Project Detail

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🔒 Strong Proactive Safety Protection
🛡️ Comprehensive 3D Protection System
⚖️ Stable Isolation and Reliable Operation
🧩 High – Efficiency Integrated Design
📱 Digital Energy Management
🌈 Flexible Application Scenarios
💰 Excellent Economic Efficiency


Product Characteristics

🔒 Strong Proactive Safety Protection

Early – fault cell positioning warnings ensure stability. By promptly detecting potential cell abnormalities, it proactively prevents safety hazards and maintains system stability.

🛡️ Comprehensive 3D Protection System

Provides full – scale protection for equipment, assets, and personnel. This multi – dimensional protection minimizes risks and ensures worry – free operation in all aspects.

⚖️ Stable Isolation and Reliable Operation

Features isolation transformers to ensure dependable operation. Isolation transformers effectively isolate electrical interference, guaranteeing stable and reliable system performance.

🧩 High – Efficiency Integrated Design

One – piece design integrates key equipment. This design approach improves overall system efficiency and facilitates equipment management.

📱 Digital Energy Management

Digital methods achieve efficient management. Through digital control, it optimizes energy allocation and utilization, enhancing overall energy management efficiency.

🌈 Flexible Application Scenarios

Suitable for scenarios like optical storage micro – grids. Its versatility allows it to adapt to various energy storage needs in different settings.

💰 Excellent Economic Efficiency

Peak shaving and other measures reduce costs. By optimizing power usage patterns, it delivers good economic returns through cost reduction.

Imax1125 – 2170L: In-depth Parameter Analysis

DC – side Parameters

Cell Type

Utilizes LFP314Ah cells. LFP (Lithium Iron Phosphate) cells offer high safety, long cycle – life, and stable electrochemical performance, forming a reliable energy storage foundation.

Specifications

Rated at 1125kW/2170kWh. This power – energy combination is designed to meet the demands of large – scale energy storage applications, providing substantial power output and ample energy capacity.

Battery System Configuration

Configured as 2170.3kWh/9P240S. This configuration optimizes the battery pack’s performance, ensuring efficient energy storage and discharge.

System Rated Voltage

The system rated voltage is 768Vdc, which is suitable for high – power energy storage systems and facilitates integration with power conversion equipment.

Voltage Range

The DC voltage range is 672 – 864Vdc. This wide range allows for flexible charging and discharging under various operating conditions.

AC – side Parameters

AC Rated Power

The AC rated power is 1125kW (125kW * 9). It can effectively support the power needs of industrial and commercial applications.

AC Maximum Power

The AC maximum power is 1237kW, providing short – term over – power capabilities to handle sudden peak loads.

AC Current Distortion Rate

The AC current distortion rate is ≤3%, ensuring high – quality power output and reducing interference with other electrical equipment.

DC Component

The DC component is 100% (specific meaning depends on system parameters, indicating a certain operating state).

Grid Rated Voltage

The grid rated voltage is 400Vac/3P + N + PE, a common industrial power supply standard.

Power Factor Adjustable Range

The power factor adjustable range is -1 ~ 1, allowing for flexible adjustment to match grid requirements and improve power quality.

Rated Grid Frequency

The rated grid frequency is 50Hz/60Hz, making it compatible with different grid frequencies around the world.

System Parameters

Maximum System Efficiency

The maximum system efficiency is ≥88%, reducing energy losses during energy conversion and improving overall system performance.

Charge – Discharge Rate

The charge – discharge rate is 0.5P, which helps protect the battery cells and prolongs their service life.

Discharge Depth

The discharge depth is 95%, maximizing the utilization of stored energy in the battery.

Cycle Times

The cycle times are ≥8000 times, indicating a long service life and good cost – effectiveness.

Communication Interface

The communication interface supports Ethernet/RS485, facilitating easy integration with monitoring and control systems for remote management.

Protection Level

The protection level is IP55, providing effective protection against dust and water ingress, ensuring reliable operation in various environments.

Cooling Method

The cooling method combines liquid cooling and forced air cooling. This approach maintains optimal operating temperatures for different components.

Operating Temperature Range

The operating temperature range is -25°C ~ 55°C, allowing the system to operate in diverse climatic conditions.

Relative Humidity

The relative humidity range is 5 – 95%RH, with no condensation, suitable for various humidity environments.

Noise Level

The noise level is ≤80dB, minimizing noise pollution in the operating area.

Altitude

The system can operate at altitudes ≤2000m (derating above 2000m), suitable for different geographical locations.

Fire – fighting System

Features a fire – fighting system with gas sol (at PACK – level and cluster – level) and water fire – fighting. This multi – layered fire protection ensures high safety.

Dimensions (WidthDepthHeight)

The dimensions are 605824382591(mm), designed for easy installation in available spaces.

Weight

The weight is 25t, manageable for transportation and installation with proper equipment.

Compliance Standards

Complies with UN3536, UN38.3, IEC62619, UL9540A, UL1973 standards, ensuring product quality, safety, and reliability.

 

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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