Magnesium Oxide Rock Wool cleanroom panel is a composite building material that combines a magnesium oxide (MgO) board surface with a rock wool insulation core.
Magnesium Oxide Rock Wool cleanroom panel

For engineering teams across semiconductor & electronics manufacturing, biopharmaceutical production, aerospace assembly, precision optics labs, food-grade processing facilities, automotive EV battery lines, and data center server rooms, consistent ISO Class 3–8 environmental control is non-negotiable. The Magnesium Oxide Rock Wool cleanroom panel delivers unmatched fire safety, dimensional stability, and particulate containment—without compromising structural integrity or long-term hygiene.
Unlike standard clean room panel material options (e.g., polyurethane or PIR cores), this composite integrates non-combustible MgO facings with high-density rock wool insulation (≥100 kg/m³, A1 fire rating per EN 13501-1). It resists thermal deformation up to 1,000°C, eliminates organic off-gassing, and withstands repeated CIP/SIP cycles—critical for clean room panels for green energy manufacturers producing hydrogen electrolyzers or battery module enclosures, and equally vital for clean room panels for solar film manufacturers requiring ultra-low VOC environments during thin-film deposition.
As a trusted clean room panel supplier serving Tier-1 OEMs and EPC contractors since 2008, we partner directly with global clean room panel manufacturers to ensure full traceability—from raw MgO batch certification to third-party cleanroom compatibility testing (ISO 14644-1 particle shedding, ASTM E84 smoke density). Whether you need modular clean room partition walls for a GMP cell therapy suite or a full Clean Room Partition System for an aerospace avionics test bay, our panels integrate seamlessly into load-bearing and non-load-bearing configurations. Competitive clean room panel price structures are available for volume projects—including turnkey design support, on-site commissioning, and lifecycle maintenance planning.

| Parameter | Value / Detail |
|---|---|
| Clean room panel specifications | Thickness: 50–150 mm (standard 75/100 mm); Width: 1,000–1,200 mm; Length: Up to 6,000 mm (custom) |
| Clean room panel material | A1-rated MgO board (3.2–6.0 mm) + hydrophobic rock wool core (λ = 0.038 W/m·K) |
| Clean room panel wall system compatibility | Supports T-profile, cam-lock, and continuous gasketed joints; integrates with aluminum extrusion frames, stainless steel tracks, and seismic bracing |
| Clean room partition panels | Pre-finished with epoxy-powder-coated MgO or optional HPL/PVC laminates (see clean room partition panels) |
| Clean room partition systems rating | ISO Class 5 compliant (≤3,520 particles ≥0.5 µm/m³); surface roughness Ra ≤ 0.8 µm; static decay < 2.0 sec (ANSI/ESD S20.20) |
| Clean room partitions fire performance | EN 13501-1: A1 (non-combustible); zero smoke toxicity (EN ISO 5659-2); no halogen emission |
| Clean room partition wall acoustic attenuation | Rw ≥ 42 dB (100 mm panel); tested per ISO 10140-2 (see clean room panel supplier) |
These Clean room panels meet stringent clean room partitioning systems requirements—including seamless coving, integrated utility chases, and anti-static grounding paths—making them ideal for clean room partiotion walls in sterile filling lines or photolithography tool bays. All panels undergo factory pre-assembly validation and come with full material declarations (REACH, RoHS, FDA 21 CFR 177.2600 for food contact zones).

This Clean Room Partition System is not theoretical—it’s deployed where failure is not an option. In a Tier-1 semiconductor & electronics manufacturing facility in Singapore, our 100 mm MgO-rock wool panels reduced HVAC energy use by 18% versus PU-core alternatives—thanks to superior thermal inertia and zero thermal bridging at connections. For a biomedical & life science client scaling mRNA vaccine fill-finish capacity, the panels passed accelerated corrosion testing (85°C/85% RH × 1,000 hrs) and supported rapid reconfiguration of clean room partitions between campaign batches.
In aerospace applications—such as satellite payload integration cleanrooms—the panels’ low outgassing (<1.0% TML, <0.1% CVCM per ASTM E595) prevents lens fogging and sensor drift. For precision instruments & optical labs, the rigid MgO substrate minimizes micro-vibrations and maintains flatness under vacuum chamber cycling. Automotive clients building EV battery manufacturing lines rely on these panels to contain metal dust while meeting NFPA 85 and UL 2750 explosion mitigation standards.
Even in food & beverage and data center & new energy settings, the value shines: Our clean room panels for green energy manufacturers (e.g., solar wafer handling, fuel cell stack assembly) eliminate silicone migration risks that degrade PERC cell efficiency. And for hyperscale data centers needing edge compute cleanrooms, the panels’ fire resilience and fast-track installation cut deployment time by 35% versus traditional gypsum systems. Explore full technical documentation, CAD/BIM libraries, and project references via our clean room panel resource hub—or contact our engineering team to benchmark clean room panels manufacturers options against your exact ISO class, throughput, and compliance roadmap.
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