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At the foundation, PowerEdge MX7000 chassis hosts disaggregated blocks of server and storage to create consumable resources on-demand. Shared power, cooling, networking, I/O and in-chassis management provides outstanding efficiencies.\r\n<ul><li>7U modular enclosure with eight slots holds 2S single or four 4S double-width compute sleds and 12Gbs single-width storage sleds</li><li>25Gb Ethernet, 12Gb SAS and 32Gb Fibre Channel I/O options</li><li>Three I/O networking fabrics, two general purpose and one storage specific, each with redundant modules</li><li>Multi-chassis networking up to 10 chassis</li><li>Single management point for compute, storage and networking</li><li>High-speed technology connections, now and into the future, with no midplane upgrade</li><li>At least three server processor microarchitecture generation support assurance</li></ul>\r\n<span style=\"font-weight: bold; \">Dynamically scale and respond with kinetic infrastructure</span>\r\nDesigned with Dell EMC’s kinetic infrastructure, PowerEdge MX creates shared pools of disaggregated compute and storage resources, connected by scalable fabric, from which workloads can draw resources needed to run most quickly and efficiently. Then when no longer needed the resources are returned into the pool. By essentially creating hardware on the fly the capacity can be managed at a data center level instead of a per server level.\r\n<ul><li>Full-featured, no compromise compute sleds with Intel® Xeon® Scalable processors</li><li>Generous, scalable on-board SAS, SATA, and NVMe storage drives, plus substantial, granular SAS direct-attached storage using optional storage sleds</li><li>Scalable fabric architecture with a grow-as-you-need fabric expansion capability for up to 10 chassis in fabric.</li></ul>\r\n<span style=\"font-weight: bold; \">Increase effectiveness and accelerate operations with unified automation</span>\r\nEmbedded Dell EMC OpenManage Enterprise – Modular Edition delivers the key abilities of OpenMange Enterprise systems management within the PowerEdge MX chassis. A unified simple interface manages compute, storage and fabric, reducing costs and the learning curve and consolidates multiple tools. Redundant management modules ensure highest availability.\r\n<ul><li>Automatic expansion from one to multiple chassis; scale management to thousands of PowerEdge MX and rack servers with OpenManage Enterprise</li><li>Flexible, at-the-box management front control panel options include Quick Sync 2 (wireless), touchscreen LCD and traditional crash cart</li><li>Comprehensive RESTful API helps automate multiple tasks and integrates to third-party tools</li><li>Seamlessly integrates with integrated Dell Remote Access Controller 9 (iDRAC9) and Lifecycle Controller (LC)</li></ul>\r\n<span style=\"font-weight: bold;\">Protect infrastructure and investment with responsive design</span>\r\nReduce the risk of infrastructure investment and help make new innovations more easily available with PowerEdge MX7000 future-forward architecture. Designed to maximize longevity and minimize disruptive technology changes support across both generational and architectural transitions is provided.\r\n<ul><li>Multi-generational assurance with support for at least three server processor microarchitecture generations</li><li>Nearly zero throughput limitations, providing high-speed technology connections, and well into the future, with no midplane upgrade</li><li>Industry-leading thermal architecture and mechanical design and control algorithms support dense configurations and future compatibility</li></ul>","shortDescription":"Dynamically assign, move and scale shared pools of compute, storage and fabric, with greater flexibility and efficiency, and deliver optimal value.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":11,"sellingCount":1,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Dell PowerEdge MX7000 Modular Chassis","keywords":"","description":"<span style=\"font-weight: bold; \">Liberate IT resources to achieve optimal utilization, productivity and efficiency</span>\r\nAs dynamic and innovative as your business, PowerEdge MX kinetic infrastructure bridges traditional and software-defined data centers wi","og:title":"Dell PowerEdge MX7000 Modular Chassis","og:description":"<span style=\"font-weight: bold; \">Liberate IT resources to achieve optimal utilization, productivity and efficiency</span>\r\nAs dynamic and innovative as your business, PowerEdge MX kinetic infrastructure bridges traditional and software-defined data centers wi","og:image":"https://old.roi4cio.com/fileadmin/user_upload/Dell_PowerEdge_MX7000_Modular_Chassis.jpg"},"eventUrl":"","translationId":4771,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":4,"title":"Data center","alias":"data-center","description":" A data center (or datacenter) is a facility composed of networked computers and storage that businesses or other organizations use to organize, process, store and disseminate large amounts of data. A business typically relies heavily upon the applications, services and data contained within a data center, making it a focal point and critical asset for everyday operations.\r\nData centers are not a single thing, but rather, a conglomeration of elements. At a minimum, data centers serve as the principal repositories for all manner of IT equipment, including servers, storage subsystems, networking switches, routers and firewalls, as well as the cabling and physical racks used to organize and interconnect the IT equipment. A data center must also contain an adequate infrastructure, such as power distribution and supplemental power subsystems, including electrical switching; uninterruptable power supplies; backup generators and so on; ventilation and data center cooling systems, such as computer room air conditioners; and adequate provisioning for network carrier (telco) connectivity. All of this demands a physical facility with physical security and sufficient physical space to house the entire collection of infrastructure and equipment.","materialsDescription":" <span style=\"font-weight: bold;\">What are the requirements for modern data centers?</span>\r\nModernization and data center transformation enhances performance and energy efficiency.\r\nInformation security is also a concern, and for this reason a data center has to offer a secure environment which minimizes the chances of a security breach. A data center must therefore keep high standards for assuring the integrity and functionality of its hosted computer environment.\r\nIndustry research company International Data Corporation (IDC) puts the average age of a data center at nine years old. Gartner, another research company, says data centers older than seven years are obsolete. The growth in data (163 zettabytes by 2025) is one factor driving the need for data centers to modernize.\r\nFocus on modernization is not new: Concern about obsolete equipment was decried in 2007, and in 2011 Uptime Institute was concerned about the age of the equipment therein. By 2018 concern had shifted once again, this time to the age of the staff: "data center staff are aging faster than the equipment."\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Meeting standards for data centers</span></span>\r\nThe Telecommunications Industry Association's Telecommunications Infrastructure Standard for Data Centers specifies the minimum requirements for telecommunications infrastructure of data centers and computer rooms including single tenant enterprise data centers and multi-tenant Internet hosting data centers. The topology proposed in this document is intended to be applicable to any size data center.\r\nTelcordia GR-3160, NEBS Requirements for Telecommunications Data Center Equipment and Spaces, provides guidelines for data center spaces within telecommunications networks, and environmental requirements for the equipment intended for installation in those spaces. These criteria were developed jointly by Telcordia and industry representatives. They may be applied to data center spaces housing data processing or Information Technology (IT) equipment. The equipment may be used to:\r\n<ul><li>Operate and manage a carrier's telecommunication network</li><li>Provide data center based applications directly to the carrier's customers</li><li>Provide hosted applications for a third party to provide services to their customers</li><li>Provide a combination of these and similar data center applications</li></ul>\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Data center transformation</span></span>\r\nData center transformation takes a step-by-step approach through integrated projects carried out over time. This differs from a traditional method of data center upgrades that takes a serial and siloed approach. The typical projects within a data center transformation initiative include standardization/consolidation, virtualization, automation and security.\r\n<ul><li>Standardization/consolidation: Reducing the number of data centers and avoiding server sprawl (both physical and virtual) often includes replacing aging data center equipment, and is aided by standardization.</li><li>Virtualization: Lowers capital and operational expenses, reduce energy consumption. Virtualized desktops can be hosted in data centers and rented out on a subscription basis. Investment bank Lazard Capital Markets estimated in 2008 that 48 percent of enterprise operations will be virtualized by 2012. Gartner views virtualization as a catalyst for modernization.</li><li>Automating: Automating tasks such as provisioning, configuration, patching, release management and compliance is needed, not just when facing fewer skilled IT workers.</li><li>Securing: Protection of virtual systems is integrated with existing security of physical infrastructures.</li></ul>\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Machine room</span></span>\r\nThe term "Machine Room" is at times used to refer to the large room within a Data Center where the actual Central Processing Unit is located; this may be separate from where high-speed printers are located. Air conditioning is most important in the machine room.\r\nAside from air-conditioning, there must be monitoring equipment, one type of which is to detect water prior to flood-level situations. One company, for several decades, has had share-of-mind: Water Alert. The company, as of 2018, has 2 competing manufacturers (Invetex, Hydro-Temp) and 3 competing distributors (Longden,Northeast Flooring, Slayton). ","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Data_center.png"},{"id":471,"title":"Hardware","alias":"hardware","description":" Computer hardware includes the physical, tangible parts or components of a computer, such as the cabinet, central processing unit, monitor, keyboard, computer data storage, graphics card, sound card, speakers and motherboard. By contrast, software is instructions that can be stored and run by hardware. Hardware is so-termed because it is "hard" or rigid with respect to changes or modifications; whereas software is "soft" because it is easy to update or change. Intermediate between software and hardware is "firmware", which is software that is strongly coupled to the particular hardware of a computer system and thus the most difficult to change but also among the most stable with respect to consistency of interface. The progression from levels of "hardness" to "softness" in computer systems parallels a progression of layers of abstraction in computing.