LEAP 71
LEAP 71 is a Dubai-based computational engineering company developing AI-driven design systems, notably the Noyron model, to autonomously generate manufacturable physical product designs. It serves aerospace and space propulsion customers through engineering services and technology licensing.
- Company typePrivate
- Founded2023
- HeadquartersDubai, United Arab Emirates
- Headcount1–10
- GTM typeB2B
- OfferingSoftware
What LEAP 71 does
LEAP 71 is a Dubai-based computational engineering company founded in 2023 by aerospace engineer Josefine Lissner (CEO) and serial entrepreneur Lin Kayser. The company develops AI-driven design systems that autonomously generate manufacturable physical product designs, removing the need for manual CAD modeling. Its core technology is Noyron, a proprietary Large Computational Engineering Model that encodes expert domain knowledge, physics (including thermal models), manufacturing process rules, and related data into a coherent algorithmic framework. Noyron generates geometry, manufacturing parameters, predicted performance, and numerical fields for direct transfer to simulation and additive manufacturing systems. The platform is supported by specialized variants — Noyron RP for rocket propulsion (injector heads, bell-nozzle combustion chambers, aerospike engines), Noyron EA for electromagnetic actuation, and Noyron HX for heat exchangers — and is built on PicoGK, LEAP 71's open-source geometry kernel released under Apache 2.0.
LEAP 71 operates a hybrid revenue model combining engineering-as-a-service and technology licensing. In its services business, the company co-develops bespoke computational models with enterprise customers, providing ongoing access to the evolving codebase and culminating in structured handover and training. In parallel, it licenses specialized Noyron variants (e.g., Noyron RP) under multi-year renewable agreements to partners building propulsion systems. Primary customers sit in aerospace and space propulsion — notably Aspire Space (engines for the fully reusable Oryx spacecraft, including 200 kN aerospike and bell-nozzle configurations) and The Exploration Company (Noyron RP license for the Typhoon full-flow staged combustion engine). The company also collaborates with a global network of additive manufacturing partners (Nikon SLM Solutions, Farsoon, HBD, Eplus3D, Aconity3D, AMCM, Solideon) to validate designs against the limits of large-scale metal 3D printing, and with aerospace qualification partners (MIMO TECHNIK, ASTRO Test Lab) for certification of flight-critical hardware.
Geographically, LEAP 71 is headquartered in Dubai, UAE and serves customers globally across the US, Europe, East Asia, and the Middle East. The organization remains deliberately small, operating with two co-founders and explicitly relying on algorithmic and compute scaling rather than headcount expansion for growth. LEAP 71 has demonstrated a cadence of approximately one new rocket engine design and hot-fire every 30 days, including meganewton-class reference designs (200 kN aerospike XRA-2E5 and 2000 kN bell-nozzle XRB-2E6), with designs reaching first flame in under three weeks.
LEAP 71 firmographics
Firmographics- Name
- LEAP 71
- Legal name
- LEAP 71
- Website
- https://leap71.com
- Company type
- Private
- Founded year
- 2023
- Operating status
- Operating
- Headcount range
- 1–10 employees
- Short description
- LEAP 71 is a Dubai-based computational engineering company developing AI-driven design systems, notably the Noyron model, to autonomously generate manufacturable physical product designs. It serves aerospace and space propulsion customers through engineering services and technology licensing.
- Ownership category
- akta.pro rank
LEAP 71 industry classification
Industry- Product category
- Computational Engineering Software
- NAICS
- Guided Missile and Space Vehicle Propulsion Unit and Propulsion Unit Parts Manufacturing (336415)
- SIC
- Guided Missiles & Space Vehicles & Parts (3760)
- akta.pro primary industry
- Rocket Engines (Liquid) (IMABADAE)
- akta.pro secondary industries
- Launch Vehicles & Orbital Rockets (IMABACAA), Nozzles, Thrust Vectoring & Exhaust Systems (IMABADAL), Prototype Program Management & Low-Volume Pilot Runs (Bridge to Production) (IMAAAFAO)
Keywords
Where LEAP 71 is headquartered
LocationHeadquarters
- HQ city
- Dubai
- HQ country
- United Arab Emirates
- HQ region
- Middle East
Offices1 record
Markets served
LEAP 71 business model
Business model- GTM type
- B2B
- Offering type
- Software
- Cost components
- Personnel, Technology or R&D, Operations
Revenue model
- Computational Engineering Services: Engineering-as-a-service model where LEAP 71 co-develops computational models tailored to specific engineering challenges with customers. Projects involve collaborative development, ongoing code access, and structured handover with training.
