On August 26, 2025, Shanghai Naiji Electric Power Group Co., Ltd. officially commissioned its 830KW AC-side photovoltaic power generation project. By utilizing factory rooftops for solar panel installation, the project maximizes land resource efficiency while significantly reducing carbon emissions, aligning with green and low-carbon development principles. Operating under the "self-consumption with surplus feed-in" model, it not only substantially lowers the company’s electricity costs and alleviates grid demand but also generates steady economic returns through surplus electricity sales, achieving both environmental and economic benefits.
As a wholly-owned subsidiary of Germany’s SG Electric Co., Ltd., SG Electric (Shanghai) Co., Ltd. is driven by German engineering excellence and innovative R&D capabilities. The company supplied a full suite of core electrical equipment, including smart grid-connected cabinets and intelligent circuit breakers. With outstanding product performance and system stability, it ensured secure grid integration and long-term efficient operation, providing comprehensive technical support for worry-free power management and maintenance.
Amid accelerating energy transition, SG Electric (Shanghai) will continue to deepen its philosophy of "German Craftsmanship, Empowered Electricity," actively exploring advanced solutions in renewable energy sectors such as integrated photovoltaic storage, smart microgrids, and energy management systems. Guided by the strategy of "Green Manufacturing, Smart Innovation," the company is committed to driving the transformation of industrial energy structures toward high efficiency, cleanliness, and digitalization, helping enterprises achieve energy conservation and sustainable development goals.
Moving forward, SG Electric will strengthen strategic collaboration with domestic and international partners to jointly build a green energy ecosystem, contributing technological and industrial expertise to realize dual-carbon goals and advancing together into a new era of energy.


