RADIATION SENSOR
    261.
    发明申请
    RADIATION SENSOR 审中-公开
    辐射传感器

    公开(公告)号:US20160011141A1

    公开(公告)日:2016-01-14

    申请号:US14770756

    申请日:2013-03-15

    Inventor: Yansong Gu

    CPC classification number: G01N27/3278 G01N27/20 G01T1/1606

    Abstract: An apparatus includes a first electrode and a second electrode positioned a distance from the first electrode. The second electrode is in electrical communication with the first electrode through at least a portion of a double strand deoxyribonucleic acid (DNA). The apparatus also includes a detector configured to detect a conductivity of the double strand DNA.

    Abstract translation: 一种装置包括第一电极和与第一电极相距一定距离的第二电极。 第二电极通过双链脱氧核糖核酸(DNA)的至少一部分与第一电极电连通。 该装置还包括被配置为检测双链DNA的电导率的检测器。

    ALTERATION OF GRAPHENE DEFECTS
    262.
    发明申请

    公开(公告)号:US20160009562A1

    公开(公告)日:2016-01-14

    申请号:US14657886

    申请日:2015-03-13

    Abstract: Technologies are generally described for method and systems effective to at least partially alter a defect in a layer including graphene. In some examples, the methods may include receiving the layer on a substrate where the layer includes at least some graphene and at least some defect areas in the graphene. The defect areas may reveal exposed areas of the substrate. The methods may also include reacting the substrate under sufficient reaction conditions to produce at least one cationic area in at least one of the exposed areas. The methods may further include adhering graphene oxide to the at least one cationic area to produce a graphene oxide layer. The methods may further include reducing the graphene oxide layer to produce at least one altered defect area in the layer.

    Aggregation of bandwidth from multiple wireless devices
    263.
    发明授权
    Aggregation of bandwidth from multiple wireless devices 有权
    多个无线设备的带宽聚合

    公开(公告)号:US09232563B2

    公开(公告)日:2016-01-05

    申请号:US14118649

    申请日:2013-08-13

    Abstract: Technologies are generally described for an aggregation of bandwidth from multiple wireless devices. In some examples, a source device may communicate with a destination device at a first bandwidth. The source device may divide data into a first piece and a second piece. The source device may transmit the first piece to a first wireless device and the second piece to a second wireless device over a first network. The first wireless device and second wireless device may communicate with the destination device at a second bandwidth and a third bandwidth respectively. The first bandwidth may be less than an aggregation of the second bandwidth and the third bandwidth. The first wireless device may transmit the first piece over a second network, different from the first network, to the destination device. The second wireless device may transmit the second piece over a third network, different from the first network, to the destination device.

    Abstract translation: 技术通常被描述为来自多个无线设备的带宽聚合。 在一些示例中,源设备可以以第一带宽与目的地设备进行通信。 源设备可以将数据划分为第一块和第二块。 源设备可以通过第一网络将第一块发送到第一无线设备,并将第二块发送到第二无线设备。 第一无线设备和第二无线设备可以分别以第二带宽和第三带宽与目的地设备进行通信。 第一带宽可以小于第二带宽和第三带宽的聚合。 第一无线设备可以通过不同于第一网络的第二网络将第一块传输到目的地设备。 第二无线设备可以通过不同于第一网络的第三网络将第二块传输到目的地设备。

    One-cacheable multi-core architecture
    264.
    发明授权
    One-cacheable multi-core architecture 有权
    单缓存多核架构

    公开(公告)号:US09229865B2

    公开(公告)日:2016-01-05

    申请号:US13982620

    申请日:2013-02-21

    Inventor: Yan Solihin

    CPC classification number: G06F12/0811 G06F12/0815 G06F12/084 G06F12/1027

    Abstract: Technologies are generally described for methods, systems, and devices effective to implement one-cacheable multi-core architectures. In one example, a multi-core processor that includes a first and second tile may be configured to implement a one-cacheable architecture. The second tile may be configured to generate a request for a data block. The first tile may be configured to receive the request for the data block, and determine that the requested data block is part of a group of data blocks identified as one-cacheable. The first tile may further determine that the requested data block is stored in a first cache in the first tile. The first tile may send the data block from the first cache in the first tile to the second tile, and invalidate the data blocks of the group of data blocks in the first cache in the first tile.

