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    • 82. 发明授权
    • Method for manufacturing a magnetic write head
    • 磁写头制造方法
    • US07793406B2
    • 2010-09-14
    • US11951204
    • 2007-12-05
    • Yi Zheng
    • Yi Zheng
    • G11B5/127H04R31/00
    • G11B5/3146G11B5/112G11B5/1278G11B5/3116G11B5/315G11B5/3166G11B5/3169Y10T29/49032Y10T29/49043Y10T29/49046Y10T29/49048Y10T29/49052
    • A method for manufacturing a perpendicular magnetic write head having a trailing shield and with a tapered step. The method includes forming a write pole with a non-magnetic trailing gap and first and second non-magnetic side gap layers. A mask is formed having an opening over a portion of the write pole that is configured to define a non-magnetic bump. A non-magnetic bump material is deposited into the opening in a manner that defines a non-magnetic bump having a tapered front edge. A magnetic wrap around shield can then be formed over the non-magnetic bump, so that the bump forms a tapered stepped feature on the wrap-around magnetic shield. The bump location can be controlled by an electric lapping guide, which is defined to be aligned to the bump front edge.
    • 一种用于制造具有后挡板并具有锥形步骤的垂直磁写头的方法。 该方法包括形成具有非磁性拖尾间隙的写入极和第一和第二非磁性侧隙层。 掩模形成为在构成为限定非磁性凸块的写入极的一部分上具有开口。 以限定具有锥形前边缘的非磁性凸块的方式将非磁性凸块材料沉积到开口中。 然后可以在非磁性凸块上形成围绕屏蔽的磁性环绕,使得凸块在环绕磁屏蔽上形成锥形阶梯特征。 凸起位置可以通过电动研磨导轨进行控制,电动研磨导向器被定义为与凸块前缘对准。
    • 85. 发明申请
    • METHOD OF MULTI-ANGLED BUMP PROCESSING FOR MAGNETIC POLE FABRICATION AND SYSTEMS THEREOF
    • 用于磁极制造及其系统的多重保护加工方法
    • US20100157474A1
    • 2010-06-24
    • US12341834
    • 2008-12-22
    • Wen-Chien David HsiaoVladimir NikitinAron PentekSue Siyang ZhangYi Zheng
    • Wen-Chien David HsiaoVladimir NikitinAron PentekSue Siyang ZhangYi Zheng
    • G11B5/127
    • G11B5/3116G11B5/3163
    • A system according to one embodiment includes a magnetic pole; a bump structure above the pole, the bump structure having a first surface oriented at a first angle between 1° and 89° from a plane of deposition of the pole, and a second surface oriented at a second angle between 1° and 89° from the plane of deposition of the pole, wherein the second angle is greater than the first angle; and a shield above the bump structure. A method according to one embodiment includes forming a bump layer above a magnetic pole; removing a portion of the bump layer for forming a step therein; and milling the bump layer for defining thereon a first surface oriented at a first angle between 1° and 89° from a plane of deposition of the bump layer, and a second surface oriented at a second angle between 1° and 89° from the plane of deposition of the bump layer, wherein the second angle is greater than the first angle.
    • 根据一个实施例的系统包括磁极; 所述凸起结构具有从所述极的沉积平面以1°至89°之间的第一角度定向的第一表面,并且所述第一表面以与所述极的沉积的平面成1°至89°之间的第二角度定向 所述极的沉积平面,其中所述第二角度大于所述第一角度; 和凸块结构之上的屏蔽。 根据一个实施例的方法包括在磁极上形成凸起层; 去除所述凸起层的一部分以在其中形成台阶; 并且研磨所述凸起层,以在其上限定从凸起层的沉积平面以1°至89°之间的第一角度定向的第一表面,以及从该平面以1°至89°之间的第二角度定向的第二表面 所述凸起层的沉积,其中所述第二角度大于所述第一角度。
    • 87. 发明申请
    • Method of Performance Analysis for VRLA Battery
    • VRLA电池性能分析方法
    • US20100131218A1
    • 2010-05-27
    • US12596698
    • 2008-04-17
    • Jianhong XuLing YuanYi Zheng
    • Jianhong XuLing YuanYi Zheng
    • G01R31/36
    • G01R31/362G01R31/3648G01R31/3668H01M10/121H01M10/48
    • This invention discloses a method of performance analysis for VRLA battery which applies the method of using the float voltage dispersion ratio of the battery to evaluate the battery performance from a new perspective, and it is an online real-time test which applies several ways to evaluate the performance of the VRLA battery. According to the relevance between the dispersion of the float charge voltage of the battery and its performance, the method gets the result of the battery performance through calculating the battery float charge voltage dispersion ratio and making it relevant with the battery performance. It has small workload, convenient operation and no danger to the system when doing online testing. It also won't affect the cycle life of the VRLA battery.
    • 本发明公开了一种VRLA电池的性能分析方法,该方法采用电池的浮动电压分散比率的方法,从新的角度对电池的性能进行评估,是一种在线实时测试,采用多种方式进行评估 VRLA电池的性能。 根据电池浮充电压的偏差与其性能的关系,该方法通过计算电池浮充电压分散比并使其与电池性能相关,得到电池性能的结果。 工作量小,操作方便,在线测试时不会对系统造成危害。 它也不会影响VRLA电池的循环寿命。
    • 90. 发明申请
    • CHIMERIC PEPTIDES FOR THE REGULATION OF GTPASES
    • 用于调整GTPASES的CHIMERIC PEPTIDES
    • US20090203617A1
    • 2009-08-13
    • US12348762
    • 2009-01-05
    • Yi ZhengDavid A. Williams
    • Yi ZhengDavid A. Williams
    • A61K38/16C07K14/00C07K7/00A61K38/08A61K38/10
    • C07K14/4706C07K2319/01C07K2319/02C07K2319/03C12N9/14C12Y306/05002
    • Chimeric peptides or fusion proteins are disclosed that include a RhoGAP activity domain and at least one specificity domain that targets a specific Rho protein. The fusion proteins can be used to inhibit any GTPase activity within a cell. The fusion proteins are particularly advantageous for the treatment of cancer. The present invention generally relates to chimeric peptides capable of regulating GTPases, and more particularly, to methods of targeting individual GTPases by using GTPase-activating proteins. Such proteins may be used for the treatment of cancers and other GTPase-related diseases. This invention relates to nucleic acid molecules and the encoded GTPase activating proteins, and variants thereof, and to the use of these molecules in the characterization, diagnosis, prevention, and treatment of cell signaling, immune, and cell proliferative disorders, particularly cancer. Disclosed herein are compounds and methods for regulating transcription of a selected gene.
    • 公开了嵌合肽或融合蛋白,其包括RhoGAP活性结构域和至少一个靶向特异性Rho蛋白的特异性结构域。 融合蛋白可用于抑制细胞内的任何GTP酶活性。 融合蛋白对癌症的治疗特别有利。 本发明一般涉及能够调节GTP酶的嵌合肽,更具体地,涉及通过使用GTP酶活化蛋白靶向各种GTP酶的方法。 这些蛋白质可用于治疗癌症和其它与GTP酶有关的疾病。 本发明涉及核酸分子和编码的GTP酶活化蛋白及其变体,以及这些分子在表征,诊断,预防和治疗细胞信号传导,免疫和细胞增殖性疾病,特别是癌症中的用途。 本文公开了用于调节所选基因转录的化合物和方法。