Overview In this Electro-Mechanical Designer role, you translate concepts into functional electromechanical systems for high-volume manufacturing. You'll contribute to Intel's Product Design Enabling group, shaping robust, reliable designs and detailed drawing packages. You will run feasibility studies and system simulations to ensure performance and safety while collaborating with cross-functional teams. This is an impact-focused position at the intersection of hardware design and manufacturing excellence, offering opportunities to influence next-generation products.
Compensation / Benefits- competitive pay
- stock bonuses
- health benefits
- retirement plans
- vacation
- wellness programs
Responsibilities- Design and develop PCB test boards and electromechanical devices, systems, components, packaging, and prototypes for Advanced Packaging Technology development
- Create product and test specifications and participate in design reviews to ensure alignment and quality
- Develop manufacturing drawing packages for PCB and mechanical assemblies using CAD tools
- Conduct feasibility studies and create system simulations to validate designs for functionality, reliability, and safety
- Select materials, components, and manufacturing technologies to optimize electromechanical designs
- Execute comprehensive test plans to validate electronic and mechanical interactions (thermal cycling, dynamic analysis, functional reliability)
- Apply advanced CAD engineering methods to resolve design and implementation challenges
- Collaborate with cross-functional teams (thermal, mechanical, system engineers) to optimize design parameters and performance objectives
Key requirements- Associate degree in a related technical field with 8-10 years of hands-on experience in electromechanical design
- Advanced experience in CAD tools for designing PCB and mechanical assemblies
- Experience with manufacturing processes, materials selection, and high-volume production environments
- Expertise in developing and executing test plans for functionality validation and reliability assessment
- collaboration and teamwork
- effective communication
- problem-solving
- CAD tools for PCB and mechanical assemblies
- system simulations
- thermal cycling and dynamic analysis