\r\nHardware is typically directed by the software to execute any command or instruction. A combination of hardware and software forms a usable computing system, although other systems exist with only hardware components.\r\nThe template for all modern computers is the Von Neumann architecture, detailed in a 1945 paper by Hungarian mathematician John von Neumann. This describes a design architecture for an electronic digital computer with subdivisions of a processing unit consisting of an arithmetic logic unit and processor registers, a control unit containing an instruction register and program counter, a memory to store both data and instructions, external mass storage, and input and output mechanisms. The meaning of the term has evolved to mean a stored-program computer in which an instruction fetch and a data operation cannot occur at the same time because they share a common bus. This is referred to as the Von Neumann bottleneck and often limits the performance of the system.","materialsDescription":" <span style=\"font-weight: bold; \">What does Hardware (H/W) mean?</span>\r\nHardware (H/W), in the context of technology, refers to the physical elements that make up a computer or electronic system and everything else involved that is physically tangible. This includes the monitor, hard drive, memory and CPU. Hardware works hand-in-hand with firmware and software to make a computer function.\r\n<span style=\"font-weight: bold; \">What are the types of computer systems?</span>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Personal computer</span></span>\r\nThe personal computer, also known as the PC, is one of the most common types of computer due to its versatility and relatively low price. Laptops are generally very similar, although they may use lower-power or reduced size components, thus lower performance.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Case</span></span>\r\nThe computer case encloses and holds most of the components of the system. It provides mechanical support and protection for internal elements such as the motherboard, disk drives, and power supplies, and controls and directs the flow of cooling air over internal components. The case is also part of the system to control electromagnetic interference radiated by the computer, and protects internal parts from electrostatic discharge. Large tower cases provide extra internal space for multiple disk drives or other peripherals and usually stand on the floor, while desktop cases provide less expansion room. All-in-one style designs include a video display built into the same case. Portable and laptop computers require cases that provide impact protection for the unit. A current development in laptop computers is a detachable keyboard, which allows the system to be configured as a touch-screen tablet. Hobbyists may decorate the cases with colored lights, paint, or other features, in an activity called case modding.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Power supply</span></span>\r\nA power supply unit (PSU) converts alternating current (AC) electric power to low-voltage direct current (DC) power for the internal components of the computer. Laptops are capable of running from a built-in battery, normally for a period of hours. The PSU typically uses a switched-mode power supply (SMPS), with power MOSFETs (power metal–oxide–semiconductor field-effect transistors) used in the converters and regulator circuits of the SMPS.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Motherboard</span></span>\r\nThe motherboard is the main component of a computer. It is a board with integrated circuitry that connects the other parts of the computer including the CPU, the RAM, the disk drives (CD, DVD, hard disk, or any others) as well as any peripherals connected via the ports or the expansion slots. The integrated circuit (IC) chips in a computer typically contain billions of tiny metal–oxide–semiconductor field-effect transistors (MOSFETs).\r\nComponents directly attached to or to part of the motherboard include:\r\n<ul><li><span style=\"font-weight: bold; \">The CPU (central processing unit)</span>, which performs most of the calculations which enable a computer to function, and is referred to as the brain of the computer which get a hold of program instruction from random-access memory (RAM), interprets and processes it and then send it backs to computer result so that the relevant components can carry out the instructions. The CPU is a microprocessor, which is fabricated on a metal–oxide–semiconductor (MOS) integrated circuit (IC) chip. It is usually cooled by a heat sink and fan, or water-cooling system. Most newer CPU include an on-die graphics processing unit (GPU). The clock speed of CPU governs how fast it executes instructions, and is measured in GHz; typical values lie between 1 GHz and 5 GHz. Many modern computers have the option to overclock the CPU which enhances performance at the expense of greater thermal output and thus a need for improved cooling.</li><li><span style=\"font-weight: bold; \">The chipset</span>, which includes the north bridge, mediates communication between the CPU and the other components of the system, including main memory; as well as south bridge, which is connected to the north bridge, and supports auxiliary interfaces and buses; and, finally, a Super I/O chip, connected through the south bridge, which supports the slowest and most legacy components like serial ports, hardware monitoring and fan control.</li><li><span style=\"font-weight: bold; \">Random-access memory (RAM)</span>, which stores the code and data that are being actively accessed by the CPU. For example, when a web browser is opened on the computer it takes up memory; this is stored in the RAM until the web browser is closed. It is typically a type of dynamic RAM (DRAM), such as synchronous DRAM (SDRAM), where MOS memory chips store data on memory cells consisting of MOSFETs and MOS capacitors. RAM usually comes on dual in-line memory modules (DIMMs) in the sizes of 2GB, 4GB, and 8GB, but can be much larger.</li><li><span style=\"font-weight: bold; \">Read-only memory (ROM)</span>, which stores the BIOS that runs when the computer is powered on or otherwise begins execution, a process known as Bootstrapping, or "booting" or "booting up". The ROM is typically a nonvolatile BIOS memory chip, which stores data on floating-gate MOSFET memory cells.</li><li><span style=\"font-weight: bold; \">The BIOS (Basic Input Output System)</span> includes boot firmware and power management firmware. Newer motherboards use Unified Extensible Firmware Interface (UEFI) instead of BIOS.</li><li><span style=\"font-weight: bold; \">Buses</span> that connect the CPU to various internal components and to expand cards for graphics and sound.</li><li><span style=\"font-weight: bold; \">The CMOS</span> (complementary MOS) battery, which powers the CMOS memory for date and time in the BIOS chip. This battery is generally a watch battery.</li><li><span style=\"font-weight: bold; \">The video card</span> (also known as the graphics card), which processes computer graphics. More powerful graphics cards are better suited to handle strenuous tasks, such as playing intensive video games or running computer graphics software. A video card contains a graphics processing unit (GPU) and video memory (typically a type of SDRAM), both fabricated on MOS integrated circuit (MOS IC) chips.</li><li><span style=\"font-weight: bold; \">Power MOSFETs</span> make up the voltage regulator module (VRM), which controls how much voltage other hardware components receive.</li></ul>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Expansion cards</span></span>\r\nAn expansion card in computing is a printed circuit board that can be inserted into an expansion slot of a computer motherboard or backplane to add functionality to a computer system via the expansion bus. Expansion cards can be used to obtain or expand on features not offered by the motherboard.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Storage devices</span></span>\r\nA storage device is any computing hardware and digital media that is used for storing, porting and extracting data files and objects. It can hold and store information both temporarily and permanently, and can be internal or external to a computer, server or any similar computing device. Data storage is a core function and fundamental component of computers.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Fixed media</span></span>\r\nData is stored by a computer using a variety of media. Hard disk drives (HDDs) are found in virtually all older computers, due to their high capacity and low cost, but solid-state drives (SSDs) are faster and more power efficient, although currently more expensive than hard drives in terms of dollar per gigabyte, so are often found in personal computers built post-2007. SSDs use flash memory, which stores data on MOS memory chips consisting of floating-gate MOSFET memory cells. Some systems may use a disk array controller for greater performance or reliability.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Removable media</span></span>\r\nTo transfer data between computers, an external flash memory device (such as a memory card or USB flash drive) or optical disc (such as a CD-ROM, DVD-ROM or BD-ROM) may be used. Their usefulness depends on being readable by other systems; the majority of machines have an optical disk drive (ODD), and virtually all have at least one Universal Serial Bus (USB) port.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Input and output peripherals</span></span>\r\nInput and output devices are typically housed externally to the main computer chassis. The following are either standard or very common to many computer systems.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Input</span></span>\r\nInput devices allow the user to enter information into the system, or control its operation. Most personal computers have a mouse and keyboard, but laptop systems typically use a touchpad instead of a mouse. Other input devices include webcams, microphones, joysticks, and image scanners.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Output device</span></span>\r\nOutput devices display information in a human readable form. Such devices could include printers, speakers, monitors or a Braille embosser.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Mainframe computer</span></span>\r\nA mainframe computer is a much larger computer that typically fills a room and may cost many hundreds or thousands of times as much as a personal computer. They are designed to perform large numbers of calculations for governments and large enterprises.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Departmental computing</span></span>\r\nIn the 1960s and 1970s, more and more departments started to use cheaper and dedicated systems for specific purposes like process control and laboratory automation.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Supercomputer</span></span>\r\nA supercomputer is superficially similar to a mainframe, but is instead intended for extremely demanding computational tasks. As of June 2018, the fastest supercomputer on the TOP500supercomputer list is the Summit, in the United States, with a LINPACK benchmarkscore of 122.3 PFLOPS Light, by around 29 PFLOPS.