Electronic Hardware Engineer
The job description
Tech stack. Analog and digital circuit design, sensor interfacing, ADC/DAC selection, power management ICs, EMC design practices, schematic and layout tools, noise analysis, grounding strategy
About the role
You will design electronic circuits for products that blend sensing, processing, and connectivity into compact, reliable devices people depend on daily. Electronic hardware engineers here own the full analog and digital signal chain: from sensor through conditioning, conversion, processing, and communication to the outside world. You will make trade-offs between noise, power, cost, and size every single day, and your measurements will tell you honestly whether you got them right. This is hands-on engineering where the oscilloscope is the final arbiter and there is deep satisfaction in a quiet, accurate signal chain.
What you will achieve
- Design complete electronic subsystems from sensor input through digital output, meeting accuracy, noise, and power specifications with measured margin
- Deliver quiet, robust analog front ends through careful grounding, filtering, and layout practices validated by measurement, not just simulation
- Select and integrate ADCs, DACs, and sensor interfaces with correct anti-aliasing, reference design, and calibration approaches for the application
- Debug mixed-signal issues including noise coupling, ground loops, and ADC artifacts systematically with measurement-driven root cause analysis
- Create reusable analog building blocks and design notes that raise the quality bar for the whole team's future designs
What you will bring
Must-haves
- 2 to 5 years designing electronic circuits spanning analog and digital domains with shipped products in production
- Strong analog fundamentals: op-amp circuits, filters, noise analysis, and grounding and shielding practices applied in real designs
- Experience with data converters: ADC/DAC selection, interface design, reference circuits, and end-to-end error budgeting
- Understanding of sensor interfacing: signal conditioning, excitation circuits, calibration methods, and temperature compensation
- Lab proficiency with oscilloscopes, spectrum analyzers, and precision measurement techniques for characterizing low-noise circuits
- Familiarity with EMC design practices for mixed-signal boards: partitioning, filtering, and enclosure-level considerations
- BS in Electrical Engineering or equivalent demonstrated experience
Nice-to-haves
- Experience with precision measurement or instrumentation design involving microvolt-level signals and high dynamic range
- Knowledge of power integrity for sensitive analog circuits: LDO selection, filtering strategies, and PSRR requirements
- Familiarity with digital signal processing basics enabling informed ADC/DSP partitioning decisions
- Experience with intrinsic safety or ultra-low-power design for battery-operated sensing products
Google
Apple
NVIDIA
Tesla
Intel
AMD