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Computer Integrated Manufacturing Engineer Jobs in Montana

Support new product introductions with line integration planning. * Collaborate with Manufacturing Engineers to ensure manufacturable designs. * Travel as needed. * Perform additional duties as ...

Industrial Engineer lll

Columbia Falls, MT · On-site

$64K - $86K/yr

Support new product introductions with line integration planning. * Collaborate with Manufacturing Engineers to ensure manufacturable designs. * Travel as needed. * Perform additional duties as ...

Operations Engineer

Columbus, MT · On-site

$71K - $96K/yr

If you're passionate about manufacturing, continuous improvement, equipment reliability, and ... Technically proficient with Microsoft Office, Microsoft Dynamics AX, CAD packages, and other ...

Engineers collaborate closely with Manufacturing, IT Integration, Quality, and Program Management ... Create and maintain electrical schematics, wiring diagrams, and CAD documentation. * Ensure designs ...

Engineers collaborate closely with Manufacturing, IT Integration, Quality, and Program Management ... Create and maintain electrical schematics, wiring diagrams, and CAD documentation. * Ensure designs ...

Engineers collaborate closely with Manufacturing, IT Integration, Quality, and Program Management ... Bachelor's degree in Computer Science or related field or 2-5 years IT support experience; industry ...

Engineers collaborate closely with Manufacturing, IT Integration, Quality, and Program Management ... Bachelor's degree in Computer Science or related field or 2-5 years IT support experience; industry ...

Showing results 41-60

Computer Integrated Manufacturing Engineer information

See Montana salary details

$43.6K

$78.6K

$110.1K

How much do computer integrated manufacturing engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for computer integrated manufacturing engineer in Montana is $78,580.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,000.00 and $86,300.00 per year, depending on experience, location, and employer.

What does a computer integrated manufacturing engineer do?

A Computer Integrated Manufacturing (CIM) Engineer is responsible for designing, implementing, and optimizing automated manufacturing systems that use computers to control the entire production process. They integrate hardware and software solutions to streamline operations, improve product quality, and increase efficiency. CIM Engineers work with robotics, computer-aided design (CAD), and computer-aided manufacturing (CAM) systems to ensure the seamless flow of information and materials throughout the manufacturing process.

How does a computer integrated manufacturing engineer typically collaborate with other departments during a project?

As a Computer Integrated Manufacturing (CIM) Engineer, you'll frequently work cross-functionally with production, quality assurance, design engineering, and IT teams. Your role involves integrating computer systems with manufacturing processes, so you'll often coordinate with software developers to customize automation solutions and with production managers to ensure smooth implementation on the shop floor. Regular meetings and clear communication with these teams are essential for troubleshooting issues, optimizing workflows, and ensuring that technological upgrades align with manufacturing goals. This collaborative environment provides valuable opportunities to broaden your technical knowledge and build strong professional relationships.

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

To thrive as a Computer Integrated Manufacturing Engineer, you need a strong background in manufacturing processes, automation, and systems engineering, usually supported by a degree in mechanical, industrial, or manufacturing engineering. Proficiency with CAD/CAM software, PLC programming, robotics, and familiarity with ERP systems and lean manufacturing certifications are typically required. Analytical thinking, problem-solving, and effective teamwork are essential soft skills for optimizing production and driving process improvements. These skills are vital for integrating advanced technologies in manufacturing, enhancing efficiency, and maintaining competitive operations.

What is the difference between Computer Integrated Manufacturing Engineer vs Manufacturing Engineer?

AspectComputer Integrated Manufacturing EngineerManufacturing Engineer
Required CredentialsBachelor's in Manufacturing, Industrial Engineering, or related; certifications like CIM or CAD software proficiencyBachelor's in Mechanical, Industrial, or Manufacturing Engineering; similar certifications often required
Work EnvironmentDesigning, implementing, and optimizing automated manufacturing systems in factories or plantsDeveloping manufacturing processes, improving production efficiency, and troubleshooting in production facilities
Employer & Industry UsageUsed by manufacturing firms focusing on automation and integrated systemsCommon across various manufacturing sectors including automotive, aerospace, and consumer goods

The main difference is that Computer Integrated Manufacturing Engineers focus on designing and managing automated, computer-controlled manufacturing systems, while Manufacturing Engineers concentrate on developing and improving manufacturing processes. Both roles require similar educational backgrounds and certifications but differ in their focus areas within the manufacturing industry.

