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Building Systems Engineering Jobs in Orem, UT (NOW HIRING)

Perform routine maintenance, inspections, and repairs on building systems, equipment, and ... Minimum 1-2 years of maintenance, facilities, engineering, or related experience preferred.

Design mechanical building systems, including HVAC, gas, plumbing, fire suppression, and air ... E.) license preferred. * 07 years of mechanical engineering experience, ideally in water or ...

Design mechanical building systems, including HVAC, gas, plumbing, fire suppression, and air ... E.) license preferred. * 0-7 years of mechanical engineering experience, ideally in water or ...

Design mechanical building systems, including HVAC, gas, plumbing, fire suppression, and air ... E.) license preferred. * 0-7 years of mechanical engineering experience, ideally in water or ...

... building and integrating state of the art testing environments (flight simulators for missiles), as ... Participate on HWIL engineering teams performing test system design, assembly and integration ...

Director of Engineering

Lehi, UT · On-site

$88K - $114K/yr

Oversee engineering technology strategy, including software systems (Autodesk Civil 3D ... Strong leadership, mentoring, and team-building capabilities * Valid driver's license; ability to ...

Showing results 41-60

Building Systems Engineering information

See Orem, UT salary details

$52.6K

$123.5K

$170.4K

How much do building systems engineering jobs pay per year?

As of Aug 23, 2026, the average yearly pay for building systems engineering in Orem, UT is $123,511.00, according to ZipRecruiter salary data. Most workers in this role earn between $99,100.00 and $150,400.00 per year, depending on experience, location, and employer.

What is building systems engineering?

Building Systems Engineering is a multidisciplinary field focused on the design, integration, operation, and maintenance of a building’s essential systems, such as HVAC (heating, ventilation, and air conditioning), electrical, plumbing, and fire protection. Engineers in this field ensure that these systems work together efficiently to provide comfort, safety, sustainability, and functionality within buildings. They collaborate closely with architects and construction professionals to meet regulatory standards and optimize building performance. Building Systems Engineers play a key role in improving energy efficiency and supporting green building initiatives.

What are the key skills and qualifications needed to thrive as a building systems engineer?

To thrive as a Building Systems Engineer, you need a solid background in mechanical, electrical, or civil engineering, often supported by a relevant engineering degree and professional certification (such as PE or EIT). Familiarity with building automation systems, HVAC, AutoCAD, and energy management software is typically required. Strong problem-solving abilities, attention to detail, and effective communication skills enable you to collaborate with diverse stakeholders and ensure system reliability. These competencies are crucial for designing, maintaining, and optimizing safe, efficient building environments.

What are some common challenges faced by building systems engineers when working on retrofit projects in existing structures?

Building Systems Engineers often encounter unique challenges during retrofit projects, such as integrating modern systems with outdated infrastructure and ensuring compliance with current codes. Limited access to existing mechanical, electrical, or plumbing systems can complicate upgrades, requiring creative problem-solving and collaboration with architects and contractors. Additionally, balancing energy efficiency improvements with budget constraints and minimizing disruptions to occupants are key considerations that demand both technical expertise and strong communication skills.

What is the difference between Building Systems Engineering vs Mechanical Engineering?

AspectBuilding Systems EngineeringMechanical Engineering
CredentialsBachelor's in Engineering, PE license often preferredBachelor's in Mechanical Engineering, PE license common
Work EnvironmentDesigning and managing building systems like HVAC, plumbing, electricalDesigning mechanical devices, engines, manufacturing systems
Industry UsageConstruction, building design, facilities managementManufacturing, automotive, aerospace, energy

Building Systems Engineering focuses on designing and maintaining building infrastructure systems, while Mechanical Engineering covers a broader range of mechanical devices and systems across various industries. Both roles require similar credentials and often work within the construction and manufacturing sectors, but their specific applications differ significantly.

Are building systems engineers in high demand?

Building systems engineers are in high demand due to the need for efficient design, installation, and maintenance of building automation, HVAC, and electrical systems. The role requires technical skills, knowledge of industry standards, and often certifications, with employment opportunities growing as building complexity and sustainability efforts increase.

