Drive electrical design of embedded systems including component selection, schematic capture, and PCB layout for multi-layer, high-density boards. Support manufacturing and sustaining engineering by improving designs for reduced cost or improved manufacturability, and assist with failure analysis.
Numbers & Facts
Location
San Francisco, CA
Description
Qualifications:
Bachelor's degree in Electrical Engineering or related field
2+ years of professional experience in hardware development or embedded systems design
Experience with schematic capture and PCB layout for multi-layer boards
Experience with microcontroller-based system design (ARM Cortex-M, MSP430, or similar) and standard digital interfaces (I2C, SPI, UART, USB)
Hands-on experience with board bring-up, debugging, and rework on high-density designs (0201, BGA, etc.)
Proficient with standard lab equipment (oscilloscopes, logic analyzers, multimeters, power supplies, soldering equipment, hot-air rework stations)
Proficiency with Altium Designer
Experience with designs including battery management, Bluetooth LE, high-voltage circuits, and analog design
Experience working in medical device development or highly regulated industry (aerospace, automotive)
Familiarity with EMI/EMC best practices and certification processes (FCC, CE, UL)
Basic proficiency in Python for test automation or C/C++ for firmware modifications
Experience transitioning designs to manufacturing and applying DFM best practices
Responsibilities:
Drive electrical design of embedded systems including component selection, schematic capture, and PCB layout for multi-layer, high-density boards
Work at all stages of product development process from exploration and prototyping to detailed design, testing, and ramping to mass production
Collaborate closely with mechanical, firmware, and senior electrical engineers on system architecture and integration
Ensure design quality and meet medical device regulatory requirements with clear documentation and robust testing
Support manufacturing and sustaining engineering by improving designs for reduced cost or improved manufacturability, and assist with failure analysis