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    • 1. 发明申请
    • THROUGH-BODY VIA FORMATION TECHNIQUES
    • 通过形成技术的身体
    • WO2015147785A1
    • 2015-10-01
    • PCT/US2014/031604
    • 2014-03-24
    • INTEL CORPORATIONLEE, Kevin, J.
    • LEE, Kevin, J.
    • H01L21/60H01L23/48
    • H01L23/481H01L21/288H01L21/76829H01L21/76831H01L21/76873H01L21/76898H01L23/53209H01L23/53238H01L23/5329H01L24/02H01L24/05H01L25/0657H01L2224/02372H01L2224/05008H01L2224/05022H01L2224/05569H01L2225/06544
    • Techniques are disclosed for forming a through-body- via (TBV) in a semiconductor die. In accordance with some embodiments, a TBV provided using the disclosed techniques includes a polymer-based barrier layer and an electrically conductive seed layer formed by applying an electrically conductive ink directly to the barrier layer and then curing it in situ. In some embodiments, after curing, the resultant seed layer may be a thin, substantially conformal, electrically conductive metal film over which the TBV interconnect metal can be deposited. In some example cases, a polyimide, parylene, benzocyclobutene (BCB), and/or polypropylene carbonate (PPC) barrier layer and an ink containing copper (Cu) and/or silver (Ag), of nanoparticle-based or metal complex -based formulation, may be used in forming the TBV. In some instances, the disclosed techniques may be used to address poor step coverage, low run rate, and/or high cost issues associated with existing physical vapor deposition (PVD) -based far- back-end-of-line (FBEOL) processes.
    • 公开了用于在半导体管芯中形成贯穿体通孔(TBV)的技术。 根据一些实施例,使用所公开的技术提供的TBV包括基于聚合物的阻挡层和通过将导电油墨直接施加到阻挡层然后在原位固化而形成的导电种子层。 在一些实施方案中,固化后,所得种子层可以是薄的,基本上保形的导电金属膜,TBV互连金属可以沉积在其上。 在一些示例性情况下,基于纳米颗粒或基于金属络合物的聚酰亚胺,聚对二甲苯,苯并环丁烯(BCB)和/或聚丙烯碳酸酯(PPC)阻挡层和含有铜(Cu)和/或银(Ag) 配方,可用于形成TBV。 在一些情况下,所公开的技术可以用于解决与现有的基于物理气相沉积(PVD)的远程后端(FBEOL)过程相关联的差的步骤覆盖率,低运行速率和/或高成本问题 。
    • 6. 发明申请
    • NUCLEIC ACIDS AND PROTEINS OF ANOPHELES GAMBIAE ODORANT RECEPTOR GENES AND USES THEREOF
    • 游离氨基酸气味受体基因的核酸和蛋白质及其用途
    • WO2003020913A2
    • 2003-03-13
    • PCT/US2002/028315
    • 2002-09-04
    • SENTIGEN CORP.LEE, Kevin, J.ONG, JaneNGUYEN, Thuy-Ai, T.KLOSS, Brian
    • LEE, Kevin, J.ONG, JaneNGUYEN, Thuy-Ai, T.KLOSS, Brian
    • C12N
    • C07K14/43563
    • The present invention relates to Anopheles gambiae odorant receptor genes and methods for identifying odorant receptor genes. The invention provides nucleotide sequences of Anopheles gambiae odorant receptor genes, amino acid sequences of their encoded proteins (including peptides or polypeptides), and related products and methods. The nucleic acids of the invention may be operatively linked to promoter sequences and transformed into host cells. Methods of production of an odorant receptor protein (e.g., by recombinant means), and derivatives and analogs thereof, are provided. Antibodies to an odorant receptor protein, and derivatives and analogs thereof, are provided. Methods for identifying molecules that bind or modulate the activity of these odorant receptor genes are provided. Molecules found to bind or modulate the activity of odorant receptor genes may be formulated into pest control agents by providing a carrier. In a preferred embodiment, molecules that bind or modulate the activity of an odorant receptor gene from Anopheles gambiae but not others is desired. Methods to modify the insect behavior by modifying an odorant receptor are also provided.
    • 本发明涉及冈比亚按摩感受器基因和鉴别加味剂受体基因的方法。 本发明提供了按蚊冈比亚气味受体基因的核苷酸序列,其编码的蛋白质(包括肽或多肽)的氨基酸序列以及相关产物和方法。 本发明的核酸可以可操作地连接到启动子序列并转化到宿主细胞中。 提供加味剂受体蛋白质的生产方法(例如,通过重组方法)及其衍生物和类似物。 提供了加味剂受体蛋白质的抗体及其衍生物和类似物。 提供了鉴定结合或调节这些加味剂受体基因的活性的分子的方法。 发现结合或调节加味剂受体基因活性的分子可通过提供载体而配制成害虫控制剂。 在优选的实施方案中,期望结合或调节来自冈比亚按蚊的加味剂受体基因的活性而不是其他的分子。 还提供了通过改变气味受体来改变昆虫行为的方法。