Senior Mechanical Design Engineer
Job Summary
This is an opportunity to take real ownership of some of the most mechanically demanding parts of our robotic manufacturing system.
Youll get the autonomy to design critical precision modules from concept through to manufacture using your judgement and experience to move quickly towards solutions that are robust repeatable and practical to build.
Youll join an interdisciplinary team spanning mechanical engineering robotics software systems and biology. Your work will sit at the point where precision engineering meets a very human goal: making cell therapies accessible to far more patients.
Youll bring depth in precision design of complex electromechanical devices and use it to help us build a system that can perform reliably in demanding manufacturing environments.
Youll get to:
- Own the detailed mechanical design of critical modules within our robotic manufacturing platform.
- Turn early concepts and prototypes into stable manufacturable designs that perform consistently.
- Build detailed tolerance analyses and use the right analytical techniques to understand and improve performance.
- Make thoughtful decisions around materials manufacturing methods and component design.
- Work hands-on with prototypes and hardware learning quickly from what you see and feeding that back into better designs.
- Collaborate closely with engineers from other disciplines to solve system-level challenges rather than isolated component problems.
- Use your experience to spot risks early and guide designs from it works to it works all the time.
- Help raise the standard of mechanical design across the team by sharing your judgement methods and experience.
Qualifications :
Requirements
Youll thrive here if precision design is something you genuinely enjoy. You notice the details that matter but you also know when to stop analysing and build something.
Youll bring a strong engineering foundation alongside hands-on experience taking products through development and into manufacture.
Youll also bring:
- A Mechanical Engineering degree or a science-based degree with strong relevant industrial experience.
- Hands-on experience designing precision devices across length scales from tens of microns to tens of millimetres.
- Proven experience developing complex electromechanical products and delivering them into manufacture.
- Proven experience working in cross-functional / cross-disciplinary teams.
- Experience leveraging analytical techniques to support design decisions with a particular focus on tolerance analyses FEA and motor calculations.
- Strong 3D CAD capability ideally using SolidWorks.
- Deep knowledge of material selection and manufacturing processes.
- Experience improving designs until they are consistently reliable not simply functional.
- The ability to work collaboratively challenge assumptions and make sound engineering decisions with incomplete information.
Desired experience
- Experience working in regulated industry with a particular emphasis on design for GMP.
- Experience creating appropriate documentation to support release of products for use in regulatory environments.
Additional Information :
Cellular Origins is currently based on the TTP Campus within purpose-built sustainable offices labs and green surroundings 10 miles south of Cambridge. Our working culture encourages entrepreneurship shared ideas and collaboration while providing you the freedom to do your best work.
Our employee benefits include:
- Annual bonus
- 25 days holiday
- Employer pension contribution of 10% of salary
- Private medical insurance for employees and dependants
- Enhanced family friendly leave
- Life insurance worth 6x salary
- Electric car leasing scheme
- Cycle to work scheme
- Season ticket loan
Remote Work :
No
Employment Type :
Full-time
About Company
Cell therapies have shown the ability to cure the incurable and yet we cannot get them to patients because of an inability to scale manufacturing. The Cellular Origins team is transforming patient access to cell therapies by addressing the challenges associated with scalable, cost-eff ... View more