\r\nThe term supercomputer does not refer to a specific technology. Rather it indicates the fastest computations available at any given time. In mid 2011, the fastest supercomputers boasted speeds exceeding one petaflop, or 1 quadrillion (10^15 or 1,000 trillion) floating point operations per second. Supercomputers are fast but extremely costly, so they are generally used by large organizations to execute computationally demanding tasks involving large data sets. Supercomputers typically run military and scientific applications. Although costly, they are also being used for commercial applications where huge amounts of data must be analyzed. For example, large banks employ supercomputers to calculate the risks and returns of various investment strategies, and healthcare organizations use them to analyze giant databases of patient data to determine optimal treatments for various diseases and problems incurring to the country. ","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Hardware.jpg"},{"id":513,"title":"Networking","alias":"networking","description":" Networking hardware, also known as network equipment or computer networking devices, are electronic devices which are required for communication and interaction between devices on a computer network. Specifically, they mediate data transmission in a computer network. Units which are the last receiver or generate data are called hosts or data terminal equipment.\r\nNetworking devices may include gateways, routers, network bridges, modems, wireless access points, networking cables, line drivers, switches, hubs, and repeaters; and may also include hybrid network devices such as multilayer switches, protocol converters, bridge routers, proxy servers, firewalls, network address translators, multiplexers, network interface controllers, wireless network interface controllers, ISDN terminal adapters and other related hardware.\r\nThe most common kind of networking hardware today is a copper-based Ethernet adapter which is a standard inclusion on most modern computer systems. Wireless networking has become increasingly popular, especially for portable and handheld devices.\r\nOther networking hardware used in computers includes data center equipment (such as file servers, database servers and storage areas), network services (such as DNS, DHCP, email, etc.) as well as devices which assure content delivery.\r\nTaking a wider view, mobile phones, tablet computers and devices associated with the internet of things may also be considered networking hardware. As technology advances and IP-based networks are integrated into building infrastructure and household utilities, network hardware will become an ambiguous term owing to the vastly increasing number of network capable endpoints.","materialsDescription":" <span style=\"font-weight: bold;\">What is network equipment?</span>\r\nNetwork equipment - devices necessary for the operation of a computer network, for example: a router, switch, hub, patch panel, etc. You can distinguish between active and passive network equipment.\r\n<span style=\"font-weight: bold;\">What is an active network equipment?</span>\r\nActive networking equipment is equipment followed by some “smart” feature. That is, a router, switch (switch), etc. are active network equipment.\r\n<span style=\"font-weight: bold;\">What is passive network equipment?</span>\r\nPassive network equipment - equipment not endowed with "intellectual" features. For example - cable system: cable (coaxial and twisted pair (UTP/STP)), plug / socket (RG58, RJ45, RJ11, GG45), repeater (repeater), patch panel, hub (hub), balun (balun) for coaxial cables (RG-58), etc. Also, passive equipment can include mounting cabinets and racks, telecommunication cabinets.\r\n<span style=\"font-weight: bold;\">What are the main network components?</span>\r\nThe main components of the network are workstations, servers, transmission media (cables) and network equipment.\r\n<span style=\"font-weight: bold;\">What are workstations?</span>\r\nWorkstations are network computers where network users implement application tasks.\r\n<span style=\"font-weight: bold;\">What are network servers?</span>\r\nNetwork servers - hardware and software systems that perform the functions of controlling the distribution of network shared resources. A server can be any computer connected to the network on which the resources used by other devices on the local network are located. As the server hardware, fairly powerful computers are used.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Networking.png"},{"id":35,"title":"Server","alias":"server","description":"In computing, a server is a computer program or a device that provides functionality for other programs or devices, called "clients". This architecture is called the client–server model, and a single overall computation is distributed across multiple processes or devices. Servers can provide various functionalities, often called "services", such as sharing data or resources among multiple clients, or performing computation for a client. A single server can serve multiple clients, and a single client can use multiple servers. A client process may run on the same device or may connect over a network to a server on a different device. Typical servers are database servers, file servers, mail servers, print servers, web servers, game servers, and application servers.\r\nClient–server systems are today most frequently implemented by (and often identified with) the request–response model: a client sends a request to the server, which performs some action and sends a response back to the client, typically with a result or acknowledgement. Designating a computer as "server-class hardware" implies that it is specialized for running servers on it. This often implies that it is more powerful and reliable than standard personal computers, but alternatively, large computing clusters may be composed of many relatively simple, replaceable server components.\r\nStrictly speaking, the term server refers to a computer program or process (running program). Through metonymy, it refers to a device used for (or a device dedicated to) running one or several server programs. On a network, such a device is called a host. In addition to server, the words serve and service (as noun and as verb) are frequently used, though servicer and servant are not. The word service (noun) may refer to either the abstract form of functionality, e.g. Web service. Alternatively, it may refer to a computer program that turns a computer into a server, e.g. Windows service. Originally used as "servers serve users" (and "users use servers"), in the sense of "obey", today one often says that "servers serve data", in the same sense as "give". For instance, web servers "serve web pages to users" or "service their requests".\r\nThe server is part of the client–server model; in this model, a server serves data for clients. The nature of communication between a client and server is request and response. This is in contrast with peer-to-peer model in which the relationship is on-demand reciprocation. In principle, any computerized process that can be used or called by another process (particularly remotely, particularly to share a resource) is a server, and the calling process or processes is a client. Thus any general purpose computer connected to a network can host servers. For example, if files on a device are shared by some process, that process is a file server. Similarly, web server software can run on any capable computer, and so a laptop or a personal computer can host a web server.\r\nWhile request–response is the most common client–server design, there are others, such as the publish–subscribe pattern. In the publish–subscribe pattern, clients register with a pub–sub server, subscribing to specified types of messages; this initial registration may be done by request–response. Thereafter, the pub–sub server forwards matching messages to the clients without any further requests: the server pushes messages to the client, rather than the client pulling messages from the server as in request–response.","materialsDescription":" <span style=\"font-weight: bold;\">What is a server?</span>\r\nA server is a software or hardware device that accepts and responds to requests made over a network. The device that makes the request, and receives a response from the server, is called a client. On the Internet, the term "server" commonly refers to the computer system which receives a request for a web document and sends the requested information to the client.\r\n<span style=\"font-weight: bold;\">What are they used for?</span>\r\nServers are used to manage network resources. For example, a user may set up a server to control access to a network, send/receive an e-mail, manage print jobs, or host a website. They are also proficient at performing intense calculations. Some servers are committed to a specific task, often referred to as dedicated. However, many servers today are shared servers which can take on the responsibility of e-mail, DNS, FTP, and even multiple websites in the case of a web server.\r\n<span style=\"font-weight: bold;\">Why are servers always on?</span>\r\nBecause they are commonly used to deliver services that are constantly required, most servers are never turned off. Consequently, when servers fail, they can cause the network users and company many problems. To alleviate these issues, servers are commonly set up to be fault-tolerant.\r\n<span style=\"font-weight: bold;\">What are the examples of servers?</span>\r\nThe following list contains links to various server types:\r\n<ul><li>Application server;</li><li>Blade server;</li><li>Cloud server;</li><li>Database server;</li><li>Dedicated server;</li><li>Domain name service;</li><li>File server;</li><li>Mail server;</li><li>Print server;</li><li>Proxy server;</li><li>Standalone server;</li><li>Web server.</li></ul>\r\n<span style=\"font-weight: bold;\">How do other computers connect to a server?</span>\r\nWith a local network, the server connects to a router or switch that all other computers on the network use. Once connected to the network, other computers can access that server and its features. For example, with a web server, a user could connect to the server to view a website, search, and communicate with other users on the network.\r\nAn Internet server works the same way as a local network server, but on a much larger scale. The server is assigned an IP address by InterNIC, or by a web host.\r\nUsually, users connect to a server using its domain name, which is registered with a domain name registrar. When users connect to the domain name (such as "computerhope.com"), the name is automatically translated to the server's IP address by a DNS resolver.\r\nThe domain name makes it easier for users to connect to the server because the name is easier to remember than an IP address. Also, domain names enable the server operator to change the IP address of the server without disrupting the way that users access the server. The domain name can always remain the same, even if the IP address changes.\r\n<span style=\"font-weight: bold;\">Where are servers stored?</span>\r\nIn a business or corporate environment, a server and other network equipment are often stored in a closet or glasshouse. These areas help isolate sensitive computers and equipment from people who should not have access to them.\r\nServers that are remote or not hosted on-site are located in a data center. With these types of servers, the hardware is managed by another company and configured remotely by you or your company.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Server.