Battery pack authentication for a mobile communication device
    81.
    发明授权
    Battery pack authentication for a mobile communication device 有权
    移动通信设备的电池组认证

    公开(公告)号:US08639219B2

    公开(公告)日:2014-01-28

    申请号:US13283910

    申请日:2011-10-28

    摘要: Various embodiments are described herein for a mobile communication device that authenticates a smart battery prior to use. The mobile device includes a main processor and a device memory. The device memory stores first and second portions of security information used for authentication. The smart battery includes a battery processor and a battery memory. The battery memory stores a third portion of security information used for authentication. The main processor sends an authentication request including the first portion of security information to the battery processor, and the battery processor generates a response based on the first and third portions of security information and sends the generated response to the main processor. The smart battery is authenticated if the generated response matches the second portion of security information.

    摘要翻译: 这里描述了在使用之前认证智能电池的移动通信设备的各种实施例。 移动设备包括主处理器和设备存储器。 设备存储器存储用于认证的安全信息的第一和第二部分。 智能电池包括电池处理器和电池存储器。 电池存储器存储用于认证的第三部分安全信息。 主处理器将包括安全信息的第一部分的认证请求发送到电池处理器,并且电池处理器基于安全信息的第一和第三部分生成响应,并将生成的响应发送到主处理器。 如果生成的响应与安全信息的第二部分匹配,则智能电池被认证。

    Interface and communication protocol for a mobile device with a smart battery
    82.
    发明授权
    Interface and communication protocol for a mobile device with a smart battery 有权
    具有智能电池的移动设备的接口和通信协议

    公开(公告)号:US08543162B2

    公开(公告)日:2013-09-24

    申请号:US13598883

    申请日:2012-08-30

    摘要: Various embodiments are described herein for a mobile communication device that utilizes a smart battery. The mobile device includes a main processor for controlling the operation of the mobile communication device. The smart battery is coupled to the main processor and provides supply power. The smart battery includes a battery processor for controlling the operation of the smart battery and communicating with the main processor, and a battery module having one or more batteries for providing the supply power. A battery interface is provided for coupling between the main processor and the battery processor for providing communication therebetween. The battery interface comprises a data communication line and protection circuitry for protecting the main processor from electrostatic discharge. A communication protocol is also provided for communication between the main processor and the battery processor.

    摘要翻译: 这里描述了利用智能电池的移动通信设备的各种实施例。 移动设备包括用于控制移动通信设备的操作的主处理器。 智能电池耦合到主处理器并提供电源。 智能电池包括用于控制智能电池的操作并与主处理器通信的电池处理器,以及具有用于提供电源的一个或多个电池的电池模块。 提供电池接口用于在主处理器和电池处理器之间耦合以在其间提供通信。 电池接口包括用于保护主处理器免受静电放电的数据通信线路和保护电路。 还提供了用于主处理器和电池处理器之间的通信的通信协议。

    PAYMENT PROCESSING SYSTEM INCLUDING MOBILE WIRELESS COMMUNICATIONS DEVICE TO SEND A PAYMENT CONFIRMATION TO A TRANSACTION TERMINAL AND ASSOCIATED METHODS
    84.
    发明申请
    PAYMENT PROCESSING SYSTEM INCLUDING MOBILE WIRELESS COMMUNICATIONS DEVICE TO SEND A PAYMENT CONFIRMATION TO A TRANSACTION TERMINAL AND ASSOCIATED METHODS 有权
    支付处理系统,包括移动无线通信设备向交易终端发送支付确认和相关方法

    公开(公告)号:US20120259717A1

    公开(公告)日:2012-10-11

    申请号:US13082701

    申请日:2011-04-08

    IPC分类号: G06Q20/00

    摘要: A payment processing system includes a transaction terminal having a merchant account associated therewith and including a first wireless device. The payment processing system also includes a payment server, and a mobile wireless communications device having a purchaser account associated therewith and including a second wireless device and a processor coupled thereto and configured to send transaction information to the payment server. The payment server is configured to cause a transfer of funds from the purchaser account to the merchant account based upon the transaction information, and to send payment confirmation to the mobile wireless communications device based upon the transfer of funds. The processor is configured to send the payment confirmation to the transaction terminal via the first and second wireless devices.

    摘要翻译: 支付处理系统包括交易终端,其具有与之相关联的商家帐户,并且包括第一无线设备。 支付处理系统还包括支付服务器和具有与之相关联的购买者帐户的移动无线通信设备,并且包括第二无线设备和耦合到其上的处理器,并配置为将交易信息发送到支付服务器。 支付服务器被配置为基于交易信息导致从购买者帐户向商户账户的资金转移,并且基于资金的转移向支付确认信息发送到移动无线通信装置。 处理器被配置为经由第一和第二无线设备向交易终端发送支付确认。

    INCORPORATING DATA INTO CRYPTOGRAPHIC COMPONENTS OF AN ECQV CERTIFICATE
    85.
    发明申请
    INCORPORATING DATA INTO CRYPTOGRAPHIC COMPONENTS OF AN ECQV CERTIFICATE 有权
    将数据纳入ECQV认证的CRYPTOGRAPHIC COMPONENTS

    公开(公告)号:US20120246465A1

    公开(公告)日:2012-09-27

    申请号:US13070178

    申请日:2011-03-23

    IPC分类号: H04L9/30

    摘要: During generation of an implicit certificate for a requestor, a certificate authority incorporates information in the public-key reconstruction data, where the public-key reconstruction data is to be used to compute the public key of the requestor. The information may be related to one or more of the requestor, the certificate authority, and the implicit certificate. The certificate authority reversibly encodes the public-key reconstruction data in the implicit certificate and sends it to the requestor. After receiving the implicit certificate from the certificate authority, the requestor can extract the incorporated information from the public-key reconstruction data. The implicit certificate can be made available to a recipient, and the recipient can also extract the incorporated information.