    Abstract translation: 技术通常被描述为有效实现单缓存多核架构的方法,系统和设备。 在一个示例中,包括第一和第二瓦片的多核处理器可以被配置为实现单缓存架构。 第二瓦片可以被配置为产生对数据块的请求。 第一瓦片可以被配置为接收对数据块的请求,并且确定所请求的数据块是被识别为单缓存的一组数据块的一部分。 第一瓦片还可以确定所请求的数据块被存储在第一瓦片中的第一高速缓存中。 第一瓦片可以将数据块从第一瓦片中的第一高速缓存发送到第二瓦片,并且使第一瓦片中的第一高速缓存中的数据块组的数据块无效。

    QUORUM-BASED VIRTUAL MACHINE SECURITY
    265.
    发明申请
    QUORUM-BASED VIRTUAL MACHINE SECURITY 审中-公开
    基于QUORUM的虚拟机安全

    公开(公告)号:US20150381356A1

    公开(公告)日:2015-12-31

    申请号:US14827476

    申请日:2015-08-17

    Inventor: EZEKIEL KRUGLICK

    CPC classification number: H04L9/0825 G06F21/62 H04L63/062

    Abstract: Technologies related to quorum-based Virtual Machine (VM) security are generally described. In some examples, VM data, such as a VM payload or other VM data, may be quorum-encrypted, such that a quorum of decryption keys may be used to decrypt the data. Decryption keys may be distributed among multiple VMs, with different decryption keys provided to different VMs, so that single VMs may not decrypt the VM data without decryption keys held by other VMs. To decrypt its data, a VM may assemble a quorum of decryption keys by requesting decryption keys held by other operational VMs, and the VM may then decrypt its data using the assembled quorum of decryption keys. The VM may be prevented from decrypting its data without a sufficient quorum of other operational VMs.

    Abstract translation: 与基于法定虚拟机(VM)安全性相关的技术通常被描述。 在一些示例中,诸如VM有效载荷或其他VM数据的VM数据可以被加法加密,使得可以使用解密密钥的数量来解密数据。 解密密钥可以分布在多个虚拟机之间,其中不同的解密密钥被提供给不同的虚拟机,使得单个虚拟机不能解密虚拟机数据,而没有由其他虚拟机保存的解密密钥。 为了对其数据进行解密,VM可以通过请求由其他操作VM所保存的解密密钥来组合解密密钥的数量,然后VM可以使用组合的解密密钥解密其数据。 可以防止VM在没有足够的其他操作VM的数量的情况下解密其数据。

    NANOTUBE SENSORS FOR CONDUCTING SOLUTIONS
    267.
    发明申请
    NANOTUBE SENSORS FOR CONDUCTING SOLUTIONS 审中-公开
    用于导电解决方案的纳米传感器

    公开(公告)号:US20150377815A1

    公开(公告)日:2015-12-31

    申请号:US14769370

    申请日:2013-02-20

    CPC classification number: G01N27/221 G01N33/487 G01N33/48707

    Abstract: Sensors for detecting at least one electrolyte in a conductive solution are described. The sensors may include a dielectric substrate and a resonator having a resonance characteristic and configured to generate a signal in response to an interrogation signal. The resonator may include a conductive layer in contact with the dielectric substrate, at least one layer of nanotubes provided on the conductive layer, and a dielectric layer at least partially encapsulating the nanotubes.

