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Robotic Engineering Jobs in Modesto, CA (NOW HIRING)

Robotic Welding Engineer

Stockton, CA · On-site

$18.25 - $25/hr

Working closely with Engineering, Production, Quality, Maintenance, Supply Chain, and Program Management, the Robotic Welding Engineer leads process development for new product introductions (NPI ...

Robotic Welding Engineer

Stockton, CA · On-site

$18.25 - $25/hr

Working closely with Engineering, Production, Quality, Maintenance, Supply Chain, and Program Management, the Robotic Welding Engineer leads process development for new product introductions (NPI ...

Robotic Welding Engineer

Stockton, CA · On-site

$36.25 - $50/hr

Working closely with Engineering, Production, Quality, Maintenance, Supply Chain, and Program Management, the Robotic Welding Engineer leads process development for new product introductions (NPI ...

Robotics Engineer

Tracy, CA · On-site

$75K - $85K/yr

Conducts complex high-level assessments and defines process complexity in terms of robotic process ... in Project Management, Engineering, Industrial Automation or Robotics. * Will also accept ...

Robotics Engineer

Tracy, CA · On-site

$75K - $85K/yr

Conducts complex high-level assessments and defines process complexity in terms of robotic process ... in Project Management, Engineering, Industrial Automation or Robotics. * Will also accept ...

Robotics Engineer

Tracy, CA · On-site

$75K - $85K/yr

Conducts complex high-level assessments and defines process complexity in terms of robotic process ... in Project Management, Engineering, Industrial Automation or Robotics. * Will also accept ...

OR an Associate's degree in a related engineering field plus a minimum of 4 years of hands-on experience testing or operating robotic or electromechanical systems. * Technical Expertise:

OR an Associate's degree in a related engineering field plus a minimum of 4 years of hands-on experience testing or operating robotic or electromechanical systems. * Technical Expertise:

Robotics Engineering: Lead conceptualization, development, and integration of cutting-edge robotic solutions for manufacturing tasks. * Environmental & Civil Engineering: Lead sustainable engineering ...

Strong hands-on experience assembling, operating, maintaining, and troubleshooting robotics and electro-mechanical systems. * Prior experience in maintenance engineering, automation maintenance, or ...

Strong hands-on experience assembling, operating, maintaining, and troubleshooting robotics and electro-mechanical systems. * Prior experience in maintenance engineering, automation maintenance, or ...

Strong hands-on experience assembling,operating, maintaining, and troubleshooting robotics and electro-mechanical systems. * Prior experience in maintenance engineering, automation maintenance, or ...

System Engineer

Lathrop, CA · On-site

$80 - $100/hr

Strong hands-on experience assembling,operating, maintaining, and troubleshooting robotics and electro-mechanical systems. * Prior experience in maintenance engineering, automation maintenance, or ...

System Engineer

Lathrop, CA · On-site

$80 - $100/hr

Strong hands‑on experience assembling, operating, maintaining, and troubleshooting robotics and electro‑mechanical systems. * Prior experience in maintenance engineering, automation maintenance ...

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Robotic Engineering information

See Modesto, CA salary details

$16

$29

$47

How much do robotic engineering jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for robotic engineering in Modesto, CA is $29.80, according to ZipRecruiter salary data. Most workers in this role earn between $23.32 and $34.76 per hour, depending on experience, location, and employer.

What is robotic engineering?

Robotic engineering is a branch of engineering that involves the design, construction, operation, and maintenance of robots. It combines principles from mechanical engineering, electrical engineering, computer science, and control systems to create machines that can perform tasks autonomously or with human guidance. Robotic engineers work on developing robots for various industries, including manufacturing, healthcare, space exploration, and more. The field is rapidly evolving as technology advances, offering exciting opportunities for innovation and problem-solving.

What are the key skills and qualifications needed to thrive as a robotic engineer, and why are they important?

