会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Circuit for and method of accessing instruction data written to a memory
    • 访问写入存储器的指令数据的电路和方法
    • US07401258B1
    • 2008-07-15
    • US10956599
    • 2004-09-30
    • Ying FangMehul R. Vashi
    • Ying FangMehul R. Vashi
    • G06F11/00
    • G06F11/36
    • According to one embodiment of the invention, a method of accessing instruction data from a memory comprises steps of specifying a predetermined address of a memory for storing instruction data; writing instruction data to the predetermined address in the memory; reading the instruction data from the predetermined address after the step of writing instruction data; and determining whether the instruction data is valid. According to another embodiment of the invention, a method describes a method of accessing instruction data from a memory by way of first and second data buses. According to a further embodiment, instruction data read back from the memory is multiplexed to a memory controller. A circuit for accessing instruction data written to a memory is also described.
    • 根据本发明的一个实施例,一种从存储器访问指令数据的方法包括以下步骤:指定用于存储指令数据的存储器的预定地址; 将指令数据写入存储器中的预定地址; 在写入指令数据的步骤之后从预定地址读取指令数据; 以及确定所述指令数据是否有效。 根据本发明的另一实施例,一种方法描述了一种通过第一和第二数据总线从存储器访问指令数据的方法。 根据另一实施例,从存储器读回的指令数据被复用到存储器控制器。 还描述了用于访问写入存储器的指令数据的电路。
    • 5. 发明申请
    • Nanosensors
    • 纳米传感器
    • US20070264623A1
    • 2007-11-15
    • US11629722
    • 2005-06-15
    • Wayne WangChuo ChenKeng-Hui LinYing FangCharles Lieber
    • Wayne WangChuo ChenKeng-Hui LinYing FangCharles Lieber
    • C12Q1/00C12M1/40G01N27/00G01N33/53
    • B82Y15/00G01N27/4146G01N33/54373
    • The present invention generally relates to nanoscale wires for use in determining analytes suspected to be present in a sample, especially in connection with determining information about a sample containing, or suspected of containing, two or more analytes. For example, the invention can involve a competitive, uncompetitive, or non-competitive binding assay including a nanoscale wire to a sample containing a species able to interact with the retain entity to produce a product, where the sample also contains or is suspected of containing a second species able to interact with the reaction entity to prevent production of the product resulting from interaction of the first species and the reaction entity. Based upon determination of production of the product, determination of the second species in the sample can be made. In one set of embodiments, nanoscale wires can be used that have been functionalized at their surface, and/or in close proximity to their surface, for example, by immobilizing a protein or an enzyme relative to the nanoscale wire. Functionalization may permit interaction of the nanoscale wire with various analytes, and such interaction may induce a determinable change in a property of the nanoscale wire. Determination of two or more analytes, o one analyte and the suspected presence of another analyte can involve, for example, binding species to a protein or an enzyme immobilized relative to the nanoscale wire. Other aspects of the invention include assays, sensors, detectors, and/or other devices that include functionalized nanoscale wires, methods of making and/or using functionalized nanoscale wires (for example, in drug screening or high throughput screening) and the like.
    • 本发明一般涉及用于确定疑似存在于样品中的分析物的纳米尺度丝,特别是关于确定含有或怀疑含有两种或多种分析物的样品的信息。 例如,本发明可涉及竞争性的,无竞争性的或非竞争性的结合测定,其包括纳米尺度的丝线,其含有能够与保留实体相互作用以产生产品的样品,其中样品还含有或怀疑含有 能够与反应实体相互作用以防止由第一种和反应实体的相互作用产生的产物的第二种。 基于产品生产的确定,可以确定样品中的第二种。 在一组实施方案中,可以使用在其表面和/或其表面附近功能化的纳米线,例如通过相对于纳米线固定蛋白质或酶。 功能化可以允许纳米尺度线与各种分析物的相互作用,并且这种相互作用可以诱导纳米尺度线的性质的可确定的变化。 测定两种或更多种分析物,一种分析物和怀疑存在另一种分析物可涉及例如将物质结合到相对于纳米尺度线固定的蛋白质或酶。 本发明的其它方面包括测定,传感器,检测器和/或包括功能化的纳米线的其它器件,制造和/或使用官能化的纳米线(例如,在药物筛选或高通量筛选)等的方法。
    • 7. 发明申请
    • Nanosensors and related technologies
    • 纳米传感器及相关技术
