Lithium Battery Fire Suppression System Exporter India
Advanced Lithium-Ion Battery Fire Protection Solutions for Global Projects
The global adoption of lithium-ion batteries is increasing rapidly across renewable energy, electric mobility, data centres, telecommunications, manufacturing, logistics and critical infrastructure. Lithium batteries are widely used because they provide high energy density, compact construction, efficient charging and dependable performance.
However, lithium-ion batteries can present specialised fire hazards when they are damaged, overheated, overcharged or exposed to electrical and mechanical faults. A battery cell may enter thermal runaway, producing intense heat, smoke, flammable gases and rapid fire propagation. Damaged cells may also retain heat and create a risk of re-ignition after visible flames have been controlled.
United Fire Equipments Pvt. Ltd., under the LIFEGUARD brand, is a reliable lithium battery fire suppression system exporter from India, supplying customised fire detection, alarm, isolation and suppression solutions for international lithium-ion battery projects.
We support overseas project owners, EPC contractors, engineering consultants, battery manufacturers, system integrators, renewable-energy developers and industrial organisations with engineered fire protection solutions for:
- Battery Energy Storage Systems
- Lithium battery rooms
- Battery cabinets
- Electric vehicle facilities
- Data centres
- UPS battery installations
- Telecom battery banks
- Battery warehouses
- Battery recycling plants
- Industrial and infrastructure projects
LIFEGUARD supports export requirements through technical evaluation, system design assistance, project documentation, equipment supply and international coordination.
Reliable Lithium Battery Fire Suppression System Exporter from India
Selecting an experienced lithium battery fire suppression system exporter India is important for protecting people, equipment and critical business operations.
A standard portable extinguisher alone may not provide complete protection for a large lithium-ion battery installation. An effective battery fire protection strategy may require a coordinated combination of:
- Early smoke detection
- Heat and temperature monitoring
- Battery off-gas detection
- Linear heat-sensing cable
- Automatic fire alarm
- Battery shutdown
- Electrical isolation
- Ventilation control
- Automatic suppression discharge
- Battery cooling
- Fire propagation control
- Remote alarm communication
- Manual emergency controls
- Post-discharge monitoring
LIFEGUARD develops application-specific systems according to the battery chemistry, protected enclosure, energy capacity, battery-rack arrangement, environmental conditions and project requirements.
No single fire suppression medium should be considered universally suitable for every lithium battery application. The final system must be selected after reviewing the actual risk.
What Is a Lithium Battery Fire Suppression System?
A lithium battery fire suppression system is an engineered fire protection arrangement designed to detect and respond to abnormal conditions within lithium-ion battery cells, modules, racks, cabinets, rooms or containers.
Depending on the application, the system may be designed to:
- Detect smoke, heat, flame or battery off-gases.
- Generate early warning and confirmed fire alarms.
- Activate audible and visual warning devices.
- Transmit alarms to the main fire alarm system.
- Stop battery charging or discharging.
- Isolate the affected battery rack or equipment.
- Shut down selected electrical systems.
- Control ventilation and air-conditioning.
- Release the selected suppression medium.
- Control visible flames and reduce heat exposure.
- Limit fire propagation to adjoining batteries.
- Continue monitoring for potential re-ignition.
The actual operating sequence is developed according to the project’s fire-risk assessment and approved cause-and-effect matrix.
Understanding Lithium-Ion Battery Fire Hazards
Lithium-ion batteries store a substantial amount of electrical energy within a compact enclosure. When a battery cell operates outside its safe voltage, current or temperature limits, internal chemical reactions may accelerate.
Possible causes of a lithium battery incident include:
- Internal short circuit
- External short circuit
- Overcharging
- Excessive discharge
- Manufacturing defects
- Mechanical impact
- Cell puncture or crushing
- High ambient temperature
- Battery cooling-system failure
- Loose electrical connections
- Incorrect charger selection
- Battery Management System malfunction
- Moisture or water ingress
- Transportation damage
- Ageing or defective battery cells
During thermal runaway, a cell may release heat, smoke and flammable decomposition gases. This heat can affect neighbouring cells and initiate a chain reaction known as thermal runaway propagation.
A complete lithium battery safety strategy should therefore include:
- Quality battery cells and modules
- Reliable Battery Management System
- Correct electrical protection
- Adequate ventilation
- Temperature monitoring
- Very early fire detection
- Automatic shutdown and isolation
- Suitable fire suppression
- Cooling and fire containment
- Emergency-response planning
- Post-incident observation
A fire suppression system is an important part of this broader safety strategy, but it does not replace safe battery engineering or preventive maintenance.
