Uniesse Exuma HTC5

Explore the high seas in style with the Uniesse Exuma HTC5, a luxurious motor yacht that exemplifies elegance and performance. Crafted with precision and designed for the utmost comfort, this remarkable vessel redefines the art of yachting.
Built in 2023, the Uniesse Exuma HTC5 stands as a testament to modern maritime engineering. Measuring 54 feet and 7 inches in length, with a beam of 15 feet and 2 inches, it offers a spacious and opulent interior that can accommodate up to 14 passengers, ensuring that your voyage is shared with loved ones and friends. The yacht’s semi-displacement hull shape not only enhances its aesthetic appeal but also contributes to a smooth and stable cruising experience.
Equipped with two powerful Cummins inboard engines of the QSC8.3 model, this motor yacht guarantees an exhilarating journey on the water. With a dry weight of 34,000 pounds, it strikes a balance between robust construction and nimble maneuverability. The Uniesse Exuma HTC5 is tailored for those who appreciate the finer things in life, boasting a tastefully designed interior, top-notch amenities, and meticulous attention to detail.
Experience the freedom of extended voyages, thanks to its impressive fuel capacity of 700 gallons and a freshwater capacity of 159 gallons. Whether you’re embarking on a leisurely coastal cruise or seeking adventure on the open ocean, the Uniesse Exuma HTC5 is your ideal companion. Immerse yourself in the world of maritime luxury and make unforgettable memories aboard this exceptional motor yacht. Contact us today to request pricing information and set course for an extraordinary maritime journey like no other.
Boat Details
Price | Request Price |
Year | 2023 |
Type | Power |
Class | Motor Yacht |
Length | 54 ft 7 in |
Fuel Type | Diesel |
Hull Material | Fiberglass |
Beam | 15 ft 2 in |
Dry Weight | 34000 lb |
Number of Engines | 2 |
Engine Type | Inboard |
Engine Make | Cummins |
Engine Model | QSC8.3 |
Max Passengers | 14 |
Fuel Tanks | 700 gal |
Fresh Water Tanks | 159 gal |
Hull Shape | Semi-Displacement |






















