Description
HP Series HPDG Dynamic Solid-State Cells (Ultra-High Discharge Grade) | 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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The HPDG series ultra-high discharge solid-state pouch cells require stable external multi-point clamping forces to maintain uniform internal contact. Over-discharge must be avoided by preventing terminal voltage from dropping below specified low potential floors.
- Compression Fixture Requirement: The cell array must be housed securely within a rigid compression fixture plate structure to ensure uniform contact across active internal layers.
- Over-Discharge Prevention: Terminal potential must not be allowed to drop below the certified low potential floor to prevent irreversible capacity loss.
- Certified Parameter Compliance: Only certified charge and discharge current and voltage parameters as specified by the manufacturer should be used during operation.
- Safety Data Availability: Verified UN38.3 and MSDS safety testing datasets are available for lot-level monitoring and should be consulted.
This procedure describes the safe handling and deployment of HPDG series ultra-high discharge solid-state pouch cells. Proper compression mounting and adherence to certified electrical parameters are critical to prevent thermal runaway and capacity degradation.
Required Equipment: Rigid compression fixture plate
- Verify Safety Documentation
Verify that the UN38.3 and MSDS safety testing datasets are available for the specific lot before deployment. - Mount Cell in Compression Fixture
House the cell array securely within a rigid compression fixture plate structure. - Apply Certified Parameters
Apply only the certified charge and discharge parameters as specified by the manufacturer. - Monitor Terminal Voltage
Prevent the terminal voltage from dropping below the specified low potential floor during discharge.
What is the performance trade-off between the 12 Ah and 22 Ah variants of the HPDG series solid-state cells?
The 12 Ah variant delivers an extreme 20C continuous discharge rate with ≤0.6 mΩ internal resistance, optimized for maximum instantaneous power in high-speed maneuvers. The 22 Ah variant offers higher capacity at a 12C continuous discharge rate with ≤0.65 mΩ internal resistance, providing longer runtime while still supporting high-current loads. The choice depends on whether peak torque or sustained energy is prioritized.
What mechanical and electrical integration constraints apply when installing HPDG cells into a custom drone airframe?
The cells require stable external multi-point clamping forces to maintain uniform contact across internal layers and must be housed in a rigid compression fixture plate structure. Customized dimensional sizing, heavy-gauge current tabs, and alternative wire layouts can be specified for dedicated airframe integrations. Additionally, terminal contact strings must not drop below specified low potential floors to prevent damage.
What handling, safety, and storage infrastructure is required for HPDG series solid-state cells?
The cells demand stable external multi-point clamping forces and must be secured in a rigid compression fixture plate to ensure proper layer contact. Certified charge/discharge parameters must be followed, and terminal contact strings must not drop below specified low potential floors. Verified safety testing datasets (UN38.3/MSDS) are available for lot-level monitoring, and the cells maintain strict internal thermal control to protect surrounding avionics.
The HPDG series solid-state pouch cells deliver extreme continuous discharge rates (20C for 12 Ah, 12C for 22 Ah) with ultra-low internal resistance (≤0.6 mΩ), enabling high-torque drone maneuvers and efficient power delivery. However, these cells require rigid external compression fixtures and strict adherence to voltage floor limits, adding mechanical and monitoring demands to the system integration.
Positive
- Extreme continuous discharge capability: The 12 Ah variant supports 20C continuous discharge, providing the instantaneous torque needed for aggressive climbing and high-speed racing profiles without performance degradation.
- Ultra-low internal resistance: AC resistance ≤0.6 mΩ (12 Ah) and ≤0.65 mΩ (22 Ah) minimizes ohmic losses, reducing waste heat generation and improving energy efficiency under high current loads.
Trade-offs
- Requires external compression fixture: The solid-state pouch design demands stable multi-point clamping forces via a rigid compression fixture to maintain uniform internal layer contact, adding mechanical complexity to the assembly.
- Mandatory low-voltage floor compliance: Terminal voltage must not drop below specified low-potential floors to prevent damage; precise charge/discharge monitoring and protection circuitry are essential.
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).





