Engineered with heavy-duty prismatic cells, high cycle stability, and advanced thermal design. Check our featured battery modules below:
Decarbonization, electrification, and modern grid reliance are driving a paradigm shift toward advanced battery modules.
In the contemporary B2B energy supply landscape, a battery module serves as the fundamental building block for larger energy storage systems (ESS) and electric drivetrains. By grouping multiple lithium-ion or lithium iron phosphate (LiFePO4) cells in series and parallel configurations, battery modules deliver targeted operational voltage, storage capacities, and optimal safety configurations.
As standard lead-acid batteries fail to meet industrial cycles and environmental regulations, global enterprises in regions like Europe and North America are rapidly shifting to integrated LiFePO4 modules. From telecom infrastructure to materials handling vehicles, selecting the right battery module supplier directly influences system efficiency, lifespan, and operational safety profile.
From component supply chains to high-precision robotic assembly lines, Chinese manufacturers provide unparalleled cost and performance optimizations.
China manages over 70% of the world's raw lithium processing and anode/cathode precursor chemical synthesis. This vertical integration buffers against price fluctuations and speeds up customization lead times.
Advanced manufacturing centers, like LIAO Technology, utilize automated capacity grading systems and precision CNC laser welding technologies. This ensures identical cell impedances, preventing localized module imbalances.
We combine rapid mechanical enclosure prototyping with adaptive BMS layouts to support unique voltage and dimensional configurations, keeping tooling costs exceptionally low.
Founded in 2009, Hangzhou LIAO Technology Co., Ltd. is a professional and leading manufacturer specialized in LiFePO4 batteries. Our premium battery products have been exported to more than 20 countries all over the world.
We already established a strict and efficient quality control (QC) system. All of our products are produced strictly under the quality management system of ISO 9001. Meanwhile, we have passed and always keep compliance to the environmental management system ISO 14001 as well as occupational health and safety management system ISO 18001.
We develop and manufacture lithium electric vehicle batteries as well as lithium energy storage products for a wide variety of custom applications, bringing dependable power configurations directly to international buyers.
Our prismatic battery cell architecture combined with active protective designs delivers premium mechanical and electrical safety parameters.
Our LiFePO4 cells are engineered specifically to prevent burning or exploding, even under severe physical abuse such as targeted acupuncture testing.
Uncompromised performance across extreme climate installations. Modules support full power discharge within temperature ranges from -40 ℃ up to 85 ℃.
Sustained cell health and minimal capacity decay, boasting 2800+ cycles at 100% Depth of Discharge (DOD) to reduce battery swap overheads.
Exemplary reliability track record: our signature LAXpower-1230 design was officially recognized as the testing champion in independent European evaluations.
We work with international engineering partners to deploy LiFePO4 modules directly optimized for unique operational profiles.
Next-generation LiFePO4 packs designed to optimize cart speed and runtime across demanding golf course topography with minimal maintenance.
Stable high-current delivery that allows caravan movers to operate smoothly. Eliminates operational sound and emissions for eco-conscious travel.
Designed for materials handling fleets, pallet jacks, and heavy forklift vehicles. Delivers high current profiles to elevate and transport load weights effortlessly.
Zero emissions, zero fuel leaks, and silent operation. Provides IP67 waterproof-rated configurations for clean marine ecosystems.
Supports grid buffering, solar arbitrage, and critical power backups. Designed for deep daily cycling and peak-shaving needs.
Meeting unique electrical demands requires dedicated technical planning and specialized manufacturing control. Our R&D team consists of seasoned electrical and mechanical engineers who work in close alignment with our client partners.
Take a virtual step into our manufacturing pipeline. LIAO enforces a rigorous, multi-stage testing process from cell selection to finished battery modules.
High continuous discharge creates localized heat pockets. Seek suppliers who integrate structural insulation and design spacing for air or liquid cooling configurations within the module housing.
Pure copper busbars with micro-laser welding offer low contact resistance. This minimizes resistive voltage drop and localized heating at high C-rates.
Ensure the built-in module protection system communicates with your master system via common B2B industrial standards (CAN bus, RS485, or Modbus protocols).
Our commitment to reliability is backed by third-party testing and verified quality standards.
Rugged structural composition, high surface contact area for thermal management, and robust construction compared to cylindrical form factors.
Fully assembled battery packs integrated with custom BMS enclosures, output connections, and mounting frames for simple plug-and-play installation.
Bespoke system designs matching custom mechanical dimensions, specialized current draws, and target operational voltages.
Our engineering team addresses standard technical questions raised by industrial B2B system designers:
Prismatic cells feature a wound or stacked electrode assembly inside a rigid aluminum housing. This construction minimizes swelling during thermal shifts and increases mechanical durability. Additionally, the flat geometry makes thermal dissipation easier compared to cylindrical cells, which require complex spacing and routing configurations to cool efficiently.
Our custom-integrated BMS monitors individual cell voltages, package temperatures, and current metrics. It actively cuts off power in the event of overcharging, over-discharging, thermal spikes, or short circuits. It also manages passive cell balancing to keep all cells at identical states of charge, extending module life.
All larger lithium battery modules must pass the UN38.3 protocol to qualify for international air and ocean transit. This battery testing program subjects modules to extreme pressure changes, structural vibration, drop tests, external short circuits, thermal cycles, and physical impact. LIAO handles full compliance and provides all necessary reports for custom clearing processes.
Yes, this is a core strength. We design customized physical battery enclosures, alter module shapes, change connection terminal designs, and adjust electrical outputs. This allows you to upgrade older machinery from heavy lead-acid configurations to efficient LiFePO4 batteries with zero physical chassis alterations.
From low-voltage starter batteries to high-voltage industrial battery systems, choose the right product specifications below: