1

Japan Robotics Engineer Jobs in Houston, TX (NOW HIRING)

... Korea, Japan, the United States, and Singapore. Korea is the center of gravity for our early ... Our work spans both the robot platform itself and the systems, partners, and playbooks required to ...

Electrical Engineer

Houston, TX · On-site

$120 - $160/hr

... Korea, Japan, the United States, and Singapore. Korea is the center of gravity for our early ... Our work spans both the robot platform itself and the systems, partners, and playbooks required to ...

Electrical Engineer

Houston, TX · On-site

$110 - $150/hr

... Korea, Japan, the United States, and Singapore. Korea is the center of gravity for our early ... Our work spans both the robot platform itself and the systems, partners, and playbooks required to ...

Showing results 21-28

Japan Robotics Engineer information

See Houston, TX salary details

$27.7K

$100.8K

$161.4K

How much do japan robotics engineer jobs pay per year?

As of Sep 7, 2026, the average yearly pay for japan robotics engineer in Houston, TX is $100,850.00, according to ZipRecruiter salary data. Most workers in this role earn between $79,700.00 and $121,300.00 per year, depending on experience, location, and employer.

What is a Japan Robotics Engineer?

A Japan Robotics Engineer is a professional who designs, develops, and maintains robotic systems, often working in industries like manufacturing, healthcare, and electronics in Japan. They combine knowledge of mechanical engineering, electronics, computer programming, and artificial intelligence to create robots that improve efficiency and solve complex tasks. These engineers may work on everything from industrial robots used in car factories to humanoid robots for customer service. Japan is renowned for its advancements in robotics, making this a highly innovative and in-demand field. Fluency in Japanese and familiarity with Japanese manufacturing standards are often important for this role.

What are some common challenges Japan Robotics Engineers face when integrating robots into traditional manufacturing environments?

Japan Robotics Engineers often encounter challenges when adapting advanced robotics solutions to legacy manufacturing systems, such as ensuring compatibility with existing machinery, managing data integration, and addressing workforce training needs. There can also be cultural and process-related hurdles, as teams may be accustomed to manual workflows. Successful engineers collaborate closely with production staff, provide clear documentation, and participate in cross-functional meetings to align robotics initiatives with on-the-ground operational realities.

What are the key skills and qualifications needed to thrive as a Japan Robotics Engineer, and why are they important?

To excel as a Japan Robotics Engineer, you need a solid background in mechanical or electrical engineering, computer science, and robotics, typically validated by a bachelor’s or master’s degree in these fields. Familiarity with CAD software, programming languages such as C++ or Python, and hands-on experience with robotic operating systems (ROS) and automation tools are essential. Strong problem-solving abilities, teamwork, and effective communication are important soft skills for designing and implementing complex robotics solutions. These skills and qualifications are critical for driving innovation and ensuring the reliability and efficiency of advanced robotics systems in Japan's highly competitive technology sector.

What is the difference between Japan Robotics Engineer vs Japan Automation Technician?

AspectJapan Robotics EngineerJapan Automation Technician
Required CredentialsEngineering degree, robotics certificationsTechnical diploma, automation system certifications
Work EnvironmentDesign, development, programming of robotsInstallation, maintenance, troubleshooting of automation systems
Employer & Industry UsageManufacturing, research labs, tech companiesFactories, production lines, industrial plants

Japan Robotics Engineers focus on designing and programming robots, requiring engineering degrees and specialized certifications. Automation Technicians handle installation and maintenance of automation systems, often with technical diplomas. Both roles are vital in manufacturing but differ in responsibilities and skill requirements.

How much do Japan robotics engineers make in Japan?

Japan robotics engineers typically earn between 4 million and 8 million yen annually, depending on experience, skills, and the complexity of projects. Entry-level engineers may start at lower salaries, while experienced professionals with specialized skills in automation and AI can earn higher compensation.

What job categories do people searching Japan Robotics Engineer jobs in Houston, TX look for?

The top searched job categories for Japan Robotics Engineer jobs in Houston, TX are:

What cities near Houston, TX are hiring for Japan Robotics Engineer jobs?

Cities near Houston, TX with the most Japan Robotics Engineer job openings:

Mechatronics Manufacturing Engineer

Persona AI Inc

Houston, TX • On-site

$90 - $130/hr

Other

Medical, PTO

Posted 18 days ago


Job description

Job Title: Mechatronics Manufacturing Engineer

Department: Hardware

Employment Type: Full-Time

Location: Houston, TX

Travel: 10%

Who We Are

Persona AI is building humanoid robots for the most demanding environments in heavy industry — shipyards, steel mills, fabrication facilities, and offshore platforms — performing welding, grinding, maintenance, inspection, and material‑handling work that is dangerous, physically demanding, and increasingly difficult to staff.

