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    • 1. 发明授权
    • Device, system, and method for automatically configuring application terminals in home network
    • 在家庭网络中自动配置应用终端的设备,系统和方法
    • US08787200B2
    • 2014-07-22
    • US12604201
    • 2009-10-22
    • Zetian GeYi TanZhiming Ding
    • Zetian GeYi TanZhiming Ding
    • H04L12/28H04L12/66H04L12/24
    • H04L12/66H04L12/2803H04L41/0886
    • A device, a system, and a method for automatically configuring application terminals in a home network are disclosed. The method is as follows. A home gateway receives identifier information of an application terminal sent by the application terminal through a Dynamic Host Configuration Protocol (DHCP). The identifier information of the application terminal is sent to a public network through a DHCP message, so as to determine a DHCP server corresponding to an automatic configuration server (ACS) of the application terminal. Address information of the ACS of the application terminal is obtained from the DHCP server on the public network through a DHCP message. The address information is transmitted to the application terminal, so that the application terminal obtains configuration information from the ACS according to the address information to perform an auto-configuration. Thus, a problem that the application terminal in a home network cannot directly obtain an ACS Universal Resource Locator (URL) through a DHCP message is solved, so that an auto-configuration of the application terminal is realized.
    • 公开了一种用于在家庭网络中自动配置应用终端的设备,系统和方法。 方法如下。 家庭网关通过动态主机配置协议(DHCP)接收由应用终端发送的应用终端的标识符信息。 应用终端的标识符信息通过DHCP消息发送到公共网络,以便确定与应用终端的自动配置服务器(ACS)相对应的DHCP服务器。 通过DHCP消息从公网的DHCP服务器获取应用终端ACS的地址信息。 地址信息被发送到应用终端,使得应用终端根据地址信息从ACS获取配置信息,以执行自动配置。 因此,解决了家庭网络中的应用终端不能通过DHCP消息直接获取ACS通用资源定位符(URL)的问题,从而实现应用终端的自动配置。
    • 2. 发明申请
    • DEVICE, SYSTEM, AND METHOD FOR AUTOMATICALLY CONFIGURING APPLICATION TERMINALS IN HOME NETWORK
    • 用于在家庭网络中自动配置应用终端的设备,系统和方法
    • US20100039958A1
    • 2010-02-18
    • US12604201
    • 2009-10-22
    • Zetian GeYi TanZhiming Ding
    • Zetian GeYi TanZhiming Ding
    • H04L12/56H04L12/28
    • H04L12/66H04L12/2803H04L41/0886
    • A device, a system, and a method for automatically configuring application terminals in a home network are disclosed. The method is as follows. A home gateway receives identifier information of an application terminal sent by the application terminal through a Dynamic Host Configuration Protocol (DHCP). The identifier information of the application terminal is sent to a public network through a DHCP message, so as to determine a DHCP server corresponding to an automatic configuration server (ACS) of the application terminal. Address information of the ACS of the application terminal is obtained from the DHCP server on the public network through a DHCP message. The address information is transmitted to the application terminal, so that the application terminal obtains configuration information from the ACS according to the address information to perform an auto-configuration. Thus, a problem that the application terminal in a home network cannot directly obtain an ACS Universal Resource Locator (URL) through a DHCP message is solved, so that an auto-configuration of the application terminal is realized.
    • 公开了一种用于在家庭网络中自动配置应用终端的设备,系统和方法。 方法如下。 家庭网关通过动态主机配置协议(DHCP)接收由应用终端发送的应用终端的标识符信息。 应用终端的标识符信息通过DHCP消息发送到公共网络,以便确定与应用终端的自动配置服务器(ACS)相对应的DHCP服务器。 通过DHCP消息从公网的DHCP服务器获取应用终端ACS的地址信息。 地址信息被发送到应用终端,使得应用终端根据地址信息从ACS获取配置信息,以执行自动配置。 因此,解决了家庭网络中的应用终端不能通过DHCP消息直接获取ACS通用资源定位符(URL)的问题,从而实现应用终端的自动配置。
    • 4. 发明授权
    • Immunoaffinity isolation of modified peptides from complex mixtures
    • 来自复杂混合物的修饰肽的免疫亲和分离
    • US07300753B2
    • 2007-11-27
    • US10777893
    • 2004-02-12
    • John RushHui ZhangXiangming ZhaMichael J. CombYi Tan
    • John RushHui ZhangXiangming ZhaMichael J. CombYi Tan
    • C12Q1/00C12Q1/37C12P21/06G01N33/543
    • G01N33/6872C07K14/47C07K16/44C12Q1/25C12Q1/485G01N33/6842
    • The invention provides methods for isolating a modified peptide from a complex mixture of peptides, the method comprising the steps of: (a) obtaining a proteinaceous preparation from an organism, wherein the preparation comprises modified peptides from two or more different proteins; (b) contacting the preparation with at least one immobilized modification-specific antibody; and (c) isolating at least one modified peptide specifically bound by the immobilized modification-specific antibody in step (b). The method may further comprise the step of (d) characterizing the modified peptide isolated in step (c) by mass spectrometry (MS), tandem mass spectrometry (MS—MS), and/or MS3 analysis, or the step of (e) utilizing a search program to substantially match the spectra obtained for the modified peptide during the characterization of step (d) with the spectra for a known peptide sequence, thereby identifying the parent protein(s) of the modified peptide. Also provided are an immunoaffinity isolation device comprising a modification-specific antibody, and antibodies against novel UFD1 and PTN6 phosphorylation sites.