Lithium Battery Fire Suppression Export Applications
1. Battery Energy Storage Systems
Battery Energy Storage Systems, commonly known as BESS, are used for renewable-energy integration, grid balancing, backup power and energy management.
LIFEGUARD exports fire protection solutions for:
- Containerised BESS installations
- Indoor battery rooms
- Outdoor battery enclosures
- Utility-scale energy-storage projects
- Solar-plus-storage systems
- Wind-energy storage facilities
- Industrial backup-power systems
- Commercial energy-storage installations
- Microgrids
- Electrical substations
- Grid-support battery facilities
A BESS fire protection package may include:
- Aspirating smoke detection
- Heat detection
- Battery off-gas detection
- Linear heat-sensing cable
- Flame detection
- Automatic fire alarm panel
- Releasing control panel
- Suppression-agent cylinders
- Distribution piping and nozzles
- Battery Management System interface
- Ventilation shutdown
- Emergency exhaust integration
- Manual release and abort controls
- Audible and visual alarms
- Remote monitoring outputs
2. BESS Container Fire Suppression Systems
Containerised BESS units normally contain battery racks, electrical panels, power-conversion equipment, cooling systems and control devices within a compact enclosure.
A complete BESS container suppression package may include:
- Very early smoke detection
- Gas or off-gas monitoring
- Heat and temperature detection
- Linear heat detection
- Automatic releasing controls
- Suppression-agent cylinders
- Distribution piping
- Discharge nozzles
- Pressure-monitoring devices
- Battery shutdown contacts
- Ventilation interlocks
- Remote alarm transmission
- Manual activation controls
- Hooters and flashing strobes
The design should consider:
- Battery-rack layout
- Internal airflow
- Cooling-system operation
- Ventilation openings
- Cable penetrations
- Enclosure leakage
- Internal partitions
- Equipment obstructions
- Maintenance access
- Separation between BESS containers
3. Renewable-Energy Storage Projects
Lithium battery systems are widely used with solar and wind energy projects to store electricity and improve power availability.
LIFEGUARD solutions may be supplied for:
- Solar-plus-storage projects
- Wind-energy storage facilities
- Commercial renewable-energy systems
- Industrial energy-management projects
- Microgrids
- Remote power installations
- Community energy-storage projects
- Utility energy-storage plants
The fire suppression system may be coordinated with:
- Battery Management Systems
- Inverters
- Power-conversion systems
- Energy-management systems
- Site fire alarm systems
- Remote monitoring platforms
4. Electric Vehicle Battery Facilities
Lithium batteries are used throughout electric vehicle production, testing, charging and servicing.
LIFEGUARD exports fire protection solutions for:
- EV battery manufacturing plants
- Battery module assembly lines
- Battery-pack production
- Battery charging stations
- End-of-line testing
- Battery test chambers
- EV research laboratories
- Prototype testing facilities
- Battery repair areas
- Rejected-battery storage
- Damaged-battery quarantine areas
- EV service workshops
Protection can be designed for individual machines, testing enclosures, production lines, battery racks or complete rooms.
5. Electric Vehicle Charging Stations
EV charging locations may contain high electrical loads, charging equipment and multiple battery-powered vehicles.
Fire protection solutions may be developed for:
- Indoor EV charging areas
- Underground parking facilities
- Commercial parking structures
- Residential buildings
- Shopping centres
- Hotels
- Corporate offices
- Electric bus depots
- Fleet charging yards
- Electric truck charging facilities
- Battery-swapping stations
- EV maintenance workshops
The protection concept may include smoke detection, heat detection, flame detection, electrical isolation, local suppression, water-based protection, ventilation control and emergency alarm communication.
6. Data Centres and UPS Battery Rooms
Lithium-ion batteries are increasingly used in data centres for uninterrupted power supply and backup energy.
LIFEGUARD supplies solutions for:
- UPS battery rooms
- Server rooms
- Data halls
- Network operation centres
- Electrical rooms
- Telecom rooms
- Modular data centres
- Edge data centres
- Control rooms
The system may be integrated with:
- Main fire alarm systems
- Building Management Systems
- UPS controls
- Electrical shutdown systems
- Air-conditioning systems
- Access-control systems
- Emergency ventilation
- Remote monitoring systems
Very early detection can provide additional time for investigation before a serious fire develops.