To thrive as a Robotic Engineer, you need a solid background in mechanical engineering, electronics, computer science, and mathematics, often supported by a bachelor’s or master’s degree in robotics or a related field. Familiarity with programming languages (such as C++, Python, or ROS), CAD software, and robotics simulation tools is typically required, along with certifications in robotics or automation. Strong problem-solving skills, creativity, teamwork, and effective communication are essential soft skills that set top professionals apart. These competencies ensure the successful design, implementation, and maintenance of complex robotic systems in diverse industries.

What are the typical collaboration dynamics between robotic engineers and other teams during a project?

Robotic engineers frequently collaborate with multidisciplinary teams, including software developers, electrical engineers, and mechanical designers. During a project, they often participate in cross-functional meetings to ensure that hardware, software, and control systems are seamlessly integrated. Effective communication and problem-solving are essential, as robotic engineers may need to translate complex technical requirements between teams or troubleshoot issues that arise during development and testing. This collaborative environment fosters innovation and helps streamline the creation of advanced robotic solutions.

What is the difference between Robotic Engineering vs Mechanical Engineering?

AspectRobotic EngineeringMechanical Engineering
Required CredentialsBachelor's in Robotics, Mechanical, or Electrical Engineering; certifications in roboticsBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentDesign labs, manufacturing plants, research facilitiesManufacturing, design studios, research labs
Industry UsageRobotics companies, automation firms, tech startupsAutomotive, aerospace, manufacturing, energy
Common Search/ComparisonRobotic Engineering vs Mechanical Engineering

Robotic Engineering focuses on designing, developing, and maintaining robots and automation systems, often requiring specialized knowledge in robotics and programming. Mechanical Engineering covers a broader range of mechanical systems, including machinery, thermal systems, and structural components. While both fields share foundational engineering principles, Robotic Engineering emphasizes automation and control systems, making it more specialized for robotics applications.

Do robotic engineers make good money?

Robotic engineers typically earn competitive salaries that vary based on experience, education, and location. According to industry data, the median annual wage for robotic engineers is higher than the average for engineering roles, with opportunities for increased earnings through specialized skills in automation, control systems, and programming. Advanced certifications and experience with robotics software and hardware can further enhance earning potential.

Is there a demand for robotic engineers?

Robotic engineering is a growing field with increasing demand across industries such as manufacturing, healthcare, and logistics. Skilled robotic engineers with knowledge of automation, control systems, and programming are sought after as companies adopt advanced robotics and automation technologies.

What jobs do robotic engineers do?

Robotic engineers design, develop, and test robotic systems and automation solutions for various industries. They work on tasks such as programming robots, integrating sensors and control systems, and improving robot performance, often using tools like CAD software and programming languages like C++ or Python. Their work environment typically includes laboratories, manufacturing plants, or research facilities, and they may need specialized certifications or degrees in engineering or robotics.

What are popular job titles related to Robotic Engineering jobs in Modesto, CA?

For Robotic Engineering jobs in Modesto, CA, the most frequently searched job titles are:

What job categories do people searching Robotic Engineering jobs in Modesto, CA look for?

The top searched job categories for Robotic Engineering jobs in Modesto, CA are:

What cities near Modesto, CA are hiring for Robotic Engineering jobs?

Cities near Modesto, CA with the most Robotic Engineering job openings:

Infographic showing various Robotic Engineering job openings in Modesto, CA as of August 2026, with employment types broken down into 84% Full Time, 13% Part Time, 2% Contract, and 1% Nights. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $61,975 per year, or $29.8 per hour.

$18.25 - $25/hr

Full-time

Posted 24 days ago


Key responsibilities

  • Develop, program, commission, and optimize robotic welding systems for new and existing products.

  • Lead robotic weld cell startup activities, process validation, and production release.

  • Troubleshoot complex welding, robotic, and automation issues.


Job description

Description

Robotic Welding Engineer

Full-time | Permanent 

Salaried | $85K - $128K 



About Us: 

Vander-Bend is a U.S.-based manufacturer dedicated to building the precision infrastructure that powers tomorrow's AI. Our expertise in server racking and power delivery solutions provides the backbone for next-generation data centers, enabling hyperscalers and integrators to innovate and scale globally. With a focus on trusted, domestic manufacturing, we deliver quality, speed, and innovation at scale-redefining AI infrastructure for the future. 


