Transposes polyphonic audio material (full mixes, complex recordings) while maintaining the original tempo and avoiding the 'chipmunk' or 'slow-motion' effects of traditional pitch shifting.
Allows users to create custom pitch mappings for individual harmonics within the audio material, enabling creative sound design and musical transformations beyond simple transposition.
Automatically adjusts vocal formants during pitch processing to maintain natural vocal characteristics and prevent the 'helium voice' effect common in vocal pitch manipulation.
Provides visual feedback of detected pitches and harmonics as audio plays through the plugin, helping users understand what the algorithm is processing and how adjustments affect the material.
Adjusts the processing intensity to balance between transparency and artifact reduction, giving users control over how aggressively the algorithm processes difficult material.
Available as VST, AU, and AAX plugins compatible with all major DAWs on both Windows and macOS platforms.
Music producers and mastering engineers use PITCHMAP to change the key of completed music mixes for synchronization with video, adaptation for different vocalists, or creative experimentation. Unlike traditional methods that require re-recording or destructive time-stretching, PITCHMAP can transpose full mixes by semitones while maintaining the original tempo and mix balance. This is particularly valuable in film scoring where music may need adjustment to match edited scenes, or in commercial production where a track needs to fit a specific mood or vocal range.
Forensic audio analysts and restoration specialists use PITCHMAP to correct pitch issues in historical recordings, surveillance audio, or damaged media where the original pitch has been affected by playback speed variations or degradation. The polyphonic processing allows correction of complex audio material without introducing the phase artifacts common in traditional restoration tools. This enables clearer analysis of evidentiary recordings or improved listening experiences for archival releases where the original recording conditions cannot be replicated.
Sound designers and synthesizer programmers use PITCHMAP's harmonic remapping capabilities to create entirely new sounds from existing audio material. By reassigning harmonics to different pitch relationships, they can generate evolving textures, metallic resonances, or otherworldly effects that would be difficult or impossible to create with traditional synthesis or sampling methods. This is particularly valuable in film sound design, game audio, and electronic music production where unique sonic signatures are essential.
Vocal producers and mix engineers use PITCHMAP to adjust vocal performances within full mixes, correct pitch issues in group vocals, or create harmonized layers from single vocal takes. The intelligent formant correction maintains natural vocal characteristics while the polyphonic processing allows vocals to be adjusted within context rather than in isolation. This enables subtle tuning of lead vocals in finished mixes or creative generation of background harmonies without requiring additional recording sessions.
Music educators and analysts use PITCHMAP to demonstrate harmonic relationships, analyze complex musical textures, or create practice materials at different pitch levels. The ability to isolate and manipulate specific harmonic components makes it valuable for teaching music theory, ear training, and audio production techniques. Researchers can use it to study tuning systems, instrumental timbres, or historical performance practices by manipulating recordings while maintaining their essential characteristics.
Audio post-production engineers working in film, television, and broadcasting use PITCHMAP to match audio elements across different scenes, adjust music to fit edited sequences, or correct pitch issues in location dialogue recordings. The transparent processing allows adjustments to be made during the final mix stage without requiring re-recording or compromising audio quality. This is particularly valuable in fast-paced broadcast environments where quick adjustments are needed to meet air deadlines.
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