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Audio Origami – AMPodium Amplifier Isolation Platform

£600.00
The AMPodium by Audio Origami is a high-end isolation platform for amplifiers that protects the signal from ground-based resonance
Crafted from thick, rigid perspex and combined with highly effective isolation pillars, the AMPodium stops harmful vibrations degrading the audio signal.
Designed for large amplifiers and mono-blocks. the AMPodium provides a safe and stable platform that promotes cooling as well as excellent isolation.

Audio Origami – IsoPodium

£500.00
The perfect isolation platform for audiophiles with high-performing source components.
Crafted from thick, rigid perspex and Audio Origami's outstanding isoPods isolation feet, the isoPodium reduces vibrations reaching your turntable, DAC or CD Player.
The isoPodium looks superb, frees your source component from audible resonances and enhances your musical enjoyment by delivering purer playback.

Audio Origami – isoRac – 2 Tiers

£995.00£1,495.00
The Audio Origami isoRac is a stunning hi-fi rack system designed to reduce vibrations that degrade the audio signal.
Crafted from rigid perspex, carbon fibre legs and highly effective isolation pillars, the PuraNota isoRac allows your audio equipment to perform to its highest level by reducing ground borne vibrations entering the signal path.

Audio Origami – isoRac – 3 Tiers

£1,515.00£2,015.00
The Audio Origami isoRac is a stunning hi-fi rack system designed to reduce vibrations that degrade the audio signal.
Crafted from rigid perspex, carbon fibre legs and highly effective isolation pillars, the PuraNota isoRac allows your audio equipment to perform to its highest level by reducing ground borne vibrations entering the signal path.

Audio Origami – isoRac – 4 Tiers

£2,035.00£2,535.00
The Audio Origami isoRac is a stunning hi-fi rack system designed to reduce vibrations that degrade the audio signal.
Crafted from rigid perspex, carbon fibre legs and highly effective isolation pillars, the PuraNota isoRac allows your audio equipment to perform to its highest level by reducing ground borne vibrations entering the signal path.