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"dell-precision-workstations":{"id":67,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Rabochie_stancii_Dell_Precision.jpg","logo":true,"scheme":false,"title":"Dell Precision Workstations","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"dell-precision-workstations","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Dell Precision Workstations were computers intended as workstations for CAD / Architecture / CG professionals, or as small-scale business servers.\r\n<h2 style=\"margin: 0px 0px 10px; padding: 0px 0px 10px; border: 0px; vertical-align: baseline; background-image: initial; background-position: initial; background-size: initial; background-repeat: initial; background-attachment: initial; background-origin: initial; background-clip: initial; font-size: 1.153em; font-weight: 300; line-height: 1.3em; text-rendering: optimizeLegibility; font-family: Museo, "Trebuchet MS", Arial !important; \">Precision Mobile Workstations - For professional creators</h2>\r\n<p style=\"margin: 0px 0px 30px; padding: 0px; border: 0px; vertical-align: baseline; background-image: initial; background-position: initial; background-size: initial; background-repeat: initial; background-attachment: initial; background-origin: initial; background-clip: initial; font-family: "Trebuchet MS", Arial, Helvetica, sans-serif; font-size: 13px; line-height: 1.3em; color: rgb(68, 68, 68); \">Highest performing and fully customizable workstations certified with professional applications.</p>\r\n<h2 style=\"margin: 0px 0px 10px; padding: 0px 0px 10px; border: 0px; vertical-align: baseline; background-image: initial; background-position: initial; background-size: initial; background-repeat: initial; background-attachment: initial; background-origin: initial; background-clip: initial; font-size: 1.153em; font-weight: 300; line-height: 1.3em; text-rendering: optimizeLegibility; font-family: Museo, "Trebuchet MS", Arial !important; \">Precision Fixed Workstations - For professional creators</h2>\r\n<p style=\"margin: 0px 0px 30px; padding: 0px; border: 0px; vertical-align: baseline; background-image: initial; background-position: initial; background-size: initial; background-repeat: initial; background-attachment: initial; background-origin: initial; background-clip: initial; font-family: "Trebuchet MS", Arial, Helvetica, sans-serif; font-size: 13px; line-height: 1.3em; color: rgb(68, 68, 68); \">Highest performing and fully customizable workstations certified with professional applications.</p>\r\n<p style=\"margin: 0px 0px 30px; 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The most common configuration has a case that houses the power supply, motherboard (a printed circuit board with a microprocessor as the central processing unit (CPU), memory, bus, and other electronic components), disk storage (usually one or more hard disk drives, solid state drives, optical disc drives, and in early models a floppy disk drive); a keyboard and mouse for input; and a computer monitor, speakers, and, often, a printer for output. The case may be oriented horizontally or vertically and placed either underneath, beside, or on top of a desk.\r\nDesktop computers are designed to work at the table. Usually, they are bigger and more powerful than other types of personal computers. Desktop computers are made up of individual components. The main component is called the system unit - usually, it is a rectangular case that is on or under the table. Other components, such as the monitor, mouse and keyboard, are connected to the system unit.\r\nAs a rule, all additional external devices are connected to the PC system unit using special connectors. Their main part is located on its rear wall. Some, the most popular ones, are brought to the front, for example, USB connectors and audio outputs. The system unit itself consists of internal devices, called components.","materialsDescription":" Main components of the desktop system unit:\r\n<ul><li><span style=\"font-weight: bold;\">A CPU</span> is the main information processing and computer control device.</li><li><span style=\"font-weight: bold;\">A video card</span> is a device for processing two-dimensional and three-dimensional graphics, as well as displaying an image on a monitor (screen).</li><li><span style=\"font-weight: bold;\">RAM</span> - used for short-term storage of data during operation of the computer. When it is turned off, the information recorded in the RAM disappears.</li><li><span style=\"font-weight: bold;\">A storage device (hard disk)</span> - used as the primary means for storing all user data and programs. Its capacity is much more than the amount of RAM, however, the speed of reading and writing information is less than when working with RAM.</li><li><span style=\"font-weight: bold;\">A motherboard</span> is a complex device that combines all the components of a personal computer and ensures their well-coordinated work.</li><li><span style=\"font-weight: bold;\">An optical drive</span> - a device for reading and writing information on optical CDs, DVDs and Blue-ray discs.</li><li><span style=\"font-weight: bold;\">A case</span> - protects all components from harmful external influences (for example, moisture) and gives an aesthetic look to your computer.</li><li><span style=\"font-weight: bold;\">A power supply unit</span> converts the alternating current of ordinary electric networks of high voltage (220 Volt) into direct current of low voltage (12 V, 5 V and 3 V), required for powering computer components.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Desktop_PC.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"dell-wyse-3040-thin-client":{"id":769,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Dell_Wyse_3040_tonkii_klient.jpg","logo":true,"scheme":false,"title":"Dell Wyse 3040 Thin Client","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"dell-wyse-3040-thin-client","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Efficient and effective.\r\nWyse 3040 Thin Client - Simplified setup<span style=\"white-space:pre\">\t</span>Simplified setup: With simplified automatic setup, configuration and management, the Wyse 3040 can be deployed right out-of-the box. Connect to a variety of virtual desktops including Citrix, Microsoft and VMware environments and provides essential protocol and peripheral support, including optional PCoIP.\r\nWyse 3040 Thin Client - Save energy. Save money<span style=\"white-space:pre\">\t</span>Save energy. Save money: An affordable price point keeps your initial investment low while power-efficient operation of less than 5 watts maintains cost-effectiveness from one day to the next.\r\nWyse 3040 Thin Client - Makes management a snap<span style=\"white-space:pre\">\t</span>Makes management a snap: Easily manage your Wyse 3040 thin client with Dell Wyse Device Manager (WDM) or Cloud Client Manager (CCM). Powerful, easy-to-use and highly scalable, WDM software enables you to configure, monitor and manage Dell Wyse devices.","shortDescription":"At the top of its class: With strong performance featuring Intel® Quad Core processors, Wyse 3040 delivers the best virtual desktop experience of any thin client solution in its class.\r\nWell connected: Wyse 3040 features wireless and wired network connectivity, with two DisplayPort interfaces, 4 USB ports—including 1 USB 3.1 and an AC wireless with optional Bluetooth.\r\nPick the OS that works for you: Wyse 3040 supports both ThinOS and ThinLinux (coming soon), so task and productivity users can choose the system that fits their needs.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":12,"sellingCount":4,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Dell Wyse 3040 Thin Client","keywords":"Wyse, 3040, Client, Save, Thin, Dell, setup, management","description":"Efficient and effective.\r\nWyse 3040 Thin Client - Simplified setup<span style=\"white-space:pre\">\t</span>Simplified setup: With simplified automatic setup, configuration and management, the Wyse 3040 can be deployed right out-of-the box. 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Blade servers have many components removed to save space, minimize power consumption and other considerations, while still having all the functional components to be considered a computer. Unlike a rack-mount server, a blade server needs a blade enclosure, which can hold multiple blade servers, providing services such as power, cooling, networking, various interconnects and management. Together, blades and the blade enclosure form a blade system. Different blade providers have differing principles regarding what to include in the blade itself, and in the blade system as a whole.\r\nIn a standard server-rack configuration, one rack unit or 1U—19 inches (480 mm) wide and 1.75 inches (44 mm) tall—defines the minimum possible size of any equipment. The principal benefit and justification of blade computing relates to lifting this restriction so as to reduce size requirements. The most common computer rack form-factor is 42U high, which limits the number of discrete computer devices directly mountable in a rack to 42 components. Blades do not have this limitation. As of 2014, densities of up to 180 servers per blade system (or 1440 servers per rack) are achievable with blade systems.\r\nEnclosure (or chassis) performs many of the non-core computing services found in most computers. Non-blade systems typically use bulky, hot and space-inefficient components, and may duplicate these across many computers that may or may not perform at capacity. By locating these services in one place and sharing them among the blade computers, the overall utilization becomes higher. The specifics of which services are provided varies by vendor.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Power.</span></span> Computers operate over a range of DC voltages, but utilities deliver power as AC, and at higher voltages than required within computers. Converting this current requires one or more power supply units (or PSUs). To ensure that the failure of one power source does not affect the operation of the computer, even entry-level servers may have redundant power supplies, again adding to the bulk and heat output of the design.\r\nThe blade enclosure's power supply provides a single power source for all blades within the enclosure. This single power source may come as a power supply in the enclosure or as a dedicated separate PSU supplying DC to multiple enclosures. This setup reduces the number of PSUs required to provide a resilient power supply.\r\nThe popularity of blade servers, and their own appetite for power, has led to an increase in the number of rack-mountable uninterruptible power supply (or UPS) units, including units targeted specifically towards blade servers (such as the BladeUPS).\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Cooling.</span></span> During operation, electrical and mechanical components produce heat, which a system must dissipate to ensure the proper functioning of its components. Most blade enclosures, like most computing systems, remove heat by using fans.\r\nA frequently underestimated problem when designing high-performance computer systems involves the conflict between the amount of heat a system generates and the ability of its fans to remove the heat. The blade's shared power and cooling means that it does not generate as much heat as traditional servers. Newer blade-enclosures feature variable-speed fans and control logic, or even liquid cooling systems that adjust to meet the system's cooling requirements.