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    • 7. 发明申请
    • DEEP SLEEP MODE MANAGEMENT FOR A NETWORK SWITCH
    • 网络开关的深度休眠模式管理
    • US20120120958A1
    • 2012-05-17
    • US13384977
    • 2010-02-01
    • Priya MahadevanPuneet SharmaSujata Banerjee
    • Priya MahadevanPuneet SharmaSujata Banerjee
    • H04L12/56
    • H04L12/12G06F1/3209H04L41/0833Y02D50/20Y02D50/40
    • A switch (100) connected to a network is configured to have one or more components that can be placed in a deep sleep mode. The switch (100) includes a management circuit (150) that is configured to wake up the components in deep sleep mode. The management circuit (150) includes a port (151) that receives packets and a wake-up circuit (152) that determines whether a packet received via the port (151) is a magic packet including a unique ID for the port (151) or the switch (100). If the packet is the magic packet including the unique ID for the port (151) or the switch (100), the wake-up circuit (151) is configured to send a wake-up signal to components in the switch (100) to wake up from the deep sleep mode.
    • 连接到网络的交换机(100)被配置为具有可以被置于深度睡眠模式的一个或多个组件。 开关(100)包括管理电路(150),其被配置为以深睡眠模式唤醒组件。 管理电路(150)包括接收分组的端口(151)和确定经由所述端口(151)接收的分组是否是包括所述端口(151)的唯一ID的魔术分组的唤醒电路(152) 或开关(100)。 如果分组是包括端口(151)或交换机(100)的唯一ID的魔术分组,则唤醒电路(151)被配置为向开关(100)中的组件发送唤醒信号到 从深度睡眠模式唤醒。
    • 9. 发明申请
    • Method and system for file downloads to portable computing devices
    • 文件下载到便携式计算设备的方法和系统
    • US20050076214A1
    • 2005-04-07
    • US10678936
    • 2003-10-03
    • David ThomasEdward PerrySujata BanerjeePuneet SharmaAmy DalalSung-Ju Lee
    • David ThomasEdward PerrySujata BanerjeePuneet SharmaAmy DalalSung-Ju Lee
    • G06F12/14G06F21/00G06F17/60
    • G06F21/10
    • The present disclosure allows for the downloading of large digital media files in a progressive manner by allowing for a transfer of such digital media to occur over various sessions. A file server is described that receives a request to transmit a file whereupon the file server locates such requested file in its memory. For verification purposes a unique identifier is computed for the requested file such as an MD5 checksum of the digital file. Thereafter an encryption key, K1, is chosen. Using a second key, K2, the first key and the unique identifier are encrypted, and the requested file is encrypted using the first key. Both these encrypted values are then transmitted. Subsequently, for example, after payment is received, an unencrypted form of the first key is also transmitted. The first key can then be used to decrypt the requested file to unlock full functionality of the requested file.
    • 本公开允许通过允许这样的数字媒体的传送在各种会话上发生而以渐进的方式下载大型数字媒体文件。 描述了一种文件服务器,其接收传送文件的请求,因此文件服务器将这样的请求的文件定位在其存储器中。 为验证目的,为所请求的文件计算唯一的标识符,例如数字文件的MD5校验和。 此后选择加密密钥K1。 使用第二个键,K2,第一个键和唯一标识符被加密,并且使用第一个密钥加密所请求的文件。 然后传输这两个加密值。 随后,例如,在接收到支付之后,还发送第一密钥的未加密形式。 然后可以使用第一个密钥来解密所请求的文件,以解锁所请求文件的完整功能。