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Job Description
We're looking for engineers who love figuring out how things work and aren't afraid to get hands-on when things don't.
If you enjoy turning a circuit idea into a working prototype, chasing down a noisy signal, or figuring out why a board isn't behaving as expected, you'll fit right in. We're building the electronic systems that power surgical robotics at Articulus Surgical, where reliability, precision, and thoughtful engineering matter.
As a Hardware Design Engineer, you'll work across analog and power electronics, PCB design, prototyping, testing, and debugging — taking designs from schematic to prototype and working closely with embedded, mechatronics, mechanical, and firmware teams.
What you'll actually be doing
- Designing and optimizing power electronics circuits — AC-DC converters (230VAC to 48V, 24V, 5V), DC-DC converters, Buck, LDO, Buck-Boost, motor drivers, and power management systems — with a focus on efficiency, thermal management, and reliability.
- Designing precision analog circuits using op-amps, MOSFETs, BJTs, diodes, filters, and voltage regulators, with an emphasis on minimizing noise.
- Owning the complete PCB design process — component selection, schematic capture, footprint creation, PCB layout, Gerber generation, and production handoff.
- Working with tools like KiCad, Altium Designer, Cadence OrCAD, or Cadence Allegro (or similar schematic capture/PCB layout tools).
- Building and testing prototypes, supporting PCB bring-up, SMT implementation, and design iterations.
- Debugging hardware systematically using oscilloscopes, multimeters, regulated power supplies, signal generators, and logic analyzers.
- Implementing circuit protection strategies for ESD, reverse polarity, EMI, and EMC.
- Working with sensors, transducers, motors, and actuators, and integrating communication protocols like EtherCAT, CAN, I2C, SPI, UART, USB, LAN, RFID, BLE, and WiFi.
- Maintaining schematics, BOMs, PCB files, test reports, and other engineering documentation.
- Collaborating closely with mechanical, mechatronics, and firmware teams to integrate hardware into larger robotic subsystems.
- Staying current with advances in analog and power electronics, and contributing to R&D initiatives.
Who we're looking for
- You've got 2-4 years of experience in analog systems, digital signal, or mixed-signal design and development — experience in medical devices or robotics is a strong plus.
- You have a BTech/MTech in Electronics, Electrical, ECE, Electronics & Instrumentation, Mechatronics, or a related discipline.
- You can design and debug analog and power electronics circuits end-to-end — from component selection through schematic and PCB design.
- You're comfortable interfacing with analog components like amplifiers, filters, and signal conditioning circuits.
- You understand fundamental analog concepts — voltage/current measurement, impedance matching, and noise analysis.
- You're familiar with schematic capture and PCB design tools such as KiCad, Altium, Cadence OrCAD/Allegro, or similar.
- You're hands-on with oscilloscopes, multimeters, power supplies, signal generators, logic analyzers, and other bench equipment.
- You're comfortable reading and interpreting analog schematics and datasheets.
- You're curious, hands-on, and the kind of person who wants to understand why something failed rather than simply work around it.
What you get
- Real ownership and hands-on exposure across the complete hardware development cycle.
- The opportunity to work across analog, power, embedded, mechanical, and systems domains.
- A front-row seat to building reliable electronics for surgical robotics.
- A team that values curiosity, experimentation, and engineers who want to build, break, debug, and build better.
More Info
Key Skills
Debugging hardware
Mixed-signal design
Circuit protection strategies