Is there a demand for computer integrated manufacturing engineers?

Computer Integrated Manufacturing (CIM) engineers are in high demand due to the increasing adoption of automation, robotics, and advanced manufacturing systems across industries. Employers seek professionals skilled in CAD/CAM software, PLC programming, and systems integration to improve production efficiency and reduce costs.

What cities in Montana are hiring for Computer Integrated Manufacturing Engineer jobs?

Cities in Montana with the most Computer Integrated Manufacturing Engineer job openings:

Infographic showing various Computer Integrated Manufacturing Engineer job openings in Montana as of June 2026, with employment types broken down into 93% Full Time, 6% Part Time, and 1% Contract. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $78,580 per year, or $37.8 per hour.

Industrial Engineer lll

Columbia Falls, MT

Kratos Defense
National Security and International Affairs • 1 - 5K employees

$64K - $86K/yr

Full-time

Re-posted 4 days ago


Key responsibilities

  • Design and implement scalable vehicle/product assembly lines.

  • Develop feeder cells to support main line flow.

  • Identify and eliminate production bottlenecks.


Kratos Defense & Security Solutions rating

7.8

Company rating: 7.8 out of 10

Based on 10 frontline employees who took The Breakroom Quiz


Job description

Overview:  

Nomad Global Communication Solutions (Nomad GCS) is a leading provider of communication and response products serving a wide variety of customers. Our purpose is to be the solution when every minute matters. We seek a candidate that is self-inspired to learn and demonstrates a high degree of customer service while positively contributing to our team.

The Industrial Engineers (IEs) at Nomad GCS are responsible for designing, developing, and optimizing scalable production systems that support Nomad's primary vehicle/product assembly operations. This includes the development of main vehicle assembly lines, creation of feeder cells that support those lines, and the continuous improvement of material flow, labor utilization, and production efficiency. IEs focus on system-level production architecture — ensuring that the right work happens at the right station, at the right time, with the right resources. Being able to learn on-the-fly is required. All solutions must adhere to or exceed Nomad's standards of safety, efficiency, quality, and scalability.

Career Growth:  Advancement is based on measurable improvements to throughput, cost, scalability, and production stability.  Industrial Engineers progress through five levels based on demonstrated capability in:

  • Assembly line design
  • Feeder cell integration
  • Capacity modeling
  • Production flow architecture
  • Lean implementation
  • Leadership and organizational impact


Organizational Structure:Nomad Engineering is organized into Teams and Disciplines within the Innovative Solutions Division.

  • Teams:
    • Team 1 - Standards and Modularity: Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale.
    • Team 2 - Design: Executes project-level engineering using established standards and less complex custom configurations.
    • Team 3 - Advanced: Develops novel systems and resolves first-of-kind engineering challenges.
    • Team 4 - Manufacturing & Industrial Engineering: Ensures manufacturability, safety, engineering intent, efficiency, and continuous improvement throughout Production.

 

  • Disciplines:
    • Mechanical Engineering
    • Electrical Engineering
    • IT Engineering
    • Human Factors Engineering
    • Software Engineering
    • Manufacturing (MFE) & Industrial Engineering (IE) (where this role is located)

Industrial Engineers operate primarily within Manufacturing & Industrial Engineering (Team 4), collaborating closely with:

  • ISG - Standards & Modularity (Team 1)
  • Production Leadership
  • Supply Chain
  • Quality Assurance
  • Program Management

Team 4 contains both IEs and MFEs. These roles are differentiated in that the IEs are to focus on how we build it efficiently and at scale, whereas the MFEs are to focus on how we build the product correctly and repeatably.

