开始时间:2016-09-23 | 结束时间:2016-09-23 |
举办地区:上海 | 举办场馆:上海 |
主办单位:亚化咨询 | |
承办单位:亚化咨询 | |
本届会展面积:300 | 上届会展面积: |
本届展商数量:300 | 上届展商数量: |
上届观众人次: | |
参展报名 |
2016 N型晶硅电池及高效组件论坛 /N Type c-Si Cell and Module Forum 2016
亚化咨询将于2016年9月23日在常州召开2016 N型晶硅电池及高效组件论坛。
N型晶硅电池包括N-PERT/N-PERL电池、IBC电池和异质结电池三大类。相比P型晶硅电池,N型晶硅电池的少子寿命高,无光致衰减,弱光效应好,温度系数小,是晶硅太阳电池迈向理论最高效率的希望。2015年,松下HIT+IBC结构电池已经实现了25.6%的全球最高效率。ITRPV预测N型硅片的市场占有率将逐渐增加,到2025年超过35%。
N-PERT和N-PERL电池有比较大的效率提升潜力,结构简单,最大程度保留和利用现有设备和工艺,有望最先实现大规模量产。IBC(叉指状背接触)电池P-N结和电极全部在背面,完全消除了前表面栅线的遮光,量产平均效率可达23%。但其制程复杂,成本高昂,几乎为常规电池的两倍,低成本IBC技术是业界开发重点。
异质结电池有望成为下一代光伏发电的主流技术,其优势不仅在于能量转换效率高,还在于简单的低温制造工艺、薄硅片应用、温度系数和CTM低、可双面发电等。松下于2015年宣布,将提升其HIT系列组件产能至1GW,国内企业也在积极推进N型高效异质结电池的量产。随着产能扩张,异质结电池成本下降空间值得期待。
我们希望邀请行业专家做以下主题的报告:
1. “十三五”光伏行业展望与N型电池市场前景
2. N型硅片质量控制与需求展望
3. N-PERT/N-PERL电池不同工艺路线对比与优化
4. P型电池生产线改造升级至N型产线的技术方案
5. N型双面电池工艺技术及量产
6. 异质结电池规模化生产与良品率提升
7. 异质结电池导电浆料国产化与创新栅线设计
8. IBC电池制造工艺与成本降低路径
9. 异质结与IBC技术组合应用前景展望
10. 铸锭N型准单晶技术及配套金刚线切工艺
11. N型电池双玻组件双面发电应用优势
由于会议日期临近,如有意向参会或者赞助此次会议,欢迎您和我们联系。负责人:孔小姐 021-68726606-102/13918486381或Email至emma@chemweekly.com
N Type c-Si Cell and Module Forum 2016
N Type c-Si Cell and Module Forum 2016 will be organized by ASIACHEM on 23 September in Changzhou, Jiangsu, China.
N-type c-Si Solar cells include N-PERT/N-PERL cell, interdigitated back contact (IBC) cell and heterojunction (HJT) cell. Compared to P-type c-Si cell, N-type c-Si cell has high minority carrier lifetime, no light-induced attenuation (LID), good low-light effect, low temperature coefficient, is expecting to the theoretical maximum efficiency of c-Si solar cells. In 2015, Panasonic HBC (HIT+IBC) cell efficiency has achieved 25.6%, is the world''''s highest efficiency. ITRPV forecasts N-type silicon wafer market share will gradually increase with more than 35% by 2025.
N-PERT and N-PERL cells have a relatively large potential to enhance efficiency, simple structure, maximally retain and use the existing equipment and processes, are expected to firstly achieve mass production. IBC cell’s P-N junction and electrodes are all on the back, completely eliminating the gate line shading of front surface, the average mass production efficiency is up to 23%. But IBC cell’s production processes are complicated and have high cost, almost twice of the conventional cell, so IBC technology focuses on ways to reduce cost.
HJT solar cell is expected to become the next generation mainstream technology, has advantages of high conversion efficiency, simple low-temperature manufacturing process, thin wafer applications, low temperature coefficient and CTM, bifacial power generation. Panasonic announced in 2015 that it will increase HIT series module production capacity to 1GW, domestic enterprises are also actively promoting mass production of N-type high efficiency HJT cells. With the capacity expansion, cost reduction space of HJT cells is worth expecting.
The following presentations are expected to be delivered in the conference:
1. “13th FYP” PV industrial outlook & N-type solar cell market prospects
2. N-type silicon wafer quality control & demands outlook
3. Different process routes comparison & optimization of N-PERT/N-PERL cells
4. Upgrading solutions for P-type cell production line to N-type
5. N-type bifacial cell technology & mass production
6. HJT cell mass production & yield rate improvement
7. HJT cell paste localization & innovation designs
8. IBC cell manufacturing process & cost reduction
9. HBC technology application prospects
10. N-type mono-like-Si ingot casting technology & diamond wire cutting
11. N-type double-glass modules bifacial power generation application advantages
There are still a few presentation opportunities in the upcoming conference. If you have interests, please kindly contact with us:
Emma Kong
Tel: +86-21- 68726606-102
Tel: +86-13918486381
Email:emma@chemweekly.com
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