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Combiner Box Application Case for Austrian 1.1MW Hillside Farm Project
Combiner Box Application Case for Austrian 1.1MW Hillside Farm Project
Project Background
Located in an agricultural area on the slopes of Austria, local farmers aim to reduce electricity costs through photovoltaic power generation and align with the EU's "Fit for 55" initiative (aim for 45% renewable energy by 2030). The project has a total capacity of 1.1MW and will install 2,750 400W monocrystalline solar panels, each connected in series with 22 panels. The panels operate at approximately 10.15A and 26.67V, and are equipped with 63 18kW inverters.
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10KW photovoltaic energy storage power supply system project in the oil field area of ​​Malaysia
10KW photovoltaic energy storage power supply system project in the oil field area of ​​Malaysia
Project Background
This oilfield is located offshore/coastal Malaysia, characterized by a typical tropical marine climate: high temperature, high humidity, and high salt spray corrosion. The client required a stable, reliable, and low-maintenance clean energy power supply system to be deployed at a facility within the oilfield's operating area. This system would utilize the limited rooftop space (the photovoltaic rooftop) on site to provide the necessary energy storage backup for critical loads. The system required 30 335W solar panels, operating current 9.62A, and operating voltage 34.82V.Appendix: Key Equipment Parameters
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Application case of combiner box in 3.2kW household photovoltaic power station in California, USA
Application case of combiner box in 3.2kW household photovoltaic power station in California, USA
Project Background
In an agricultural area located on the hillside of Austria, local farmers aim to reduce agricultural electricity costs through photovoltaic power generation in order to save electricity bills and respond to the EU's "Fit for 55" plan (renewable energy accounts for 45% by 2030).
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9kW small photovoltaic power generation system intelligent combiner box integration project in Jing'an District, Shanghai
9kW small photovoltaic power generation system intelligent combiner box integration project in Jing'an District, Shanghai
Project Background
A distributed rooftop photovoltaic project in Jing'an District, Shanghai, required the construction of a 9kW solar energy system. The core equipment consisted of 60 monocrystalline solar panels with a full power output of 150W (peak voltage of 18.18V, open-circuit voltage of 21.6V, and peak current of 8.53A per panel). The system design employed 10 panels connected in series to form a single string (output voltage approximately 182V), with six branch inputs and a 6-input, 1-output Longchi photovoltaic combiner box for efficient power collection and safe management.
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Taizhou 22kW distributed photovoltaic power station combiner box application case
Taizhou 22kW distributed photovoltaic power station combiner box application case
Project Background
To reduce electricity costs, a manufacturing company in Taizhou constructed a 22kW distributed photovoltaic power station on its factory roof. The project utilizes 110 monocrystalline silicon modules (200W, 19.8V each), requiring efficient string current aggregation and safe transmission to the inverter. The client required a combiner box with high protection, intelligent monitoring capabilities, and adaptability to the high corrosion and typhoon-prone coastal environment. 
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Application case of photovoltaic combiner box for 46kW small and medium-sized factory rooftop photovoltaic system in Wenzhou, China
Application case of photovoltaic combiner box for 46kW small and medium-sized factory rooftop photovoltaic system in Wenzhou, China
Project Background
A client located in Liushi, Wenzhou, planned to install a clean, efficient photovoltaic power generation system on the roof of their small factory building to reduce operating electricity costs and implement green and sustainable development. The project involved installing 80 high-efficiency monocrystalline silicon photovoltaic modules (585W per module, 13.83A operating current, 42.3V operating voltage), totaling 46kW. The rooftop installation environment required electrical equipment with high reliability, ease of maintenance, and good environmental adaptability.
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