Senior Engineer (Mechanical/ Electro-Mechanical / Mechatronics) in Aberdeen

Senior Engineer (Mechanical/ Electro-Mechanical / Mechatronics) in Aberdeen

Aberdeen Full-Time 50000 - 55200 £ / year (est.) Home office (partial)
Claxton Engineering Services

At a Glance

  • Tasks: Design and develop innovative subsea tooling and mechanical systems from concept to offshore execution.
  • Company: Join Claxton, a leader in offshore installation and decommissioning with a collaborative culture.
  • Benefits: Enjoy competitive salary, flexible location, and opportunities for professional growth.
  • Other info: Dynamic environment with opportunities to mentor junior engineers and collaborate globally.
  • Why this job: Make a real impact in the energy sector while working with cutting-edge technology.
  • Qualifications: Degree in Mechanical Engineering or Mechatronics; experience in subsea or offshore industries preferred.

The predicted salary is between 50000 - 55200 £ per year.

Claxton combines decades of industry experience, proprietary technology, and exceptional service quality to cut through offshore installation and decommissioning complexity.

Globally, we partner with operators and key contractors in conventional energy, decommissioning, and offshore wind, delivering certainty when it matters.

Claxton is currently looking to hire a Senior Engineer to join the team on a full-time, permanent basis at its facility Aberdeen OR Great Yarmouth however location is flexible.

The Senior Engineer contributes to the design, development and delivery of subsea tooling and mechanical systems and products, from concept and analysis through to workshop build, testing, commissioning and offshore execution.

The role combines technical execution, design assurance, commercial awareness and hands‑on involvement, supporting bids, leading engineering scopes and mentoring junior engineers.

In addition to core mechanical design, the role will increasingly focus on electro‑mechanical integration, including sensor selection and integration, instrumentation, data capture/monitoring, and electro‑hydraulic control and interface requirements for ROV/ deployable systems, including drive trains (gears, gearboxes, motors, leadscrews, actuators) and mechanical motion systems integrated with sensors and feedback systems.

The engineer will apply Claxton's technologies to create practical, fit‑for‑purpose solutions that meet functional, safety and schedule requirements while maintaining an appropriate level of engineering detail.

The role operates in a fast‑paced environment, balancing multiple tasks and priorities while working collaboratively across disciplines.

Strong communication skills and the flexibility to support workshop activities and offshore operations (as required) are essential, alongside a commitment to professional development and maintaining high engineering standards.

