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Aquion Energy M110-LS83 > 48V 567 Amp Hour 30.6 kWh Aqueous Hybrid Ion (AHI) Battery
Aquion M110-LS83 > 48V 567 Amp Hour Aqueous Hybrid Ion Battery

Warranty: 5 Year
Compliance: Buy American

Availability: This item is no longer available.
Product Code: AQUION-ENERGY-M110-LS83

Description Datasheet

Aquion Energy M110-LS83 > 48V 30.6 Amp Hour 30.6 kWh Aqueous Hybrid Ion (AHI) Battery

Model M110-LS83
Series M-Line
Manufacturer Aquion Energy


Type Aqueous Hybrid Ion (AHI)
Dimensions 45.6" x 52.0" x 40.0"
Weight 3315 lbs
Shipping Method Freight
Nominal Voltage 48 V
Rated Capacity (20 Hour Rate) 567 AH /
30.6 kWh


Data Sheet Aquion Energy M-Line Batteries
Brochure Aquion Energy


  • Extremely high cycle life at 100% depth of discharge - 3000 cycles at 100% DoD; 4000 cycles at 80% DoD; 6000 cycles at 50% DoD
  • Extremely high abuse tolerance avoids frequent maintenance, downtime, or replacements
  • Ability to stand at partial state of charge with minimal self-discharge to provide reliable performance on demand
  • Wide operating temperature range with minimal degradation
  • Non-toxic, non-flammable, non-explosive, non-corrosive (classified as standard goods vs. hazardous goods)
  • Environmentally benign materials - no corrosive acids or noxious fumes
  • Better value than lead acid or lithium ion **See Documents Tab above for lead acid and lithion ion comparisons
  • No regular maintenance or active management required
  • Higher peak power rating with 20A in-line fusing
  • Energy can be extracted between 40-60 Vdc to sync up with LVD of standard inverters
  • Warranty: 5 Year full plus 3-year prorated

Detailed Information

Aquion Energy’s M-Line Battery Module is a modular building block for clean energy storage systems. The M110-LS83 and M110-L083 are composed of twelve S30-0080 Battery Stacks connected in parallel and come pre-wired as plug-and-play battery banks.

Based on Aquion’s safe, clean, and sustainable Aqueous Hybrid Ion (AHI™) technology, the S30-0080 Stack is the only Cradle to Cradle Certified™ energy storage product on the market. Designed for years of hassle-free operation in stationary, long-duration applications, AHI batteries are optimized for storing energy for residential, off-grid, and microgrid applications. The M-Line Battery Module delivers an unmatched combination of performance, safety, and environmental sustainability in a cost-effective battery platform.


  • Off-grid and micro-grid applications - these batteries have excellent cycle life even at high depths of discharge, reducing the need for system oversizing and costly battery replacements.
  • Energy management - allows users to avoid peak demand charges by shifting energy use to off-peak hours. Can also serve as an uninterruptible power supply (UPS) in the event of scheduled or unscheduled outages.
  • Grid services - large scale energy storage systems can make the grid more reliable and more flexible because they decouple energy services from a particular fuel source.

Residential Solar

  • Solar Self-Consumption: Store and consume all the solar energy you generate
  • Backup Power and Islanding: Use storage to ensure you have critical power during grid outages
  • Time of Use Optimization: Control energy costs by using energy stored in batteries during the highest-cost daytime grid hours
  • Demand Charge Reduction: Avoid peak demand charges by dispatching energy from your battery system to keep below the peak power threshold

Off-Grid and Microgrids

  • Solar Self-Consumption: Increase use of renewables and reduce reliance on fossil fuels
  • Islanding with Renewables: Store energy for later use to enable islanding and independence from the grid
  • Power Quality: Ensure access to critical power, manage intermittency and ensure stability

Energy Management

  • Demand Response: Shift energy use from the grid to batteries at times of high demand
  • Backup Power: Use storage to ensure you have critical power during grid outages
  • Peak Shaving/Demand Charge Reduction: Use batteries to avoid peak power demand charges
  • Solar Self-Consumption: Store energy generated on-site to maximize use of renewables and offset using energy from the grid during peak times

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