Views: 7 Author: Site Editor Publish Time: 2025-08-29 Origin: Site

From August 26 to 28, 2025, ZNSHINE SOLAR appeared at The Smarter E South America in São Paulo, Brazil, the largest and most influential solar technology exhibition in Latin America. At the event, ZNSHINE SOLAR presented its latest generation of high-efficiency modules equipped with graphene innovation, demonstrating to global customers its strong capabilities and forward-looking strategy in the fields of high-efficiency photovoltaics and materials innovation.
At this exhibition, ZNSHINE SOLAR focused on showcasing several flagship products, including the 750W bifacial dual-glass HJT, the 640W bifacial dual-glass HJT, the 615W monofacial dual-glass HJT, the 630W N-type bifacial dual-glass, and lightweight flexible modules. ZNSHINE SOLAR’s HJT modules feature an excellent temperature coefficient (-0.24%/°C), outstanding low-light performance, LID/PID immunity, and an ultra-long lifecycle with power retention of more than 90.3% after 30 years. Through pre-cut silicon rod technology the risk of microcracks is reduced, light-conversion films enhance UV aging resistance, optimized edge sealing improves waterproofing capability, and the dual-glass plus frame structure ensures load resistance up to 5400/2400Pa. These features allow the products to remain stable under diverse environmental conditions and better meet the application demands of the South American market. Whether in Brazil’s hot and humid climate with frequent rainfall or in dusty and arid environments, the modules can maintain stable and efficient output, providing local customers with long-term reliable green energy solutions.
In addition, ZNSHINE SOLAR has introduced graphene coating innovation across its full range of modules. With high light transmittance and super-hydrophilic properties, graphene enables module glass to achieve both higher transparency and self-cleaning capacity. In benchmark testing by PV Magazine, ZNSHINE SOLAR’s graphene modules achieved a transmittance of 94.3%, with power generation increasing by 3.7%. This innovation effectively mitigates soiling issues caused by coal dust, sand, and other particulates, reducing power generation losses by about 35% in deserts, industrial zones, and construction-intensive areas. At the same time, graphene’s self-cleaning effect significantly reduces the frequency of manual cleaning, lowers the risks of potential microcracks and watermarks, and cuts power station O&M costs, saving customers considerable expenses annually. The application of graphene not only further improves the long-term stability of PV modules in complex environments but also positions ZNSHINE SOLAR’s products at the forefront of the industry in terms of both efficiency and durability.
With its strong product performance and service system, ZNSHINE SOLAR has won widespread trust from customers in the South American market. During this exhibition, the company once again received dual recognition from the international authoritative institution EUPD Research, being awarded both “Top Brand PV Brazil” and “Top Innovation Brazil.” This is the second consecutive year that ZNSHINE SOLAR has been named “Top Brand PV Brazil,” fully demonstrating the company’s sustained leadership in brand influence, market share, and customer satisfaction across Brazil and Latin America.
As a leader in continuous industry innovation, ZNSHINE SOLAR has always focused on the R&D and application of high-performance PV modules, continuously driving two-way innovation in product technologies and service models. Through a comprehensive localized operation system in Brazil, covering sales, technical support, and after-sales service, ZNSHINE SOLAR provides full-process guarantees for smooth project implementation, earning unanimous praise from customers. Looking forward, ZNSHINE SOLAR will continue to be driven by high-quality products and efficient services, working together with customers in South America and around the world to accelerate the transformation of energy structures and green, low-carbon development. Making green electricity more efficient!
The ZNSHINE Integrated PV, Energy Storage, and Charging System is built around the core concept of efficient and intelligent energy management, combining photovoltaic, storage, and charging functionalities. Tailored for residential, commercial, and industrial applications, this all-in-one clean energy solution leverages ZNSHINE's extensive expertise in the photovoltaic industry. Its flexible modular design caters to diverse application scenarios, significantly enhancing energy utilization efficiency while providing users with a low-carbon, convenient green energy experience.
In line with the global trend of energy structure adjustment and low-carbon development, ZNSHINE SOLAR introduces the ZNSHINE Integrated PV, Energy Storage & Charging System. Through technological innovation and efficient management, the off-grid mode of the system has become a new solution to address energy challenges in remote areas and regions with weak grid coverage. The ZNSHINE Integrated PV & Energy Storage System integrates photovoltaic power generation, energy storage, and intelligent control, offering high reliability and strong adaptability to provide users with sustainable clean energy solutions.
Industrial and commercial energy storage systems, as innovative power management solutions, are transforming the way businesses and enterprises utilize energy. By storing electricity during off-peak hours and discharging during peak times, these systems help reduce energy costs while serving as emergency power sources to ensure continuous supply during unexpected outages. This article delves into the energy storage segment of ZNSHINE’s Integrated PV&ES&CS System, showcasing its unique features and application advantages.
In recent years, the rapid development of solar photovoltaic (PV) technology has been accompanied by the continuous iteration of solar cell sizes. From the early 156mm era to today’s widespread use of larger 182mm and 210mm cells, each technological advancement has driven improvements in module power and optimization of system costs.
Graphene is hailed as the most revolutionary material of the 21st century, earning the title of "king of new materials" due to its exceptional properties. Composed of a single layer of carbon atoms arranged in a honeycomb lattice, graphene exhibits a range of remarkable physical characteristics. It is 100 times stronger than steel and has excellent electrical conductivity, with its carrier mobility at room temperature being approximately 10 times that of silicon. Additionally, graphene boasts outstanding thermal conductivity, with a thermal conductivity coefficient of up to 5300 W/mK, far surpassing most materials. Graphene is also nearly transparent, with an absorption rate of just 2.3% in the optical range. It retains excellent flexibility, allowing it to bend and deform while maintaining its structural integrity. These unique properties make graphene a material of enormous potential across various fields and are widely believed to herald a materials revolution.
When purchasing solar modules, performance and price are the two key factors to consider. The performance of a solar module depends not only on its photovoltaic conversion efficiency but also on the strength and durability of its structure. As a crucial support and protective component, the frame material has a direct impact on the overall performance of the module. Additionally, solar module frames, being high-value auxiliary materials, play a significant role in the module’s total cost structure. For instance, *the commonly used aluminum frame, with its strong mechanical properties, accounts for around 13% of the total module cost—surpassing other auxiliary materials like EVA, glass, backsheets, and solder ribbons—second only to the 55% cost share of the solar cells themselves.
Installing a solar photovoltaic (PV) system on a roof is a crucial process that requires ensuring the system efficiently captures solar energy while maintaining its safety and stability. This article will describe how to use the SRS (Solar Racking System) to install PV modules more securely and efficiently.
Una célula fotovoltaica es algo relativamente sencillo. Un material semiconductor, en el que se ha creado un diodo (se le ha dado polaridad), al que se le pone una capa azul antirreflejante y se conectan unos conductores eléctricos para extraer la electricidad. Digamos que la arquitectura de la célu