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Featured Solution: Cisco High Availability Data


Operating a data center at peak efficiency and reliability requires the combined efforts of facilities and IT.

Per-rack power requirements constrain the number of racks a data center can support. A typical 10,000 - 20,000 sq. ft. facility designed for 50 - 100 watts/sq. ft requires 1/2 megawatt to 2 megawatts of power. Availability and cost of utility power in the megawatt range is expensive and difficult to obtain. Supporting infrastructure - generators, ATS, UPS, and distribution equipment - also are costly. Careful planning and growth projections must be maintained to ensure power requirements can be met.

IT executives will have to make sure the data can be audited and meet regulatory and compliance rules as well as make sure the growing storage demands don't break the bank.

The rise in technology and a changing corporate landscape have presented data center operators new challenges.

The usual goal of virtualization is to centralize administrative tasks while improving scalability and work loads.

Desktop virtualization enables a centralized server to deliver and manage individualized desktops remotely. This gives users a full client experience, but lets IT staff provision, manage, upgrade and patch them virtually, instead of physically.

The ideal storage management solution should back up files and information automatically and in real time. In addition, organisations need a storage management and data protection solution that enables them to cope with rapidly increasing storage volumes and the increased complexity of desktop and laptop computers.

The Cisco Unified Computing System enables more dynamic and agile data centers, in which server identity (MAC addresses, worldwide names [WWNs], firmware and BIOS revisions, network and storage connectivity profiles and policies, etc.) can be dynamically provisioned or migrated to any physical server within the system.

Green IT can be defined as research in and use of IT in an efficient and environmentally friendly manner.

A data storage system includes a disk drive array including a plurality of disk drives; a first storage processor for controlling the operation of the data storage system; a second storage processor forcontrolling the operation of the data storage system; a first arbiter for controlling communication of data from the first storage processor and the second storage processor to a first group of disk drives of the disk drive array; a second arbiter forcontrolling communication of data from the first storage processor and the second storage processor to a second group of disk drives of the disk drive array; and a third arbiter for controlling communication of data from the first storage processor andthe second storage processor to a third group of disk drives of the disk drive array. Selected data is redundantly stored on disk drives in the first group of disk drives, the second group of disk drives and the third group of disk drives such that,upon failure of the first arbiter, the selected data is available to the first storage processor and the second storage processor through the second and third arbiters.

Next-generation data centers have specific server networking needs, and the Cisco Nexus 5010 one-rack unit (RU) switch provides an Ethernet-based unified fabric that's designed to meet those needs.