ENKI — Field-validated engineering

Electric foil platforms and POD propulsion, proven in real operations.

ENKI is the engineering backbone behind operational electric boats deployed in real public-use environments and partner sites. We build platforms that remain stable, safe, and industrializable — and we develop propulsion bricks that can be produced and transferred.

Current boat Operational
Marine GT Platform
Next platform Evolution

Results & field proof

ENKI is not a concept. It’s a validated technical stack shaped by real users, operators, and constraints.

3 seasonsField validation (2022–2025) in public-use conditions
6000 usersBroad profiles tested: kids, adults, families, groups
2500 hEngine hours accumulated through real operations
What the field taught us (and what we fixed)

The platform was iterated under real conditions: varying weights, public cockpit misuse, algae/debris tolerance, safety supervision, charging logistics, and rotation in operation. The result is a stabilized architecture.

  • Stability and safety before “marketing flight”
  • Low power lift: efficiency first, not speed at any cost
  • Propulsion pivot driven by duty cycle reality: gearbox → POD
Operational environments & traction

Real deployments created a clear view of what scales: resort/hotel use, guided tours, and leisure platforms that are easy to operate.

Partner sites
Public-use conditions
Hotels & resorts
45–60 min tours
What ENKI delivers today
  • Validated foil platform architecture (multiple hull forms)
  • POD propulsion brick (industrializable)
  • Electronics & safety logic integrated in design
  • Molds / tooling and documented learnings
Discuss a use case or an industrial transfer
Fleet sizing, operating rules, integration constraints, production roadmap.
Get in touch

How it works (engineering perspective)

Lift, power, stability, and operational simplicity — explained as engineering, not marketing.

1. Low-power lift, not “full flight”

ENKI focuses on efficiency before planing. The foil reduces drag and stabilizes the platform at practical speeds.

2. Operator-grade control logic

Designed for real operations: easy start, predictable handling, quick stop, simple docking and re-boarding.

3. Propulsion designed for duty cycle

Intensive public use requires robustness. ENKI pivoted to a dedicated POD approach for reliability and maneuverability.

Technology stack

Foil + propulsion + embedded electronics. A full stack built to be transferred and produced.

Foil & stability architecture

Validated for public use: stable, tolerant, efficiency-first.

Foil skimming
Stability
Electric POD propulsion

A propulsion brick designed for intensive cycles and tight maneuvering.

Industrializable
Duty cycle
Angle-drive know-how

Engineering learning path that shaped the POD pivot and future roadmap.

Packaging
Roadmap

Platforms built

Multiple expressions of the same validated architecture: operational boat, Marine GT, and an automotive-inspired platform.

Operational platform

The “works every day” platform shaped by public operations.

Marine GT

Premium platform architecture validated through the same technical stack.

Automotive-inspired platform

Iconic design built on validated engineering, aligned with industrial transfer goals.