5-7 years of experience in electrical engineering with a focus on complex board design.
Proficiency in schematic capture and PCB layout tools like Altium or KiCad.
Strong background in embedded firmware development using C/C++ and Python.
Hands-on experience with HDL languages such as VHDL or Verilog.
Demonstrated ability to own board bring-up and debugging with testing instruments.
Experience in leading electrical design projects and mentoring junior engineers.
Responsibilities
Lead the electrical architecture for medical scanning systems.
Oversee end-to-end complex board design processes including layout and vendor management.
Develop embedded firmware for various control applications.
Audit and refine HDL code for data acquisition and processing.
Establish electrical interface guidelines with cross-functional teams.
Implement rigorous design review and documentation practices for regulated devices.
Mentor and expand the electrical engineering team while managing external partners.
Benefits
Health, dental, and vision insurance.
Flexible work hours and hybrid work options.
Professional development opportunities.
Paid time off and sick leave policy.
Retirement savings plan with employer matching.
Full Job Description
What you'll do
Act as the in-house electrical lead for Midjourney Medical: own the electrical architecture of the scanner and the technical direction for all board-level design.
Own complex board design end-to-end: architecture, schematic capture, layout (high-speed digital, analog/mixed-signal, power), DFM/DFT, fabrication and assembly vendor management, bring-up, and revision control.
Write firmware for embedded targets (MCU/SoC): drivers, real-time control loops, safety-relevant logic, bootloaders, and field update paths.
Audit and update HDL (FPGA) code for high-throughput data acquisition, timing/synchronization, triggering, and pre-processing of ultrasound and sensor data streams.
Define electrical interfaces and data contracts with software, recon/ML and mechanical teams: timing budgets, clocking/sync, signal integrity, connectors/harnessing, and failure modes.
Establish electrical engineering rigor: design reviews, schematic/layout review checklists, bring-up procedures, test fixtures, and documentation suitable for a regulated medical device program (DHF, traceability, change control).
Mentor and grow the electrical function; select and manage external design partners where leverage is high.
What we're looking for
Deep experience designing complex boards from blank page to stable revision, including high-speed digital and analog/mixed-signal domains.
Strong schematic and layout skills (Altium/KiCad or equivalent) with real signal integrity, power integrity, grounding, and EMI/EMC instincts.
Solid embedded firmware background in C/C++ (and Python for tooling): peripherals, DMA, interrupts, real-time constraints, and debugging on hardware.
Practical HDL experience (VHDL/Verilog/SystemVerilog) for data acquisition, timing, and streaming interfaces.
Track record of owning bring-up and debug on real hardware: scopes, logic analyzers, and disciplined root-cause analysis.
Technical leadership: clear trade-offs, strong written documentation, and the ability to set the electrical bar for a lean, fast-moving team.
Useful experience
Ultrasound, imaging, instrumentation, or other high-channel-count data acquisition systems (ADC/AFE front ends, transducer interfacing, pulser/receiver design, low-noise analog).
FPGA-to-host high-bandwidth data paths (10/25/100G Ethernet, serial transceivers) and deterministic multi-board synchronization.
Power electronics and power distribution for complex electromechanical systems: rail architecture, sequencing, isolation, and thermal considerations.
Safety-critical or medical device electronics: interlocks, isolation and leakage requirements, IEC 60601-adjacent design practice, and design controls.
Manufacturing and serviceability thinking: DFM/DFT, ICT/functional test fixtures, calibration flows, yield and field-failure analysis.
Building an electrical function from scratch: tooling, libraries, part standardization, ECO process, and vendor ecosystem.
Familiarity with high-performance computing systems.