

PAL YUV encoding matches what broadcast and video systems expect. Get CID font character renders ready for professional video integration.

YUV Color Space

PAL stores data in luminance-chrominance format, enabling direct integration with video processing chains that operate in YUV color space.

Remote Processing

No video tools or broadcast equipment needed. Convertio renders CID to PAL entirely in the cloud via your browser.

How to convert CID to PAL

1

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

2

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

3

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

About formats

CID (Character Identifier) is a font architecture developed by Adobe Systems and specified in June 1993 to address the challenges of fonts containing very large glyph sets, particularly for CJK (Chinese, Japanese, Korean) scripts. Traditional PostScript fonts identify glyphs by name, which becomes impractical when a font contains tens of thousands of characters — a typical Japanese font may include over 20,000 glyphs. CID-keyed fonts replace glyph names with numeric identifiers organized by a character collection and ordering (such as Adobe-Japan1 or Adobe-GB1), dramatically reducing overhead for glyph access and subsetting. The architecture defines three PostScript font types: Type 9 (CID-keyed Type 1 outlines), Type 10 (CID-keyed Type 3), and Type 11 (CID-keyed Type 42/TrueType). A primary advantage is efficient handling of massive character sets — the numeric CID approach eliminates the memory and processing cost of maintaining thousands of glyph name strings. CID fonts also support sophisticated CMap resources that map encoding values to CIDs, enabling a single font to serve multiple encoding schemes (Unicode, Shift-JIS, Big5) without duplicating glyph data. The architecture integrates well with PDF subsetting, allowing documents to embed only the glyphs actually used. CID-keyed technology laid the foundation for CJK support in both OpenType and modern PDF workflows, and remains active in print production and document processing systems worldwide.
Developer: Adobe Systems
Initial release: June 11, 1993
PAL is a 16-bit per pixel interleaved YUV image format that stores color information using a luminance-chrominance model rather than direct RGB values. Each pixel pair is packed into four bytes using the UYVY byte ordering — U (Cb), Y0, V (Cr), Y1 — where two adjacent pixels share a single set of chroma (color difference) samples while each retaining its own luminance (brightness) value. This 4:2:2 chroma subsampling halves the color resolution horizontally with negligible perceptual impact, since human vision is far more sensitive to brightness variations than color detail. The format traces its conceptual roots to analog broadcast television standards developed during the 1960s and 1970s, where separating luminance and chrominance enabled backward-compatible color transmission alongside existing monochrome signals. In digital imaging, 16-bit YUV serves as a common intermediate representation for video capture hardware, frame grabbers, and image processing pipelines that work in the YCbCr color space internally before converting to RGB for display. One advantage is bandwidth efficiency: at 16 bits per pixel, UYVY requires roughly two-thirds the data of uncompressed 24-bit RGB while preserving virtually identical perceived quality, making it well suited for high-throughput video capture and real-time image processing applications. The format's direct correspondence to how video hardware captures and outputs data provides another practical benefit — many capture cards and camera sensors natively produce UYVY data, so storing it in PAL form avoids an unnecessary color space conversion step that would add latency and introduce rounding artifacts.
Developer: ITU-T / Microsoft
Initial release: 1982

Frequently Asked Questions

Why convert CID to PAL?

PAL stores images in YUV interleaved format — useful when CID glyph renders need to feed into broadcast or video processing workflows.

How do I view PAL images?

ImageMagick and video processing tools handle PAL data. Raw YUV viewers and broadcast equipment also process the format directly.

Is PAL related to the TV standard?

PAL image files use YUV color space common in broadcast video. The encoding aligns with color models used in PAL television systems.

Does PAL preserve glyph quality?

PAL stores pixel data in YUV color space without lossy compression. CID character details are maintained in the raw image data.

Is this conversion free?

Yes — Convertio handles CID to PAL at no charge. Upload, convert, and download without any payment.