Designed for modern spaces, FINECO's acoustic raised access floor bare panels offer exceptional durability, efficient cable management, and robust load support. The flexible modular design enables swift installation and effortless adaptability for future changes. Incorporating anti-static and fire-retardant properties, this advanced flooring solution boosts safety and organization. Perfect for data centers, office settings, and industrial zones, it combines enduring strength with visual appeal to enhance operational efficiency and the aesthetics of the space.
Product specification
|
Model |
Concentrated Load |
Impact Load |
Ultimate Load |
Uniform Load |
Rolling Load (N) |
||
|
LB |
N |
N |
N |
N/㎡ |
10 times |
10000 times |
|
|
FS800 |
800 |
3560 |
536 |
10680 |
16100 |
3560 |
2670 |
|
FS1000 |
1000 |
4450 |
670 |
13350 |
23000 |
4450 |
3560 |
|
FS1250 |
1250 |
5560 |
780 |
16680 |
33000 |
5560 |
4450 |
|
FS1500 |
1500 |
6660 |
1005 |
19980 |
34500 |
6675 |
5340 |
|
FS2000 |
2000 |
8900 |
1340 |
26700 |
46000 |
8900 |
7120 |
* According to CE& CISCA's recommended test procedures for Access Floors
600*600mm/24'*24' (610*610mm) available
Product feature and application
FINECO's acoustic raised access floor bare panels provide robust and reliable solutions for modern infrastructure requirements. Crafted from high-strength, anti-corrosion materials with fire-resistant coatings, these panels offer exceptional load-bearing capacity and long-lasting durability. The versatile modular design facilitates quick installation, effortless reconfiguration, and seamless access to underfloor utilities, enhancing operational efficiency. Built-in cable management channels optimize airflow and organize power/data cabling while minimizing clutter. Ideal for demanding environments such as data centers, industrial facilities, command and control rooms, and laboratories, these raised floor systems ensure safety, flexibility, and compliance with international standards, supporting dynamic spatial needs with minimal maintenance.
Product details

FINECO's acoustic raised access floor bare panels feature precision-engineered components for optimal functionality. ESD perimeter trims guarantee seamless electrical conductivity and effective static discharge across the floor system. Every unit is subjected to rigorous epoxy powder-coated anti-corrosion processes, ensuring longevity in damp or harsh environments. A diverse range of anti-static laminate options (HPL, PVC, ceramic) provide customizable aesthetics while maintaining a surface resistance between 10^4 and 10^9Ω. Reinforced bolted support frameworks enhance structural robustness, capable of withstanding point loads up to 890kg. Fire-rated cores comply with ASTM E84 Class 1 standards. Optional gasket-sealed edges create airtight compartments, perfect for clean room or pressurized applications, emphasizing the floor's flexibility to meet varied technical specifications.
Product Qualification

FINECO's acoustic raised access floor bare panels are designed to meet the utmost standards of quality and durability, starting with superior materials and precise craftsmanship. Core elements are manufactured using cutting-edge, high-grade materials renowned for their exceptional durability, resistance to environmental influences, and adaptability, ensuring strong structural integrity even in demanding conditions.
The integration of lightweight foam concrete greatly enhances the performance of the acoustic raised access floor bare panels by reducing overall weight and providing improved thermal insulation, sound absorption, and eco-friendly characteristics. Production employs strong, high-capacity presses that apply uniform pressure and accurate molding, eliminating material flaws and ensuring dimensional accuracy.


The combination of advanced materials and industrial-grade equipment results in acoustic raised access floor bare panel systems that continually exceed industry benchmarks for durability, reliability, and operational excellence, meeting the most stringent client expectations.
Shipping and Package


FAQ
Q: 1. What are the common uses of acoustic raised access floor bare panel?
A: Acoustic raised access floor bare panel systems are commonly utilized in data centers, server rooms, office spaces, laboratories, control rooms, and other environments that require efficient cable management, precise air circulation control, or the flexibility to modify infrastructure layouts. These systems also provide crucial electrical grounding and static protection in areas that demand high sensitivity.
Q: 2. How is a acoustic raised access floor bare panel installed?
A: The installation of acoustic raised access floor bare panel systems usually involves leveling the subfloor, positioning support frameworks, attaching support beams or stringers, and then meticulously placing the floor panels. The height of the floor can be tailored using adjustable pedestals to address specific requirements. Spaces between the panels are sealed to guarantee airtightness, and the edges are completed with trim for improved safety.
Q: 3. How do I choose the right acoustic raised access floor bare panel?
A: When choosing an acoustic raised access floor bare panel system, consider the following factors:
● Operational context: Evaluate load-bearing capacity, anti-static properties, and cleanliness standards.
● Elevation: Decide based on cabling and air circulation needs.
● Material characteristics: Assess durability, fire resistance, and resistance to corrosion.
● Financial planning and upkeep: Take into account both the initial costs and long-term maintenance expenses.
Q: 4. What is the lifespan of a acoustic raised access floor bare panel?
A: The durability of an acoustic raised access floor bare panel system typically hinges on the quality of the materials used and the level of maintenance it receives. With proper care, it can generally endure for more than a decade.
Q: 5. Can acoustic raised access floor bare panel be disassembled and replaced by oneself?
A: Although acoustic raised access floor bare panel systems are constructed as a detachable structure and can potentially be dismantled and replaced by the user themselves, it is advisable to engage professional personnel to carry out the operation to guarantee safety and efficiency.
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