Explore our certified range of fire-resisting doors, curtain wall infills, thermally broken glass systems, and high-durability exterior wall assemblies manufactured under strict EN factory production controls.
Precision-engineered 3D faceted aluminum architectural panels integrated with intumescent fire barriers for modern building exteriors and high-rise envelope integrity.
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Non-combustible mineral-filled aluminum composite core panels designed for fire-rated partitions, structural cladding, and high-traffic commercial envelope security.
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Architectural laser-perforated metal facade panels engineered to combine passive ventilation with certified thermal radiation protection and structural wind resistance.
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Heavy-duty aluminum alloy framing systems designed for shopping malls, high-rise towers, and institutional projects requiring certified fire-containment wall boundaries.
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Esthetic sublimation wood-grain curved metal assemblies delivering high thermal insulation, organic architectural aesthetics, and zero flame-spread capabilities.
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Modern modular aluminum screening panels engineered for seamless integration into CE certified emergency egress corridors and exterior fire-isolated stairwells.
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Engineered corrugated aluminum profiles offering structural stiffness, superior thermal break endurance, and certified fire isolation for industrial envelope design.
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Expanded aluminum mesh structures optimized for weather durability, architectural solar shading, and physical defense around secondary fire access doors.
Send an InquiryIn modern commercial, multi-family high-rise, and institutional construction, passive fire protection systems represent the definitive line of defense between structural containment and catastrophic life safety failures. Achieving true CE Certification for fire door sets and fire-rated glazed assemblies is far more than a regulatory checkbox—it requires an unbroken chain of mechanical engineering compliance, third-party laboratory verification, and strict Factory Production Control (FPC).
Under the European Construction Products Regulation (CPR EU No 305/2011), pedestrian doorsets, industrial doors, and openable windows intended for fire-resisting and/or smoke control applications must meet harmonized standard EN 16034 in conjunction with EN 14351-1 (for exterior doorsets) or EN 14351-2 (for interior doorsets). Testing is executed according to EN 1634-1 for fire resistance and EN 1634-3 for smoke leakage control.
| Classification | Performance Definition | Core Engineering Mechanism | Primary Application |
|---|---|---|---|
| E 30 / E 60 / E 120 | Flames & Gas Integrity Only | Steel/Thermally Reinforced Frame + Toughened Fire Glass | Exterior Fire Escape Corridors, Perimeter Screens |
| EW 30 / EW 60 | Integrity + Controlled Thermal Radiation | Interlayered Intumescent Gel + Ceramic Matrix Framing | High-Density Occupancy Exit Paths, Lobbies |
| EI 30 / EI 60 | Full Integrity + Complete Thermal Insulation | Multi-Layer Hydrogel Intumescent Glass + Insulated Core | Hospital Operating Wings, Data Centers, High-Rise Core Stairs |
| EI 90 / EI 120 | Maximum Structural & Thermal Barrier (120 Mins) | Heavy-Duty Steel/Structural Aluminum Composite Cores | Hazardous Material Warehouses, Power Plants, Transformer Rooms |
| S_a / S_200 | Cold (S_a) and Warm (S_200) Smoke Leakage Control | Continuous Drop Seals + Perimeter Silicone Gaskets | Pressurized Stairwells, Elevator Lobbies, Hotel Corridors |
As a leading manufacturer operating from our vertically integrated facilities, we engineer complete opening solutions where profile extrusions, intumescent core insulation, automatic perimeter drop-seals, heavy-duty panic exit hardware, and certified multi-laminated ceramic fire glass function as a unified, certified system. This eliminates the catastrophic performance gaps that frequently occur when contractors assemble unvalidated components from separate supply channels.
The global fire door and architectural fire-envelope market is undergoing a structural paradigm shift driven by stringent decarbonization directives, high-density urban developments, and intelligent building automation systems (BMS). Architects, general contractors, and commercial developers are rapidly moving away from traditional, bulky solid-metal fire barriers toward sophisticated, high-transparency glazed fire assemblies and lightweight composite fire cladding systems.
Demand for fully glazed EI30–EI120 fire doors and continuous curtain walls has surged by over 40% year-over-year. Modern architectural intent prioritizes maximum daylighting and clear sightlines without compromising life safety. Advanced multi-laminated intumescent gel interlayers remain completely clear under ambient conditions but transform into an opaque, rigid thermal shield when exposed to heat exceeding 120°C.
Procurement specifications increasingly mandate smart electronic hold-open devices, motorized auto-operators, and real-time seal integrity monitoring linked directly to Central Fire Alarm and Building Management Systems (BMS). In the event of smoke detection or power interruption, magnetic hold-opens release instantly, ensuring positive latching and smoke containment across critical escape routes.
