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Container Energy Storage System

Container Energy Storage System

Product Introduction: A container energy storage system is a pre-fabricated, all-in-one battery storage solution housed within a standardized shipping container. Engineered for rapid deployment and scalability, these systems combine high-capacity lithium-ion or flow batteries, inverters, thermal...

PRODUCT INTRODUCTION

PRODUCT INTRODUCTION

 

Product Introduction:

A container energy storage system is a pre-fabricated, all-in-one battery storage solution housed within a standardized shipping container. Engineered for rapid deployment and scalability, these systems combine high-capacity lithium-ion or flow batteries, inverters, thermal management, and advanced energy management software (EMS). Designed for industrial facilities, renewable farms, and grid-scale projects, they deliver plug-and-play energy resilience, peak load management, and seamless renewable integration while minimizing installation complexity.

Container BESS
Container BESS

Our BESS has these features:

1. Rapid Deployment & Modular Flexibility

Plug-and-Play Design: Pre-tested components reduce installation time to 2–4 weeks, vs. 6+ months for traditional builds.

Scalable Capacity: Expand from 500 kWh to 20+ MWh by stacking multiple containers.

2. Cost Savings & Fast ROI

Lower Installation Costs: Eliminate civil engineering and on-site assembly with pre-wired, containerized units.

Revenue Generation: Participate in grid services (frequency regulation, demand response) and reduce peak demand charges by 30–50%.

3. Extreme Durability

Weather-Resistant: IP55-rated steel enclosures operate in -40°C to 50°C environments (arctic to desert climates).

Mobility: Relocate units for temporary sites (e.g., construction, mining) or disaster recovery.

4. Intelligent Energy Management

AI-Driven Optimization: Predictive algorithms balance energy storage, solar/wind input, and grid demand in real time.

Dual-Mode Operation: Switch between grid-tied, off-grid, or hybrid modes without downtime.

5. Certified Safety

Global Compliance: Meets UL 9540, IEC 62933, and UN 38.3 standards for fire suppression, thermal runaway prevention, and transportation safety.

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

Q1: How much space does a container system require?

A: Standard 20- or 40-foot containers need minimal footprint (approx. 15–30㎡), including safety clearances.

Q2: What's the typical lifespan of these systems?

A: 10–15 years for lithium-ion (6,000 cycles at 80% DoD). Flow batteries last 20+ years with minimal degradation.

Q3: Can containers withstand harsh environments?

A: Yes. Built-in HVAC and insulation maintain optimal temps in extreme heat, cold, or humidity.

Q4: How do they integrate with existing solar/wind systems?

A: Compatible via AC or DC coupling. EMS software automatically syncs with renewables and grid.

Q5: What maintenance is needed?

A: Remote monitoring handles 90% of tasks. Annual on-site checks for battery health, cooling, and connections.

Q6: Are there financial incentives for containerized BESS?

A: Yes. Tax credits (e.g., U.S. ITC), grants, and accelerated depreciation apply in most regions.

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