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The TRANSIENT function contains two controls to fine tune mix transients. The FG LEVEL maximization plugin offers the user complete control of their mix, before and after the level maximization process. The result is the most transparent means of level maximization the industry has ever heard, with extreme transparency, and no degrading artifacts common to peak limiters. For a snare drum transient, it will optimize the algorithm to preserve upper mid range punch. For example, if the ITP algorithm's lookahead identifies a kick drum transient, it will optimize the algorithm so that it preserves low frequency energy. It then optimizes a specialized set of saturation curves for that specific transient. The ITP process uses a complex lookahead detection algorithm to analyze oncoming transients and groups of transients. A new algorithm was formed, and the process was named "Intelligent Transient Preservation", or ITP. New ADVANCED ALGORITHMS were created to execute the extremely complex communication system that would be needed to properly perform the new dynamic operations. What they found, was that in order to transparently add level to a mix, a dynamic and intelligent transient saturation system would have to be developed. After several months of study and hundreds of listening tests, they made some fascinating discoveries. They started by researching saturation curves and their effect on various types of transient material. Two years ago Steven Slate and expert algorithm engineer Fabrice Gabriel started working out the concept for a digital audio process that could increase the level of a mix without altering the punch and dynamic feel, or make the mix sound squashed and lifeless.