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    • 2. 发明授权
    • Process to deposit diamond like carbon as surface of a shaped object
    • 沉积类似碳的钻石作为成形物体的表面的工艺
    • US09260781B2
    • 2016-02-16
    • US13201210
    • 2010-01-27
    • Sushil KumarPrakash Narain DixitChandra Mohan Singh Rauthan
    • Sushil KumarPrakash Narain DixitChandra Mohan Singh Rauthan
    • C23C16/27C23C16/26B65D23/02C23C16/02C23C16/04C23C16/455C23C16/509H01J37/32
    • C23C16/26B65D23/02C23C16/0272C23C16/045C23C16/45578C23C16/509H01J37/32091
    • A plasma based deposition process to deposit thin film on the inner surfaces of the shaped objects such as plastic or metallic object like bottles, hollow tubes etc. at room temperature has been developed. In present invention uniform hydrogenated amorphous carbon (also called Diamond-Like Carbon, DLC) films on inner surfaces of plastic bottles is successfully deposited. Applications of such product include entire food and drug industries. There is a huge demand of polyethylene terephthalate (PET) or polyethylene naphthalate (PEN)) bottles, meant for the storage of potable water, carbonated soft drinks, wines, medicines etc. However, the higher cost prohibits their wide, spread use. The cheaper alternative is to use plastic bottles inside coated with chemically inert material such as Diamond-Like Carbon (DLC) will be commercially viable. Inventor process can be scaled up for mass production. This process can also be used for coating on inner surface of metallic cane or tube with a carbide forming interlayer (like hydrogenated amorphous silicon) to get the DLC films with better adhesion to inner surface of metals.
    • 已经开发了在室温下在诸如塑料或金属物体(如瓶子,中空管等)的成形物体的内表面上沉积薄膜的等离子体沉积工艺。 在本发明中,成功地沉积了塑料瓶内表面上均匀的氢化无定形碳(也称为金刚石碳,DLC)膜。 这些产品的应用包括整个食品和药品行业。 聚对苯二甲酸乙二醇酯(PET)或聚萘二甲酸乙二醇酯(PEN))瓶子的需求很大,用于储存饮用水,碳酸软饮料,葡萄酒,药品等。但是,更高的成本禁止其广泛使用。 更便宜的替代方法是使用塑料瓶内涂覆有化学惰性材料,如金刚石碳(DLC),这在商业上是可行的。 发明人流程可以扩大批量生产。 该方法也可用于在金属手杖或管的内表面上涂覆碳化物形成中间层(如氢化非晶硅),以使DLC膜具有更好的金属内表面附着力。
    • 3. 发明申请
    • SEQUENTIAL STATE ELEMENTS RADIATION HARDENED BY DESIGN
    • 按设计硬化的序列状态元素辐射
    • US20140077854A1
    • 2014-03-20
    • US14031585
    • 2013-09-19
    • Lawrence T. ClarkSandeep ShambhulingaiahSushil KumarChandarasekaran Ramamurthy
    • Lawrence T. ClarkSandeep ShambhulingaiahSushil KumarChandarasekaran Ramamurthy
    • H03K3/356G06F17/50
    • H03K3/356086G06F17/5072G06F2217/70H03K3/0375H03K3/35606H03K3/35625
    • This disclosure relates generally to sequential state elements (SSEs). More specifically, embodiments of flip-flops are disclosed, along with computerized methods and systems of designing the same. In one embodiment, the flip-flop includes a substrate and subcircuits that are formed on the substrate. The subcircuits provide subfunctions, wherein each of the subcircuits provides at least one of the subfunctions. More specifically, the subfunctions are provided in a sequential logical order by the subcircuits so that the flip-flop provides a flip-flop function. However, the subcircuits are interleaved out of the sequential logical order with respect to a corresponding subfunction provided by each of the subcircuits along a vector defined by the substrate. In this manner, interleaving the subcircuits along the vector of the substrate can provide separation between charge collection nodes without requiring increases in size. Thus, the flip-flop can be more compact and less expensive to manufacture.
