会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 13. 发明授权
    • Automated solar module testing
    • 自动太阳能模块测试
    • US08228088B1
    • 2012-07-24
    • US12537260
    • 2009-08-07
    • Brett HinzeFranz MairhoferGeorge ChatalbashevJason CorneilleDarin Birtwhistle
    • Brett HinzeFranz MairhoferGeorge ChatalbashevJason CorneilleDarin Birtwhistle
    • G01R31/26
    • H02S50/10
    • Automated testing of solar panel modules employs a gantry system to continuously transfer modules in and out of a workstation where the modules undergo solar simulation current voltage testing and high voltage safety measurements. The gantry system includes a carriage and a clamp device that is adopted to receive and secure the perimeter of each module, which has a positive and negative junction box, located on its back side and contact pins are inserted into the junction boxes during testing. The clamp has an electrically conductive inner perimeter that engages the corresponding outer perimeter of module. High voltage testing determines the level of current leakage between the interior and exterior of the module. A takt time of fifteen seconds or better is achieved.
    • 太阳能电池板模块的自动化测试采用龙门式系统,连续地将模块进出模块进行太阳能模拟电流电压测试和高压安全测量。 台架系统包括滑架和夹紧装置,其被采用以接收和固定每个模块的周边,每个模块的周边位于其背侧,并且接触销在测试期间插入到接线盒中。 夹具具有导电的内周边,其与模块的相应外周接合。 高压测试可确定模块内部和外部之间的电流泄漏水平。 达到十五秒以上的时间。
    • 17. 发明申请
    • ABLATIVE SCRIBING OF SOLAR CELL STRUCTURES
    • 太阳能电池结构的摘要
    • US20120094425A1
    • 2012-04-19
    • US13234088
    • 2011-09-15
    • Osman GhandourAlex AustinDaebong LeeJason CorneilleJames Teixeira
    • Osman GhandourAlex AustinDaebong LeeJason CorneilleJames Teixeira
    • H01L31/18
    • H01L31/0749H01L31/0463H01L31/0465Y02E10/541
    • Provided herein are improved methods of laser scribing photovoltaic structures to form monolithically integrated photovoltaic modules. The methods involve forming P1, P2 or P3 scribes by an ablative scribing mechanism having low melting, and in certain embodiments, substantially no melting. In certain embodiments, the methods involve generating an ablation shockwave at an interface of the film to be removed and the underlying layer. The film is then removed by mechanical shock. According to various embodiments, the ablation shockwave is generated by using a laser beam having a wavelength providing an optical penetration depth on the order of the film thickness and a minimum threshold intensity. In some embodiments, photovoltaic materials can be scribed using picosecond pulse widths and certain wavelength and laser fluence levels.
    • 本文提供了激光划片光伏结构以形成单片集成光伏模块的改进方法。 所述方法包括通过具有低熔点的烧蚀性划线机构形成P1,P2或P3划线,并且在某些实施方案中基本上不熔化。 在某些实施例中,所述方法涉及在待移除的膜的界面和下层之间产生消融冲击波。 然后通过机械冲击将膜除去。 根据各种实施例,消融冲击波通过使用具有提供光学穿透深度的波长的激光束在膜厚度和最小阈值强度的顺序上产生。 在一些实施例中,光电材料可以使用皮秒脉冲宽度和特定波长和激光注量级进行刻划。