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We find "the right" Data Center solution by working with you through a 5-Step process:

    1. Review your business processes and existing IT infrastructure to determine specific data center requirements.
    2. Identify the data center services that best fit your specific requirements.
    3. Present Cisco data center equipment and service options.
    4. Clearly identify the strengths and weaknesses of each data center equipment and service option based on your requirements.
    5. Oversee implementation of your data center solution until your desired result is achieved.

Call us at (888) 233-6471 for a FREE consultation with a Cisco Solutions Consultant who will review your business data center requirements and recommend next steps.

Featured Solution: Cisco Data Center Design & Implementation


All the supporting systems in a data center face heavy loads and must be properly maintained to continue operating satisfactorily. These systems include cooling, humidification, air handling, power distribution, backup power generation and much more.

Power continues to lead as a concern for data center operations. Data centers are designed to a specific power density - watts per square foot - with a typical cabinet of equipment occupying 14 sq. ft. of space.

Develop a dashboard of data center energy-efficient metrics that provide appropriate data to different levels of IT and financial management.

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

Virtualization can be viewed as part of an overall trend in enterprise IT that includes autonomic computing, a scenario in which the IT environment will be able to manage itself based on perceived activity, and utility computing, in which computer processing power is seen as a utility that clients can pay for only as needed.

Virtualization can optimize fewer servers to run at higher performance levels.

In many businesses, critical data is stored on desktop and laptop computers outside the reach of most enterprise storage management software products. This data is at significant risk.

The Cisco UCS uses three adapter types, with four specific models: the Cisco UCS 82598KR-CI 10 Gigabit Ethernet Adapter, UCS M71KR-Q QLogic Converged Network Adapter, UCS M71KR-E Emulex Converged Network Adapter, and UCS M81KR Virtual Interface Card. Each of these cards has a pair of 10 Gigabit Ethernet connections to the Cisco Unified Computing System backplane that support the IEEE 802.1 Data Center Bridging function (formerly called Cisco Data Center Ethernet) to facilitate I/O unification within these adapters. On each adapter type, one of these backplane ports is connected through 10GBASE-KR to the A-side I/O module; then that connection goes to the A-side fabric interconnect. 10GBASE-KR is a copper midplane technology for interfacing adapters and switching elements through these midplanes. The other connection is 10GBASE-KR to the B-side I/O module; that connection then goes to the B-side fabric interconnect. Figure 3 later in this document shows this connectivity.

Green IT is making information technology itself more energy efficient, and going beyond that to using IT to reduce the carbon footprint of other operations.

High availability is a system design protocol and associated implementation that ensures a certain degree of operational continuity during a given measurement period.

A broad group of industry-leading partners supports the open, standards-based unified fabric architecture of the Cisco Nexus 5010 Switch. This switch also delivers more than 500 Gbps of switching capacity with 20 fixed wirespeed 10 Gigabit Ethernet ports that support Data Center Ethernet and FCoE. In addition, one expansion port supports 8-port 1/2/4 Gigabit Fibre Channel, 4-port 10 Gigabit Ethernet (Data Center Ethernet and FCoE) and 4-port 1/2/4 Gigabit Fibre Channel, and 6-port 10 Gigabit Ethernet (Data Center Ethernet and FCoE).