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Manufacturing Engineering Jobs in Montana (NOW HIRING)

Manufacturing Engineer II

Columbia Falls, MT ยท On-site

$62K - $81K/yr

Manufacturing & Industrial Engineering (Team 4 - electrical engineering focused) Status: Full-Time Overview: Nomad Global Communication Solutions (Nomad GCS) is a leading provider of communication ...

Manufacturing Engineer ll

Columbia Falls, MT ยท On-site

$66K - $86K/yr

Manufacturing Engineering (MFE) MFEs operate primarily within Manufacturing & Industrial ... Engineering (Team 4) while also supporting: * ISG - Standards & Modularity (Team 1) * ISG - Design ...

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 ...

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 ...

Manufacturing Engineer IV

Columbia Falls, MT ยท On-site

$66K - $86K/yr

Manufacturing Engineering (MFE) MFEs operate primarily within Manufacturing & Industrial ... Engineering (Team 4) while also supporting: * ISG - Standards & Modularity (Team 1) * ISG - Design ...

Team 4 - Manufacturing & Industrial Engineering: Ensures manufacturability, safety, engineering intent, efficiency, and continuous improvement throughout Production. * Disciplines: * Mechanical ...

Team 4 - Manufacturing & Industrial Engineering: Ensures manufacturability, safety, engineering intent, efficiency, and continuous improvement throughout Production. * Disciplines: * Mechanical ...

Serve as a liaison between research, engineering, manufacturing, and vendors. Own and drive ERP system implementation and ongoing use. Minimum Qualifications Bachelor's degree in Engineering from an ...

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Showing results 1-20

Manufacturing Engineering information

See Montana salary details

$43.6K

$78.6K

$110.1K

How much do manufacturing engineering jobs pay per year?

As of Aug 12, 2026, the average yearly pay for manufacturing engineering 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 manufacturing engineer do?

A manufacturing engineer designs, develops, and improves manufacturing processes to increase efficiency, quality, and safety. They analyze production workflows, select appropriate tools and equipment, and often use computer-aided design (CAD) and manufacturing (CAM) software. Their work ensures products are produced cost-effectively while meeting quality standards.

How does a manufacturing engineer typically collaborate with other departments to improve production processes?

Manufacturing Engineers work closely with cross-functional teams, such as design, quality assurance, and operations, to optimize production processes. They often participate in meetings to review product designs, address manufacturing challenges, and develop solutions that enhance efficiency and quality. Regular collaboration with maintenance and supply chain teams is also common, ensuring equipment reliability and timely material flow. This teamwork fosters a dynamic environment where continuous improvement is encouraged, and successful projects can lead to increased responsibility and advancement opportunities.

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

To thrive as a Manufacturing Engineer, you generally need a degree in engineering (often mechanical, industrial, or manufacturing), along with strong analytical and problem-solving skills. Familiarity with CAD software, PLC programming, Lean Manufacturing principles, and Six Sigma certification is commonly required. Effective communication, teamwork, and adaptability are important soft skills for collaborating across departments and responding to production challenges. These skills and qualifications are crucial for ensuring efficient production processes, reducing costs, and maintaining high product quality in a competitive manufacturing environment.

What is the difference between Manufacturing Engineering vs Mechanical Engineering?

AspectManufacturing EngineeringMechanical Engineering
Required CredentialsBachelor's in Manufacturing, Industrial, or Mechanical Engineering; certifications like CMfgEBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentFactories, production plants, manufacturing facilitiesDesign offices, research labs, manufacturing plants
Industry UsageHeavy in manufacturing, production, and process optimizationBroader, including automotive, aerospace, energy, and product design
Common Search/ComparisonManufacturing EngineeringMechanical Engineering

Manufacturing Engineering focuses on designing, implementing, and improving manufacturing processes and systems within production environments. Mechanical Engineering covers a broader scope, including design, analysis, and development of mechanical systems across various industries. While both roles require engineering degrees and share some certifications, Manufacturing Engineers specialize in production efficiency, whereas Mechanical Engineers often work on product design and development.

