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257 mm thick large-format panel available as part of a bespoke off-site manufactured building system. Lightweight, rigid and versatile panels designed and engineered specifically for the project

• For external load bearing walls and roofs
• For infill or oversailing a structural frame
• U-values from 0.12 - 0.10 W/m²•K
• Low air tightness due to large OSB internal face
• ISO 9001 and BBA certificate
• Available pre-fitted with fire mitigation measures
• Quick, safe build will deliver programme gains

Platform Compatible Version Certified to
IFC IFC 2X3 2 1.3
Revit Revit 2016 + 4 2.0

  • Properties and values
  • More information
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  • What's Changed?

Properties and values

IFC
IfcExportAs
IfcWallType
IfcExportType
STANDARD
COBie
NBS_General
NBS_Data
AcousticRatingOptions
When finished with the requisite plasterboard lining system, the panel can achieve Rw+Ctr of at least 53 dB in a cavity party wall and 51 dB externally with brick cladding
CertificationScheme
n/a
ClassMinimum
n/a
CompressiveStrengthMinimum
n/a
Detailing
Butt-jointed at corners and fixed with 300 mm screw. In line joints connect with timber spline. i-SIPs are suitable for load bearing structures up to 4 storeys and infill or cladding structures up to 18 m. i-SIPs are suitable for roofs above 12.5° subject to loading and support conditions
Edges
n/a
EnvironmentalProductDeclaration
n/a
ExternalFinishFaceOptions
The panel system is suitable for all types of cladding systems and cavity, constructions. Where the cladding system is mounted on the panel, loads should not exceed 20 kg/m² unless the fixing system is approved by Innovaré
FaceSize
n/a
Facing
n/a
FacingMaterialsAdditionalComponents
Breather membrane
FacingMaterialsExternalFaceFinish
n/a
FacingMaterialsInnerSheetMaterial
Oriented strand board (OSB/3)
FacingMaterialsInnerSheetThickness
11
FacingMaterialsInsulationMaterial
Expanded polystyrene EPS
FacingMaterialsInsulationThickness
235
FacingMaterialsOuterSheetMaterial
Oriented strand board (OSB/3)
FacingMaterialsOuterSheetThickness
11
FireRatingOptions
When finished with the requisite plasterboard lining system, the panel can achieve 30, 60 or 90 minutes fire resistance
FireRetardantTreatment
n/a
FloorsInsulationMaterial
n/a
FloorsInsulationThickness
0
FloorsSuspendedGroundFloorConstructionCovering
n/a
FloorsSuspendedGroundFloorConstructionStructure
n/a
Form
n/a
InternalWallPanelsInsulationMaterial
n/a
InternalWallPanelsInsulationThickness
0
InternalWallPanelsOuterSheetMaterial
n/a
InternalWallPanelsOuterSheetThickness
0
InternalWallPanelsStructureMaterial
n/a
InternalWallPanelsStructureType
n/a
JointSealant
n/a
OtherEvidence
n/a
PanelConnections
n/a
PanelHeightMaximum
2770
PanelLengthMaximum
5980
PanelWeight
Approximately 25 kg/m² (based on 5% timber content)
PerformanceRequirement
n/a
PreservativeTreatment
n/a
ReactionToFireClassificationExcludingFlooring
n/a
ReactionToFireClassificationFlooring
n/a
RecycledContent
n/a
RecycledContentMinimum
n/a
ReflectiveFace
n/a
RoofAccessories
n/a
RoofInnerSheetMaterial
n/a
RoofInnerSheetThickness
0
RoofInsulationMaterial
n/a
RoofInsulationThickness
0
RoofOuterSheetMaterial
n/a
RoofOuterSheetThickness
0
RoofStructure
n/a
StructurePermanentTermAxialStrength
68 kN/m
StructurePermanentTermBendingStrength
24.3 kNm/m
StructureRackingResistance
2.55 kNm/m
SuppliedBy
n/a
ThermalConductivityMaximum
n/a
ThermalTransmittanceOptions
Low lambda core (0.031 W/mK). Typical wall build up U-value = 0.12 W/m²K
ThirdPartyCertification
BBA Certificate 08/S040
ThirdPartyProductCertification
n/a
TimberSourceDocumentationToBeSubmitted
n/a
TimberSourceGeneralRequirements
n/a
TimberSourceLegalityAndSustainability
n/a
TimingOfSubmissions
n/a
UpperFloorConstructionCeilingCoverings
n/a
UpperFloorConstructionFloorCovering
n/a
UpperFloorConstructionStructure
n/a
VOCEmissions
n/a
WallLocation
External wall and internal wall
WeightMinimum
0.21 MN·s·g
Pset_CoveringCommon
Pset_WallCommon

More information

  • NBS specification data
  • More BIM objects

    What's Changed?

    7/16/2018

    Object upgraded to NBS BIM Object Standard v2.0.

    1/19/2017