Full-Time

Robotics Engineering

Updated on 8/1/2026

Dexmate

Dexmate

11-50 employees

AI-powered dexterous manipulation robotics platform

Compensation Overview

$200k - $400k/yr

Fremont, CA, USA

In Person

Category
Mechanical Engineering (1)
Required Skills
Printed Circuit Board (PCB) Design
Robotics

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Requirements
  • At least 8 years of robotics engineering experience with a strong foundation in dynamics, kinematics, control theory, including impedance/admittance control and whole-body control, and state estimation.
  • Experience owning a shipped hardware product after launch, including field root-cause analysis, firmware releases, and incremental improvement throughout the product's deployed life.
  • Regularly write and review production firmware and controls code.
  • Deep experience with embedded and real-time software, including real-time operating system or PREEMPT_RT environments, sensor and actuator driver integration, real-time scheduling and timing constraints, and hardware-software co-design.
  • Experience architecting firmware for safety-critical behavior, including fault detection, graceful degradation, and safe-state handling when sensors or actuators fail.
  • Experience with robot control and planning systems, including locomotion, manipulation, whole-body control, or equivalent domains such as autonomous vehicle motion planning, including tradeoffs between classical control and learning-based approaches.
  • Comfort operating at the interface between controls, perception, and higher-level planning and artificial intelligence systems.
  • Solid cross-disciplinary hardware understanding of mechanical design and mechanisms, printed circuit board and electronics, actuators, sensors, and wiring, sufficient to lead root-cause investigations spanning mechanical, electrical, and firmware domains.
  • Experience driving corrective actions with hardware and manufacturing teams, including translating a field failure into a design change, process change, or manufacturing fix.
  • Experience building or operating teleoperation systems, including low-latency remote control, operator interface design, and data pipelines that turn teleoperation sessions into usable training data.
  • Experience building or scaling a customer-facing technical support function, including triage processes, escalation paths, and turning field issues into prioritized engineering work.
  • Experience building technical training programs for engineering or field teams, ideally in a hardware or robotics context.
  • Track record of hiring and developing engineers across firmware, controls, and field-facing roles.
Responsibilities
  • Own the architecture and roadmap for robot-side firmware, including real-time control loops, sensor and actuator interfaces, safety systems, and low-level software running on the robot's onboard compute.
  • Lead development of the control and planning stack, including locomotion, manipulation, whole-body control, and real-time systems that translate high-level commands into safe, reliable robot behavior.
  • Lead controls, firmware, and hardware sustaining engineering for the deployed product line, including developing new capabilities on the existing platform.
  • Own the teleoperation system, including the software and interfaces that let operators control robots remotely and collect training data, as well as latency, reliability, and operator-experience tradeoffs.
  • Build and manage the customer support team with clear escalation paths and response processes for issues arising from deployed robots.
  • Turn customer feedback and fleet data into root-caused, prioritized engineering work and drive fixes through validated releases deployed back to robots in the field.
  • Investigate hardware failures arising from customer use and drive corrective actions with hardware and manufacturing teams, closing the loop from field failure to design or process fix.
  • Build and lead the engineering training function, including onboarding and up-skilling internal and field-facing engineers on firmware, controls, and teleoperation systems.
  • Set engineering standards across firmware, controls, and teleoperation, including code review practices, testing and validation for safety-critical robot behavior, and release and rollout discipline for software running on physical hardware.
  • Write and review code directly on critical systems, especially firmware and control-system work.
  • Partner with the chief executive officer, software platform architecture lead, and mechanical and electrical engineering to keep robot-side software, cloud platform, and hardware development in sync.
  • Represent robot engineering to enterprise partners and customers during technical evaluations, pilots, and escalations.
Desired Qualifications
  • Experience with humanoid robots or other complex multi-degree-of-freedom robotic systems.
  • Prior startup leadership experience, ideally as an early robotics engineering leader scaling a team from single digits.
  • Familiarity with the compute and networking stack robots typically run on, including Jetson-class edge compute, EtherCAT, and real-time Linux.

Dexmate builds AI-powered robots with dexterous manipulation for industrial and research use. Its flagship Vega is a dual-arm mobile humanoid with an omnidirectional base, foldable torso, and a 15 kg payload, powered by Nvidia AGX Orin and controllable via a Python API, with a hybrid Robot Copilot that combines AI manipulation and remote teleoperation. The company differentiates itself by pairing embodied AI with high-precision dexterity on a stable mobile platform and offering an integration-friendly path for customers like LG CNS. Its goal is to evolve from the Robot Copilot to a fully autonomous Robot Autopilot that can operate reliably in real-world settings while addressing labor shortages.

Company Size

11-50

Company Stage

N/A

Total Funding

N/A

Headquarters

Santa Clara, California

Founded

2024

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Simplify Jobs

Simplify's Take

What believers are saying

  • LG CNS investment opens enterprise distribution through full-stack robotics services.
  • Warehouse pilots and preorders indicate near-term demand for Vega deployments.
  • Dexterous hands and 15-kilogram combined payload fit complex industrial manipulation tasks.

What critics are saying

  • Teleoperation dependence caps margins until autonomy materially improves.
  • Figure Robotics and Agility Robotics can win warehouse pilots first.
  • Pilot-to-production failure burns cash before recurring deployments materialize.

What makes Dexmate unique

  • Wheeled humanoid Vega emphasizes stability and long operating time over bipedal walking.
  • Hybrid Robot Copilot monetizes teleoperation before full autonomy arrives.
  • Python API and NVIDIA AGX Orin reduce integration friction for enterprise adopters.

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Growth & Insights

Headcount

6 month growth

-5%

1 year growth

-8%

2 year growth

-10%