



We apply a structured process that covers the entire path from design concept to final production. Through advanced simulations, topology optimization and material selection, we deliver efficient solutions tailored to different manufacturing methods.
We assess the technical and functional requirements of the design to define the most effective development and production strategy.
We apply advanced techniques such as topology optimization, FEM analysis and CFD simulation to enhance performance and reduce weight without compromising structural strength.
We transform the optimized design into a production-ready model, ensuring compatibility with manufacturing methods such as additive manufacturing, CNC machining, casting, forging and injection molding.
We design lightweight and strong structures that improve efficiency, durability and energy use – ideal for automotive, aerospace and advanced industries.
We tailor every design to the most efficient manufacturing process – additive manufacturing, CNC machining, casting or forging – from the very first sketch.
We validate early-stage designs with meshless FEM simulations, speeding up development and detecting structural issues early.
Our parametric models allow fast updates without losing logic or precision – perfect for evolving projects.
We apply standards used in top-tier automotive and aerospace programs: speed, accuracy, and optimization.
Less material, fewer iterations, fewer failures: we help reduce production costs and shorten time-to-market.
Every design decision is made with function in mind: structure, strength, efficiency. We don’t sell looks – we deliver results.
No salespeople, no middlemen. You speak directly with the person who designed the solution.
By applying advanced techniques such as topology optimization and metal additive manufacturing, we reduced the weight of each upright from 4.9 kg to 2.1 kg – a 57% reduction. In total, the vehicle saves 11.2 kg of weight.
This weight reduction results in:
Improved acceleration and 0.1–0.15 s faster from 0–100 km/h
Reduction of tire and brake wear.
Up to 0.5% fuel savings in endurance racing by improving energy efficiency
In motorsport, every gram matters. We turn structural optimization into a performance advantage. On track, it’s all about details.
Discover how we can optimize your components
Emphasize the expertise and knowledge of your team in developing and implementing neural networks
Mention your ability to customize solutions based on specific business requirements
Highlight your use of the latest tools and techniques in neural network development
Showcase successful case studies or client testimonials that demonstrate the effectiveness of your services
Working withNeuro has been a game-changer for our business. Their AI solutions have revolutionized our operations, enabling us to automate repetitive tasks and make data-driven decisions with ease. We couldn't be happier with the results."
Working withNeuro has been a game-changer for our business. Their AI solutions have revolutionized our operations, enabling us to automate repetitive tasks and make data-driven decisions with ease. We couldn't be happier with the results."
Machine Learning is a subset of AI that focuses on developing algorithms and models that allow computers to learn from data and improve their performance over time. It plays a crucial role in enabling AI systems to recognize patterns, make predictions, and adapt to new information.
Machine Learning is a subset of AI that focuses on developing algorithms and models that allow computers to learn from data and improve their performance over time. It plays a crucial role in enabling AI systems to recognize patterns, make predictions, and adapt to new information.
Machine Learning is a subset of AI that focuses on developing algorithms and models that allow computers to learn from data and improve their performance over time. It plays a crucial role in enabling AI systems to recognize patterns, make predictions, and adapt to new information.
Machine Learning is a subset of AI that focuses on developing algorithms and models that allow computers to learn from data and improve their performance over time. It plays a crucial role in enabling AI systems to recognize patterns, make predictions, and adapt to new information.
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