    • 本公开一般涉及顺序状态元素(SSEs)。 更具体地,公开了触发器的实施例,以及计算机化的方法和设计它们的系统。 在一个实施例中,触发器包括形成在衬底上的衬底和子电路。 子电路提供子功能,其中每个子电路提供至少一个子功能。 更具体地,通过子电路以顺序逻辑顺序提供子功能,使得触发器提供触发器功能。 然而,子电路相对于由基板限定的矢量由每个子电路提供的相应的子功能从顺序逻辑顺序交错。 以这种方式,沿着衬底的矢量交叉子电路可以提供电荷收集节点之间的间隔,而不需要增加尺寸。 因此,触发器可以更紧凑并且制造成本更低。
    • 4. 发明申请
    • Process to Deposit Diamond Like Carbon as Surface of a Shaped Object
    • 沉积类似碳的钻石作为形状物体表面的过程
    • US20120045592A1
    • 2012-02-23
    • US13201210
    • 2010-01-27
    • Sushil KumarPrakash Narain DixitChandra Mohan Singh Rauthan
    • Sushil KumarPrakash Narain DixitChandra Mohan Singh Rauthan
    • C23C16/27C23C16/509
    • C23C16/26B65D23/02C23C16/0272C23C16/045C23C16/45578C23C16/509H01J37/32091
    • A plasma based deposition process to deposit thin film on the inner surfaces of the shaped objects such as plastic or metallic object like bottles, hollow tubes etc. at room temperature has been developed. In present invention uniform hydrogenated amorphous carbon (also called Diamond-Like Carbon, DLC) films on inner surfaces of plastic bottles is successfully deposited. Applications of such product include entire food and drug industries. There is a huge demand of polyethylene terephthalate (PET) or polyethylene naphthalate (PEN)) bottles, meant for the storage of potable water, carbonated soft drinks, wines, medicines etc. However, the higher cost prohibits their wide, spread use. The cheaper alternative is to use plastic bottles inside coated with chemically inert material such as Diamond-Like Carbon (DLC) will be commercially viable. Inventor process can be scaled up for mass production. This process can also be used for coating on inner surface of metallic cane or tube with a carbide forming interlayer (like hydrogenated amorphous silicon) to get the DLC films with better adhesion to inner surface of metals.
    • 已经开发了在室温下在诸如塑料或金属物体(如瓶子,中空管等)的成形物体的内表面上沉积薄膜的等离子体沉积工艺。 在本发明中,成功地沉积了塑料瓶内表面上均匀的氢化无定形碳(也称为金刚石碳,DLC)膜。 这些产品的应用包括整个食品和药品行业。 聚对苯二甲酸乙二醇酯(PET)或聚萘二甲酸乙二醇酯(PEN))瓶子的需求很大,用于储存饮用水,碳酸软饮料,葡萄酒,药品等。但是,更高的成本禁止其广泛使用。 更便宜的替代方法是使用塑料瓶内涂覆有化学惰性材料,如金刚石碳(DLC),这在商业上是可行的。 发明人流程可以扩大批量生产。 该方法也可用于在金属手杖或管的内表面上涂覆碳化物形成中间层(如氢化非晶硅),以使DLC膜具有更好的金属内表面附着力。
    • 5. 发明授权
    • Self-managing performance statistics repository for databases
    • 数据库的自我管理性能统计信息库
    • US07774312B2
    • 2010-08-10
    • US10934771
    • 2004-09-03
    • Gary NgaiMichael FengAlex TsukermanBenoit DagevilleMark RamacherKarl DiasGraham S. WoodLeng Leng TanRichard SarwalSushil Kumar
    • Gary NgaiMichael FengAlex TsukermanBenoit DagevilleMark RamacherKarl DiasGraham S. WoodLeng Leng TanRichard SarwalSushil Kumar
    • G06F17/30
    • G06F17/30306
    • A self-managing workload repository (AWR) infrastructure useful for a database server to collect and manage selected sets of important system performance statistics. Based on a schedule, the AWR runs automatically to collect data about the operation of the database system, and stores the data that it captures into the database. The AWR is advantageously designed to be lightweight and to self manage its use of storage space so as to avoid ending up with a repository of performance data that is larger than the database that it is capturing data about. The AWR is configured to automatically capture snapshots of statistics data on a periodic basis as well as purge stale data on a periodic basis. Both the frequency of the statistics data capture and length of time for which data is kept is adjustable. Manual snapshots and purging may also be performed. The AWR captured data allows for both system level and user level analysis to be automatically performed without unduly impacting system performance, e.g., by eliminating or reducing the requirement to repeat the workload in order to diagnose problems.
    • 自管理工作负载存储库(AWR)基础架构可用于数据库服务器收集和管理所选的重要系统性能统计信息。 根据计划,AWR自动运行以收集有关数据库系统操作的数据,并将其捕获的数据存储到数据库中。 AWR有利地被设计为轻量级并且自我管理其对存储空间的使用,以避免最终获得比它正在捕获数据的数据库更大的性能数据库。 AWR配置为定期自动捕获统计数据的快照,并定期清除过期数据。 统计数据捕获的频率和保存数据的时间长短都是可调的。 也可以执行手动快照和清除。 AWR捕获的数据允许自动执行系统级别和用户级别分析,而不会不必要地影响系统性能,例如通过消除或减少重复工作负载以便诊断问题的要求。