Assistant System Engineer

9 Minutes ago • All levels
System Design

Job Description

The Assistant System Engineer will be responsible for designing and developing printed circuit board (PCB) layouts for various electronic systems, ensuring compliance with specifications and industry standards. This role involves utilizing ECAD software, applying power electronics principles, optimizing designs for efficiency and reliability in automotive applications, and ensuring electromagnetic compatibility. The engineer will also implement DFM/DFA principles and provide mentorship to junior engineers, while identifying opportunities for innovation and continuous improvement in PCB design.
Must Have:
  • Design and develop printed circuit board (PCB) layouts for electronic systems and components.
  • Utilize ECAD software tools (e.g., Altium Designer, Cadence Allegro) for PCB layouts.
  • Apply knowledge of power electronics principles for power management systems.
  • Optimize PCB designs to minimize power losses, improve efficiency, and enhance reliability in automotive applications.
  • Design high-speed digital PCB layouts for data transmission and signal integrity.
  • Ensure electromagnetic compatibility (EMC) of PCB designs.
  • Implement design for manufacturability (DFM) and design for assembly (DFA) principles.
  • Apply understanding of automotive systems, components, and requirements.
  • Provide guidance, support, and mentorship to junior ECAD engineers.
  • Identify opportunities for innovation and continuous improvement in PCB design processes.

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Major Accountabilities:

Design and develop printed circuit board (PCB) layouts for various electronic systems and components, ensuring compliance with design specifications, industry standards, and best practices.

Utilize ECAD software tools (e.g., Altium Designer, Cadence Allegro) to create PCB layouts that meet electrical, mechanical, and thermal requirements.

Apply knowledge of power electronics principles and techniques to design PCB layouts for power management, conversion, and distribution systems.

Optimize PCB designs to minimize power losses, improve efficiency, and enhance reliability in automotive applications.

Design high-speed digital PCB layouts for data transmission, signal integrity, and noise immunity in electronic control units (ECUs) and communication systems.

Ensure electromagnetic compatibility (EMC) of PCB designs by incorporating shielding, filtering, and grounding techniques to mitigate electromagnetic interference (EMI) and maintain signal integrity.

Implement design for manufacturability (DFM) and design for assembly (DFA) principles to optimize PCB layouts for efficient manufacturing and assembly processes.

Apply understanding of automotive systems, components, and requirements to design PCB layouts that meet the specific needs and challenges of automotive applications.

Provide guidance, support, and mentorship to junior ECAD engineers, assisting them in developing their technical skills, problem-solving abilities, and professional competencies.

Identify opportunities for innovation and continuous improvement in PCB design processes, tools, and methodologies.

Lead initiatives to implement innovative solutions, best practices, and process improvements to enhance the efficiency, quality, and competitiveness of ECAD engineering activities.

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