Explore our industrial-grade OEM/ODM lithium iron phosphate battery packs specifically optimized for uninterruptible power systems and backup infrastructure.
As global digitalization accelerates, data integrity and continuous power have become the backbone of modern enterprise operations. Traditional VRLA (Valve-Regulated Lead-Acid) solutions are rapidly being replaced by advanced Lithium Iron Phosphate (LiFePO4) systems.
This transformation is driven by the clear technical advantages of lithium chemistry: higher energy density, minimized footprint, faster recharging capabilities, and vastly superior thermal endurance. In commercial data centers, edge computing centers, high-tech factories, and hospital systems, a fraction of a second of power fluctuation can result in catastrophic financial losses and system failure.
Hangzhou LIAO Technology Co., Ltd. provides robust, resilient, and safe LiFePO4 backup battery systems to shield operations from grid instabilities. By optimizing thermal pathways and integration processes, our solutions offer a lower Total Cost of Ownership (TCO) and up to three times the service life of traditional configurations.
A Professional Manufacturer Driving LiFePO4 Integration Globally Since 2009.
Founded in 2009, Hangzhou LIAO Technology Co., Ltd. has established itself as an engineering-driven leader in the development and manufacturing of custom LiFePO4 battery packs. With a commitment to manufacturing efficiency, safety, and performance, our products have successfully penetrated major international markets, earning trust across 20+ countries, including Germany, France, the Netherlands, Spain, the United Kingdom, the USA, Canada, Mexico, Brazil, Australia, the Philippines, Thailand, Singapore, Korea, Japan, India, and South Africa.
We pride ourselves on our highly structured operational ecosystem. All systems operate under the strict governance of the ISO 9001 Quality Management Standard, coupled with the environmental protection protocols of ISO 14001 and occupational wellness standards of ISO 18001 (now aligned with ISO 45001).



Our multidisciplinary team consists of dedicated electrochemical, mechanical, electrical, and firmware engineers capable of transforming complex load and physical requirements into production-ready energy systems.
Whether you require standard 19-inch rack-mounted designs for telecom infrastructures, ultra-high-voltage storage clusters up to 512V, or custom small-form-factor designs, we possess the tooling and expertise to optimize the build configuration.
Why industrial procurement specialists and system designers prioritize LIAO LiFePO4 cells for high-reliability systems.
Under mechanical indentation or severe needle puncture tests, our cells exhibit remarkable structural stability, avoiding thermal runaway, combustion, or structural explosions. This reliability is vital for dense datacenter setups.
Engineered to operate reliably in harsh microclimates, our batteries support high-power discharge rates from extreme cold temperatures of -40°C up to high-heat thresholds of 85°C without compromising safety.
Our LAXpower-1230 system was awarded testing champion honors in independent European evaluations, showcasing our cell performance, internal resistance minimization, and state-of-charge tracking precision.
Expanding beyond basic backup power, our customized LiFePO4 packs serve diverse industrial, transportation, and marine requirements.
New generation high-discharge LiFePO4 configurations, ensuring sustained torque and efficient hill climbing across diverse terrains.
Providing silent operation, low self-discharge rates, and high surge currents for precise low-speed vehicle positioning.
Engineered for heavy-duty automated guided vehicles (AGVs) and forklifts, optimizing uptime through fast-charging compatibility.
Corrosion-resistant IP67-enclosed power modules designed for clean marine propulsion, featuring smart CANBUS telemetry integrations.
Direct supply of premium Lithium Iron Phosphate cells, featuring high energy density and optimal thermal design.
Fully customized voltage configuration, sizing, and advanced intelligent BMS integration.
Scalable modular solutions for commercial peak shaving and emergency grid support.
A look inside our state-of-the-art production facility, illustrating the precision control of each cell's journey.
By utilizing local lithium-processing corridors, LIAO secures raw material access, ensuring competitive pricing and shielding customers from supply chain shocks. Our automated manufacturing line features clean rooms and real-time process monitoring to guarantee cell consistency.
A rigorous regulatory and safety framework is essential for industrial battery components. We test all batches to comply with international standards.
Our products are shipped with complete trace documentation: UN38.3 transit declarations, MSDS safety data sheets, and CE safety compliance certifications.
Crucial industrial data and answers regarding chemistry selections, charging metrics, and cycle parameters.
Lithium Iron Phosphate (LiFePO4) offers superior thermal and chemical stability compared to Nickel Cobalt Manganese (NCM) cells. Its robust molecular structure prevents thermal runaway even under mechanical damage, such as puncture or crush events. Additionally, LiFePO4 delivers a significantly longer service life (typically 2800+ full cycles compared to 500-800 cycles for standard NCM), which reduces the total cost of ownership over long-term infrastructure lifespans.
Yes, our 12V and 24V replacement lines are designed with drop-in compatibility in mind. However, because lithium batteries have different charging profiles (requiring CC/CV charging algorithms), we recommend verifying that your UPS charging unit supports lithium-compatible setpoints. Our engineering team can analyze your system configuration to help ensure seamless integration.
Each battery pack contains a custom intelligent BMS that provides comprehensive safeguards, including over-voltage, under-voltage, over-current (charge/discharge), short-circuit, and thermal protections. It also features automatic cell-balancing algorithms to ensure all internal cells discharge and charge evenly, maximizing the pack's usable capacity and lifespan.
The LAXpower-1230 was awarded champion tester status in European trials due to its excellent power conversion efficiency, minimal heat generation under high discharge rates, and stable cell capacity retention. This validation confirms our commitment to producing safe, high-performance battery packs for overseas markets.
Standard design configurations are typically completed within 3 to 4 weeks. For fully customized battery systems (involving bespoke enclosure molding, tailored communication protocols, or custom high-voltage structures like 512V setups), lead times range from 6 to 8 weeks. This timeframe covers initial 3D modeling, electrical schematic validation, prototyping, and compliance testing.
All LIAO battery packs comply with international transport guidelines, including UN38.3, MSDS, and CE directives. Our cells are manufactured in facilities certified under ISO 9001:2015, ISO 14001:2015, and ISO 18001/45001. We provide full testing reports with every shipment to ensure a smooth customs clearance process and safe logistics handling.






Explore our range of high-capacity and deep-cycle battery packs designed for heavy-duty industrial vehicles, marine crafts, and large-scale backup infrastructures.