Midjourney
Midjourney is a non-profit research lab that is investigating new thought mediums to improve the human species' inventive abilities.
- Open roles
- 20
- New role every
- ~3.9 days
Company signals
Score: 86Job facts
- Location
- San Francisco, California, United States of America
- Workplace
- Onsite
- Type
- Full-time
- Department
- Midjourney Medical
- Posted
- Jun 30, 2026
Last verified live 10 hours, 6 minutes ago · checked directly on the company's Ashby
More roles at Midjourney
- Principal Electrical Engineer (Design Lead) · San Francisco
- QA Analyst · SF or NY Hybrid
- Product Manager · San Francisco Bay Area Hybrid
- Engineering Manager · San Francisco Bay Area Hybrid
- Backend Engineer, Core Systems · San Francisco Bay Area Hybrid
- Backend Engineer, Product · San Francisco Bay Area Hybrid
Electrical Engineer (Systems / Integration / Experimentation)
at Midjourney
What you’ll do
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Be the generalist EE for the scanner system: integration, bring-up, debugging, and making the electrical side of the device reliable and serviceable.
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Own ultrasound experimentations that feeds the image reconstruction team
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Design and execute experiment setups for transducer characterization (element sensitivity, bandwidth, cross-talk mapping, beam profile measurements) and ex vivo / phantom clinical testing.
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Acquire, process, and analyze RF and baseband signals for data quality assessment and benchmarking.
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Design simple boards and adapters as needed (monitoring, power/safety, interface/conditioning), and take them from prototype through a stable revision.
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Prototype quickly, then harden what works: wiring/harnessing, grounding, safety interlocks, and reliable integration across subsystems.
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Own practical test setups and documentation (fixtures, scripts, procedures) that make experiments repeatable and results comparable over time.
What we’re looking for
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Strong hands-on EE background with experience building, debugging, and iterating on real systems in the lab.
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Solid understanding of signal processing fundamentals — knows what to measure, how to condition and digitize it, and how to evaluate signal quality in the context of an imaging system (SNR, bandwidth, dynamic range, artifacts).
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Comfortable spanning system integration + occasional design work (schematics/layout reviews or light PCB design) in a fast-moving environment.
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Ability to work at the boundary between hardware and algorithms: measure reality, communicate constraints, and help close gaps vs simulation.
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High agency and practicality: able to set up experiments, get trustworthy data, and unblock others on a lean team.
Useful experience
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Analog/mixed-signal, or high-speed data capture experience; strong instincts for instrumentation and noise/debugging.
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Ultrasound or acoustic sensor handling: hydrophone calibration and field mapping, transducer impedance characterization, element-level sensitivity and bandwidth testing, acoustic coupling optimization (water path, gel, membrane interfaces).
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Signal processing skills: spectral analysis (FFT, short-time spectra), time-frequency methods, matched filtering, envelope detection / Hilbert transforms, time-of-flight extraction, and coherent vs. incoherent averaging for SNR improvement.
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Understanding of imaging principles or direct experience with imaging systems: beamforming concepts (delay-and-sum, synthetic aperture), point spread function characterization, resolution/contrast metrics, image artifact identification (grating lobes, side lobes, ring artifacts, motion blur).
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Wave physics background (acoustic, EM, or optical): propagation, reflection/transmission at interfaces, attenuation and dispersion in tissue-mimicking media, near-field vs. far-field behavior, diffraction.
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Light PCB design for simple boards (Altium/KiCad/etc.) and comfort bringing boards up on the bench.
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Comfort aligning “device reality” with “model reality” (calibration, timing, parameter tracking, reproducibility).
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Safety-conscious integration experience (EMI/EMC, grounding, interlocks) in complex electromechanical systems.