Project Detail

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  • Rated Battery Side Voltage: 1331.2VDC
  • Cell Type: Lithium iron phosphate 3.2V/314Ah
  • Battery Pack Configuration: 1P104S/104.4992kWh
  • Battery System Configuration: 11P416S
  • Battery Capacity: 4597.9648kWh
  • Battery Operating Voltage Range: 1164.8~1497.6VDC
  • Max Charge/Discharge Current: 1727A(0.5C)
  • Battery Circuit Breaker: Already integrated
  • Battery Cooling Method: Liquid cooling

Liquid-Cooled Energy Storage Container

Type

Liquid-cooled energy storage container.

Application Solutions

  • Off-grid Solutions: Provide stable power in remote areas without grid access.
  • Charging Station Solutions: Support the construction of electric vehicle charging infrastructure.
  • Industrial and Commercial Solutions: Meet the energy demands of industrial and commercial users, reducing electricity costs.
  • Residential Community Solutions: Ensure reliable power supply for residential communities, enhancing living comfort.
  • Frequency Regulation Solutions: Help stabilize the power grid frequency, improving power quality.
  • New Energy Power Station Solutions: Integrate with new energy sources like wind and solar for efficient power generation.

Benefits

  • Enhance Grid Reliability and Flexibility: Ensure a stable power supply and adapt to varying loads.
  • Cost Savings: Reduce energy costs through efficient energy management.
  • Environmental Benefits: Promote clean energy use, reducing carbon emissions.
  • Energy Independence: Decrease reliance on traditional energy sources.
  • Improve Power Quality: Provide stable and high-quality electricity.
  • Scalability and Flexibility: Easily expand or adjust the system according to needs.
  • Support Electrification: Facilitate the transition to electric-powered devices and transportation.

Hardware

  • Battery Pack: Store electrical energy for later use.
  • BMS (Battery Management System): Monitor and manage battery performance and safety.
  • High-Voltage Box: Distribute high-voltage power within the system.
  • Power Distribution Box: Allocate electrical power to different components.
  • Fire Protection System: Ensure safety by preventing and controlling fires.
  • EMS Controller: Manage and optimize energy flow in the system.
  • Container: House all the components, providing protection and portability.

Software

  • Battery Management System Software: Control and monitor battery status in real-time.
  • Energy Management System: Optimize energy usage and distribution.

Cloud Platform

Imaxpwr Cloud: Enable remote monitoring and management of the energy storage system.

Parameter Table

Imax2586-4598L  Energy Storage Container Parameter Table.

 

 

Technical Parameters

Battery Side

  • Rated Battery Side Voltage: 1331.2VDC
  • Cell Type: Lithium iron phosphate 3.2V/314Ah
  • Battery Pack Configuration: 1P104S/104.4992kWh
  • Battery System Configuration: 11P416S
  • Battery Capacity: 4597.9648kWh
  • Battery Operating Voltage Range: 1164.8~1497.6VDC
  • Max Charge/Discharge Current: 1727A(0.5C)
  • Battery Circuit Breaker: Already integrated
  • Battery Cooling Method: Liquid cooling

General Parameters

  • Appearance Dimensions – Width*Depth*Height: 6058*2438*2896mm
  • Charge/Discharge Efficiency: 0.5C
  • Recommended Discharge Depth: 95%
  • System Cycle Times: 6000
  • Protection Grade: IP55
  • System Efficiency: ~91% (excluding auxiliary equipment energy consumption)
  • Coolant: 50% ethylene glycol + 50% water
  • Fire Protection System: Gas sol
  • Operating Outdoor Temperature: -30 ~ 60°C (>45°C衰减 – >45°C attenuation)
  • Operating Environment Relative Humidity Range: 0 ~ 95%
  • Operating Environment Altitude: <2000m
  • Cabinet Corrosion Protection Grade: C3 (C4/C5 optional)
  • Weight: ~40 Tons
  • SPD: DC Type II/AC Type II
  • Installation Method: Crane
  • Expandability: Cabinets can be connected in parallel for expansion

Monitoring System

  • Communication Method: RS485/Ethernet
  • Communication Protocol: MODBUS-RTU/MODBUS-TCP
  • Remote Control Platform: Imaxpwr Cloud

Project Overview

SunCare Hospital, a leading healthcare institution committed to sustainable operations and patient well-being, partnered with us to transition its energy source to solar. The project involved the full design and installation of a customized solar power system to reduce operating costs, increase energy reliability, and support the hospital's green initiatives.

Project Objectives

This project was designed to meet the hospital’s energy needs while promoting sustainability, reducing costs, and ensuring uninterrupted service for patients and essential medical operations.

Key Results & Benefits

What We Delivered

We provided a complete solar solution tailored to the hospital’s needs, ensuring performance, safety, and long-term energy savings without disrupting daily operations.

Custom Energy Assessment

We analyzed usage patterns and infrastructure to design a system that meets specific energy needs.

Seamless Installation Without Disruption

Our team installed efficiently with zero interruption to hospital operations and strict safety procedures.

Tailored Solar System Design

We created a solar layout that maximizes efficiency while matching the hospital’s structure and goals.

Reliable Backup and Monitoring System

We integrated smart monitoring and backup support to ensure continuous power for critical medical equipment.

Our Impact

This project is more than just an energy upgrade, it is a commitment to health, sustainability, and community leadership. The SunCare Hospital solar installation reflects how renewable energy can enhance essential services without compromise.

Client Testimonial

"Working with Solarize was a smooth experience. Their team truly understood our hospital’s needs and delivered a solution that saves energy, ensures reliability, and supports our long-term sustainability goals."

Dr. Lisa
Director of Operations, SunCare Hospital
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