7. Telecom Battery Banks
Telecommunications facilities rely on batteries for backup power and uninterrupted network operation.
Fire suppression systems can be supplied for:
- Telecom battery rooms
- Mobile switching centres
- Remote telecom shelters
- Network equipment rooms
- Battery cabinets
- Communication towers
- Data transmission facilities
- Control rooms
Compact automatic suppression systems may be installed inside battery cabinets, telecom shelters or enclosed equipment zones.
8. Lithium Battery Warehouses
Lithium battery warehouses require a risk-based protection strategy because fire behaviour can depend on battery chemistry, packaging, storage height, rack arrangement and state of charge.
LIFEGUARD supplies systems for:
- New lithium-ion battery storage
- Battery cells and modules
- Finished battery packs
- Electric vehicle batteries
- Consumer-electronics batteries
- Power-tool batteries
- Industrial batteries
- Telecom batteries
- Returned battery products
- Defective batteries
- Damaged-battery quarantine areas
Important design considerations include:
- Battery quantity
- Battery chemistry
- State of charge
- Storage height
- Rack construction
- Aisle spacing
- Packaging material
- Fire compartmentation
- Water availability
- Smoke ventilation
- Emergency access
- Damaged-battery segregation
9. Battery Recycling Facilities
Used, defective or damaged batteries may have an unknown internal condition. They can create fire hazards during collection, storage, sorting, dismantling and recycling.
Fire protection may be required for:
- Battery collection centres
- Battery recycling plants
- Waste battery storage
- Battery dismantling areas
- Material recovery facilities
- Electronic waste processing plants
- Returned-product warehouses
- Damaged-battery quarantine rooms
The fire protection arrangement should be coordinated with the facility’s storage methods, waste-handling procedures and emergency-response plan.
10. Marine, Offshore and Industrial Applications
Lithium battery systems are also used in vessels, ports, offshore facilities, industrial vehicles and automated equipment.
LIFEGUARD systems may be supplied for:
- Marine battery rooms
- Electric and hybrid vessels
- Offshore control systems
- Port equipment
- Automated guided vehicles
- Industrial battery-charging areas
- Robotics facilities
- Electrical enclosures
- Industrial backup-power systems
- Material-handling equipment
System components should be selected according to the environmental conditions, vibration, humidity, corrosion exposure and project approval requirements.
Main Components of a Lithium Battery Fire Suppression System
Very Early Smoke Detection
Aspirating smoke-detection systems continuously sample air through a network of pipes.
They may be suitable for:
- BESS containers
- Battery rooms
- Data centres
- UPS rooms
- Telecom facilities
- High-value industrial areas
Early smoke detection can provide additional response time before a battery incident develops into a major fire.
Battery Off-Gas Detection
Battery cells may release gases during abnormal heating before visible flames appear.
Off-gas detection may support:
- Early warning
- Battery shutdown
- Ventilation control
- Rack isolation
- Remote alarm transmission
- Maintenance intervention
Sensor selection should be based on the battery chemistry, expected gas characteristics, ventilation and equipment manufacturer’s information.
Heat and Temperature Detection
Heat-detection options may include:
- Fixed-temperature detectors
- Rate-of-rise heat detectors
- Linear heat-sensing cable
- Battery temperature sensors
- Thermal-camera integration
Linear heat-sensing cable may be installed near battery racks, modules, cable routes and other identified risk areas.
Flame Detection
Flame detectors may be used where rapid flame recognition is required.
Depending on the application, the system may include:
- Ultraviolet flame detectors
- Infrared flame detectors
- Combined UV/IR detectors
- Multi-spectrum infrared detectors
The detector should be selected after considering the expected fire signature, viewing angle and possible false-alarm sources.
Fire Alarm and Releasing Control Panel
The fire alarm or releasing panel receives signals from detection devices and initiates the programmed emergency sequence.
The panel may be configured to:
- Generate an early warning
- Display the affected zone
- Activate sounders and strobes
- Transmit an alarm to a control room
- Stop battery charging
- Isolate the affected battery rack
- Shut down selected electrical equipment
- Stop air-conditioning
- Close fire dampers
- Control ventilation fans
- Activate emergency exhaust
- Release the suppression medium
- Communicate with the Battery Management System
- Send signals to the Building Management System
- Provide remote alarm contacts
Where required, cross-zone detection logic can be used before automatic suppression discharge.
Automatic Fire Suppression System
The appropriate suppression medium must be selected according to the battery hazard and application.