- Technology Licensing: Licensing of Noyron RP technology to partners such as The Exploration Company under multi-year renewable agreements for propulsion component geometry generation.
Go-to-market motion1 record
Distribution channels1 record
Marketing channels4 records
LEAP 71 product offering
Product offeringCore offering
LEAP 71 develops Noyron, a proprietary Large Computational Engineering Model that autonomously generates manufacturable designs for complex physical objects (parts, structures, and entire machines) without manual CAD modeling. The company also provides engineering-as-a-service, co-developing computational models tailored to customers' engineering challenges in fields such as aerospace propulsion, electric mobility, and thermal systems, and licenses its technology (notably Noyron RP) under multi-year agreements to partners such as The Exploration Company.
Product overview
LEAP 71 offers a computational engineering platform centered on Noyron, a Large Computational Engineering Model that autonomously generates designs for complex physical objects without human intervention. The platform includes specialized models for rocket propulsion (Noyron RP), electromagnetic actuation (Noyron EA), and heat exchangers (Noyron HX). Built on PicoGK, an open-source geometry kernel, the system outputs manufacturable geometry directly to industrial 3D printing and other digital manufacturing processes. LEAP 71 provides engineering as a service, co-developing computational models tailored to specific engineering challenges and enabling customers to generate production-ready designs for a class of physical objects.
Differentiator
Problem solved
Functional benefit
Products and services
- Noyron Large Computational Engineering Model Foundational proprietary computational model that encodes expert domain knowledge, physics (including thermal models), manufacturing process rules, and related data in one coherent framework. Autonomously generates manufacturable geometry, manufacturing parameters, predicted performance, and numerical fields for simulation systems — without manual CAD modeling — for general engineering applications across aerospace, electric mobility, heat exchangers, and bioprinting.
- Noyron RP (Rocket Propulsion Computational Engineering Model) Specialized computational engineering model for designing rocket propulsion systems, built on Noyron. Generates spacecraft components including injector heads, bell-nozzle combustion chambers, and aerospike engines using analytical thermal and thrust models encoded in an algorithmic framework; supports reference designs up to meganewton-class thrust. Licensed to The Exploration Company for the Typhoon full-flow staged combustion engine and the Nyx orbital resupply capsule.
- Noyron EA (Electromagnetic Actuation Computational Engineering Model) Computational Engineering Model for electromagnetic actuation and locomotion applications, one of the specialized CEMs built by LEAP 71 on the Noyron foundation for electric mobility and robotics components.
- Noyron HX (Heat Exchanger Computational Engineering Model) Computational Engineering Model for heat exchanger design and thermal management, including fractal-folding algorithms for extreme-temperature applications such as the AI-designed 1.5 m hypersonic precooler demonstrated with Farsoon at Formnext 2025.
- PicoGK Award-winning, compact, robust open-source geometry kernel for Computational Engineering. Written in C++ (runtime) with a C# higher-level layer, it enables creation of sophisticated computational geometry objects with an intentionally reduced but robust instruction set, and is released under the Apache 2.0 license.
- LEAP 71 ShapeKernel Abstraction layer for computational geometry built on PicoGK that makes it easier to build sophisticated parts. Released as open-source on GitHub alongside PicoGK.
- Computational Engineering Services Engineering-as-a-service offering in which LEAP 71 co-develops computational models tailored to specific engineering challenges with enterprise customers, works alongside customer teams to encode construction processes into algorithmic systems, provides ongoing access to the evolving codebase, and concludes with structured code handover and training.
Companies that use LEAP 71
Customer profileNamed customers2 records
Segments3 records
Ideal customer profiles2 records
LEAP 71 technology and API
TechnologyTechnology focussed Yes
API detail
- Has API
- No
- API docs
- API detail
Core technology
AI maturity
App detail
AI capability5 records
Feature5 records
LEAP 71 partnerships and signals
Strategic signalPartnerships
13 partnerships are on record, tiered core, key and supporting.
