Explore our core range of CE Certified lithium iron phosphate (LiFePO4) battery packs, engineered for optimal safety, rapid discharge capacity, and long cycle life.
Why modern industrial systems are migrating away from Lead-Acid chemistry to integrated CE certified LiFePO4 battery packs.
When designing power solutions for commercial and consumer applications, battery chemistry selection determines safe performance envelopes, operational lifespans, and regulatory compatibility. Lithium Iron Phosphate (LiFePO4) stands out for exceptional thermal stability and structural safety. Unlike Nickel Manganese Cobalt (NMC) cells, LiFePO4 chemistry has a high thermal runaway threshold (around 270°C), making it virtually immune to fire or explosive failure under heavy abuse, micro-punctures, or electrical overloading.
Operating at a nominal 24V (usually configured as 8S / 8 cells in series), these battery packs deliver stable power throughout their entire discharge cycle. This is critical for industrial vehicles, electric wheelchairs, and precision equipment that experience voltage drops with traditional Lead-Acid setups.
Every 24V lithium battery pack manufactured by Hangzhou LIAO Technology is equipped with a custom Smart Battery Management System (BMS). The BMS acts as the brain, regulating cell balance, preventing over-charge/over-discharge, checking internal cell temperatures, and communicating status via CANbus, RS485, or Bluetooth protocols.
Founded in 2009, we have established a strict and efficient QC system to deliver premium battery packs globally.
Hangzhou LIAO Technology Co., Ltd. is a specialized manufacturer of LiFePO4 batteries. All operations conform strictly to the ISO 9001 Quality Management System. We comply with the ISO 14001 Environmental Management System and the ISO 45001 (formerly OHSAS 18001) Occupational Health and Safety System.
Our core product lines include customized prismatic cells, standard 12V/24V/48V battery packs, and high-capacity industrial energy storage arrays. Through specialized cells selection and structural configurations, we design batteries that operate reliably in extreme environments, from -40℃ up to 85℃.
Our products are trusted by engineering clients across Europe (Germany, France, Netherlands, Spain, United Kingdom), the Americas (USA, Canada, Mexico, Brazil), Asia-Pacific (Australia, Philippines, Thailand, Singapore, Korea, Japan, India), and Africa.
How we ensure safety, lifecycle longevity, and efficiency in every batch of custom lithium battery packs.
Engineered using stable LiFePO4 crystal lattices. Cells do not experience combustion or rupture under severe physical nail penetration tests.
Operates across wide thermal ranges from -40°C to 85°C, ensuring reliable performance in harsh environments.
Delivers more than 2,800 full cycles at 1C charge/discharge rate and 100% Depth of Discharge (DoD) before capacity drops to 80%.
Our LAXpower-1230 battery systems were awarded testing champion status in representative European product performance challenges.
Custom-built battery configurations optimized for specialized commercial and industrial operating profiles.
Leveraging Chinese manufacturing capabilities, high-grade cell sourcing, and global B2B logistics networks.
China is home to the world's most comprehensive lithium-ion supply chain. This proximity to major refining operations for battery-grade lithium carbonate, iron phosphate, and high-performance copper foils ensures stable raw material pricing and access to quality components.
Hangzhou LIAO Technology maintains strategic partnerships with tier-one cell manufacturers (such as EVE 280Ah LiFePO4 cells). This direct access allows us to secure premium A-grade cells at competitive prices, passing these performance and cost advantages on to our global partners.
By working with us, B2B procurement managers benefit from local component sourcing, automated pack assembly, and custom engineering support to streamline operations.
A tour of our advanced assembly lines, test laboratories, and ISO-compliant quality assurance processes.
Understanding LVD, EMC, UN38.3, and RoHS compliance requirements for importing industrial battery packs into Europe.
For European B2B buyers, importing lithium battery packs requires compliance with several safety directives. The CE Certification Mark is mandatory, indicating that the product complies with EU health, safety, and environmental protection standards.
For a 24V lithium battery pack, CE compliance involves:
























Answering technical queries from design engineers and procurement teams regarding custom manufacturing, safety, and integration.
We primarily use Lithium Iron Phosphate (LiFePO4) chemistry for our 24V systems, typically configured as an 8S (8 cells in series) array. Depending on the size requirements, we utilize prismatic cells (such as EVE 280Ah) or cylindrical cells (like 32700 / 26650). This formulation offers safety and longevity, delivering over 2800 full charge-discharge cycles at 1C/100% DoD.
Yes. All our battery packs exported to Europe have official CE certificates, verifying compliance with the Low Voltage Directive (LVD) 2014/35/EU and the EMC Directive 2014/30/EU. We also supply UN38.3 test reports and MSDS documents, which are required for international shipping and customs clearance.
We manage safety in two ways: first, by using LiFePO4 cells, which are less prone to thermal runaway than NMC cells. Second, by integrating custom-engineered smart BMS hardware. The BMS continuously monitors parameters such as single-cell voltage, internal temperatures, and current flow, automatically isolating the battery array if values fall outside safe operating ranges.
Yes. Our R&D team can design custom solutions to match your spatial and physical constraints. We support custom sheet-metal enclosures, specialized connectors (e.g., Amphenol, Anderson, Phoenix), and common B2B industrial communication protocols such as Modbus, CANbus, RS485, and RS232.
Minimum Order Quantities (MOQs) depend on cell selection and complexity, with standard packs starting at 10-50 units. Lead times for initial engineering samples are typically 3-4 weeks. Mass production runs usually take 4-6 weeks, depending on materials availability and order size.
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