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ESS1-500/1075-0.4-L(DC plus AC) Series 1000V 2MWh Industrial and Commercial Energy Storage System

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Model: ESS1-500/1075-0.4-L(DC plus AC)
Nominal energy: 1075kWh
Working voltage: 600V~876V
AC rated power: 500kw
Operating temperature: -30℃~55℃

Commercial and industrial user side, grid side, power generation side applications.

Description
This integrated liquid-cooled energy storage system is developed by CONSNANT under the CNESS CUBE Mega 1000V Platform, model ESS1-500/1075-0.4-L (DC plus AC), with scalable energy capacity ranging from 0.4MWh to 2MWh. It is a standardized modular all-in-one energy storage solution integrating energy-storage-special LFP cells, liquid cooling thermal management, PCS, BMS, EMS, and full-range fire early warning system.
It covers full-scenario energy storage applications for customer side, grid side and power generation side, perfectly matching industrial peak-valley arbitrage, PV-storage integration, demand charge management, microgrid backup, grid frequency regulation and peak shaving projects.
The system adopts split container design with independent DC battery compartment and AC power compartment. Pre-assembled and fully tested before delivery, it only requires simple electrical and foundation connection on site, featuring fast deployment and easy maintenance. Certified by ISO, IEC and CE, it is applicable to global industrial & commercial energy storage projects.

 

Core Advantages:

  1. Aviation-grade 3D Full Safety System

    Equipped with perfluorohexanone fire suppression system & multi-stage active thermal runaway early warning. Full liquid cooling temperature control provides triple protection on cell, battery rack and system levels, completely avoiding thermal runaway risks and ensuring stable operation under extreme conditions.

  2. Ultra-high Return on Investment, Payback Period of 3-5 Years

    Realize peak load shifting, cut basic electricity fees, maximize self-consumption of PV power, and participate in grid auxiliary services. LCOS (Levelized Cost of Storage) is reduced by 40%, with extremely low full-lifecycle O&M cost.

  3. Ultra-long Service Life

    Adopt energy-storage dedicated LFP lithium iron phosphate cells with ≥10,000 charge-discharge cycles. The system is designed for 15-year service life, supporting 100% Depth of Discharge (DOD) without obvious capacity attenuation.

  4. Intelligent Cloud Platform for Low-Cost O&M

    Independent cloud monitoring platform supports remote real-time data collection of batteries, PCS, cooling and fire protection modules, automatic fault alarm, greatly simplifying on-site inspection and maintenance work.

  5. High Charge & Discharge Efficiency

    System overall efficiency ≥92.0%, standard 0.5P charge-discharge rate, minimizing energy loss to maximize storage revenue.

  6. Ultra-wide Operating Temperature Range

    Stable operation from -30℃ to 55℃, suitable for severe cold, high-temperature factory and outdoor open-air installation. Uniform liquid cooling eliminates local overheating.

 

Typical Application Scenarios:

  1. Industrial & commercial park peak-valley arbitrage & maximum demand control to cut electricity bills;
  2. Distributed PV + energy storage integrated system for self-consumption improvement;
  3. Emergency backup power for industrial parks, data centers and hospitals;
  4. Energy storage matching renewable power plants, grid-side frequency regulation, voltage regulation and peak shaving;
  5. Off-grid microgrid and EV charging station energy storage supporting.

 

Product service:
1. Pre-sales consultation; After-sales worry-free.
2. Support  OEM.
3. Online guidance and Technical support.

Technical Parameters:

Product  Name CNESS CUBE Mega 1000V platform
(Energy configurable 0.4~2MWh)
CNESS CUBE Mega 1500V platform
(Energy configurable 0.7~4MWh)
Model ESS1-500/1075-0.4-L
(DC plus AC)
ESS1-935/1860-0.7-L
(DC plus AC)
DC side parameters
Cell type LFP cell special for energy storage
Group  mode 5*IP240S IP416S*5
Nominal energy 1075kWh 1860kWh
Working voltage 600V~876V 1040V~1518V
Rated charge/discharge ratio 0.5P
AC side parameters
AC rated power 500kW 935kW
Rated grid voltage 380V 690V
Rated grid frequency 50HZ
System parameters
System efficiency ≥92.0% ≥92.5%
Discharge depth 100%
Number of cycles ≥10000
Operating temperature -30℃~55℃
Cooling  mode Liquid cooling
Fire protection system Perfluoro+ Active early warning
Size DC side:6058*1300*2000(mm)
AC side: 1300*1300*2200(mm)
DC   side:6058*1300*2896(mm)
AC   side:1300*1300*2400(mm)
Weight 11500kg 16500kg
What safety protection configurations does the system adopt? Does it have thermal runaway protection capability?
It is equipped with an aviation-grade three-dimensional safety protection system, integrated with perfluorohexanone fire suppression system and multi-stage active thermal runaway early warning device, forming a three-level safety protection barrier for cells, battery clusters and the whole system. It can monitor real-time battery temperature, voltage and current data, predict hidden dangers in advance, quickly handle thermal runaway risks, and fully ensure equipment operation safety.
Does the equipment adopt air cooling or liquid cooling? What are the advantages over air cooling?
The whole series adopts full liquid cooling heat dissipation solution, different from traditional air cooling. It has the advantages of uniform temperature control, low noise, dust and water resistance, and low energy consumption. It can effectively avoid local overheating and dust accumulation aging, adapt to long-term outdoor unattended operation, and greatly reduce failure probability and operation and maintenance costs.
What is the investment payback period of the equipment? What are the cost reduction advantages of energy storage?
The product investment payback period is only 3-5 years with significant cost reduction advantages. The system LCOS (levelized cost of storage) is reduced by 40%, and the full life cycle operation and maintenance cost is extremely low. It continuously reduces enterprise power consumption costs and improves power consumption benefits through peak-valley price arbitrage, peak demand reduction, distributed PV power consumption and participation in grid auxiliary services.
Does the system support capacity expansion? Can it be upgraded and renovated in the later stage?
It supports modular flexible expansion. Designed with a standardized modular architecture, the basic model has a capacity of 0.4MWh, which can be expanded to 2MWh on demand. In the later stage, capacity and power can be flexibly upgraded by adding modules according to the growth of factory power load and PV capacity expansion, adapting to long-term power consumption planning.

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