What does a building systems engineer do?

A building systems engineer designs, analyzes, and maintains the mechanical, electrical, plumbing, and control systems that ensure a building's safe, efficient, and reliable operation. They often use tools like CAD software and may hold certifications such as LEED or PE. Their work involves coordinating with architects and contractors throughout construction and maintenance phases.

What are popular job titles related to Building Systems Engineering jobs in Orem, UT?

For Building Systems Engineering jobs in Orem, UT, the most frequently searched job titles are:

What job categories do people searching Building Systems Engineering jobs in Orem, UT look for?

The top searched job categories for Building Systems Engineering jobs in Orem, UT are:

Autonomous Operations Director (Buildings Industry)

PassiveLogic

Holladay, UT • On-site

$120 - $160/hr

Other

Medical, Dental, Vision, Life, PTO

Re-posted 20 days ago


Job description

Autonomous Operations Director (Buildings Industry)

Lead the global deployment and operational scaling of autonomous building systems.

About the Role

This is a career-defining opportunity to play a crucial role in a hyper-scale AI company that is transforming the future of autonomous systems, energy, and the built environment.

This role will serve as the operational bridge between AI systems and physical infrastructure. We are looking for an autonomous‑buildings deployment and operations leader, someone who treats deployments as a structured learning system. They understand how to track autonomy capabilities, validate performance in the field, and continuously improve operations through disciplined metrics and feedback loops.

This is an operations director role responsible for:

  • Application engineering: Digital-twin project deployment
  • Deployments: Site deployments, contractor coordination, and construction execution and life cycle
  • Operations: 24/7 incident and change management of autonomous operations. Most of our work is in the EU managing buildings in constant use, placing special emphasis on the 24/7 management aspect of the role.

You will lead teams operating across a project pipeline that includes site surveys, digital-twin development, project engineering, and contractor coordination. You will ensure deployments run smoothly, timelines are met, customers are successful, and performance of autonomous buildings deployed is continuously improving.

What You’ll Do Deployment Strategy & Operational Leadership
  • Lead global deployment operations for autonomous HVAC and building systems.
  • Lead both Application Engineering and Deployment teams, including oversight of external deployment contractors.
  • Establish structured rollout plans, deployment phases, and operational playbooks.
  • Ensure deployments meet schedule, quality, and performance targets.
  • Identify operational risks early and coordinate cross-team mitigation.
Deployment Planning & Construction Coordination
  • Plan phased deployments across customer sites.
  • Coordinate deployment and commissioning sequencing with the Applied Engineering team while interfacing with customers and driving contractors.
  • Think in terms of autonomy skill rollouts, validation loops, and structured field learning, shifting away from traditional controls installs.
  • Identify, vet, hire, and manage local installers and contractors globally.
Application Engineering (Digital Twin Project Deployment)
  • Digital Twin Modeling: Create the building’s digital twin by modeling spaces, equipment, and system relationships using PassiveLogic’s ontology framework.
  • System Integration: Connect the digital twin to building infrastructure including HVAC systems, sensors, and meters.
  • Autonomous Control Deployment: Configure and deploy PassiveLogic control models to optimize building performance, energy use, and occupant comfort.
  • Commissioning & Optimization: Validate, calibrate, and continuously refine the digital twin to ensure accurate building behavior and improved operational efficiency.
Field Integration & Technical Oversight
  • Ensure clean technical coordination between field teams, contractors, and engineering.
  • Translate field constraints into actionable feedback for AI and product engineering teams.
  • Guide commissioning efforts and system performance validation.
Customer Interface & 24/7 life cycle operations
  • Help customers understand how autonomy operates in practice and build trust in the system.
  • Coordinate issue triage and ensure problems are resolved systematically, not reactively.
  • Track and improve performance, operational metrics, and service reliability.
Systems Feedback & Continuous Improvement
  • Close the loop between field operations and product engineering.
  • Identify recurring issues and deployment friction.
  • Build repeatable deployment playbooks that improve with each rollout.
  • Help shape the long-term managed services operating model as the product scales.
What You’ll Bring

You understand buildings, building science, HVAC, or controls deeply enough to operate confidently in the field, but you plan like a project manager, and lead like the supervisor of an intelligent, autonomous space.