    Abstract translation: 描述了用于检测导电溶液中的至少一种电解质的传感器。 传感器可以包括电介质基片和具有谐振特性的谐振器,并且被配置为响应于询问信号产生信号。 谐振器可以包括与电介质基板接触的导电层,设置在导电层上的至少一层纳米管,以及至少部分地封装纳米管的电介质层。

    MULTI-FUNCTIONAL ACRYLATES
    268.
    发明申请
    MULTI-FUNCTIONAL ACRYLATES 有权
    多功能丙烯酸酯

    公开(公告)号:US20150376149A1

    公开(公告)日:2015-12-31

    申请号:US14768217

    申请日:2013-11-21

    Abstract: Disclosed herein are derivatives of phenolic and melamine compounds, methods of making these derivatives, and methods of using them. The compounds include phenolic and melamine compounds with multi-functional acrylate groups, polyethylene glycol and amino groups. The compounds may be cured to form resins that may be used in a variety of applications, such as paints, hydrogels, polyacrylate super absorbent polymers (SAPs), adhesives, composites, sealants, fillers, fire retardants, crosslinking agents, and the like.

    Abstract translation: 本文公开了酚醛和三聚氰胺化合物的衍生物,制备这些衍生物的方法和使用它们的方法。 这些化合物包括具有多官能丙烯酸酯基团的酚和三聚氰胺化合物,聚乙二醇和氨基。 化合物可以固化以形成可用于各种应用的树脂,例如油漆,水凝胶,聚丙烯酸酯超吸收聚合物(SAP),粘合剂,复合材料,密封剂,填料,阻燃剂,交联剂等。

    SECURE NEAR FIELD COMMUNICATION (NFC) HANDSHAKE
    269.
    发明申请
    SECURE NEAR FIELD COMMUNICATION (NFC) HANDSHAKE 有权
    安全近场通信(NFC)手机

    公开(公告)号:US20150372720A1

    公开(公告)日:2015-12-24

    申请号:US14840612

    申请日:2015-08-31

    CPC classification number: H04B5/0031 H04B5/0056 H04W4/80 H04W12/04

    Abstract: Technologies are presented for securing NFC exchange through movement of at least one of the communicating devices. In some examples, a first device, utilizing a communication module and a processor, may transmit an initial NFC handshake signal as the first device is being moved relative to a second device. The second device, utilizing a communication module, two or more antennae, and a processor, may receive the initial NFC handshake signal from the first device. Each device may record a movement of the first device. The second device may transmit a message to the first device that includes a recording of the movement at the second device and a temporary secret. Once the first device determines that the movement recorded at the second device matches the movement recorded at the first device, the first device may use the temporary secret to encrypt further communication with the second device.

    Abstract translation: 提供了通过至少一个通信设备的移动来保护NFC交换的技术。 在一些示例中,当第一设备相对于第二设备移动时,利用通信模块和处理器的第一设备可以发送初始的NFC握手信号。 利用通信模块,两个或多个天线和处理器的第二设备可以从第一设备接收初始的NFC握手信号。 每个设备可以记录第一设备的移动。 第二设备可以向包括在第二设备处的移动记录和临时秘密的第一设备发送消息。 一旦第一设备确定在第二设备处记录的移动与记录在第一设备处的移动相匹配,则第一设备可以使用临时秘密来加密与第二设备的进一步通信。

    DEVICE TELEMETRY FOR USER EXPERIENCE PREDICTIONS
    270.
    发明申请
    DEVICE TELEMETRY FOR USER EXPERIENCE PREDICTIONS 有权
    用户体验预测的设备电话

    公开(公告)号:US20150369705A1

    公开(公告)日:2015-12-24

    申请号:US14311807

    申请日:2014-06-23

    Inventor: Ezekiel KRUGLICK

    CPC classification number: G06Q30/0282 G06Q10/10 G06Q50/01 H04L51/043

    Abstract: In some examples, one or more processors of a computing system may receive telemetry data from a plurality of devices, user identifications (IDs) of a set of users of the plurality of the devices, and information from social media indicative of user sentiments toward the devices. The computing system may predict user experience related to the devices based at least in part on the telemetry data, the user IDs, and the information from the social media.

    Abstract translation: 在一些示例中,计算系统的一个或多个处理器可以从多个设备接收遥测数据,多个设备中的一组用户的用户标识(ID)以及来自指示用户情绪的来自社交媒体的信息 设备。 计算系统可以至少部分地基于遥测数据,用户ID和来自社交媒体的信息来预测与设备相关的用户体验。

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