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Incose Jobs in Arizona (NOW HIRING)

Systems Engineer

Tempe, AZ · On-site

$117K - $176K/yr

Should be familiar with INCOSE processes and standards for system development and system lifecycle Executing AS9100 compliant product development processes. * MS in an engineering discipline.

Systems Engineering Professional (SEP), INCOSE, CISSP, Security+ certification, or similar credentials. * Proficient in Python or C++ software development, automation, and system support.

Systems Engineering Professional (SEP), INCOSE, CISSP, Security+ certification, or similar credentials. * Proficient in Python or C++ software development, automation, and system support.

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Incose information

See Arizona salary details

$42.9K

$95.1K

$142.6K

How much do incose jobs pay per year?

As of Aug 28, 2026, the average yearly pay for incose in Arizona is $95,115.00, according to ZipRecruiter salary data. Most workers in this role earn between $71,800.00 and $116,500.00 per year, depending on experience, location, and employer.

What is an Incose?

An INCOSE job typically refers to roles related to systems engineering and positions that align with the principles of the International Council on Systems Engineering (INCOSE). These jobs involve designing, integrating, and managing complex systems across industries like aerospace, defense, healthcare, and automotive. Professionals in INCOSE-related jobs often follow systems engineering standards and frameworks to optimize efficiency and functionality. Many employers seek candidates with INCOSE certifications, such as ASEP, CSEP, or ESEP, to validate their expertise.

What kind of projects or industries do Incose-certified systems engineers typically work in?

INCOSE-certified Systems Engineers often work on large-scale, complex projects across industries such as aerospace, defense, automotive, healthcare, and information technology. They are involved in all phases of the systems lifecycle, from requirements definition and architecture development to integration, testing, and maintenance. The work environment is highly collaborative, frequently bringing together multidisciplinary teams to address technical challenges and ensure systems meet stakeholder needs. As systems engineering is vital for mission-critical projects, professionals in this field can expect dynamic responsibilities, continuous learning, and strong opportunities for career advancement.

What are the key skills and qualifications needed to thrive in the Incose position, and why are they important?

To thrive as an INCOSE Systems Engineer, you need a strong background in systems engineering principles, analytical thinking, and typically a degree in engineering or a related field. Familiarity with industry-standard modeling tools (such as SysML or Cameo), requirements management software, and holding INCOSE certification (like ASEP, CSEP, or ESEP) is highly valued. Strong communication, collaboration, and problem-solving abilities are key soft skills for working with diverse technical teams and stakeholders. These competencies are crucial for effectively designing, integrating, and managing complex systems in various industries.

Infographic showing various Incose job openings in Arizona as of August 2026, with employment types broken down into 90% Full Time, 7% Part Time, and 3% Contract. Highlights an 82% Physical, 14% Hybrid, and 4% Remote job distribution, with an average salary of $95,115 per year, or $45.7 per hour.

Postdoctoral Research Associate, Systems and Industrial Engineering

Tucson, AZ


University of Arizona
Colleges, Universities, and Professional Schools • 10K+ employees

7.3

Company rating: 7.3 out of 10

Based on 68 frontline employees who took The Breakroom Quiz

366th of 625 rated colleges and universities

People enjoy working here

Good employer

Recommended by students


Full-time

Re-posted 11 days ago


Job description

  • Author and co-author peer-reviewed journal papers targeting venues such as Systems Engineering (Wiley/INCOSE), SIMULATION (SCS/SAGE), Applied Ontology (IOS Press), and relevant IEEE/ACM journals.
  • Prepare and present conference papers at CSER, INCOSE IS, CESUN, and similar venues.
  • Contribute to technical reports and sponsor deliverables as needed.
  • Support the design and implementation of a digital engineering sandbox environment for capability prototyping, training, and experimentation.
  • Integrate emerging SE tooling (e.g., AI-assisted workflows, ontology-backed reasoning, requirements co-pilots) into the sandbox.
  • Ensure the sandbox supports controlled experimentation and repeatable demonstrations of SE capabilities.
  • Design, implement, and evaluate next-generation SE capabilities such as AI-augmented requirements engineering, automated conflict detection, model-based review support, and change impact analysis.
  • Advance selected capabilities from early maturity toward cross-context application using the project's assessment framework.
  • Prototype and test novel capability concepts informed by the transformation roadmap and sponsor priorities.
  • Conduct systematic literature reviews on digital engineering transformation, AI-augmented systems engineering, readiness assessment frameworks, and formal methods for SE.
  • Monitor and synthesize emerging SE capabilities.
  • Maintain a living literature database supporting project deliverables and journal submissions.
  • Design and execute controlled experiments, case studies, interviews, or surveys to generate rigorous evidence on SE capability effectiveness.
  • Collect and analyze data from sponsors and stakeholders on adoption barriers, governance gaps, and capability value.
  • Engage with professional organizations (e.g., INCOSE) to solicit expert feedback on the transformation roadmap framework and assessment methodology.
  • Mentor and supervise undergraduate research assistants working on project tasks.
  • Define scoped research tasks appropriate for undergraduate contribution (literature coding, data collection, prototype testing, documentation).
  • Review student work products and support their professional development (conference presentations, writing skills, research methods).

Knowledge, Skills, and Abilities

  • Knowledge of systems engineering principles, including model-based systems engineering (MBSE).
  • Knowledge of digital engineering concepts, tools, and transformation initiatives.
  • Skilled in utilizing Python.


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