logo
Welcome to Guangdong Youyuan Recycling Technology Co., Ltd.
+86 13590163009

314Ah LFP Large Format Cell | Multi-Brand Top Energy Storage Cell Long-Life Compact Energy Storage Cell

Basic Properties
Place of Origin: China
Brand Name: Various Models Available, Welcome Your Inquiry
Model Number: 314AH 3.2V
Trading Properties
Minimum Order Quantity: 10
Price: 76.88$
Payment Terms: L/C,D/A,D/P,T/T,Western Union
Supply Ability: 10000
Product Summary
LFP battery – intrinsic safety, 3000+ cycles, wide temp range (-20~60°C). Ideal for commercial EVs, energy storage, and backup power. Lower TCO than NCM/lead-acid.
Product Description

1. Primary Applications

New Energy Commercial Vehicles & Construction Machinery
LFP batteries, with their exceptional thermal stability and ultra‑long cycle life, are the preferred power source for electric buses, heavy‑duty trucks, sanitation vehicles, and construction equipment (e.g., loaders, excavators). Their high safety and excellent rate discharge capability handle heavy‑load climbing and frequent start‑stop operations with ease, while fast‑charging support improves operational efficiency.

Energy Storage Systems (ESS)
LFP is the undisputed leader in energy storage, widely deployed in grid frequency regulation, peak shaving, commercial & industrial (C&I) storage, residential ESS, and telecom backup power. Its intrinsic safety (no fire, no explosion), cycle life exceeding 5,000 cycles, and low cost make it highly attractive in space‑tolerant storage cabinets. Some large‑cylindrical LFP cells have already been adopted in high‑reliability ESS projects.

New Energy Passenger Vehicles (Entry‑Level, Mid‑Range & Fleet Operations)
For ride‑hailing, taxi fleets, and delivery vans with daily high‑frequency usage, LFP batteries deliver over 3,000 cycles, significantly reducing total cost of ownership. Although energy density is slightly lower (160–210 Wh/kg at cell level), advanced cell‑to‑pack (CTP) technologies still enable 400–600 km range, meeting daily commuting and commercial mobility needs.

48V Mild‑Hybrid Systems & Starter Batteries
LFP’s high power output and wide operating temperature range make it suitable for start‑stop, regenerative braking, and auxiliary power in ICE vehicles. As a lead‑acid replacement, LFP starter batteries provide greater cranking current, longer backup time, and superior safety.

Electric Two‑Wheelers & Light Mobility Devices
High‑safety LFP cells (e.g., 72V90Ah, 76V96Ah) are widely used in e‑motorcycles, delivery scooters, and shared bikes, offering long cycle life and high‑temperature tolerance for frequent charge/discharge daily use.

Intelligent & Service Robots
LFP’s stable chemistry and long lifespan suit indoor service robots, delivery robots, and other applications where safety and frequent cycling are critical. Even with moderate energy density, structural optimisation ensures adequate runtime.

Backup Power & Data Centre UPS
For telecom base stations, data centres, emergency lighting, and other reliability‑critical scenarios, LFP is an ideal replacement for lead‑acid and even NCM, thanks to its non‑flammability, overcharge tolerance, and high thermal runaway threshold.


2. Typical Deployment Scenarios

  • New energy buses and sanitation vehicles

  • Electric heavy‑duty trucks and long‑haul logistics trucks

  • Grid‑side ESS and C&I energy storage systems

  • Residential ESS and portable power stations

  • Telecom base station backup power

  • Data centre uninterruptible power supplies (UPS)

  • Electric two‑wheelers (shared bikes, food‑delivery scooters)

  • Low‑speed electric vehicles (neighbourhood EVs, campus shuttles)

  • Plug‑in hybrid electric vehicles (PHEV, with small LFP packs or combined with other chemistries)

  • 48V mild‑hybrid ICE vehicles

  • Construction machinery (electric excavators, loaders, forklifts)

  • Intelligent service robots (cleaning, delivery, guide robots)

  • Automotive jump‑starter power banks

  • Electric vessels (inland ferries, sightseeing boats – where energy density demands are moderate)

  • Agricultural machinery (electric tractors, sprayers)


3. Technical Scope of Suitability

Scenarios Requiring High Safety (Thermal Runaway Trigger Temperature >500°C; No Fire Under Nail Penetration or Overcharge)
LFP’s olivine structure ensures stability under mechanical and electrical abuse, making it the undisputed choice for safety‑first applications.

Applications Demanding Ultra‑Long Cycle Life (3,000–8,000 Cycles, Calendar Life >10 Years)
Ideal for daily multiple‑charge/discharge fleet vehicles, grid frequency regulation, and other uses where replacement frequency and total cost of ownership are critical.

Cost‑Sensitive Projects Pursuing the Lowest Levelised Cost of Energy (LCOE)
LFP contains no expensive cobalt or nickel, offering significant material cost advantages for large‑scale storage and entry‑to‑mid‑range EVs.

Wide Operating Temperature Range (‑20°C to 60°C), with Excellent High‑Temperature Performance (No Capacity Fade at 55°C)
In tropical regions, summer heat, or enclosed cabinets, LFP maintains better capacity retention and cycling stability than NCM.

Applications Where Moderate Energy Density is Acceptable (Cell‑Level 160–210 Wh/kg, System‑Level 140–180 Wh/kg)
Suitable for uses that are not extremely weight‑ or volume‑sensitive, such as commercial vehicles, energy storage, two‑wheelers, etc. Structural innovations (e.g., blade batteries) further improve volumetric efficiency.

Moderate‑to‑Fast Charging Capability (1C–3C, Some New‑Gen LFP Support Up to 5C)
While peak fast‑charge rates are slightly lower than NCM, 30‑minute 80% SoC recharging is sufficient for most commercial fleet and logistics needs.

Thermal Management Requirements are Less Stringent than for NCM
LFP generates less heat and withstands higher temperatures, allowing simpler, lower‑energy thermal management designs (liquid or air cooling) compared to NCM.

Recommended with Automotive‑Grade BMS (Over‑Voltage, Under‑Voltage, Over‑Temperature Protection and Cell Balancing)
Although LFP is more tolerant to over‑discharge, proper BMS monitoring and balancing remain essential to maximise its long life.

Not Suitable for Applications with Extreme Demands on Energy Density and Lightweighting (e.g., Long‑Range Premium EVs >700 km, Drones, eVTOL, Hydrofoils)
LFP’s gravimetric and volumetric energy densities are insufficient for these weight‑critical use cases; NCM or solid‑state batteries remain the better choices.

LFP battery, Lithium Iron Phosphate battery, LFP battery advantages, LFP battery applications, energy storage system, LFP energy storage, commercial EV battery, electric bus battery, heavy-duty truck battery, LFP cycle life, safe lithium battery, LFP vs NCM, cost-effective battery, LFP battery for electric buses, LFP battery for energy storage systems, LFP battery for commercial vehicles, LFP battery for construction machinery, LFP battery for data center UPS, LFP battery for telecom backup, LFP battery for electric two-wheelers, LFP battery for service robots, LFP battery for marine applications, LFP battery for agricultural machinery, high thermal stability LFP, long cycle life lithium battery, 5000 cycles LFP battery, LFP battery safety, wide temperature range battery, LFP fast charge capability, cell-to-pack technology, intrinsic safety battery, LFP battery BMS, LFP battery thermal management, why choose LFP battery, LFP battery cost advantage, LFP battery vs lead acid, LFP battery for fleet operations, low total cost of ownership battery, LFP battery OEM supplier, wholesale LFP battery
Related Products

Send An Inquiry