Potential solutions may include:
- Water-mist systems
- Water-based cooling systems
- Local-application suppression
- Specialised liquid suppression agents
- Hydrated mineral or mica-based suppression media
- Clean-agent systems for associated electrical equipment
- Inert-gas systems for suitable enclosed hazards
- Condensed aerosol systems where technically appropriate
- Hybrid fire protection arrangements
The final selection should consider:
- Battery chemistry
- Cooling requirement
- Cell and module construction
- Protected volume
- Battery-rack arrangement
- Electrical conductivity
- Occupancy
- Ventilation
- Ambient conditions
- Discharge duration
- Fire propagation risk
- Re-ignition risk
- Available test data
- Project specifications
- Authority and insurer requirements
Clean-agent or oxygen-reduction systems may control flames in suitable enclosed applications, but the need for cooling and post-discharge monitoring should also be evaluated.
Suppression Cylinders and Storage Tanks
Depending on the selected technology, the suppression medium may be stored in:
- Pressurised cylinders
- Modular suppression units
- Cabinet-mounted containers
- Skid-mounted cylinder banks
- Water-storage tanks
- Pump-operated systems
The required capacity is determined according to the protected hazard, application density, agent quantity, pipe network and discharge duration.
Distribution Piping and Nozzles
The pipe network carries the extinguishing medium from the storage container to the protected area.
The design may consider:
- Pipe material
- Internal pipe diameter
- Total pipe length
- Bends and fittings
- Pressure losses
- Nozzle flow rate
- Nozzle coverage
- Battery-rack dimensions
- Internal obstructions
- Number of suppression zones
- Minimum operating pressure
- Required discharge time
- Maintenance access
Nozzles should be positioned so that racks, cable trays, electrical panels and structural members do not obstruct the discharge pattern.
Manual Release and Abort Controls
The system may include:
- Manual release switch
- Abort switch
- Emergency stop button
- Electrical isolation control
- System-disable switch
- Alarm acknowledgement control
- Local status indicators
Manual controls should be clearly labelled and positioned at accessible locations according to the approved design.
Audible and Visual Warning Devices
Warning devices may include:
- Electronic hooters
- Sounders
- Sirens
- Flashing strobes
- Hooter-cum-flasher units
- Pre-discharge warning signs
- System-discharge indicators
These devices warn personnel before and during suppression-system operation.
How a Lithium Battery Fire Suppression System Works
A typical system may operate through the following sequence.
Stage 1: Abnormal Condition Detected
A smoke, heat, gas, flame or temperature detector identifies an abnormal condition within the battery area.
Stage 2: Early Warning Generated
The control panel generates a warning and transmits the signal to responsible personnel or a remote monitoring system.
Stage 3: Fire Condition Confirmed
A second detector, cross-zone signal or programmed verification logic confirms the emergency.
Stage 4: Emergency Interlocks Activated
The system may:
- Stop battery charging
- Isolate the affected rack
- Shut down selected electrical equipment
- Stop air-conditioning
- Close fire dampers
- Control ventilation
- Activate emergency exhaust
- Send signals to the Battery Management System
Stage 5: Pre-Discharge Warning
Audible and visual alarms warn personnel before automatic discharge, where required.
Stage 6: Suppression Medium Released
The selected extinguishing medium is released through the engineered piping and nozzle network.
Stage 7: Fire Control and Cooling
The suppression system works to control visible flames, reduce heat and limit fire propagation.
Stage 8: Continued Monitoring
The affected batteries remain isolated and monitored because damaged cells may retain heat and potentially re-ignite.
The final operating sequence is developed through the approved cause-and-effect matrix.
Export Engineering and Project Support
LIFEGUARD follows a project-specific approach for international lithium battery fire suppression requirements.
Technical Evaluation
Our engineering team may review:
- Battery chemistry
- Battery manufacturer
- Cell and module construction
- Total battery capacity
- Number of battery racks
- State of charge
- Charging and discharging process
- Room or container dimensions
- Battery layout
- Ventilation arrangement
- Ambient temperature
- Environmental exposure
- Existing fire alarm system
- Existing suppression arrangement
- Available water supply
- Electrical shutdown requirements
- Consultant specifications
- Tender documents
- Project approval requirements
System Selection
The most suitable detection, alarm and suppression technology is selected according to the actual hazard and operating environment.
