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High-capacity commercial storage
in one liquid-cooled cabinet

STORION LC TB125 combines a 125 kW power conversion system with 261.2 kWh of lithium iron phosphate battery storage, energy management, battery management, liquid cooling and product-specific fire protection in a pre-assembled outdoor cabinet.

It is designed for commercial and industrial projects that need a larger step in power and capacity, with connected control and the potential to scale through an approved multi-cabinet design.

A commercial system designed around deployment and control

Pre-assembled

Core components are integrated before delivery, reducing on-site equipment assembly.

Liquid-cooled

Precision thermal management supports consistent operating conditions across the battery system.

Connected

EMS functions and approved interfaces support scheduled operation, monitoring and integration.

Scalable

Develop a multi-cabinet architecture around the required power, capacity and operating strategy.

Where TB125 can fit

Solar self-consumption

Store surplus on-site generation for use when demand is higher or solar output falls.

Peak management

Use scheduled charge and discharge to manage defined periods of high site demand.

Time-of-use optimisation

Shift energy use between tariff periods where the site, contract and operating strategy support it.

Operational resilience

Design selected backup loads around the available stored energy and approved switching architecture.

Microgrids

Coordinate storage with local generation, loads and, where required, generator support.

Flexibility services

Connect eligible systems to approved optimisation or flexibility services, subject to technical and commercial qualification.
INTEGRATED

Integrated before it reaches site

The cabinet brings together battery modules, PCS, BMS, EMS, liquid cooling and fire-response components. Factory integration can simplify deployment, but the project still requires design, foundations, lifting, electrical works, protection, communications, commissioning and an operating plan.
STORION LC TB125 cabinet interior

PCS

Converts power between the battery and the site's AC system.


BMS

Monitors battery conditions, balances cells and applies protective limits.


EMS

Controls charging, discharging and approved operating strategies.


Liquid Cooling

Precision thermal management supports consistent operating conditions.

Control storage around the way the site uses energy

The TB125 supports scheduled charge and discharge, self-consumption, demand control and generator-related strategies through its energy management platform. Modbus TCP and API connectivity can support approved third-party integration.

TB125 battery balancing visualisation
SAFETY

Layered protection and operating visibility

The TB125 uses lithium iron phosphate battery chemistry with cell and system monitoring, liquid-cooled thermal control, smoke and temperature detection, pack and rack aerosol response and a sprinkler system.

Site design adds the appropriate separation, access, drainage, electrical protection, emergency planning and maintenance arrangements.

TB125 safety systems cutaway
STORION LC TB125 cabinet
BACKUP

Backup is an engineered option

An optional static transfer switch cabinet can support compatible backup configurations. Actual continuity depends on the electrical architecture, supported loads, available stored energy, power limits, protection settings and commissioning.

Working specification summary

SpecificationNominal outputBattery capacityBattery chemistryIngress protectionDepth of dischargeDimensionsFire responseCommunicationsParallel operationWarranty
Working valuePublication note
125 kWSupported by current official product page
261.2 kWh per cabinetSupported by current official product page
Lithium iron phosphateSupported by current official product page
IP55Confirm exact cabinet and options
98%Confirm UK datasheet and warranty conditions
1,003 x 1,500 x 2,483 mmConfirm final UK model
Smoke and temperature detection, pack and rack aerosol, sprinklerTie to product revision and evidence
Modbus TCP and APIConfirm publishable interfaces and functions
Multi-cabinet design supportedDo not state a maximum until the conflict is resolved
Current UK contractual terms applyAdd approved product and battery warranty links
Commercial warehouse installation

Turning site data into a
workable storage strategy

Half-hourly consumption and generation data
Tariff, capacity charges and operational priorities
Existing or planned solar PV and inverter architecture
Grid connection, G99 and export limitation requirements
Cabinet position, foundation, lifting route, access and clearances
Noise, drainage, ventilation, fire strategy and emergency access
Backup loads and continuity requirements, where relevant
Control platform, data access and third-party integration needs

FAQs

What size of battery do I need?
System size depends on your daily energy consumption and goals. Our installers assess your usage patterns and solar output to recommend the right capacity for your household.
How does the battery charge?
System size depends on your daily energy consumption and goals. Our installers assess your usage patterns and solar output to recommend the right capacity for your household.
What's the warranty coverage?
System size depends on your daily energy consumption and goals. Our installers assess your usage patterns and solar output to recommend the right capacity for your household.
Can I add more capacity later?
System size depends on your daily energy consumption and goals. Our installers assess your usage patterns and solar output to recommend the right capacity for your household.
How efficient is the system?
System size depends on your daily energy consumption and goals. Our installers assess your usage patterns and solar output to recommend the right capacity for your household.
How does the battery charge?
System size depends on your daily energy consumption and goals. Our installers assess your usage patterns and solar output to recommend the right capacity for your household.