LFP Prismatic Cell 3.20V 150Ah ≥8000 Cycles

$216.00

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Commercial grade 3.20V 150Ah LFP prismatic cell with ≥8000 cycles at 1.0C/1.0C, 150Wh/kg energy density, and 40.9×174.2×207.1 mm case. Order now.

Description

3.20V 150Ah LFP Prismatic Cell | ATOMFAIR

COMMERCIAL GRADE · PRODUCTION

Product Overview

The ATOMFAIR® 3.20V 150Ah LFP Prismatic Cell is a high‑capacity square aluminum case battery based on advanced lithium iron phosphate (LFP) chemistry. Engineered for demanding electric vehicle (EV) and high‑power traction applications, it delivers an outstanding cycle life of ≥8000 cycles at 1.0C/1.0C, 100% DOD with 70% capacity retention – ideal for long‑life commercial EVs, buses, and heavy‑duty vehicles. With a high energy density of 150Wh/kg, compact dimensions (40.9×174.2×207.1 mm including terminal), and stable 1.0C charge/discharge performance, this cell provides reliable, durable, and energy‑dense power for next‑generation electric mobility. For bulk inquiries or official volume quotations, please contact us via email at inquiry@atomfair.com.

Technical Specifications

PARAMETER VALUE
Cell Chemistry Lithium Iron Phosphate (LFP)
Dimensions (mm) with Terminal 40.9 × 174.2 × 207.1
Weight (kg) ≤ 3.13
Nominal Capacity (Ah) 150
Nominal Voltage (V) 3.20
Weight Energy Density (Wh/kg) 150
Max Continuous Charge / Discharge Rate 1.0C / 1.0C
Cycle Life (@25°C, 1.0C/1.0C, 100% DOD, 70% Ret) ≥ 8000 cycles

Key Features & Advantages

  • Ultra‑Long Cycle Life: ≥8000 cycles at 1.0C/1.0C, 100% DOD, 70% retention – perfect for high‑utilization commercial EVs and fleet vehicles.
  • High Energy Density: 150Wh/kg enables lighter battery packs without sacrificing capacity.
  • Intrinsic Safety: LFP chemistry delivers exceptional thermal stability, reducing risk of thermal runaway even under demanding conditions.
  • Stable 1C Rate Performance: Reliable 1.0C continuous charge and discharge for consistent power delivery throughout vehicle operation.
  • Robust Prismatic Design: Square aluminum case with terminal provides structural rigidity, efficient cooling, and easy pack assembly for EV applications.

APPLICATION SCOPE: Electric vehicles (EVs), commercial EVs, electric buses, heavy‑duty trucks, plug‑in hybrid EVs (PHEVs), and high‑energy traction systems requiring superior cycle life.
PACKAGING: Humidity‑controlled vacuum sealed packaging, individual cell isolation in anti‑static foam lined cartons. Custom palletized packaging for bulk orders available upon request.
IMPORTANT NOTICE:Always use a dedicated BMS with over‑discharge, over‑charge, short‑circuit, and cell balancing protection. Charge within the manufacturer’s recommended voltage window. Do not exceed the rated continuous discharge rate. Store and operate cells within the appropriate temperature range to ensure optimal cycle life. Avoid mechanical deformation or short circuits. Pre‑condition cells at a moderate temperature before first use. Dispose of cells in accordance with local regulations.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: INQUIRY@ATOMFAIR.COM
Manufacturer: ATOMFAIR LLC
Brand: ATOMFAIR®

Store cells in a dry, temperature-controlled environment between 10°C and 35°C to prevent capacity degradation. Use only with a dedicated BMS providing over-discharge, over-charge, short-circuit, and cell balancing protection.

  • Thermal Stability: LFP chemistry provides intrinsic thermal stability, but cells must not be exposed to temperatures exceeding 60°C to avoid accelerated aging.
  • Mechanical Integrity: Avoid mechanical deformation or short circuits to prevent internal damage and potential failure.
  • Charge Voltage Window: Charge only within the manufacturer's recommended voltage window to maintain cycle life and safety.
  • Disposal Compliance: Dispose of cells in accordance with local regulations for lithium-ion batteries.

Pre-condition cells at a moderate temperature before first use to ensure optimal performance. Always use a dedicated BMS with over-discharge, over-charge, short-circuit, and cell balancing protection.

Required Equipment: Dedicated Battery Management System (BMS), Temperature-controlled storage environment, Insulated gloves

  1. Inspect Packaging
    Inspect the humidity-controlled vacuum sealed packaging for any damage before opening.
  2. Pre-condition Cell
    Pre-condition the cell at a moderate temperature (20°C to 25°C) for at least 2 hours before first use.
  3. Connect BMS
    Connect a dedicated BMS with over-discharge, over-charge, short-circuit, and cell balancing protection to the cell terminals.
  4. Set Charge Parameters
    Set the charger to the manufacturer's recommended voltage window and do not exceed the rated continuous discharge rate.
  5. Monitor Temperature
    Monitor cell temperature during operation and ensure it remains within the specified range to avoid thermal runaway.

How does the 1.0C continuous charge/discharge rate affect the cycle life of the ATOMFAIR 150Ah LFP prismatic cell?

The cell delivers ≥8000 cycles at 1.0C charge and 1.0C discharge, 100% depth of discharge, with 70% capacity retention at 25°C. This indicates stable, long-life performance at the rated 1C rate, with no degradation in cycle life under continuous 1C operation. No data is provided for higher or lower C-rates, so 1.0C is the specified safe continuous rate.

What BMS and integration constraints must be considered when using the ATOMFAIR 150Ah LFP prismatic cell in an EV pack?

A dedicated BMS with over-discharge, over-charge, short-circuit, and cell balancing protection is mandatory. Charging must stay within the manufacturer’s recommended voltage window, and the rated continuous discharge rate (1.0C) must not be exceeded. The prismatic aluminum case design facilitates efficient cooling and pack assembly for EV applications.

What storage, handling, and safety precautions are required for the ATOMFAIR 3.20V 150Ah LFP cell?

Cells are supplied in humidity-controlled vacuum sealed packaging with individual isolation in anti-static foam lined cartons. Storage and operation must be within the appropriate temperature range to ensure optimal cycle life. Avoid mechanical deformation and short circuits, pre-condition at moderate temperature before first use, and dispose per local regulations.

The ATOMFAIR 3.20V 150Ah LFP prismatic cell provides a robust combination of high cycle life and energy density for commercial EV traction, but necessitates strict BMS integration and environmental controls for safe and reliable operation.

Positive

  • Ultra-Long Cycle Life: The cell delivers ≥8000 cycles at 1.0C/1.0C, 100% DOD with 70% capacity retention, enabling long-term operation in high-utilization commercial EV and fleet applications.
  • High Energy Density 150 Wh/kg: With 150 Wh/kg, the cell allows lighter battery pack designs without sacrificing capacity, improving vehicle range and efficiency.

Trade-offs

  • Requires Dedicated BMS and Voltage Compliance: The cell must be used with a BMS providing over-discharge, over-charge, short-circuit, and cell balancing protection; charging must stay within manufacturer's voltage window to avoid damage.
  • Sensitive to Temperature and Humidity: Storage and operation require controlled temperature range and humidity conditions; cells are shipped in humidity-controlled vacuum sealed packaging, and preconditioning at moderate temperature before first use is recommended.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).