Industrial grade 12V and high-capacity LiFePO4 batteries engineered for critical applications.
The global transition toward lithium iron phosphate (LiFePO4) chemistry represents a paradigm shift in decentralized energy storage. Specifically, the 12V 100Ah form factor has emerged as the universal standard to replace legacy Lead-Acid (AGM/GEL) batteries across commercial, industrial, and recreational applications.
Unlike chemical counterparts like LiCoO2 or NCM, the LiFePO4 olivine crystal structure is highly stable. The strong covalent bonding of oxygen to phosphorus protects the lattice against degradation under high temperature and mechanical stress, mitigating thermal runaway risks. For procurement divisions, transitioning to LFP delivers a significantly optimized Levelized Cost of Storage (LCOS), thanks to longer cycle life and lower maintenance costs.
A trusted, world-class pioneer in custom LiFePO4 battery pack engineering and automated production since 2009.
Operates strictly under dynamic quality controls including ISO 9001 (Quality Management), ISO 14001 (Environmental Protection), and ISO 18001 (Occupational Health & Safety standards).
Unmatched safety performance. Cell testing confirms our proprietary LiFePO4 configurations will not burn, burst, or undergo thermal runaway, even during invasive acupuncture testing.
Designed for resilience. Our custom units can discharge reliably in temperature extremes ranging from -40°C up to 85°C, expanding deployments to sub-zero and desert climates.



Targeted battery architecture engineered to meet the unique demands of global industrial applications.
High current discharge profiles to navigate varying golf terrains and steep grades easily.
Lightweight, emission-free, high energy density units designed for silent operation and long storage cycles.
High physical shock resistance to power materials handling, automated guided vehicles (AGV), and heavy loads.
Eco-friendly power systems built with ingress protection (IP65/67) to withstand moisture and sea salt exposure.
A closer look inside Hangzhou LIAO Technology's ISO-certified manufacturing facility, where custom battery cells are built and assembled.
Procurement teams face complex design decisions when sourcing 12V 100Ah LiFePO4 batteries. Key metrics such as continuous discharge rates, transient surge profiles, and integrated BMS safety systems are crucial for long-term project viability.
We help B2B sourcing partners streamline this process. By utilizing tier-1 prismatic cells instead of cylindrical alternatives, our custom packs offer better thermal performance, tighter mechanical density, and higher energy efficiency. Our engineering group supports custom enclosures, custom wire harnessing, and communication protocols (CANbus, RS485, SMBus, and Bluetooth telemetry) to ensure smooth integration with your current electrical systems.
Our custom solutions help businesses minimize engineering design cycles and development costs, while accelerating time-to-market. Whether you are looking for drop-in SLA replacements or highly customized energy solutions, our team delivers the technical expertise your projects require.
Exploring the next generation of lithium iron phosphate chemistry and advanced smart BMS systems.
Transitioning from passive resistor shunt balancing to high-efficiency active charge-shuffling balancing. This optimizes capacity utilization and extends the lifespan of large, multi-cell series battery packs.
Integrating graphene-enhanced electrode designs to significantly reduce internal resistance. This supports faster charging (up to 2C continuous rate) without risking micro-dendrite growth or capacity degradation.
Smart BMS configurations with integrated Bluetooth, LoRa, and cellular modules. This allows operations teams to monitor state-of-health (SOH), state-of-charge (SOC), temperature, and cycles remotely in real-time.
Hangzhou LIAO Technology operates under strict international compliance standards, holding numerous design patents and safety certifications.
Providing custom OEM/ODM solutions to automotive, energy storage, and industrial partners across major global markets.
Germany, France, Netherlands, Spain, United Kingdom, and other regions.
USA, Canada, Mexico, Brazil, and Latin American industrial zones.
Australia, Korea, Japan, India, Singapore, South Africa, Nigeria, and more.






Get answers to common engineering and sourcing questions about 12V 100Ah LiFePO4 batteries.
LiFePO4 (Lithium Iron Phosphate) offers superior chemical and thermal stability compared to NCM (Nickel Cobalt Manganese). The strong covalent bonds in the PO4 tetrahedral lattice prevent oxygen release under normal operating conditions. This significantly reduces the risk of thermal runaway, making LiFePO4 a much safer choice. Additionally, LFP delivers a significantly longer cycle life (2,800 to 6,000 cycles at 80% DOD) compared to NCM (500 to 1,000 cycles), lowering the Levelized Cost of Storage (LCOS) for B2B operations.
Yes. Our premium 12V 100Ah packs are designed to support both series and parallel configurations. You can connect up to four units in series to build a 48V system, or connect multiple units in parallel to expand capacity. The integrated Smart BMS manages voltage differences to maintain cell balance and system stability. For larger setups, we recommend using cells from the same production batch to ensure matched internal resistance.
Our batteries are designed to perform reliably across a wide temperature range, discharging safely from -40°C to 85°C. Like all lithium chemistries, charging should occur above 0°C to prevent lithium plating. For extreme cold-weather applications, we can integrate low-temperature heating elements into the BMS, allowing the battery to charge safely in sub-zero environments.
We comply with all major international quality and safety standards. Our products carry CE, UN38.3, and RoHS certifications. We also provide complete Material Safety Data Sheets (MSDS) and testing reports to ensure safe, compliant shipping via air freight, ocean cargo, and overland logistics.
Lead times vary depending on the level of customization required. Standard configurations are typically dispatched within 15 to 20 days. For custom OEM/ODM projects that require custom enclosures, specialized wiring harnesses, or custom BMS programming, the design-to-delivery process generally takes 30 to 45 days. This includes full prototyping, safety testing, and final quality assurance.
Explore our deep cycle and custom battery solutions designed for commercial and industrial applications.