R&D and Product engineering

We develop complex physical products that integrate advanced mechanisms, motion systems, electronics, sensors, and a diverse range of materials and manufacturing technologies.
Our team manages the entire product development lifecycl, from initial architecture to mass production. By integrating industrial design, mechanical engineering, and electronics, we transform complex concepts (like mechatronics and HMI systems) into scalable, industrial-grade products. Through functional prototyping, rigorous testing, and Design for Manufacturing (DFM), we validate functionality, ergonomics, and cost-efficiency at every stage.
25
+
PATENTS DEVELOPED ACROSS INNOVATION PROJECTS
10M€
IN R&D PROJECTS MANAGED
15
YEARS OF PRODUCT DEVELOPMENT EXPERIENCE
150
PRODUCTS TAKEN TO MANUFACTURING SCALE-UP

R&D and product development capabilities

Lúcid tackles this challenge by combining engineering, design, and prototyping to deliver viable technical solutions.

Industrial product design

We deliver practical, user-centric designs by integrating ergonomics, materials, and technical constraints from day one, ensuring manufacturability for complex mechanical and HMI systems.

Product architecture and engineering

We define robust architectures that seamlessly integrate mechanical and electronic systems, ensuring high performance and reliability in complex mechatronic equipment.

Advanced prototyping and technical validation

e build functional prototypes to validate technical decisions, test real-world performance, and mitigate risks prior to mass production.

Product industrialisation

We prepare products for efficient, scalable manufacturing by applying Design for Manufacturing (DFM) principles and collaborating closely with industrial suppliers.

Sectors We Serve

Consumer electronics and home appliances

We develop connected, mass-market devices, from IoT to complex dispensing systems, by seamlessly balancing mechanics, electronics, and user experience.

Medical equipment and healthcare devices

We engineer high-precision, reliable clinical solutions that strictly adhere to safety and regulatory standards.

Industrial equipment and machinery

We design robust, heavy-duty machinery, optimizing product architecture and kinematics for intensive industrial environments.

Mobility and mcicro-mobility

We integrate structural mechanics, electronics, and UX to create innovative light vehicles and urban transport solutions.

Retail and physical product experience

We develop interactive point-of-sale systems, including vending and automated dispensing equipment, fusing technology with an engaging user experience.

Product development methodology

Developing a new product is about reducing technical uncertainty, validating solutions, and preparing for the factory floor. Our methodology combines exploration, validation, and progressive development to turn an idea into an industrial reality.

Scoping and challenge definition

We define technical requirements, goals, and timelines to deliver a clear development roadmap.

Feasibility and project alignment

We validate the business case and assist with R&D funding to secure internal and external resources.

Proof of Concept (PoC)

We build exploratory prototypes to verify core technologies and mitigate technical risks early on.

MVP — Functional prototype

We integrate mechanics and electronics into the first complete, working prototype for real-world testing and architectural validation.

Design and product experience

We refine the industrial design, ergonomics, materials, and UX/UI to ensure a seamless user interaction.

Final engineering and design for manufacturing (DFM)

We optimize components and processes to guarantee cost-effective, scalable manufacturing.

Industrialization oversight

We support initial production runs to resolve technical issues and ensure a flawless transition to mass manufacturing.

Industrial Design_ Product Engineering_ Functional Prototyping_

We work with companies to integrate their product development into national and European R&D funding frameworks.

Sustainability and Circularity

Decisions affecting environmental impact and manufacturing costs are made during the earliest design and engineering stages. We integrate sustainability criteria from day one, focusing on material selection, component optimization, and manufacturing efficiency.


We apply principles of durability, repairability, and recyclability to design products with longer lifecycles that are easier to maintain or upgrade. This approach not only improves the product’s footprint but also optimizes resources, simplifies assemblies, and reduces long-term manufacturing and operational costs.

Let’s start a conversation

We are open to innovation and human-focused industrial design commissions and creative collaborations.
Thank you! Your submission has been received!
Oops! Something went wrong while submitting the form.
Unique, sustainable design experiences for people, not users.