Free webp to jpg
Image MIME Reference
FLIF

Free Lossless Image Format

image/flif
VS

JPEG XS Image

image/jxs
JPEG-XS

A complete technical comparison of Free Lossless Image Format and JPEG XS Image — covering compression, feature support, browser compatibility, magic bytes, and when to choose each format.

Equal browser support

Feature Support

Feature FLIF JPEG-XS
Transparency (Alpha) Yes Yes
Animation Support Yes Yes
Progressive Loading Yes ✕ No
HDR Support Yes Yes
EXIF Metadata Yes Yes
ICC Color Profile Yes Yes
Free Lossless Image Format
image/flif
Extension
.flif
Container FLIF Bitstream
Compression Lossless (MANIAC Entropy Coding)
Algorithm
MANIAC (Meta-Adaptive Near-zero Integer Arithmetic Coding)
Color Depth 1-bit to 16-bit (Per Channel), Grayscale, RGB, RGBA, CMYK
Developed by Jon Sneyers and Pieter Wuille (Cloudinary)
Released 2015
Magic Bytes
46 4C 49 46
Full FLIF reference →
JPEG XS Image
image/jxs
Extension
.jxs
Container ISOBMFF (ISO/IEC 21122-3) or Raw Codestream
Compression Lossy (Visually Lossless) / Mathematically Lossless
Algorithm
JPEG XS (Low-complexity wavelet transform)
Color Depth 8-bit, 10-bit, 12-bit, 14-bit, 16-bit
Developed by Joint Photographic Experts Group (JPEG) / intoPIX
Released 2019
Magic Bytes
FF 10 (Codestream) / XX XX XX XX 66 74 79 70 6A 78 73 20 (ISOBMFF)
Full JPEG-XS reference →

Browser Support Comparison

Browser FLIF JPEG-XS
Chrome Chrome
Firefox Firefox
Safari Safari
Edge Edge
IE IE (Legacy)
FLIF

FLIF Strengths

  • Achieves some of the highest lossless compression ratios ever developed for raster images
  • Incredible progressive decoding allows an image to be highly recognizable even after only 5% of the file has been downloaded
  • Supports animations and complex alpha channels losslessly
Limitations
  • Officially abandoned in favor of JPEG XL
  • Zero native support in web browsers or standard operating system previewers
  • Encoding speed can be significantly slower than standard PNG or WebP compression
JPEG-XS

JPEG-XS Strengths

  • Provides sub-millisecond encoding/decoding latency, essential for live production and gaming
  • Extremely lightweight, requiring very little CPU, GPU, or FPGA memory to process
  • Replaces uncompressed video links (like SDI or HDMI) over standard Ethernet networks with visually lossless quality
Limitations
  • Compression ratios are typically much lower (between 2:1 and 10:1) compared to heavy codecs like HEVC or AV1
  • Zero support in web browsers or standard consumer devices
  • Primarily licensed to hardware manufacturers and professional software ecosystems

When to choose which format

FLIF
Use FLIF when…
  • Archival of Uncompressed Image Assets
  • Bandwidth-Constrained Progressive Image Loading (Historical)
  • Medical and Scientific Imaging Storage
JPEG-XS
Use JPEG-XS when…
  • Live Video Broadcasting (SMPTE ST 2110)
  • Video over IP Networks
  • Virtual Reality / Augmented Reality (VR/AR)
  • Automotive & Drone Cameras
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