Power Batteries

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Engineering the Future of High-Performance Mobility & Power

AIMRSE Power Batteries Introduction - High-Energy Density for EV, Aerospace & Marine Applications

The global electrification transition demands power batteries with exceptional energy density, safety, and reliability across diverse applications. AIMRSE delivers advanced semi-solid-state and liquid lithium-ion solutions engineered for electric vehicles, aerospace, marine, industrial, and specialized high-power use. Our batteries are mission-critical components that enable innovation and ensure operational safety.

We adopt an application-first design philosophy, tailoring cell chemistry (NMC, LFP), formats, and intelligent BMS to meet precise power, environmental, and regulatory requirements. Our solutions achieve up to 300 Wh/kg, support ultra-fast charging (up to 4C), and deliver thousands of deep cycles for optimized TCO. Multi-layer safety—ceramic separators, flame-retardant electrolytes, real-time monitoring—exceeds UN R100, ISO 26262, and DNV-GL standards. For OEMs and research teams, we provide custom design, thermal simulation, and lifecycle testing. Our vertically integrated supply chain and regulatory expertise ensure compliance with EU, US, and Asian mandates, accelerating your time-to-market with reliable, intelligent energy storage.

Product Portfolio

High-Energy Density Semi-Solid State Power Battery Cells by AIMRSE - Next-Gen EV Applications (≥300 Wh/kg)

Next-Gen≥300 Wh/kgEnhanced Safety

Semi-Solid State Power Batteries

AIMRSE's Semi-Solid State batteries utilize a gel-polymer composite electrolyte with reduced liquid content (≤20%), achieving ≥280 Wh/kg (roadmap to ≥350 Wh/kg) and significantly improved safety by suppressing dendrite growth. Ideal for premium EVs and aviation, they feature a silicon-dominant anode (>1500 mAh/g) paired with high-voltage NMC cathodes, supporting 3C discharge. Enhanced mechanical stability and ionic conductivity ≥5 mS/cm deliver extended cycle life. Cells pass nail penetration, overcharge, and 90°C storage tests with thermal runaway onset above 150°C. Available in large-format pouch (20–100Ah).

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AIMRSE High-Power Liquid Lithium NMC/LFP Battery Packs - EV & Industrial Applications (Fast Charge, Cost-Optimized)

NMC/LFPFast ChargeCost-Optimized

Liquid Lithium Power Batteries

AIMRSE's Liquid Lithium portfolio offers two proven chemistries: high-energy NMC (250–280 Wh/kg) for passenger EVs and drones, and ultra-safe LFP (160–190 Wh/kg) with >4000 cycles for commercial and industrial use. Both support fast charging (2.5C, 10–80% SOC in <20 min) and incorporate ShieldTech™ ceramic-coated separators. Manufactured in dry rooms (<-40°C dew point), our modular packs integrate liquid cooling and a vehicle-grade BMS with CAN FD communication, ensuring seamless powertrain integration and long-term reliability.

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AIMRSE Special-Scenario Power Batteries - Ruggedized Systems for Extreme Environments (Subsea, Aerospace, Defense)

Extreme EnvironmentMilitary-GradeCustom Built

Special-Scenario Power Batteries

Engineered from the ground up for extreme environments: deep-sea (tested to 600 bar), high-altitude UAVs, polar vehicles, and defense systems. Standard operating temperature -40°C to +85°C (extended -55°C to +125°C) with MIL-STD-810H shock/vibration resistance. We utilize specialized chemistries like Li-S for ultra-lightweight or LTO for high pulse power. Enclosures feature hermetic seals, pressure compensation, and C5-M corrosion protection. Each system includes a hardened redundant BMS with isolated communication, compliant with ITAR and export control.

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Success Cases & Applications

200kWh High‑Energy Battery System for London Electric Bus Fleet

AIMRSE partnered with a major London transport operator to retrofit 20 double‑decker buses with our high‑energy NMC liquid lithium battery packs. Delivering 260 Wh/kg cell energy density and 2.5C fast charging capability, the system enables 24/7 operation with minimal downtime—even during peak hours.

Key Challenges & Solutions:
  • Fast Charging Throughput: 2.5C charge rate (10–80% SOC in 18 minutes) with active liquid cooling maintaining ΔT < 3°C.
  • Structural Integration: Custom enclosure directly replaces original diesel tank mounting points, simplifying retrofitting.
  • Safest Operation: Full compliance with ECE R100.2 and ISO 26262; pack‑level IP69K protection against high‑pressure washing.
Project Data
LocationLondon, UK
Capacity200kWh / 400kW
In ServiceMarch 2024
NMC Fast Charge Heavy‑Duty

1.5MWh Hybrid‑Electric Ferry Retrofit in Norway

A Sognefjord ferry was upgraded with AIMRSE LFP power batteries to reduce emissions and fuel consumption by 85%. The 1.5 MWh system meets stringent DNV‑GL maritime standards, featuring IP67 sealed enclosures and a redundant BMS architecture for fail‑safe operation in harsh marine environments.

