SEA

Building for a new era at sea.

PLATFORM

MERIDIAN

FOCUS

Maritime Platforms

BUILT FOR

Naval Architecture

Electric & Hybrid Propulsion

Autonomous Systems

Shipbuilding & Integration

BUILT FOR THE WATER

The ocean changes the requirements. At sea, endurance, efficiency, autonomy, survivability, and reliability are not features. They define the platform.

THE PLATFORM

BUILT AROUND THE MISSION.

Evermore develops maritime platforms from the operating requirement outward—integrating hull form, propulsion, energy, sensors, autonomy, and mission systems into a unified architecture.

From conventional and electrified vessels to autonomous surface systems, the goal is the same: engineer the platform around what the mission demands, rather than force the mission around the platform.

PERFORMANCE

MORE RANGE. MORE PERSISTENCE.

Maritime systems are defined by what they can carry, how far they can operate, how long they can remain on station, and how efficiently they convert energy into mission time.

1,000+ km

Range

35 kt

Speed

FROM DESIGN TO SEA

A PLATFORM ONLY WORKS WHEN THE SYSTEM WORKS TOGETHER.

/ 01

Naval Architecture

Mission-driven platform design balancing performance, stability, payload, survivability, and operating environment.

HULL-FORM & ARRANGEMENT

STABILITY & WEIGHT MANAGEMENT

SEAKEEPING & MANEUVERABILITY

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Electric & Hybrid Propulsion

Propulsion and energy systems engineered around the vessel's operating profile and mission endurance.

ENERGY STORAGE & POWER FLOW

PROPULSION SYSTEM INTEGRATION

THERMAL & SAFETY MANAGEMENT

/ 03

Autonomous Systems

Navigation, sensing, communication, and control integrated into a single mission system.

SENSOR FUSION

AUTONOMOUS NAVIGATION

MISSION & CONTROL SYSTEMS

/ 04

Production & Construction

Engineering carried through construction, integration, sea trials, and lifecycle support.

PRODUCTION DESIGN

SHIPYARD INTEGRATION

SEA TRIAL & PERFORMANCE SUPPORT

DEVELOPMENT & VALIDATION

FROM DESIGN TO WATER.

Evermore's maritime capability spans the full development path—from mission analysis and naval architecture to propulsion integration, production design, construction support, and sea trials.

By connecting engineering decisions directly to buildability, integration, and operating performance, we shorten the distance between concept and working vessel.

DEFINE → DESIGN → INTEGRATE → BUILD → VALIDATE