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Contractual Aerospace Programmer Jobs in Riverside, CA

Reliability Engineer

Irvine, CA · On-site

$110K - $138K/yr

Reliability Engineer Full Time 40 hours/Week Duration: 12 months and flexible to extend further ... aerospace industry standards (e.g., SAE, MIL-STD, AS9100 etc.), contractual deliverables ...

Senior Quality Engineer

Irvine, CA

$95K - $128K/yr

And, together, each and every member of our aerospace team makes a difference. Senior Quality ... Technical and Contractual requirements flow down and traceability; APQP deliverables, RCCA plans.

Senior Quality Engineer

Irvine, CA · On-site

$94K - $128K/yr

And, together, each and every member of our aerospace team makes a difference. Senior Quality ... Technical and Contractual requirements flow down and traceability; APQP deliverables, RCCA plans.

Quality Engineer - 21204

Brea, CA · On-site

$95K - $135K/yr

Ability to interpret contractual, technical, and specification requirements * Aerospace, elastomer, or plastics manufacturing experience preferred * ASQ Quality Engineer, Quality Auditor, Quality ...

New

... contractual compliance. * Communicate across functions (e.g., procurement agents, suppliers, internal customers, field quality, engineering, manufacturing) to report status and concerns. * Co ...

Quality Engineer

Brea, CA · On-site

$95K - $110K/yr

Ability to interpret contractual and specification requirements. * Must be a self-motivated team ... Aerospace and/or Elastomer/Plastics manufacturing experience preferred * Related certification such ...

Quality Engineer

Brea, CA · On-site

$95K - $110K/yr

Ability to interpret contractual and specification requirements. * Must be a self-motivated team ... Aerospace and/or Elastomer/Plastics manufacturing experience preferred * Related certification such ...

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Contractual Aerospace Programmer information

What engineer makes $500,000 a year?

Highly experienced aerospace programmers or engineers working in senior roles, such as lead software engineers or systems engineers in the aerospace industry, can earn salaries approaching or exceeding $500,000 annually, especially with bonuses and stock options. These roles typically require advanced skills in programming, systems integration, and certifications, often in specialized environments like defense or commercial aerospace companies.

Can I make 200k as an aerospace engineer?

Aerospace engineers can earn $200,000 or more annually, especially with advanced experience, specialized skills, or working in high-paying sectors like defense or aerospace manufacturing. Salaries vary based on location, education, certifications, and years of experience, with senior roles and managerial positions more likely to reach or exceed this level.

What is the highest paying job in aerospace?

In aerospace, senior engineering roles such as Aerospace Engineering Managers or Lead Systems Engineers tend to be among the highest paying positions, often earning six-figure salaries. Executive roles like Aerospace Program Directors or Chief Engineers also command high compensation, especially with advanced certifications and extensive experience.

Who are the big 4 in aerospace?

The Big Four in aerospace typically refer to Boeing, Airbus, Lockheed Martin, and Northrop Grumman, which are the largest defense and commercial aerospace manufacturers. Contractual aerospace programmers often work with or develop software for these companies' aircraft and systems, requiring knowledge of aerospace standards and programming languages like C++ or Ada.

What is the difference between Contractual Aerospace Programmer vs Aerospace Software Engineer?

AspectContractual Aerospace ProgrammerAerospace Software Engineer
CredentialsTypically requires a degree in aerospace, computer science, or related fields; certifications in programming and aerospace standardsRequires a degree in aerospace engineering, computer science, or software engineering; often holds certifications in software development and aerospace safety standards
Work EnvironmentContract-based projects, often freelance or temporary roles, working on specific aerospace software tasksFull-time employment within aerospace companies or defense contractors, involved in software design, testing, and integration
Industry UsageCommonly hired for specialized, short-term projects in aerospace firms or government agenciesEmployed for ongoing software development and maintenance in aerospace organizations

In summary, a Contractual Aerospace Programmer typically works on short-term, project-based tasks requiring specific programming skills, while an Aerospace Software Engineer is usually a full-time professional involved in the continuous development and maintenance of aerospace software systems.

What are popular job titles related to Contractual Aerospace Programmer jobs in Riverside, CA? For Contractual Aerospace Programmer jobs in Riverside, CA, the most frequently searched job titles are:
What job categories do people searching Contractual Aerospace Programmer jobs in Riverside, CA look for? The top searched job categories for Contractual Aerospace Programmer jobs in Riverside, CA are:
What cities near Riverside, CA are hiring for Contractual Aerospace Programmer jobs? Cities near Riverside, CA with the most Contractual Aerospace Programmer job openings:
Reliability Engineer

Reliability Engineer

Accord Technologies Inc.

