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Building Systems Engineering Jobs in Michigan (NOW HIRING)

Sr Structural Systems Engineer

Rochester Hills, MI · On-site

$92K - $125K/yr

This role is intended for structural engineers with experience in building systems, steel structures, or solar support structures. This role requires strong experience applying U.S. structural codes ...

This role is intended for structural engineers with experience in building systems, steel structures, or solar support structures. This role requires strong experience applying U.S. structural codes ...

Contribute to building the backend services and programmable interfaces required to power personalized, AI-enhanced user experiences. * Support the team in analyzing system logs, reproducing ...

Bachelor's degreein Engineering. * 5+ years of automotive engineering experience related to ... and building relationships in difficult circumstances. What Will Give YouACompetitive Edge ...

Bachelor's degreein Engineering. * 5+ years of automotive engineering experience related to ... and building relationships in difficult circumstances. What Will Give YouACompetitive Edge ...

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Building Systems Engineering information

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Systems Engineers often encounter unique challenges during retrofit projects, such as integrating modern systems with outdated infrastructure and ensuring compliance with current codes.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 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, and why are they important?

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 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.

What job categories do people searching Building Systems Engineering jobs in Michigan look for? The top searched job categories for Building Systems Engineering jobs in Michigan are:
What cities in Michigan are hiring for Building Systems Engineering jobs? Cities in Michigan with the most Building Systems Engineering job openings:

Sr Structural Systems Engineer

ARaymond

Rochester Hills, MI • On-site

$92K - $125K/yr

Full-time

Posted 3 days ago


Job description

Job Description
This role is intended for structural engineers with experience in building systems, steel structures, or solar support structures. This role requires strong experience applying U.S. structural codes, including IBC, ASCE 7, AISC 360, and/or AISI S100.
Position Summary:
The Sr. Structural Systems Engineer is responsible for translating structural system requirements into effective connector solutions and understanding how connector performance influences the structures they join. This is a senior level individual contributor role supporting two business lines: Construction-focused on off-site and modular building systems-and Energies, including utility-scale solar PV tracker systems.
The primary objective of the role is to ensure connector designs are grounded in a strong understanding of system behavior, structural demands, and applicable codes and standards. The engineer will support product development and customer integration through rigorous structural analysis, clear engineering rationale, and practical design guidance. The position blends system-level structural engineering, codes and standards expertise, product development support, and direct customer engagement.
Roles and Responsibilities:
  • Analyze global load paths and the interaction between connectors and structural systems.

  • Evaluate the impact of connector stiffness, preload, slip behavior, tolerances, and joint geometry on overall system performance.

  • Define governing load cases and boundary conditions for:

  • Off-site, modular, and industrialized construction systems, including floors, walls, roofs, volumetric modules, and façade attachments

  • Utility-scale and commercial solar PV tracker systems

  • Translate field conditions, installation sequences, and applicable structural codes into clear and actionable design inputs for Product Engineering and R&D.

  • Identify governing failure modes at the connection and sub-assembly level, including bearing failure, slip, fatigue, preload loss, and localized yielding.

  • Perform structural analysis and connection-level or sub-assembly FEA to anticipate potential failure modes prior to physical testing.

  • Support the development of validation strategies, test envelopes, and acceptance criteria.

  • Provide technical input on fatigue and cyclic loading behavior under wind, seismic, thermal, and operational loading conditions.

  • Produce clear, defensible engineering calculations, reports, and justification documents for both internal and external stakeholders.

  • Ensure compatibility with applicable codes and standards based on system application, including:

  • IBC, ASCE 7, AISC 360, AISI S100; Solar- and system-specific standards such as UL 2703, UL 3703, and ICC-ES criteria

  • Translate code requirements into practical, usable design guidance for product teams and customers.

  • Support certification efforts, third-party engineering reviews, and interactions with approval authorities as required.

  • Serve as a technical interface with customers, including:

  • Modular builders, general contractors, architects, and developers

  • Solar EPCs, tracker manufacturers, and system integrators

  • Structural engineers and engineering consultants

  • Support design reviews, RFIs, technical proposals, and project-specific structural inquiries.

  • Clearly communicate structural behavior, assumptions, and code compliance to support informed customer decision-making.

  • Assist customers in integrating ARaymond connection solutions efficiently, minimizing redesign cycles.

  • Collaborate closely with Product Management, R&D, Manufacturing, Quality, and Business Development teams.

  • Contribute to the development of application guidelines, standard details, and typical connection concepts.

  • Help strengthen ARaymond's technical credibility with customers and external partners.

  • Other related duties and/or projects as assigned.

Education and Experience:
  • Bachelor's or Master's degree in Structural Engineering or Civil Engineering.

  • Professional Engineer license is a plus, not a requirement.

  • Seven to ten or more years of structural engineering experience with demonstrated depth in:

  • Steel structure and connection design using bolted and or welded connections

  • Code-based structural engineering

  • Meaningful experience in at least one of the following areas:

  • Off-site or modular construction systems

  • Utility-scale solar PV structures or tracker systems

  • Structural attachment or facade connection systems

  • Experience with structural analysis software such as RISA, SAP2000, ETABS, or STAAD.

  • Experience with connection-level or sub-assembly finite element analysis.

  • Experience with fatigue or lifecycle analysis, preferred.

  • Exposure to international structural codes, preferred.

  • Familiarity with modular construction or large-scale solar projects, preferred.

Skills
  • Ability to reason from overall system behavior back to connection design requirements.

  • Ability to produce engineering documentation that can be reviewed, challenged, and trusted by customers, third-party engineers, and approval authorities.

  • Comfortable engaging at the same technical level as customer structural engineers.

  • Able to explain complex structural behavior clearly to technical and non-technical audiences.

  • Practical and evidence-driven approach that balances structural rigor with manufacturing, cost, and schedule constraints.

  • Ability to work closely with others in a collaborative team environment.

  • Proficient in Microsoft Office 365 (Teams, Outlook, Excel, PowerPoint, Word).

  • Professional demeanor and ethical conduct, including handling confidential information appropriately.

Reporting to this position
  • NA

Physical Demands
  • Frequent sitting, walking, standing.

  • Use of computer with repetitive mouse use, keyboarding and visual demands.

  • Must be able to work in the office for collaborative purposes.

  • Travel by air, car, or other methods of travel.

  • Travels up to 20% to support domestic and 10% international business growth.

Measure of Performance
  • Core Behaviors and Skills

  • Servant Leadership

  • Collaborating with Others

  • Creating Change

  • Technical/Functional Job Performance.

  • Customer and Quality Focus.

  • Attendance record.

  • Timely Completion of assigned tasks and annual goals.

  • Accuracy and integrity of work.

Health & Safety
As an employee at ARaymond you play a crucial role in maintaining a safe and healthy workplace. Your responsibilities include, but are not limited to:
  • Complying with all company health and safety guidelines and procedures.

  • Participating in all required health and safety trainings to stay informed about best practices and regulatory requirements.