Duties & Main Responsibilities

  • Create Functional Design Specifications (FDS) for new product development, projects, and enquiries
  • Support technical input to bids, including scope definition, engineering hours, material costs, risks, and assumptions
  • Determine when FEED or concept work is required to support enquiries and define appropriate deliverables
  • Contribute to risk registers for projects and new product development, identifying technical, commercial, and operational risks
  • Develop and manage design plans including cost, schedule, resource requirements, and technical scope
  • Support the development of cost and time estimates and provide input into project budgets and planning
  • Identify and reduce the cost of poor quality (Co PQ), supporting investigations and embedding lessons learned into future designs
  • Contribute to continuous improvement initiatives, including development of templates, tools, and engineering processes
  • Attend client and external meetings, providing in-person and remote technical input and expertise
  • Lead the design of mechanical systems and subsea tooling from concept through to detailed design
  • Define load paths, perform hand calculations and FEA to verify structural and mechanical integrity
  • Ensure designs meet functional requirements, safety expectations, and relevant industry standards (DNV, API, ISO, etc.)
  • Work across the full lifecycle including build, FAT/SIT, commissioning, and offshore support
  • Chair and contribute to design reviews, ensuring design intent, technical integrity, and practical execution
  • Review and approve drawings, calculations and engineering deliverables produced by other team members
  • Manage design interfaces with project engineering, manufacturing, QA, and third‑party suppliers
  • Ensure design documentation is controlled, reviewed, and maintained in line with company systems (e. g. PDM, IMS, ISO9001)
  • Define and integrate sensors and instrumentation (e. g. position, load, pressure, torque, speed/encoder feedback) into subsea tooling and work with suppliers and internal stakeholders
  • Develop high‑level control and interface requirements for electro‑hydraulic systems and tooling control package
  • Support integration with external control systems (e. g. ROV tooling, electro‑hydraulic and subsea control systems)
  • Define functional behaviour, I/O requirements and monitoring philosophy for tooling and system operation
  • Contribute to the development of control philosophies, operating sequences, and functional descriptions for new tools
  • Define and review testing requirements, including instrumentation, data capture, acceptance criteria, and performance validation
  • Support assembly, build, FAT, SIT and commissioning activities, ensuring designs translate effectively into physical systems
  • Support setup, troubleshooting, and optimisation of systems during workshop testing and early deployment
  • Participate in equipment readiness reviews and ensure systems are fit for deployment
  • Identify and resolve design issues arising during build, assembly, testing, and early operation
  • Work closely with workshop teams to ensure designs are practical, buildable, and efficient to manufacture
  • Contribute to test procedures, method statements, and technical documentation for equipment operation
  • Act as Lead Engineer on complex or multi‑disciplinary projects, with ownership of technical delivery
  • Manage engineering activities in line with project schedules, quality requirements, and commercial constraints
  • Work closely with project, operations, and workshop teams to resolve design and execution challenges in real time
  • Provide engineering support to offshore operations, including installation, troubleshooting, and performance optimisation
  • Contribute to project reviews, capturing technical lessons learned and feeding back into design improvements
  • Mentor and support junior engineers, maintaining engineering standards and consistency across the team
  • Support collaboration across locations (e. g. Aberdeen, Great Yarmouth, Singapore) to align engineering practices
  • Required
  • Degree in Mechanical Engineering or Mechatronics, candidates with Mechanical/Electrical, Controls or Instrumentation background are strongly encouraged.
  • Chartered Engineer (CEng) status with IMech E or an equivalent professional body or working towards is desirable.
  • Experience in mechanical engineering, designing bespoke products within an engineering environment, and significant exposure to subsea, offshore, renewable, or similar industries.
  • Experience of electro‑hydraulic systems, sensors, instrumentation and feedback/control integration within tooling or equipment is desirable.
  • Strong capability in mechanical and structural design, including lifting and rigging considerations, drive systems (gears, gearboxes, motors), hydraulics and mechanical motion mechanisms.
  • Demonstrated track record of delivering products or systems from concept through to design, build, testing, and deployment.
  • Experience with 2D/3D CAD software (e. g. Solid Works) and performing engineering analysis using hand calculations and tools such as Ansys and Mathcad to verify designs.
  • Experience with ROV/deployable subsea or surface tooling and associated control systems is advantageous.
  • Familiarity with industry standards and design practices (e. g. DNV, API, ASME, ISO, EN, CE marking) and experience working within controlled design environments such as ISO9001.
  • Experience applying structured risk analysis methodologies (e. g. FMECA) within engineering projects.
  • Proven ability to manage technically complex engineering scopes within time and budget constraints, with strong commercial awareness of risks, assumptions, and resource requirements.
  • Strong problem‑solving skills with a structured and practical engineering approach.
  • Experience mentoring or supporting junior engineers and contributing to maintaining engineering standards.
  • Effective communication skills, including the ability to engage with clients, stakeholders, and multidisciplinary teams.
  • #J-18808-Ljbffr
Claxton Engineering Services

Contact Details:

Claxton Engineering Services Recruitment Team

StudySmarter Expert Advice🤫

We think this is how you could land Senior Engineer (Mechanical/ Electro-Mechanical / Mechatronics) in Aberdeen

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We think you need these skills to ace Senior Engineer (Mechanical/ Electro-Mechanical / Mechatronics) in Aberdeen

Mechanical Engineering
Mechatronics
Electro-Mechanical Systems
Subsea Tooling Design
Instrumentation Integration
Data Capture and Monitoring
Electro-Hydraulic Control

Some tips for your application 🫡

Showcase Your Technical Skills:In the field of mechatronics, it's crucial to highlight your technical competencies. Make sure your CV lists relevant skills like programming languages, control systems, and any software you’re proficient in. Don’t forget about any projects you’ve successfully completed that illustrate your hands-on experience!

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How to prepare for a job interview at Claxton Engineering Services

Master Your Technical Skills

In mechatronics, they’ll likely throw some technical questions your way, so make sure you're up to speed on the fundamentals. Brush up on your knowledge of robotics, control systems, and automation technology. Think about practical applications of these concepts too—real-world examples can really set you apart!

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Since full-time roles can often involve collaboration, be ready to discuss how you've worked in teams before. Think about experiences where you’ve tackled complex projects, clarified roles, or resolved conflicts. It's important to demonstrate that you're not just a technical whizz, but also a team player.

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