RLE to PAM Converter

Convert compressed rasters to PAM format online for free

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Research Data Access

Utah RLE images from early CG research become viewable again when converted to PAM — no specialized toolkit needed.

Quick Turnaround

Most RLE files convert to PAM within moments. Server-side processing ensures speed regardless of your device capabilities.

File Privacy First

Uploaded RLE images and converted PAM results are automatically purged — originals immediately, outputs within 24 hours.

How to convert RLE to PAM

1

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

2

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

3

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

About formats

RLE (Run-Length Encoded) in the context of the Utah RLE format refers to a raster image file format developed by Spencer W. Thomas at the University of Utah's Computer Science Department around 1983, as part of the Utah Raster Toolkit. The format stores images using a scanline-oriented run-length encoding scheme that compresses sequences of identical pixel values into count-value pairs, achieving good compression ratios for images with large areas of solid color — typical of computer-generated graphics and rendered scenes common in computer science research at the time. Utah RLE supports 1 to 255 color channels per pixel, with 8 bits per channel, and includes a header specifying image dimensions, number of channels, background color, and an optional color map. The format accommodates alpha channel data as an additional channel, and empty scanlines (matching the background color) can be omitted entirely for further compression. The Utah Raster Toolkit provided a suite of Unix command-line tools for manipulating RLE images — operations like compositing, scaling, rotating, color manipulation, and format conversion — establishing a software paradigm later echoed by Netpbm and ImageMagick. One advantage is the format's foundational role in computer graphics: the Utah Raster Toolkit and its RLE format emerged from the same research environment that produced the Phong shading model, Gouraud shading, and the teapot — and much of the early computer graphics research output was stored in this format. The format is supported by ImageMagick, GIMP, and various legacy graphics tools.
Initial release: 1983
PAM (Portable Arbitrary Map) is a raster image format added to the Netpbm family around the year 2000 by Bryan Henderson, the maintainer of Netpbm, as a generalization that unifies and extends the original PBM, PGM, and PPM formats. Where the classic Netpbm formats each handle a specific image type (PBM for bilevel, PGM for grayscale, PPM for color), PAM provides a single format that can represent any combination of channels, bit depths, and image types through a flexible ASCII header. The PAM header uses keyword-value pairs: WIDTH, HEIGHT, DEPTH (number of channels), MAXVAL (maximum sample value, up to 65535), and TUPLTYPE (a string identifying the image type — BLACKANDWHITE, GRAYSCALE, RGB, GRAYSCALE_ALPHA, RGB_ALPHA, or custom types). After the header, pixel data is stored in binary, with each sample occupying one or two bytes depending on MAXVAL. PAM's key innovation over its predecessors is native alpha channel support: GRAYSCALE_ALPHA (2-channel) and RGB_ALPHA (4-channel) tupletypes provide transparency without requiring a separate mask file, something the original PBM/PGM/PPM formats could not express. One advantage is format unification: a single PAM-reading implementation handles monochrome, grayscale, color, and alpha-augmented images, eliminating the need for separate parsers for each Netpbm variant. The extensible TUPLTYPE mechanism provides another practical strength — custom channel configurations (multispectral, depth + color, or any application-specific arrangement) can be represented and labeled without modifying the format specification. PAM is supported by Netpbm tools, ImageMagick, GIMP, and programming libraries that process the Netpbm family.
Initial release: 2000

Frequently Asked Questions

Why convert RLE to PAM?

Utah RLE is an academic format with very limited tool support. Converting to PAM ensures your computer graphics research data remains accessible.

What programs can open PAM?

GIMP, ImageMagick, XnView, and Netpbm toolkit tools open PAM images. This format is the most flexible in the Netpbm family.

Does RLE to PAM preserve quality?

PAM preserves image data without lossy compression, so the visual content from your RLE is retained faithfully during conversion.

How quickly can I convert RLE to PAM?

Most RLE images convert to PAM within seconds. The exact time depends on the resolution and complexity of the source, but it is typically quick.

Can I queue several RLE files for conversion?

Batch conversion is supported. Queue as many RLE files as you need and convert them all to PAM in a single run — no repeating steps manually.