Basic Knowledge Desired - All Levels:

  • Industrial engineering principles (time studies, work measurement, line balancing, takt time analysis).
  • Lean manufacturing tools (VSM, 5S, Kaizen, SMED, standard work).
  • Facility layout and material flow optimization.
  • Capacity planning and production modeling.
  • ERP/MRP systems.
  • Data analysis (Excel required, others encouraged).
  • Production economics and cost analysis.
  • Understanding of fabrication, welding, mechanical assembly processes.
  • Strong cross-functional communication skills.
  • Demonstrated alignment with Nomad Core Values.

Core Responsibilities - All Levels:

  • Design and implement scalable vehicle/product assembly lines.
  • Develop feeder cells to support main line flow.
  • Perform line balancing based on takt time and demand forecasts.
  • Conduct time studies and labor utilization analysis.
  • Assist in developing standard work documentation.
  • Optimize material presentation and flow to point-of-use.
  • Analyze and improve production capacity constraints.
  • Support layout redesigns to improve throughput and safety.
  • Drive continuous improvement initiatives.
  • Analyze production data to identify bottlenecks.
  • Support new product introductions with line integration planning.
  • Collaborate with Manufacturing Engineers to ensure manufacturable designs.
  • Travel as needed.
  • Perform additional duties as assigned.

Level Expectations:

 

Industrial Engineer lll- Advanced / System-Level

  • Lead development of full vehicle assembly lines.
  • Architect feeder cell integration strategy.
  • Perform facility layout redesigns to improve flow.
  • Identify and eliminate production bottlenecks.
  • Develop scalable production models supporting growth.
  • Conduct cost-per-unit analysis and labor optimization modeling.
  • Mentor Level Il-IIll IEs.
  • 5-8 years industrial/manufacturing engineering experience

Primary Focus: System-level production architecture
Progression Signal: Designs lines that run predictably at planned takt with reduced disruption

 

Basic Knowledge Progression:

  • Level I: Foundational time studies and standard work
  • Level ll: Line balancing and feeder cell execution
  • Level lll: System-level flow and bottleneck elimination
  • Level IV: Platform-level scalability and capital planning
  • Level V: Enterprise-level production strategy and growth architecture

 

Visual Progression Ladder:

Level

Scope

Authority

Impact

I

Workstation-Level

Learns IE fundamentals

Improves task consistency

II

Line Segment-Level

Independent analysis

Improves takt alignment

III

Full Line-Level

System architect

Eliminates bottlenecks

IV

Multi-Line / Platform-Level

Technical leader

Scales production

V

Enterprise-Level

Strategic authority

Shapes production growth

 

Physical Demands:

  • Ability to stand and sit for extended periods
  • Occasionally required to climb, balance, stoop, kneel, crouch, or crawl
  • Manual dexterity to operate office and manufacturing equipment
  • Ability to lift and/or move up to 25 pounds frequently and up to 50 pounds occasionally
    • Ability to speak and hear
    • Vision requirements include close and distance vision, peripheral vision and depth perception
    • Ability to work in office, shop, and vehicle environments as needed
    • Ability to work safely around energized systems when required
    • Must be able to travel as needed on occasion

 

Working Environment:

  • Combination of office, production floor, vehicle-based, and exterior environments
  • Exposure to manufacturing noise, electrical equipment, and testing environments
  • PPE required when entering production or testing areas
  • Exposure to household and commercial chemicals
  • Everyday workwear must be business casual/smart casual, appropriate for the office environment, including when traveling and working off-site

Qualifications & Experience:

  • Bachelor of Science in Industrial Engineering or related field - ABET accredited preferred
  • 5-8 years industrial/manufacturing engineering experience
  • Equivalent education and experience may be considered
  • Experience with production system design
  • Experience conducting time studies and line balancing
  • Proficiency in software for modeling (mathematical and physical) as required for this position
  • Experience with ERP/MRP systems
  • Valid driver's license in good standing

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