Patented 3D-printed fabrication technology. Unprecedented design freedom.
Branch Technology is a pioneering construction technology company that combines additive manufacturing, prefabrication, and digital technology to deliver construction-scale 3D-printed building components. The company addresses a fundamental challenge in the built environment: the inability to efficiently fabricate complex, freeform architectural designs using traditional construction methods. Branch Technology serves architects, designers, building owners, and construction innovators who seek unprecedented design freedom for building facades, interiors, and structural elements. At the core of Branch Technology's offering is its patented C-Fab® (Cellular Fabrication) technology, a construction-scale freeform 3D-printing technique inspired by nature's cellular structures. The company's product portfolio includes BranchClad®, a mass-customized ventilated rainscreen system for bespoke building skins; BranchClad® Interiors, lightweight 3D panels for interior spaces; BranchRegenerate™, energy-efficient retrofit solutions for existing commercial buildings; BranchShelter™, 3D-printed temporary shelters designed to help communities transition to healthier housing; and BranchMatrix®, a 3D-printed open lattice material capable of taking on virtually any shape or form. This direct digital manufacturing approach represents a world-first in construction-scale fabrication. Branch Technology's solutions improve several key construction workflows, particularly in the design-to-fabrication pipeline for complex architectural elements. By leveraging digital fabrication, the company enables the construction of structures previously thought impossible with traditional methods, reducing the gap between architectural vision and built reality. The technology is especially beneficial for projects requiring mass customization, unique facade designs, energy-efficient building retrofits, and rapid deployment of temporary shelters. Notable projects include retail storefronts, the Tennessee Valley Federal Credit Union in Dalton, the W Hotel interiors, the USSRC Pathfinder Shuttle installation, and the Robotic Art Experience. Branch Technology operates as a hardware-plus-software solution provider, combining its proprietary 3D-printing hardware with a digital fabrication process that takes designs from concept through manufacturing. The prefabricated components are produced off-site and delivered ready for installation, streamlining the on-site construction process and reducing project timelines. The company's approach integrates seamlessly into modern digital design workflows, enabling architects and designers to push the boundaries of what is constructible. Based on its patented technology and growing portfolio of high-profile projects, Branch Technology has established itself as a leader in the emerging field of large-scale 3D printing for construction. The company's Build Like Nature™ philosophy and its diverse product lineup position it at the forefront of a shift in how buildings are designed and constructed, offering scalable solutions from bespoke commercial facades to humanitarian shelter applications.

Large-scale 3D printers for sustainable construction and housing
WASP (World's Advanced Saving Project) is an Italian company specializing in 3D printing technology with a strong focus on construction and architectural applications. The company develops large-scale 3D printers capable of producing building components and entire structures using sustainable materials such as raw earth, clay, and concrete. WASP's technology is designed for architects, builders, researchers, and construction professionals seeking innovative, sustainable, and cost-effective building methods. WASP's core product lineup includes the Crane WASP, a modular 3D printing system designed for on-site construction of buildings, and the Delta WASP series, which offers various sizes of delta-style 3D printers for both industrial prototyping and construction-scale applications. Key differentiators include the ability to print with natural and locally sourced materials, collaborative multi-printer setups for large-scale projects, and proprietary extrusion systems optimized for construction-grade outputs. The company also provides software tools and material research to support the full 3D printing workflow from design to fabrication. WASP's technology improves construction workflows by dramatically reducing material waste, lowering labor costs, and accelerating build timelines for certain types of structures. The approach is particularly beneficial for affordable housing projects, emergency shelters, and sustainable architecture initiatives. Projects like TECLA, a 3D-printed habitat made entirely from raw earth, demonstrate the potential for near-zero-cost, environmentally responsible construction. Research institutions, humanitarian organizations, and forward-thinking architectural firms stand to benefit most from WASP's offerings. The platform combines hardware (large-format 3D printers) with supporting software and material science expertise. WASP printers are deployed on-site for construction applications or in workshop environments for prefabrication and prototyping. The modular nature of the Crane WASP system allows it to be transported and assembled at various project locations, making it adaptable to different construction contexts and scales. WASP has gained significant international recognition in the construction technology and additive manufacturing spaces. The TECLA project, developed in collaboration with architect Mario Cucinella, received widespread media coverage and industry acclaim as a milestone in sustainable 3D-printed construction. The company is headquartered in Massa Lombarda, Italy, and has established itself as a pioneer in the intersection of 3D printing, sustainable building, and construction innovation.

| Attribute | Branch Technology | WASP 3D Printers |
|---|---|---|
| Category | BIM | BIM |
| Parent Company | — | — |
| Tagline | Patented 3D-printed fabrication technology. Unprecedented design freedom. | Large-scale 3D printers for sustainable construction and housing |
| Sub-categories | Quality | Field Management |



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