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Gibbscam Programmer Jobs in Arizona (NOW HIRING)

CNC Mill Setup Machinist

Tempe, AZ · On-site

$30 - $32/hr

Ability to fill out inspection reports. * (Optional) FADAL experience is a plus. * (Optional) GibbsCAM software programming experience is a plus. * (Optional) Ability to to write simple G-code at the ...

CNC Lathe Operator II

Phoenix, AZ

$21 - $26.75/hr

Experience with GibbsCAM, Mastercam, and SolidWorks preferred. * Familiarity with CNC programming and program optimization a plus. * Strong understanding of tooling, speeds, feeds, and materials.

CNC Mill Setup Machinist

Tempe, AZ · On-site

$30 - $32/hr

Ability to fill out inspection reports. * (Optional) FADAL experience is a plus. * (Optional) GibbsCAM software programming experience is a plus. * (Optional) Ability to to write simple G-code at the ...

CNC Mill Setup Machinist

Tempe, AZ · On-site

$30 - $32/hr

Ability to fill out inspection reports. * (Optional) FADAL experience is a plus. * (Optional) GibbsCAM software programming experience is a plus. * (Optional) Ability to to write simple G-code at the ...

CNC Machinist (Swiss Screw)

Mesa, AZ · On-site

$20.75 - $28.50/hr

Cam software programming experience. GibbsCam PREFERRED * Knowledge in G&M codes relating to Swiss machining. PREFERRED * Ability to accurately read and interpret documents such as safety rules ...

Gibbscam Programmer information

See Arizona salary details

$11

$36

$64

How much do gibbscam programmer jobs pay per hour?

As of Aug 23, 2026, the average hourly pay for gibbscam programmer in Arizona is $36.84, according to ZipRecruiter salary data. Most workers in this role earn between $23.99 and $47.93 per hour, depending on experience, location, and employer.

What is a Gibbscam programmer?

A Gibbscam Programmer is responsible for creating CNC machine tool programs using Gibbscam software. They interpret engineering drawings, select appropriate tooling, and generate toolpaths for efficient machining. Their role involves optimizing programs for precision, reducing cycle times, and ensuring manufacturing feasibility. Additionally, they may troubleshoot issues, collaborate with machinists and engineers, and improve production processes.

What are the typical daily responsibilities of a Gibbscam programmer?

A Gibbscam Programmer’s day commonly involves creating and optimizing CNC programs for milling and turning machines using GibbsCAM software, interpreting engineering drawings, and selecting appropriate tools and machining strategies. You’ll also be responsible for troubleshooting programming issues, collaborating closely with machinists and engineers to refine processes, and ensuring that finished parts meet quality and tolerance requirements. Many roles involve supporting production runs, conducting test cuts, and continually improving existing programs to reduce cycle times and minimize waste. Working in this position provides regular opportunities to solve technical challenges and contribute to product quality and team success.

What are the key skills and qualifications needed to thrive as a Gibbscam programmer?

To thrive as a Gibbscam Programmer, you need strong CNC programming skills, understanding of machining processes, and experience with GibbsCAM software, often supported by technical certifications or a related degree. Expertise in CAD/CAM systems, knowledge of G-code/M-code, and familiarity with manufacturing equipment are typically required. Attention to detail, problem-solving, and effective communication are standout soft skills in this position. These abilities ensure efficient, accurate production, minimize errors, and facilitate smooth collaboration with machinists and engineers.

What are popular job titles related to Gibbscam Programmer jobs in Arizona?

For Gibbscam Programmer jobs in Arizona, the most frequently searched job titles are:

What job categories do people searching Gibbscam Programmer jobs in Arizona look for?

The top searched job categories for Gibbscam Programmer jobs in Arizona are:

Infographic showing various Gibbscam Programmer job openings in Arizona 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 $76,633 per year, or $36.8 per hour.

Aerospace Manufacturing Engineer / Senior CNC Programmer

Grove Gallery & Interiors

Chandler, AZ • On-site

$90 - $130/hr

Other

PTO

Posted 10 days ago


Job description

Aerospace Manufacturing Engineer / Senior CNC Programmer

08/11/2026

Depends On Experience

Full Time

Chandler, AZ

On-site

Job Description

Sonic Aerospace is looking for an experienced Aerospace Manufacturing Engineer / Senior CNC Programmer to join our expanding precision manufacturing team in Chandler, Arizona.

We seek a manufacturing engineer with extensive aerospace machining expertise who can oversee complex multi-axis processes, enhance production efficiency, support manufacturing operations, and program challenging aerospace parts from prototype to full production.

Sonic Aerospace excels in precision machining for the aerospace, defense, and space sectors. We machine complex castings, forgings, and hog-outs with advanced multi-axis machinery, working extensively with materials like aluminum, titanium, inconel, stainless steel, hastelloy, MAR-M-247, and other challenging materials.

Our facility is AS9100D certified, ITAR registered, CMMC 2.0 Level 2, and equipped with advanced inspection and multi-axis machining capabilities.

Responsibilities
  • Program, optimize, and troubleshoot 3-, 4-, and 5-axis CNC machining centers.
  • Develop manufacturing processes for complex aerospace components.
  • Create and maintain setup documentation, tooling strategies, and shop travelers within ERP systems.
  • Interpret engineering drawings, GD&T, blueprints, and customer specifications.
  • Support machining operations with tooling selection, fixture concepts, and process improvements.
  • Edit and verify G-code and post-processor outputs.
  • Collaborate with machinists, quality assurance, and engineering teams to enhance throughput and quality.
  • Reduce setup times, improve efficiency, and drive manufacturability improvements.
  • Support first article inspections and production readiness.
Qualifications
  • Over five years of experience in aerospace CNC programming and manufacturing engineering.
  • Extensive experience with GibbsCAM or Mastercam.
  • Experience machining aerospace-grade materials such as titanium and nickel alloys.
  • Ability to understand GD&T, blueprints, and engineering models.
  • Experience with ERP/MRP systems and manufacturing documentation.
  • Extensive knowledge of tooling, feeds and speeds, fixturing, and machining strategies.
  • Experience with AS9100 quality management systems is preferred.
Equipment & Technology
  • Doosan and Yama Seiki multi-axis milling machines.
  • Simultaneous 5-axis machining.
  • High-speed machining capable of operating at up to 15,000 RPM.
  • Advanced CMM inspection systems compliant with SPX-00033100.
  • CAD/CAM engineering environment.
  • JobBOSS ERP system.
  • A highly competitive compensation package based on aerospace machining and programming experience.
  • Available overtime opportunities.
  • PTO and paid holidays.
  • Vacation.
  • Long-term growth potential in a stable aerospace manufacturing firm.

Please answer the following questions

Do you have hands-on experience programming 3-, 4-, and 5-axis machining centers? *

Yes

No

Have you machined aerospace-grade materials such as titanium or Inconel? *

Yes

No

Are you proficient in GibbsCAM or Mastercam for CNC programming? *

Yes

No

Do you have 5 or more years of aerospace CNC programming and manufacturing engineering experience? *

Yes

No

Can you comfortably interpret GD&T and aerospace engineering drawings? *

Yes

No

Describe your experience with CAD/CAM integration (for example Mastercam or GibbsCAM) and model-based manufacturing. How have you used these tools to improve programming efficiency or part accuracy?

Describe a specific aerospace or defense component you programmed for multi-axis CNC machining (3-, 4-, or 5-axis). What challenges did you face and how did you solve them from prototype through production?

Explain a project where you implemented or supported lights-out or high-speed machining strategies. What automation, error-proofing, or monitoring measures did you put in place?

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