\r\nAt the same time, the increased density of blade-server configurations can still result in higher overall demands for cooling with racks populated at over 50% full. This is especially true with early-generation blades. In absolute terms, a fully populated rack of blade servers is likely to require more cooling capacity than a fully populated rack of standard 1U servers. This is because one can fit up to 128 blade servers in the same rack that will only hold 42 1U rack mount servers.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Networking.</span></span> Blade servers generally include integrated or optional network interface controllers for Ethernet or host adapters for Fibre Channel storage systems or converged network adapter to combine storage and data via one Fibre Channel over Ethernet interface. In many blades at least one interface is embedded on the motherboard and extra interfaces can be added using mezzanine cards.\r\nA blade enclosure can provide individual external ports to which each network interface on a blade will connect. Alternatively, a blade enclosure can aggregate network interfaces into interconnect devices (such as switches) built into the blade enclosure or in networking blades.\r\nBlade servers function well for specific purposes such as web hosting, virtualization, and cluster computing. Individual blades are typically hot-swappable. As users deal with larger and more diverse workloads, they add more processing power, memory and I/O bandwidth to blade servers. Although blade server technology in theory allows for open, cross-vendor system, most users buy modules, enclosures, racks and management tools from the same vendor.\r\nEventual standardization of the technology might result in more choices for consumers; as of 2009 increasing numbers of third-party software vendors have started to enter this growing field.\r\nBlade servers do not, however, provide the answer to every computing problem. One can view them as a form of productized server-farm that borrows from mainframe packaging, cooling, and power-supply technology. Very large computing tasks may still require server farms of blade servers, and because of blade servers' high power density, can suffer even more acutely from the heating, ventilation, and air conditioning problems that affect large conventional server farms.","materialsDescription":" <span style=\"font-weight: bold;\">What is blade server?</span>\r\nA blade server is a server chassis housing multiple thin, modular electronic circuit boards, known as server blades. Each blade is a server in its own right, often dedicated to a single application. The blades are literally servers on a card, containing processors, memory, integrated network controllers, an optional Fiber Channel host bus adaptor (HBA) and other input/output (IO) ports.\r\nBlade servers allow more processing power in less rack space, simplifying cabling and reducing power consumption. According to a SearchWinSystems.com article on server technology, enterprises moving to blade servers can experience as much as an 85% reduction in cabling for blade installations over conventional 1U or tower servers. With so much less cabling, IT administrators can spend less time managing the infrastructure and more time ensuring high availability.\r\nEach blade typically comes with one or two local ATA or SCSI drives. For additional storage, blade servers can connect to a storage pool facilitated by a network-attached storage (NAS), Fiber Channel, or iSCSI storage-area network (SAN). The advantage of blade servers comes not only from the consolidation benefits of housing several servers in a single chassis, but also from the consolidation of associated resources (like storage and networking equipment) into a smaller architecture that can be managed through a single interface.\r\nA blade server is sometimes referred to as a high-density server and is typically used in a clustering of servers that are dedicated to a single task, such as:\r\n<ul><li>File sharing</li><li>Web page serving and caching</li><li>SSL encrypting of Web communication</li><li>The transcoding of Web page content for smaller displays</li><li>Streaming audio and video content</li></ul>\r\nLike most clustering applications, blade servers can also be managed to include load balancing and failover capabilities.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Blade_System.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"dell-obshchaja-infrastruktura-konvergentnye-platformy":{"id":868,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Obshchaja_infrastruktura_-_Konvergentnye_platformy.jpg","logo":true,"scheme":false,"title":"DELL Общая инфраструктура - Конвергентные платформы","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"dell-obshchaja-infrastruktura-konvergentnye-platformy","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Блейд-сервер PowerEdge M420\r\nБлейд-сервер Dell PowerEdge™ M420 высотой в одну четверть, отличающийся исключительной плотностью размещения вычислительных ресурсов, обеспечивает эффективность и непрерывность бизнес-процессов и позволяет быстро выполнять любые задачи.\r\n\r\nБлейд-сервер PowerEdge M520\r\nСервер PowerEdge™ M520 предлагает невероятно эффективную работу и исключительные преимущества для бизнес-приложений, а также беспрецедентный набор функций корпоративного класса.\r\n\r\nБлейд-сервер PowerEdge M620\r\nБлейд-сервер PowerEdge™ M620 справится с самыми ресурсоемкими рабочими нагрузками. Это идеальное сочетание высокой плотности установки, производительности, эффективности и масштабируемости.\r\n\r\nБлейд-сервер PowerEdge M915\r\nПовысьте эффективность, производительность и гибкость центра обработки данных благодаря блейд-серверу максимальной высоты PowerEdge M915 с процессорами AMD, максимальной полосой пропускания и функциями управления корпоративного класса.","shortDescription":"Dell PowerEdge VRTX PowerEdge VRTX интегрирует серверы, системы хранения данных, сетевые компоненты и средства управления в компактной инфраструктуре совместного использования, оптимизированной для офисных сред.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":9,"sellingCount":20,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"DELL Общая инфраструктура - Конвергентные платформы","keywords":"Блейд-сервер, PowerEdge, PowerEdge™, эффективность, M520, корпоративного, класса, M620","description":"Блейд-сервер PowerEdge M420\r\nБлейд-сервер Dell PowerEdge™ M420 высотой в одну четверть, отличающийся исключительной плотностью размещения вычислительных ресурсов, обеспечивает эффективность и непрерывность бизнес-процессов и позволяет быстро выполнять любые за","og:title":"DELL Общая инфраструктура - Конвергентные платформы","og:description":"Блейд-сервер PowerEdge M420\r\nБлейд-сервер Dell PowerEdge™ M420 высотой в одну четверть, отличающийся исключительной плотностью размещения вычислительных ресурсов, обеспечивает эффективность и непрерывность бизнес-процессов и позволяет быстро выполнять любые за","og:image":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Obshchaja_infrastruktura_-_Konvergentnye_platformy.jpg"},"eventUrl":"","translationId":7021,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":517,"title":"Blade System","alias":"blade-system","description":" A blade server is a stripped-down server computer with a modular design optimized to minimize the use of physical space and energy. Blade servers have many components removed to save space, minimize power consumption and other considerations, while still having all the functional components to be considered a computer. Unlike a rack-mount server, a blade server needs a blade enclosure, which can hold multiple blade servers, providing services such as power, cooling, networking, various interconnects and management. Together, blades and the blade enclosure form a blade system. Different blade providers have differing principles regarding what to include in the blade itself, and in the blade system as a whole.\r\nIn a standard server-rack configuration, one rack unit or 1U—19 inches (480 mm) wide and 1.75 inches (44 mm) tall—defines the minimum possible size of any equipment. The principal benefit and justification of blade computing relates to lifting this restriction so as to reduce size requirements. The most common computer rack form-factor is 42U high, which limits the number of discrete computer devices directly mountable in a rack to 42 components. Blades do not have this limitation. As of 2014, densities of up to 180 servers per blade system (or 1440 servers per rack) are achievable with blade systems.\r\nEnclosure (or chassis) performs many of the non-core computing services found in most computers. Non-blade systems typically use bulky, hot and space-inefficient components, and may duplicate these across many computers that may or may not perform at capacity. By locating these services in one place and sharing them among the blade computers, the overall utilization becomes higher. The specifics of which services are provided varies by vendor.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Power.</span></span> Computers operate over a range of DC voltages, but utilities deliver power as AC, and at higher voltages than required within computers. Converting this current requires one or more power supply units (or PSUs). To ensure that the failure of one power source does not affect the operation of the computer, even entry-level servers may have redundant power supplies, again adding to the bulk and heat output of the design.\r\nThe blade enclosure's power supply provides a single power source for all blades within the enclosure. This single power source may come as a power supply in the enclosure or as a dedicated separate PSU supplying DC to multiple enclosures. This setup reduces the number of PSUs required to provide a resilient power supply.\r\nThe popularity of blade servers, and their own appetite for power, has led to an increase in the number of rack-mountable uninterruptible power supply (or UPS) units, including units targeted specifically towards blade servers (such as the BladeUPS).\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Cooling.</span></span> During operation, electrical and mechanical components produce heat, which a system must dissipate to ensure the proper functioning of its components. Most blade enclosures, like most computing systems, remove heat by using fans.\r\nA frequently underestimated problem when designing high-performance computer systems involves the conflict between the amount of heat a system generates and the ability of its fans to remove the heat. The blade's shared power and cooling means that it does not generate as much heat as traditional servers. Newer blade-enclosures feature variable-speed fans and control logic, or even liquid cooling systems that adjust to meet the system's cooling requirements.\r\nAt the same time, the increased density of blade-server configurations can still result in higher overall demands for cooling with racks populated at over 50% full. This is especially true with early-generation blades. In absolute terms, a fully populated rack of blade servers is likely to require more cooling capacity than a fully populated rack of standard 1U servers. This is because one can fit up to 128 blade servers in the same rack that will only hold 42 1U rack mount servers.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Networking.</span></span> Blade servers generally include integrated or optional network interface controllers for Ethernet or host adapters for Fibre Channel storage systems or converged network adapter to combine storage and data via one Fibre Channel over Ethernet interface. In many blades at least one interface is embedded on the motherboard and extra interfaces can be added using mezzanine cards.