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Human Machine Interface Jobs in Indiana (NOW HIRING)

Experienced with Human-Machine Interface (HMI) and Programmable Logic Controller (PLC) applications. * Demonstrates deep understanding of the companys Quality Management System (QMS). * Provide ...

HMIs (Human Machine Interfaces) * VFDs (Variable Frequency Drives) * Industrial communication systems * Perform preventive and predictive maintenance on: * PLCs * Drives * Electrical systems

Make recommendations for development action; analyze, modify and improve programmable logic controllers (PLC) and human-machine interfaces (HMI). * Provide design and technical support of PLC based ...

Make recommendations for development action; analyze, modify and improve programmable logic controllers (PLC) and human-machine interfaces (HMI). * Provide design and technical support of PLC based ...

Experience supporting Building Management Systems, Distributed Control Systems, Programmable Logic Controllers, Human Machine Interfaces, or historian platforms in manufacturing environments. Solid ...

General Utility-Cook

Kokomo, IN · On-site

$12.50 - $16.75/hr

Operates kettles by means of electronic controls and Human Machine Interfaces (HMI's). * Monitors and documents processes. * Operates iPad based productivity and food safety application software.

General Utility-Cook

Kokomo, IN

$12.75 - $17/hr

... Human Machine Interfaces (HMI's). • Monitors and documents processes. • Operates iPad based productivity and food safety application software. • Completes all necessary paperwork accurately and ...

As technologies such as IoT, wireless, Human Machine Interfaces, customer connectivity, etc. continue to become a standard expectation, our controls solutions continue to evolve to support new ...

Showing results 41-60

Human Machine Interface information

See Indiana salary details

$13

$21

$29

How much do human machine interface jobs pay per hour?

As of Aug 18, 2026, the average hourly pay for human machine interface in Indiana is $21.72, according to ZipRecruiter salary data. Most workers in this role earn between $18.75 and $24.23 per hour, depending on experience, location, and employer.

What is a human machine interface?

A Human Machine Interface (HMI) is a user interface or dashboard that connects a person to a machine, system, or device. It allows operators to interact with and control industrial equipment, visualize data, and monitor processes in real time. HMIs are widely used in manufacturing, energy, transportation, and other industries to increase efficiency and safety. They can range from simple touchscreens to complex software applications integrated with other control systems.

What are the key skills and qualifications needed to thrive as a human machine interface engineer?

To thrive as a Human Machine Interface (HMI) Engineer, you need a solid background in computer science, electrical engineering, or a related field, along with expertise in user interface (UI) and user experience (UX) design. Familiarity with HMI software platforms (such as Siemens WinCC or Rockwell FactoryTalk), programming languages (like C++, Java, or Python), and relevant certifications are typically required. Strong problem-solving abilities, creativity, and effective communication skills help HMI Engineers design intuitive and efficient interfaces for end users. These skills are crucial for developing safe, reliable, and user-friendly systems that optimize human interaction with complex machines.

What are some common challenges faced by human machine interface professionals when collaborating with multidisciplinary teams?

HMI professionals often work closely with engineers, software developers, UX/UI designers, and end users, which can present challenges in aligning technical requirements with usability and design goals. Navigating differing priorities—such as balancing system performance with user-friendly interfaces—requires strong communication and negotiation skills. Additionally, HMI specialists must stay adaptable to rapidly evolving technologies and industry standards, ensuring seamless integration across hardware and software platforms. Building consensus and fostering effective teamwork are crucial for delivering successful HMI solutions.

What is the difference between Human Machine Interface vs Control Systems Engineer?

AspectHuman Machine InterfaceControl Systems Engineer
Required CredentialsTypically technical certifications, HMI software trainingEngineering degree, control systems certifications
Work EnvironmentManufacturing, industrial, automation settingsIndustrial plants, automation projects
Employer & Industry UsageManufacturers, automation companiesProcess industries, automation firms
Common Search & ComparisonYesNo

Human Machine Interface (HMI) professionals focus on designing and implementing user interfaces for industrial machines, ensuring operators can interact effectively with equipment. Control Systems Engineers develop and maintain control algorithms and systems that automate processes. While both roles work within industrial automation, HMI specialists concentrate on user interfaces, whereas Control Systems Engineers focus on system control logic and integration.