What is manufacturing engineering?

Manufacturing engineering is a branch of engineering focused on designing, analyzing, and improving manufacturing processes, systems, and equipment. Manufacturing engineers work to make production more efficient, cost-effective, and high-quality by implementing new technologies, optimizing workflows, and ensuring safety and sustainability. They collaborate closely with other departments to bring products from design to production, troubleshoot issues, and continuously improve operations. This field is vital in industries such as automotive, aerospace, electronics, and consumer goods.
What are the most commonly searched types of Manufacturing Engineering jobs in Montana? The most popular types of Manufacturing Engineering jobs in Montana are:
What are popular job titles related to Manufacturing Engineering jobs in Montana? For Manufacturing Engineering jobs in Montana, the most frequently searched job titles are:
What job categories do people searching Manufacturing Engineering jobs in Montana look for? The top searched job categories for Manufacturing Engineering jobs in Montana are:
What cities in Montana are hiring for Manufacturing Engineering jobs? Cities in Montana with the most Manufacturing Engineering job openings:
Infographic showing various Manufacturing Engineering job openings in Montana as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $78,580 per year, or $37.8 per hour.

Manufacturing Engineer IV - Electrical Engineering Focus

Nomad GCS

Columbia Falls, MT โ€ข On-site

$85K - $114K/yr

Full-time

Re-posted 16 days ago


Job description

This position requires that you must be a US Citizen for consideration and meet all Federal Contractor employee requirements. Nomad GCS does not support the H1B Visa for this position.
Position: Manufacturing Engineer IV
Division: Innovative Solutions Group (ISG)
Department: Manufacturing & Industrial Engineering (Team 4 - electrical engineering focused)
Status: Full-Time
Nomad GCS is currently seeking a Level IV Manufacturing Engineer. Please note the Level IV Expectation in red below.
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 Manufacturing Engineers (MFEs) at Nomad GCS play a crucial role in supporting the engineering and production processes by identifying and planning for the design, process, and tooling challenges that arise during production. MFEs have experience in mechanical or electrical engineering. This position requires electrical engineering experience with strong problem-solving abilities, and a proactive approach to resolving issues.
MFEs will collaborate on new projects within the broader engineering scope, including outside their primary areas of expertise. 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:
Manufacturing Engineers at Nomad GCS progress through five levels based on:
  • DFM execution and design risk mitigation
  • Tooling, fixture, and process architecture
  • Change control ownership and impact modeling
  • Production issue resolution and prevention
  • Manufacturing documentation standardization
  • Cross-platform manufacturability improvement
  • Production efficiency and cost optimization
  • Technical mentorship and leadership

Advancement is supported through hands-on project ownership, cross-functional collaboration, mentorship, and alignment with Nomad's Core Values.
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
  • Industrial Engineering (IE)
  • Manufacturing Engineering (MFE)

MFEs operate primarily within Manufacturing & Industrial Engineering (Team 4) while also supporting:
  • ISG - Standards & Modularity (Team 1)
  • ISG - Design Engineering (Team 2)
  • ISG - Advanced Engineering (Team 3)
  • Production - assigned Project/team support on the floor
  • Supply Chain
  • Quality Assurance

