Building technologies

Timber systems inside one platform.

Technologies here are shown as parts of the same industry platform — not as separate parallel systems. Each timber system feeds the same BIM 6D model, the same element structure and the same continuous record, so the choice of technology never breaks the process that carries a project from land to operation.

01 — CLT-Light 02 — ECO Frame 03 — CLT Classic 04 — Hybrid Systems 05 — Modular Systems 06 — Kit of Parts
A

Core systems

Six ways to build the same record.

Core system 01

CLT-Light

Purpose — a lightened cross-laminated timber system for compact, fast-assembly buildings. Structural principle: thin CLT panels acting as load-bearing walls and floors, kept light for transport and manual handling.

Mini homes Glamping Small eco houses

Certification status — under preparation, confirmed per market before use.

Core system 02

ECO Frame

Purpose — an engineered timber frame for private houses and low-rise living. Structural principle: a framed timber skeleton with insulated infill, detailed as standard, repeatable components.

Private houses Rental villages Low-rise

Certification status — under preparation, confirmed per market before use.

Core system 03

CLT Classic

Purpose — full cross-laminated timber for solid, multi-storey construction. Structural principle: massive CLT wall and floor panels forming a solid load-bearing shell with high in-plane stiffness.

Apartment buildings Mid-rise Public objects

Certification status — under preparation, confirmed per market before use.

Core system 04

Hybrid Systems

Purpose — timber combined with steel or concrete where spans, height or loads demand it. Structural principle: timber for the mass of the structure, steel or concrete for cores, transfers and long spans — Timber+Steel and Timber+Concrete.

Timber+Steel Timber+Concrete Mid- to higher-rise

Certification status — under preparation, confirmed per market before use.

Core system 05

Modular Systems

Purpose — pre-finished volumetric modules for repeatable, service-heavy spaces. Structural principle: factory-built kitchen, bathroom and technical modules delivered complete and set into the timber structure on site.

Kitchen modules Bathroom modules Technical modules

Certification status — under preparation, confirmed per market before use.

Core system 06

Kit of Parts

Purpose — a coordinated catalogue of standard components shared across the systems above. Structural principle: elements defined once in the BIM library and reused across products, so a building is assembled from known, priced, prepared parts.

All product lines Repeatable components

Certification status — component-level, tied to each system it belongs to.

Any figure for savings, speed, carbon or material waste is only published together with a comparison base, method, object type, region and calculation date. No such numeric claim is published on this page.

B

Supporting elements

What the systems stand on and wear.

·Screw pilesfoundations
·Slab foundationsfoundations
·Facade systemsenvelope
·Insulationenvelope
·Roofsenvelope
·Engineering systemsservices

Supporting elements are specified against the same model as the core systems — they are part of the record, not a separate scope bolted on at the end.

C

How technology fits the model

A system is only useful once it flows.

Whichever technology is chosen, it enters the same chain: it becomes BIM libraries, then a CNC-ready kit, then an assembly sequence, then quality control — one continuous path, not a hand-off between disconnected tools.

01Technology
02BIM libraries
03CNC / kit
04Assembly
05Quality control

This is why technologies are presented as parts of one platform: the value is in the flow between them, not in any single system on its own.

Start here

See these systems as finished products.

The product lines show how these technologies come together into buildings you can develop. Start from a use case, or bring your land and we map the system to the site.