HP xw2x220c Blade manual Rack and accessory footprints

Models: xw2x220c Blade

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HP BladeSystem enclosure environmental specifications

Specification

Value

 

 

Temperature range*

 

 

 

Operating

10°C to 35°C (50°F to 95°F)

 

 

Non-operating

-30°C to 60°C (-22°F to 140°F)

 

 

Wet bulb temperature

 

 

 

Operating

28ºC (82.4ºF)

 

 

Non-operating

38.7ºC (101.7ºF)

 

 

Relative humidity

 

(noncondensing)**

 

 

 

Operating

20% to 80%

 

 

Non-operating

5% to 95%

 

 

*All temperature ratings shown are for sea level. An altitude derating of 1°C per 304.8 m (1.8°F per 1000 ft) to 3048 m (10,000 ft) is applicable. No direct sunlight allowed. Upper operating limit is 3,048 m (10,000 ft) or 70 kPa/10.1 psia. Upper non-operating limit is 9,144 m (30,000 ft) or 30.3 kPa (4.4 psia).

**Storage maximum humidity of 95% is based on a maximum temperature of 45°C (113°F). Altitude maximum for storage corresponds to a pressure minimum of 70 kPa (10.1 psia).

Rack and accessory footprints

When accessories such as extensions and stabilizing kits are added to a particular rack, the footprint of the rack extends into the rack rear row and infringes upon necessary clearances.

Footprint for a 600 mm rack configuration with an extension kit installed (598 mm wide x 1184.9 mm deep):

Environmental requirements 22

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HP xw2x220c Blade manual Rack and accessory footprints, HP BladeSystem enclosure environmental specifications

xw2x220c Blade specifications

The HP xw2x220c Blade is designed for organizations that require a high-performance, space-efficient computing solution. This blade server epitomizes the commitment to enhancing data center efficiency and maximizing computing power without compromising on reliability.

One of the standout features of the HP xw2x220c Blade is its compact form factor, which enables organizations to fit a substantial amount of computing power in a small footprint. This is particularly beneficial for businesses with limited space, as they can host more servers within the same physical environment. The blade is optimized for virtualization, allowing it to handle multiple workloads simultaneously, which translates to cost savings and better resource utilization.

The server is powered by advanced Intel Xeon processors, ensuring efficient processing capabilities for demanding applications. The HP xw2x220c Blade supports multiple CPU options, allowing organizations to select the configuration that best meets their workload requirements. Leveraging Intel's latest technologies, it offers enhanced performance while maintaining energy efficiency, which is a critical consideration in today’s environmentally conscious technological landscape.

In terms of memory, the xw2x220c Blade supports high-capacity DDR4 RAM, which enhances data access speeds and ensures smooth operation even during heavy loads. The architecture of the blade also includes advanced cooling technology that optimizes airflow to maintain optimal temperatures, thereby prolonging hardware lifespan and reliability.

Network connectivity is a vital feature, and the HP xw2x220c Blade offers multiple Ethernet ports for flexible networking options, as well as support for fibre channel connections. This enables seamless integration into existing network configurations, ensuring high-speed data transfer rates that are crucial for real-time applications.

Security features are also integrated into the HP xw2x220c Blade, including options for secure boot, system integrity verification, and advanced encryption capabilities. These attributes protect sensitive data from unauthorized access and potential breaches, which is essential for organizations dealing with confidential information.

In conclusion, the HP xw2x220c Blade is a formidable choice for businesses seeking a compact, powerful, and efficient computing solution. Its combination of advanced processing capabilities, extensive memory support, flexible networking options, and robust security features makes it well-suited for a variety of applications, making it an essential component for modern data centers.