Description
HP Series HPDG Dynamic Solid-State Cells (Ultra-High Discharge Grade) | ATOMFAIRCOMMERCIAL GRADE · PRODUCTION
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TAILORED SOLUTIONS FOR RESEARCH
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EMAIL: INQUIRY@ATOMFAIR.COM
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MANUFACTURER: ATOMFAIR LLC
BRAND: ATOMFAIR®
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This document details critical operational constraints for the HPDG series solid-state cells. Adherence to these limits ensures safe and reliable performance.
- Thermal Management: Operate the cell within its rated continuous discharge capacity to prevent uncontrolled thermal build-up.
What is the trade-off between the 12Ah 20C and 22Ah 12C HPDG variants for high-speed drone racing?
The 12Ah HPDG88124T1-12 delivers a higher continuous 20C discharge rate for extreme instant torque during sharp vertical climbs, while the 22Ah HPDG87187T1-22 provides greater total energy capacity at a lower 12C continuous discharge. The 12Ah variant has a lower internal AC resistance of ≤0.6 mΩ versus ≤0.65 mΩ for the 22Ah cell, minimizing waste heat under peak loads, but the 22Ah cell supports longer flight durations at moderate current draws.
Can the HPDG solid-state cells be integrated into existing UAV propulsion modules without modifying the battery management system?
Integration requires verifying that the UAV's battery management system can handle the extreme continuous discharge rates of up to 20C for the 12Ah variant or 12C for the 22Ah variant, as these exceed typical lithium-polymer specifications. The cells' low internal resistance (≤0.6 mΩ for the 12Ah model) demands wiring and connectors rated for high instantaneous current to avoid voltage drops, and the physical pouch dimensions (9.6 × 88 × 124 mm for the 12Ah cell) must fit the airframe's battery bay.
What handling and storage conditions are required to maintain the HPDG cell's low internal resistance and thermal stability?
The cells must be stored at a controlled state of charge, as internal AC resistance is specified at ≤0.6 mΩ for the 12Ah variant only at 30% SOC, and deviation from this SOC can increase impedance and degrade high-rate performance. The advanced monolithic framework protects against thermal build-ups, but ambient storage temperatures should remain within standard lithium-ion ranges to prevent accelerated aging, and physical puncture or compression of the pouch casing must be avoided to maintain structural integrity.
The HP Series HPDG cells deliver ultra-high discharge rates up to 20C with sub-milliohm internal resistance, providing extreme power for high-performance UAV applications, though the 22Ah variant trades peak discharge for capacity and larger dimensions require careful integration.
Positive
- Extreme Continuous Discharge Rates: The 12Ah variant delivers up to 20C continuous discharge, enabling instantaneous high-current demands for aggressive drone maneuvers and high-velocity climbs.
- Ultra-Low Internal Resistance: AC resistance ≤0.6 mΩ minimizes energy loss as waste heat, improving efficiency and thermal management during high-power operation.
Trade-offs
- Capacity vs. Discharge Rate Trade-off: The 22Ah variant offers higher capacity but a reduced continuous discharge rate of 12C compared to the 12Ah variant's 20C, limiting peak power output for high-capacity configurations.
- Form Factor Constraints for Integration: With pouch dimensions up to 11×87×187 mm, the 22Ah cell may challenge integration into compact UAV frames designed for smaller power sources, requiring careful layout planning.
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). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).