Engineering Calculations
Depending on the selected system, engineering may include:
- Protected-volume calculation
- Suppression-agent quantity
- Hydraulic flow calculation
- Pipe sizing
- Pressure-loss calculation
- Nozzle selection
- Nozzle coverage assessment
- Cylinder or tank sizing
- Discharge-time calculation
- Alarm and interlock logic
Technical Documentation
Project documentation may include:
- General arrangement drawings
- Fire detection layouts
- Suppression-system layouts
- Piping drawings
- Nozzle-location drawings
- Cylinder-bank arrangements
- Equipment data sheets
- Bill of quantities
- Cause-and-effect matrix
- Control-panel logic
- Installation instructions
- Testing procedures
- Operation and maintenance manuals
Export Packaging and International Supply Support
For overseas projects, equipment can be prepared according to the agreed export and shipping requirements.
The export supply scope may include:
- Project-specific equipment identification
- Technical data sheets
- Packing lists
- Commercial documentation
- Product labels and markings
- Protective export packing
- Equipment inspection
- Installation instructions
- Operation and maintenance documents
- Coordination with freight or logistics partners
- Technical clarification support
The exact export documentation depends on the destination country, equipment type, commercial terms and applicable import requirements.
Customers should confirm local customs, certification, registration and installation requirements before finalising the order.
Countries and Regions We Serve
LIFEGUARD supports lithium battery fire suppression system export enquiries from:
Middle East
- United Arab Emirates
- Saudi Arabia
- Oman
- Qatar
- Kuwait
- Bahrain
- Jordan
Europe
- Germany
- France
- Italy
- Spain
- Netherlands
- Belgium
- Poland
- United Kingdom
- Other European markets
Asia
- Bangladesh
- Nepal
- Sri Lanka
- Bhutan
- Maldives
- Singapore
- Malaysia
- Indonesia
- Thailand
- Vietnam
Africa
- Kenya
- Tanzania
- Uganda
- Ghana
- Nigeria
- South Africa
- Ethiopia
- Other African markets
Customers from additional countries may contact our team with their technical specifications and import requirements.
International Compliance Considerations
Fire protection requirements differ according to the destination country, project type, facility classification and approving authority.
The applicable requirements may depend on:
- Battery application
- Battery capacity
- Indoor or outdoor installation
- Fire detection technology
- Suppression-agent type
- Electrical safety requirements
- Local fire authority requirements
- Consultant specifications
- Insurer recommendations
- Equipment certification
- Import and conformity requirements
- Installation and commissioning procedures
Projects may refer to applicable national or international standards for battery safety, fire detection, suppression equipment and electrical systems.
LIFEGUARD can prepare technical proposals and compliance statements based on the specifications supplied by the customer. Final system approval remains subject to the client, consultant, local authority, insurer and other approving organisations.
Why Choose LIFEGUARD as Your Export Partner?
Established Indian Fire Safety Manufacturer
United Fire Equipments Pvt. Ltd. manufactures fire safety equipment and engineered fire protection systems under the LIFEGUARD brand.
Application-Specific Engineering
We review the battery hazard, enclosure and operating conditions before recommending a fire suppression solution.
Integrated Protection Approach
Our systems can combine:
- Very early smoke detection
- Battery off-gas monitoring
- Heat detection
- Linear heat sensing
- Fire alarm controls
- Automatic suppression
- Electrical isolation
- Battery shutdown
- Ventilation control
- BMS integration
- Remote monitoring
Customised Export Solutions
Systems can be developed for different battery capacities, room sizes, containers, environmental conditions and project specifications.
Tender and EPC Support
We can assist with:
- Budgetary quotations
- Technical proposals
- Compliance statements
- Equipment data sheets
- Bills of quantities
- System drawings
- Consultant submissions
- Tender documentation
- Project coordination
International Supply Capability
LIFEGUARD supports customers and project partners through export packing, technical documentation and equipment supply coordination.
Technical and After-Sales Assistance
Subject to the agreed commercial scope, assistance may be provided for installation guidance, testing, commissioning, operation and maintenance planning.
