Research Scientist, Biomedical Engineering

Boston University•Boston, MA
•$82,500 - $227,500

About The Position

The Electrical Engineer / Research Scientist will lead the design, development, characterization, and maintenance of wearable biomedical optical instruments for brain imaging and peripheral sensing research. The role spans analog and digital circuit design, PCB layout, FPGA and embedded firmware, sensor and camera systems, and integration of optical and electronic subsystems into compact wearable packages. The successful candidate must be self-driven and capable of largely independent work. Interested candidates should email David Boas ([email protected]) with a resume and a cover letter indicating (1) qualifications related to this position and (2) a short description of one of their prior circuit designs.

Requirements

  • Analog and digital circuit design
  • PCB layout
  • FPGA and embedded firmware development
  • Sensor and camera systems
  • Integration of optical and electronic subsystems
  • Self-driven and capable of largely independent work
  • VHDL/Verilog
  • Embedded C firmware
  • Unit tests and test benches development
  • Characterization of sensors, cameras, and optical front-ends
  • Multilayer, rigid and flexible PCB design
  • Low-noise techniques and impedance control
  • Bench testing and troubleshooting hardware
  • Hands-on assembly, soldering, and rework
  • Documentation of designs and performance

Nice To Haves

  • Experience with wearable biomedical optical instruments
  • Experience with brain imaging and peripheral sensing research
  • Experience mentoring students/postdocs

Responsibilities

  • Design and validate mixed-signal electronic circuits for wearable instruments, from schematic through fabrication and bring-up.
  • Develop FPGA firmware (VHDL/Verilog) and embedded C firmware for real-time data acquisition and instrument control.
  • Develop unit tests and test benches.
  • Characterize sensors, cameras, and optical front-ends (photodetectors, SiPM, lasers/LEDs) for low-noise, low-light performance.
  • Integrate optics, electronics, and firmware into compact, deployable wearable systems; support other modalities (e.g., EEG, IMU).
  • Design or supervise the design of PCBs (multilayer, rigid and flexible) including low-noise techniques and impedance control.
  • Bench test and troubleshoot hardware using standard lab instruments; hands-on assembly, soldering, and rework.
  • Document designs and performance; mentor students/postdocs on hardware topics; contribute to publications.
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