ONE SYSTEM.
ENGINEERED
AS A WHOLE.

A complete electric powertrain architecture combining energy storage, high-voltage distribution, conversion, propulsion, control and digital intelligence.

System philosophy

MORE THAN A COLLECTION OF COMPONENTS.

The performance of an electric vessel is defined by how its systems work together. eDriveLAB develops the powertrain as one coordinated architecture rather than a set of independent components.

Energy flows, communication, safety logic, thermal management, charging strategy and propulsion control are considered together from the earliest design phases.

Architecture

FROM ENERGY
TO PROPULSION.

Energy StorageSolid State, SafeLi and pressure-tolerant battery systems.
Power DistributionHV switching, protection, pre-charge and power routing.
Power ConversionInverters, DC/DC and AC/DC conversion.
PropulsionDeepSpeed Jet and electric motor integration.
Control & IntelligenceSupervision, redundancy, safety and energy logic.
Digital EcosystemHMI, datalogging, diagnostics and cloud connectivity.
ChargingShore charging interfaces and charging coordination.

Design principles

BUILT AROUND THE VESSEL.

01

Integrated by design

System boundaries, interfaces and operating modes are defined as one coordinated architecture.

02

Redundancy first

Protection concepts, fault handling and safe operating states are considered at system level.

03

Energy-aware control

Power flows and system operation are optimized around the vessel mission profile.

04

Marine interfaces

Electrical, mechanical, cooling and communication interfaces are engineered together.

05

Tested as a system

Integration and validation activities reproduce the final vessel configuration as closely as possible.

06

Data-driven operation

Diagnostics and monitoring support commissioning, operation and optimization.