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48V 306Ah 15.67kwh EVE 10000 cycles LiFePo4 Battery

$5,999.00$6,999.00

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Description

48V 15.67kwh EVE 10000 cycles LiFePo4 Battery

NOVEMBER SOLD OUT
END OF JANUARY PRE-ORDER OPEN NOW

Introducing the revolutionary 51.2V battery featuring next-generation A GRADE MB30 cells from EVE, designed to deliver unparalleled performance and longevity. Perfect for off-grid applications and future on-grid integration, this battery sets a new standard in energy storage. Currently the MB30 is the best cell that can be purchased from a major Tier 1 manufacturer like EVE energy.

Q. Why is this battery so well-regarded?
A. It incorporates one of the top two cell options globally, they are the most expensive 306AH cells from any of the leading manufacturers, they are matched and balanced by a highly compatible BMS that works with popular inverters like Victron,  DEYE and Growatt, among many others.

This Battery is cutting edge, featuring 2 amps of balance current per cell and a current-limiting feature for paralleled batteries, it outperforms most alternatives.
Why 2 Amps of balance current is such a good thing, many years from now, when the cells are older, this will help to extend the life of you battery further than all non active balancing BMS.
Nearly all other batteries on the market only have passive balancing. This design helps maximize the lifespan of the A+grade matched cells, ensuring greater longevity compared to small capacity and lower grade solar LFP batteries. It is also highly customisable and has all the most advanced features included. Its a wish list of a BMS and its built right into our premium and best battery.

Grade A vs Grade B

Features

  • Superior Cell Technology: Utilizes the highest grade EVE MB30 LFP cells available globally, ensuring unmatched quality and durability.
  • Impressive Cycle Life: Rated for 10,000 cycles, offering years of reliable performance.
  • Advanced Battery Management System (BMS): Equipped with a state-of-the-art BMS featuring 2A active balancing, providing optimal cell management and safety.
  • Bluetooth Connectivity: Enables real-time monitoring and management via your smartphone or other devices.
  • Compatibility: Works seamlessly with Victron and DEYE and most smart inverters on the market, ensuring versatile integration into various systems.
  • IEC 60947-2 – 250A DC Circuit Breaker built in Valued at $299 (Conforms to AS 60947.3:2018 DC-PV2)

Why Choose This Battery?

  • Unbeatable Value: Combines premium quality and wholesale to consumer competitive pricing, delivering the best value for your investment.
  • Longevity: With a lifespan designed to outlast other LiFePO4 batteries, you can count on sustained performance and reduced maintenance costs.
  • High Performance: Perfect for both off-grid and soon-to-be on-grid applications, this battery is engineered to handle diverse energy demands with ease.
  • Cutting-Edge Technology: Incorporates the most advanced BMS and high-grade cells to ensure safety, efficiency, and reliability.
  • Cells – Many batteries use 2000, 3000 or 4000 cycle cells. We don’t, We use EVE’s best 10,000 Cycle cells.
    The EVE MB30 is the best cell we can get our hands on, it is optimised for the longest cycle life of any cell on the market that we can buy. Released in 2024, the MB30 has uped the lifespan and quality, made in one of EVE’s newest production facilities, it is using the latest Lithium battery technology available, including granular graduation, and an improved electrolyte that is better able to withstand more cycles, that all of EVE’s other LFP cells.

 

Cost per Kwh

 

Ideal For

  • Off-Grid Living: Reliable power for homes, cabins, and remote locations without access to the grid.
  • Solar Energy Systems: Maximizes the benefits of renewable energy, storing and supplying power efficiently.
  • Backup Power: Ensures continuous power supply during outages, maintaining the operation of essential systems and appliances.
LiFePO4 Lithium Battery Pack Spec
Nominal Parameters
Voltage 51.2V
Capacity 306Ah (330AH ACTUAL)
Energy 15.67Kwh Rated Capacity
Dimensions (L*W*H) 585 x 610mm x 260mm (800 x 700mm Pallet)
Weight 110kg
Basic Parameters
Potential Lifespan (25℃) 15-20 Years of daily use at recommended 0.2C or less ≈25°C
Life cycles (70%DOD,25℃) Up to 10000 times
Storage time/ temperature 5 months @25℃; 3 months @35℃; 1 months @45℃;
Operation temperature 0℃ to 60℃ @60+/-25% Relative Humidity
Storage temperature 0℃ to 45℃ @60+/-25% Relative Humidity
Enclosure protection rating IP21
Electrical Parameters
Operation voltage 46-58.4v DC
Max.charging voltage 58.4v DC
Max.charging and discharging current 200A BMS  (300A for 15 Seconds)
Max Continuous power 10,000W

Important Note for the Battery Geeks – these MB30 cells cells are testing above 330ah when new. The cells are matched for capacity and Internal Resistance at EVE factory and then installed into the pack quickly. MB30 cells are our highest recommendation, These A+ GRADE cells are supplied with more than a spreadsheet and delivery report from EVE but also we can supply more documents that others cannot. (this is due to persistent and high amounts of fake A grade cells flooding the market)

 

Q. Why we have installed the High Quality MCCB inside every battery?
A. Its very likely to save YOU $500-1000 when installing for an external Australia regulations certified Battery Rated Circuit Breaker. 

  • MCCB: Higher interrupting capacity, meaning it can safely break larger fault currents (e.g., short circuits). This is critical in lithium battery systems, which can produce very high fault currents due to their low internal resistance.
  • MCB: Lower interrupting capacity usually limited to 125A.