We are backed by leading strategic and financial investors and engaged with global industrial leaders across Korea, Japan, the United States, and Singapore. Korea is the center of gravity for our early commercial strategy, anchored by relationships with the world’s leading shipbuilders and steelmakers. Our work spans both the robot platform itself and the systems, partners, and playbooks required to deploy it at scale.

Why Join Persona AI?
  • We offer competitive compensation, a performance-based bonus, 99% employer covered medical benefits, early‑stage equity, competitive PTO, and a company‑wide paid winter break between December 24th and January 2nd.

  • You’ll shape technology that’s redefining the possibilities of robotics and human interaction.

  • Work alongside passionate teammates who value creativity, and continuous learning.

About the Role

We’re looking for a Mechatronics Manufacturing Engineer to build the test fixtures, assembly aids, and end‑of‑line test stations that let us build and validate humanoid robots reliably and at speed. This is a hands‑on, build‑it‑yourself role that sits at the intersection of mechanical, electrical, and software work: you’ll design a fixture’s mechanical structure, wire up the sensors and actuators that drive it, and write the test code that runs it — then stand at the bench and make it work.

Testing is the biggest part of this role. You’ll be the person who decides how we know a subassembly or actuator is good before it goes on the robot, and you’ll build the hardware and software that makes that verification fast, repeatable, and trustworthy on the shop floor. We’re open to candidates coming from either a mechanical or electrical background, as long as you’re comfortable working across both disciplines to get a fixture from concept to a working station on the line.

What You Will Be Doing
  • Design and build test fixtures, jigs, and assembly aids that support fabrication, assembly, and end‑of‑line test of robot subsystems (actuators, manipulators, harnesses, and integrated assemblies).

  • Develop end‑of‑line and in‑process test stations, including mechanical hardware, sensor and instrumentation integration, and the control/test software that runs them.

  • Select and integrate sensors, actuators, motors, and simple control electronics into fixtures and test equipment.

  • Write test scripts and simple applications (e.g., Python, C/C++, LabVIEW) to automate data collection, pass/fail criteria, and test sequencing.

  • Work with manufacturing, quality, and design engineering to define what “good” looks like for a given part or assembly, and translate that into a testable, repeatable procedure.

  • Iterate quickly on fixture and station designs based on line feedback, failure data, and changing product designs.

  • Debug fixtures and test stations on the floor — mechanical, electrical, and software issues alike — to keep the line running.

  • Document fixture designs, test procedures, calibration steps, and maintenance instructions for use by manufacturing and test technicians.

  • Support DFM/DFT feedback to design engineering based on what you learn building and running test and assembly equipment.

  • Perform statistical analysis of quality metrics and provide feedback to manufacturing processes and system designs.

What We Are Looking For:
  • Bachelor’s degree in Mechanical Engineering, Electrical Engineering, Mechatronics, or a related field, or equivalent hands‑on experience.

  • 3+ years of experience working in a production environment building test fixtures, assembly tooling, or manufacturing test equipment, ideally in electronics, robotics, automotive, or similar hardware production environments.

  • Comfortable working across mechanical and electrical disciplines: you can design a simple mechanical fixture, wire up sensors and actuators, and write the code to make it all work together.

  • Practical CAD skills (SolidWorks, Onshape, Fusion, or similar) for fixture and tooling design.

  • Basic electrical skills: reading schematics, wiring test stations, using DAQ/PLC hardware or simple embedded controllers (Arduino, Raspberry Pi, microcontrollers).

  • Programming ability in at least one language commonly used for test/automation (Python, C/C++, LabVIEW, or similar).

  • Strong troubleshooting instincts — comfortable diagnosing whether a problem is mechanical, electrical, or software before reaching for a fix.

  • A hands‑on, get‑it‑working mindset with attention to repeatability, safety, and ease of use for the technicians who’ll run your fixtures every day.

  • A friendly, collaborative attitude and strong communication skills; design without ego.

Bonus Skills:
  • Experience testing motors, actuators, or robotic subsystems (torque, force, position, current, thermal).

  • Familiarity with statistical process control, GD&T, and calibration practices for test equipment.

  • Experience performing inspection of precision mechanical or electrical systems.

  • Experience with PLCs, industrial controls, or SCADA‑type systems.

  • Experience designing pneumatic or hydraulic fixtures.

  • Comfortable in a machine shop (mill, lathe, 3D printing) for rapid fixture iteration.

  • Experience supporting NPI or ramping new products from prototype to volume manufacturing.

  • Exposure to humanoid robotics, exoskeletons, or other articulated mechanical systems.

  • Experience working directly with manufacturing technicians and operators on the floor.

Persona AI is an Equal Opportunity Employer.

All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, sexual orientation, gender identity, age, disability, veteran status, or any other characteristic protected by applicable federal, state, or local law.

#J-18808-Ljbffr