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    • 4. 发明申请
    • BACK-SURFACE-FIELD TYPE OF HETEROJUNCTION SOLAR CELL AND A PRODUCTION METHOD THEREFOR
    • 背表面型异质结太阳能电池及其制造方法
    • WO2011078520A3
    • 2011-11-10
    • PCT/KR2010009060
    • 2010-12-17
    • HYUN DAI HEAVY IND CO LTDYANG SU MIROH SUNG BONGSONG SEOK HYUN
    • YANG SU MIROH SUNG BONGSONG SEOK HYUN
    • H01L31/042
    • H01L31/1804H01L31/0682Y02E10/547Y02P70/521
    • The back-surface-field type of heterojunction solar cell according to the present invention comprises a crystalline silicon substrate of a first conductivity type, an intrinsic layer and an amorphous silicon layer of the first conductivity type which are laminated in sequence on the front surface of the substrate, an anti-reflective film laminated on the amorphous silicon of the second conductivity type, junction regions of the first conductivity type and junction regions of the second conductivity type which are formed to a predetermined depth on the inside of the substrate from the rear surface of the substrate, and first-conductivity-type electrodes and second-conductivity-type electrodes which are respectively provided on the junction regions of the first conductivity type and the junction regions of the second conductivity type; wherein the first-conductivity-type electrodes and the second-conductivity-type electrodes are disposed alternately.
    • 根据本发明的背表面型异质结太阳能电池包括:第一导电类型的晶体硅衬底,第一导电类型的本征层和非晶硅层,其依次层叠在第一导电类型的正面 基板,层压在第二导电类型的非晶硅上的抗反射膜,第一导电类型的结区域和第二导电类型的结区域,其从基板的后部形成到基板内侧上的预定深度 以及分别设置在第一导电类型和第二导电类型的结区域的结区域上的第一导电类型电极和第二导电类型电极; 其中第一导电型电极和第二导电型电极交替设置。
    • 7. 发明申请
    • QUALITY INSPECTION APPARATUS FOR A SOLAR CELL MODULE
    • 太阳能电池组件质量检测装置
    • WO2012005504A3
    • 2012-04-05
    • PCT/KR2011004923
    • 2011-07-06
    • HYUN DAI HEAVY IND CO LTDAHN JIN HOSONG SEOK HYUNSHIN SUNG YONG
    • AHN JIN HOSONG SEOK HYUNSHIN SUNG YONG
    • H01L31/042
    • H02S50/10
    • The present invention relates to a quality inspection apparatus for a solar cell module, which measures the voltages flowing between solar cell strings of a solar cell module that generates electricity from light, analyzes the difference between the amplitudes of the measured voltages between the solar cell strings, digitizing the level of the quality of the solar cell module in accordance with the result of the analysis, and displays the digitized level. The quality inspection apparatus for a solar cell module comprises: a voltage-measuring unit which measures the voltages flowing between solar cell strings of a solar cell module; a current-measuring unit which measures the current flowing along the solar cell strings; and a control unit which calculates the level of the quality of the solar cell module by analyzing the difference between the amplitudes of the voltages flowing between the solar cell strings, which varies in accordance with the variation in the amplitude of the current flowing along the solar cell strings, using the voltages flowing between the solar cell strings as measured by the voltage-measuring unit and the current measured by the current measuring unit, to thereby achieve maximized accuracy in the quality inspection of the solar cell module.
    • 太阳能电池模块的质量检查装置技术领域本发明涉及一种太阳能电池模块的质量检查装置,该太阳能电池模块的质量检查装置测量在由光产生电力的太阳能电池模块的太阳能电池串之间流动的电压,分析太阳能电池串之间的测量电压 根据分析结果数字化太阳能电池模块的质量水平,并显示数字化水平。 用于太阳能电池组件的质量检测装置包括:电压测量单元,测量在太阳能电池组件的太阳能电池串之间流动的电压; 测量沿太阳能电池串流动的电流的电流测量单元; 以及控制单元,其通过分析在太阳能电池串之间流动的电压的幅度之间的差异来计算太阳能电池模块的质量水平,所述差异根据沿着太阳能流动的电流的幅度变化而变化 使用由电压测量单元测量的在太阳能电池串之间流动的电压和由电流测量单元测量的电流,从而实现太阳能电池模块的质量检查中的最大精度。
    • 8. 发明申请
    • MASK FOR FORMING A FRONT ELECTRODE OF A SOLAR CELL
    • 形成太阳能电池正极的掩模
    • WO2011021811A3
    • 2011-06-16
    • PCT/KR2010005343
    • 2010-08-13
    • HYUN DAI HEAVY IND CO LTDLEE SANG SEOPSONG SEOK HYUNKANG GIL JOOPARK JUN YOUNGSHIN JONG SU
    • LEE SANG SEOPSONG SEOK HYUNKANG GIL JOOPARK JUN YOUNGSHIN JONG SU
    • H01L31/042H01L21/027H01L21/28
    • H01L31/022433Y02E10/50
    • The present invention relates to a mask for forming a front electrode of a solar cell, wherein a reduction in local areas in the intersecting portion between a busbar and finger lines is prevented during the formation of the front electrode of the solar cell, to thereby improve photoelectron conversion efficiency. The mask for forming a front electrode of a solar cell according to the present invention comprises: a main body having an area corresponding to the plane of the solar cell; and an opening which is formed in the main body and which has a shape corresponding to the circuit line of the front electrode of the solar cell. The front electrode comprises a busbar and a plurality of finger lines, wherein the busbar is vertically arranged and the finger lines are horizontally connected to the busbar. The opening has a busbar pattern and a finger line pattern with shapes corresponding to the busbar and the finger lines, respectively. The opening extends in the diagonal direction between the busbar pattern and the finger line pattern, in the portion at which the busbar pattern and the finger line pattern perpendicularly intersect.