Key Challenges & Solutions:
  • Corrosion Resistance: C5‑M marine coating and hermetic connectors prevent saltwater ingress.
  • Shock & Vibration: Battery racks tested to 10G peak acceleration (DNV‑GL CG‑0339).
  • Safety Compliance: Full DNV‑GL type approval including thermal runaway propagation test.
Project Data
LocationSognefjord, Norway
Capacity1.5MWh / 750kW
ApplicationHybrid Ferry
LFP DNV‑GL Marine

350Wh/kg Semi‑Solid State Battery for High‑Altitude UAV

Developed for a stratospheric pseudo‑satellite (HAPS) program, AIMRSE’s semi‑solid state cells deliver 350 Wh/kg with exceptional cycle stability at -40°C. The lightweight 25 kWh system enables 30+ days of continuous flight at 20 km altitude, far exceeding legacy Li‑ion performance.

Key Challenges & Solutions:
  • Extreme Cold & Low Pressure: Gel‑polymer electrolyte maintains ionic conductivity >3 mS/cm at -40°C.
  • Mass Optimization: Composite enclosure saves 35% weight compared to standard aviation packs.
  • Safety in Thin Air: Passed overcharge, nail penetration and low‑pressure thermal runaway tests.
Project Data
LocationStratospheric test (global)
Temp Range-40°C to +50°C
Cell TypeSemi‑Solid State (Si‑dominant)
Semi‑Solid 350 Wh/kg UAV

LTO Power System for Electric Mining Haul Truck

In Western Australia, a 100‑tonne mining haul truck was converted to full electric using AIMRSE’s LTO (Lithium Titanate) power batteries. The 350 kWh/2.1 MW system supports 6C fast charging and 10,000+ cycles, surviving extreme vibration, dust, and high ambient temperatures.

Key Challenges & Solutions:
  • Ultra‑Fast Recharge: 6C charging enables 10‑minute top‑ups during driver shifts, maximizing vehicle uptime.
  • Ruggedization: IP67 enclosure, shock absorbers and MIL‑STD‑810H vibration compliance.
  • Thermal Management: Dual‑loop liquid cooling keeps cells below 35°C even at 4C continuous discharge.
Project Data
LocationPilbara, Australia
Cycle Life>10,000 cycles (80% DoD)
CO₂ Reduction650 tons/year per truck
LTO High Power Mining

The AIMRSE's Advantages

Application-Led Custom Engineering

We reject one-size-fits-all solutions. Our engineers work with your design team to define requirements, simulate performance, and deliver optimized battery systems—from lightweight eVTOL packs to high-cyclability robot solutions.

Uncompromising Safety & Reliability

Safety is built into every layer, from cell materials to pack design with multiple disconnects. Proven by lifecycle data and failure analysis, our systems offer trusted performance and industry-leading warranty terms.

Global Regulatory & Compliance Mastery

Our in-house specialists stay current on EU, US DOT/EPA, UN, and regional regulations. We manage the full certification process, delivering turnkey compliance that accelerates time-to-market and reduces regulatory risk.

Global Certification & Compliance

AIMRSE power batteries are engineered to meet and exceed the world's most stringent safety and performance standards. Our products hold certifications including UN 38.3 (Transport), IEC 62619 (Industrial), UL 2580 (Automotive), IEC 62133 (Consumer/Portable), and CE / UKCA marking for the European and UK markets. For automotive applications, we comply with UN/ECE R100.2, GB 38031-2020 (China), and support development to ISO 26262 (Functional Safety). Our quality management system is certified to IATF 16949:2016 and ISO 9001:2015. We provide full test reports and certification dossiers to support your internal qualification and regulatory submissions.

Technical FAQ

What are the key advantages of semi-solid state batteries over conventional liquid lithium-ion?
Semi-solid state batteries offer a compelling step-change in safety and energy density. The reduced liquid electrolyte content (≤20%) minimizes fire risk and leakage. The solid matrix suppresses lithium dendrite growth, enabling the use of lithium metal anones for higher energy density (roadmap to >400 Wh/kg). They also exhibit wider operating temperature ranges and potentially longer cycle life due to reduced electrode-electrolyte interface degradation. However, current challenges include higher cost and slightly lower power density compared to advanced liquid systems, which is why AIMRSE offers both technologies to match application needs.
Can your power battery systems be integrated with existing vehicle or platform powertrains?
Absolutely. AIMRSE specializes in seamless integration. Our battery packs are designed as sub-systems, with mechanical interfaces, high-voltage connectors, and communication protocols (CAN FD, Ethernet, etc.) tailored to match your platform requirements. We provide full electrical schematics, 3D CAD models, and integration manuals. Our BMS can be configured to emulate the communication of major OEM systems or can be customized to your specific protocol. We also offer integration support services, including on-site commissioning and software calibration.
What is your approach to sustainability and the recyclability of your power batteries?
Sustainability is a core pillar of AIMRSE's strategy. Our batteries are designed for disassembly and recyclability, with clear marking of components per EU Battery Regulation requirements. We use water-based binders where possible and are reducing cobalt content in our NMC chemistries. We have established partnerships with leading EU and North American recyclers for a closed-loop recycling program. We also offer a second-life assessment and repurposing service for retired EV batteries, giving them a new application in stationary storage, thereby extending their useful life and reducing environmental impact.

Related Products

Note: Our battery cells and materials are intended for R&D and industrial testing. Complete energy storage systems are certified for operational deployment.

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