The APA NG24 Lift and Slide door can be double, or triple glazed and can accommodate sash width and height up to 3000mm with a maximum sash weight of 400kg.
The APA NG24 Lift & Slide door exhibits the best thermal insulation in all the sliding range with transmissions as low as 0.87 Wm2/K.
This maximum energy efficiency is possible thanks to the perfect combination of polyamide thermal breaks and insulating foam combined with the use of high-performance triple glazed units (possible thickness up to 52 mm) and large size sliders.
Acoustically this combination of framing and high-performance acoustic glass will deliver a noticeable noise reduction.
The lift and slide mechanism on this door features stainless steel bogies ensuring a long life of effortless and seamless operation, allowing the door to be lifted for ultra smooth slide & lowered for excellent weather seals, reducing air leakage.
The new flush integrated multi-point locking system providing for full and easy adjustment
The possibility of large sash dimensions makes the APA NG24 Lift and Slide door the ideal choice for enclosing large spaces while maintaining a high level of luminosity. It is fabricated with pull handles and finger pulls with a “comfort unit” making it effortless to lift the sash.
The APA NG24 Lift and Slide door is available in single or dual colours with over 200 RAL colour options. Sliding on a Monorail this door is available in various combinations and can be integrated with the APA Juliet balcony.
The APA NG24 Lift and Slide door is available in single or dual colour, with over 200 RAL colours available.
For more information on this thermally enhanced Lift & Slide door get in touch with a member of our team here.
Uw Whole door value* | EN ISO 1077-1 | as low as 0.87 W/m2K |
Air permeability | EN 12207:2000 | Class 4 |
Water tightness | EN 12208:2000 | Class 6A |
Wind resistance | EN 12210:2000 | Class C5 |
*Whole door U values are a combination of the frame and glazing thermal performance and as such will vary with the specification of glass utilised. Please consult with the APA technical team for more specific performance information.