Dedicated 48V 10Ah Solid-State Battery for Robotics (One-Click Rapid Swap) | ATOMFAIR
Next-Gen Pouch Cell Technology | 5.0C Peak Discharge | Industrial IPX5 Protection
Product Overview
Engineered for high-performance robotic platforms and scientific research, this system integrates cutting-edge High-Energy Solid-State Cell technology with an intelligent BMS. It is designed to deliver extended runtime and ultra-fast charging while remaining resilient against bumps, mechanical shocks, and extreme temperatures. The centerpiece of this module is the “One-click Release” mechanism, enabling battery swaps as swift as the wind to minimize operational downtime and unleash the full potential of your robot. For bulk inquiries or official volume quotations, please contact us via email at inquiry@atomfair.com.
Technical Specifications
| Parameter | Specifications for Model 48V 10Ah |
|---|---|
| Cell Type | High-Density Pouch Cell |
| Typical Energy (Wh) | 480Wh |
| Continuous Charging Current | 0.5C |
| Peak Discharge Current | 5.0C |
| Dimensions (L*W*H mm) | 120 * 100 * 180 mm |
| Communication Method | Bluetooth, RS485, CAN |
| Operating Temperature | Charge: 0~45°C | Discharge: -20~55°C |
| IP Rating / Cycle Life | IPX5 / 250 @ 70% |
Core Features & Advantages
Solid-State Pouch Architecture
Utilizes advanced solid-state soft-pack cells to provide a superior energy-to-weight ratio and enhanced thermal stability compared to traditional formats.
Rapid One-Click Release
Features a unique mechanical quick-swap interface, allowing for near-instantaneous battery replacement to maximize mission uptime.
Multi-Protocol Smart BMS
Standardized with Bluetooth, RS485, and CAN communication for real-time telemetry and seamless integration with robotic controllers.
Application Scope
- Autonomous Delivery & Service Robots
- Inspection & Surveying Quadruped Platforms
- Laboratory AI Research & Prototyping
- Indoor Logistics & Warehousing AMR
Accessories & Customization
BMS Integration: Real-time access to high-fidelity SOC/SOH data via mobile app or industrial CAN gateways.
Swap Docking: Specialized mounting rails and electrical docks are available for standardized robot chassis integration.
Customization: Alternative voltage platforms and enclosure materials can be tailored for high-vibration aerospace or military research environments.
The battery must be charged within 0°C to 45°C and discharged within -20°C to 55°C to ensure safe operation and prevent degradation. The IPX5 rating indicates protection against low-pressure water jets, but the battery should not be submerged or exposed to high-pressure cleaning.
- Temperature Constraints: Charge only between 0°C and 45°C, and discharge only between -20°C and 55°C.
- Water Exposure Constraints: The IPX5 rating allows resistance to water jets, but avoid submersion or high-pressure water exposure.
How does the 5.0C peak discharge current impact the battery's thermal management and cycle life during high-load robotic operations?
The ATOMFAIR 48V 10Ah solid-state battery is specified with a 5.0C peak discharge current and a cycle life of 250 cycles at 70% capacity retention. The solid-state pouch cell architecture provides enhanced thermal stability compared to traditional formats, helping manage heat during high-current bursts. However, sustained operation at peak discharge may accelerate capacity fade; the BMS monitors current and temperature to protect the cells.
Can the ATOMFAIR 48V solid-state battery communicate with third-party robotic controllers through CAN or RS485 interfaces?
Yes, the integrated multi-protocol BMS supports Bluetooth, RS485, and CAN communication, providing real-time access to high-fidelity SOC and SOH data. This enables seamless integration with industrial robotic controllers, CAN gateways, and mobile apps for telemetry monitoring.
What are the safe charging and discharging temperature ranges for this solid-state battery, and what does the IPX5 rating mean for field deployment?
The battery must be charged within 0–45°C and can be discharged from -20–55°C. The IPX5 rating indicates protection against water jets, making the module suitable for outdoor robotic platforms exposed to rain or washdown. Charging below 0°C should be avoided to prevent cell damage.
This 48V 10Ah solid-state pouch battery delivers 480Wh with a 5.0C peak discharge and integrated BMS supporting Bluetooth, RS485, and CAN for robotic integration, but requires careful thermal management due to a 250-cycle lifespan at 70% capacity and restricted charge temperature range of 0–45°C.
Positive
- Solid-state pouch architecture: The high-density solid-state soft-pack cells provide an improved energy-to-weight ratio and enhanced thermal stability over traditional liquid electrolyte formats, enabling safer operation in robotic platforms.
- One-click rapid swap mechanism: The mechanical quick-release interface allows near-instantaneous battery replacement, minimizing operational downtime during extended missions or multi-shift deployments.
Trade-offs
- Limited cycle life at 70% capacity: Rated for only 250 cycles before capacity degrades to 70%, which may require frequent replacement in high-uptime applications compared to longer-life Li-ion chemistries.
- Narrow charge temperature window: Charging is restricted to 0–45°C, limiting outdoor or cold-chain use unless the battery is pre-conditioned, and the discharge range of -20–55°C may still constrain extreme-environment 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).






