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FLAC vs OPUS

FLAC vs OPUS

Ein detaillierter Vergleich von FLAC Audio und Opus Audio — Dateigröße, Qualität, Kompatibilität und welches je nach Workflow zu wählen ist.

FLAC

FLAC Audio

Audio Files

FLAC is an open-source lossless audio codec that compresses audio to roughly 50-60% of its original size without any quality loss. It is the preferred format for audiophiles and music archival.

Über FLAC-Dateien
OPUS

Opus Audio

Audio Files

Opus is a versatile, open-source audio codec optimized for both speech and music at very low bitrates. It is the standard for WebRTC voice calls and excels at real-time communication.

Über OPUS-Dateien

Vorteilsvergleich

FLAC Vorteile

  • Lossless — decoded audio is bit-exact identical to the source.
  • 40-60% smaller than uncompressed WAV/AIFF.
  • Free, patent-free, open-source reference implementation.
  • Built-in error detection via MD5 checksums.
  • Streaming-friendly — seek tables let you jump to any timestamp instantly.

OPUS Vorteile

  • Best-in-class quality across the entire bitrate range.
  • Royalty-free and patent-free.
  • Ultra-low latency — suitable for live voice and music.
  • Handles speech and music equally well — no need to switch codecs.
  • Mandatory codec in WebRTC, so supported in every browser by design.

Einschränkungen

FLAC Einschränkungen

  • File sizes still large compared to lossy codecs (5-10× bigger than AAC for same audio).
  • Not suitable for low-bandwidth scenarios like streaming on mobile data.
  • Older MP3 players and car stereos may not decode FLAC.
  • Slower to encode than lossy codecs.

OPUS Einschränkungen

  • Very low hardware decoder adoption — software-only on most phones.
  • Older platforms (legacy Windows apps, old cars) may not play .opus files.
  • Container semantics confusing — Opus lives inside Ogg, WebM, or MP4.
  • Encoder tooling is less polished than AAC's commercial ecosystem.

Technische Spezifikationen

Spezifikation FLAC OPUS
MIME type audio/flac audio/opus
Extension .flac
Standard Open-source reference implementation (Xiph.Org) RFC 6716 (2012)
Max bit depth 32 bits per sample
Max sample rate 655 350 Hz
Max channels 8
Extensions .opus, .ogg (container)
Sample rates 8, 12, 16, 24, 48 kHz
Latency 5-60 ms (configurable)

Typische Dateigrößen

FLAC

  • 3-min song (CD quality) 20-30 MB
  • Full album (10 tracks, CD) 250-400 MB
  • 3-min song (hi-res 24-bit/96 kHz) 80-120 MB
  • Live concert recording (24-bit) 2-10 GB

OPUS

  • Voice call (24 kbps) 180 KB/min
  • Podcast (48 kbps) 21 MB/hour
  • Music (128 kbps) ~1 MB/min
  • High-fidelity music (160 kbps) ~1.2 MB/min

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Häufig gestellte Fragen

FLAC (Free Lossless Audio Codec) is an open-source audio format that compresses audio without any quality loss. Developed by the Xiph.Org Foundation, it typically reduces file sizes by 40-50% compared to WAV while preserving bit-perfect audio.

FLAC (Free sem perdas Audio codec) is an open-source audio formato that compresses audio sem any quality loss. Developed pelo Xiph.Org Foundation, it tipicamente reduces tamanho do arquivos by 40-50% comparado a WAV while preserving bit-perfect audio.

FLAC files play in VLC, foobar2000, Winamp, and most modern music players. Streaming services like Tidal and Amazon Music HD use FLAC. Android supports it natively, and Apple devices support it via third-party apps.

FLAC arquivos reproduzir in VLC, foobar2000, Winamp, e most moderno music players. Streaming services like Tidal e Amazon Music HD usar FLAC. Android suporta it natively, e Apple devices support it via third-party apps.

Both are lossless with similar compression ratios. Use FLAC for universal compatibility and open-source support. Use ALAC if you are fully invested in the Apple ecosystem since iTunes and Apple Music handle ALAC natively.

Both are sem perdas com similar compressão ratios. usar FLAC para universal compatibilidade e open-source support. usar ALAC if you are fully invested no Apple ecosystem since iTunes e Apple Music handle ALAC natively.