\r\nA blade enclosure can provide individual external ports to which each network interface on a blade will connect. Alternatively, a blade enclosure can aggregate network interfaces into interconnect devices (such as switches) built into the blade enclosure or in networking blades.\r\nBlade servers function well for specific purposes such as web hosting, virtualization, and cluster computing. Individual blades are typically hot-swappable. As users deal with larger and more diverse workloads, they add more processing power, memory and I/O bandwidth to blade servers. Although blade server technology in theory allows for open, cross-vendor system, most users buy modules, enclosures, racks and management tools from the same vendor.\r\nEventual standardization of the technology might result in more choices for consumers; as of 2009 increasing numbers of third-party software vendors have started to enter this growing field.\r\nBlade servers do not, however, provide the answer to every computing problem. One can view them as a form of productized server-farm that borrows from mainframe packaging, cooling, and power-supply technology. Very large computing tasks may still require server farms of blade servers, and because of blade servers' high power density, can suffer even more acutely from the heating, ventilation, and air conditioning problems that affect large conventional server farms.","materialsDescription":" <span style=\"font-weight: bold;\">What is blade server?</span>\r\nA blade server is a server chassis housing multiple thin, modular electronic circuit boards, known as server blades. Each blade is a server in its own right, often dedicated to a single application. The blades are literally servers on a card, containing processors, memory, integrated network controllers, an optional Fiber Channel host bus adaptor (HBA) and other input/output (IO) ports.\r\nBlade servers allow more processing power in less rack space, simplifying cabling and reducing power consumption. According to a SearchWinSystems.com article on server technology, enterprises moving to blade servers can experience as much as an 85% reduction in cabling for blade installations over conventional 1U or tower servers. With so much less cabling, IT administrators can spend less time managing the infrastructure and more time ensuring high availability.\r\nEach blade typically comes with one or two local ATA or SCSI drives. For additional storage, blade servers can connect to a storage pool facilitated by a network-attached storage (NAS), Fiber Channel, or iSCSI storage-area network (SAN). The advantage of blade servers comes not only from the consolidation benefits of housing several servers in a single chassis, but also from the consolidation of associated resources (like storage and networking equipment) into a smaller architecture that can be managed through a single interface.\r\nA blade server is sometimes referred to as a high-density server and is typically used in a clustering of servers that are dedicated to a single task, such as:\r\n<ul><li>File sharing</li><li>Web page serving and caching</li><li>SSL encrypting of Web communication</li><li>The transcoding of Web page content for smaller displays</li><li>Streaming audio and video content</li></ul>\r\nLike most clustering applications, blade servers can also be managed to include load balancing and failover capabilities.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Blade_System.png"},{"id":35,"title":"Server","alias":"server","description":"In computing, a server is a computer program or a device that provides functionality for other programs or devices, called "clients". This architecture is called the client–server model, and a single overall computation is distributed across multiple processes or devices. Servers can provide various functionalities, often called "services", such as sharing data or resources among multiple clients, or performing computation for a client. A single server can serve multiple clients, and a single client can use multiple servers. A client process may run on the same device or may connect over a network to a server on a different device. Typical servers are database servers, file servers, mail servers, print servers, web servers, game servers, and application servers.\r\nClient–server systems are today most frequently implemented by (and often identified with) the request–response model: a client sends a request to the server, which performs some action and sends a response back to the client, typically with a result or acknowledgement. Designating a computer as "server-class hardware" implies that it is specialized for running servers on it. This often implies that it is more powerful and reliable than standard personal computers, but alternatively, large computing clusters may be composed of many relatively simple, replaceable server components.\r\nStrictly speaking, the term server refers to a computer program or process (running program). Through metonymy, it refers to a device used for (or a device dedicated to) running one or several server programs. On a network, such a device is called a host. In addition to server, the words serve and service (as noun and as verb) are frequently used, though servicer and servant are not. The word service (noun) may refer to either the abstract form of functionality, e.g. Web service. Alternatively, it may refer to a computer program that turns a computer into a server, e.g. Windows service. Originally used as "servers serve users" (and "users use servers"), in the sense of "obey", today one often says that "servers serve data", in the same sense as "give". For instance, web servers "serve web pages to users" or "service their requests".\r\nThe server is part of the client–server model; in this model, a server serves data for clients. The nature of communication between a client and server is request and response. This is in contrast with peer-to-peer model in which the relationship is on-demand reciprocation. In principle, any computerized process that can be used or called by another process (particularly remotely, particularly to share a resource) is a server, and the calling process or processes is a client. Thus any general purpose computer connected to a network can host servers. For example, if files on a device are shared by some process, that process is a file server. Similarly, web server software can run on any capable computer, and so a laptop or a personal computer can host a web server.\r\nWhile request–response is the most common client–server design, there are others, such as the publish–subscribe pattern. In the publish–subscribe pattern, clients register with a pub–sub server, subscribing to specified types of messages; this initial registration may be done by request–response. Thereafter, the pub–sub server forwards matching messages to the clients without any further requests: the server pushes messages to the client, rather than the client pulling messages from the server as in request–response.","materialsDescription":" <span style=\"font-weight: bold;\">What is a server?</span>\r\nA server is a software or hardware device that accepts and responds to requests made over a network. The device that makes the request, and receives a response from the server, is called a client. On the Internet, the term "server" commonly refers to the computer system which receives a request for a web document and sends the requested information to the client.\r\n<span style=\"font-weight: bold;\">What are they used for?</span>\r\nServers are used to manage network resources. For example, a user may set up a server to control access to a network, send/receive an e-mail, manage print jobs, or host a website. They are also proficient at performing intense calculations. Some servers are committed to a specific task, often referred to as dedicated. However, many servers today are shared servers which can take on the responsibility of e-mail, DNS, FTP, and even multiple websites in the case of a web server.\r\n<span style=\"font-weight: bold;\">Why are servers always on?</span>\r\nBecause they are commonly used to deliver services that are constantly required, most servers are never turned off. Consequently, when servers fail, they can cause the network users and company many problems. To alleviate these issues, servers are commonly set up to be fault-tolerant.\r\n<span style=\"font-weight: bold;\">What are the examples of servers?</span>\r\nThe following list contains links to various server types:\r\n<ul><li>Application server;</li><li>Blade server;</li><li>Cloud server;</li><li>Database server;</li><li>Dedicated server;</li><li>Domain name service;</li><li>File server;</li><li>Mail server;</li><li>Print server;</li><li>Proxy server;</li><li>Standalone server;</li><li>Web server.</li></ul>\r\n<span style=\"font-weight: bold;\">How do other computers connect to a server?</span>\r\nWith a local network, the server connects to a router or switch that all other computers on the network use. Once connected to the network, other computers can access that server and its features. For example, with a web server, a user could connect to the server to view a website, search, and communicate with other users on the network.\r\nAn Internet server works the same way as a local network server, but on a much larger scale. The server is assigned an IP address by InterNIC, or by a web host.\r\nUsually, users connect to a server using its domain name, which is registered with a domain name registrar. When users connect to the domain name (such as "computerhope.com"), the name is automatically translated to the server's IP address by a DNS resolver.\r\nThe domain name makes it easier for users to connect to the server because the name is easier to remember than an IP address. Also, domain names enable the server operator to change the IP address of the server without disrupting the way that users access the server. The domain name can always remain the same, even if the IP address changes.\r\n<span style=\"font-weight: bold;\">Where are servers stored?</span>\r\nIn a business or corporate environment, a server and other network equipment are often stored in a closet or glasshouse. These areas help isolate sensitive computers and equipment from people who should not have access to them.\r\nServers that are remote or not hosted on-site are located in a data center. With these types of servers, the hardware is managed by another company and configured remotely by you or your company.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Server.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"dell-servery-poweredge-v-korpuse-tower":{"id":855,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Servery_PowerEdge_v_korpuse_Tower.jpg","logo":true,"scheme":false,"title":"DELL Серверы PowerEdge в корпусе Tower","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"dell-servery-poweredge-v-korpuse-tower","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Предлагаемые модели\r\nСравнить все\r\nСерверы — PowerEdge — модель T130\r\nСервер PowerEdge T20 в корпусе Tower\r\nСервер PowerEdge T30 в корпусе Tower\r\nСервер в корпусе Tower PowerEdge T130\r\nМощный однопроцессорный сервер начального уровня в корпусе Mini-Tower для консолидации данных и ускорения работы приложений в масштабах малого или среднего предприятия, небольшого офиса или домашнего офиса.\r\nПодробнее\r\nPowerEdge T20\r\nИдеальный вариант для обеспечения совместной работы, хранения файлов, обмена данными и их защиты внутри компактного и бесшумного сервера в корпусе Mini-Tower.