Team 4 contains both MFEs and IEs. These roles are differentiated in that the MFEs are to focus on how we build the product correctly and repeatably, whereas the IEs are to focus on how we build it efficiently and at scale. The open position on Team 4 is for an MFE with an electrical engineering background.
Basic Knowledge Desired - All Levels:
  • Design for Manufacturability (DFM) principles and application during digital and physical builds.
  • Electrical design fundamentals including low-voltage (12V/24V DC) circuits, high-voltage. (120V/240V AC) circuits, control systems, and power distribution.
  • Design and manufacturing principles used in electrical wiring or harnessing production and its installation within industrial equipment and electrical cabinets.
  • Tooling and fixture design concepts for repeatability, safety, and production efficiency.
  • Raw material or component selection, fabrication methods, and production cost considerations.
  • Interpretation and creation of precision technical drawings and digital models.
  • CAD proficiency (SolidWorks Electrical or equivalent) including modeling, drawing release, and file management.
  • ERP systems and change control processes (CR/CO workflow).
  • Standard manufacturing documentation practices and revision control.
  • Root cause analysis and structured problem-solving methods.
  • Competency in business and engineering software (MS Office: Word, Excel, PowerPoint).
  • Hands-on experience with electrical hand tools (crimping, stripping, soldering), test equipment (multimeter, oscilloscope).
  • IPC/WHMA-A-620 or equivalent knowledge or training.
  • Ability to communicate effectively between Engineering and Production teams.
  • Demonstrated alignment with Nomad Core Values.

Core Responsibilities - All Levels:
  • Review designs for manufacturability (DFM) during digital design and physical construction.
  • Use software (SolidWorks Electrical) to create/edit designs to be used in final production.
  • Advise Engineering on consistent documentation for DFMActs as a bridge between mechanical design and electrical/IT requirements by working with designers early to identify and mitigate issues, managing major SPN concerns before design freeze, and ensuring critical provisions such as wiring, pass-throughs, interfaces, bulkheads, waterproofing, and IT infrastructure needs are incorporated before mid-build integration challenges arise.
  • Collaborate with Mechanical Engineering on design inputs from an electrical perspective to facilitate needed wiring passthroughs, wire routing, interfaces, bulkheads, and waterproofing required by the Electrical Engineering design.
  • Develop and maintain standard work documentation.
  • Develop, implement, and improve manufacturing processes.
  • Support production through training them on standard manufacturing processes.
  • Support production by troubleshooting build issues and clarifying engineering intent.
  • Create and maintain fixtures and tooling designs using hand tools and shop machinery (manual + CNC).
  • Conduct testing and validation, formally documenting results.
  • Analyze CR/COs and assess impact to schedule and costs.
  • Serve as liaison between Engineering and Production.
  • Drive continuous improvement in safety, quality, efficiency, and standardization.
  • Handle and prioritize multiple project requests at the same time.
  • Be willing to travel as needed by Management.
  • Uphold and model Nomad Core Values.
  • Perform additional duties as assigned.

Level Expectations:
Manufacturing Engineer I - Entry / Developing
  • Support senior MFEs with DFM reviews and documentation updates.
  • Support development of standard work documentation.
  • Exposure to at least five (5) full Projects' lifecycles (design, build, ship).
  • Assist with tolerance reviews, basic fixture modifications, and test setups.
  • Learn Nomad manufacturing standards, processes, and documentation expectations.
  • Follow established procedures for Change Requests and Change Orders.
  • Assist with prototype builds and hands-on shop activities.
  • Respond to basic production questions under supervision.
  • Develop working knowledge of welding, machining, routing, and assembly processes.
  • Bachelor's degree in Engineering or related field OR 0-2 years relevant experience.

Primary Focus: Learning and applying core manufacturability standards while supporting accurate execution of DFM, documentation, and basic tooling activities.
Progression Signal: Learns quickly, reduces Production and Engineering rework, and completes assigned tasks correctly with decreasing supervision.
Manufacturing Engineer II - Independent Contributor
  • Independently perform DFM reviews for small to mid-sized assemblies.
  • Develop and maintain standard work documentation.
  • Design and implement moderate-complexity tooling and fixtures.
  • Analyze Change Requests and prepare impact summaries for approval.
  • Support production troubleshooting with minimal oversight.
  • Conduct and document formal test setups and validation procedures.
  • Improve manufacturing documentation clarity and standardization.
  • Estimate engineering effort and manage assigned priorities.
  • 2-5 years manufacturing or mechanical engineering experience.

