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Engineering Operations Jobs in Colorado (NOW HIRING)

DevOps Engineer III

Denver, CO · On-site

$54.25 - $74.25/hr

AI & Engineering/EaaS - DevOps Engineer III Build and scale modern DevOps capabilities that help clients accelerate delivery, improve reliability, and modernize engineering operations. As a Senior ...

Sr. DevOps Engineering Manager

Denver, CO · On-site

$133K - $171K/yr

We were founded in 2017 by one of the world's leading cardiologists and are a growing team of world-class engineering, operations, medical affairs, marketing, and sales leaders. We raised $223M in ...

Showing results 21-40

Engineering Operations information

See Colorado salary details

$37.9K

$89.4K

$142K

How much do engineering operations jobs pay per year?

As of Sep 10, 2026, the average yearly pay for engineering operations in Colorado is $89,409.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,100.00 and $98,800.00 per year, depending on experience, location, and employer.

What is engineering operations?

Engineering Operations, often referred to as EngOps, is a discipline focused on optimizing the processes, tools, and workflows that support engineering teams. The primary goal is to improve the efficiency, productivity, and quality of engineering work by managing infrastructure, deployment pipelines, and collaboration tools. Engineering Operations professionals often handle project management, resource allocation, and the implementation of best practices to ensure smooth delivery of technical projects. They act as a bridge between engineering, IT, and business operations to remove bottlenecks and support the overall success of engineering initiatives.

How does an engineering operations professional typically collaborate with engineering and cross-functional teams?

Engineering Operations professionals play a key role in bridging the gap between technical teams and other departments such as product management, quality assurance, and IT. They coordinate project timelines, manage resource allocation, and facilitate communication to ensure that engineering projects run smoothly. Regular meetings, status updates, and process improvements are common aspects of their daily routine. Their work ensures that teams stay aligned and that operational bottlenecks are quickly identified and addressed, contributing to efficient project delivery.

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

To thrive in Engineering Operations, you need a solid understanding of project management, process optimization, and engineering principles, often supported by a degree in engineering or operations management. Familiarity with tools like CAD software, ERP systems, and Lean Six Sigma certifications is commonly required. Strong analytical thinking, communication, and leadership skills set top performers apart in this role. These competencies ensure efficient project execution, effective cross-team collaboration, and continuous improvement in engineering processes.

What is the difference between Engineering Operations vs Mechanical Engineering?

AspectEngineering OperationsMechanical Engineering
Required CredentialsBachelor's in Engineering, certifications in operations or project managementBachelor's or higher in Mechanical Engineering, PE license often preferred
Work EnvironmentManufacturing plants, industrial facilities, project sitesDesign offices, research labs, manufacturing facilities
Employer & Industry UsageManufacturing companies, industrial firms, engineering service providersAutomotive, aerospace, energy, product design industries

Engineering Operations focuses on managing engineering processes, optimizing workflows, and supporting project execution. Mechanical Engineering involves designing, analyzing, and developing mechanical systems and components. While both roles require engineering backgrounds, Engineering Operations emphasizes process management and coordination, whereas Mechanical Engineering centers on technical design and innovation.

What does an engineering operations engineer do?

An engineering operations engineer manages and optimizes the processes, tools, and systems used in engineering teams to ensure efficient development and deployment of products. They often work with automation, monitoring, and infrastructure tools, and may require knowledge of scripting, cloud platforms, and industry standards to support continuous integration and delivery pipelines.

What cities in Colorado are hiring for Engineering Operations jobs?

Cities in Colorado with the most Engineering Operations job openings:

Infographic showing various Engineering Operations job openings in Colorado as of August 2026, with employment types broken down into 86% Full Time, 12% Part Time, and 2% Contract. Highlights an 93% Physical, 2% Hybrid, and 5% Remote job distribution, with an average salary of $89,409 per year, or $43 per hour.

