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    • 2. 发明授权
    • Thin film type solar cell and method for manufacturing the same
    • 薄膜型太阳能电池及其制造方法
    • US08563846B2
    • 2013-10-22
    • US12811085
    • 2008-12-29
    • Won Seok ParkYong Woo ShinSeong Ryong Hwang
    • Won Seok ParkYong Woo ShinSeong Ryong Hwang
    • H02N6/00H01L31/042H01L31/00H01L21/00
    • H01L31/18H01L31/046Y02E10/50
    • A thin film type solar cell and a method for manufacturing the same is disclosed, the thin film type solar cell comprising a substrate; a plurality of front electrodes on the substrate at fixed intervals by each first separating part interposed in-between; a plurality of semiconductor layers on the front electrodes at fixed intervals by each contact part interposed in-between; and a plurality of rear electrodes connected with the front electrodes through the contact part, provided at fixed intervals by each second separating part interposed in-between, wherein a main isolating part is formed in the outermost front electrode, the outermost semiconductor layer, and the outermost rear electrode, wherein an auxiliary isolating part is formed in at least one of the outermost front electrode and the outermost rear electrode, wherein the auxiliary isolating part is positioned on the inside of the main isolating part.
    • 公开了一种薄膜型太阳能电池及其制造方法,所述薄膜型太阳能电池包括基板; 多个前电极以固定的间隔被插入其间的每个第一分离部分组成; 固定间隔的前部电极上的多个半导体层由插入其间的每个接触部分构成; 以及多个后电极,通过所述接触部与所述前电极连接,所述接触部通过设置在其间的每个第二分离部以固定间隔设置,其中,在最外侧前电极,最外侧半导体层和 最外侧电极,其中在最外侧前电极和最外侧电极中的至少一方形成有辅助隔离部,其中,所述辅助隔离部位于所述主隔离部的内侧。
    • 3. 发明申请
    • Thin Film Type Solar Cell and Method for Manufacturing the Same
    • 薄膜型太阳能电池及其制造方法
    • US20100282303A1
    • 2010-11-11
    • US12811085
    • 2008-12-29
    • Won Seok ParkYong Woo ShinSeong Ryong Hwang
    • Won Seok ParkYong Woo ShinSeong Ryong Hwang
    • H01L31/0248H01L31/18
    • H01L31/18H01L31/046Y02E10/50
    • A thin film type solar cell and a method for manufacturing the same is disclosed, the thin film type solar cell comprising a substrate; a plurality of front electrodes on the substrate at fixed intervals by each first separating part interposed in-between; a plurality of semiconductor layers on the front electrodes at fixed intervals by each contact part interposed in-between; and a plurality of rear electrodes connected with the front electrodes through the contact part, provided at fixed intervals by each second separating part interposed in-between, wherein a main isolating part is formed in the outermost front electrode, the outermost semiconductor layer, and the outermost rear electrode, wherein an auxiliary isolating part is formed in at least one of the outermost front electrode and the outermost rear electrode, wherein the auxiliary isolating part is positioned on the inside of the main isolating part.
    • 公开了一种薄膜型太阳能电池及其制造方法,所述薄膜型太阳能电池包括基板; 多个前电极以固定的间隔被插入其间的每个第一分离部分组成; 固定间隔的前部电极上的多个半导体层由插入其间的每个接触部分构成; 以及多个后电极,通过所述接触部与所述前电极连接,所述接触部通过设置在其间的每个第二分离部以固定的间隔设置,其中,在最外侧前电极,最外侧半导体层和 最外侧电极,其中在最外侧前电极和最外侧电极中的至少一方形成有辅助隔离部,其中,所述辅助隔离部位于所述主隔离部的内侧。
    • 5. 发明授权
    • Resin composition for coating and molded resin product obtained therefrom
    • 由此获得的涂料用树脂组合物和树脂成型品
    • US08883910B2
    • 2014-11-11
    • US13500397
    • 2010-09-15
    • Yong-Woo Shin
    • Yong-Woo Shin
    • C09D123/26C09D123/10C08L23/14
    • C09D123/10C08L23/14C08L2205/02C08L2205/03C08L2666/02
    • Provided is a resin composition for coating, including: 35-65 wt % of a high-molecular weight polypropylene resin (A) having a weight average molecular weight of 100,000-300,000 and an isotactic chain molar fraction, L, of 0.30-0.70; 30-60 wt % of a low-molecular weight polypropylene resin (B) having a weight average molecular weight of 10,000-50,000 and an isotactic chain molar fraction, L, of 0.30-0.70; and 0.1-5.0 wt % of a highly crystalline, low-molecular weight polypropylene resin (C) having a weight average molecular weight of 5,000-50,000 and an isotactic chain molar fraction, L, of 0.70-0.75. The polypropylene resin composition for coating is amenable to spray coating while avoiding a need for a complicated process such as discharge treatment, flame treatment or acid treatment of a polypropylene substrate, in the absence of chlorine, and is effective for forming a coating film having excellent scratch resistance and adhesive property and showing no tagging property.
