At a Glance
- Tasks: Lead the development of advanced biosensor materials and optimise innovative sensing technologies.
- Company: Join a global semiconductor leader driving breakthroughs in digital healthcare and sustainability.
- Benefits: Competitive salary, health benefits, and opportunities for professional growth.
- Other info: Dynamic work environment with a focus on innovation and collaboration.
- Why this job: Make a real impact in the future of healthcare with cutting-edge technology.
- Qualifications: PhD or relevant degree with experience in materials development and optical technologies.
The predicted salary is between 50000 - 70000 £ per year.
About Analog Devices: Analog Devices, Inc. (NASDAQ: ADI) is a global semiconductor leader that bridges the physical and digital worlds to enable breakthroughs at the Intelligent Edge. ADI combines analog, digital, and software technologies into solutions that help drive advancements in digitized factories, mobility, and digital healthcare, combat climate change, and reliably connect humans and the world.
The Digital Healthcare (DHC) business unit is seeking a highly motivated experienced Biosensor Development Engineer to lead the development, optimisation, and characterisation of advanced material‑based sensing components for next‑generation diagnostic and analytical platforms. This role will play a central part in establishing new materials processing capabilities, building laboratory infrastructure, and developing scalable optically active sensor materials to support emerging product architectures.
This is an ideal role for a technically strong, strategically minded engineer or scientist who can combine hands‑on experimental leadership with forward‑thinking development strategy. The successful candidate will shape laboratory capabilities, drive materials and process innovation, and act as a key contributor in advancing new sensor technologies.
Roles & Responsibilities
- External Collaboration & Technology Exploration: Engage with academic partners, research groups, and industrial vendors to explore new material formulations, fluorophore chemistries, and matrix architectures. Liaise with external specialists and suppliers involved in optical material development, including potential manufacturing partners for scale‑up. Contribute to mapping the landscape of optically active material suppliers, fabrication approaches, and potential production pathways.
- Establishing & Scaling Laboratory Capabilities: Identify, specify, and source equipment needed for in‑house processing and characterisation of optical sensing materials. Commission new tools and establish stable workflows for materials development, ensuring techniques are compatible with future high‑volume manufacturing. Build out a fit‑for‑purpose development environment by leveraging local facilities and integrating new capabilities as required. Establish best practices for safety, documentation, materials handling, and experimental execution within a newly evolving laboratory.
- Sensor Material & Process Development: Lead the design, formulation, and processing of functional sensing films and optically active materials, including fluorophore‑based matrices and sensing structures. Develop, optimise, and validate coating, curing, and surface‑modification workflows with an emphasis on reproducibility and scalability. Perform characterisation using optical, physical, and chemical techniques, and relate material properties to system‑level performance. Generate rapid experimental cycles to support fast iteration, screening, and improvement of sensing materials. Translate findings into actionable process recommendations, material design choices, and long‑term development strategy.
- Strategic & Cross‑Functional Contribution: Contribute to sensor material technology roadmaps and long‑term capability planning. Influence design–process interactions by providing robust assessments of material scalability, manufacturability, and system compatibility. Work closely with multidisciplinary teams to integrate sensing materials into complete sensing systems and product pipelines. Act as an internal source of rapidly developed prototype materials to accelerate system testing, validation, and IP generation.
Qualifications
- Education: PhD in Materials Science, Chemistry, Chemical Engineering, Biomedical Engineering, Physics, or a related field with 4+ years industrial experience. OR Bachelor’s/Master’s degree in a relevant discipline with 8+ years of industrial experience in materials development, thin‑film processing, optical materials, or related areas.
- Experience (strongly Advantageous But Not All Required): Development and optimisation of thin films, polymeric coatings, functional optical materials, or surface‑engineered structures. Establishing or scaling laboratory processes, including selection and commissioning of processing and metrology tools. Hands‑on experience with film deposition (spin, dip, spray, or equivalent) and optically active materials (fluorescence/absorbance). Practical engineering intuition and experience designing and troubleshooting experimental setups. Familiarity with optical characterisation methods (microscopy, spectroscopy, material uniformity analysis). Experience working with fluorophores, matrix formulations, or optically responsive polymer systems is beneficial.
