Explore our leading selection of engineered Lithium Iron Phosphate solutions, optimized for marine propulsion, clean solar microgrids, utility fleet conversions, and portable outdoor power deployment.
In the modern industrial grid and utility landscape, energy storage transition has transcended basic cell efficiency. High-reliability sectors require advanced lithium-ion and lithium iron phosphate (LiFePO4) chemistries that maintain safety integrity under severe mechanical distress, sustain extreme temperatures, and supply flat discharge profiles.
Of Advanced R&D and Custom Battery Assembly
Cycles at 100% DOD (Depth of Discharge)
Operational Discharge Temperature Range
Global Export Footprint & Compliance Networks
As governments execute strict carbon-neutral frameworks, global commercial applications are rapidly converting lead-acid systems into advanced Lithium Iron Phosphate (LiFePO4) battery packs. Unlike standard Cobalt-based chemistries, LiFePO4 offers unparalleled structural and thermal stability. Olivine crystalline structures inside LiFePO4 resist oxygen release under high temperatures, completely eliminating the hazard of thermal runaway.
Furthermore, B2B procurement sectors, such as telecommunication networks, off-grid commercial solar arrays, and high-frequency warehouse machinery, are looking for manufacturers who can provide extensive certifications (including CE, ISO 9001, and UN38.3) paired with customized mechanical configurations.
Founded in 2009, Hangzhou LIAO Technology Co., Ltd. has established itself as an authoritative leader in the engineering, design, and manufacturing of custom LiFePO4 battery architectures. We have cultivated an extensive scientific engineering culture that allows us to manufacture bespoke battery cells and packs exported to more than 20 countries globally, including key hubs in Europe, the Americas, Asia-Pacific, and Africa.
Our operational framework is strictly anchored within three primary global quality management architectures:
From incoming cell materials sorting to automatic pack laser welding, every stage undergoes automated checking protocols to guarantee batch uniformity.
Our signature LAXpower-1230 series has been awarded the testing champion in independent European labs, demonstrating industry-leading cycle efficiency and power stability.
Hangzhou LIAO Technology operates logistics and compliance networks across critical industrial jurisdictions. Our products meet or exceed local importing standards across the globe.
Providing UL, CE, and RoHS compliant lithium chemistry for high-demand grids and recreational vehicular systems in Germany, France, Netherlands, Spain, United Kingdom, USA, Canada, Mexico, and Brazil.
Deploying hot-climate resilience configurations for solar hybrid platforms and utility infrastructure across Australia, South Korea, Japan, India, Philippines, Thailand, Singapore, South Africa, and Nigeria.
Hangzhou LIAO Technology leverages China's unmatched logistics and components supply chain in Zhejiang province. Our facility utilizes top-tier raw materials, high-speed laser welding, automated sorting machinery, and multi-stage baking chambers to maintain high precision across all production lines.
Hangzhou LIAO Technology relies on empirical verification. Below is our formal portfolio of active patents, third-party testing documentation, and quality management systems.
























No single configuration fits all applications. Hangzhou LIAO Technology engineers custom designs to meet specific mechanical, electrical, and environmental demands.
Our new generation of high-density LiFePO4 golf cart batteries helps your carts run smoothly across varying slopes, wet turf, and rough golf courses. Built to sustain steep instantaneous discharge currents.
Our award-winning LiFePO4 batteries allow caravan movers to operate quietly without exhaust pollution. They reduce labor costs while increasing torque capability and overall operating runtime.
Designed for short-distance transport, heavy material lifting, and AGV applications. LIAO LiFePO4 packs allow electric pallet jacks and warehouse forklifts to lift heavy loads under steady voltage output, maximizing throughput.
Electric boats and ships require clean, quiet operation. Our marine-grade LiFePO4 structures are housed in dustproof, moisture-resistant enclosures with specialized BMS parameters to protect cells from marine environments.
Finding a reliable custom manufacturer is critical for industrial product launches. LIAO provides a complete engineering pipeline, combining electrical engineering, mechanical layout design, and smart BMS programming under one roof.
Over the past 15 years, we have helped more than 500 customers conceptualize, prototype, test, and manufacture custom lithium iron phosphate configurations. Our design services help partners reduce time-to-market and lower development costs.
We supply batteries to global logistics fleets, municipal transport projects, and grid storage providers. Below are some of our verified B2B partners and client logos:






Review technical clarifications on safety standards, cell matching protocols, lifecycle projections, and custom OEM processes.
LiFePO4 chemistry has high structural stability because of the strong covalent bonds between phosphorus and oxygen atoms in its crystalline matrix. This chemical structure prevents oxygen release under high temperatures, which is the primary driver of thermal runaway in cobalt-based (NMC/LCO) batteries. Additionally, LIAO integrates high-end Battery Management Systems (BMS) that actively monitor voltage, temperature, and current trends to isolate cells in case of an electrical anomaly.
We use automated testing systems to sort cells by capacity, internal resistance, and voltage curve profiles. Only cells within strict matching tolerances are built into the same battery pack. This helps ensure that the pack discharges and charges evenly, preventing weak cells from limiting overall pack performance and maximizing the system's operational lifespan.
Standard design verification and electronic drafting generally take 1 to 2 weeks. Once the technical parameters are approved, sample production and housing customization take roughly 3 to 4 weeks. This timeline includes rigorous safety tests, thermal stress simulations, and cycle profile validation before shipment.
Yes. While typical lithium batteries see reduced performance in cold temperatures, LIAO's low-temperature variants are rated to discharge in environments down to -40°C. For charging in freezing temperatures, we can integrate internal heating elements that warm the cells to safe charging thresholds using grid or solar power.
Select from our modular industrial storage platforms, prismatic cells, and high-capacity battery units designed for telecommunication racks, backup power grids, and electric scooter fleets.
Prismatic configurations offer high spatial packaging efficiency and structural integrity compared to cylindrical formats. They provide robust energy storage options for heavy industrial applications.
LIAO prismatic cells use high-grade lithium iron phosphate chemistry combined with high-conductivity separators. We offer solutions for standard and custom battery packs, designed for long-term cycling stability.
Our research and development team is focused on improving safety and thermal performance, helping partners meet their energy storage needs across various industrial and commercial sectors.