    摘要翻译: 在为请求者生成隐式证书期间,证书颁发机构将公钥重构数据中的信息合并在一起,其中公钥重构数据将用于计算请求者的公开密钥。 信息可能与请求者,证书颁发机构和隐含证书中的一个或多个有关。 证书颁发机构对隐含证书中的公钥重构数据进行可逆编码,并将其发送给请求者。 从认证机构收到隐含证书后,请求者可以从公钥重构数据中提取合并信息。 隐式证书可以提供给收件人,收件人还可以提取合并的信息。

    Key agreement and re-keying over a bidirectional communication path
    87.
    发明授权
    Key agreement and re-keying over a bidirectional communication path 有权
    双向通信路径的重要协议和重新密钥

    公开(公告)号:US08238558B2

    公开(公告)日:2012-08-07

    申请号:US13304382

    申请日:2011-11-24

    IPC分类号: H04L9/00

    摘要: A key agreement method is carried out by a first system in conjunction with a second system over a bidirectional communication path, including generating a first key pair having a first public key and a first private key, sending the first public key to the second system, receiving a second public key generated by the second system, and calculating a master key based upon the first private key, the second public key, a long-term private key, and a long-term public key. The long-term private key was generated by the first system during a previous key-agreement method as part of a long-term key pair. The long-term public key was generated by the second system and received during the previous key-agreement method. The previous key-agreement method required a secret to be known to the first system and the second system, thus conferring authentication based on the secret to the long-term public key.

    摘要翻译: 密钥协商方法由第一系统结合第二系统通过双向通信路径执行,包括生成具有第一公钥和第一私钥的第一密钥对,将第一公钥发送到第二系统, 接收由第二系统生成的第二公钥,以及基于第一私钥,第二公钥,长期私钥和长期公钥计算主密钥。 长期私钥是由以前的密钥协商方法中的第一个系统生成的,作为长期密钥对的一部分。 长期公钥是由第二个系统生成的,并在以前的密钥协商方法中得到。 以前的密钥协商方法需要对第一系统和第二系统知道一个秘密,从而基于长期公钥的秘密授予认证。

    Device authentication
    88.
    发明授权
    Device authentication 有权
    设备认证

    公开(公告)号:US08156336B2

    公开(公告)日:2012-04-10

    申请号:US12685475

    申请日:2010-01-11

    IPC分类号: H04L9/00 H04L9/30 H04K1/00

    CPC分类号: G11C7/24

    摘要: Authentication of two devices in communication with a third device is achieved where the first and second devices each possess a shared secret value. The authentication includes communication of authentication values from the first device to the second device using the third device. Similarly, there is communication of values from the second device to the first device using the third device. The third device retains the communicated values. The values are calculated to permit the third device to authenticate the first and second devices without the third device receiving the shared secret value. The authentication may be used to establish a communications channel between the first and the second devices.

    摘要翻译: 实现与第三设备通信的两个设备的认证,其中第一和第二设备各自具有共享秘密值。 该认证包括使用第三设备从第一设备到第二设备的认证值的通信。 类似地,存在使用第三设备从第二设备到第一设备的值的通信。 第三个设备保留所传达的值。 计算这些值以允许第三设备认证第一和第二设备,而第三设备不接收共享秘密值。 认证可以用于在第一和第二设备之间建立通信信道。

    Key Agreement and Re-keying over a Bidirectional Communication Path
    89.
    发明申请
    Key Agreement and Re-keying over a Bidirectional Communication Path 有权
    双向通信路径的重要协议和重新密钥

    公开(公告)号:US20110103588A1

    公开(公告)日:2011-05-05

    申请号:US12973485

    申请日:2010-12-20

    IPC分类号: H04L9/00

    摘要: A key agreement method is carried out by a first system in conjunction with a second system over a bidirectional communication path, including generating a first key pair having a first public key and a first private key, sending the first public key to the second system, receiving a second public key generated by the second system, and calculating a master key based upon the first private key, the second public key, a long-term private key, and a long-term public key. The long-term private key was generated by the first system during a previous key-agreement method as part of a long-term key pair. The long-term public key was generated by the second system and received during the previous key-agreement method. The previous key-agreement method required a secret to be known to the first system and the second system, thus conferring authentication based on the secret to the long-term public key.

    摘要翻译: 密钥协商方法由第一系统结合第二系统通过双向通信路径执行,包括生成具有第一公钥和第一私钥的第一密钥对,将第一公钥发送到第二系统, 接收由第二系统生成的第二公钥,以及基于第一私钥,第二公钥,长期私钥和长期公钥计算主密钥。 长期私钥是由以前的密钥协商方法中的第一个系统生成的,作为长期密钥对的一部分。 长期公钥是由第二个系统生成的,并在以前的密钥协商方法中得到。 以前的密钥协商方法需要对第一系统和第二系统知道一个秘密,从而基于长期公钥的秘密授予认证。