Free webp to jpg
Image MIME Reference
JPS

JPEG Stereo Image

image/x-jps
VS

Portable Pixmap

image/x-portable-pixmap
PPM

A complete technical comparison of JPEG Stereo Image and Portable Pixmap — covering compression, feature support, browser compatibility, magic bytes, and when to choose each format.

JPS wins on browser support

Feature Support

Feature JPS PPM
Transparency (Alpha) ✕ No ✕ No
Animation Support ✕ No ✕ No
Progressive Loading Yes ✕ No
HDR Support ✕ No Yes
EXIF Metadata Yes ✕ No
ICC Color Profile Yes ✕ No
JPEG Stereo Image
image/x-jps
Extension
.jps
Container JPEG (JFIF/Exif)
Compression Lossy (JPEG/DCT)
Algorithm
JPEG (Discrete Cosine Transform)
Color Depth 8-bit (Grayscale), 24-bit (RGB)
Developed by Stereoscopic Community (Unofficial Standard)
Released 1990
Magic Bytes
FF D8 FF
Full JPS reference →
Portable Pixmap
image/x-portable-pixmap
Extension
.ppm
Container Netpbm
Compression Uncompressed
Algorithm
None
Color Depth 24-bit (RGB), 48-bit (RGB High Color)
Developed by Jef Poskanzer (Netpbm Project)
Released 1988
Magic Bytes
50 33 (ASCII) or 50 36 (Binary)
Full PPM reference →

Browser Support Comparison

Browser JPS PPM
Chrome Chrome
✓ 1
Firefox Firefox
✓ 1
Safari Safari
✓ 1
Edge Edge
✓ 12
IE IE (Legacy)
JPS

JPS Strengths

  • 100% backward compatible with every standard 2D image viewer and web browser (which simply display the two halves side-by-side)
  • Inherits JPEG's excellent lossy compression, resulting in small file sizes ideal for web transmission
  • Extremely easy to generate programmatically by simply stitching two JPEG images side-by-side onto a wider canvas
Limitations
  • Lack of a dedicated metadata standard means viewing software has to guess whether the layout is 'cross-eyed' (right eye left, left eye right) or 'parallel' (left eye left, right eye right), occasionally causing inverted depth
  • Suffers from JPEG compression artifacts, which can break the stereoscopic illusion if compression noise differs between the left and right eyes
  • Superseded in consumer electronics by the MPO (Multi-Picture Object) format, which stacks separate full-resolution JPEGs rather than squishing them side-by-side
PPM

PPM Strengths

  • Absolute structural simplicity allows parsers and renderers (such as custom raytracers) to write directly to the format with virtually no overhead or external libraries
  • Supports 16-bit per channel (48-bit total) precision, preserving deep color accuracy before converting to final delivery formats
  • ASCII encoding ('P3') allows manual editing and visual inspection of RGB values directly within a text editor
Limitations
  • Zero compression results in astronomical file sizes, making it entirely impractical for web delivery or consumer storage
  • Does not natively support an alpha channel for transparency (this is handled by the newer PAM extension format within the Netpbm suite)
  • Lacks support for modern metadata standards like EXIF, XMP, or embedded ICC color profiles

When to choose which format

JPS
Use JPS when…
  • Stereoscopic 3D Photography
  • Virtual Reality (VR) Image Galleries
  • Cross-eye / Parallel Stereograms
PPM
Use PPM when…
  • Intermediary Format for Image Format Conversion
  • Academic Computer Graphics and Raytracing Output
  • Unix/Linux Command-Line Image Pipelines
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