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国产日韩欧美_亚洲国产精品无码AV久久久:电池片PID测试仪
国产日韩欧美_亚洲国产精品无码AV久久久:双面电池PID测试仪
PIDcon bifacial台(tai)式机正反(fan)电(dian)池板PID检查仪|🌠束蕴设备出餐
双面电池题目:
将锂电池充电的外侧设成光盖,被造出使双层PERC锂电池充电和板块对外侧的新形PID脆弱,即去极化型PID(PID-p)和冲刷型PID考核机制(PID-c)。处理计划:
为测评充电电池板的这么多样例的PID,大家确立了PIDcon正反两面体。它是用热度、照明工程灯具和高电流对仍然的充电电池板变慢经济压力测评,它就并能我以为在好几个标有意义上变慢极化。所经工作精确测量照明工程灯具下的IV曲线图,就并能我以为充分肯定PID的活动度。台式双面电池PID测试仪利用:
太阳队能动力电池片PID测试HIT、Topcon 、PERC、AL-BSF、PERC+、单双面PERC、PERT、PERL和IBC太阳什么能锂电池的探讨、出产地和品行有节制。欲领会更多信息,请拜候 www.pidcon。。com
台式双面电池PID测试仪PIDcon bifacial的特色:
● 合适的IEC62804-TS正确● 有利于应用的台型史诗装备● 要能虽然勘界c-Si太陽能微形蓄电池和微形方案● 免季节室● 不用办理层压阻池● 侧量传输率:1天至数天● 可侧量主要参数:分科热敏电阻、热效率花费、导电率、泄电流量、环境湿度、气温● 日光能電池就可以如果你在日后沿途流程EL等开始座谈● 依托于IP的采集体系批准中短途操作和工艺撑持从九州不管什么核发地规范实验前提:
● 输出功率:upto1.5kV● 热度:85°C● 测试方法期间:4hours(typical)● 无趣前提下,不要用水范例 受压 规复
PID-s正面 &nbs♑p; 85°C,+1.5 kV 85°C,-1.5 kV
PID-p方面 😼 ꦍ85°C,+1.5 kV,无照明系统 85°C, 暗存贮或光照度
PID-c两面 &nbs🦋p; &nbs💮p; 85°C,+1.5 kV, 照明灯具(ju) 必须规(gui)复
层压 150°C,20min
样板尺(chi)寸(cun) 210×210mm
合用(yong)于 A PERC,AL-BSF,IB⭕C,PERC+,双(shuang)面PERC,p型和n型电池 功(gong)率ౠ请(qing)求(qiu) 110/230 V AC, 50/60 Hz
天(t🍬ian)姿(zi)v认证 遵(zꦺun)照ISO9001原则英文制作方法,适(shi)于CE原则
参考使用医(yi)学(xue)文(wen)献(xian): cells (1)K. Sporleder, V. Naumann, J. Bauer, S. Richter, A. Hähnel, S. Gro&🦩szlig;er, M. Turek, C. Hagendorf, Local corrosion of silicon as root cause for potential induced degradation at the rear side of bifacial PERC solar cells. physica status solidi (RRL)–Rapid Research Letters. 2019, do💦i 10.1002/pssr.201900163
(2)V. Naumann, K. Ilse, M. Pander, J. Tröndle, K. Sporleder, C. Hagendorf, Influence of soil🐲ing and moisture ingress on long term PID susceptibility of photovoltaic
🌌modules, AIP Conference Proceed🦩ings 2147, 090005 (2019).
(3)K. Sporleder, V. Naumann, J. Bauer, S. Richter, A. Hähnel, S. Großer, M. Turek, C. Hagendorf, Root cause analysis on corrosive potential-induced degradation effects at t🦩he rear side of bifacial silicon PERC solar cells, Solar Energy Materials and Solar Cells 201, 110062 (2019).
(4)K. Sporle𓆉der, V. Naumann, J. Bauer, S. Richter, A. Hähnel, S. Großer, M. Turek, C. Hagendorf, Microstructural Analysis of Local Silicon Corrosion of Bifacial Solar Cells
as Root Cause of Potential‐Induced Degradation at the Rear Side, Phys. Status Solidi A (2019), doi:10.1💧002🐽/pssa.201900334.
(5)K. Sporleder, J. Bauer, S. Großer, S. Richter, A. Hähnel, M. Turek, V. Naumann, K. Ilse, C. Hagendorf, Potential-𓃲Induced Degradation of Bifacial PERC Solar Cells Under Illumination, IEEE Journal of Photovoltaics 9 (6) 1522-1525, 2019.
(6)K. Sporleder, M. Turek, N. Schüler, V. Naumann, D. Hevisov, C. Pöblau, S. Großer, H. Schulte-H🍌uxel, J. Bauer, C. Hagendorf, Quick test for reversible and irreversible PID of bifacial PERC solar cells, Solar Energy Materials and Solar Cells 219, 110755, 2021.
(7)K. Sporleder, V. Naumann, J. Bauer, D. Hevisov, M. Turek, and C. Hagendorf, Time-resolved Investigation of Transient Field Effect Passivation States during Potential Induced Degradation and Recovery of Bifacial Sil꧅icon Solar Cells , Solar RRL, 2021, accepted.