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Cnc Applications Engineer Jobs in Virginia (NOW HIRING)

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CNC Operator

Roanoke, VA · On-site

$23 - $25/hr

Proficiency in common CNC milling techniques and G-code programming (desired). * Ability to read ... advanced technology applications. If you are experienced in CNC machining and precision ...

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CAM Programmer / CNC Machinist

Lynchburg, VA · On-site

$25.75 - $35.25/hr

... and space applications. For more information, visit www.bwxt.com . Follow us on LinkedIn , X ... As our CAM Programmer / CNC Machinist, you will serve as a key contributor within our Prototyping ...

CAM Programmer / CNC Machinist

Lynchburg, VA · On-site

$25.75 - $35.25/hr

... and space applications. For more information, visit www.bwxt.com. Follow us on LinkedIn, X ... As our CAM Programmer / CNC Machinist, you will serve as a key contributor within our Prototyping ...

CAM Programmer / CNC Machinist

Lynchburg, VA · On-site

$25.75 - $35.25/hr

... and space applications. For more information, visit www.bwxt.com . Follow us on LinkedIn , X ... As our CAM Programmer / CNC Machinist, you will serve as a key contributor within our Prototyping ...

CAM Programmer / CNC Machinist

Lynchburg, VA · On-site

$25.75 - $35.25/hr

... and space applications. For more information, visit www.bwxt.com. Follow us on LinkedIn, X ... As our CAM Programmer / CNC Machinist, you will serve as a key contributor within our Prototyping ...

... and space applications. For more information, visit www.bwxt.com . Follow us on LinkedIn , X ... As our CAM Programmer / CNC Machinist, you will serve as a key contributor within our Prototyping ...

Knowledge of mathematics including arithmetic, algebra, and geometry applications * Knowledge of ... Proficiency in CNC programming languages including G-code and M-code * Familiarity with CAM ...

Showing results 21-40

Cnc Applications Engineer information

See Virginia salary details

$48.6K

$79.7K

$105.6K

How much do cnc applications engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for cnc applications engineer in Virginia is $79,726.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,400.00 and $92,200.00 per year, depending on experience, location, and employer.

What is a CNC applications engineer?

CNC Applications Engineers are professionals who specialize in optimizing and supporting the use of Computer Numerical Control (CNC) machines in manufacturing environments. They work with clients or internal teams to develop efficient machining processes, select appropriate tools, and program CNC equipment to achieve desired production outcomes. Their role often includes troubleshooting, training operators, and enhancing productivity by implementing the latest technologies and techniques. CNC Applications Engineers bridge the gap between engineering design and shop floor operations, ensuring that manufacturing processes are both effective and cost-efficient.

What does a CNC applications engineer do?

As a CNC applications engineer, your responsibilities include programming vertical, horizontal, and CNC turning centers for production machining systems, completing a machine assessment for each, and ensuring full customer satisfaction. Some jobs require you to run customer demonstrations, create demo programs for showrooms, and recommend the best machining strategies and efficient ways to process parts. You are also expected to provide accurate cost estimates and write engineering reports. Other duties include setting up custom demos and training customers on safe set-up and operation of their CNC machining centers, lathes, multitasking machines, and more.

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

To thrive as a CNC Applications Engineer, you need strong knowledge of CNC programming, machining processes, mechanical engineering principles, and typically a relevant engineering degree. Expertise in CAD/CAM software, G-code, and familiarity with CNC controllers and tooling systems are commonly required. Excellent problem-solving skills, effective communication, and the ability to train others help distinguish top performers in this role. These skills and qualities are crucial for optimizing manufacturing processes, ensuring precision, and supporting both customers and production teams effectively.

What are some common challenges CNC applications engineers face when supporting clients on new machine installations?

CNC Applications Engineers often encounter challenges such as adapting machine parameters to unique client requirements, troubleshooting unexpected programming or tooling issues, and ensuring operators are fully trained on new systems. Additionally, they must communicate complex technical concepts clearly to both technical and non-technical stakeholders. These challenges require strong problem-solving skills, adaptability, and the ability to work collaboratively with manufacturing teams, engineers, and clients to ensure successful machine integration.

What are the most commonly searched types of Cnc Applications Engineer jobs in Virginia?

The most popular types of Cnc Applications Engineer jobs in Virginia are:

What are popular job titles related to Cnc Applications Engineer jobs in VA?