You can speak fluently with field technicians, commissioning agents, and facility operators. At the same time, you collaborate productively with AI engineers, autonomy researchers, and software architects.

You may have previously led teams at a Manufacturing Execution System (MES) or other controlled environment space, managed robotic or autonomous system deployments, directed project management at a scaled MSI, or served as an applied technology director within an engineering consulting firm.

You are tech‑forward and future‑oriented. You organize and orchestrate complex deployments and ensure reliable, timely delivery.

  • You are comfortable in mechanical rooms as well as in deep technical discussions.
  • You are motivated by autonomy, robotics, and the future of intelligent infrastructure.
  • You lead teams calmly under field pressure and bring structure to complex deployments.
You must have
  • 7+ years of experience in the buildings industry or leading large-scale operational autonomous systems rollouts.
  • Hands‑on experience in robotics systems, mechanical engineering, building automation, retro‑commissioning, HVAC systems, or building science.
  • Leadership experience managing technical field teams or deployment organizations.
  • Field deployment or commissioning experience in commercial or industrial environments.
  • Ability to read mechanical drawings and control schematics.
  • Comfort working directly with customers, contractors, and technical stakeholders.
  • Strong operational leadership and coordination skills.
  • Comfort operating in fast‑moving, early‑stage environments.
  • An ability to travel to the EU at least on a quarterly basis.
You should have
  • A bachelor’s or master’s degree, or equivalent experience, in engineering and management.
  • Experience deploying complex hardware/software systems.
  • Experience in managed services, field engineering, or technical operations.
  • Experience coordinating cross‑disciplinary teams (engineering, construction, operations).
  • A structured, research‑minded approach to field rollout.
It’s helpful to have
  • Knowledge of performance contracting or energy optimization programs.
  • Energy or sustainability certifications (AEE, LEED, BREEAM, WELL, CEM, CBCP, BEAP, CCP, or NABERS).
  • Experience scaling field playbooks across multiple sites.
  • Interest in climate tech and decarbonization.
  • Experience in robotics, autonomous systems, or advanced industrial deployments.
  • A bias toward building the future rather than maintaining the past.
  • Familiarity with BAS protocols (BACnet, Modbus, wireless, and analog control systems).

We know there are candidates who might not fit everything we’ve described above, or who might have experience and skills we haven’t considered. PassiveLogic can sometimes be flexible enough to shift responsibilities to the right person, or otherwise identify open or upcoming roles that may better fit your professional background. Even if you don’t meet all the requirements above, we still want to hear from you.

Compensation, Benefits & Perks
  • Competitive compensation
  • Generous equity share package
  • Medical, dental and vision coverage
  • Disability and life Insurance options
  • Flex PTO
  • Team-building events
  • Free catered lunch in the office Monday — Friday
  • Free ski pass (We are at the base of Big Cottonwood Canyon)
  • Free National Park pass
  • Onsite Gym
A Note on Working Onsite

This role is based in our Salt Lake City headquarters. We believe that creativity and cohesion flows best when we are all together. When you’re constantly innovating, transforming whole industries, inventing new products and processes, and creating a more sustainable future through technology—and we are doing all these things—we believe we’re better as a team in-person. That’s why all of our teams work from one of our office locations, five days a week.

When applying, include
  • A cover letter telling us why you're the perfect candidate for PassiveLogic
  • A resume
  • A description of a project (of any type) you personally created, devised, built, managed, organized, or designed that was of your own self-initiative
Diversity and inclusion

Diversity, inclusion, and belonging is woven into our values and everything we do. We welcome all—come as you are and bring your whole self. We are proud to be an Equal Opportunity Employer. We celebrate diversity every day by maintaining a safe and inclusive environment for our employees at every stage of their careers.

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