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    • 6. 发明申请
    • Reliable request-response messaging over a request-response transport
    • 通过请求 - 响应传输提供可靠的请求 - 响应消息
    • US20060206558A1
    • 2006-09-14
    • US11075418
    • 2005-03-08
    • Shy CohenKirill GavrylyukOndrej HrebicekRichard HillStefan Batres
    • Shy CohenKirill GavrylyukOndrej HrebicekRichard HillStefan Batres
    • G06F15/16
    • H04L29/06H04L67/42H04L69/32H04L69/329H04L69/40Y10S707/99945Y10S707/99948
    • A reliable request-response mechanism allows a requesting computer system and a responding computer system in an established end-to-end connection to send and receive messages in a manner that the responding computer system processes a request as intended by the requesting computer system, such that all the message communication is initiated by the requesting computer system. The requesting computer system and responding computer system can accommodate a wide range of messaging failures, such as intermittent network connections or failure of a transport of SOAP intermediary by resending cached versions of previously sent messages, and by acknowledging receipt of each message received. Cached messages on either computer system are deleted after being appropriately acknowledged. After all sent messages have been acknowledged by the responding computer, and the requesting computer has received all of the response messages from the responding computer, the end-to-end connection is terminated with an exchange of connection termination messages.
    • 可靠的请求 - 响应机制允许请求计算机系统和建立的端对端连接中的响应计算机系统以响应的计算机系统按请求计算机系统的预期处理请求的方式来发送和接收消息, 所有消息通信由请求计算机系统发起。 请求计算机系统和响应的计算机系统可以适应各种消息传递失败,例如间歇性网络连接或通过重新发送先前发送的消息的缓存版本的SOAP中介的传输失败,以及通过确认收到的每个消息的接收。 任何计算机系统上的缓存消息在被适当确认后被删除。 在所有发送的消息已经被响应的计算机确认,并且请求计算机已经从响应的计算机接收到所有的响应消息之后,端到端连接通过交换连接终止消息来终止。
    • 7. 发明申请
    • Heat spreading thermal interface structure
    • 热扩散热界面结构
    • US20050045372A1
    • 2005-03-03
    • US10886841
    • 2004-07-07
    • Richard HillJason StraderJames Latham
    • Richard HillJason StraderJames Latham
    • H01L23/427H05K1/16
    • H01L23/4275H01L2924/0002Y10T428/12396Y10T428/12486Y10T428/12528Y10T428/12556H01L2924/00
    • The thermal interface structure of the present invention is suited for use in a non-referenced die system between a heat source and heat sink spaced up to 300 mils apart and comprises a plurality of layers including a core body of high conductivity metal or metal alloy having opposite sides, a soft thermal interface layer disposed on one side of the core body for mounting against the heat sink and a thin layer of a phase change material disposed on the opposite side of the core body for mounting against the heat source wherein the surface area dimension (footprint) of the core body is substantially larger than the surface area of the heat source upon which the phase change material is mounted to minimize the thermal resistance between the heat source and the heat sink and wherein said soft thermal interface layer is of a thickness sufficient to accommodate a variable spacing between the heat source and the heat sink of up to 300 mils.
    • 本发明的热界面结构适用于间隔高达300密耳间隔的热源和散热器之间的非参考模具系统,并且包括多个层,包括具有高导电性金属或金属合金的芯体,其具有 相对侧,设置在芯体的一侧上用于安装在散热器上的软热界面层和设置在芯体的相对侧上的相变材料的薄层,用于安装在热源上,其中表面积 芯体的尺寸(占地面积)基本上大于安装有相变材料的热源的表面积,以最小化热源和散热器之间的热阻,并且其中所述软热界面层为 厚度足以容纳高达300密耳的热源和散热器之间的可变间隔。
    • 10. 发明授权
    • Reliable request-response messaging over a request-response transport
    • 通过请求 - 响应传输提供可靠的请求 - 响应消息
    • US07359919B2
    • 2008-04-15
    • US11075418
    • 2005-03-08
    • Shy CohenKirill GavrylyukOndrej HrebicekRichard HillStefan R. Batres
    • Shy CohenKirill GavrylyukOndrej HrebicekRichard HillStefan R. Batres
    • G06F17/30G06F15/173
    • H04L29/06H04L67/42H04L69/32H04L69/329H04L69/40Y10S707/99945Y10S707/99948
    • A reliable request-response mechanism allows a requesting computer system and a responding computer system in an established end-to-end connection to send and receive messages in a manner that the responding computer system processes a request as intended by the requesting computer system, such that all the message communication is initiated by the requesting computer system. The requesting computer system and responding computer system can accommodate a wide range of messaging failures, such as intermittent network connections or failure of a transport of SOAP intermediary by resending cached versions of previously sent messages, and by acknowledging receipt of each message received. Cached messages on either computer system are deleted after being appropriately acknowledged. After all sent messages have been acknowledged by the responding computer, and the requesting computer has received all of the response messages from the responding computer, the end-to-end connection is terminated with an exchange of connection termination messages.
    • 可靠的请求 - 响应机制允许请求计算机系统和建立的端对端连接中的响应计算机系统以响应的计算机系统按请求计算机系统的预期处理请求的方式来发送和接收消息, 所有消息通信由请求计算机系统发起。 请求计算机系统和响应的计算机系统可以适应各种消息传递失败,例如间歇性网络连接或通过重新发送先前发送的消息的缓存版本的SOAP中介的传输失败,以及通过确认收到的每个消息的接收。 任何计算机系统上的缓存消息在被适当确认后被删除。 在所有发送的消息已经被响应的计算机确认,并且请求计算机已经从响应的计算机接收到所有的响应消息之后,端到端连接通过交换连接终止消息来终止。