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    • 3. 发明申请
    • SEED LAYER FOR SOLAR CELL CONDUCTIVE CONTACT
    • 太阳能电池触点接触层
    • US20140158192A1
    • 2014-06-12
    • US13706728
    • 2012-12-06
    • Michael CudzinovicJunbo WuXi Zhu
    • Michael CudzinovicJunbo WuXi Zhu
    • H01L31/0224
    • H01L31/022441H01B1/04H01B1/24H01L31/0682H01L31/0747Y02E10/547
    • Seed layers for solar cell conductive contacts and methods of forming seed layers for solar cell conductive contacts are described. For example, a solar cell includes a substrate. An emitter region is disposed above the substrate. A conductive contact is disposed on the emitter region and includes a conductive layer in contact with the emitter region. The conductive layer is composed of aluminum/silicon (Al/Si) particles having a composition of greater than approximately 15% Si with the remainder Al. In another example, a solar cell includes a substrate having a diffusion region at or near a surface of the substrate. A conductive contact is disposed above the diffusion region and includes a conductive layer in contact with the substrate. The conductive layer is composed of aluminum/silicon (Al/Si) particles having a composition of greater than approximately 15% Si with the remainder Al.
    • 描述了用于太阳能电池导电触点的种子层和用于形成用于太阳能电池导电触点的种子层的方法。 例如,太阳能电池包括基板。 发射极区域设置在衬底上方。 导电触点设置在发射极区域上,并且包括与发射极区域接触的导电层。 导电层由具有大于约15%Si的组成,其余为Al的铝/硅(Al / Si)颗粒组成。 在另一示例中,太阳能电池包括在基板的表面处或附近具有扩散区域的基板。 导电接触件设置在扩散区域上方,并且包括与衬底接触的导电层。 导电层由具有大于约15%Si的组成,其余为Al的铝/硅(Al / Si)颗粒组成。
    • 4. 发明申请
    • SEED LAYER FOR SOLAR CELL CONDUCTIVE CONTACT
    • 太阳能电池触点接触层
    • US20160190364A1
    • 2016-06-30
    • US15061903
    • 2016-03-04
    • Michael CudzinovicJunbo WuXi Zhu
    • Michael CudzinovicJunbo WuXi Zhu
    • H01L31/0224
    • H01L31/022441H01B1/04H01B1/24H01L31/0682H01L31/0747Y02E10/547
    • Seed layers for solar cell conductive contacts and methods of forming seed layers for solar cell conductive contacts are described. For example, a solar cell includes a substrate. An emitter region is disposed above the substrate. A conductive contact is disposed on the emitter region and includes a conductive layer in contact with the emitter region. The conductive layer is composed of aluminum/silicon (Al/Si) particles having a composition of greater than approximately 15% Si with the remainder Al. In another example, a solar cell includes a substrate having a diffusion region at or near a surface of the substrate. A conductive contact is disposed above the diffusion region and includes a conductive layer in contact with the substrate. The conductive layer is composed of aluminum/silicon (Al/Si) particles having a composition of greater than approximately 15% Si with the remainder Al.
    • 描述了用于太阳能电池导电触点的种子层和用于形成用于太阳能电池导电触点的种子层的方法。 例如,太阳能电池包括基板。 发射极区域设置在衬底上方。 导电触点设置在发射极区域上,并且包括与发射极区域接触的导电层。 导电层由具有大于约15%Si的组成,其余为Al的铝/硅(Al / Si)颗粒组成。 在另一示例中,太阳能电池包括在基板的表面处或附近具有扩散区域的基板。 导电接触件设置在扩散区域上方,并且包括与衬底接触的导电层。 导电层由具有大于约15%Si的组成,其余为Al的铝/硅(Al / Si)颗粒组成。
    • 5. 发明授权
    • Method and system for synchronizing operations of multiple groups
    • 用于同步多个组的操作的方法和系统
    • US08954494B2
    • 2015-02-10
    • US13460853
    • 2012-05-01
    • Xi ZhuXiaojun ZengShugen ChenShan ZhangChao Lin
    • Xi ZhuXiaojun ZengShugen ChenShan ZhangChao Lin
    • G06F15/16H04L12/58
    • H04L12/581H04L51/04H04L51/32
    • A method is disclosed for synchronizing operations of at least a first group on a first server and a second group on a second server. The method includes establishing an association between the first group and the second group using a pre-set association identifier, receiving operation information containing a type of operation and specifying an operation, and performing the operation specified by the operation information on the first group. The method also includes sending the operation information and the association identifier to the second server, receiving the operation information and the association identifier, and searching the second group corresponding to the association identifier. Further, the method includes performing an operation corresponding to the type of the operation information on the second group based on the type of the operation information.
    • 公开了一种用于使第一服务器上的至少第一组和第二组上的第二组同步操作的方法。 该方法包括使用预设关联标识符建立第一组与第二组之间的关联,接收包含操作类型和指定操作的操作信息,以及执行由第一组上的操作信息指定的操作。 该方法还包括将操作信息和关联标识符发送到第二服务器,接收操作信息和关联标识符,以及搜索对应于关联标识符的第二组。 此外,该方法包括基于操作信息的类型来执行与第二组的操作信息的类型相对应的操作。
    • 7. 发明授权
    • Method and apparatus of secure authentication and electronic payment through mobile communication tool
    • 通过移动通信工具进行安全认证和电子支付的方法和装置
    • US07577616B2
    • 2009-08-18
    • US11523256
    • 2006-09-18
    • Xi Zhu
    • Xi Zhu
    • G06F17/60
    • G06Q20/425G06Q20/32G06Q20/325G06Q20/385G06Q20/401
    • The present invention relates to apparatus and method utilizing a mobile terminal as a tool for secure authentication and electronic payment. A random ID code is passed through a circle path to verify the nodes along the path. If the RID sent back matches the one generated for the current transaction, the user is authenticated and the transaction is approved for further action. The user's account server generates a Random ID code when a transaction request is received. This RID will be passed to the user's mobile terminal and then passed to the terminal where the user request access or purchasing. The terminal will send the RID back to the account server. If the RID received and the original RID generated for this transaction matches the user is authenticated. The RID can also be passed through a reverse direction.
    • 本发明涉及利用移动终端作为安全认证和电子支付的工具的装置和方法。 随机ID码通过圆形路径来验证沿着路径的节点。 如果发送的RID与当前事务生成的RID相匹配,则用户将被认证,并且该事务被批准用于进一步的操作。 当接收到事务请求时,用户的帐户服务器生成随机ID码。 该RID将被传递给用户的移动终端,然后传递到用户请求访问或购买的终端。 终端将RID发送回帐户服务器。 如果收到的RID和为此事务生成的原始RID与用户进行了匹配验证。 RID也可以通过相反的方向传递。