The performance sailing catamaran "EOS" has been built in full carbon sandwich construction using vacuum-infusion technology. The design is based on the TAG 60 of well-known designer Greg Young which has been modified to comply with the owner's individual requirements regarding performance, seaworthiness and structural integrity.
The modifications have been developed in agreement with the designer and structural engineers.
During the entire production process the owner did not compromise quality, which can be proved in each detail.
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The entire interior follows the hull structure almost without hidden parts.
Structural members of the yacht are visible, which creates light and technical interior without any covers and just a few additional furniture.
Most of the surfaces are either high gloss carbon laminate, or white coated, only a few areas are covered with textile fabric.
The port hull includes an aft double cabin separated by a sliding door with storage and desk area midship, as well as a bathroom with shower and carbon toilet in the front.
The starboard hull provides a double cabin separated by a sliding door in the aft, a day toilet midship and a double cabin with two single beds, storage, a bathroom with carbon toilet and shower in the front.
The bow peaks provide storage for fenders and mooring lines as well as a Bauer diving compressor on port side and a carbon rack for three diving cylinders on starboard side.
Access to the bow peaks effects on high grade carbon ladders with wooden inlays.
All Mattresses and cushions are found almost as new.
The engine rooms on the aft end of the hulls can be accessed from the cockpit with carbon stairs and from the transom stairs.
Engines: 2 x 75 HP YANMAR SD 60 with GORI 3 blade folding propellers
Double filtration system and fire-fighting system provide additional safety
The U-form pantry on port side is fully equipped with tree fridges, deep freezer, double sink, induction with 4 plates, microwave, galley extractor hood and espresso machine. Work top with high gloss full carbon surface.