\r\nПодробнее\r\nНовинка Сервер PowerEdge T30 в корпусе Mini-Tower\r\nИдеальный вариант для совместной работы, хранения файлов, общего доступа и защиты данных в небольших и домашних офисах.\r\n\r\nСервер PowerEdge T320 в корпусе Tower\r\nОбеспечьте надежную работу основных бизнес-приложений, используя надежность и гибкость сервера PowerEdge™ T320 в корпусе Tower.\r\n\r\nСервер PowerEdge T330 в корпусе Tower\r\nМощный и расширяемый однопроцессорный сервер в корпусе Tower позволяет ускорить работу приложений, используемых на малых и средних предприятиях, а также в удаленных офисах и филиалах, и развиваться в соответствии с вашими потребностями в данных.\r\n\r\nСервер PowerEdge T420 в корпусе Tower\r\nБлагодаря высокой мощности, большому объему памяти и расширенной пропускной способности ввода-вывода, которые отличают сервер PowerEdge™ T420 в корпусе Tower, вашей организации будет обеспечена высокая производительность, масштабируемость и надежность.\r\n\r\nСервер PowerEdge T430 в корпусе Tower\r\nПовышение производительности в офисной среде благодаря с помощью мощного двухпроцессорного сервера в корпусе Tower с расширяемой конструкцией и низким уровнем шума.\r\n\r\nСервер PowerEdge T630 в корпусе Tower\r\nСправляйтесь с широким диапазоном ресурсоемких рабочих нагрузок благодаря гибкому двухпроцессорному серверу с максимальной производительностью и огромной емкостью внутренней системы хранения данных.","shortDescription":"Независимо от того, работаете ли вы дома или в небольшом офисе, серверы Dell PowerEdge в корпусе Tower идеально подойдут для ваших потребностей в области ИТ. Ознакомьтесь с нашими продуктами уже сегодня. ","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":16,"sellingCount":6,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"DELL Серверы PowerEdge в корпусе Tower","keywords":"корпусе, Tower, PowerEdge, Сервер, данных, сервер, Mini-Tower, работы","description":"Предлагаемые модели\r\nСравнить все\r\nСерверы — PowerEdge — модель T130\r\nСервер PowerEdge T20 в корпусе Tower\r\nСервер PowerEdge T30 в корпусе Tower\r\nСервер в корпусе Tower PowerEdge T130\r\nМощный однопроцессорный сервер начального уровня в корпусе Mini-Tower для к","og:title":"DELL Серверы PowerEdge в корпусе Tower","og:description":"Предлагаемые модели\r\nСравнить все\r\nСерверы — PowerEdge — модель T130\r\nСервер PowerEdge T20 в корпусе Tower\r\nСервер PowerEdge T30 в корпусе Tower\r\nСервер в корпусе Tower PowerEdge T130\r\nМощный однопроцессорный сервер начального уровня в корпусе Mini-Tower для к","og:image":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Servery_PowerEdge_v_korpuse_Tower.jpg"},"eventUrl":"","translationId":7015,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":35,"title":"Server","alias":"server","description":"In computing, a server is a computer program or a device that provides functionality for other programs or devices, called "clients". This architecture is called the client–server model, and a single overall computation is distributed across multiple processes or devices. Servers can provide various functionalities, often called "services", such as sharing data or resources among multiple clients, or performing computation for a client. A single server can serve multiple clients, and a single client can use multiple servers. A client process may run on the same device or may connect over a network to a server on a different device. Typical servers are database servers, file servers, mail servers, print servers, web servers, game servers, and application servers.\r\nClient–server systems are today most frequently implemented by (and often identified with) the request–response model: a client sends a request to the server, which performs some action and sends a response back to the client, typically with a result or acknowledgement. Designating a computer as "server-class hardware" implies that it is specialized for running servers on it. This often implies that it is more powerful and reliable than standard personal computers, but alternatively, large computing clusters may be composed of many relatively simple, replaceable server components.\r\nStrictly speaking, the term server refers to a computer program or process (running program). Through metonymy, it refers to a device used for (or a device dedicated to) running one or several server programs. On a network, such a device is called a host. In addition to server, the words serve and service (as noun and as verb) are frequently used, though servicer and servant are not. The word service (noun) may refer to either the abstract form of functionality, e.g. Web service. Alternatively, it may refer to a computer program that turns a computer into a server, e.g. Windows service. Originally used as "servers serve users" (and "users use servers"), in the sense of "obey", today one often says that "servers serve data", in the same sense as "give". For instance, web servers "serve web pages to users" or "service their requests".\r\nThe server is part of the client–server model; in this model, a server serves data for clients. The nature of communication between a client and server is request and response. This is in contrast with peer-to-peer model in which the relationship is on-demand reciprocation. In principle, any computerized process that can be used or called by another process (particularly remotely, particularly to share a resource) is a server, and the calling process or processes is a client. Thus any general purpose computer connected to a network can host servers. For example, if files on a device are shared by some process, that process is a file server. Similarly, web server software can run on any capable computer, and so a laptop or a personal computer can host a web server.\r\nWhile request–response is the most common client–server design, there are others, such as the publish–subscribe pattern. In the publish–subscribe pattern, clients register with a pub–sub server, subscribing to specified types of messages; this initial registration may be done by request–response. Thereafter, the pub–sub server forwards matching messages to the clients without any further requests: the server pushes messages to the client, rather than the client pulling messages from the server as in request–response.","materialsDescription":" <span style=\"font-weight: bold;\">What is a server?</span>\r\nA server is a software or hardware device that accepts and responds to requests made over a network. The device that makes the request, and receives a response from the server, is called a client. On the Internet, the term "server" commonly refers to the computer system which receives a request for a web document and sends the requested information to the client.\r\n<span style=\"font-weight: bold;\">What are they used for?</span>\r\nServers are used to manage network resources. For example, a user may set up a server to control access to a network, send/receive an e-mail, manage print jobs, or host a website. They are also proficient at performing intense calculations. Some servers are committed to a specific task, often referred to as dedicated. However, many servers today are shared servers which can take on the responsibility of e-mail, DNS, FTP, and even multiple websites in the case of a web server.\r\n<span style=\"font-weight: bold;\">Why are servers always on?</span>\r\nBecause they are commonly used to deliver services that are constantly required, most servers are never turned off. Consequently, when servers fail, they can cause the network users and company many problems. To alleviate these issues, servers are commonly set up to be fault-tolerant.\r\n<span style=\"font-weight: bold;\">What are the examples of servers?</span>\r\nThe following list contains links to various server types:\r\n<ul><li>Application server;</li><li>Blade server;</li><li>Cloud server;</li><li>Database server;</li><li>Dedicated server;</li><li>Domain name service;</li><li>File server;</li><li>Mail server;</li><li>Print server;</li><li>Proxy server;</li><li>Standalone server;</li><li>Web server.</li></ul>\r\n<span style=\"font-weight: bold;\">How do other computers connect to a server?</span>\r\nWith a local network, the server connects to a router or switch that all other computers on the network use. Once connected to the network, other computers can access that server and its features. For example, with a web server, a user could connect to the server to view a website, search, and communicate with other users on the network.\r\nAn Internet server works the same way as a local network server, but on a much larger scale. The server is assigned an IP address by InterNIC, or by a web host.\r\nUsually, users connect to a server using its domain name, which is registered with a domain name registrar. When users connect to the domain name (such as "computerhope.com"), the name is automatically translated to the server's IP address by a DNS resolver.\r\nThe domain name makes it easier for users to connect to the server because the name is easier to remember than an IP address. Also, domain names enable the server operator to change the IP address of the server without disrupting the way that users access the server. The domain name can always remain the same, even if the IP address changes.\r\n<span style=\"font-weight: bold;\">Where are servers stored?</span>\r\nIn a business or corporate environment, a server and other network equipment are often stored in a closet or glasshouse. These areas help isolate sensitive computers and equipment from people who should not have access to them.\r\nServers that are remote or not hosted on-site are located in a data center. With these types of servers, the hardware is managed by another company and configured remotely by you or your company.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Server.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"dell-stoechnyi-server-poweredge-c6320":{"id":866,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Modulnaja_infrastruktura.png","logo":true,"scheme":false,"title":"DELL Стоечный сервер PowerEdge C6320","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"dell-stoechnyi-server-poweredge-c6320","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Производительность и эффективность\r\n\r\nСоздавайте высокопроизводительные кластеры и решения с горизонтальным масштабированием при помощи серверов PowerEdge C6320 со следующими характеристиками:\r\n \r\nМодульное решение с форм-фактором 2U и высокой плотностью, оснащенное процессорами Intel® Xeon® E5-2600 v4 нового поколения с увеличенным числом ядер по сравнению с предыдущими моделями E5-2600 v3, а также с поддержкой памяти объемом до 512 Гбайт на серверный узел с общим объемом до 2 Тбайт.\r\nИнтегрированный контроллер удаленного доступа Dell iDRAC8 с контроллером жизненного цикла (оптимальная стоимость при использовании с C6320) для обеспечения стабильного, эффективного управления серверами в физических, виртуальных, локальных и удаленных средах\r\nУниверсальные конфигурации с жесткими дисками высокой емкости с шириной 2,5 и 3,5 дюйма\r\n16 разъемов для модулей памяти DIMM позволяют адаптировать объем памяти (до 512 Гбайт1) под ваши потребности\r\nПамять DDR4 обеспечивает увеличение пропускной способности на 15% и сокращение энергопотребления до 30% по сравнению с ОЗУ DDR3\r\n\r\nМаксимальная универсальность\r\n\r\nЭкономия пространства и поддержка меняющихся нагрузок за счет оптимального сочетания производительности процессоров, вариантов узлов и функций энергосбережения, а также благодаря возможности использования до четырех независимых салазок (серверных узлов) и поддержке различного числа жестких дисков в одном шасси с форм-фактором 2U.