ERITY and Alsym sign 9GWh agreement to deploy batteries across the mining sector. Click for more.

Data Centers

Get the Capacity.
Manage the Loads.

The Problems We Help You Solve

Exploding Power Demand

AI data center growth is driving unprecedented demand for large-scale, always-available energy capacity to support facilities themselves and the connected local grid.

Transient Loads Stress Equipment

AI training workloads introduce volatile power curves that traditional data center architectures cannot manage. Data centers must isolate these transients from the grid to protect upstream infrastructure.

Interconnection Constraints

Multi-year interconnection queues are forcing data centers to look behind the meter for faster access to scalable power.

Enabling 800 VDC Distribution

The transition to high-voltage DC distribution is pulling batteries deeper into data center infrastructure, where frequent heavy cycling and thermal stress accelerate degradation.

Alsym Na-Series Benefits

Fast and Versatile Power for the AI Era

Alsym’s Na-Series sodium-ion batteries help OEMs/Integrators provide better energy storage solutions for AI data centers.

Designed as Infrastructure, Not Just Backup

Na-Series is built for high-utilization energy storage in daily operations – not just emergency outages. Industry-leading C-rate, cycle life, and Round-Trip Efficiency (RTE) lets your facility evolve as power and energy needs change.

Built for Volatile Power Curves

Thermal robustness, non-flammability, and high C-rate capability make Na-Series better suited than LFP for the dynamic power requirements of AI workloads. 

Bridge the Interconnection Gap

Accelerate speed-to-power with islanded operation today while protecting onsite turbines from low-load damage. Once interconnected, seamlessly transition into a high-value grid-interactive asset.

800VDC Without Thermal Penalties

Center high-power storage in your infrastructure strategy without the thermal risks or active cooling requirements of lithium-ion. Reduce required gray space by eliminating heavy HVAC infrastructure. 

Typical Use Cases for Data Centers

Utility-Scale Energy

Offer front- and back-of-the-meter BESS solutions with Na-Series battery storage offering high RTE, minimal per cycle degradation, and no complex cooling requirements.

Utility-Scale Power

2C/2C capability enables high-throughput response to volatile facility-level load swings from AI training and inference workloads. 

Large Load Grid Compliance

Next-gen 800 VDC batteries allow AI data centers to serve as active grid assets. They actively stabilize grid voltage and frequency during primary power disturbances. 

Load Smoothing

Buffer short and long-duration load fluctuations from GPU-induced transients or grid disturbances without the thermal stress that accelerates LFP battery degradation.

June 29, 2026

How are AI datacenters different from traditional data centers?

June 25, 2026

Enter the New Era of Battery-Driven Data Centers

June 11, 2026

Suppression Complexity: The Nightmare of Extinguishing Lithium Fires in Server Halls

May 4, 2026

Powering ‘AI Factories’: The Data Centers of Tomorrow

Data Centers

Data Centers

Get the Capacity.
Manage the Loads.

The Problems We Help You Solve

Exploding Power Demand

AI data center growth is driving unprecedented demand for large-scale, always-available energy capacity to support facilities themselves and the connected local grid.

Transient Loads Stress Equipment

AI training workloads introduce volatile power curves that traditional data center architectures cannot manage. Data centers must isolate these transients from the grid to protect upstream infrastructure.

Interconnection Constraints

Multi-year interconnection queues are forcing data centers to look behind the meter for faster access to scalable power.

Enabling 800 VDC Distribution

The transition to high-voltage DC distribution is pulling batteries deeper into data center infrastructure, where frequent heavy cycling and thermal stress accelerate degradation.

Alsym Na-Series Benefits

Fast and Versatile Power for the AI Era

Alsym’s Na-Series sodium-ion batteries help OEMs/Integrators provide better energy storage solutions for AI data centers.

Designed as Infrastructure, Not Just Backup

Na-Series is built for high-utilization energy storage in daily operations – not just emergency outages. Industry-leading C-rate, cycle life, and Round-Trip Efficiency (RTE) lets your facility evolve as power and energy needs change.

Built for Volatile Power Curves

Thermal robustness, non-flammability, and high C-rate capability make Na-Series better suited than LFP for the dynamic power requirements of AI workloads. 

Bridge the Interconnection Gap

Accelerate speed-to-power with islanded operation today while protecting onsite turbines from low-load damage. Once interconnected, seamlessly transition into a high-value grid-interactive asset.

800VDC Without Thermal Penalties

Center high-power storage in your infrastructure strategy without the thermal risks or active cooling requirements of lithium-ion. Reduce required gray space by eliminating heavy HVAC infrastructure. 

Typical Use Cases for Data Centers

Utility-Scale Energy

Offer front- and back-of-the-meter BESS solutions with Na-Series battery storage offering high RTE, minimal per cycle degradation, and no complex cooling requirements.

Utility-Scale Power

2C/2C capability enables high-throughput response to volatile facility-level load swings from AI training and inference workloads. 

Large Load Grid Compliance

Next-gen 800 VDC batteries allow AI data centers to serve as active grid assets. They actively stabilize grid voltage and frequency during primary power disturbances. 

Load Smoothing

Buffer short and long-duration load fluctuations from GPU-induced transients or grid disturbances without the thermal stress that accelerates LFP battery degradation.

June 29, 2026

How are AI datacenters different from traditional data centers?

June 25, 2026

Enter the New Era of Battery-Driven Data Centers

June 11, 2026

Suppression Complexity: The Nightmare of Extinguishing Lithium Fires in Server Halls

May 4, 2026

Powering ‘AI Factories’: The Data Centers of Tomorrow