Solid-State Robot Battery 48V 20Ah Hot-Swap ATOMFAIR®

$1,200.00

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 48V 20Ah solid-state pouch battery module with 962Wh energy, 13S1P design, IPX7 rating, quick hot-swap, and CAN/RS485/BT. Order now.

SKU: AFMSDUUV843
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Description

Embodied Robot Dedicated Solid-State Battery (48V 20Ah Hot-Swappable Power Module) | ATOMFAIR

COMMERCIAL GRADE · PRODUCTION

Product Overview

Specifically engineered for high-performance Embodied Robots and AI research platforms, this system utilizes cutting-edge Solid-State Soft-Pack (Pouch) Cell technology. The module is designed to eliminate operational downtime by supporting intelligent dual-pack switching and a quick-release hot-swappable interface. This allows for seamless battery exchanges without system reboots, injecting stable, safe, and long-lasting core power into next-generation intelligent robotics. For bulk inquiries or official volume quotations, please contact us via email at inquiry@atomfair.com.

Technical Specifications

Parameter Detailed Specifications (48V20Ah Version)
Cell Type / Configuration Solid-State Pouch Cell / 13S1P
Typical Energy (Wh) 962 Wh
Continuous Charging Current 0.5C
Peak Discharge Current 3.0C
Dimensions (L*W*H mm) 120 * 165 * 200 mm
Communication Method Bluetooth, RS485, CAN
Operating Temperature Charge: 0~45°C | Discharge: -20~45°C
IP Rating / Cycle Life IPX7 / 2500 @ 70%

Core Features & Advantages

Uninterrupted Mission Runtime

Native support for hot-swappable interfaces and dual-battery balancing allows for continuous robot operation without power-down during battery swaps.

Solid-State Safety Standard

Utilizes advanced solid-state soft-pack technology for superior thermal stability and higher energy density compared to traditional Li-ion formats.

Smart Research Connectivity

Triple-protocol communication (CAN/RS485/BT) provides high-fidelity access to SOC/SOH data, ideal for precise algorithmic robot control.

Application Scope

  • Humanoid & Quadruped Robotics
  • Hospitality & Service Robots
  • Embodied AI Research Platforms
  • Indoor/Outdoor Autonomous Delivery

Accessories & Customization

Hot-Swap Kits: Custom quick-release mechanical docks available for standardized robot chassis integration.

BMS Protocol SDK: Official API documentation for ROS2 and specialized robotics control systems for real-time power analytics.

Bespoke Solutions: Custom voltage (24V-72V) and capacity configurations are available for laboratory prototypes.

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

This battery module requires strict adherence to specified temperature ranges during charge and discharge to prevent capacity degradation. The IPX7 rating allows temporary water immersion but does not permit continuous submersion during operation.

  • Temperature Constraints: Charge only within 0°C to 45°C and discharge within -20°C to 45°C to maintain safe operation and cycle life.
  • Cycle Life Limitation: The module is rated for 2500 cycles to 70% capacity; exceeding this may increase internal resistance and risk of failure.
  • Hot-Swap Handling Protocol: Always use the quick-release interface to swap packs while the system is running to avoid power interruption and potential electrical arcing.
  • Water Ingress Protection: The IPX7 rating protects against temporary immersion but the module must be dried immediately if exposed to liquids before reuse.

This procedure enables continuous robot operation by replacing a depleted battery pack without powering down the system. Follow these steps to ensure safe and reliable hot-swapping.

Required Equipment: Quick-Release Docking Station, Charged Solid-State Battery Pack (48V 20Ah)

  1. Verify System State
    Confirm that the robot is in stable operation and the load is within normal limits to avoid surge during swap.
  2. Disengage Depleted Pack
    Press the quick-release latch on the depleted battery pack to disengage it from the docking station.
  3. Remove Depleted Pack
    Slide the depleted pack completely out of the docking bay and set it aside for charging.
  4. Insert Charged Pack
    Align the charged battery pack with the docking bay guides and push it in until it locks into place with an audible click.
  5. Verify Communication
    Check the system interface to ensure the new pack is recognized via CAN, RS485, or Bluetooth and displays correct SOC.

How does the 0.5C continuous charging rate trade off against the 3.0C peak discharge and 2500-cycle life in high-torque robotic applications?

The 0.5C continuous charge rate prioritizes battery longevity and safety over fast charging, while the 3.0C peak discharge can support short bursts of high torque. This solid-state pouch module delivers 2500 cycles at 70% capacity retention, but sustained high-current draw above 3.0C is not supported. For applications requiring rapid recharging or uninterrupted high power, the trade-off is extended cycle life and thermal stability versus faster recharge or higher peak current.

Can this 48V solid-state battery module be directly integrated with ROS2-based robot control systems?

Yes, the battery features triple-protocol communication (CAN, RS485, Bluetooth) and a specific BMS Protocol SDK for ROS2. The SDK enables real-time power analytics and seamless data exchange for precise algorithmic control of embodied robots and AI research platforms. This eliminates integration friction for labs using standard robotics middleware.

What are the required storage conditions and safety handling procedures for the solid-state pouch cell module?

The module must be stored and operated within its charge temperature range of 0–45°C and discharge range of –20–45°C to maintain performance and safety. Its IPX7 rating allows temporary water immersion, but users should avoid physical puncture or compression of the pouch cells. The solid-state electrolyte inherently provides superior thermal stability and reduced fire risk compared to liquid lithium-ion systems, though standard high-voltage safety protocols should still be followed.

This 48V 20Ah solid-state pouch battery module is engineered for embodied robots, featuring hot-swappable dual-pack switching to eliminate downtime, triple-protocol communication for research integration, and solid-state safety advantages, though users must account for limited charge temperature range (0–45°C) and the IPX7 rating's lack of dust ingress protection.

Positive

  • Hot-swappable with intelligent dual-pack switching: Enables battery exchange without system reboot or power-down, maintaining continuous robot operation during swaps.
  • Solid-state pouch cell with higher energy density: Superior thermal stability and energy density compared to traditional Li-ion formats, providing safer and longer runtime for robotic platforms.

Trade-offs

  • Limited charging temperature range: Charge operation is restricted to 0–45°C, requiring thermal management in cold or hot environments; discharge range is -20–45°C.
  • IPX7 rating without dust protection: Rated for water immersion but offers no dust ingress protection, limiting suitability for dusty or particulate-laden environments.

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).

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