    • 本发明提供了从复杂的肽混合物中分离修饰的肽的方法,所述方法包括以下步骤:(a)从生物体获得蛋白质制剂,其中所述制剂包含来自两种或更多种不同蛋白质的修饰肽; (b)使制剂与至少一种固定的修饰特异性抗体接触; 和(c)在步骤(b)中分离至少一种由固定的修饰特异性抗体特异性结合的修饰的肽。 该方法还可以包括以下步骤:(d)通过质谱法(MS),串联质谱(MS-MS)和/或MS 3分析表征步骤(c)中分离的修饰肽 或(e)利用搜索程序将在步骤(d)表征期间获得的修饰肽的光谱与已知肽序列的光谱基本上匹配,从而鉴定修饰的肽的亲本蛋白质 肽。 还提供了包含修饰特异性抗体和针对新型UFD1和PTN6磷酸化位点的抗体的免疫亲和分离装置。
    • 6. 发明申请
    • HUB
    • 枢纽
    • US20090163057A1
    • 2009-06-25
    • US12300572
    • 2007-07-12
    • Yi Tan
    • Yi Tan
    • H01R13/44G06F13/00
    • H01R13/447H01R13/6658H01R25/00H01R31/065
    • The present invention is available in hub technique field and provides a hub, which comprises a circuit board, a plug coupled to the circuit board, an upper cover and a bottom cover. The upper cover and the bottom cover cooperatively package the circuit board therein. The circuit board comprises at least one board socket facing toward the upper cover. The upper cover defines a first insertion opening disposed to be aligned with the board socket. The hub further comprises a rotating cover. The rotating cover is interposed between the upper cover and the circuit board and is coupled to and rotatable about the upper cover. The rotating cover defines a second insertion opening disposed to be aligned with the board socket. The rotating cover covers the board socket when the rotating cover is positioned at a first position. The first and the second insertion openings are in communication with each other to expose the board socket when the rotating cover is positioned at a second position. The present invention uses the rotating cover to cover the board socket when the hub is not in use, thereby preventing the hub from external corrosion. When use, the first and the second insertion openings become in communication with each other by rotating the rotating cover, thereby exposing the board socket to allow insertion of peripheral equipments. The entire process which it is easy and convenient to be operated.
    • 本发明可用于轮毂技术领域,并且提供了一种轮毂,其包括电路板,联接到电路板的插头,上盖和底盖。 上盖和底盖协调地将电路板封装在其中。 电路板包括面向上盖的至少一个板插座。 上盖限定了与板插座对准设置的第一插入口。 轮毂还包括旋转盖。 旋转盖插入在上盖和电路板之间,并且联接到上盖并且可绕其旋转。 旋转盖限定了与板插座对准设置的第二插入口。 当旋转盖定位在第一位置时,旋转盖覆盖板插座。 当旋转盖定位在第二位置时,第一和第二插入开口彼此连通以露出板插座。 当轮毂不使用时,本发明使用旋转盖来覆盖板插座,从而防止轮毂受到外部腐蚀。 当使用时,第一和第二插入开口通过旋转旋转盖彼此连通,从而暴露板插座以允许外围设备的插入。 整个过程容易操作。
    • 7. 发明授权
    • Production of motif-specific and context-independent antibodies using peptide libraries as antigens
    • 使用肽文库作为抗原产生基序特异性和上下文相关抗体
    • US07259022B2
    • 2007-08-21
    • US10014485
    • 2001-11-13
    • Michael J. CombYi TanHui Zhang
    • Michael J. CombYi TanHui Zhang
    • A61K38/00C07K16/00
    • C07K16/00C07K16/44
    • A method is provided for producing motif-specific, context-independent antibodies which recognize a plurality of peptides or proteins within a genome that contain the same motif. The method includes the step of immunizing a host with a degenerate peptide library antigen featuring (i) a fixed target motif containing one or more invariant amino acids including at least one modified amino acid, and (ii) a plurality of degenerate amino adds flanking the motif. Motif-specific, context-independent antibodies produced by the disclosed method are also provided. The method encompasses motifs consisting of a single modified amino acid, as well as short motifs comprising multiple invariant amino acids including one or more modified amino acids, such as all or part of kinase consensus substrate motifs, protein-protein binding motifs, or other cell signaling motifs. Methods of using the antibodies, e.g. for genome-wide profiling, are also provided.