What does a human machine interface do?

A Human Machine Interface (HMI) is a device or software that allows operators to interact with machinery or industrial systems, providing controls, displays, and data visualization. HMI professionals design, program, and maintain these interfaces to ensure efficient and safe operation of equipment, often using tools like SCADA systems and PLCs. They play a key role in automation and control environments.

What are popular job titles related to Human Machine Interface jobs in Indiana?

For Human Machine Interface jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Human Machine Interface jobs in Indiana look for?

The top searched job categories for Human Machine Interface jobs in Indiana are:

Infographic showing various Human Machine Interface job openings in Indiana as of August 2026, with employment types broken down into 1% As Needed, 79% Full Time, 17% Part Time, and 3% Contract. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution, with an average salary of $45,169 per year, or $21.7 per hour.

$40 - $43/hr

Full-time

Re-posted 3 days ago


Job description

Maintenance Programmer

JOB SUMMARY  

The Maintenance Programmer will support the facility's production through the programming, troubleshooting, and maintenance of Programmable Logic Controllers (PLCs), Human-Machine Interfaces (HMIs), and other control systems. This position requires a strong technical aptitude to manage both software and hardware aspects of industrial automation while ensuring compliance with safety and food quality regulations, such as GMPs and HACCP.  

ESSENTIAL DUTIES & RESPONSIBILITIES  

  • PLC/HMI Programming: Design, write, test, and implement PLC programs (e.g., Allen-Bradley ControlLogix, CompactLogix) and HMI/SCADA software (e.g., Wonderware) that meet production needs. 

  • Troubleshooting & Repair: Diagnose and repair complex electrical, mechanical, pneumatic, and control system issues to minimize production downtime. 

  • Preventive Maintenance: Perform planned preventive maintenance (PMs) and inspections on machinery to foresee potential problems and ensure equipment longevity. 

  • System Installation & Commissioning: Collaborate with engineers and production teams to install new equipment and control systems, including field commissioning and startup procedures. 

  • Documentation & Compliance: Maintain accurate documentation of all maintenance activities, software changes, and electrical schematics. Ensure all work aligns with OSHA, GMPs (Good Manufacturing Practices), and HACCP food safety standards. 

  • Continuous Improvement: Monitor system efficiency, analyze key performance indicators (KPIs), and propose modifications or upgrades to existing automation to improve processes. 

  • Training & Support: Provide training and technical support to operations and other maintenance personnel on automated systems and new equipment operations.  

SKILLS/QUALIFICATIONS  

  • Technical Expertise: Proficiency in PLC programming, setup, and troubleshooting is essential. Strong electrical knowledge and the ability to read and interpret technical diagrams, schematics, and blueprints are also required. 

  • Industry Knowledge: A solid understanding of food processing equipment, such as HTST, CIP systems, conveyors, pumps, and packaging machinery, is highly beneficial. 

  • Problem-Solving: Excellent analytical and problem-solving skills to identify root causes of malfunctions and implement effective corrective and preventive measures. 

  • Communication: Strong communication skills to collaborate effectively with cross-functional teams (Production, Quality Assurance, Engineering, and Sanitation). 

  • Physical Demands: Ability to work in a food manufacturing environment (which may involve exposure to temperature extremes or dust) and perform physical tasks, including lifting up to 50-75 pounds and standing for extended periods.  

  • Education: A technical diploma or relevant certification in industrial maintenance, automation, or electrical systems. 

  • Other:  

  • Bilingual English and Spanish a plus 

  • Prior experience in a manufacturing or industrial environment is typically required, with experience in food or beverage manufacturing being a significant advantage. 

PHYSICAL REQUIREMENTS 

  • Ability to work within timelines and under pressure based on production needs 

  • Availability to work scheduled hours, including weekends as required 

  • Ability to stand, bend, and climb stairs for extended periods (10–12 hours per day as needed) 

  • Ability to work in a refrigerated environment (32–36 °F) 

  • Must be able to lift up to 50 pounds multiple times throughout the day 

WHY JOIN US? 

  • Play a key role in the launch of a next-generation facility  

  • Work with a collaborative and innovative-driven team  

  • Help deliver high-quality, safe, and delicious food products to consumers  

  • Contribute to the future of food manufacturing through automation and sustainability