LMFP Solid-State Cells 230Wh/kg ZE Series ATOMFAIR®

Price range: $180.00 through $220.00

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 ZE Series LMFP solid-state cells deliver up to 230Wh/kg, 48Ah capacity, 3C discharge at 98% efficiency, and ≥2500 cycles. Order now.

SKU: AFMSSYHO337
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Description

ZE Series High-Performance Solid-State Cells (230Wh/kg LMFP Composite Ternary Battery) | ATOMFAIR

COMMERCIAL GRADE · PRODUCTION

Product Overview

The ZE Series represents the cutting edge of solid-state motive power technology, engineered for high-performance electric motorcycles and professional power systems. Powered by a “triple-core” architecture—an advanced LMFP-based (Lithium Manganese Iron Phosphate) composite ternary cathode, high-rate graphite anode, and proprietary high-performance separator—it achieves a breakthrough energy density of 230Wh/kg. This flagship series delivers exceptional discharge efficiency (98% at 3C) with zero power fade, providing sustained and potent energy for urban e-mobility and high-load industrial applications. For bulk inquiries or official volume quotations, please contact us via email at inquiry@atomfair.com.

Technical Specifications

Specification ZE122175-20 ZE165227-48 (Flagship) ZE14894-38
Nominal Capacity 20Ah 48Ah 38Ah
Energy Density 220Wh/kg 230Wh/kg 180Wh/kg
Cell Size (mm) 7.9*122*175 10*165*227 26*148*94
Cycle Life @RT ≥2500 cycles
Continuous Discharge 3C (98% Efficiency)

Core Features & Advantages

Pinnacle Energy Density

Achieving up to 230Wh/kg, offering an unparalleled balance between lightweight architecture and 200km+ extreme range.

Superior Discharge Efficiency

98% energy conversion rate at 3C discharge with zero power fade, ensuring massive torque and consistent output.

Enhanced Cycle Stability

Rated for ≥2500 cycles at room temperature, providing industrial-grade reliability and lower total cost of ownership.

Application Scope

  • High-Performance Electric Motorcycles
  • Heavy-Duty Professional Power Tools
  • High-Capacity Portable Power Stations
  • Urban Smart E-Mobility Fleet Systems

Technical Customization

Advanced BMS Integration: Optimized for smart management systems with high-precision SOC/SOH monitoring for urban motorcycles.

OEM Prototyping: Specialized dimensions, tab orientations, and multi-cell pack configurations available for scientific research and industrial scaling.

Certified Data: Official UN38.3, MSDS, and comprehensive 3C discharge curve reports available upon request.

TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: INQUIRY@ATOMFAIR.COM
MANUFACTURER: ATOMFAIR LLC
BRAND: ATOMFAIR®

These cells contain active lithium chemistry and require controlled handling to prevent short circuits and thermal runaway. Transport and usage must comply with UN38.3 certification and follow the provided MSDS guidelines.

  • Transport Classification: Cells are certified under UN38.3 for safe transport and must be shipped in accordance with applicable regulations.
  • Safety Data Sheet: The MSDS contains detailed information on storage, handling, and emergency procedures for these lithium-based cells.

Follow these steps to deploy the solid-state cells safely and integrate them into a power system. Proper handling ensures performance and longevity.

Required Equipment: Compatible Battery Management System (BMS) optimized for LMFP chemistry

  1. Inspect and verify cell variant
    Inspect the cell for physical damage and verify the energy density rating matches the application requirement.
  2. Connect to BMS
    Connect the cell to a BMS optimized for LMFP composite ternary chemistry with high-precision SOC/SOH monitoring.
  3. Set discharge limit
    Configure the system to limit continuous discharge to 3C to achieve 98% energy conversion efficiency.
  4. Store at room temperature
    Store the cell at room temperature (RT) to maintain rated cycle life of ≥2500 cycles.
  5. Verify pack assembly dimensions
    Ensure tab orientation and dimensions comply with OEM prototyping specifications for multi-cell pack configuration.

What is the trade-off between energy density and cell form factor across the ZE series variations, and how does it affect integration into battery packs?

The primary trade-off is between energy density and cell thickness. The 230Wh/kg flagship variant (ZE165227-48) uses a thin 10mm profile, while the 180Wh/kg variant (ZE14894-38) is 26mm thick. All variations share the same ≥2500 cycle life and 98% discharge efficiency at 3C, so pack designers choose based on volumetric constraints versus maximum energy per weight.

Can the ZE series solid-state cells be integrated with existing lithium-ion BMS systems, or are specialized BMS configurations required?

The ZE series is optimized for advanced BMS with high-precision SOC/SOH monitoring, as stated in the technical customization section. While standard lithium-ion BMS may be adaptable, optimal performance—especially for the 230Wh/kg LMFP composite ternary chemistry—requires configuration for the specific discharge profile. The manufacturer offers certified 3C discharge curve data and UN38.3 reports to support integration.

What are the specific storage and handling requirements for these LMFP composite ternary solid-state cells, and how do they differ from conventional lithium-ion cells?

As solid-state cells, the ZE series eliminates liquid electrolyte leakage risks, but still requires UN38.3-certified packaging and transport protocols per the manufacturer. Detailed MSDS and 3C discharge curve data are available upon request to guide safe handling and storage at room temperature. The proprietary separator and high-rate graphite anode do not introduce additional handling constraints beyond standard industry practices for commercial-grade solid-state batteries.

The ZE Series solid-state cells offer high energy density (up to 230Wh/kg) and efficient 3C discharge with zero fade, suitable for high-performance electric motorcycles and power systems; however, the 3C continuous discharge limit and room-temperature cycle life specification impose operational constraints for high-rate or extreme-temperature applications.

Positive

  • Pinnacle Energy Density for Lightweight Systems: Achieves up to 230Wh/kg, enabling extended range (>200km) and reduced weight for electric motorcycles and portable power systems.
  • High-Efficiency 3C Discharge with Zero Fade: Delivers 98% energy conversion at 3C continuous discharge with zero power fade, ensuring consistent torque and output over the discharge cycle.

Trade-offs

  • Continuous Discharge Limited to 3C: Rated continuous discharge of 3C may restrict use in applications requiring higher pulse currents or ultra-fast discharge beyond 3C.
  • Cycle Life Specified Only at Room Temperature: Cycle life of ≥2500 cycles is guaranteed at room temperature; performance at elevated or sub-ambient temperatures is not specified, requiring thermal management for consistent 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

Energy Density

220Wh/kg, 230Wh/kg, 180Wh/kg

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