- Soft Skills: Strong initiative and ability to propose solutions proactively. Excellent communication skills for multidisciplinary collaboration. Highly organised, with strong documentation and planning habits. Comfortable working in a dynamic environment and developing new processes from the ground up. Curious, pragmatic, and motivated by rigorous experimentation and new sensing technology development.
For positions requiring access to technical data, Analog Devices, Inc. may have to obtain export licensing approval from the U.S. Department of Commerce – Bureau of Industry and Security and/or the U.S. Department of State – Directorate of Defense Trade Controls. As such, applicants for this position – except US Citizens, US Permanent Residents, and protected individuals as defined by 8 U.S.C. 1324b(a)(3) – may have to go through an export licensing review process.
Analog Devices is an equal opportunity employer. We foster a culture where everyone has an opportunity to succeed regardless of their race, color, religion, age, ancestry, national origin, social or ethnic origin, sex, sexual orientation, gender, gender identity, gender expression, marital status, pregnancy, parental status, disability, medical condition, genetic information, military or veteran status, union membership, and political affiliation, or any other legally protected group.
Job Req Type: Experienced. Required Travel: Yes, 10% of the time. Shift Type: 1st Shift/Days.
Biosensor Development Engineer in Cambridge employer: Analog Devices
Analog Devices is an exceptional employer that fosters a collaborative and innovative work culture, making it an ideal place for Senior Design Verification Engineers to thrive. With a strong emphasis on employee growth and development, the company offers numerous opportunities for professional advancement while working on cutting-edge mixed-signal products in the vibrant UK tech landscape. Employees benefit from a supportive environment that values communication and teamwork, ensuring a rewarding and meaningful career experience.
StudySmarter Expert Advice🤫
We think this is how you could land Biosensor Development Engineer in Cambridge
✨Tip Number 1
Network like a pro! Reach out to your connections in the industry, attend relevant events, and don’t be shy about asking for introductions. We all know that sometimes it’s not just what you know, but who you know that can land you that dream job.
✨Tip Number 2
Prepare for interviews by researching the company and its products. Understand their mission and how your skills as a Biosensor Development Engineer can contribute. We want you to show them you’re not just another candidate, but the perfect fit for their team!
✨Tip Number 3
Practice makes perfect! Conduct mock interviews with friends or mentors to refine your answers and boost your confidence. We can’t stress enough how important it is to articulate your experience and ideas clearly during the real deal.
✨Tip Number 4
Don’t forget to follow up after interviews! A simple thank-you email can go a long way in keeping you top of mind. We recommend mentioning something specific from your conversation to show you were engaged and genuinely interested.
We think you need these skills to ace Biosensor Development Engineer in Cambridge
Some tips for your application 🫡
Tailor Your CV:Make sure your CV is tailored to the Biosensor Development Engineer role. Highlight relevant experience in materials science, optical materials, and any hands-on lab work you've done. We want to see how your skills align with our needs!
Craft a Compelling Cover Letter:Your cover letter is your chance to shine! Use it to explain why you're passionate about biosensor technology and how your background makes you a perfect fit for our team. Keep it engaging and personal – we love to see your personality!
Showcase Your Projects:If you've worked on any relevant projects or research, make sure to include them in your application. We’re keen to see examples of your hands-on experience with sensor materials or laboratory processes. It helps us understand your practical skills better!
Apply Through Our Website:We encourage you to apply directly through our website. It’s the best way to ensure your application gets into the right hands. Plus, you’ll find all the details you need about the role and our company culture there!
How to prepare for a job interview at Analog Devices
✨Know Your Materials
Make sure you brush up on the latest advancements in materials science, especially those related to optical materials and thin films. Be ready to discuss specific examples of how you've developed or optimised materials in your previous roles.
✨Showcase Your Hands-On Experience
Prepare to talk about your practical experience with film deposition techniques and optical characterisation methods. Highlight any projects where you successfully established or scaled laboratory processes, as this will resonate well with the interviewers.
✨Collaborate and Communicate
Since this role involves cross-functional collaboration, think of examples where you've worked with multidisciplinary teams. Be ready to demonstrate your communication skills and how you’ve contributed to successful project outcomes through teamwork.
✨Be Proactive and Solution-Oriented
During the interview, showcase your initiative by discussing how you've identified problems and proposed solutions in past projects. This will show that you're not just reactive but also forward-thinking, which is crucial for a role that involves innovation in sensor technologies.