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BI-FOLDING SLIDING SYSTEM PAGE

PAGE is a thermally broken system designed for the manufacture of bi-folding sliding windows and doors, in which the sashes fold and stack one over another to provide maximum clear opening.

A minimalist yet robust system, thanks to a sash profile of only 50 mm and aluminium thicknesses of up to 3 mm, allowing the production of single sashes with maximum dimensions of 1200 x 3500 mm.




Top junction

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Central junction

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Side junction

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with compensator

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Bottom junction

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SOLUTIONS FOR ENTRANCE DOORS:

The PAGE system can also be used as an entrance door. By adding a widening profile to the sash, it is possible to install locks, double handles and a through cylinder.

Different types of locks can be used:

  • Minimal solution: when the sash is open, only the latch bolt and deadbolt are visible, while the locking points are concealed inside the sash.
  • Security solution: three-point locking system with anti-lift hooks.

AVAILABLE CONFIGURATIONS:

The PAGE system allows the creation of various bi-folding sliding window and door configurations, up to a maximum of 8 sashes, provided that the following dimensions and weight are not exceeded: maximum width 1200 mm; maximum height 3500 mm; maximum sash weight 120 kg.
The system accommodates double and triple glazing with thicknesses ranging from 30 to 50 mm.

The term configuration refers to the composition of the sliding system. Each configuration is identified by three numbers: the first indicates the total number of sashes; the second represents the number of sashes sliding or opening to the left; the third represents the number of sashes sliding or opening to the right.



Minimal solution

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Security solution

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Graphic representation of selected configurations

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Download Area

TECHNICAL FEATURES - PAGE

Air Permeability

Class
3

Water Tightness

Class
5A

Wind Resistance

Class
C3

Thermal Insulation

Uw 1.00 W/m2K

Valori ottenuti per una finestra con dimensioni normalizzate secondo UNI EN 14351-1 (1480x2180 mm) con vetro Ug 0.6 W/m2K e psi 0.03.