1

Robotic Programmer Jobs in Indiana (NOW HIRING)

Controls Engineer

Fort Wayne, IN · On-site

$75K - $100K/yr

This is a hands-on engineering role where you'll work across electrical controls, PLC and HMI programming, robotics, machine safety, and equipment commissioning from concept through installation. You ...

Monitor paint robot performance on an ongoing basis, analyzing process data to identify opportunities for cycle time improvement and material reduction. * Optimize paint robot programming and ...

Weld Engineer

Warsaw, IN · On-site

$30.25 - $41.75/hr

Weld Engineer - Direct Hire Location: Warsaw, Indiana Employment Type: Direct Hire / Full-Time ... Robot speed and weld path * Understand what happens when individual weld parameters are changed and ...

Controls & Automation Engineer

Hammond, IN · On-site

$79K - $105K/yr

Fanuc and UR robotic experience of integration, programming, troubleshooting, repairs, and maintenance * Managing small projects / workloads involving Fanuc and UR integrations, safety upgrades on ...

Controls & Automation Engineer

Hammond, IN · On-site

$79K - $105K/yr

Fanuc and UR robotic experience of integration, programming, troubleshooting, repairs, and maintenance * Managing small projects / workloads involving Fanuc and UR integrations, safety upgrades on ...

Weld Engineer

Warsaw, IN · On-site

$34.50 - $47.50/hr

Weld Engineer - Direct Hire Location: Warsaw, Indiana Employment Type: Direct Hire / Full-Time ... Robot speed and weld path * Understand what happens when individual weld parameters are changed and ...

Weld Engineer

Warsaw, IN · On-site

$34.50 - $47.50/hr

Weld Engineer - Direct Hire Location: Warsaw, Indiana Employment Type: Direct Hire / Full-Time ... Robot speed and weld path * Understand what happens when individual weld parameters are changed and ...

Be Seen First

Robotics Intelligent Automation Controls Development * Provide hands-on support for production ... Bachelor's degree in Electrical Engineering or Electrical Engineering Technology, Automation ...

Controls Engineer

Merrillville, IN · On-site

$82K - $106K/yr

Turnkey Robotic Cell Design and Deployment - Packing, palletizing, machine tending, & more * Full Control System Design - PLC programming, HMI design, SCADA, MES * Control Panel Design - Hardware ...

Controls Engineer

Merrillville, IN · On-site

$82K - $106K/yr

Turnkey Robotic Cell Design and Deployment - Packing, palletizing, machine tending, & more * Full Control System Design - PLC programming, HMI design, SCADA, MES * Control Panel Design - Hardware ...

Controls Engineer

Merrillville, IN · On-site

$82K - $106K/yr

Turnkey Robotic Cell Design and Deployment - Packing, palletizing, machine tending, & more * Full Control System Design - PLC programming, HMI design, SCADA, MES * Control Panel Design - Hardware ...

Controls Engineer

Merrillville, IN

$82K - $106K/yr

Turnkey Robotic Cell Design and Deployment - Packing, palletizing, machine tending, & more * Full Control System Design - PLC programming, HMI design, SCADA, MES * Control Panel Design - Hardware ...

Program and integrate industrial robots, including Fanuc, Yaskawa, ABB, KUKA, and UR. Perform PLC programming with Allen-Bradley Studio 5000 and Siemens TIA Portal. Develop and program servo/motion ...

New

Showing results 41-60

Robotic Programmer information

See Indiana salary details

$16

$35

$50

How much do robotic programmer jobs pay per hour?

As of Sep 13, 2026, the average hourly pay for robotic programmer in Indiana is $35.09, according to ZipRecruiter salary data. Most workers in this role earn between $29.04 and $41.15 per hour, depending on experience, location, and employer.

What is a robotic programmer?

A Robotic Programmer is a professional who develops, tests, and maintains the software that controls robotic systems used in manufacturing, automation, and other industries. They write and optimize code to ensure robots perform specific tasks efficiently and safely, often using programming languages like Python, C++, or proprietary robot languages. Robotic Programmers work closely with engineers and technicians to integrate robots into production lines, troubleshoot issues, and update software as needed. Their role is essential for improving productivity, precision, and safety in automated processes.

What are some typical challenges a robotic programmer may face when integrating new robots into existing manufacturing systems?

A Robotic Programmer often encounters challenges such as ensuring compatibility between new robots and legacy equipment, adapting software to accommodate unique production requirements, and minimizing system downtime during integration. Troubleshooting communication protocols and calibrating robots for precise operations are common tasks. Collaborating closely with engineers, maintenance teams, and operators is essential to address unexpected issues and achieve seamless workflow integration.

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

To thrive as a Robotic Programmer, you need a solid understanding of robotics, automation principles, and programming languages such as Python, C++, or specialized robot programming languages, often supported by a degree in engineering or computer science. Familiarity with industrial robot brands (like FANUC, ABB, or KUKA), control systems, and CAD/CAM software is typically required, and certifications in robotics or automation can be advantageous. Strong problem-solving skills, attention to detail, and effective communication set top performers apart in this role. These skills ensure precise robot programming, efficient troubleshooting, and successful collaboration across multidisciplinary automation teams.

What is the difference between Robotic Programmer vs Robotic Technician?

