What you will get to do:
- Update schematics and layouts to align with design improvements and feedback.
- Develop electrical stack ups and run circuit simulations of filters when necessary.
- Apply design techniques for EMC (Electromagnetic Compatibility) and manufacturability, including sourcing and testing approaches.
- Create comprehensive electrical requirements and design verification test protocols.
- Conduct design failure mode, effects, and criticality analyses (dFMECA) for the electrical design.
- Prepare detailed engineering descriptions and documentation for the electrical systems.
- Develop production PCBA test specifications, such as in-circuit testing (ICT) and functional circuit testing (FCT).
- Produce a thorough EMC/Wireless test plan and facilitate the definition of software features required for design and production verification.
- Support EMC/Wireless development testing in collaboration with EMC lab.
- Collaborate with mechanical engineering teams to integrate electrical components, including wire harness routing and PCBA placement.
- Provide interface documentation and technical guidance when integrating with other electrical designs.
- Perform benchtop testing and evaluations as needed.
What will make you successful:
- Proficiency in active and passive filter design, analog-to-digital conversion, and DC-DC regulator design.
- Strong experience in designing with communication protocols such as I2C, SPI, UART, and USB.
- Deep understanding and application of EMC and design-for-test principles.
- Ability to write precise electrical requirements and validation/verification test protocols.
- Demonstrated skill with electrical CAD tools (especially Altium) and experience with industry-standard PLM and collaboration platforms.
- Excellent documentation and communication skills for creating clear engineering descriptions, test plans, and interface documents.
- A proactive, solutions-oriented approach to supporting multidisciplinary teams, including mechanical engineers and safety/testing engineers.
- Adaptability in learning and using new engineering software and simulation tools as needed.
- Critical thinking in benchtop evaluation, troubleshooting, and implementing feedback swiftly.
- Commitment to design quality, manufacturability, and regulatory compliance throughout the product development lifecycle.