Abstract:
A multi-service platform system (200) having a VXS backplane (204) includes a VXS payload module (202) coupled to the VXS backplane, a first switched fabric enabled mezzanine card (212) coupled to the VXS payload module, and a second switched fabric enabled mezzanine card (213) coupled to the VXS payload module. VXS payload module also includes a switching element (215) communicatively interposed between the first and second switched fabric enabled mezzanine card and the switching element, wherein the first and second switched fabric enabled mezzanine card are coupled to directly communicate with a switched fabric (206, 207) via the switching element.
Abstract:
In a computer network (100), a method transporting a PCI Express packet (235) from an initiator PCI Express node (202) over an IP packet network (210) to a receiver PCI Express node (204), can include the initiator PCI Express node creating the PCI Express packet and reading a global PCI Express destination address (352) of the PCI Express packet. The initiator PCI Express node can map the global PCI Express destination address to a receiver PCI Express node IP address (242). The PCI Express packet can be encapsulated in an IP packet (236). The IP packet with the encapsulated PCI Express packet can be communicated over an IP packet network (210) to receiver PCI Express node.
Abstract:
In a computer network (100), a method transporting a PCI Express packet (235) from an initiator PCI Express node (202) over an IP packet network (210) to a receiver PCI Express node (204), can include the initiator PCI Express node creating the PCI Express packet and reading a global PCI Express destination address (352) of the PCI Express packet. The initiator PCI Express node can map the global PCI Express destination address to a receiver PCI Express node IP address (242). The PCI Express packet can be encapsulated in an IP packet (236). The IP packet with the encapsulated PCI Express packet can be communicated over an IP packet network (210) to receiver PCI Express node.
Abstract:
A multi-service platform system (200) having a VXS backplane (204) includes a VXS payload module (202) coupled to the VXS backplane, a first switched fabric enabled mezzanine card (212) coupled to the VXS payload module, and a second switched fabric enabled mezzanine card (213) coupled to the VXS payload module. VXS payload module also includes a switching element (215) communicatively interposed between the first and second switched fabric enabled mezzanine card and the switching element, wherein the first and second switched fabric enabled mezzanine card are coupled to directly communicate with a switched fabric (206, 207) via the switching element.
Abstract:
An embedded computer chassis (100) may include a fan tray receptacle (102) adapted to receive at least one primary fan tray (108), where the at least one primary fan tray is adapted to be non-redundant in providing cooling air to the embedded computer chassis. Embedded computer chassis may also include a cooling air plenum (104), where the cooling air plenum is adapted to receive a service fan tray (110), where the service fan tray is adapted to temporarily provide the cooling air to the embedded computer chassis absent the at least one primary fan tray.
Abstract:
A multi-service platform system (100) includes a switched fabric backplane (102), a baseboard (104) coupled to interface with the switched fabric backplane, a full-span switched fabric carrier module (106) coupled to interface with the baseboard, and a switched fabric link (108), wherein the full-span carrier interfaces with the baseboard via the switched fabric link.
Abstract:
A method of communicating a VMEbus transfer (235) from an initiator VMEbus domain (202) over an IP packet network (210) to a responder VMEbus domain (204) can include the initiator VMEbus domain creating the VMEbus transfer and reading a VMEbus destination address (452) of the VMEbus transfer. The VMEbus destination address can be mapped to a responder VMEbus domain IP address and the VMEbus transfer encapsulated in an IP packet (236). The IP packet can be communicated to the responder VMEbus domain over the IP packet network.
Abstract:
An embedded computer chassis (100) may include a fan tray receptacle (102) adapted to receive at least one primary fan tray (108), where the at least one primary fan tray is adapted to be non-redundant in providing cooling air to the embedded computer chassis. Embedded computer chassis may also include a cooling air plenum (104), where the cooling air plenum is adapted to receive a service fan tray (110), where the service fan tray is adapted to temporarily provide the cooling air to the embedded computer chassis absent the at least one primary fan tray.
Abstract:
A method of communicating a VMEbus transfer (235) from an initiator VMEbus domain (202) over an IP packet network (210) to a responder VMEbus domain (204) can include the initiator VMEbus domain creating the VMEbus transfer and reading a VMEbus destination address (452) of the VMEbus transfer. The VMEbus destination address can be mapped to a responder VMEbus domain IP address and the VMEbus transfer encapsulated in an IP packet (236). The IP packet can be communicated to the responder VMEbus domain over the IP packet network.
Abstract:
A multi-service platform system (100) includes a VXS backplane (104), a switched fabric (106) operating on the VXS backplane, a parallel bus (108) operating coincident with the switched fabric on the VXS backplane, a VXS payload module (102) coupled to the VXS backplane, and a storage module (110) coupled to the VXS payload module, wherein the storage module is coupled to communicate with the switched fabric.