    • 本发明提供一种涂料用树脂组合物,其包含:35〜65重量%的重均分子量为100,000〜300,000,全同立构链摩尔分数L为0.30〜0.70的高分子量聚丙烯树脂(A) 30-60重量%的重均分子量为10,000-50,000的低分子量聚丙烯树脂(B)和全同立构链摩尔分数L为0.30-0.70; 和0.1-5.0重量%的重均分子量为5,000-50,000的高度结晶的低分子量聚丙烯树脂(C)和0.70-0.75的全同立构链摩尔分数L。 用于涂布的聚丙烯树脂组合物适于喷涂,同时避免在不存在氯的情况下需要诸如聚丙烯基材的放电处理,火焰处理或酸处理等复杂的工艺,并且有效地形成具有优异的涂膜 耐刮擦性和粘合性,并且不显示标签性。
    • 7. 发明授权
    • Method of cleaning a semiconductor fabricating apparatus
    • US06435197B1
    • 2002-08-20
    • US09794827
    • 2001-02-27
    • Yong Woo ShinChul Ju Hwang
    • Yong Woo ShinChul Ju Hwang
    • B08B600
    • An apparatus for fabricating a semiconductor device includes: a reactive chamber having an inlet and an outlet for a gas and being electrically grounded; a susceptor installed in the reactive chamber for mounting a wafer thereon and being electrically insulated with the reactive chamber; and an RF generator for applying an RF electric power to the susceptor. A method for cleaning the apparatus for fabricating a semiconductor device includes the steps of: injecting a plasma forming gas through the gas inlet; and moving the susceptor in the vertical direction of the face of the wafer while applying the RF electric power to the susceptor, to control the position and the density of the plasma. Since the plasma is formed even at the shadow area, such as the lower space of the susceptor within the reactive chamber where plasma could be hardly formed, there is no need to clean separately the lower space of the reactive chamber. Thus, the cleaning process is simplified. In addition, since the density of the plasma can be easily controlled without increase or decrease of the RF electric power by transferring the susceptor 140 vertically, the inside of the reactive chamber 110 can be uniformly and effectively cleaned with the plasma.
    • 9. 发明申请
    • RESIN COMPOSITION FOR COATING AND MOLDED RESIN PRODUCT OBTAINED THEREFROM
    • 用于涂料和模塑树脂的树脂组合物由其获得
    • US20120270993A1
    • 2012-10-25
    • US13500397
    • 2010-09-15
    • Yong-Woo Shin
    • Yong-Woo Shin
    • C09D123/26
    • C09D123/10C08L23/14C08L2205/02C08L2205/03C08L2666/02
    • Provided is a resin composition for coating, including: 35-65 wt % of a high-molecular weight polypropylene resin (A) having a weight average molecular weight of 100,000-300,000 and an isotactic chain molar fraction, L, of 0.30-0.70; 30-60 wt % of a low-molecular weight polypropylene resin (B) having a weight average molecular weight of 10,000-50,000 and an isotactic chain molar fraction, L, of 0.30-0.70; and 0.1-5.0 wt % of a highly crystalline, low-molecular weight polypropylene resin (C) having a weight average molecular weight of 5,000-50,000 and an isotactic chain molar fraction, L, of 0.70-0.75. The polypropylene resin composition for coating is amenable to spray coating while avoiding a need for a complicated process such as discharge treatment, flame treatment or acid treatment of a polypropylene substrate, in the absence of chlorine, and is effective for forming a coating film having excellent scratch resistance and adhesive property and showing no tagging property.
    • 本发明提供一种涂料用树脂组合物,其包含:35〜65重量%的重均分子量为100,000〜300,000,全同立构链摩尔分数L为0.30〜0.70的高分子量聚丙烯树脂(A) 30-60重量%的重均分子量为10,000-50,000的低分子量聚丙烯树脂(B)和全同立构链摩尔分数L为0.30-0.70; 和0.1-5.0重量%的重均分子量为5,000-50,000的高度结晶的低分子量聚丙烯树脂(C)和0.70-0.75的全同立构链摩尔分数L。 用于涂布的聚丙烯树脂组合物适于喷涂,同时避免在不存在氯的情况下需要诸如聚丙烯基材的放电处理,火焰处理或酸处理等复杂的工艺,并且有效地形成具有优异的涂膜 耐刮擦性和粘合性,并且不显示标签性。