- SindancoreStrategic alliance to integrate autonomous engineering design with advanced production capabilities for aerospace applications. Centers on LEAP 71's Noyron platform combined with Sindan's integrated manufacturing ecosystem featuring over 40 large-scale metal additive systems and 300+ polymer systems. Enables rapid pipeline from design specification to serial production targeting jet engines and space propulsion systems in UAE.
- The Exploration CompanycoreFive-year renewable licensing agreement for Noyron RP technology to support development of next-generation rocket engines including Typhoon full-flow staged combustion engine. TEC integrating Noyron RP into internal computational engineering program for propulsion component geometry generation.
- HBD (Shanghai Hanbang United 3D Tech)coreProduction partnership to manufacture world's largest 3D-printed aerospike rocket engine (XRA-2E5, 200 kN). Printed on HBD 800 ten-laser metal powder bed fusion system in 289 continuous hours. Collaboration to align Noyron design strategy with HBD's additive manufacturing capabilities.
- Aspire SpacecoreLandmark agreement to develop rocket engines for Oryx fully reusable spacecraft. LEAP 71 contracted to develop second-stage engines producing 200 kN thrust each. Pursuing both conventional and novel aerospike configurations. Oryx capable of delivering up to 15 tons to LEO (3 tons fully reusable).
- Farsoon TechnologiescoreCollaboration to produce AI-designed hypersonic precooler for single-stage-to-orbit vehicles. Printed 1.5-meter monolithic precooler on FS811M-U-8 printer, one of world's largest metal additive manufacturing platforms. Fractal folding algorithm for managing extreme temperatures at hypersonic speeds.
- Nikon SLM SolutionscoreCollaboration to produce large-scale metal additive manufacturing parts for rocket propulsion systems. Successfully produced 600mm diameter injector head for 2000 kN XRB-2E6 engine using NXG 600E system with 12 lasers. Over two years of partnership with manufacturing validation milestones.
- Aspire SpacecoreStrategic partnership to develop large reusable launch vehicle capable of delivering up to 15 metric tons to LEO. LEAP 71 creates complete propulsion stack using Noyron. First-stage engines based on XRB-2E6 reference design (2000 kN methalox).
- Aconity3DkeyManufactured 5 kN aerospike rocket engine using advanced Metal Powder Bed Fusion technology. Optimized scan strategies and print parameters for copper alloy (CuCrZr) cooling channel integrity. Engine completed in under 62 hours.
- Eplus3DkeyJoint production of world's largest single-piece 3D-printed rocket thruster (200 kN). Printed on EP-M650-1600 Metal Powder Bed Fusion system with six 500W lasers. 1.3+ meter tall thruster printed in 354 hours using AlSi10Mg aluminum alloy.
- AMCMsupportingGerman metal 3D printing company that produced the 5 kN Noyron TKL-5 rocket thruster using EOS M290 printer. Collaboration for early engine validation and demonstration of computational engineering capabilities.
- SolideonsupportingCollaboration on multi-meter-scale hardware for space applications. Interface between LEAP 71's computational models and Solideon's Aperture robotic manufacturing system combining wire-arc 3D printing, CNC milling, and subcomponent assembly.
- MIMO TECHNIKsupportingThree-party agreement with MIMO TECHNIK (US aerospace metal 3D printing) and ASTRO Test Lab (qualification/certification). End-to-end workflow for design, manufacturing, and validation of computationally engineered aerospace products. Enables ITAR/AECA compliant projects.
- ASTRO Test LabsupportingThree-party agreement for full qualification, validation, and certification of 3D printed flight-critical hardware. First lab dedicated to certification of computationally engineered products for aerospace applications.
Scale indicators5 records
Recent moves6 records
Expansion highlights5 records
LEAP 71 competitors and assessment
Company assessmentDirect peers
- nTopology: Computational engineering platform that turns engineering constraints into optimized, manufacturing-ready geometry for additive manufacturing. Closely comparable to Noyron in the problem it solves (design automation for AM) and the customer segment (aerospace, automotive, industrial).
- Rocket Lab: Operating launch provider with significant in-house 3D-printed engine content (Archimedes, Rutherford). A natural large-customer peer for computational-engineering tooling and a benchmark for what 'scaled' 3D-printed propulsion looks like commercially.
