Company Overview
Reflex Robotics builds general-purpose, AI-powered humanoid robots for the toughest jobs in industry.
We’re focused on jobs that are genuinely hard on the human body: lifting 40-pound bags of dog food, loading boxes for an entire shift, and moving heavy materials from floor to high overhead shelves. Not just lightweight tasks in controlled environments. Actual, back-breaking work.
Factory and warehouse work demands more. The hardware needs strength, reach, precision, speed, and the battery life to be useful across multiple shifts. It also needs to deliver a clear return today, not in some hypothetical future. Our robot costs $32K at development volumes today.
We build the full robot stack ourselves, from cameras and compute to actuators, electronics, and software. Our custom-built supervision stack helps handle the hard parts of deployment, from real floor variability to keeping work moving without line disruption. That supervision also generates proprietary real-world data that helps improve autonomy over time.
We are a four year old startup backed by Khosla Ventures and a team of other great investors. Our team includes alumni from Anduril, Oculus, Amazon, Waymo, Skydio, Boston Dynamics, ASML, MIT, Jane Street, and Joby Aviation.
Key Company Beliefs
We are obsessed with shipping robots.
A humanoid robot is only valuable if it solves a real customer problem. Cool demos are fun, but reliable work is what matters.
Low cost is what makes widespread deployment possible.
High-quality, proprietary robotics data is the foundation of the next generation of physical AI.
Getting nerd-sniped by an engineering metric is way less important than solving our customers’ biggest pain points.
What We’re Looking For
We develop custom servo actuators, compute, networking, cameras, sensors, and power electronics for our robots. These systems need to be performant, reliable, cost-effective, and tightly integrated with the rest of the robot.
We are looking for a senior electrical engineer to own the robot’s power electronics and power distribution architecture. This includes the battery management system, bus voltage switching, e-stop integration, precharge, cabling, motor inverters, and EMI mitigation.
You will be responsible for defining requirements, making system-level architecture decisions, and taking designs from concept through bring-up, testing, and deployment. You will also work closely with junior engineers and external layout resources to execute designs.
Some of the problems you may work on include:
Miniaturizing motor drives by reducing bus capacitance and switching-stage size without sacrificing efficiency or creating EMI problems
Designing the power system safety architecture, including safe startup, shutdown, fault handling, and battery hot-swapping
Designing and validating a custom battery management system
Improving motor inverter performance, reliability, thermal performance, and packaging
Diagnosing and mitigating conducted and radiated EMI across the robot
We love engineers who have built systems they are genuinely proud of, whether that is a shipped product, a difficult technical project, or something they built outside of work.
Required Qualifications
Strong electrical engineering fundamentals
Deep experience designing power electronics systems, ideally in the ~48V range
Experience with motor inverters, motor drives, or similar high-current switching systems
Strong PCB design, board bring-up, test, and debug skills
Comfortable debugging power electronics with scopes, power supplies, current probes, and other lab equipment
Strong understanding of system-level tradeoffs across electrical, firmware, mechanical, thermal, and cost constraints
Ability to independently define technical requirements and make architecture and design decisions
Experience taking complex electrical designs from concept through prototype and validation
Strong communication skills and ability to lead technical work across multiple contributors
BS or higher in Electrical Engineering or a related field
Bonus Qualifications
Experience with low-voltage power electronics for robotics, electric aircraft, EV subsystems, industrial automation, or servo systems
Motor physics and motor control experience
Control systems or stability analysis experience
Battery management system design
Power system safety architecture, including precharge, e-fuses, contactors, and e-stop systems
EMI/EMC design and mitigation for switching power systems
Experience designing for battery hot-swap systems
Experience managing PCB layout contractors or other external engineering resources
Experience with DFM, supply chain considerations, test coverage, and production bring-up
Proficiency in Altium for schematic capture and PCB layout
Cross-disciplinary experience with firmware, embedded systems, or mechanical design
Experience managing or mentoring junior engineers
Robotics experience
Compensation: $180,000–$250,000, depending on experience, skills, and qualifications.
Come Join Us
Reflex is de-risked enough to see the hazy outlines of success, but still small enough that there’s enormous upside for grabs. This is a rare opportunity to help build a flagship robotics company from the ground up and to do work that will truly matter, reshaping what people believe is possible in robotics.
We love to see the things you’ve worked on. Have a portfolio or a project that people tend to say 'wait, you built that?' when you describe what you worked on? Share it. We’re looking for people who push past the status quo, are passionate at work and in their own time, we’re looking for people who want to win.
Skills Required
- Strong electrical engineering fundamentals
- Deep experience designing power electronics systems, ideally in the approximately 48V range
- Experience with motor inverters, motor drives, or similar high-current switching systems
- Strong PCB design, board bring-up, testing, and debugging skills
- Ability to debug power electronics using oscilloscopes, power supplies, current probes, and other laboratory equipment
- Strong understanding of system-level tradeoffs across electrical, firmware, mechanical, thermal, and cost constraints
- Ability to independently define technical requirements and make architecture and design decisions
- Experience taking complex electrical designs from concept through prototype and validation
- Strong communication skills and ability to lead technical work across multiple contributors
- Bachelor’s degree or higher in Electrical Engineering or a related field
- Experience with low-voltage power electronics for robotics, electric aircraft, EV subsystems, industrial automation, or servo systems
- Motor physics and motor control experience
- Control systems or stability analysis experience
- Battery management system design experience
- Power system safety architecture experience, including precharge, e-fuses, contactors, and emergency-stop systems
- EMI/EMC design and mitigation experience for switching power systems
- Experience designing battery hot-swap systems
- Experience managing PCB layout contractors or external engineering resources
- Experience with design for manufacturing, supply chain considerations, test coverage, and production bring-up
- Proficiency in Altium for schematic capture and PCB layout
- Cross-disciplinary experience with firmware, embedded systems, or mechanical design
- Experience managing or mentoring junior engineers
- Robotics experience
What We Do
We're building affordable general-purpose robots to free humanity from the drudgery of boring and repetitive tasks








