TC Electronic Infinite Sample Sustainer

£100.00

This is a New TC Electronic Infinite Sample Sustainer from TC Electronic, listed in Specialist Effects Pedals on Just Pedals. Read More below.

View Just
more

The TC Electronic INFINITE SAMPLE SUSTAINER is an intuituive way to craft ambient soundscapes with your guitar. It samples your guitar signal and sustains it allowing you to play over ambient pads. This allows you to create amazing sonic worlds out of sustained notes and chords just with your guitar and a pedal. To add atmosphere it includes built-in reverb and modulation changing the sound of your sustain. Plus with infinite mode you can stack an indefinite number of layers making a dense cloud of sound. If you want to add atmosphere to your guitar work the INFINITE SAMPLE SUSTAINER is for you.

Related videos

Brand

TC Electronic

TC Electronic are known for innovative, studio-quality effects that combine great tone with modern technology. Founded in Denmark, they’ve shaped the sound of countless players with classics like the Hall of Fame Reverb, Flashback Delay, and Ditto Looper. Their gear is built for reliability and ease of use, offering a range of features that include lush ambient effects and precise tone shaping. Whether on stage or in the studio, TC Electronic deliver professional sound and creative flexibility trusted by musicians worldwide.

TC Electronic’s product lineup includes a wide range of guitar effects pedals known for their pristine sound quality, versatility, and cutting-edge features. From classic effects like delays, reverbs, and choruses to more experimental and unique pedals, TC Electronic offers a comprehensive selection to suit a wide range of playing styles and preferences.

Category

Specialist Effects Pedals

Specialist effects alter the signal in ways that do not sit cleanly inside one established family. They may use granular processing, frequency shifting, resonators, freeze or sustain, bit reduction, ring modulation, feedback networks or combinations of several techniques. The relevant distinction is the underlying process, its tracking or latency, and how completely the dry signal can be blended or replaced.