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Structural Engineer - Building Systems ​/ DFMA

Job in Andover, Essex County, Massachusetts, 01810, USA
Listing for: Reframe Systems
Full Time position
Listed on 2026-08-05
Job specializations:
  • Engineering
    Structural Engineer, Systems Engineer
Job Description & How to Apply Below

Structural Engineer

Reframe Systems is a Physical AI and robotics company on a mission to make high-performance housing attainable and abundant in the communities where people want to live. Through our vertically integrated delivery model and highly automated microfactories, we deliver climate-resilient homes and buildings with greater speed and predictability than traditional construction. Our volumetric modular buildings are produced in our Andover, MA microfactory, with a growing pipeline across North America and a new microfactory on the way.

We are building a system that balances repeatability with site-responsive design, enabling homes adaptable to each site, community, and customer need. Our cross-disciplinary team brings together architecture, robotics, design engineering, software, factory operations, and field delivery to change how housing gets delivered. We're reimagining the future of housing through a smarter and more sustainable system that empowers people to live better.

Come build it with us.

What You'll Do
  • Own the structural system for our platform

    • Define standard structural assemblies for walls, floors, roofs, stairs, and connections that balance strength, stiffness, cost, and manufacturability.

    • Set design rules, load paths, typical details, and tolerances that can be reused across products and projects.

  • Bridge design, modeling, and manufacturing

    • Partner with architects and modelers to translate architectural intent into structurally rational, factory-buildable systems.

    • Work with our Onshape Modeling / Feature Script teams so structural rules are encoded in models, automation, and shop documentation (not just in isolated details).

  • Lead structural engineering on key projects

    • Develop internal structural schemes and calculations for priority projects before they go to the Engineer of Record.

    • Prepare clear, well-structured packages for external structural engineers and third-party inspectors, and drive efficient review cycles.

  • Tighten the loop between design, factory, and field

    • Diagnose structural root causes behind issues like cracking, misfits, or tolerance clashes in factory and field.

    • Turn lessons learned from the floor and jobsite into updated details, standards, and rules that prevent recurrence.

  • Manage and level-up external partners

    • Coordinate with EORs and other consultants to align on performance criteria, details, and assumptions.

    • Push for designs that are safe and code-compliant without unnecessary over-design, and quantify trade-offs in cost and manufacturability.

  • Contribute to platform-level system studies

    • Co-lead investigations into new structural concepts and their implications for cost, throughput, carbon, and field performance.

    • Work with systems and MEP engineering to rationalize penetrations, chases, and integrated assemblies.

  • Prototype automated structural optimization workflows

    • Work with modeling and software teams to design simple, repeatable optimization studies for key framing systems (for example: minimizing steel tonnage subject to drift limits, or comparing lateral systems across cost and constructability).

    • Help define how structural models, analysis tools, and modeling pipeline should interact so these studies can eventually be run automatically for both platforms and projects.

Outcomes

By your 90-day mark, we'll look to you to have driven tangible, system-level progress. Specifically, you will:

  • Establish a baseline structural "kit of parts"

    • Document standard wall, floor, and roof assemblies (including spans, sheathing patterns, shear wall strategy, tie-downs, and typical connections) for a selected product line (e.g., Triple Decker or comparable module set).

    • Identify where current details are over-designed, under-specified, or misaligned with factory reality, and propose targeted updates.

  • Close at least two recurring structural pain loops between design and factory

    • Partner with factory, modeling, and design teams to select two recurring issues with structural implications (for example: cracking during lifts, truss dimension mismatches, missing shear/nailing schedules, or wall fit problems).

    • For each, deliver:

      • A concise root-cause write-up, including structural and process…

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