3.20V 314Ah LFP Prismatic Cell 8K/12K Cycle

Price range: $400.00 through $470.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Commercial grade 3.20V 314Ah LFP prismatic cell, 173Wh/kg, 1.0C charge/discharge, 8K or 12K cycle ESS options. Order now.

Description

3.20V 314Ah LFP Prismatic Cell Series | ATOMFAIR

COMMERCIAL GRADE · PRODUCTION

Product Overview

The ATOMFAIR® 3.20V 314Ah LFP Prismatic Cell Series offers two ultra‑high‑capacity square aluminum case batteries based on advanced lithium iron phosphate (LFP) chemistry. Both models are specifically engineered for Energy Storage Systems (ESS) and stationary power applications, delivering a high energy density of 173Wh/kg with a lightweight design (≤5.80kg). Supporting stable 1.0C continuous charge/discharge rates, this series provides exceptional cycle life options: ≥8000 cycles and ≥12000 cycles at 0.5C/0.5C, 100% DOD with 70% retention. Identical compact dimensions (71.8×174.2×207.1 mm including terminal) enable efficient pack integration for utility‑scale, C&I, and residential ESS projects, while the extended‑life variant is ideal for applications demanding two decades of daily cycling. For bulk inquiries or official volume quotations, please contact us via email at inquiry@atomfair.com.

Technical Specifications

PARAMETER VALUE
Model AFLFP314-8K AFLFP314-12K
Cell Chemistry Lithium Iron Phosphate (LFP) Lithium Iron Phosphate (LFP)
Dimensions (mm) with Terminal 71.8 × 174.2 × 207.1 71.8 × 174.2 × 207.1
Weight (kg) ≤ 5.80 ≤ 5.80
Nominal Capacity (Ah) 314 314
Nominal Voltage (V) 3.20 3.20
Weight Energy Density (Wh/kg) 173 173
Max Continuous Charge / Discharge Rate 1.0C / 1.0C 1.0C / 1.0C
Cycle Life (@25°C, 0.5C/0.5C, 100% DOD, 70% Ret) ≥ 8000 cycles ≥ 12000 cycles

Key Features & Advantages

  • Dual Cycle Life Options: Choose ≥8000 cycles for standard ESS projects or ≥12000 cycles for ultra‑long life applications (both at 0.5C/0.5C, 100% DOD, 70% retention).
  • High Energy Density: 173Wh/kg reduces system footprint and total weight for commercial & utility storage.
  • High Capacity: 314Ah per cell lowers cell count, simplifies BMS, and cuts assembly costs.
  • Intrinsic LFP Safety: Exceptional thermal stability, lower thermal runaway risk, and safe operation across ESS environments.
  • Stable 1C Rate: Reliable continuous 1.0C charge/discharge supports fast response and peak shaving.
  • Identical Mechanical Footprint: Both variants share dimensions 71.8×174.2×207.1 mm, enabling drop‑in replacements or mixed configurations.

APPLICATION SCOPE: Energy Storage Systems (ESS) – grid‑scale storage, commercial & industrial (C&I) storage, renewable energy integration (solar/wind), peak shaving, load leveling, backup power, microgrids, and off‑grid storage. The 12k cycle variant is especially suited for daily deep‑cycling applications requiring extended service 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 appropriate protection functions (over‑discharge, over‑charge, short‑circuit protection, and cell balancing). Operate the cell within the recommended voltage window and under suitable temperature conditions to ensure optimal performance and safety. Avoid mechanical abuse, deep over‑discharge, or short circuits. Prior to first use, condition the cell under standard ambient conditions as advised. Dispose of used 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 humidity-controlled vacuum sealed packaging to prevent moisture ingress and degradation. Always operate within the recommended voltage window and temperature range using a dedicated BMS with full protection functions.

  • Storage Environment: Store cells in humidity-controlled vacuum sealed packaging to prevent moisture ingress.
  • Electrical Protection: Always use a dedicated BMS with over-discharge, over-charge, short-circuit protection, and cell balancing.
  • Operating Limits: Operate the cell within the recommended voltage window and under suitable temperature conditions to ensure safety.
  • Mechanical Handling: Avoid mechanical abuse, deep over-discharge, or short circuits to prevent damage.
  • Preconditioning: Condition the cell under standard ambient conditions prior to first use.

