OGV to GSM Converter

Extract GSM speech audio from Ogg Video files

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Specialized Output

GSM serves cellular telephony systems. Get OGV audio into the exact format your target system requires.

Cloud Conversion

GSM extraction from OGV runs on our servers — no specialized software needed on your computer.

Secure Processing

OGV uploads are deleted after conversion. GSM output is purged from servers within 24 hours.

How to convert OGV to GSM

1

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

2

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

3

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

About formats

OGV (Ogg Video) is an open multimedia format that combines the Theora video codec with the Ogg container, both developed by the Xiph.Org Foundation as royalty-free alternatives to proprietary media formats. Theora 1.0 reached stable release in November 2008, though development had been underway since 2002 based on the VP3 codec donated by On2 Technologies. Theora compresses video using block-based motion compensation with discrete cosine transform coding, achieving quality roughly comparable to MPEG-4 Part 2 at similar bit rates. The Ogg container uses a page-based multiplexing scheme that interleaves Theora video with Vorbis or Opus audio, supporting features like chained streams for seamless concatenation and multiplexed streams for synchronized multimedia playback. OGV was historically significant in the push for open web standards, serving as one of the first freely implementable video formats proposed for the HTML5 video element. Firefox and Chrome both shipped native OGV support, demonstrating that web video could function without reliance on proprietary plugins or licensed codecs. The format also supports FLAC lossless audio, Kate subtitle streams, and Skeleton metadata within the Ogg container. While WebM and AV1 have largely replaced OGV in the open-source video landscape, the format remains available in Linux distributions, open-source media tools, and contexts where complete freedom from patent concerns is a priority.
Initial release: November 3, 2008
GSM 06.10 (Full Rate) is the foundational speech codec of the Global System for Mobile Communications standard, ratified by ETSI in 1991 and deployed across hundreds of cellular networks worldwide. Operating at a fixed 13 kbit/s, the algorithm applies Regular Pulse Excitation with Long-Term Prediction (RPE-LTP) to compress 20 ms frames of 8 kHz mono speech into just 33 bytes each. This approach models the vocal tract as a linear predictive filter, encodes the excitation signal, and leverages pitch periodicity for further reduction — tuned to deliver intelligible voice under the bandwidth constraints of early digital mobile channels. The codec powers not only GSM telephony but also many VoIP applications, voicemail systems, and IVR platforms that benefit from its low bitrate. Three concrete advantages stand out. First, extraordinary compression: one minute of speech fits in roughly 100 KB, enabling efficient storage and transmission. Second, universal tooling — libraries such as libgsm and SoX handle encoding and decoding on every major platform. Third, a royalty-free patent landscape that has encouraged adoption across open-source telephony projects like Asterisk and FreeSWITCH.
Initial release: 1991

Frequently Asked Questions

Why convert OGV to GSM?

GSM is designed for cellular telephony systems. Extract OGV audio into this specialized format for its intended applications.

What uses GSM files?

Applications and systems built for cellular telephony systems accept GSM as their native audio input format.

Is GSM widely compatible?

GSM is a specialized format. SOX and dedicated tools handle it; mainstream players may not support it.

Will quality be adequate?

GSM quality is suited for its intended purpose — cellular telephony systems applications work optimally with this format.

Can I batch convert?

Upload several OGV files and extract GSM audio from each simultaneously for efficient processing.