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Robotics Hardware Engineer Jobs in Ohio (NOW HIRING)

As Staff Engineer for our Robot Communication & Connectivity cluster, you own the technical architecture of that entire vertical -- from the real-time drive bus at the hardware boundary, through ...

A university degree (Bachelor's or Master's) in Robotics, Computer Science, Mechanical Engineering ... of real robot hardware and its limitations * Team spirit, a structured working style, and the ...

At the heart of product innovation and development, our Systems Engineering Department transforms ... Good grasp of mechatronic components, robotic hardware architecture, sensors and robotics software ...

D. or M.Sc. in Electrical Engineering, Computer Engineering, Applied Physics, Robotics, or a ... Low-level hardware experience: FPGA development using Verilog,SystemVerilog, or VHDL, Linux kernel ...

Partnered with the Robotics Middleware Engineer for the broader middleware stack architecture ... MoveIt2 hardware interface authoring; OROCOS RTT components for hard-RT control pipelines; Apex.OS ...

By collaborating closely with software, hardware, safety, and certification teams, we ensure every ... Own cybersecurity engineering for embedded robotic platforms, from secure architecture design and ...

Our flexible backend system integrates robots, sensors, and other systems present in manufacturing and combines them with our cutting-edge algorithms. You will report to our Hardware Engineering ...

Our flexible backend system integrates robots, sensors, and other systems present in manufacturing and combines them with our cutting-edge algorithms. You will report to our Hardware Engineering ...

Showing results 21-40

Robotics Hardware Engineer information

See Ohio salary details

$48.5K

$139K

$186.8K

How much do robotics hardware engineer jobs pay per year?

As of Sep 13, 2026, the average yearly pay for robotics hardware engineer in Ohio is $139,021.00, according to ZipRecruiter salary data. Most workers in this role earn between $117,400.00 and $155,000.00 per year, depending on experience, location, and employer.

How much do robotics hardware engineers make?

Robotics hardware engineers typically earn a median annual salary of around $85,000 to $110,000, depending on experience, education, and location. Senior roles or those with specialized skills in sensors, embedded systems, or CAD tools can earn higher salaries, often exceeding $130,000 annually.

What does a robotics hardware engineer do?

A robotics hardware engineer designs, develops, and tests the physical components of robots, including sensors, actuators, circuit boards, and mechanical parts. They work with CAD software, electrical systems, and embedded hardware to ensure the robot's functionality and durability, often collaborating with software engineers to integrate hardware and software systems.

What cities in Ohio are hiring for Robotics Hardware Engineer jobs?

Cities in Ohio with the most Robotics Hardware Engineer job openings:

Infographic showing various Robotics Hardware Engineer job openings in Ohio as of June 2026, with employment types broken down into 94% Full Time, 3% Part Time, and 3% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $139,021 per year, or $66.8 per hour.

Tech Lead -- Robot Communication & Connectivity (human)

On-site

Other

Posted 26 days ago


Job description

Your mission & challenges

Every byte of data that moves between a NEURA robot's servo drives and the fleet cloud passes through layers of communication infrastructure. As Staff Engineer for our Robot Communication & Connectivity cluster, you own the technical architecture of that entire vertical — from the real-time drive bus at the hardware boundary, through robot abstraction middleware and industrial fieldbus protocols, all the way up to fleet cloud connectivity and the Neuraverse developer SDK.

This is a pure individual contributor role. You carry no people management responsibility. Your authority is technical: you set architectural direction, hold permanent veto on design decisions within your scope, and are the person the team calls when a communication boundary decision is genuinely non-trivial.

You will provide technical leadership to approximately 20 engineers across platform guild and product-anchor roles. You write code, lead design reviews, author technical RFCs, and maintain current hands‑on expertise across the communication stack. This is not an architecture‑only position.

  • Own the architectural direction for the full robot communication stack: real‑time drive bus, robot middleware, gRPC control API design, industrial fieldbus protocols, fleet cloud connectivity, and the Neuraverse developer SDK
  • Define and maintain the co‑review protocol at the boundary between RT OS scheduling and the EtherCAT master — any board support package change must pass a joint latency budget review before merge; you own this process alongside the Robot Systems cluster lead
  • Own gRPC control API governance: proto contract standards, versioning policy, backward compatibility, and streaming RPC patterns that all robot platform integration engineers implement against
  • Set DDS and ROS2 middleware standards across all platforms: QoS policy, shared‑memory transport, zero‑copy configuration, and domain isolation
  • Own the protocol stack architectural direction for industrial fieldbus integration: PROFINET, EtherNet/IP, OPC UA, and safety bus implementations; define the boundary between the protocol stack and the industrial interface server layers
  • Drive quarterly cross‑team state machine and API design reviews: any transition guard or gRPC API change that could be generalised must be design‑reviewed before platform‑specific implementation
  • Lead quarterly cluster knowledge days: peer‑to‑peer problem exchange where every engineer brings one unsolved and one solved problem; output is a shared library ticket or design document, never slides
  • Write design documents that reduce knowledge concentration; mentor Senior engineers toward Staff level; drive cluster hiring sourcing
What we can look forward to
  • Real‑time communication and networking
    • Hands‑on EtherCAT master stack implementation and commissioning on production robot hardware — SOEM, EtherLab, or equivalent; configuration alone is not sufficient
    • IEEE 1588/PTP hardware clock synchronisation implementation experience on physical hardware
    • TSN stack configuration: 802.1Qbv/Qav/AS traffic shaping and deterministic Ethernet scheduling for real‑time environments
    • Deep DDS middleware expertise (FastDDS or equivalent): QoS design, shared‑memory transport, zero‑copy, domain isolation at production deployment level
  • Robot middleware and API design
    • gRPC/protobuf API governance experience at the cross‑team level — you have designed APIs that multiple other teams depend on, including versioning and backward compatibility
    • ROS2 middleware stack proficiency: ros2_control, lifecycle nodes, diagnostics framework, launch architecture
    • Robot operational state machine design for safety‑critical systems: boot, homing, fault, emergency stop, and recovery cycle patterns
    • C++17/20 at RT loop constraints: lock‑free data structures, 1 kHz control loop discipline, latency profiling
  • Staff‑level leadership (mandatory)
    • Demonstrated cross‑team architectural impact: your design decisions changed how multiple teams work, not just your own domain
    • RFC or design document leadership with cross‑team reach: you have resolved interface conflicts between teams and had your proposal adopted as the standard
    • Mentoring track record: at least one engineer you have materially accelerated toward a senior or staff‑equivalent level
    • 8+ years of hands‑on engineering experience spanning embedded real‑time systems and robot communication middleware
  • Nice to have
    • Industrial fieldbus protocol stack implementation: PROFINET device stack, EtherNet/IP adapter, safety bus design (FSoE/PROFIsafe)
    • Fleet robotics platform engineering: OTA pipelines, VDA 5050 mission protocol, fleet telemetry at scale
    • Developer SDK design for external developers: typed node systems, skill marketplace toolchains, API versioning
    • Open‑source contributions to robotics communication infrastructure (FastDDS, ros2_control, SOEM, or equivalent)
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