Discover our initial selection of high-performance lithium iron phosphate solutions built for industrial longevity and off-grid dependability.
In the rapidly expanding ecosystem of electrochemical energy storage, Lithium Iron Phosphate (LiFePO4) chemistry has emerged as the definitive benchmark for applications requiring absolute safety, thermal run-away prevention, and superior lifecycles. Unlike conventional Nickel Manganese Cobalt (NMC) options, LFP exhibits an exceptionally stable crystalline olivine-type structure. This robust chemical configuration minimizes the risk of oxygen release at elevated temperatures—virtually eliminating the hazards of thermal runaway.
Hangzhou LIAO Technology Co., Ltd., founded in 2009, operates at the very forefront of this shift. Over fifteen years of rigorous field operations across more than 20 countries have allowed us to optimize cellular energy density, cycle resilience, and custom Battery Management System (BMS) integration. By maintaining ISO 9001, ISO 14001, and ISO 18001 standards, our processes ensure structural reliability, environmental accountability, and top-tier worker protection.
Whether power is destined for municipal streetlights, industrial materials handling fleets, off-grid telecom towers, or advanced marine propulsion units, our customized LiFePO4 designs guarantee robust C-rate stability and unparalleled safety margins.
"LIAO's signature LAXpower-1230 pack has been awarded testing champion in European independent safety and discharge rate evaluations, reinforcing our leadership in structural LFP integrity."
LIAO LiFePO4 cells are systematically engineered to pass structural stress testing without compromise. Our proprietary cell architecture prevents thermal runaways or combustion under severe physical trauma, such as direct acupuncture, crushing, or high-vibration exposure.
By integrating specialized electrolyte formulations and advanced anode configuration engineering, our battery packs can operate safely and maintain high energy output in environments ranging from sub-zero polar zones (-40°C) up to intense heat zones (+85°C).
Every modular battery pack features our proprietary digital BMS system. It coordinates real-time telemetry, active cell-balancing, state-of-charge calculation, short-circuit containment, and over-current protection protocols, keeping the entire system within safe parameters.
How LIAO's engineering customizes power solutions to optimize real-world operations in distinct commercial environments.
LIAO has designed customized electrochemical systems for more than 15 years, helping over 500 industrial clients transition from initial prototypes to commercial production. Our expert design team includes electrical, mechanical, and thermal engineers who optimize custom power architectures from the ground up.
We design custom battery dimensions, cooling channels, and busbars using advanced thermal modeling. This ensures maximum safety, high cell density, and excellent heat dissipation for any application.
Our BMS controllers interface smoothly with diverse machinery. They support CANbus, RS485, RS232, and SMBus configurations, enabling deep integration with industrial and vehicle systems.
We help you speed up time-to-market. Our teams assemble functional prototypes quickly and support them with comprehensive compliance documents, including UN38.3, CE, and IEC approvals.



LIAO's vision for next-generation LFP chemistry, structural integration, and recycling initiatives.
By refining active materials at the cathode and incorporating carbon-nanotube conductive additives, we are pushing volumetric energy densities to new heights. These advances deliver greater capacity in compact designs, matching standard dimensions for simple system upgrades.
Target: 180 Wh/kg Cell DensityWe are testing advanced composite silicon-carbon anodes. This technology improves fast-charge acceptance and enhances low-temperature performance, allowing systems to reach an 80% charge in under 30 minutes in cold environments.
R&D Phase: Safety & Lifetime ValidationWe design our products with end-of-life recycling in mind. Our structured battery packs use mechanical fasteners instead of potting compounds, allowing simple disassembly to recover cells for secondary energy storage applications.
Goal: 95% Secondary Cell ReclamationLocated in Hangzhou, LIAO utilizes the region's strong industrial network to guarantee steady material sourcing, strict quality control, and rapid international shipping.
Our close partnerships with major raw material producers protect us from market price spikes. This stable supply chain guarantees consistent manufacturing, ensuring predictable pricing and lead times for our clients.
We operate state-of-the-art laser welding and automated sorting lines. By minimizing manual assembly errors, we maintain uniform internal resistance and identical performance profiles across all cells in a pack.
Hangzhou's close proximity to Ningbo and Shanghai ports makes international shipping fast and cost-effective. We handle dangerous goods compliance smoothly, ensuring hassle-free Customs clearance and delivery.
LIAO operates at the highest levels of global compliance. We support our international partners with verified certificates and test reports.



Verified ISO 9001, ISO 14001, and ISO 18001 compliance standards.






Proprietary research spanning cell geometry and BMS balancing algorithms.




Recognized by engineering groups and regional technology divisions.














Over 15 Years of Commercial Delivery & Customer Approvals






Get detailed answers on LFP chemistry, customization options, safety standards, and global shipping setups.
LiFePO4 (Lithium Iron Phosphate) uses a highly stable chemical structure with strong covalent bonds. Unlike NMC chemistry, it is extremely resistant to oxygen release at high temperatures, which helps prevent thermal runaway. This allows LIAO LFP batteries to pass strict safety tests, such as direct acupuncture and mechanical crushing, without catching fire or exploding.
Charging standard LFP batteries below 0°C can cause lithium plating on the anode, which reduces cell lifespan. To prevent this, LIAO integrates smart thermal management systems. These systems use internal heating pads that pre-heat the cells using power from the charger before starting the charging cycle. This design allows our industrial batteries to operate safely in temperatures down to -40°C.
Our custom BMS controllers are compatible with standard industrial and marine networks. We support CANbus (such as CANopen and J1939 protocols), RS485, RS232, and SMBus connections. This makes it easy to integrate our battery packs with vehicle controllers, solar inverters, and industrial machinery.
All LIAO battery packs are certified for global transit under UN38.3 standards. We provide complete dangerous goods documentation, including Material Safety Data Sheets (MSDS), test summaries, and drop-test certificates, ensuring smooth air and sea freight logistics worldwide.
Our quality control system operates under ISO 9001 standards. We use automated grading equipment to sort cells by capacity, voltage, and internal resistance. Only identical Grade-A cells are assembled into a pack together, ensuring balanced discharge performance and long cycle life for the entire battery system.
Explore our custom battery packs, backup power stations, and converters designed for industrial vehicles, telecommunications, and solar installations.