Eco-Friendly Energy Storage Systems for Sustainable Power Solutions

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Product Description

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Overview & Basic Info

Model NO.1MW
Warranty3 years
Nominal Capacity300kw-1MW
Cycle Life50000h
Product NameEss Energy Storage System
AC Frequency50Hz/60Hz
Installation SiteOpen Field
Technical SupportOnline Support

Cutting-edge Battery Energy Storage System (BESS) containers with modular design for seamless customization.

Energy Storage System

Our containerized BESS is the definitive solution for large-scale energy projects, incorporating advanced storage technologies for unmatched reliability.

Specifications

500KW PCS AND SOLAR CHARGER
AC380V, 50/60Hz, 10MPPT400VAC 50/60Hz
Max.PV Input Voltage1000V
MPPT Voltage Range250-850V
Max Efficiency98.1%
Size1200x720+1600x1050mm
1075KWh Battery Bank Details
20-foot Container, Battery Cluster
768V/1400AH
BMS Three-Level Management System
Auxiliary system & Electrical Equipment

Our Advantages

Packaging & Certifications

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Frequently Asked Questions

Q: Are your inverters pure sine wave output?

A: Yes, all our inverters provide true pure sine wave output, ensuring high-quality performance and protection for your appliances.

Q: What kind of output voltage can you provide?

A: Normally, we offer 110V, 115V, 120V, 220V, 230V, and 240V, with 50/60Hz self-adaptation. Special requirements can be customized.

Q: What's the difference between pure sine wave and modified sine wave?

A: Pure sine wave matches the public power grid with longer lifespan and no harmonic pollution. Modified sine wave can adversely affect inductive loads like refrigerators and air conditioners.

Q: What appliances can your inverters load?

A: Our inverters support household, office, and agricultural appliances, including inductive loads such as water pumps and air conditioners.

Q: How do I choose the right inverter?

A: Our sales team will recommend the most suitable inverter based on your specific power requirements and application needs.

Q: What is the benefit of a higher voltage inverter (24V or 48V)?

A: Higher voltages result in lower current, allowing for smaller wiring between the solar array and battery bank, increasing efficiency.

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