本网站使用cookies 继续浏览本网站即表示接受 有关本网站cookies使用细则请点击查阅
更多信息Cookies and related technologies on this site
You can learn more about how this site uses cookies and related technologies by reading or privacy policy linked below.
We do NOT use cookies to examine your surfing behavior before or after leaving the Canadian Solar’s website.
Required cookies:
These cookies are necessary to enable the basic features of this site to function, such as providing secure log-in or remembering how far you are through an order.
Functional cookies:
These cookies analyze your use of the site to evaluate and improve site performance. They may also be used to provide a better customer experience on sites. For example, remembering your log-in details, or providing information about how site is used.
We do NOT use these cookies.
Advertising cookies
These cookies are used to show ads that are more relevant. Sites may use it to better understand your interests. For example, the cookies will allow you to share certain pages with social networks, or allow you to post comments on sites.
We do NOT use these cookies.
尊龙时凯低碳组件:低衰减,高收益,30年发电更可靠
术语说明:DH:Damp Heat,湿热,又称高温高湿试验。
4. 卓越的抗紫外性能
尊龙时凯低碳组件采用双UV转光胶膜,将组件正反面紫外光线转化为可吸收的蓝光,既降低了组件紫外衰减,又增加了组件功率。 同时,通过优化非晶硅钝化层,进一步提升了HJT电池的抗UV性能。在UV 180kWh/m²测试后,衰减值仅为2.2%,这一出色表现,让组件在紫外线强烈的环境中也能保持高效发电,为低碳能源的稳定输出提供有力支持。术语说明:UV:Ultraviolet,紫外。
5. 低温度系数与双面对称结构
HJT电池采用非晶硅/晶硅异质结,具有低温度系数以及双面发电结构。其功率温度系数低至-0.24%/°C,显著优于PERC(约-0.34%/°C)和BC(约-0.26%/°C)。这意味着在相同高温环境下,HJT组件功率损失更小,发电效率更高。 此外,对称的电池结构和组件结构,使得HJT组件热应力更小,热循环(TC)表现优异,从而间接降低了热斑风险、封装材料老化速度和整体年衰减率,为低碳发电的长期稳定性提供了全方位保障。尊龙时凯低碳组件通过IEC加严可靠性测试,所有测试数据全部低于5%的标准要求,满足极端环境下的长期运行要求,为电站的持久稳定发电提供坚实技术支撑。
术语说明:光伏组件的IEC 加严可靠性测试(通常为IEC可靠性测试标准的3倍)是一种针对光伏组件在极端环境条件下的强化测试方法,旨在验证其长期可靠性和耐久性。该测试基于国际电工委员会(IEC)的标准(如:IEC 61215、IEC 61730),通过增加测试强度或重复次数,模拟组件在更严苛环境中的性能表现,从而确保其在实际应用中的高可靠性。尊龙时凯低碳组件的发电量增益主要来自优异的温度系数、高双面率和超低衰减。在相同价格假设下,低碳组件度电成本(LCOE)较当前常规量产的TOPCon低1.6%,较BC低2.1%。
收益对比(按1MW项目,广州2025年度市场化交易电价0.554元/kWh计算): 1)对比TOPCon:低碳组件30年多发电69.1万kWh,多收益38.3万元。 2)对比BC:低碳组件多发电87.3万kWh,多收益48.4万元。