Weave Robotics, Inc. Logo

Weave Robotics, Inc.

Mechatronics Engineer

Reposted An Hour Ago
Be an Early Applicant
In-Office
San Francisco, CA, USA
Entry level
In-Office
San Francisco, CA, USA
Entry level
Design and integrate electromechanical systems for home robots, including structures, harnesses, thermal systems, charging docks, safety peripherals, and test fixtures. Debug electrical and mechanical faults, support prototype and EVT/DVT production builds, and collaborate on DFM/DFA and manufacturing changes. The role requires hands-on CAD, schematic, harness, PCB, thermal, testing, and cross-domain troubleshooting expertise.
The summary above was generated by AI
Join us, and ship robots

Weave was founded to build the robots we’d want to have in our own home. We believe the next generation of robotics will transform everyday life by enabling people to do more and to reclaim time to spend on what’s important.
We also believe robots are in a sense like any other product: to matter, they have to ship. Our robots are already operating in real homes and businesses, giving us the opportunity to rapidly improve from real-world experience. With a growing team, strong customer demand, and capital for expansion, we’re entering an exciting stage of growth—and we’re looking for people with exceptional talent and standards to help bring home robotics to millions of households.

The Role

Weave builds and deploys some of the first bimanual robots operating in customer homes. Between the actuators, motor controllers, power electronics, and sensors sits everything that holds them together: the base that drives the robot, the thermal design that keeps it alive, the structure that keeps it light and safe, and every point where electrons meet metal. That's this role.

You’ll work both sides of the electrical/mechanical line without waiting for someone from the other one. The work changes week to week: structure one week, PCB design the next, then an airflow problem, then a charging dock contact that has to work on the ten-thousandth time docking. If you’d rather work on whole systems than a deep slice, this is the job.

Responsibilities

  • Design electromechanical assemblies: the robot’s base, arms, structures, mounts, and enclosures, with the electronics packaging, grounding, and serviceability thought through from the start.

  • Own the harnesses: wire gauging, connector selection, routing through moving joints, strain relief, and drawings clean enough that the harness shop builds it right the first time.

  • Own thermal at the robot level: heat paths, heatsinks, fans and airflow, traded against acoustics and ingress.

  • Design the robot’s periphery: charging dock and contacts, e-stop chain, lights, speakers, buttons.

  • Build test infrastructure: rigs, fixtures, and instrumented setups that let design teams and the production line prove things instead of assuming them.

  • Integrate and debug the whole robot: when a fault could be the harness, the board, or the bracket, you're the one who finds out which.

  • Support builds and production: prototype assembly, EVT/DVT builds, DFM/DFA with the manufacturing team, and design changes that land on the line.

What you’ll bring

  • Experience designing electromechanical systems that shipped: robots, consumer hardware, vehicles, appliances, or similar.

  • Mechanical fundamentals: CAD (Solidworks), tolerance stacks, GD&T, material selection, structural basics, DFM across machining, molding, and sheet metal.

  • Electrical fundamentals: you can read and design schematics, design harnesses and interconnects, understand grounding and shielding, and hold your own in a PCB layout review (KiCAD/Altium).

  • Fast iteration: you’d rather 3D print a bracket and cut a board tonight than wait a week to find out.

  • Bench competence: from oscilloscope and multimeter to calipers and presses - you build and instrument your own test setups.

  • Cross-domain debugging: you follow a fault across the electrical/mechanical boundary until you find it, not until it leaves your domain.

  • Range: you’re comfortable being the person who picks up whatever the robot needs next.

Nice to have

  • Harness design for high-flex or moving applications: cable carriers, slip rings, flex PCBs through joints.

  • Thermal analysis or airflow design beyond rules of thumb.

  • EVT/DVT/PVT on a consumer product.

  • Basic firmware or scripting (Python, C) for test automation.

  • EMC troubleshooting at the system level.

  • Safety certification for robotics or industrial applications.

Similar Jobs

3 Days Ago
Remote or Hybrid
United States
84K-162K Annually
Senior level
84K-162K Annually
Senior level
Automotive
Leads mechatronic subsystem integration across vehicle programs, translating feature requests into coordinated mechanical, electrical, and software requirements. Develops subsystem diagrams, interface control documents, verification plans, and integration readiness strategies. Coordinates hardware and software timelines, investigates build issues using data logs and HIL testing, performs root-cause analysis, and drives containment and resolution across engineering teams. Owns subsystem performance, risk mitigation, issue resolution, and launch timing for vehicle features such as closures, seats, climate, access, and windows.
Top Skills: CanEthernetFedeHardware-In-The-Loop (Hil)JamaJIRALinMathcadMatlabSimulinkVsem
16 Days Ago
In-Office
Richmond, CA, USA
92K-157K Annually
Mid level
92K-157K Annually
Mid level
Aerospace • Defense
Design, build, integrate, test, and maintain custom mechatronic systems for precision optics manufacturing. Responsibilities include mechanical mechanisms, motion systems, robotics, automation, CAD, BOMs, vendor coordination, electrical and software integration, controls development, troubleshooting, validation, and continuous improvement. The engineer collaborates across manufacturing, quality, supply chain, product development, and engineering teams while supporting equipment performance, product quality, yield, and throughput.
Top Skills: AutocadAutomationBomCable FabricationCadCeCleanroom ManufacturingControl SoftwareData AcquisitionElectronicsEmbedded ControllersFirmwareHmiLaser SystemsMachine GuardingMotion ControlMotion Control AlgorithmsMotor And Drive SystemsPhotonicsPlcsRoboticsSafety InterlocksSensorsSolderingSolidworksUlVacuum Systems
22 Days Ago
In-Office
Milpitas, CA, USA
141K-240K Annually
Senior level
141K-240K Annually
Senior level
Hardware
Develop mechatronics systems for semiconductor metrology equipment as part of a multidisciplinary engineering team. Responsibilities include data collection, analysis, calibration, Python or MATLAB scripting, hands-on laboratory and cleanroom hardware work, system integration, testing, troubleshooting, control-system design, signal processing, experimental design, and hardware-in-the-loop testing. The role also involves collaborating with customer support and traveling to customer sites less than 10% of the time.
Top Skills: Feedback Control SystemsHardware-In-The-Loop ExperimentationImage ProcessingMatlabNumerical OptimizationPythonSignal ProcessingSystem Identification

What you need to know about the San Francisco Tech Scene

San Francisco and the surrounding Bay Area attracts more startup funding than any other region in the world. Home to Stanford University and UC Berkeley, leading VC firms and several of the world’s most valuable companies, the Bay Area is the place to go for anyone looking to make it big in the tech industry. That said, San Francisco has a lot to offer beyond technology thanks to a thriving art and music scene, excellent food and a short drive to several of the country’s most beautiful recreational areas.

Key Facts About San Francisco Tech

  • Number of Tech Workers: 365,500; 13.9% of overall workforce (2024 CompTIA survey)
  • Major Tech Employers: Google, Apple, Salesforce, Meta
  • Key Industries: Artificial intelligence, cloud computing, fintech, consumer technology, software
  • Funding Landscape: $50.5 billion in venture capital funding in 2024 (Pitchbook)
  • Notable Investors: Sequoia Capital, Andreessen Horowitz, Bessemer Venture Partners, Greylock Partners, Khosla Ventures, Kleiner Perkins
  • Research Centers and Universities: Stanford University; University of California, Berkeley; University of San Francisco; Santa Clara University; Ames Research Center; Center for AI Safety; California Institute for Regenerative Medicine

Sign up now Access later

Create Free Account

Please log in or sign up to report this job.

Create Free Account