    • US20100087013A1
    • 2010-04-08
    • US12308207
    • 2007-06-11
    • Charles M. LieberYing FangFernando Patolsky
    • Charles M. LieberYing FangFernando Patolsky
    • G01N33/551H01L21/38G01N33/553
    • G01N33/551B82Y10/00C12Q1/6825C12Q2600/156G01N27/4145G01N27/4146G01N33/553H01L51/0049H01L51/0093C12Q2563/155
    • The present invention generally relates to nanotechnology and sub-microelectronic circuitry, as well as associated methods and devices, for example, nanoscale wire devices and methods for use in determining nucleic acids or other analytes suspected to be present in a sample (for example, their presence and/or dynamical information), e.g., at the single molecule level. For example, a nanoscale wire device can be used in some cases to detect single base mismatches within a nucleic acid (e.g., by determining association and/or dissociation rates). In one aspect, dynamical information such as a binding constant, an association rate, and/or a dissociation rate, can be determined between a nucleic acid or other analyte, and a binding partner immobilized relative to a nanoscale wire. In some cases, the nanoscale wire includes a first portion comprising a metal-semiconductor compound, and a second portion that does not include a metal-semiconductor compound. The binding partner, in some embodiments, is immobilized relative to at least the second portion of the nanoscale wire, and the size of the second portion of the nanoscale wire may be minimized and/or controlled in some instances. Articles and devices of size greater than the nanoscale are also included in certain embodiments. Still other aspects of the invention include assays, sensors, kits, and/or other devices that include such nanoscale wires, methods of making and/or using such nanoscale wires, or the like.
    • 本发明通常涉及纳米技术和亚微电子电路,以及相关的方法和装置,例如纳米级线器件和用于确定疑似存在于样品中的核酸或其他分析物的方法(例如,它们的 存在和/或动态信息),例如在单分子水平。 例如,在一些情况下可以使用纳米级线器件来检测核酸内的单碱基错配(例如,通过确定缔合和/或解离速率)。 在一个方面,可以在核酸或其他分析物与相对于纳米尺度线固定的结合对象之间确定动力学信息,例如结合常数,缔合速率和/或解离速率。 在一些情况下,纳米尺寸线包括包含金属 - 半导体化合物的第一部分和不包括金属 - 半导体化合物的第二部分。 在一些实施方案中,结合配偶体相对于纳米尺度线的至少第二部分是固定的,并且纳米级线的第二部分的尺寸可以在一些情况下被最小化和/或控制。 尺寸大于纳米尺寸的制品和装置也包括在某些实施方案中。 本发明的其它方面包括测定,传感器,试剂盒和/或包括这种纳米线的其它装置,制造和/或使用这种纳米级线的方法等。
    • 9. 发明授权
    • Nanosensors and related technologies
    • 纳米传感器及相关技术
    • US09102521B2
    • 2015-08-11
    • US12308207
    • 2007-06-11
    • Charles M. LieberYing FangFernando Patolsky
    • Charles M. LieberYing FangFernando Patolsky
    • B82Y30/00B82Y10/00C12Q1/68G01N27/414H01L51/00
    • G01N33/551B82Y10/00C12Q1/6825C12Q2600/156G01N27/4145G01N27/4146G01N33/553H01L51/0049H01L51/0093C12Q2563/155
    • The present invention generally relates to nanoscale wire devices and methods for use in determining nucleic acids or other analytes suspected to be present in a sample. For example, a nanoscale wire device can be used to detect single base mismatches within a nucleic acid (e.g., by determining association and/or dissociation rates). In one aspect, dynamical information such as a binding constant, an association rate, and/or a dissociation rate, can be determined between an analyte and a binding partner immobilized relative to a nanoscale wire. In some cases, the nanoscale wire includes a first portion comprising a metal-semiconductor compound, and a second portion that does not include a metal-semiconductor compound. The binding partner, in some embodiments, is immobilized relative to at least the second portion of the nanoscale wire, and the size of the second portion of the nanoscale wire may be minimized and/or controlled in some instances.
    • 本发明一般涉及用于确定怀疑存在于样品中的核酸或其它分析物的纳米级线器件和方法。 例如,纳米级线器件可用于检测核酸内的单碱基错配(例如,通过确定缔合和/或解离速率)。 在一方面,可以在分析物和相对于纳米尺度线固定的结合对象之间确定诸如结合常数,缔合速率和/或解离速率的动力学信息。 在一些情况下,纳米尺寸线包括包含金属 - 半导体化合物的第一部分和不包括金属 - 半导体化合物的第二部分。 在一些实施方案中,结合配偶体相对于纳米尺度线的至少第二部分是固定的,并且纳米级线的第二部分的尺寸可以在一些情况下被最小化和/或控制。