Grooved Stone Panels for Data Centers

Stenrix™ grooved stone panels provide effective noise diffusion for data centers, reducing sound from servers and HVAC systems while integrating seamlessly with cooling systems. Designed to meet fire safety and environmental standards, these acoustic panels enhance both acoustic performance and airflow efficiency. Their natural stone finish offers a refined aesthetic, making them a durable and functional choice for modern data centers.

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Products

Grooved 12/4

Stenrix™ 12-4 panels reduce echoes by trapping sound and absorbing high and low frequencies.

Grooved 13/3

Line graph showing sound absorption (α) increasing from 0.2 to around 0.8 between 315 Hz and 1250 Hz, then leveling off up to 5000 Hz. Y-axis: Sound Absorption (α), X-axis: Frequency (Hz). Title: ISO 354, Type A with Insulation.

Stenrix™ 13-3 panels reduce echoes by trapping sound and absorbing high and low frequencies.

Grooved 14/2

A line graph shows sound absorption (α) versus frequency (Hz) for ISO 354, Type A with insulation. Sound absorption increases, peaks around 1250 Hz, then gradually decreases by 5000 Hz.

Stenrix™ 14-2 panels reduce echoes by trapping sound, with 50mm rockwool absorbing high and low frequencies.

Grooved 28/4

A line graph titled ISO 354, Type A with Insulation shows sound absorption (α) peaking near 0.9 at around 315 Hz, then gradually decreases from 1250 Hz to 5000 Hz. The x-axis shows frequency; the y-axis, absorption.

Stenrix™ 28-4 panels reduce echoes by trapping sound, with 50mm rockwool absorbing high and low frequencies.

Grooved 59/5

A line graph shows sound absorption (α) peaking around 1250 Hz and tapering off by 5000 Hz. The x-axis is 1/3 octave band center frequency (Hz), and the y-axis is sound absorption (α) from 0 to 1.2.

Stenrix™ 59-5 panels reduce echoes by trapping sound and absorbing high and low frequencies.

Acoustic Performance & Sustainability

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Sound Absorption Coefficient

The image displays the ISO logo, featuring the large white letters ISO in front of a stylized globe with latitude and longitude lines, all on a light gray background.

Stenrix™ is tested to ISO 354 Standards, which is the measurement of sound absorption in a reverberation room. The difference in the reverberation times is a measure of the amount of absorption in the room.

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Eco-friendly

We prioritize sustainability and eco-friendliness in our design and manufacturing processes. Made from eco-friendly recyclable materials, these products reduce environmental impact by minimizing waste and promoting long-lasting performance. 

Projects

Our projects encompass a broad spectrum, spanning from new building constructions to renovations. These projects involve various spaces, such as offices, auditoriums, concert halls, cinemas, libraries, hotels, and public areas.
Grooved Systems
Data Centers

Frequently Asked Questions

The Data Center Grooved System consists of precision-grooved stone acoustic panels designed to diffuse and reduce noise from servers, cooling equipment, and HVAC systems, improving sound comfort in data centre environments while integrating smoothly with airflow systems.

Grooves and slats in the panel surface help trap and scatter sound waves, effectively breaking up echoes and balancing noise across the space; when paired with an acoustic backing like rock wool, this design enhances sound absorption across a broad frequency range, particularly in mid- and low-frequency bands.

Yes — the modules are engineered not only for sound control but also for seamless integration with cooling and ventilation systems, helping maintain efficient airflow paths and avoiding obstruction of critical infrastructure while contributing to acoustic comfort.

Absolutely — the panels are made using quality stone materials and eco-friendly composites, and are designed to meet fire safety and environmental standards for high-use technical spaces, offering a durable finish alongside acoustic performance.

In addition to acoustic functionality, these panels provide a refined natural stone finish that enhances the visual appeal of a data centre interior, making technical spaces look more polished and architecturally integrated rather than purely functional.

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