    • 本发明涉及一种用于形成太阳能电池的前电极的掩模,其中在形成太阳能电池的前电极期间,防止了母线与指线之间的交叉部分局部区域的减少,由此改善 光电子转换效率。 根据本发明的用于形成太阳能电池的前电极的掩模包括:主体,其具有对应于太阳能电池的平面的面积; 以及形成在主体中并具有与太阳能电池的前电极的电路线对应的形状的开口。 前电极包括母线和多条指线,其中母线垂直布置,并且指线水平连接到母线。 开口具有分别与母线和指线对应的形状的母线图案和指线图案。 在母线图案和指线图案垂直相交的部分中,开口在母线图案和指线图案之间的对角线方向上延伸。
    • 9. 发明公开
    • Quality tester of solar cell module
    • 太阳能电池模块质量检测仪
    • KR20120005180A
    • 2012-01-16
    • KR20100065789
    • 2010-07-08
    • HYUN DAI HEAVY IND CO LTD
    • AHN JIN HOSONG SEOK HYUNSHIN SUNG YONG
    • H01L31/042
    • H02S50/10F21S8/006G01R19/165G01R27/02G06K11/02
    • PURPOSE: A quality inspection apparatus of a solar cell module is provided to maximize accuracy when inspecting in the quality inspection by analyzing size difference between solar battery string spacing voltages and producing quality of the solar cell module. CONSTITUTION: A voltage measurement part(100) measures voltage between solar battery strings. A current measurement part(110) measures a current flowing in the solar battery string. A controller(120) produces quality of the solar cell module. The controller analyzes size difference between solar battery string spacing voltages by using the voltage between the solar battery strings and the current which is measured. A display part(130) displays the quality of the solar cell module according to control the controller.
    • 目的:提供太阳能电池模块的质量检测装置,通过分析太阳能电池串间隔电压之间的尺寸差异并产生太阳能电池模块的质量,在质量检验中最大限度地提高精度。 构成:电压测量部件(100)测量太阳能电池串之间的电压。 电流测量部分(110)测量在太阳能电池串中流动的电流。 控制器(120)产生太阳能电池模块的质量。 控制器通过使用太阳能电池组之间的电压和测量的电流来分析太阳能电池组间隔电压之间的尺寸差异。 显示部(130)根据控制器显示太阳能电池模块的质量。
    • 10. 发明公开
    • Bifacial photovoltaic localized emitter solar cell and method for manufacturing thereof
    • 微波光伏局部发光太阳能电池及其制造方法
    • KR20120077713A
    • 2012-07-10
    • KR20100139777
    • 2010-12-31
    • HYUN DAI HEAVY IND CO LTD
    • LEE JOON SUNGYANG SU MISONG SEOK HYUNJUNG SANG YOONAHN SOO BEOMLEE KYUNG WONJU SANG MIN
    • H01L31/04H01L31/0216H01L31/18
    • H01L31/068H01L31/1804Y02E10/547Y02P70/521
    • PURPOSE: A solar cell with localized emitter receiving light from both sides and a manufacturing method thereof are provided to a sunlight absorption amount by increasing a light receiving portion on a substrate. CONSTITUTION: A front electrode(14) and a back electrode(15) are formed on top and bottom sides of a first conductivity type substrate. A first heavily doped region(10-2) having a second conductive impurity is locally formed on the top of the substrate. The first heavily doped region having a first conductive impurity is formed on a site excluding a region where the first heavily doped region having the second conductive impurity is formed on the top of the substrate. A second heavily doped region(10-4) having the first conductive impurity is locally formed on the bottom of the substrate. The second heavily doped region having the second conductive impurity is formed on the site excluding the region where the second heavily doped region having the first conductive impurity is formed on the bottom of the substrate. Dielectric layers(20, 21) and secondary electrode layers(30, 31) are successively laminated between the substrate and the front electrode and between the substrate and the back electrode, respectively.
    • 目的:通过增加基板上的光接收部分,将具有从两侧接收光的局部发射体的太阳能电池及其制造方法提供给太阳光吸收量。 构成:在第一导电型基板的顶侧和底侧上形成前电极(14)和后电极(15)。 具有第二导电杂质的第一重掺杂区域(10-2)局部地形成在衬底的顶部上。 具有第一导电杂质的第一重掺杂区域形成在除了在衬底的顶部上形成有第二导电杂质的第一重掺杂区域的区域之外的位置。 具有第一导电杂质的第二重掺杂区域(10-4)局部形成在衬底的底部。 具有第二导电杂质的第二重掺杂区域形成在除了在衬底的底部上形成有第一导电杂质的第二重掺杂区域之外的位置上。 电介质层(20,21)和次级电极层(30,31)分别依次层叠在基板和前电极之间以及基板和背面电极之间。