AspectRobotic ProgrammerRobotic Technician
Required CredentialsAssociate's or Bachelor's in Robotics, Engineering, or Computer Science; programming certificationsAssociate's degree or technical certification in robotics or electronics
Work EnvironmentDesigning, coding, and testing robotic software in labs or officesMaintaining, troubleshooting, and repairing robots on the manufacturing floor
Employer & Industry UsageManufacturing, automation, aerospace, automotiveManufacturing plants, assembly lines, industrial facilities
Common Search & Comparison IntentUnderstanding programming roles in roboticsLearning about hands-on robotic maintenance

Robotic Programmers focus on developing and coding software for robots, often working in design and testing environments. Robotic Technicians handle the installation, maintenance, and repair of robotic systems on-site. Both roles are essential in automation industries but differ in responsibilities and skill sets.

How much do robotic programmers make?

Robotic programmers typically earn a median annual salary of around $70,000 to $100,000, depending on experience, location, and industry. Skilled programmers with knowledge of automation tools and programming languages like Python or C++ may earn higher salaries, especially in advanced manufacturing or research environments.

How to become a robotic programmer?

To become a robotic programmer, typically one needs a bachelor's degree in robotics, computer science, electrical engineering, or a related field. Proficiency in programming languages such as C++, Python, or Java, along with knowledge of robotics frameworks like ROS, is essential. Gaining hands-on experience through internships, projects, or certifications can also improve job prospects.

Is robotic programming a good career?

Robotic programming is a growing field that involves developing software to control robotic systems, often requiring knowledge of programming languages like Python or C++ and familiarity with automation tools. It offers opportunities in manufacturing, healthcare, and research, with a demand for skilled professionals and competitive salaries. The career typically requires continuous learning to keep up with technological advancements and certifications in robotics or related areas can enhance job prospects.

What are popular job titles related to Robotic Programmer jobs in Indiana?

For Robotic Programmer jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Robotic Programmer jobs in Indiana look for?

The top searched job categories for Robotic Programmer jobs in Indiana are:

What cities in Indiana are hiring for Robotic Programmer jobs?

Cities in Indiana with the most Robotic Programmer job openings:

What are popular job titles related to Robotic Programmer jobs in IN?

For Robotic Programmer jobs in IN, the most frequently searched job titles are:

Infographic showing various Robotic Programmer job openings in Indiana as of August 2026, with employment types broken down into 2% As Needed, 90% Full Time, 5% Part Time, 2% Contract, and 1% Nights. Highlights an 96% Physical, 2% Hybrid, and 2% Remote job distribution, with an average salary of $72,997 per year, or $35.1 per hour.

Maintenance Technician - CNC/PLC/Robotics - 2nd Shift

Angola, IN • On-site

Asama Coldwater Manufacturing
Motor Vehicle Manufacturing • 201 - 500 employees

$29.25 - $35.25/hr

Full-time

Re-posted 11 days ago


Job description

Asama Coldwater Manufacturing

Maintenance Technician – CNC/PLC/Robotics

Department: Machining

Job Type: Full-Time

FLSA Status: Non-Exempt

Reports To: Machining EQS Leader

Travel: 0–5%

Position Summary

As a Maintenance Technician, you will support the performance, reliability, and repair of machining equipment and production systems. This role works across electrical, mechanical, hydraulic, pneumatic, CNC, robotics, and PLC systems to troubleshoot issues, complete preventive maintenance, and help keep production running safely and efficiently.

What You’ll Do
  • Troubleshoot and repair CNC machines, robotics, and other production equipment
  • Perform preventive maintenance to reduce downtime and extend equipment life
  • Inspect, test, and diagnose mechanical and electrical issues
  • Repair or replace defective parts using hand tools, power tools, and testing equipment
  • Read and work from blueprints, schematics, repair manuals, and parts catalogs
  • Install, align, level, and support startup of new equipment
  • Assemble, install, and repair wiring, electrical components, machinery, and related systems
  • Clean, lubricate, and adjust equipment components including shafts, bearings, gears, drives, motors, and belts
  • Set up and operate machine tools to repair or fabricate parts as needed
  • Use welding and cutting equipment to complete repairs or modifications
  • Record maintenance work performed, parts used, and repair-related costs
  • Support department and company safety goals in all work performed

Required Qualifications
  • High school diploma or GED
  • 3+ years of maintenance experience in a manufacturing environment
  • Experience working with electrical and mechanical systems
  • Working knowledge of hydraulics, pneumatics, and PLCs
  • Ability to read and understand electrical ladder diagrams and motor control circuits
  • Ability to diagnose equipment issues and complete repairs with minimal supervision
Preferred Qualifications
  • Experience troubleshooting CNC equipment
  • Experience programming or troubleshooting robotics
  • PLC troubleshooting or programming experience
  • Welding and fabrication experience
  • Experience with Microsoft Office, AutoCAD, and Mitsubishi systems/controls
Skills That Matter in This Role
  • Electrical and mechanical troubleshooting
  • Preventive maintenance execution
  • Blueprint and schematic reading
  • Equipment installation and setup
  • Safe work practices in a production environment
  • Strong documentation and problem-solving skills
Physical Requirements

This role requires frequent standing, walking, climbing, crawling, bending, squatting, kneeling, reaching, and handling tools or parts throughout the shift. The position also requires frequent lifting and moving of materials, with occasional heavier lifting as needed.

Work Environment

This position works in a manufacturing environment and may involve regular exposure to hot or cold temperatures, moving machinery, noise, and required personal protective equipment.