We are a newly created division of Vantedge Medical, the premier metals-based med-tech solutions partner from concept to full-scale manufacturing. With a steadfast commitment to advancing technology, we take immense pride in the work we do - and have a lot of fun doing it. 



About this Role:

The Robotic Welding Engineer serves as the technical subject matter expert (SME) for all robotic welding operations within the facility. This position is responsible for developing, optimizing, and sustaining automated welding processes that deliver world-class quality, productivity, and safety. 


Working closely with Engineering, Production, Quality, Maintenance, Supply Chain, and Program Management, the Robotic Welding Engineer leads process development for new product introductions (NPI), drives continuous improvement initiatives, supports Design for Manufacturability (DFM), and resolves complex manufacturing challenges.  This position provides technical leadership for robotic welding but is not responsible for direct supervision of production personnel. 


Responsibilities:

  • Develop, program, commission, and optimize robotic welding systems for new and existing products.  
  • Establish robust welding parameters that maximize quality, repeatability, throughput, and equipment utilization.  
  • Lead robotic weld cell startup activities, process validation, and production release.  
  • Troubleshoot complex welding, robotic, and automation issues.  
  • Optimize cycle times while maintaining customer quality requirements.  
  • Develop standardized robotic welding practices across all production lines.  
  • Lead manufacturing engineering support for new welded products.  
  • Participate in Design for Manufacturability (DFM) reviews with customers and internal engineering teams.  
  • Develop manufacturing strategies for new welded assemblies.  
  • Design and validate weld fixtures and tooling.  
  • Support prototype builds through production launch.  
  • Lead projects focused on: Scrap reduction, Weld quality improvement, Cycle time reduction, Overall Equipment Effectiveness (OEE), Automation improvements, Cost reduction, Utilize Lean Manufacturing and Six Sigma methodologies where appropriate.
  • Analyze production data to identify improvement opportunities.  
  • Serve as the company's technical expert in robotic welding processes.  
  • Mentor technicians, programmers, operators, and manufacturing engineers.  
  • Develop robotic welding standards and best practices.  
  • Evaluate new welding technologies, equipment, consumables, and automation solutions.  
  • Support capital equipment selection and implementation.  
  • Ensure all welding processes comply with customer specifications and applicable industry standards.  
  • Develop and maintain welding process documentation.  
  • Lead root cause investigations for weld-related defects.  
  • Support corrective and preventive actions (CAPA).  
  • Work closely with Quality Engineering to improve first-pass yield.  
  • Support production during startup, process changes, and troubleshooting.  
  • Develop work instructions, process documentation, and manufacturing procedures.  
  • Support Maintenance in preventive maintenance strategies for robotic weld equipment.  
  • Coordinate with suppliers regarding welding equipment and consumables.  

Requirements

Bachelor's degree in: 

  • Welding Engineering  
  • Manufacturing Engineering  
  • Mechanical Engineering  
  • Industrial Engineering  
  • or related engineering discipline  
  • Equivalent experience may be considered. 

Preferred: 

  • 5+ years of robotic welding engineering experience.  
  • Experience supporting high-volume manufacturing.  
  • Experience with robotic MIG welding.  
  • Experience with sheet metal fabrication.  
  • Experience launching new manufacturing processes.  
  • Experience supporting NPI.  
  • Preferred experience with: 
  • Yaskawa robots  
  • ABB robots  
  • Fanuc robots  
  • Panasonic robots  

Strong knowledge of: 

  • Robotic programming  
  • MIG welding  
  • Weld metallurgy  
  • Welding parameters  
  • Weld fixture design  
  • GD&T  
  • Blueprint interpretation  
  • Process validation  
  • Statistical process control  
  • Root Cause Analysis  
  • PFMEA  
  • Control Plans  
  • APQP  
  • Lean Manufacturing  
  • Continuous Improvement  
  • Experience with CAD software such as: 
  • SolidWorks  
  • AutoCAD  
  • Experience using ERP/MES systems.