MPEG to TTA Converter

Extract lossless TTA audio from MPEG video sources

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Settings

Set the number of audio channels. This setting is most useful when downmixing channels (e.g., from 5.1 to stereo).
Set the sample rate of the audio. Music with a full spectrum (20 Hz — 20 kHz) requires values not lower than 44.1 kHz to achieve transparency. More info can be found on the wiki.
Adjust the audio volume by selecting a number of decibels. For example, -10 dB decreases the volume by 10 decibels.

mpeg

MPEG (MPEG-1) is a foundational video and audio compression standard published in August 1993 by the Moving Picture Experts Group as ISO/IEC 11172. It was the first international standard for lossy compression of moving pictures and associated audio, establishing principles and techniques that would influence virtually all subsequent video codecs. MPEG-1 video achieves compression through a combination of motion-compensated prediction, discrete cosine transform coding, and variable-length entropy encoding, organized around three frame types: I-frames (intra-coded), P-frames (predicted), and B-frames (bidirectionally predicted). The standard targets bit rates around 1.5 Mbps for combined audio and video, producing quality comparable to VHS tape at SIF resolution (352x240 for NTSC). This compression level was specifically chosen to match the data throughput of 1x-speed CD-ROM drives, enabling the Video CD format that brought digital video to consumers in the early 1990s. The audio component, particularly Layer III (MP3), went on to become the most influential audio format in history. The I/P/B frame structure, motion estimation approach, and block-based transform coding established the architectural template followed by every major video codec since, from MPEG-2 through H.264 and beyond. Though long surpassed in compression efficiency, MPEG-1 remains supported by virtually all media software.
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tta

TTA (True Audio) is a real-time lossless audio compression codec developed by Aleksander Djourik, with its origins tracing back to the early 2000s. The format reconstructs the original PCM stream bit-for-bit upon decoding, guaranteeing that no sonic detail is lost during storage or transfer. TTA handles standard CD-quality audio as well as high-resolution content up to 32-bit integer samples, making it suitable for everyday listening and professional archiving alike. Processing speed is one of TTA's defining strengths — the codec achieves fast encoding and decoding without heavy CPU demands, keeping it lightweight even on older hardware. The file structure supports ID3v1, ID3v2, and APEv2 metadata tags, so track information and album art travel with the audio. Hardware support appeared in several portable players, giving TTA a practical edge over some competing lossless formats. The open-source reference implementation ships under the GNU GPL, encouraging community adoption and third-party integrations. While newer codecs like FLAC have captured a larger share of the lossless audio landscape, TTA continues to serve users who value its simplicity and transparent compression.
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True Lossless

TTA preserves every bit of your MPEG audio without any data loss. Archival-grade quality in a compact lossless container.

Fast Encoding

TTA encodes faster than most lossless formats. Your MPEG audio is extracted and compressed in minimal time.

Automatic Cleanup

MPEG uploads are deleted right after conversion. TTA outputs are purged from our servers within 24 hours.

How to convert MPEG to TTA

1

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

2

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

3

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

About formats

MPEG (MPEG-1) is a foundational video and audio compression standard published in August 1993 by the Moving Picture Experts Group as ISO/IEC 11172. It was the first international standard for lossy compression of moving pictures and associated audio, establishing principles and techniques that would influence virtually all subsequent video codecs. MPEG-1 video achieves compression through a combination of motion-compensated prediction, discrete cosine transform coding, and variable-length entropy encoding, organized around three frame types: I-frames (intra-coded), P-frames (predicted), and B-frames (bidirectionally predicted). The standard targets bit rates around 1.5 Mbps for combined audio and video, producing quality comparable to VHS tape at SIF resolution (352x240 for NTSC). This compression level was specifically chosen to match the data throughput of 1x-speed CD-ROM drives, enabling the Video CD format that brought digital video to consumers in the early 1990s. The audio component, particularly Layer III (MP3), went on to become the most influential audio format in history. The I/P/B frame structure, motion estimation approach, and block-based transform coding established the architectural template followed by every major video codec since, from MPEG-2 through H.264 and beyond. Though long surpassed in compression efficiency, MPEG-1 remains supported by virtually all media software.
Initial release: August 1993
TTA (True Audio) is a real-time lossless audio compression codec developed by Aleksander Djourik, with its origins tracing back to the early 2000s. The format reconstructs the original PCM stream bit-for-bit upon decoding, guaranteeing that no sonic detail is lost during storage or transfer. TTA handles standard CD-quality audio as well as high-resolution content up to 32-bit integer samples, making it suitable for everyday listening and professional archiving alike. Processing speed is one of TTA's defining strengths — the codec achieves fast encoding and decoding without heavy CPU demands, keeping it lightweight even on older hardware. The file structure supports ID3v1, ID3v2, and APEv2 metadata tags, so track information and album art travel with the audio. Hardware support appeared in several portable players, giving TTA a practical edge over some competing lossless formats. The open-source reference implementation ships under the GNU GPL, encouraging community adoption and third-party integrations. While newer codecs like FLAC have captured a larger share of the lossless audio landscape, TTA continues to serve users who value its simplicity and transparent compression.
Developer: Aleksander Djourik
Initial release: 2003

Frequently Asked Questions

Why convert MPEG to TTA?

TTA is a fast lossless codec with good compression. It preserves all audio data from your MPEG while encoding quickly.

What plays TTA files?

foobar2000, VLC, AIMP, and Deadbeef support TTA playback. Several portable audio players also handle the format.

How does TTA compare to FLAC?

TTA encodes faster than FLAC with similar compression ratios. Both are lossless — no quality difference between them.

Is TTA widely supported?

TTA has a smaller ecosystem than FLAC, but dedicated music players and audiophile communities use it regularly.

Does TTA support metadata?

Yes — TTA files use ID3 tags for artist, album, and track information, compatible with most music library software.

MPEG to TTA Quality Rating

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