- Relativity Space: 3D-printed launch vehicle and engine company (Terran R, Aeon engines). Comparable as a fellow computational / additive-propulsion player targeting orbital-class rockets, and a natural candidate to license or partner with Noyron RP.
- Ursa Major: Independent US propulsion startup building advanced liquid rocket engines (Hadley, Ripley, Viper). Comparable as a customer archetype for Noyron RP — a propulsion prime that needs compressed design cycles and could license LEAP 71's computational stack.
- Hyperganic: Founded by Lin Kayser in 2014, Hyperganic is the predecessor venture to LEAP 71 and pioneered computational / algorithmic design for industrial 3D printing. Josefine Lissner also served as Strategic Engineering Lead there. It is the most directly comparable company in mission, technology lineage, and target use cases.
Broad incumbents
- Ansys: Dominant CAE / simulation incumbent whose physics solvers are already integrated into most aerospace design workflows. Comparable as the broad incumbent whose tools LEAP 71's outputs feed into (Noyron outputs numerical fields for simulation systems) and whose customers LEAP 71 is selling into.
- Altair: Simulation-driven design (Inspire, OptiStruct) and a long-standing player in engineering optimization. Comparable as a broad CAE incumbent offering generative / topology-optimized design capabilities that overlap with Noyron's physics-driven approach.
- Autodesk (Fusion 360 / generative design): Generative design functionality inside Fusion 360 is the closest incumbent offering to Noyron's value proposition. Autodesk is a broad incumbent across CAD/CAM/CAE rather than a specialist, but represents the mainstream alternative LEAP 71 must displace or coexist with.
Emerging players
- PhysicsX: AI-for-engineering simulation startup applying deep learning to physics simulation across aerospace, automotive, and energy. Comparable as an emerging AI-native competitor attacking the same 'AI for physical engineering' wedge that Noyron occupies.
- Citrine Informatics: AI platform for materials and chemicals engineering. Comparable as an emerging AI-for-engineering peer with a similar 'data + physics' approach, focused on materials rather than full system design.
Market position
Strengths5 records
Weaknesses5 records
Competitive moat5 records
Key risks7 records
Key highlights7 records
Customer concentration
LEAP 71 social profiles
Digital presenceLEAP 71 financial estimates
Financial estimateRevenue estimate
Valuation estimate
LEAP 71 leadership team
Management profileNumber of profiles
Profiles2 records
LEAP 71 funding detail
Funding detailFunding overview
Funding rounds
Investors
Funding detail is available on the Subscription and Enterprise plan.Contact sales →
LEAP 71 M&A and investment
M&A and investmentM&A
Investments
M&A and investment is available on the Subscription and Enterprise plan.Contact sales →
Frequently asked questions about LEAP 71
What does LEAP 71 do?
LEAP 71 develops Noyron, a proprietary Large Computational Engineering Model that autonomously generates manufacturable designs for complex physical objects (parts, structures, and entire machines) without manual CAD modeling. The company also provides engineering-as-a-service, co-developing computational models tailored to customers' engineering challenges in fields such as aerospace propulsion, electric mobility, and thermal systems, and licenses its technology (notably Noyron RP) under multi-year agreements to partners such as The Exploration Company.
Is LEAP 71 a public or private company?
LEAP 71 is a private company. It is classified as founder individual operated bootstrapped and is currently operating.
When was LEAP 71 founded?
LEAP 71 was founded in 2023. It employs 1 to 10 people.
Where is LEAP 71 based?
LEAP 71 is headquartered in Dubai, United Arab Emirates, in the Middle East region.
How does LEAP 71 make money?
Two revenue lines are on record. Computational Engineering Services are the primary driver. The others are technology Licensing.
Who are LEAP 71's main competitors?
Direct peers on record are nTopology, Rocket Lab, Relativity Space, Ursa Major and Hyperganic. Broad incumbents are Ansys, Altair and Autodesk (Fusion 360 / generative design). Emerging players are PhysicsX and Citrine Informatics.
Does LEAP 71 have an API?
No public API is recorded for LEAP 71.
What industry is LEAP 71 in?
LEAP 71's product category is Computational Engineering Software. Its primary akta.pro industry code is IMABADAE, Rocket Engines (Liquid), with a secondary code of IMABACAA, Launch Vehicles & Orbital Rockets. Its NAICS code is 336415 and its SIC code is 3760.