For Cnc Applications Engineer jobs in VA, the most frequently searched job titles are:

Infographic showing various Cnc Applications Engineer job openings in Virginia as of August 2026, with employment types broken down into 1% As Needed, 80% Full Time, 16% Part Time, 1% Temporary, and 2% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $79,726 per year, or $38.3 per hour.

CNC Programmer - (19)-Portsmouth,Virginia

Fairlead

Suffolk, VA

$25.25 - $34.50/hr

Full-time

Re-posted 7 days ago


Job description

Summary:
The CNC Programmer is responsible for developing, optimizing, and maintaining machine programs that support automated material processing operations. This position will be responsible for creating production-ready programs for CNC equipment including a plasma cutting table and 6-axis robotic CNC processing cell, ensuring safe execution, quality output, material efficiency, and schedule performance. The CNC Programmer serves as the technical bridge between Engineering and Manufacturing by translating engineering requirements into executable machine programs, developing process standards, supporting equipment implementation, and continuously improving throughput and machine utilization. The ideal candidate has experience supporting industrial manufacturing environments and understands both machine programming and practical production execution.
Essential Duties and Responsibilities:
  • Develop, create, and maintain CNC machine programs for plasma cutting systems and 6-axis robotic CNC processing equipment.
  • Convert engineering drawings, 3D models, and production requirements into optimized machine programs and nesting plans.
  • Generate and validate tool paths, cut strategies, robotic motion paths, and machine parameters to maximize efficiency and quality.
  • Perform simulation and verification of programs prior to release to production.
  • Collaborate with Engineering, Production, Quality, and Operations teams to ensure manufacturability and schedule execution.
  • Optimize machine utilization, cycle time, material yield, and consumable usage.
  • Establish and maintain programming standards, naming conventions, setup instructions, and revision control processes.
  • Support first article production and machine prove-out activities for new programs.
  • Troubleshoot machine execution issues and modify programs to resolve quality or productivity concerns.
  • Create and maintain machine setup sheets, operator instructions, and standard work documentation.
  • Support implementation of new equipment, software upgrades, and automation initiatives.
  • Analyze production data and identify opportunities for continuous improvement.
  • Support preventive maintenance efforts by validating machine calibration and process capability.
  • Ensure all programs meet company safety standards and equipment operating requirements.
  • Provide technical support and guidance to CNC Operators and production personnel.

Qualifications:
  • Minimum 5 years of experience programming CNC manufacturing equipment in an industrial environment.
  • Experience programming CNC plasma tables, robotic processing systems, beam lines, laser systems, or automated fabrication equipment.
  • Experience programming 6-axis robotic motion systems and understanding robotic kinematics.
  • Experience with nesting software and CAD/CAM platforms.
  • Experience in structural steel fabrication, shipbuilding, heavy manufacturing, or industrial production environments.
  • Working knowledge of G-code, machine control systems, and post-processors.
  • Experience interpreting engineering drawings, GD&T, and fabrication standards.
  • Experience supporting new equipment commissioning and production startup activities.
  • Knowledge of Lean Manufacturing and process optimization principles.

Minimum Requirements:
  • High school diploma or GED required; Associate degree or technical certification preferred.
  • Demonstrated ability to read and interpret engineering drawings, models, and manufacturing documentation.
  • Proficiency with CAD/CAM software and Microsoft Office applications.
  • Strong understanding of manufacturing processes, machine capability, and production flow.
  • Ability to troubleshoot manufacturing and programming issues independently.
  • Strong communication and cross-functional coordination skills.
  • Demonstrated commitment to safety, quality, and schedule performance.

Physical Demands:
  • Frequent standing, walking, and movement throughout production areas.
  • Ability to sit and perform computer-based programming work for extended periods.
  • Ability to occasionally lift up to 25 pounds.
  • Ability to access manufacturing equipment for setup verification and troubleshooting.
  • Visual ability to review drawings, monitor machine operations, and inspect production output.
  • Ability to wear required PPE in production environments.

Work Environment:
  • Combination of office and industrial manufacturing environments.
  • Frequent interaction with automated manufacturing systems, production equipment, and fabrication operations.
  • Exposure to noise, airborne particulates, welding fumes, and moving equipment when supporting shop floor operations.
  • Work may require schedule flexibility to support production demands, startup activities, and troubleshooting efforts.
  • Strict adherence to all safety procedures and operational controls is required.