Principal Program Manager, Engineering Operations

Westminster, CO • On-site

MAXAR TECHNOLOGIES, INC.
Space Research Administration • 1 - 5K employees

Other

Retirement

Posted 6 days ago


Job description

Principal Engineer – Software Systems

Principal-level technical leadership for complex, software-intensive systems

The Role

We are looking for a Principal Engineer with deep systems engineering expertise to lead the design and delivery of complex software-intensive systems spanning cloud platforms, distributed systems, AI-enabled products, mission software, and large-scale operational environments. This is a senior technical leadership role for engineers who thrive in ambiguity, solve problems that span organizational and technical boundaries, and bring clarity to highly complex systems. You will partner with engineering, product, and architecture leaders to define system behavior, establish technical direction, and ensure the software we build remains scalable, resilient, and aligned with customer and mission outcomes. Success in this role requires balancing engineering rigor with product velocity. You will help teams move faster by simplifying complexity, identifying risks early, and creating architectures that allow independent teams to deliver cohesive systems.

What You'll Do

Lead the technical design and delivery of complex, cross-domain software systems. Define system architecture, integration strategy, and technical direction across multiple engineering teams. Translate ambiguous customer, mission, and business problems into scalable technical solutions. Lead architecture trade studies and make consequential technical decisions across competing priorities. Drive system decomposition, interface definition, dependency management, and integration planning for large distributed systems. Partner with Product to validate customer needs and ensure delivered capabilities solve the right problems. Identify architectural, integration, operational, and delivery risks early and drive mitigation before they become execution problems. Shape technical direction across a product portfolio or strategic technical domain. Influence engineering organizations through technical credibility rather than reporting authority. Raise engineering quality through better architecture, engineering practices, technical standards, and mentoring of senior technical leaders. Drive capabilities from concept through integration, validation, operational readiness, and customer adoption.

AI-Enabled Systems Engineering

AI-assisted development and agentic software engineering are dramatically increasing the rate at which teams can design, implement, and test software. As engineering velocity increases, strong systems engineering becomes even more important to ensure we continue building coherent, scalable, and operationally effective systems. We are looking for someone who sees AI as an opportunity to evolve how systems engineering is practiced. Accelerate system architecture, analysis, and design. Identify architectural, integration, and operational risks earlier. Scale systems engineering practices to match the speed of AI-enabled software development. Our goal: increase our ability to design the right systems as quickly as we can build them.

What We're Looking For

Systems Thinking You naturally reason across systems, interfaces, constraints, dependencies, feedback loops, failure modes, and emergent behavior. You can understand how software, infrastructure, data, operations, and customer workflows interact, and you know how to bring structure to problems that are initially unclear. Software Architecture You have significant experience designing and evolving large software systems. You understand distributed systems, APIs, cloud-native architectures, event-driven systems, data flows, scalability, resiliency, observability, security, and operational concerns. You know how to establish clear system boundaries, reduce unnecessary coupling, and create architectures that support both near-term delivery and long-term adaptability. Technical Leadership You influence through technical judgment and credibility. You have led major initiatives involving multiple teams and can build alignment across engineering, product, operations, and leadership without relying on organizational authority. You are comfortable making difficult tradeoffs across customer outcomes, technical risk, delivery schedule, cost, maintainability, and strategic flexibility. You have experience applying AI, automation, and agentic workflows to define and scale engineering standards, templates, playbooks, governance, and SDLC practices, with strong judgment about where human oversight remains necessary. Learning Agility You can enter unfamiliar technical or mission domains, identify the governing issues, develop sufficient depth to make sound decisions, and integrate the perspectives of subject-matter experts. You are able to challenge assumptions, resolve technical disagreement, and make cross-domain decisions where no single expert has the complete picture. Product and Mission Orientation You understand that successful engineering is not complete when code is written. You remain accountable for integration, validation, operational readiness, adoption, and the real-world performance of the delivered system.

