About The Position

We build what the future runs on. Accelevation designs, manufactures, and installs the physical infrastructure that powers today’s most advanced technologies. We’ve grown over 440% in the last 18 months because we take ownership, solve hard problems, and build with purpose. Join us to build the future. Your Impact As an Electronics Engineer, you’ll design and develop high-performance mixed-signal hardware systems that power advanced technologies. You’ll contribute across the full hardware development lifecycle; from schematic capture and high-speed PCB layout to validation, calibration, and manufacturing transition. This role blends precision analog design, embedded systems development, and high-speed PCB expertise to ensure signal integrity, low-noise performance, and manufacturability. You’ll collaborate closely with cross-functional teams to transform complex requirements into reliable, production-ready hardware solutions.

Requirements

  • Bachelor’s degree in Electrical Engineering or a related field
  • 3–7 years of experience in analog and digital hardware design
  • Strong experience in high-speed multilayer PCB layout
  • Experience with controlled impedance routing and mixed-signal board design
  • Hands-on experience with lab equipment such as oscilloscopes and logic analyzers
  • Experience designing MCU-based embedded systems
  • Strong analytical, troubleshooting, and problem-solving skills

Nice To Haves

  • Experience in precision analog front-end design
  • Knowledge of EMI/EMC compliance and regulatory considerations
  • Experience in system-level testing and calibration
  • Familiarity with industrial, power, or measurement systems

Responsibilities

  • Designing and developing analog and digital circuits for mixed-signal systems
  • Creating and reviewing multilayer PCB layouts (4–8+ layers) with controlled impedance
  • Performing high-speed routing including differential pairs, length matching, and stack-up definition
  • Applying signal integrity (SI) and power integrity (PI) best practices
  • Implementing EMI/EMC-aware layout and grounding strategies
  • Developing schematics, selecting components, and analyzing datasheets
  • Designing and integrating MCU-based embedded hardware systems
  • Performing hardware bring-up, validation, debugging, and troubleshooting
  • Developing test procedures and executing system calibration
  • Supporting prototype development and transition to manufacturing (DFM/DFT)
  • Documenting designs, revisions, and validation results in alignment with company standards

Benefits

  • Competitive salary and performance bonus
  • Paid time off
  • 401(k) retirement plan with company match
  • Comprehensive health, dental, and vision insurance
  • Collaborative, high-energy workplace
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