At a Glance
- Tasks: Design and develop advanced mechanical systems for cutting-edge humanoid robots.
- Company: Join Engineered Arts, the leader in humanoid robotics with global impact.
- Benefits: Competitive salary, innovative projects, and a fun, collaborative work culture.
- Other info: Fast-paced environment with opportunities for growth and creativity.
- Why this job: Be part of a team pushing the boundaries of robotics and AI technology.
- Qualifications: Strong mechanical design skills and experience with CAD tools required.
The predicted salary is between 36000 - 60000 £ per year.
About Engineered Arts: Engineered Arts is the leading manufacturer of full-size humanoid robots used for entertainment, education and communication. With 20 years of hardware and software development, our robots have been sold in over 30 countries worldwide with customers such as NASA, PwC, Meta and many more.
Our Ameca robot is well known as 'the face of AI' and a social media viral success, taking advantage of the generative AI craze. Along with our ultra-realistic Mesmer range of animated figures, our robots continue to surprise and excite visitors at museums, theme parks, visitor attractions and trade shows as well as aid leading universities with AI and robotics research. Our robots are poised to break into the future mega-expansion service robot segment, with applications such as front of house, receptions, check-in desks, information points and PoS.
We are a team of dedicated engineers and creatives striving to develop the very best experiences for our customers. Our internal motto is 'Be Wow', everything we do is fun, entertaining or surprising to encounter. We always push the boundaries of what is possible in humanoid robotics, researching and developing new systems and techniques to further their appeal.
Role Outline: We are looking for a Mechanical Engineer to join a small, highly skilled team building advanced humanoid robotic platforms capable of dynamic, real-world operation. You will design and integrate complex mechanical subsystems — including actuation, structural frames, transmission systems, and thermal solutions. The ideal candidate thrives in fast-paced hardware development environments and has demonstrated success delivering high-performance electromechanical systems from prototype to scalable production.
Main Responsibilities:
- Design and develop mechanical components and subsystems for humanoid robots, including structural frames, precision joints, and actuator assemblies, using advanced CAD tools and rigorous GD&T practices.
- Engineer high-performance robotic linkages and transmission mechanisms optimized for dynamic motion, load handling, durability, and energy efficiency.
- Select materials and manufacturing processes that balance strength, weight, cost, and scalability, ensuring both prototype feasibility and production readiness.
- Collaborate with in-house manufacturing team for rapid prototyping efforts using additive manufacturing, CNC machining, and iterative hardware testing to validate and refine designs.
- Collaborate closely with electrical and software engineering teams to integrate mechanical systems with sensing, control, and embedded hardware architectures.
- Conduct mechanical analysis and validation testing (e.g., FEA, fatigue, impact, and life-cycle testing) to verify performance under real-world operating conditions.
- Drive safety-by-design principles, performing risk assessments and implementing safeguards to meet applicable regulatory and operational safety standards.
- Generate and maintain detailed engineering documentation, including production drawings, tolerance analyses, specifications, and bills of materials.
- Contribute to system-level design reviews and cross-functional execution to ensure on-time, high-quality hardware delivery.
Challenges:
- Balancing Performance vs. Constraints: Managing trade-offs between strength, low weight, energy efficiency, reliability, and thermal management in a compact form factor, including designing custom high-precision actuation systems.
- Cross-Functional Integration and Interfacing: Ensuring seamless, rigorous integration of complex mechanical, electrical, and software subsystems, optimizing for cabling, sensors, and motor control.
- Scalability and Production Transition: Moving designs rapidly from custom prototypes to a robust, cost-effective, and scalable manufacturing process to support volume production growth.
- Fast-Paced, Multi-Disciplinary Environment: Thriving in a lean, fast-moving company, requiring the ability to own projects end-to-end, rapidly iterate, and adapt to evolving processes and tight deadlines.
- Adherence to Safety and Regulatory Standards: Implementing robust risk assessments and built-in safeguards from the initial design phase to ensure dynamic robotic systems meet international safety standards.
Essential Qualifications, Knowledge, Key Skills and Experience:
- Strong background in mechanical design, statics, dynamics, and material science.
- Advanced proficiency in 3D parametric CAD (preferably Autodesk Inventor).
- Deep understanding of GD&T and tolerance stack-up analysis.
- Strong background in mechanism design, linkages, bearings, power transmission, and actuator integration.