    • 提供了一种用于产生基序特异性上下文无关抗体的方法,其识别含有相同基序的基因组内的多个肽或蛋白质。 该方法包括用简并肽文库抗原免疫宿主的步骤,其特征在于(i)含有一个或多个包含至少一个修饰的氨基酸的不变氨基酸的固定靶基序,和(ii)多个简并氨基酸, 主题。 还提供了通过公开的方法产生的基于特异性的,与环境无关的抗体。 该方法包括由单个修饰的氨基酸组成的基序,以及包含多个不变氨基酸的短基序,包括一个或多个修饰的氨基酸,例如全部或部分激酶共有底物基序,蛋白质 - 蛋白质结合基序或其他细胞 信号图案。 使用抗体的方法,例如 也提供了全基因组图谱。
    • 8. 发明申请
    • Immunoaffinity isolation of modified peptides from complex mixtures
    • 来自复杂混合物的修饰肽的免疫亲和分离
    • US20050003450A1
    • 2005-01-06
    • US10777893
    • 2004-02-12
    • John RushHui ZhangXiangming ZhaMichael CombYi Tan
    • John RushHui ZhangXiangming ZhaMichael CombYi Tan
    • C12P21/06C07K1/22C07K14/47C07K16/18C07K16/44C12P21/08C12Q1/25C12Q1/48G01N33/68G01N33/53
    • G01N33/6872C07K14/47C07K16/44C12Q1/25C12Q1/485G01N33/6842
    • The invention provides methods for isolating a modified peptide from a complex mixture of peptides, the method comprising the steps of: (a) obtaining a proteinaceous preparation from an organism, wherein the preparation comprises modified peptides from two or more different proteins; (b) contacting the preparation with at least one immobilized modification-specific antibody; and (c) isolating at least one modified peptide specifically bound by the immobilized modification-specific antibody in step (b). The method may further comprise the step of (d) characterizing the modified peptide isolated in step (c) by mass spectrometry (MS), tandem mass spectrometry (MS-MS), and/or MS3 analysis, or the step of (e) utilizing a search program to substantially match the spectra obtained for the modified peptide during the characterization of step (d) with the spectra for a known peptide sequence, thereby identifying the parent protein(s) of the modified peptide. Also provided are an immunoaffinity isolation device comprising a modification-specific antibody, and antibodies against novel UFD1 and PTN6 phosphorylation sites.
    • 本发明提供了从复杂的肽混合物中分离修饰的肽的方法,所述方法包括以下步骤:(a)从生物体获得蛋白质制剂,其中所述制剂包含来自两种或更多种不同蛋白质的修饰肽; (b)使制剂与至少一种固定的修饰特异性抗体接触; 和(c)在步骤(b)中分离至少一种由固定的修饰特异性抗体特异性结合的修饰的肽。 该方法还可以包括以下步骤:(d)通过质谱(MS),串联质谱(MS-MS)和/或MS 3分析表征步骤(c)中分离的修饰肽,或步骤 (e)使用搜索程序将在步骤(d)表征期间获得的修饰肽的光谱与已知肽序列的光谱基本上匹配,从而鉴定修饰肽的亲本蛋白。 还提供了包含修饰特异性抗体和针对新型UFD1和PTN6磷酸化位点的抗体的免疫亲和分离装置。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR REMOVING PHOSPHORUS AND BORON FROM POLYSILICON BY CONTINUOUSLY SMELTING
    • 通过连续熔炼从多晶硅中去除磷和硼的方法和装置
    • US20120216572A1
    • 2012-08-30
    • US13510357
    • 2010-11-17
    • Yi TanWei DongGuobin LiDachuan Jiang
    • Yi TanWei DongGuobin LiDachuan Jiang
    • C01B33/037
    • H01L31/182C01B33/02C01B33/037Y02E10/546Y02P70/521
    • The present invention relates to the polysilicon purification technology field with physical metallurgy technology, especially to a method for removing P and B impurities in the polysilicon using electron beam melting technology. In this method, two electron guns are used for irradiating electron beam to melt polysilicon, meanwhile, P and B are removed in a dual process. P will firstly be removed, and then B will be further removed through further melting for evaporation. At last the low-B and low-P polysilicon evaporated on the deposit board is collected. In the equipment used, the vacuum cover and vacuum circular cylinder constitutes the shell of the device; the inner part of vacuum circular cylinder is the vacuum chamber, which is formed by the left and right part and divided by the separation plate. This method effectively improves the purity of the polysilicon and achieves the requirements for solar grade silicon with perfect purification effect, stable technology, and high efficiency.
    • 本发明涉及具有物理冶金技术的多晶硅纯化技术领域,特别涉及使用电子束熔化技术去除多晶硅中的P和B杂质的方法。 在这种方法中,使用两束电子枪照射电子束来熔化多晶硅,同时P和B在双重过程中被去除。 将首先除去P,然后通过进一步的熔化将B进一步除去以进行蒸发。 最后收集沉积物上蒸发的低B和低P多晶硅。 在使用的设备中,真空盖和真空圆筒构成设备的外壳; 真空圆筒的内部是真空室,由左右部分形成,并被分隔板分隔。 该方法有效提高了多晶硅的纯度,达到了完美净化效果,工艺稳定,效率高的太阳能级硅的要求。