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Eris Eco 5.0 CRi with FREE ISOLATION CONE PACK
EXCLUSIVE ATACAMA ONLINE OFFER! (UK CUSTOMERS ONLY)
Based on the award winning ERIS Eco 5.0, the ERIS Eco 5.0 CRi (Corner Room installation) version has been designed so as to fit into a 90 degree corner of your living space. This pack consists of a 2 shelf base module and two single shelf modules giving a total of four levels of storage! Price shown is with Natural Bamboo coloured shelving. Medium Finish or Dark finished Bamboo shelves can be specified as a cost option.
ERIS Eco 5.0 Hi Fi was awarded WHAT HIFI? SOUND AND VISION magazines "BEST EQUIPMENT SUPPORT" WINNER 2012 and 2013.
Featuring high density carbonized bamboo resin composite material for the shelving, This ERIS Eco 5.0 CRi version utilizes handmade fully welded powder coated steel frame modules fitted with mini isolation gel pads designed to decouple the framework from the supported bamboo panels. Each module is then isolated from the next via three fully adjustable 8mm carbon steel spikes. To help further dissipate sonic resonance while reducing mass within each shelf, channels have been incorporated into the underside of each bamboo panel. These channels also act as a means of enclosing the main module framework resulting in a hifi support that offers excellent value, high performance and a clean, stylish modern design. ERIS Eco CRi is made in the UK.If more modules are required, order one of these base and two shelf module packs then go to the standard ERIS Eco 5.0 CRi module pages where individual shelf modules can be specified. This will ensure that you receive your FREE pack of 4 Atacama Solid Brass Isolation Cones! This Isolation Cone offer is available in the UK only on orders placed on the Atacama website.
Bamboo is a natural material so colour, texture, grain and age may give a variable appearance to each shelf. Because of this, adding an extra shelf at a later date will introduce a batch / colour tone difference. Where possible order your Eris as a complete modular support with enough levels to fulfill possible future requirements in order to minimize this variation.