- Experience performing FEA and structural validation for dynamic loading conditions.
- Hands-on prototyping experience.
- Knowledge of material selection for lightweight, high-strength structures (aluminum alloys, steels, composites).
- Experience designing for manufacturability (DFM) and assembly (DFA).
- Ability to work cross-functionally with electrical and controls teams to integrate motors, sensors, wiring, and embedded systems.
- Proven ability to take hardware from concept through validation and into production.
Desirable:
- Direct experience developing legged or humanoid robotic systems.
- Experience designing custom actuators, gear trains (harmonic drives, cycloidal reducers, planetary systems), or high-precision joints.
- Knowledge of thermal management for compact electromechanical assemblies.
- Familiarity with motion control systems and basic control theory.
- Understanding of safety standards for robotic systems.
- Startup experience or experience in fast-paced hardware development environments.
- Experience transitioning from prototype to volume manufacturing.
- Experience with mesh organic mesh modelling (Blender, Z-Brush).
Senior Mechanical Design Engineer in Falmouth employer: Engineered Arts
Engineered Arts is an exceptional employer, offering a dynamic and innovative work environment where creativity and engineering excellence thrive. With a strong focus on employee growth, we provide opportunities for professional development and hands-on experience in cutting-edge humanoid robotics. Our collaborative culture encourages teamwork and the pursuit of groundbreaking ideas, making it an exciting place to contribute to the future of robotics in a vibrant location known for its technological advancements.
StudySmarter Expert Advice🤫
We think this is how you could land Senior Mechanical Design Engineer in Falmouth
✨Tip Number 1
Network like a pro! Reach out to people in the robotics and engineering fields on LinkedIn or at industry events. You never know who might have the inside scoop on job openings or can put in a good word for you.
✨Tip Number 2
Show off your skills! Create a portfolio showcasing your best mechanical design projects, especially those related to robotics. This will give potential employers a taste of what you can bring to the table.
✨Tip Number 3
Prepare for interviews by brushing up on your technical knowledge and problem-solving skills. Be ready to discuss your past projects and how you tackled challenges in mechanical design.
✨Tip Number 4
Don’t forget to apply through our website! It’s the best way to ensure your application gets seen by the right people. Plus, it shows you’re genuinely interested in joining our team at Engineered Arts.
We think you need these skills to ace Senior Mechanical Design Engineer in Falmouth
Some tips for your application 🫡
Show Off Your Skills:When you're writing your application, make sure to highlight your mechanical design skills and any relevant experience you have with humanoid robotics. We want to see how your background aligns with our needs, so don’t hold back!
Be Specific About Your Experience:Use concrete examples to demonstrate your expertise in areas like CAD, FEA, and prototyping. We love details, so share specific projects you've worked on that showcase your ability to take designs from concept to production.
Tailor Your Application:Make sure your application speaks directly to the role of Senior Mechanical Design Engineer. Use keywords from the job description to show us you understand what we’re looking for and how you fit into our team.
Apply Through Our Website:We encourage you to apply through our website for a smoother process. It helps us keep track of applications and ensures you get all the updates about your application status. Plus, it’s super easy!
How to prepare for a job interview at Engineered Arts
✨Know Your Stuff
Make sure you brush up on your mechanical design principles, especially around statics, dynamics, and material science. Familiarise yourself with the specific technologies and tools mentioned in the job description, like Autodesk Inventor and GD&T practices. Being able to discuss these confidently will show that you're not just a good fit, but that you’re genuinely interested in the role.
✨Show Off Your Projects
Prepare to talk about your past projects, especially those involving humanoid robotics or complex mechanical systems. Bring examples of your work, whether it's CAD designs or prototypes you've developed. This will help demonstrate your hands-on experience and ability to take concepts through to production, which is crucial for this role.
✨Collaboration is Key
Since this role involves working closely with electrical and software teams, be ready to discuss how you've successfully collaborated in the past. Share specific examples of cross-functional projects where you integrated different subsystems. Highlighting your teamwork skills will show that you can thrive in their fast-paced environment.
✨Safety First
Understand the importance of safety standards in robotic systems. Be prepared to discuss how you've implemented safety-by-design principles in your previous work. Showing that you prioritise safety and have experience with risk assessments will resonate well with the interviewers, as it aligns with their commitment to safety in dynamic robotic systems.