UAE capability. Global ambition.

High-performance
electric propulsion.
Designed around
your mission.

Veltrix is developing integrated electric propulsion systems for electric and hybrid-electric aircraft across a range of platforms and missions. Our approach brings together motor, power electronics, controls and thermal engineering around the requirements of the platform.

REPRESENTATIVE PROPULSION ARCHITECTURE CONCEPT VIEW
Representative exploded electric propulsion architecture showing a single rotor and shaft assembly, copper-wound stator, bearing endshields and exposed inverter electronics.
Motor architecture Thermal management Power electronics & controls
Representative integrated propulsion architecture. Concept visual; final configuration is shaped by platform and mission requirements.
Based in Abu Dhabi, UAE Electric & hybrid-electric platforms Motor · Power electronics · Controls · Thermal
Start with the mission

Your platform sets
the requirements.

Payload, endurance and operating conditions shape the propulsion system. Our approach considers these requirements together, from early sizing through to integration.

01 / PERFORMANCE

Power where it matters

Understand peak and continuous demand across take-off, climb, cruise and landing.

02 / ENERGY

Every kilogram counts

Explore the trade-offs between propulsion weight, energy use, payload and endurance.

03 / ENVIRONMENT

Designed for the conditions

Consider ambient temperature, cooling constraints and sustained operation from the outset.

04 / INTEGRATION

A fit for your platform

Align electrical, mechanical and control interfaces with the aircraft architecture.

A practical first engagement

Define the propulsion
your platform needs.

Planning an electric or hybrid-electric aircraft? A scoped propulsion sizing and feasibility study can help you compare options and identify the next engineering decisions.

Discuss a sizing study

Start with a non-confidential discussion. Study scope, deliverables, timing and fees are agreed before work begins.

INDICATIVE STUDY OUTPUTS

01

Mission & power requirements

A propulsion demand profile and energy estimate based on your mission and platform inputs.

02

Motor & inverter sizing

Indicative ratings, electrical requirements and key integration interfaces.

03

Architecture & feasibility

Assessment of weight, packaging and thermal trade-offs across candidate configurations.

04

A clear next decision

A recommended direction, with assumptions, principal risks and a proposed validation plan.

01Initial requirements discussion
02Agreed scope & commercial proposal
03Study delivery & findings review
Our development approach

Engineering the complete
propulsion system.

Our development programme targets improved power delivery, efficiency, thermal resilience and reliability through coordinated design of the propulsion components.

Motor

Power-to-weight and efficiency objectives shaped by the application.

Power electronics

Inverter selection and development matched to motor and platform needs.

Control software

Motor control and platform interfaces developed around operating requirements.

Thermal engineering

Cooling and hot-ambient validation planned into the development programme.

Health monitoring

Planned telemetry and condition monitoring to support future in-service insight.

Development objectives and planned capabilities. Product performance will be established through testing.

Applications

Electric propulsion across
aircraft platforms.

Our propulsion development is shaped around the needs of fixed-wing, rotary-wing and VTOL aircraft, spanning crewed and uncrewed applications. Platform requirements guide motor sizing, integration and performance objectives.

01 / UAV & AUTONOMOUS AIRCRAFT

Endurance.
Mission flexibility.

Applications include surveillance, reconnaissance, inspection and mapping, with propulsion requirements shaped by payload, endurance and operating conditions.

02 / CARGO & UTILITY AIRCRAFT

Useful payload.
Practical range.

Electric and hybrid-electric aircraft for freight, resupply and utility missions, balancing propulsion weight, power demand and range.

03 / ADVANCED AIR MOBILITY

Vertical lift.
Efficient flight.

Electric and hybrid-electric VTOL and other advanced aircraft concepts, with propulsion sized around lift, transition and cruise requirements as applicable.

Built on aerospace experience

UAE ambition.
An international perspective.

Based in Abu Dhabi, Veltrix is pursuing an independent electric propulsion capability with global commercial potential. Our focus is practical: develop the technology, build test evidence and work with customers around real platform requirements.

AEROSPACE PROGRAMMES ELECTRIC PROPULSION AIRCRAFT DEVELOPMENT
Let's start a conversation

What does your
next platform need?

Tell us about your mission, programme stage and propulsion challenge. We can discuss where a sizing study or development collaboration could help.

hello@veltrixpropulsion.com