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C12 EN AW-6063 T66 & 6005A T6 12 Compatible Sections

Flat Roof Ballasted Systems: Aerodynamic East-West & South Mounts

Secured safely by concrete ballast blocks without piercing delicate waterproofing membranes, engineered with rear wind deflectors to minimize roof dead loads.

CE EN 1090-1 EXC2 Eurocode 9 Certified Statics
0% EU Customs Duty A.TR Movement Certificate
0% VAT on FTL / FCL Direct Export Invoice
ISPM-15 Crating VCI Anti-Corrosion Wrap
PRODUCT CATEGORIES & TAXONOMY (20 GROUPS)
Selected: C12 — Flat Roof Ballasted Systems
12 Sections

Flat Roof Ballasted Systems — System Integration & Component Supply

Aerodynamic 10° and 15° East-West and South-facing ballasted consoles, wind deflectors, and extruded ballast trays. Minimizes roof dead load to 12–18 kg/m² without piercing delicate waterproofing membranes.

Compatible Extrusion Profiles & Assembly Sections (12 Compatible)

AutoCAD DWG, 3D STEP & mill test sheets available
Solar Module End Clamp Profile 30mm (Code: 2258) — Engineering Section Drawing | SolarAlu Global
CODE: 2258 0.339 kg/m

Solar Module End Clamp Profile 30mm (Code: 2258)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 30mm (Code: 3614) — Engineering Section Drawing | SolarAlu Global
CODE: 3614 0.359 kg/m

Solar Module End Clamp Profile 30mm (Code: 3614)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 31mm (Code: 1667) — Engineering Section Drawing | SolarAlu Global
CODE: 1667 0.550 kg/m

Solar Module End Clamp Profile 31mm (Code: 1667)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 33mm (Code: 1683) — Engineering Section Drawing | SolarAlu Global
CODE: 1683 0.558 kg/m

Solar Module End Clamp Profile 33mm (Code: 1683)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 35mm (Code: 1363) — Engineering Section Drawing | SolarAlu Global
CODE: 1363 0.561 kg/m

Solar Module End Clamp Profile 35mm (Code: 1363)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 37mm (Code: 1668) — Engineering Section Drawing | SolarAlu Global
CODE: 1668 0.575 kg/m

Solar Module End Clamp Profile 37mm (Code: 1668)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 40mm (Code: 1362) — Engineering Section Drawing | SolarAlu Global
CODE: 1362 0.583 kg/m

Solar Module End Clamp Profile 40mm (Code: 1362)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 41mm (Code: 1669) — Engineering Section Drawing | SolarAlu Global
CODE: 1669 0.591 kg/m

Solar Module End Clamp Profile 41mm (Code: 1669)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 42mm (Code: 1389) — Engineering Section Drawing | SolarAlu Global
CODE: 1389 0.555 kg/m

Solar Module End Clamp Profile 42mm (Code: 1389)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 44mm (Code: 1603) — Engineering Section Drawing | SolarAlu Global
CODE: 1603 0.602 kg/m

Solar Module End Clamp Profile 44mm (Code: 1603)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 45mm (Code: 1670) — Engineering Section Drawing | SolarAlu Global
CODE: 1670 0.607 kg/m

Solar Module End Clamp Profile 45mm (Code: 1670)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

Solar Module End Clamp Profile 47mm (Code: 1391) — Engineering Section Drawing | SolarAlu Global
CODE: 1391 0.599 kg/m

Solar Module End Clamp Profile 47mm (Code: 1391)

High-tensile aluminum photovoltaic module retaining clamp profile, engineered for severe wind uplift and snow compression resistance. Fits standard M8 socket bolts and spring channel nuts.

B2B VOLUME EXPORT PRICING

Flat Roof Ballasted Systems Wholesale Pricing & Export Discounts (2026)

Pricing for solar aluminum mounting profiles and mounting hardware is structured according to the London Metal Exchange (LME) primary billet benchmark, profile linear weight (kg/m), anodizing layer thickness (15µm Qualanod), and order volume bracket.

Order Volume Tier Export Discount Bracket Minimum Order (MOQ) Delivery Terms Direct Invoicing / RFQ
1 – 4 Bundles (48m – 192m) / Pallet (1 – 4 Cartons (200 pcs/box)) Standard Baseline 1 – 4 Cartons (200 pcs/box) EXW Facility / Air Freight Request Quote →
5 – 19 Pallets (~4,800m – 18,000m) (5 – 19 Master Cartons) 5% Project Rebate 5 – 19 Master Cartons FCA / DAP European Distribution Hub Request Quote →
20 – 49 Pallets (20 – 49 Master Cartons) 9% Mill Discount 20 – 49 Master Cartons DAP / CIF Major European & MENA Ports Request Quote →
Full Truckload (FTL / 24 MT) or 40' Container (FCL) (50+ Master Cartons (10,000+ pcs)) 13% Mill Floor 50+ Master Cartons (10,000+ pcs) DAP / CIF / FOB Multimodal Hubs Request Quote →
ENGINEERING & SELECTION GUIDE

Flat Roof Ballasted Systems: Aerodynamic Non-Penetrating Racks Guide

Updated: 2026

Non-penetrating ballasted aluminum structures secure commercial flat roof arrays with concrete blocks and aerodynamic rear wind deflectors.

4 Key Engineering Selection Criteria for Flat Roof Ballasted Systems

1

East-West vs South Orientation (10° & 15°)

East-West layout increases roof density by ~30% and smooths daily energy generation.

2

Wind Deflector Aerodynamics

Rear aluminum deflectors reduce wind uplift by 40%, lowering required concrete ballast to 12–18 kg/m².

3

Membrane Protection Rubber Mats

High-density EPDM/rubber barrier pads prevent membrane abrasion and puncture.

4

Extruded Ballast Trays

Hold standard concrete pavers and curb blocks securely without shifting.

Export Pricing & Logistics Procurement Tips

Supplied in modular pallet kits (consoles, base rails, deflectors, pads). Pallet density optimized for container export.

Compatible Photovoltaic Mounting Systems

Commonly Assembled Product Groups

C02 PV Module Mounting Rails → C04 Mid Clamps (Inter-Module Clamps) → C17 EPDM Sealing, End Caps & Protective Trim →
Popular Searches & Engineering Keywords
TECHNICAL FAQS

Frequently Asked Questions — Flat Roof Ballasted Systems: Aerodynamic East-West & South Mounts

Why is East-West layout favored for commercial flat roofs?
It lowers required ballast weight to only 12–18 kg/m².
Category Pricing