Follow these steps to safely unpack, connect, and condition the cell for first use. Proper handling prevents damage and ensures reliable long-term performance.

Required Equipment: Battery Management System (BMS) with over-discharge, over-charge, short-circuit protection, and cell balancing

  1. Inspect Packaging
    Inspect the vacuum-sealed packaging for any signs of damage or moisture ingress before opening.
  2. Verify BMS Configuration
    Verify that the BMS is configured with over-discharge, over-charge, short-circuit protection, and cell balancing functions.
  3. Connect Cell to BMS
    Connect the cell to the BMS ensuring correct polarity and secure terminal connections.
  4. Condition Cell
    Condition the cell under standard ambient conditions by performing an initial charge at the recommended rate.
  5. Monitor First Cycle
    Monitor cell voltage and temperature during the first charge-discharge cycle to confirm normal operation.
  6. Dispose Properly
    Dispose of used cells in accordance with local environmental regulations.

What performance trade-off exists between the AFLFP314-8K and AFLFP314-12K variants of the ATOMFAIR 314Ah LFP cell?

The primary trade-off is cycle life versus upfront investment. Both variants share identical nominal capacity (314Ah), voltage (3.20V), weight energy density (173Wh/kg), dimensions (71.8×174.2×207.1 mm), weight (≤5.80kg), and maximum continuous charge/discharge rate (1.0C). The 8K variant delivers ≥8000 cycles at 0.5C/0.5C, 100% DOD, 70% retention, while the 12K variant delivers ≥12000 cycles under the same conditions. The 12K variant is suited for applications requiring two decades of daily cycling, but the 8K variant provides a lower-cost solution for standard ESS projects with shorter service life requirements.

What BMS and system integration constraints must be considered when using the ATOMFAIR 314Ah LFP cell in an ESS?

A dedicated battery management system (BMS) with over-discharge, over-charge, short-circuit protection, and cell balancing is mandatory. The identical mechanical footprint (71.8×174.2×207.1 mm) across both variants allows drop-in replacement and mixed configurations. The cell must be operated within its recommended voltage window and under suitable temperature conditions, though specific thresholds are not stated in the source. The high 314Ah capacity and 1.0C continuous rate require the BMS to be rated for the corresponding current levels.

What are the recommended storage, handling, and conditioning procedures for the ATOMFAIR 314Ah LFP prismatic cell?

The cell ships in humidity-controlled vacuum sealed packaging with individual isolation in anti-static foam lined cartons. Prior to first use, condition the cell under standard ambient conditions as advised in the product notice. Avoid mechanical abuse, deep over-discharge, and short circuits. Dispose of used cells in accordance with local regulations. Bulk orders can be custom palletized upon request.

The ATOMFAIR 3.20V 314Ah LFP Prismatic Cell Series offers two cycle life variants (≥8000 and ≥12000 cycles) with identical mechanical footprint, enabling flexible ESS design with high energy density (173 Wh/kg) and simplified pack integration, but requires dedicated BMS and strict environmental controls.

Positive

  • Dual cycle life options for application flexibility: The series offers ≥8000 cycles (standard) and ≥12000 cycles (ultra-long) at 0.5C/0.5C, 100% DOD with 70% retention, allowing engineers to select based on project lifespan requirements.
  • High energy density and capacity reduce system complexity: At 173 Wh/kg and 314 Ah per cell, fewer cells are needed for a given energy target, simplifying BMS design and assembly while reducing overall system weight and footprint.

Trade-offs

  • Requires external BMS and strict operating conditions: The cell must be used with a dedicated BMS providing over-discharge, over-charge, short-circuit protection and cell balancing; operation must stay within specified voltage and temperature windows to ensure safety and performance.
  • Moisture-sensitive packaging requires careful handling: Cells are shipped in humidity-controlled vacuum sealed packaging with anti-static foam; exposure to ambient humidity prior to conditioning may affect performance or longevity.

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).

Additional information

Model

AFLFP314-8K, AFLFP314-12K