About this role
Job Description
Job Title: Component Design Engineer
Working Pattern: Hybrid (3 office days a week)
Working Location: Novi, MI
Relocation assistance is not available for this position.
Engineer I & Engineer II
Why Rolls-Royce?
At Rolls-Royce we are proud to be a business that has truly helped to shape the modern world and are committed to always being a force for progress; powering, protecting and connecting people everywhere.
By joining Rolls-Royce, you’ll have the opportunity to create world-class power and propulsion solutions, pushing your problem-solving and ingenuity, to deliver real impact that puts safety first.
You’ll be given responsibility and the opportunity to grow in our high-performance culture. This is Infinite Potential . And it’s your chance to really shine and contribute to one of the world’s most recognized brands and a beacon for engineering excellence.
Position Summary:
The Component Design Engineer is part of the Global Mechanical Systems Capability function. The Component Design Engineer shall create engineering solutions that satisfy functional and physical requirements symptomatic of Product System and Sub-System level environments. Crucially, the engineered solutions must exhibit robustness for manufacturing capability.
The Component Design Engineer is responsible for the on-time delivery and quality of component design definition artifacts, i.e. documents, models, definitions that meet system level and sub-system requirements.
The Component Design Engineer will participate within an IPT described by Product Lifecycle System (PLS) and operate in accordance with applicable Rolls-Royce Management System (RRMS) policies and processes. The Component Design Engineer is responsible for sub-system integration of technical activities for their design solutions and enabling lifecycle profitability through the Supply Chain Design.
What you will be doing:
- Deliver design solutions for component(s), complex assemblies and whole engines in consideration of safety, manufacturing capability, product physical and functional robustness. Design solutions also should address Unit Cost, Lifecycle Cost, Weight, Maintainability, Repair.
- Deliver definition to appropriate stakeholder groups’ requirements (e.g. manufacturing (domestic/external), project customers, airframers and partners, analysis team etc.) in accordance with associated agreed policies via conventional and future state approaches (Model Based Definition in association with the Model Based Environment).
- Create and use automated and integrated tool sets. When repeat design is anticipated, create automated workflows to enable the design of the component utilizing house style, standard features, and standard assessments to define the optimum design as part of automated MBD, manufacture and measurement definitions.
- Elimination of Non-Conformance/Zero Defects/Delivery of Producibility within a Manufacturing Environment. This will be through analyzing customer and program requirements, incorporation of manufacturing and measurement process capability into the design solution rationale and associated manufacturing definition. Establish and adopt lean principles like standardization/house style to achieve deterministic solutions and producible components in a repeatable fashion. Improvements to design methods, rules and tools to achieve robustness. Application of Robust Design, Systems Engineering, Risk Management (xFMEA) and Design in Context to ensure right first time can be achieved.
- Quality Assurance through checking design documents, models, drawings in accordance with RRMS technical requirements and proactive Zero Defects approaches.
- Carry out analyses using formula-based calculations and/or automated workflows for dimensioning of parts and components (e.g. stability, stiffness, profiles, balance point, weights) and where appropriate, use analytical rules, tools and methods to underwrite the design solution against requirements.
- NB in Nuclear, the CAD team are not responsible for carrying out analyses.
- Create technical documents to comply with process, knowledge management, information and data policies.
- Enabled through life Supply Chain Design and Lifecycle profitability for mature product fleets through the application and possibly creation of various mechanisms (non-conformance management, drawing alteration requests, repair instructions, engine manual limits and technical variants (TV)).
- Plan, manage and execute external designs via orders placed at design service providers or suppliers with design and production authorization for complete devices (Design only / Design and Make Package) leading to approval of the designs and all documents.
- Manage product configuration and ensure data integrity.
- Execute sub-system integration process including the appropriate use of Systems Engineering and Robust Design tools to ensure that the technical attributes of the Sub-system design meet the agreed requirements.
Basic Requirements for Engineer I:
- Bachelor’s degree in engineering, with 1+ years of experience, OR
- Master’s degree in engineering, OR
- JD/PhD in Engineering
- In order to be eligible for consideration, you must be a U.S. Citizen
Basic Requirements for Engineer II:
- Bachelor’s degree in engineering, with 2+ years of experience, OR
- Master’s degree in engineering, OR
- JD/PhD in Engineering
- In order to be eligible for consideration, you must be a U.S. Citizen
Preferred Requirements for Engineer I & II:
- Strong technical knowledge in mechanical design methodologies and understanding cross-discipline engineering concepts which include but are not limited to manufacturing engineering, aerodynamics, thermodynamics, thermal and mechanical analysis, cost engineering and product definition.
- An ability to apply logical, analytical and innovative thinking on a range of technical problems and make balanced decisions across technical and business parameters
- Knowledge and experience of product integrity / liability and certification frameworks
- Membership of a relevant professional body appropriate to region. In the UK - attained/ working towards Chartered status is preferred (and equivalent regional variations)
- Good communication and presentation skills at all levels of the organization
Our vision is to ensure that the quality and dynamism that shaped our history continues into our future. It’s a bold pursuit, and we never stop striving to go further, faster, and better. We lead progress, creating the technologies that move us forward. If you’re driven to grow, to learn, and to make a lasting difference, this is where you belong.
Rolls-Royce is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to any protected characteristics. We are committed to providing a respectful and non-discriminatory workplace where individuality is valued and everyone can thrive.
Infinite Potential
PAY TRANSPARENCY:
Engineer I: $78,918 - $128,242
Engineer II: $ $98,566 - $160,169
Closing date: October 16th, 2026
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## Job Category
Mechanical Systems
## Job Posting Date
29 Sep 2026; 00:09
Pay Range
Pay ranges for remote employees are based on the state where the employee resides and may vary from the posted range.
$78,918 - $128,242-
Location:
Novi, MI
Benefits
Rolls-Royce provides a comprehensive and competitive Total Rewards package that includes base pay and a discretionary bonus plan. Eligible employees may have the opportunity to enroll in other benefits, including health, dental, vision, disability, life and accidental death & dismemberment insurance; a flexible spending account; a health savings account; a 401(k) retirement savings plan with a company match; Employee Assistance Program; Paid Time Off; certain paid holidays; paid parental and family care leave; tuition reimbursement; and a long-term incentive plan. The options available to an employee may vary depending on eligibility factors such as date of hire, employment type, and the applicability of collective bargaining agreements.