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imagewidth (px)
1.72k
1.72k
frame_id
int64
0
9
timestamp
float64
5.37
9.5
frequency
int64
0
0
time_scale
int64
1
1
capture_date
stringdate
2026-01-13 19:57:36
2026-01-13 19:57:40
0
5.365
0
1
2026-01-13T19:57:36.427Z
1
5.813
0
1
2026-01-13T19:57:36.946Z
2
6.219
0
1
2026-01-13T19:57:37.459Z
3
6.688
0
1
2026-01-13T19:57:37.954Z
4
7.147
0
1
2026-01-13T19:57:38.619Z
5
7.552
0
1
2026-01-13T19:57:38.936Z
6
8.032
0
1
2026-01-13T19:57:39.445Z
7
8.501
0
1
2026-01-13T19:57:39.939Z
8
9.003
0
1
2026-01-13T19:57:40.519Z
9
9.504
0
1
2026-01-13T19:57:40.947Z

Website GitHub Hugging Face Follow on X

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Audioform_Dataset_v1

This dataset is the very first output from AUDIOFORM β€” a Three.js powered 3D audio visualization tool that turns audio files into beautiful, timestamped visual frames with rich metadata. AUDIOFORM by webXOS is available for download in the /audioform/ folder of this repo so developers can create their own similar datasets. Audio for is a synthetic harmonic oscilator that runs in HTML, think of it as the "Hello World" / MNIST-style dataset application for audio-to-visual multimodal machine learning.

This dataset contains 10 captured frames from a short uploaded WAV file (played at 1Γ— speed), together with per-frame metadata including dominant frequency, timestamp, and capture info.

Dataset Structure

audioform_dataset/
β”œβ”€β”€ images/
β”‚   β”œβ”€β”€ frame_0001.png
β”‚   β”œβ”€β”€ frame_0002.png
β”‚   └── ... (10 PNG frames total)
β”œβ”€β”€ metadata.csv          # Main metadata file (Hugging Face viewer uses this)
└── README.md
| Column        | Type    | Description                                                                 | Example Value                     |
|---------------|---------|-----------------------------------------------------------------------------|-----------------------------------|
| `file_name`   | string  | Relative path to the visualization PNG (required by Hugging Face)           | `images/frame_0001.png`           |
| `frame_id`    | int     | Sequential frame number (0-based)                                           | 0, 1, 2, …, 9                     |
| `timestamp`   | float   | Time in seconds when the frame was captured from the audio                  | 5.365, 6.219, 9.504               |
| `frequency`   | int     | Dominant / main detected audio frequency at capture time (Hz)               | 0 (in this tiny sample)           |
| `time_scale`  | int     | Playback speed multiplier used during visualization                         | 1                                 |
| `capture_date`| string  | UTC ISO timestamp when the frame was rendered                               | 2026-01-13T19:57:36.427Z          |

See how fast a tiny diffusion model / GAN / LoRA can memorize & regenerate these exact 10 styles. Use the frames as style references for ControlNet, IP-Adapter, or fine-tuning SD to adopt this neon 3D audio-viz aesthetic.

   This dataset shows the **format** AUDIOFORM produces.  
   β†’ Feed it real music, voices, field recordings, synths  
   β†’ Generate 1k–100k+ frames  
   β†’ Add labels (genre, instrument, mood, multiple freq peaks…)  
   β†’ Unlock serious applications:

   - Music video auto-generation  
   - Visual audio classifiers  
   - Audio-conditioned image/video generation  
   - Interactive music β†’ 3D art installations  
   - Novel multimodal music understanding models

Dataset Description

This dataset was generated using AUDIOFORM, a 3D audio visualization system.

  • Total Frames: 10
  • Generation Date: 2026-01-13
  • Audio Type: Uploaded WAV File
  • Time Scaling: 1x

Dataset Structure

  • images/: Contains all captured frames in PNG format
  • metadata.csv: Contains classification data for each frame

Metadata Columns

  • file_name: Relative path to the image file (e.g., images/frame_0001.png) - REQUIRED for Hugging Face
  • frame_id: Unique identifier for each frame
  • timestamp: Time in seconds when frame was captured
  • frequency: Audio frequency at capture time (Hz)
  • time_scale: Playback speed multiplier
  • capture_date: ISO date string of capture

Intended Use

This dataset is intended for training machine learning models on audio visualization patterns, waveform classification, or generative AI tasks.

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