Required Qualifications
  • Bachelor’s degree in Computer Science, Software Engineering, Systems Engineering, Aerospace Engineering, or a related technical field, or equivalent experience solving complex software systems problems.
  • Significant experience architecting and delivering large-scale, software-intensive systems.
  • Demonstrated success leading major cross-functional or cross-domain technical initiatives.
  • Deep understanding of modern software architecture and distributed systems.
  • Experience leading architecture reviews, technical trade studies, and consequential design decisions.
  • Experience defining system boundaries, interfaces, integration strategies, and validation approaches.
  • Strong understanding of software development, integration, deployment, and operational readiness.
  • Ability to communicate effectively with software engineers, architects, product leaders, customers, senior leaders, and executives.
  • Demonstrated ability to lead through influence and create alignment across multiple teams.
Preferred Experience
  • Cloud-native platforms and Kubernetes.
  • Distributed data systems and event-driven architectures.
  • AI-assisted software development and agentic engineering workflows.
  • High-availability, mission-critical, or operational software platforms.
  • Geospatial, aerospace, defense, robotics, autonomous systems, or other complex mission domains.
  • Systems-of-systems integration.
  • Developer platforms, platform engineering, or internal engineering infrastructure.
  • Sovereign, on-premises, disconnected, or hybrid deployment environments.
  • Model-based or digitally enabled systems engineering practices.
What Success Looks Like

Create clarity in highly ambiguous and complex technical environments. Establish architectures that scale across products, domains, and engineering teams. Anticipate technical and organizational risks before they become systemic constraints. Enable teams to move faster while improving technical quality and operational confidence. Ensure independent teams deliver components that function as a cohesive system. Use AI to increase the speed, consistency, and reach of systems engineering. Develop other senior technical leaders and improve how the organization makes technical decisions. Preserve long-term architectural flexibility while delivering near-term customer and mission outcomes.

Pay Transparency

To support pay transparency, Vantor includes salary ranges in all U.S. job postings. Starting pay for this role will fall within the listed range and will be based on factors such as experience, qualifications, skills, location, and market conditions. Candidates who meet the minimum requirements for the role should not expect to receive compensation at the top of the range. The listed range reflects the expected pay for this position, and final offers will be determined based on each candidate’s experience, expertise, and alignment with the role.

The base pay for this position within Colorado is: $135,000.00 - $180,000.00 - $198,000.00 annually. For all other states, we use geographic cost of labor as an input to develop market-driven ranges for our roles, and as such, each location where we hire may have a different range.

Benefits

Vantor offers a competitive total rewards package that goes beyond the standard, including a robust 401(k) with company match, mental health resources, and unique perks like student loan repayment assistance, adoption reimbursement and pet insurance to support all aspects of your life.

You can find more information on our benefits at: https://www.Vantor.com/careers

Incentives

Additionally, this position is incentive eligible with a target based on contribution, company performance, and/or individual results achieved; the specific incentive plan and target amount will be determined based on the role and breadth of contributions.

Application Window

The application window is three days from the date the job is posted and will remain posted until a qualified candidate has been identified for hire. If the job is reposted regardless of reason, it will remain posted three days from the date the job is reposted and will remain reposted until a qualified candidate has been identified for hire. The date of posting can be found on Vantor's Career page at the top of each job posting.

EEO Policy

Vantor is an equal opportunity employer committed to an inclusive workplace. We believe in fostering an environment where all team members feel respected, valued, and encouraged to share their ideas. All qualified applicants will receive consideration for employment without regard to race, color, religion, national origin, sex, gender identity, sexual orientation, disability, protected veteran status, age, or any other characteristic protected by law. We also provide reasonable accommodations for applicants with disabilities in compliance with federal and state laws. If you need assistance with the online application or hiring process, please email careers@vantor.com.

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Maxar Technologies logo

About Maxar Technologies

Sourced by ZipRecruiter

Maxar Technologies, headquartered in Denver, CO, US, is a space technology company established in 1969. Operating in the Aerospace Industry, Maxar's key areas of business include Earth Intelligence and Space Infrastructure. The products they offer are critical for global communications, environmental monitoring, national security, intelligence operations, disaster response, and more. Passionate about unlocking the potential of space, Maxar's mission is "to build a better world by harnessing space technology". The company prides itself on advancing state-of-the-art technology, delivering exceptional customer service, and driving growth.

Industry

Space research administration

Company size

1,001 - 5,000 Employees

Headquarters location

Denver, CO, US

Year founded

1969