Durability

  • MCCB: Built to withstand repeated trips and reset cycles, making them durable and reliable for large-scale, high-current systems.
  • MCB: Designed for light-duty applications and may wear out more quickly when exposed to high currents or frequent trips.

Overload Handling

  • MCCB: Can handle moderate overloads for extended durations, protecting batteries while allowing for transient surges (like motor start-ups or inverters ramping up).
  • MCB: Trips quickly under overload, which might lead to nuisance tripping in scenarios common with lithium battery systems.

 

Additional information

Weight 115 kg
Dimensions 80 × 70 × 45 cm
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EVE Official Datasheet MB30 306ah

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EVE Official Datasheet MB30 306ah Use this datasheet to find that the MB30 is rated for an official 10000 cycles at 0.5P (50% power being 489.6 Watts per cell)

We use EVE's latest generation of LFP cells, they are rated for higher cycles that all other batteries similar to this. 

Most batteries use 4000 or 6000 cycle cells. 

This battery uses the 10000 cycle cells. 

Likely Technologies Implemented in the MB series of LFP cells, in many cases these technologies are licensed and patented and shared between China’s battery manufacturer’s.

  1. Crystallized LFP Cathode Material:
    CATL has pioneered a fully nano-crystallized LFP cathode material based on hard carbon, not graphene, forming a highly efficient super-conductive pathyway. This sophisticated nanostructure promotes the swift extraction and movement of lithium ions, The stability and performance of the cathode are substantially improved, contributing to the extended cycle life and reliability of the battery. EVE and others like Hithium, CALB and REPT are all implementing the same technologies.
  2. Granular Gradation Technology:
    This technology involves placing every nanometer particle in the optimal position within the cathode. By precisely positioning these particles, EVE has significantly improved the energy density and durability of the battery. This meticulous structuring at the nanoscale level minimizes degradation and ensures uniform performance over many cycles
  3. 3D Honeycomb-Shaped Anode Material:
    The use of a 3D honeycomb-shaped material in the anode helps to increase energy density while effectively controlling the volume expansion during charge and discharge cycles. This design innovation not only boosts the battery’s capacity but also enhances its structural integrity, contributing to its extended lifespan
  4. Advanced Separator Technology:
    The new LFP battery incorporates an ultra-thin, high-safety separator that improves ion transport while maintaining structural stability. This separator technology is crucial for achieving high charging speeds and ensuring safety during operation, which are critical factors for the long-term durability of the battery
  5. Superconducting Electrolyte Formulation:
    The new battery employs a superconducting electrolyte formulation that enhances ion conductivity. This innovation ensures that the battery can charge and discharge at higher rates without compromising its longevity. It also contributes to the battery’s ability to maintain performance in extreme temperatures

DC Molded Case Circuit Breakers (MCCBs) are particularly suited for photovoltaic (PV) and battery applications due to their ability to handle the unique characteristics of DC power, such as high inrush currents and the continuous nature of direct current, which can be harder to interrupt than alternating current (AC). Here are a few reasons why DC MCCBs are advantageous for these applications:

  1. Arc Suppression: DC circuits maintain constant current flow, making it challenging to extinguish arcs. DC MCCBs are designed with enhanced arc suppression features to break the circuit safely without sustained arcing, which is essential for battery disconnection and PV applications.

  2. High Current Interrupting Capacity: Photovoltaic systems and batteries, especially in large installations, can have high fault currents. DC MCCBs are designed to interrupt these high currents effectively, preventing damage to other components and enhancing system safety.

  3. Voltage Rating and Isolation: DC MCCBs are rated to handle high voltages typical in PV systems. For battery applications, these breakers meet IEC / EN 60947-2 standards, ensuring they can perform safely across various load conditions and provide effective isolation when required.

  4. Compliance with AS/NZS 5139:2019: This standard is specific to battery energy storage systems in Australia and New Zealand, requiring MCCBs to act as the main battery disconnect. Compliance ensures the breakers are reliable, safe, and suitable as a main disconnect, meeting regulatory requirements for battery storage safety.

  5. Reliable Overload and Short Circuit Protection: DC MCCBs provide both overload and short-circuit protection, essential for safeguarding both battery and PV system components from potential thermal and electrical damage, which could arise from system faults.

These features make DC MCCBs a robust choice for ensuring safe and reliable operation in PV and battery applications, especially when they are certified under IEC / EN 60947-2 standards and comply with AS/NZS 5139:2019.

This battery incorporates state-of-the-art cells and an advanced Battery Management System (BMS) that represent cutting-edge developments in energy storage technology. These components are so new and innovative that the necessary time to conduct extensive testing and obtain Laboratory Safety Certifications has not yet elapsed. This means the technology, despite its sophistication and potential, is still in the process of meeting all regulatory and safety requirements.

In essence, the technology is ahead of the regulatory curve, and the compliance process is ongoing to satisfy the formalities and rigorous standards required for full certification.

Right now our batteries are being shipped to the IEC for testing, this process will take a couple of months, Once we have this certification, we can then go to the CEC/SAA and apply to be a registered battery and importer and then you will be able to use this battery on the Australian Grid, with any compatible inverter, that works with the Pylontech protocol or its own compatible protocol. 

This means this battery will be able to conenct to VPP's such as Amber and others that support inverters such as the DEYE Hybrid Inverters that are currently our choice for OnGrid in Australia. 


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