Technical flooring for serviceable infrastructure

Antistatic Raised Access Floor for Data Centers and Clean Rooms

Plan a modular steel-panel floor around the room's real service demands. This cement infill system combines a removable floor grid, adjustable support heights and model-level load data for technical environments. Review the fit for a data center raised floor or a clean room raised floor before the project layout is fixed.

Antistatic cement infill steel raised access floor panel
Room planning priorities

Start with the service zone beneath the floor

The right floor decision is shaped by what must pass below it, what the room must carry and how often teams will need access after installation. Keep those questions separate so the floor supports the technical plan without being asked to replace it.

Routing depth

Set the finished floor height around cable density, service separation and the available structural zone. Adjustable pedestals are listed from 70 mm to 1500 mm.

Panel access

Use a modular grid when future wiring or service work may require selected panels to be removed and returned without dismantling the whole room.

Load category

Choose from the tested model data rather than from material names alone. Concentrated, impact, ultimate, uniform and rolling loads answer different engineering questions.

Construction and data

Steel, cement infill and support heights in one system

Bottom structure of a cement infill raised access floor panel

The product page presents steel panels, cement infill, steel stringers, supports and adjustable pedestals as a modular raised-floor assembly.

The panels are shown in 600 x 600 x 35 mm and 610 x 610 x 35 mm formats. Top-tile compatibility, antistatic intent and a flat, shock-resistant surface are part of the product description, while the final project specification should confirm the required finish, grounding and installation details.

70 mmlower support height
1500 mmupper listed height
600 x 600panel format in mm
35 mmpanel thickness
Model Concentrated load (N) Impact load (N) Ultimate load (N) Uniform load (N/m2) Rolling load, 10 times (N) Rolling load, 10000 times (N)
FS662 ≥3000 ≥445 ≥9000 ≥12500 2946 2356
FS800 ≥3600 ≥536 ≥10800 ≥16100 3560 2670
FS1000 ≥4500 ≥670 ≥13500 ≥23000 4450 3560
FS1250 ≥5600 ≥780 ≥16800 ≥33000 5560 4450
FS1500 ≥6700 ≥1005 ≥20100 ≥34500 6675 5340
Application fit

Match the floor to the room's working pattern

The same modular floor can support different technical spaces, but the reason for using the underfloor zone changes from one room to the next.

Data centers

Coordinate rack loads, cabling routes, support height and airflow-related planning with the wider infrastructure design.

Network rooms

Keep power and signal routes reachable as equipment positions and service paths change over time.

Monitoring centers

Organize routes to consoles and display areas while keeping the visible working surface clear and serviceable.

Clean rooms

Confirm cleanliness classification, cleaning method, airflow behavior and acceptance criteria separately from the floor selection.

Specification checkpoints

Keep these checks in the project discussion

1. Define the cavity

Share the finished floor target, routing depth, service separation and any restrictions from the existing structure.

2. Identify the load case

Clarify whether the room is governed by concentrated, impact, uniform, ultimate or repeated rolling loads.

3. Confirm the surface system

Discuss top-tile compatibility, antistatic grounding, cleaning requirements and project acceptance criteria.

4. Plan maintenance access

Map the panels that must remain reachable after racks, consoles, cabinets and other equipment are placed.

Related reading

Three useful perspectives on raised-floor selection

Use these product-specific articles to separate room planning, construction language and performance questions before you request a detailed project discussion.

Antistatic raised access floors for data center, network room and monitoring center applications

See how cable access, support height and room function shape the role of a raised floor, with clear boundaries around cooling and clean-room design.

Read the application perspective

What an antistatic cement infill steel raised access floor means for technical spaces

Review how modular panels contribute to serviceability in technical rooms and why the floor should remain one layer of the wider facility plan.

Read the technical-space perspective

Steel panels and cement infill in raised access floor construction

Understand what the steel shell and cement infill suggest about construction, and which performance questions still require model data.

Read the material perspective
Before quotation

Bring the project facts that shape the floor

  • Room type: data center, network room, monitoring center, electronic workshop or controlled environment.
  • Finished floor height and the service routes that must pass beneath the panels.
  • Equipment footprint, concentrated loads and any repeated rolling movement.
  • Surface, grounding, cleanliness and acceptance requirements that belong to the project specification.
Questions for technical teams

Raised access floor FAQ

What is the main construction of this raised access floor?

The system is presented with steel panels, cement infill, steel stringers, supports and adjustable pedestals. The modular assembly creates a removable floor surface over an accessible service zone.

What panel sizes are listed for this product?

The product information lists 600 x 600 x 35 mm and 610 x 610 x 35 mm panel formats. Confirm the required format and finish for the project layout.

What pedestal heights are available?

The listed adjustable pedestal range is 70 mm to 1500 mm. The suitable finished height depends on the structure, cable routes, service separation and project coordination.

Which rooms are identified as applications?

Applications include computer rooms, network service rooms, monitoring centers, electronic workshops, clean rooms and dustless chambers, as well as other spaces requiring antistatic and air-conditioning support.

How should the load data be used?

Use the model table to distinguish concentrated, impact, ultimate, uniform and rolling loads. The required model should be selected against the actual equipment and movement conditions, not from the material description alone.

Does the floor alone prove clean-room or data-center compliance?

No. The floor can support cable access, room organization and static-control planning, but cleanliness classification, grounding, cooling, fire protection and facility acceptance remain project-level requirements.

Discuss your room layout and floor requirements

Send the room type, finished height, expected load cases, panel format and surface requirements to Maria for a product discussion.