Industries We Serve
LIFEGUARD lithium battery fire suppression systems are suitable for:
- Battery Energy Storage Systems
- Solar-energy projects
- Wind-energy facilities
- Electric vehicle charging stations
- Battery manufacturing plants
- Automotive facilities
- Data centres
- Telecom installations
- Battery warehouses
- Logistics centres
- Battery recycling plants
- Electrical substations
- Oil and gas facilities
- Petrochemical plants
- Marine and port applications
- Industrial manufacturing
- Commercial buildings
- Research laboratories
- Critical infrastructure
Benefits of Importing LIFEGUARD Lithium Battery Fire Suppression Systems
A properly engineered system can help:
- Detect abnormal battery conditions early
- Reduce emergency-response time
- Generate automatic alarms
- Stop battery charging
- Isolate affected equipment
- Control visible flames
- Reduce heat exposure
- Limit fire propagation
- Protect critical infrastructure
- Reduce equipment damage
- Support personnel evacuation
- Minimise operational interruption
- Improve emergency preparedness
- Provide remote alarm communication
- Support project risk-management objectives
The fire suppression system should be integrated with safe battery design, correct electrical protection, adequate ventilation, preventive maintenance and a reliable Battery Management System.
Information Required for an Export Proposal
To prepare a lithium battery fire suppression system export proposal, please share:
- Project name
- Destination country
- Delivery location
- Battery application
- Battery chemistry
- Battery manufacturer
- Total battery capacity
- Number of cells, modules and racks
- Battery state of charge
- Room or container dimensions
- Battery layout drawing
- Rack dimensions
- Ventilation details
- Maximum and minimum ambient temperature
- Existing fire alarm system
- Existing suppression arrangement
- Available water supply
- Required standards
- Consultant specifications
- Tender documents
- Site photographs
- Required delivery schedule
- Preferred shipping terms
Our technical team will review the available information and recommend an appropriate detection and suppression concept.
Frequently Asked Questions
Who is a lithium battery fire suppression system exporter in India?
United Fire Equipments Pvt. Ltd., under the LIFEGUARD brand, exports customised lithium battery fire detection and suppression systems for BESS projects, battery rooms, EV facilities, data centres, warehouses and industrial applications.
Does LIFEGUARD export lithium battery suppression systems?
Yes. LIFEGUARD supports international projects through technical evaluation, project documentation, export packing and equipment supply coordination.
Which countries can LIFEGUARD supply?
LIFEGUARD can review enquiries from the Middle East, Europe, Asia, Africa and other international markets, subject to destination-country import and certification requirements.
Which fire suppression system is best for lithium batteries?
The appropriate system depends on battery chemistry, battery capacity, enclosure, ventilation, state of charge and project approval requirements. No single suppression medium is suitable for every battery application.
Can the system protect a complete BESS container?
Yes. A complete detection and suppression system can be designed after reviewing the BESS container dimensions, battery layout, ventilation and required shutdown sequence.
Can LIFEGUARD protect individual battery cabinets?
Yes. Compact automatic suppression systems can be designed for battery cabinets, UPS cabinets, telecom cabinets and electrical enclosures.
Can the system connect with a Battery Management System?
Yes. Subject to compatible interfaces, the fire alarm or releasing panel can transmit signals for charging interruption, rack isolation, battery shutdown and emergency alarm communication.
Can the system detect battery failure before visible flames appear?
A combination of aspirating smoke detection, off-gas detection and temperature monitoring may provide early warning. Performance depends on the sensor technology, installation location, airflow and battery arrangement.
Is re-ignition possible after a lithium battery fire?
Yes. Damaged cells may retain heat and can potentially re-ignite. The affected equipment should remain isolated and monitored after visible flames have been controlled.
Does LIFEGUARD provide technical drawings?
Depending on the agreed project scope, LIFEGUARD can provide system layouts, piping drawings, nozzle arrangements, equipment data sheets, bills of quantities and cause-and-effect logic.
Can the equipment be customised for international projects?
Yes. System capacity, cylinder arrangement, piping, detection, controls and project documentation can be configured according to the customer’s specifications and destination requirements.
Does LIFEGUARD arrange export packing?
Export packing and shipping documentation can be included according to the agreed commercial scope and destination-country requirements.
Contact a Lithium Battery Fire Suppression System Exporter in India
Contact LIFEGUARD for:
- Lithium battery fire suppression systems
- BESS fire protection systems
- Battery-room suppression systems
- Battery-cabinet fire protection
- EV battery fire suppression
- Aspirating smoke detection
- Battery off-gas detection
- Linear heat-sensing systems
- Automatic releasing control panels
- Battery shutdown and BMS integration
- Export quotations
- Technical proposals
- System drawings
- Tender support
- Bills of quantities
Contact Details
United Fire Equipments Pvt. Ltd.
Manufacturer of ISI Certified Fire Safety Equipment
📞 8048034226
📧 ufe126@gmail.com | info@lifeguardindia.in