ES01 Aerospace Solid-State Cells (Heavy Motive Power Series) | ATOMFAIRCOMMERCIAL GRADE · PRODUCTION
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TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: INQUIRY@ATOMFAIR.COM
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MANUFACTURER: ATOMFAIR LLC
BRAND: ATOMFAIR®
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This solid-state pouch cell requires strict thermal management and compression to maintain safe operation. The cell must be secured within a rigid compression fixture and operated within defined voltage and temperature limits to prevent thermal runaway.
- Thermal Limit: Cell surface temperature must remain below 45°C during high-rate discharge to suppress internal polarization and prevent degradation.
- Compression Requirement: The cell requires a uniform external pressure boundary provided by a rigid compression fixture to maintain physical layer consolidation.
- Voltage Management: Voltage configurations must be managed within recommended thresholds using aerospace-grade management cards.
- Operational Temperature Window: Continuous discharge is permitted only within an ambient temperature window of -40°C to +60°C.
- Discharge Rate Constraints: Maximum continuous discharge is limited to 5C for the 52 Ah variant and 4C for the 100 Ah variant, with peak transient pulses up to 8C.
Follow these steps to safely integrate the solid-state cell into a battery pack. Ensure proper compression, voltage monitoring, and thermal oversight during initial operation.
Required Equipment: Rigid compression fixture plate array, Aerospace-grade management card, Battery pack chassis
- Inspect cell
Inspect the cell for physical damage or deformation before handling. - Secure in fixture
Place the cell inside the battery pack chassis and secure it within a rigid compression fixture plate array. - Connect management card
Connect the cell to an aerospace-grade management card optimized for real-time high-drain state of charge monitoring. - Configure voltage
Set the voltage configuration to the recommended thresholds for the specific cell variant using the management card. - Monitor temperature
Monitor cell surface temperature during the first charge-discharge cycle to ensure it remains below 45°C.
How does the maximum continuous discharge rate differ between the 52 Ah and 100 Ah variants of the ES01 Aerospace Solid-State Cell?
The 52 Ah variant supports a maximum continuous discharge rate of 5C, while the 100 Ah variant supports 4C, both validated at ≥93% SOC. Both variants maintain a constant gravimetric energy density of 310 Wh/kg and internal AC resistance ≤0.7 mΩ.
What external pressure management is required for the ES01 solid-state pouch cells during operation?
The solid-state large-format pouch architecture requires a uniform, controlled external pressure boundary to maintain perfect physical layer consolidation. Cells must be secured within a rigid compression fixture plate array inside the battery pack chassis, as stated in the operational compliance notice.
What is the thermal operational range of the ES01 Aerospace Solid-State Cells for high-altitude drone applications?
The cells operate reliably from -40°C to +60°C continuous ambient discharge window, making them suitable for extreme high-altitude environments where traditional liquid lithium blocks underperform.
The ES01 heavy motive power series solid-state cells deliver 310 Wh/kg gravimetric density with extreme thermal range (-40°C to +60°C) and 8C pulse capability, but require external compression fixtures and aerospace-grade battery management for safe deployment in eVTOL and high-altitude UAV applications.
Positive
- 310 Wh/kg Gravimetric Energy Density: Provides industry-leading specific energy for extended mission flight runtime in heavy airframe platforms, validated at 0.2C evaluation.
- Extreme Thermal Resilience (-40°C to +60°C): Enables secure energy dissipation in high-altitude and cold environments, outperforming traditional liquid lithium blocks in freezing conditions.
Trade-offs
- Requires External Compression Fixture: The solid-state large-format pouch architecture demands a uniform, controlled external pressure boundary to maintain perfect physical layer consolidation, necessitating rigid compression fixture plates in the pack design.
- Requires Aerospace-Grade BMS: Voltage configurations must be strictly managed with aerospace-grade management cards optimized for real-time high-drain state of charge monitoring to ensure safe operation.
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).






