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Image MIME Reference
EDMICS-MMR

Fuji Xerox EDMICS-MMR

image/vnd.fujixerox.edmics-mmr
VS

Portable Graymap

image/x-portable-graymap
PGM

A complete technical comparison of Fuji Xerox EDMICS-MMR and Portable Graymap — covering compression, feature support, browser compatibility, magic bytes, and when to choose each format.

Equal browser support

Feature Support

Feature EDMICS-MMR PGM
Transparency (Alpha) ✕ No ✕ No
Animation Support ✕ No ✕ No
Progressive Loading ✕ No ✕ No
HDR Support ✕ No Yes
EXIF Metadata ✕ No ✕ No
ICC Color Profile ✕ No ✕ No
Fuji Xerox EDMICS-MMR
image/vnd.fujixerox.edmics-mmr
Extension
.mmr.edm
Container Fuji Xerox EDMICS Wrapper
Compression Modified Modified READ (MMR / Group 4 Fax)
Algorithm
MMR (ITU-T T.6 / CCITT Group 4)
Color Depth 1-bit (Monochrome / Bi-level)
Developed by Fuji Xerox Co., Ltd.
Released 1990s
Magic Bytes
Unknown (Proprietary Container wrapped around MMR bitstream)
Full EDMICS-MMR reference →
Portable Graymap
image/x-portable-graymap
Extension
.pgm
Container Netpbm
Compression Uncompressed
Algorithm
None
Color Depth 8-bit (Grayscale), 16-bit (Grayscale)
Developed by Jef Poskanzer (Netpbm Project)
Released 1988
Magic Bytes
50 32 (ASCII) or 50 35 (Binary)
Full PGM reference →

Browser Support Comparison

Browser EDMICS-MMR PGM
Chrome Chrome
Firefox Firefox
Safari Safari
Edge Edge
IE IE (Legacy)
EDMICS-MMR

EDMICS-MMR Strengths

  • Utilized the highly efficient MMR (Group 4) algorithm, which allowed massive, E-size engineering blueprints to be compressed into tiny file sizes suitable for 1990s hard drives and networks
  • Deeply integrated into Fuji Xerox hardware and database systems for seamless scan-to-archive workflows
Limitations
  • Completely proprietary and closed-source, making modern archival extraction and migration extremely difficult
  • No support in modern image processing libraries like ImageMagick, libvips, or standard TIFF viewers without first stripping the proprietary header
  • Strictly limited to 1-bit monochrome images
PGM

PGM Strengths

  • Extremely simple format allows custom parsers to be written from scratch in minimal time
  • Supports 16-bit precision, making it highly valuable for scientific, medical, and height-map data where 8-bit precision is insufficient
  • ASCII encoding ('P2') allows manual editing and visual inspection of pixel values directly within a text editor
Limitations
  • Strictly limited to grayscale; cannot display color
  • Lack of compression results in massive file sizes, making it entirely impractical for web delivery or consumer storage
  • Does not support alpha transparency or modern metadata structures

When to choose which format

EDMICS-MMR
Use EDMICS-MMR when…
  • Fuji Xerox EDMICS Enterprise Systems
  • Archival of Large-Format Engineering Drawings
  • Legacy Corporate Document Scanning Pipelines
PGM
Use PGM when…
  • Computer Vision and Machine Learning Pre-processing
  • Scientific and Medical Image Processing
  • Unix/Linux Command-Line Image Pipelines
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