Project Detail

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This is a highly efficient and reliable energy storage inverter mainly developed for small and medium-sized energy storage microgrids. It supports parallel operation of multiple units, hybrid operation with diesel generators, and both DC and AC coupling solutions. With an external STS, it enables rapid switching between grid-connected and off-grid modes. It is suitable for various scenarios such as small and medium-sized industrial and commercial applications, small island microgrids, farms, villas, and battery second-life utilization, meeting the diverse needs of different users.

System Overview

  1. Industrial and Commercial Energy Storage + Emergency Power Reserve:
    • This scene depicts a commercial or industrial facility equipped with energy storage systems to provide backup power during outages or peak demand periods. The system ensures uninterrupted operations and enhances energy reliability.
  2. Small and Medium-sized Optical Storage Diesel Microgrid:
    • This scenario illustrates a microgrid setup combining solar power (optical storage) with diesel generators. It’s designed for small to medium-sized applications, such as remote communities or small factories, to ensure a stable and sustainable power supply.
  3. Mobile Energy Storage:
    • This scene shows a portable energy storage unit that can be transported to different locations as needed. It’s ideal for temporary power needs, disaster relief, or events where a flexible power solution is required.
  4. Optical Storage Charging Station:
    • This scenario depicts a charging station powered by solar energy (optical storage) for electric vehicles or other battery-powered devices. It promotes clean energy usage and reduces reliance on the traditional power grid.

Product Highlights

  1. Grid-connected Inverter
    • Enables efficient conversion of direct current (DC) power to alternating current (AC) power, facilitating seamless integration with the electrical grid.
  2. 125% Overload Capacity
    • The system is designed to handle loads up to 125% of its rated capacity, providing additional power headroom for peak demands or unexpected surges.
  3. Diesel-hybrid Mode
    • Combines diesel power generation with other renewable or alternative energy sources, optimizing performance, fuel efficiency, and reducing environmental impact.
  4. Seamless Switching Function
    • Allows for smooth and instantaneous transitions between different power sources or modes of operation, ensuring uninterrupted power supply.
  5. Three-phase Independent Parallel Grid Control Technology
    • Enables independent control and synchronization of three-phase systems when connected in parallel to the grid, enhancing system stability, flexibility, and power quality.
  6. Microgrid Battery Heterogeneous Structure
    • Supports the integration and management of different types and chemistries of batteries within a microgrid, improving energy storage capabilities, system resilience, and overall performance.

Product Parameters

Parameter MSP100HCPS MSP125HCPS
Battery-side Parameters
Maximum Battery Voltage 950V
Rated Battery Range 680V
Rated Battery Voltage Range 680V-900V
Maximum Battery Current 150A 200A
AC Side (Grid-connected)
Rated Power 100kVA 125kVA
Rated Current 145A 181A
Rated Grid Voltage 400V/230V
Grid Voltage Range -20% ~ 15%
Grid Frequency Range 50Hz(47Hz ~ 52Hz) or 60Hz(57Hz ~ 62Hz)
Current Harmonic < 3%
Power Factor -1 ~ 1
AC Side (Off-grid)
Rated Output Power 100kVA 125kVA
Maximum Output Power 110kVA 137.5kVA
Maximum Output Current 160A 200A
Rated Voltage 400V/230V
Output Voltage Harmonic < 3%
Unbalance Degree 100%
Output Overload 1.1 times long-term/1.25 times 30ms
System Parameters
Installation Method Plug-in frame
Maximum Efficiency 98.50%
Power Consumption Standby < 20W/No-load < 200W
Protection Level IP20 (Core control part IP 5X) IP65
Dimensions W*L*H: 440*720*200mm
Weight 55kg
Temperature Range -30 ~ 60°C (Derate above 45°C)
Humidity 0 ~ 100%
Cooling Method Intelligent forced air cooling
Altitude 4000m (Derate above 3000m)

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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