Stemmer is a web platform that utilizes AI algorithms to automate the audio mastering process for music tracks, allowing users to upload their songs and receive a polished version in minutes. By integrating with Spotify's API, Stemmer tailors the mastering to specific sub-genres, enabling artists to enhance their tracks for better visibility on streaming platforms without the lengthy wait times associated with traditional audio engineering.
Funding
Funding not disclosed
Founders
Product
Problem
Independent music artists often face challenges in achieving professional-grade audio mastering due to budget constraints and long turnaround times associated with traditional audio engineers. This can hinder the quality and marketability of their music, limiting their potential reach on streaming platforms.
Solution
Stemmer provides an AI-powered web platform that automates audio mastering, enabling musicians to upload their tracks and receive a polished, release-ready version within minutes. By integrating with Spotify's API, Stemmer allows users to reference specific songs and tailors the mastering process to match the sub-genre characteristics of the reference track. This ensures that the mastered audio is optimized for streaming platforms, enhancing loudness and overall sonic quality. The platform offers a free preview, allowing artists to evaluate the results before committing to a purchase.
Target Audience
The primary target audience includes independent musicians, producers, and content creators who need affordable and fast audio mastering solutions for their music.
Features
- AI-driven audio mastering algorithm that optimizes loudness and sonic clarity
- Spotify API integration for sub-genre-specific mastering based on reference tracks
- Free preview option to evaluate mastering results before purchase
- Fast turnaround time, delivering mastered tracks in minutes
- User-friendly web interface for easy uploading and previewing
- Option to allow Stemmer to use uploaded songs to improve AI mastering machine learning model