Irvine, CA • On-site

$110K - $138K/yr

Contractor

Posted 16 days ago


Job description

Reliability Engineer
Full Time 40 hours/Week
Duration: 12 months and flexible to extend further
Status: US citizen/ GC
Location:  Onsite at Irvine, CA 92618 USA

Must Have:

Reliability & Failure Analysis (FMEA/FMECA, Weibull, MTBF, root cause, fault tree).

Data Analysis & Statistical Modelling (field data, maintenance logs, trend detection, reliability prediction).

Communication & Reporting (clear technical reports, dashboards, presentations for stakeholders).
Aerospace/Defense

 

Key Skill

Years of Experience

Reliability & Failure Analysis

 

Data Analysis & Statistical Modelling

 

Communication & Reporting

 

Aerospace/Defense

 

 

Roles & Responsibilities

The Reliability Engineer will be responsible for measuring the performance related to reliability, availability, and safety of mechanical, electrical, and electromechanical aerospace components. Key responsibilities include but are not limited to: 

  1. Data Gathering & Historical Analysis
    • Collect and review relevant documentation: customer paperwork, service and maintenance/repair logs, shop findings, field returns data, test reports.
    • Analyze historical failure data, removal/failure causes, unscheduled removal incidents, and determine trends.
    • Establish baseline reliability metrics for components and systems, benchmark performance against contractual or regulatory requirements.
  1. Reliability & Failure‐Mode Analysis
    • Lead and perform reliability assessments including MTBF, MTBUR, Weibull analysis, failure rate modeling, etc.
    • Conduct Failure Mode & Effects Analysis (FMEA) and Failure Mode, Effects, & Criticality Analysis (FMECA) for new designs, modifications, and existing product lines.
    • Perform root cause investigations of component & subsystem failures; identify failure modes, causes, severity, occurrence, detection, and drive corrective/preventive actions.
  1. Monitoring & Reporting
    • Monitor component and part performance on a monthly basis for business jet and commercial aircraft platforms.
    • Prepare regular (monthly, quarterly) reports and dashboards for internal and external stakeholders, summarizing performance, trends, failure rates, unscheduled removals, etc.
    • Prepare both standardized and customized reports for both internal and external stakeholders based on requests
    • Deliver ad hoc reports / investigations as required by engineering, business, or contractual needs.
  1. Standards, Procedures & Compliance
    • Ensure 100% quality in analyzing the events,  align with aerospace industry standards (e.g., SAE, MIL-STD, AS9100 etc.), contractual deliverables, regulatory requirements.
    • Maintain documentation, and ensure compliance in reporting formats.
    • Participate in risk assessments including functional hazard analysis (FHA), fault tree analysis (FTA) or similar where required.

 Job Description / Qualifications

 

Education & Certification:

  • Bachelor’s degree in Mechanical Engineering, Electrical Engineering, Aerospace Engineering, or equivalent. Master’s degree a plus.
  • Certifications Reliability, Maintainability modules.

Experience:

  • Typically 5-8+ years of relevant experience in reliability engineering / maintainability / failure analysis, especially in aerospace or defense domain.
  • Experience with mechanical, electrical, and electromechanical components (actuators, flight control, engine components, fuel systems etc.).
  • Prior exposure to both commercial and military aerospace product lifecycle (design, qualification, in-service operation, field failures).

 Technical Skills:

  • Strong knowledge and hands-on experience with reliability tools and techniques: MTBF, MTBUR, Weibull analysis, reliability prediction models, reliability growth, unscheduled removals.
  • Proficient in FMEA / FMECA, root cause analysis, fault tree analysis, etc.
  • Ability to work with field data, shop findings, maintenance logs, failure records; statistical / probabilistic analysis; data visualization.
  • Familiarity with aerospace standards, tolerances, qualification tests, safety & reliability contractual requirements.

 Soft Skills:

  • Excellent analytical and problem-solving skills; ability to dig deep into data, hardware / failure modes, environment etc.
  • Strong communication: able to write technical reports, present findings to engineering / business / customer stakeholders.
  • Good organizational skills; ability to manage multiple analyses, reports, investigations under schedule constraints.
  • Collaborative mindset; ability to work cross-functionally (engineering, quality, maintenance, supply chain).

 Additional Requirements:

  • Proficiency in relevant software/tools (reliability modelling software, statistical tools, MS Excel, possibly specialized software like Reliasoft, Weibull++, or other).
  • Ability to travel if needed (e.g. to shops, field sites).
  • Awareness of aerospace safety, environmental, and operational conditions that affect component reliability (temperature, vibration, humidity, loads etc.).