Primary Focus: Independently delivering manufacturable solutions that reduce rework, clarify engineering intent, and improve production stability.
Progression Signal: Can be trusted to deliver manufacturable solutions without close supervision and consistently improves Production and Engineering outcomes.
Manufacturing Engineer III - Advanced / System-Level
  • Lead manufacturability strategy for full platforms or major subsystems.
  • Own tolerance analysis, fixture design, tooling studies, and process documentation for complex builds.
  • Anticipate production risks and proactively mitigate them during digital design.
  • Lead root cause analysis efforts for production or field failures.
  • Approve or review lower-level MFE DFM recommendations.
  • Optimize designs for cost, repeatability, serviceability, and safety.
  • Mentor MFE I-II team members on tooling, DFM, and production standards.
  • Drive measurable efficiency improvements across departments.
  • 5-8 years manufacturing/industrial engineering experience.
  • Electrical Engineering Experience
  • Advanced system-level electrical design and integration experience across power distribution, control systems, and communications architectures.
  • Strong troubleshooting and root cause analysis capability involving complex electrical, integration, manufacturing, and field issues.
  • Ability to architect and optimize AC/DC electrical systems, wiring strategies, protection schemes, and control interfaces.
  • Skilled in reviewing, approving, and improving engineering documentation including schematics, wiring diagrams, BOMs, and test procedures.
  • Demonstrated knowledge of applicable electrical standards, codes, and best practices including NEC, UL, IEC, and safety compliance requirements.
  • Experience supporting production environments, resolving technical issues, and improving manufacturability and serviceability of designs.
  • Strong cross-functional collaboration skills with mechanical engineering, software, IT integration, manufacturing, quality, suppliers, and customers.
  • Experience leading validation activities, system testing, and failure investigations.
  • Strong technical communication and project coordination skills with internal teams, suppliers, and external stakeholders.
  • Proficient with ECAD tools, electrical documentation systems, and engineering change management processes.
  • Demonstrated ability to independently manage priorities, technical risk, and engineering deliverables on complex programs.

Primary Focus: Owning manufacturability strategy at the subsystem or platform level to prevent production risk and improve build repeatability
Progression Signal: Regularly prevents production problems before they occur and raises the manufacturability standard for the team.
Manufacturing Engineer IV - Senior / Technical Lead
  • Own manufacturing architecture and standardization across multiple product lines.
  • Define and refine Nomad's manufacturing standards, tooling libraries, and modular build strategies.
  • Lead high-risk or complex build programs from prototype through release.
  • Balance competing constraints (schedule, cost, manufacturability, safety).
  • Serve as primary manufacturing authority during cross-functional reviews.
  • Drive capital equipment recommendations and manufacturing technology adoption.
  • Coach and mentor MFEs and production leaders.
  • Recognized internally as a go-to expert for complex production challenges.
  • 8-12+ years advanced manufacturing/industrial engineering experience.
  • Electrical Engineering Experience
  • Expert system-level electrical design and integration experience across power distribution, control systems, and communications architectures.
  • Excellent troubleshooting and root cause analysis capability involving complex electrical, integration, manufacturing, and field issues.
  • Ability to architect and optimize AC/DC electrical systems, wiring strategies, protection schemes, and control interfaces.
  • Skilled in reviewing, approving, and improving engineering documentation including schematics, wiring diagrams, BOMs, and test procedures.
  • Demonstrated knowledge of applicable electrical standards, codes, and best practices including NEC, UL, IEC, and safety compliance requirements.
  • Experience supporting multiple production environments, resolving technical issues, and improving manufacturability and serviceability of designs.
  • Strong cross-functional collaboration skills with mechanical engineering, software, IT integration, manufacturing, quality, suppliers, and customers.
  • Experience leading validation activities, system testing, and failure investigations.
  • Excellent technical communication and project coordination skills with internal teams, suppliers, and external stakeholders.
  • Proficient with ECAD tools, electrical documentation systems, and engineering change management processes.
  • Demonstrated ability to independently manage conflicting priorities, technical risk, and engineering deliverables on complex programs.

Primary Focus: De