Convert MTS to 3GP — Free Online Converter
Convert AVCHD Video (.mts) to 3GPP Multimedia (.3gp) online for free. Fast, secure video conversion with no watermarks or registration....
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Upload your .mts file by dragging it into the upload area or clicking to browse.
Choose your output settings. The default settings work great for most files.
Click Convert and download your .3gp file when it's ready.
About MTS to 3GP Conversion
MTS files are AVCHD camcorder recordings using the MPEG-2 Transport Stream container with H.264/AVC video at up to 24 Mbps and AC3 or LPCM audio — the standard format written by Sony, Canon, and Panasonic consumer HD camcorders from 2006 to 2018. 3GP is a lightweight mobile container designed for 3G cellular networks, using H.263 or MPEG-4 Part 2 at low resolutions. Converting MTS to 3GP dramatically compresses full-HD camcorder footage into tiny files for feature phone playback.
Why Convert MTS to 3GP?
AVCHD camcorder recordings at 1080i60 with 24 Mbps bitrate produce files far too large and complex for basic mobile phones. A single minute of MTS footage occupies roughly 180 MB — more than the total storage of many feature phones. 3GP at 176x144 with H.263 reduces this to approximately 0.5 MB per minute, a 360x compression ratio.
In regions where feature phones remain the primary computing device, converting camcorder footage to 3GP enables sharing family videos, event recordings, and educational content via Bluetooth, MMS, or slow cellular data connections. The conversion bridges the gap between HD camcorder output and the reality of low-end mobile hardware.
Common Use Cases
- Sharing camcorder family videos with relatives using feature phones
- Distributing event recordings to attendees via MMS or Bluetooth
- Creating lightweight video clips from HD camcorder footage for low-bandwidth networks
- Preparing camcorder content for playback on basic Android phones with limited storage
- Archiving camcorder highlight reels in the smallest possible video format
How It Works
FFmpeg deinterlaces the 1080i MTS source (AVCHD typically records interlaced), massively downscales from 1920x1080 to 176x144 or 352x288, and re-encodes to H.263 video with AMR-NB audio: `-vf yadif,scale=176:144 -c:v h263 -r 15 -b:v 128k -c:a libopencore_amrnb -ar 8000 -ac 1 -b:a 12.2k -f 3gp`. The deinterlacing step is crucial since the source is typically 1080i.
Quality & Performance
The quality reduction is extreme — from full HD 1080i to QCIF 176x144. Detail, color accuracy, and temporal resolution are all drastically reduced. The output is suitable only for small phone screens where the viewer needs to see general content (recognizing people, understanding what is happening) rather than appreciating fine detail.
Device Compatibility
| Device | MTS | 3GP |
|---|---|---|
| Windows PC | Partial | Partial |
| macOS | Partial | Partial |
| iPhone/iPad | Partial | Partial |
| Android | Partial | Native |
| Linux | Partial | Partial |
| Web Browser | No | No |
Recommended Settings by Platform
YouTube
Resolution: 1920x1080
Bitrate: 8-12 Mbps
H.264 recommended for fast processing
Resolution: 1080x1080
Bitrate: 3.5 Mbps
Square or 9:16 for Reels
TikTok
Resolution: 1080x1920
Bitrate: 4 Mbps
9:16 vertical, under 60s ideal
Twitter/X
Resolution: 1280x720
Bitrate: 5 Mbps
Under 140s, 512MB max
Resolution: 960x540
Bitrate: 2 Mbps
16MB limit for standard, 64MB for document
Discord
Resolution: 1280x720
Bitrate: 4 Mbps
8MB free, 50MB Nitro
Tips for Best Results
- 1Always deinterlace (-vf yadif) before downscaling — MTS files are typically 1080i and combing artifacts look terrible at low resolutions
- 2Use CIF (352x288) instead of QCIF for slightly better quality on phones with larger screens
- 3Set frame rate to 15 fps to significantly reduce file size without noticeable impact at 3GP resolutions
- 4If the source has 5.1 AC3 audio, downmix to mono at 8000 Hz for AMR compatibility
- 5Test on the target feature phone before batch-converting — 3GP decoder capabilities vary between manufacturers and models
Related Conversions
MTS to 3GP conversion bridges the enormous gap between HD camcorder output and basic mobile device capabilities, producing the smallest possible video files from high-quality AVCHD recordings.