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Energy Storage Container

Energy Storage Container

Product Introduction: An energy storage container is a pre-engineered, containerized battery energy storage system (BESS) designed for rapid deployment and scalability. Built within a standardized shipping container frame, these systems integrate lithium-ion or flow batteries, inverters, cooling...

PRODUCT INTRODUCTION

PRODUCT INTRODUCTION

 

Product Introduction:

 

An energy storage container is a pre-engineered, containerized battery energy storage system (BESS) designed for rapid deployment and scalability. Built within a standardized shipping container frame, these systems integrate lithium-ion or flow batteries, inverters, cooling systems, and energy management software. Ideal for industrial, utility, and renewable energy projects, they provide plug-and-play energy resilience, peak shaving, and renewable integration while minimizing installation time and costs.

Container BESS
Container BESS

Key Advantages of Energy Storage Containers

1. Modular & Scalable Design

Plug-and-Play: Pre-assembled components enable deployment in weeks, not months.

Expandable Capacity: Stack multiple containers to scale from 500 kWh to 100+ MWh.

2. Cost Efficiency

Lower Installation Costs: Eliminate complex civil works with pre-wired, containerized systems.

ROI Acceleration: Reduce demand charges, participate in grid services (e.g., frequency regulation), and leverage tax incentives.

3. Extreme Durability

Weatherproof: IP54-rated enclosures withstand harsh environments (-30°C to 50°C).

Mobile Solutions: Easily transported for temporary or remote applications (e.g., mining sites, disaster recovery).

4. Smart Energy Management

AI-Powered Control: Optimize charging/discharging schedules using real-time data and predictive analytics.

Grid/Off-Grid Modes: Switch seamlessly between grid-tied, hybrid, or islanded operations.

5. Safety Compliance

Certified Safety: UL 9540, UN 38.3, and IEC 62619 certifications ensure fire resistance, thermal stability, and crash protection.

product-800-440
Container BESS

 

 

Model ESSC0500B-1075 ESSC1000B-2150
AC data
Rated power (kW) 500 1,000
Rated voltage (V) 400
Rated current (A) 722A 1,445A
Voltage range (V) 320V-460V
Rated frequency 50/60Hz
Frequency Range 45-55/55-65Hz
THDi(on-grid) <3%
THDu (off-grid) ≤ 1% linear; ≤ 5% non-linear
Power factor 1 (0.8 leading ~ 0.8 laging can be set)
Overload capacity 110% Long term
AC output 3W+N+PE
Isolation transformer 315/400
On -grid off-grid switching Support
PV data
Max.PV input voltage (V) 1,000
Max. PV power (kW) 600/660/720 1,200/1,320/1,440
MPPT operating voltage range (V) 250~850
MPPT full load voltage range (V) 450~850
Buck-boost mode Support
Battery data
Cell type 3.2V/280Ah/1C, LFP
Nominal voltage(V) 768V/1P240S
Nominal energy (MWh) 1.0752 2.1504
Working voltage range (V) 672~850V
Max. charge and discharge rate 0.5C@25℃
Cycles ≥5000
System data
Dimensions W *D *H (mm) 6,058×2,438×2,896 12,192×2,438×2,896
Net weight (kg) 21,000 38,000
Operating temperature (℃) 0 ~ +45
Relative humidity 0 ~95%(non-condensing)
Ingress protection IP54
Noise emission (dB) <75dB
Operating altitude 3,000m
Cooling Intelligent air cooling
Fire extinguishing system FM200/NVEC1230
Display Touch LCD display+cloud platform
EMS communication RS485,TCP/IP

 

 

Ground On Grid Solar System connects to grid, self consumption first, excess power can be sold to the grid.

Ground On Grid Solar System mainly consists of solar panels, grid tie inverter, brackets, etc.

 

Hybrid PV System can connect to grid, self consumption first, excess power can be stored in the battery

Hybrid PV System mainly consists of pv modules, hybrid inverter, mounting system, battery,etc.

 

Stand Alone PV System mainly used in remote off-grid community, military base, school, hospital.

Island Solar System

FAQs About Energy Storage Containers

Q1: What is the typical capacity range of a storage container?

A: Standard units range from 500 kWh to 5 MWh. Multiple containers can be combined for larger projects.

Q2: How long does deployment take?

A: Installation takes 2–4 weeks post-delivery, including site preparation and grid connection.

Q3: Are these containers safe in extreme temperatures?

A: Yes. Built-in HVAC and thermal management systems maintain optimal battery performance from -30°C to 50°C.

Q4: Can they integrate with existing solar/wind systems?

A: Absolutely. Containers include AC/DC coupling compatibility for seamless renewable integration.

Q5: What maintenance is required?

A: Minimal. Remote monitoring handles 95% of maintenance; annual on-site inspections check connections and cooling systems.

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