With LEED v4.1 and BREEAM certifications dictating material selection, fire door manufacturing must align with Environmental Product Declarations (EPDs). Utilizing recycled architectural aluminum extrusions, non-toxic mineral cores, and energy-efficient thermal-break profiles drastically reduces embodied carbon while fulfilling stringent EN fire safety standards.
Furthermore, single-source procurement models are fast becoming the global standard. Multi-family tower developers and institutional asset owners no longer accept divided accountability between extrusion suppliers, door fabricators, hardware assemblers, and field installation crews. The market strongly favors single-source manufacturers capable of delivering end-to-end design, factory fabrication, factory glazing, and certified installation under unified warranty coverage.
Building upon over 35 years of engineering leadership, our manufacturing eco-system operates at the intersection of precision fabrication and strict life safety compliance. Operating from our advanced Stoney Creek, Ontario facility, we maintain single-source control over every phase of the production lifecycle—from profile engineering and thermal break insertion to CNC machining, automated intumescent sealing, factory glazing, and site installation execution.
Every door frame, sash profile, and curtain wall transom is cut, machined, and assembled using multi-axis CNC technology under strict ISO 9001 and CE Factory Production Control (FPC) audit procedures. Frame corners feature reinforced internal steel cleats to withstand thermal deformation during extreme fire exposure.
Specializing in complex occupied multi-family and commercial retrofits, our specialized installation crews replace legacy fire doors and balcony assemblies suite-by-suite. We enforce strict dust containment, daily weather-tight close-outs, and a standard one-day-per-unit turnaround strategy with zero resident displacement.
By eliminating third-party handoffs, we eliminate the primary cause of fenestration failure: misalignments between frame suppliers, glass processors, hardware fitters, and installers. Estimating, engineering shop drawings, submittal packages, fabrication, glazing, site hoisting, and post-handover warranty service are handled under one roof.
While both standards measure fire endurance, their testing methodologies and performance criteria differ significantly. CE certification under EN 16034 / EN 1634-1 enforces strict classification based on Integrity (E), Radiant Heat Limit (EW), and Full Thermal Insulation (EI) over designated durations (e.g., EI30, EI60, EI120), tested under neutral/positive pressure curves. UL 10C (positive pressure fire test of door assemblies) focuses heavily on hose-stream impact resistance following thermal exposure and categorizes ratings primarily by time duration (e.g., 45-min, 90-min, 3-hour). Furthermore, CE marking mandates continuous third-party Notified Body Factory Production Control (FPC) audits for the complete doorset system (frame, glass, seals, hardware).
When ambient temperatures exceed approximately 120°C to 180°C, perimeter intumescent seals chemically react and expand up to 25 times their original volume. This rapid expansion fills all structural gaps between the door leaf, frame, and surrounding wall, completely blocking the passage of toxic smoke, hot gases, and flames. Concurrently, multi-laminated fire glass containing transparent hydrogel interlayers undergoes an endothermic reaction: the gel absorbs heat energy, boils off moisture, and converts into an opaque, rigid insulation crust that blocks both convective and radiant heat transfer to the non-fire side.
Yes. As long as the aesthetic cladding panels are evaluated and approved within the initial fire test report or covered under an Extended Application (EXAP) report according to EN 15269. Our custom 3D faceted panels, PVDF composite skins, and sublimated wood-grain aluminum overlays utilize non-combustible substrates (Class A2-s1, d0) and specialized fire-rated adhesives that do not contribute fuel load or alter the structural thermal performance of the underlying fire doorset.
To maintain compliance under EN 16034, all hardware items fitted to a fire door—including hinges (EN 1935), door closers (EN 1154), panic exit devices (EN 1125 / EN 179), emergency locks (EN 12209), and drop seals—must be individually CE-marked and certified for fire door usage. Installing unapproved or non-certified hardware voids the CE system rating of the entire doorset.
Exterior fire doorsets must simultaneously comply with EN 14351-1 for external performance (air permeability, water tightness, wind load resistance, thermal transmittance U-value) and EN 16034 for fire characteristics. We achieve this by integrating heavy-duty multi-chamber thermal breaks within our aluminum extrusions, double-EPDM perimeter gasket lines, insulated fire cores, and engineered low-profile barrier-free thermal thresholds.
Standard thermally broken CE certified fire door packages typically undergo shop drawing submittal and engineering verification within 1 to 2 weeks post-tender award. Following drawing approval, fabrication and factory glazing require approximately 6 to 8 weeks, depending on project scale and custom finish specifications. Staged floor-by-floor site delivery schedules are systematically managed to match site erection sequences and crane hoisting windows.
Consult with our senior technical engineering team today. Submit your architectural drawings, elevation plans, or retrofit specification schedules for rapid technical review, compliance validation, and factory-direct budgeting.