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air flow raised access flooring568-0

Air Flow Raised Access Flooring

The air flow raised access flooring is specially configured the down air supply for the data center as a good solution for the air conditioning terminal. 


The all steel anti-static air flow raised access floor panel is made of (imported) carbon steel and backed with thickened steel tubes for good bearing capacity. Large air output ensures refrigeration of equipment. According to customers requirements, which can choose HPL, PVC and ceramic covering, wear - resistant and anti - static floor visual unity. The ventilation rate is optional from 20% to 65%. In addition, the floor can be equipped with air volume regulator to set the air volume according to the demand, which effectively improves the temperature control efficiency of the machine room. 


The floor system consists of floor, stringers and pedestals. The stringer and adjustable pedestal are connected with screws to form a stable lower support system, and the floor is inlaid into the square enclosed by the cross beam. This type floor can be installed independently or combined with other anti-static raised floor systems, making it ideal for data centers, computer rooms, control centers, communication rooms, and other environments where ventilation and static control are essential.

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Ventilation Coefficient 17% Ventilation Coefficient 20% Ventilation Coefficient 30% Ventilation Coefficient 36%
Air Flow Raised Access Flooring manufacture Air Flow Raised Access Flooring factory Air Flow Raised Access Flooring details Air Flow Raised Access Flooring factory
Ventilation Coefficient 45% Ventilation Coefficient 50% Ventilation Coefficient 75% Ceramic

Performance Parameter

Size: 600 x 600 x 35 mm

Product Features

The All Steel Anti-Static Air Flow Raised Access Floor with HPL / PVC Covering:
Precision perforated panels enable efficient air distribution and stable temperature control, ideal for data center cooling systems.
High-strength steel panels combined with conductive systems ensure reliable anti-static performance for sensitive equipment.
Supports flexible airflow control with optional air volume regulators to meet different cooling requirements.
Anti-static HPL or PVC covering provides durability, abrasion resistance, and a clean, professional appearance.
Reinforced steel construction delivers dependable load-bearing performance while allowing easy installation.
Compatible with standard pedestal and stringer systems, allowing easy maintenance and future layout changes.

The All Steel Anti-Static Air Flow Raised Access Floor with Ceramic Covering:
Constructed with a full steel, offering high mechanical strength, excellent load-bearing capacity, and superior fire resistance.
Multiple airflow rates are available for selection or customization. When combined with ceramic anti-static floor tiles, delivers a clean, elegant, and modern appearance.
The steel panel surface is finished with electrostatic powder coating, providing a soft matte appearance, high wear resistance, corrosion resistance, and crack-free performance. 
The ceramic surface offers outstanding abrasion resistance and stable anti-static properties. It is stain-resistant, easy to clean, highly decorative, and provides reliable fire performance.
With rich color options, precise dimensions, and excellent flatness, the floor is dust-free, highly wear-resistant, easy to maintain, and requires no waxing, ensuring a long service life.
The ceramic tile effectively eliminate common problems of traditional HPL and PVC finishes, such as edge lifting, cracking, and difficult cleaning.

Application

The occasion where antistatic and ventilation are required, such as:
Computer rooms
Network communication rooms
Monitoring
Command center
Electronic monitoring workshop
Purification room, etc

Advantages

Efficient Cooling Performance
Perforated panels allow controlled airflow (20%–65%), improving ventilation and cooling efficiency in data centers and equipment rooms.

High Load Capacity
Reinforced steel construction provides strong mechanical strength and stable load-bearing performance for heavy equipment.

Reliable Anti-Static Protection
Anti-static coverings such as HPL, PVC, or ceramic effectively dissipate static electricity, protecting sensitive electronic equipment.

Flexible Cable & Air Management
The raised structure creates underfloor space for cables, HVAC systems, and pipelines, allowing easy maintenance and upgrades.

Durable & Long Service Life
Wear-resistant surfaces and corrosion-resistant steel ensure long-term durability and low maintenance costs.

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More Faq Us

Frequently Asked Questions?

A raised access floor is a modular flooring system elevated above the structural slab using steel pedestals and stringers, creating an underfloor plenum.
It is widely used in data centers, offices, control rooms, and electrical rooms to support cable management, air circulation, heat dissipation, anti-static protection, and equipment vibration control, while allowing flexible layout changes and convenient maintenance.

Raised access flooring is mainly classified into two categories based on function and application:
•Anti-static raised access floor – designed for data centers, server rooms, and electronic equipment areas
•Network raised access floor – used in office spaces for structured cabling and weak-current systems
Each type can be combined with different surface finishes such as HPL, PVC, ceramic, or carpet.

The height of a raised floor depends on application requirements:
•Office areas: 100–300 mm
•Data centers / equipment rooms: 300–800 mm
•Special projects: Custom heights above 1000 mm available for high-density cabling or airflow requirements

To ensure effective ESD protection, anti-static raised floors must comply with the following:
•Surface resistance: 1 × 10⁶ – 1 × 10¹¹ Ω
•System resistance (panel–pedestal–ground): 1 × 10⁴ – 1 × 10⁹ Ω
These values meet international requirements for protecting sensitive electronic equipment.

For long-term performance and safety:
•Avoid impacts from sharp or heavy objects to prevent surface damage
•Use professional suction lifters when removing panels—never pry forcibly
•Regularly inspect the grounding system to ensure compliance
•Keep underfloor cables organized to avoid excessive load on pedestals
•Replace damaged anti-static finishes promptly to prevent ESD failure

Material & Durability
•HPL: High hardness, excellent wear, scratch, and impact resistance, long service life
•PVC: Softer material, lower wear resistance, more prone to scratches
Anti-static Stability
•HPL: Integrated anti-static layer formed during lamination, stable and long-lasting
•PVC: Surface-coated anti-static layer, performance may degrade over time
Environmental Resistance
•HPL: Resistant to moisture, heat, chemicals, and easy to clean
•PVC: Lower heat and chemical resistance, water exposure may cause edge lifting
Installation & Applications
•HPL: Ideal for data centers and power rooms with long-term fixed layouts
•PVC: Seamless installation option, suitable for areas requiring flexibility or slight subfloor tolerance

Common causes include:
•Improperly installed or uneven pedestals and stringers
•Incomplete contact between pedestal bases and subfloor
•Excessive gaps between floor panels causing friction
Solutions:
•Re-adjust pedestals for vertical alignment and firm fixing
•Add metal shims under pedestal bases
•Replace damaged components and control panel gaps within ≤ 0.5 mm

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