\r\nДо 44 ядер на узел, 176 ядер на шасси\r\nДо 24 (шириной 2,5 дюйма) или 12 (шириной 3,5 дюйма) накопителей SAS, SATA или твердотельных накопителей с возможностью горячей замены в каждом шасси\r\nДва высокоэффективных блока питания мощностью 1 400 Вт и 1 600 Вт с возможностью горячей замены\r\nОпциональное встроенное загрузочное устройство SATA DOM (64 Гбайта) позволяет освободить ценное пространство на жестком диске для данных\r\nОдин разъем x16 PCIe 3.0 и один мезонинный разъем x8 PCIe 3.0 для салазок с форм-фактором 1U\r\nВстроенный модуль LOM: 2 порта 10GbE (SFP+)\r\n\r\nПовышение эффективности работы\r\n\r\nПростое управление серверами PowerEdge C6320 благодаря автоматическому выполнению стандартных задач по управлению жизненным циклом с помощью технологий Dell OpenManage на основе iDRAC8 со встроенным контроллером жизненного цикла без использования агентов, который работает как автономно, так и в сочетании с другими компонентами Dell OpenManage и средствами управления сторонних производителей, включая следующие:\r\nOpenManage Essentials\r\nИнтеграция Dell для BMC BladeLogic\r\nMicrosoft System Center\r\nVMware vCenter\r\nЭти средства позволяют оптимизировать операции в существующей среде управления ИТ.\r\nУпрощение задач управления\r\n\r\nIDRAC с контроллером жизненного цикла предоставляет полный набор функций управления сервером (включая конфигурацию, развертывание ОС, обновления микропрограмм, мониторинг состояния и техническое обслуживание), которые работают независимо от состояния операционной системы и наличия гипервизора.\r\n <span style=\"white-space:pre\">\t</span>\r\nБез агентов — мониторинг производительности основной памяти, ЦП и системы ввода-вывода и настройка пользовательских пороговых значений для оповещения по протоколу SNMP, Racadm или WSman — и все это без агентов ОС или какого-либо влияния на операционную систему или серверные компоненты.\r\n \r\nКонтроллер жизненного цикла — локальное развертывание и упрощенное обслуживание с помощью средства, интегрируемого с Dell OpenManage Essentials и консолями сторонних производителей.\r\n poweredge-c6320-Автоматическое развертывание и выделение ресурсов <span style=\"white-space:pre\">\t</span>Автоматическое развертывание и выделение ресурсов — автоматическая настройка серверов и опциональная возможность планирования проверок работоспособности с автоматическими изменениями конфигурации (требуется iDRAC Enterprise Edition).\r\n\r\nКрупномасштабные среды\r\n\r\nИспользуйте возможности гипермасштабирования C6320 для сред с высокими требованиями к производительности и с интенсивной рабочей нагрузкой.\r\n \r\nВысокопроизводительные вычисления — внедрение высокопроизводительных массово-параллельных вычислений с малой задержкой для кластеров с высокой плотностью, которым требуется высокая масштабируемость с максимальной производительностью на одно стойко-место.\r\nАналитика и большие объемы данных — поддержка крупномасштабного анализа данных благодаря максимальной плотности вычислений и возможности адаптации серверных конфигураций к изменяющимся нагрузкам.\r\nОблако — существенная масштабируемость и высокая плотность помогают поставщикам облачных сервисов и услуг хостинга сократить капитальные расходы и максимально повысить уровень производительности на кв. фут из расчета на ватт.\r\nWeb 2.0 — обеспечение соответствия серверной инфраструктуры крупным нагрузкам веб-хостинга, а также исключение выделения избыточных ресурсов благодаря высокой масштабируемости и универсальным вариантам быстрой конфигурации.","shortDescription":"Оптимизация производительности вычислений.\r\nМаксимизируйте производительность гипермасштабируемых систем благодаря поддержке до четырех независимых серверных узлов, различных конфигураций накопителей и общей инфраструктуры в компактном корпусе с форм-фактором 2U.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":1,"sellingCount":6,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"DELL Стоечный сервер PowerEdge C6320","keywords":"Dell, управления, C6320, производительности, OpenManage, высокой, развертывание, памяти","description":"Производительность и эффективность\r\n\r\nСоздавайте высокопроизводительные кластеры и решения с горизонтальным масштабированием при помощи серверов PowerEdge C6320 со следующими характеристиками:\r\n \r\nМодульное решение с форм-фактором 2U и высокой плотностью,","og:title":"DELL Стоечный сервер PowerEdge C6320","og:description":"Производительность и эффективность\r\n\r\nСоздавайте высокопроизводительные кластеры и решения с горизонтальным масштабированием при помощи серверов PowerEdge C6320 со следующими характеристиками:\r\n \r\nМодульное решение с форм-фактором 2U и высокой плотностью,","og:image":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Modulnaja_infrastruktura.png"},"eventUrl":"","translationId":7020,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":435,"title":"Rack Server","alias":"rack-server","description":"A rack mount server is a great way to maximize your shelf space by packing a lot of servers into a small space. Rackmount servers are typically easier for administrators to manage due to proximity, modularity and better cable management. Lockable rack cabinet doors and steel server front panels provide an additional level of physical security. Additionally, rack unit designed servers are better able to keep the server components cool than traditional tower form factor. Industry standard 19-inch racks will allow you to easily expand your business without taking up more valuable floor space.\r\nThere is a lot of thought that needs to go into which size rack server is best bet for your project. Both current requirements and future expansion plans need to be taken into account to ensure your server remains capable in the future.\r\nBoth large and small projects can be built on the 1U server platform. "U" stands for unit, “unit”, and this means thickness: server rack 1U = 1.75 inches or 44 mm wide. A reasonable amount of storage can fit within a 1U, processing power has no limits, and some models even allow up to two PCI-Express cards. Modern computer hardware uses much less power than it ever has in the past, which means less heat generation. Some 1U servers to still produce some acoustic noise, but is nowhere near the level of needing earmuffs like the old days. The only reason to go up in size is for additional expansion options.\r\n2U models allow for multiple "low-profile" PCI-Express cards while keeping a compact form factor and also providing some additional storage space. If the plan is to use multiple full height cards, then 3U or 4U servers should be the focus. The 4U models are very popular and offer flexible options. The 3U models do have limitations on expansion card compatibility and are really only for situations where rack space needs to be absolutely optimized (14x3U servers or 10x4U servers can fit in a 42u rack).","materialsDescription":"<span style=\"font-weight: bold;\">What is a ‘rack unit’?</span>\r\nA rack unit is the designated unit of measurement used when describing or quantifying the vertical space you have available in any equipment rack. One unit is equal to 1.75 inches, or 4.45 centimeters. Any equipment that has the ability to be mounted onto a rack is generally designed in a standard size to fit into many different server rack heights. It’s actually been standardized by the Electronic Industries Alliance (EIA). The most common heights are between 8U to 50U, but customization is also a viable option if you’re working with nonstandard sizes.\r\n<span style=\"font-weight: bold;\">Are there any specific ventilation requirements with server racks?</span>\r\nOver 65% of IT equipment failures are directly attributed to inadequate, poorly maintained, or failed air conditioning in the server room. So yes, proper ventilation is a critical part of maintaining any data center. Some cabinet manufacturers construct side panel ventilation instead of front and back ventilation, but experts say it’s inadequate for rack mount servers. This can be especially dangerous if more than one cabinet is being set up at once. The importance of proper ventilation should not be taken lightly, and you should always opt for front to back ventilation except in network applications where the IT equipment exhausts out the side.\r\n<span style=\"font-weight: bold;\">What is meant by ‘server rack depth’?</span>\r\nServer rack depth is a critical aspect of the ventilation process. Connectworld.net says, “Server cabinet depth is important not only because it has to allow room for the depth of the particular equipment to be rack-mounted (deep servers vs. routers or switches), but also it has to allow sufficient room for cables, PDU’s as well as airflow.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Rack_Server.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"dell-upravlenie-klientskimi-sistemami":{"id":869,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Upravlenie_klientskimi_sistemami.jpg","logo":true,"scheme":false,"title":"DELL Управление клиентскими системами","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"dell-upravlenie-klientskimi-sistemami","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"\r\nУстройства управления Dell KACE K1000\r\nУстройство управления Dell KACE K1000 удовлетворяют все ваши требования к управлению системами — от первоначального развертывания до текущего управления и списания, для 100-20 000 конечных узлов.\r\n\r\nУстройства для развертывания Dell KACE K2000\r\nУстройства для развертывания Dell KACE K2000 удовлетворяют потребности в развертывании систем, включая оценку ресурсов, развертывание ОС, установку приложений, настройку и восстановление.","shortDescription":"С помощью упрощенного комплексного подхода к развертыванию систем организации стремятся сэкономить время и деньги и повысить эффективность работы ИТ-отделов.\r\nЗащита данных\r\nDell KACE K1000\r\nDell KACE K2000","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":6,"sellingCount":12,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"DELL Управление клиентскими системами","keywords":"Dell, KACE, развертывания, Устройства, управления, удовлетворяют, K2000, K1000","description":"\r\nУстройства управления Dell KACE K1000\r\nУстройство управления Dell KACE K1000 удовлетворяют все ваши требования к управлению системами — от первоначального развертывания до текущего управления и списания, для 100-20 000 конечных узлов.\r\n\r\nУстройства для разве","og:title":"DELL Управление клиентскими системами","og:description":"\r\nУстройства управления Dell KACE K1000\r\nУстройство управления Dell KACE K1000 удовлетворяют все ваши требования к управлению системами — от первоначального развертывания до текущего управления и списания, для 100-20 000 конечных узлов.\r\n\r\nУстройства для разве","og:image":"https://old.roi4cio.com/fileadmin/user_upload/DELL_Upravlenie_klientskimi_sistemami.jpg"},"eventUrl":"","translationId":7022,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"intel-server-chassis-and-system":{"id":2035,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Intel_R__Storage_System.png","logo":true,"scheme":false,"title":"Intel Server Chassis and System","vendorVerified":0,"rating":"1.90","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":8,"alias":"intel-server-chassis-and-system","companyTitle":"Intel","companyTypes":["vendor"],"companyId":2800,"companyAlias":"intel","description":"Customers want data center products designed for outstanding performance and reliability that will address their unique needs. With Intel Server Systems and Intel Server Chassis, you can count on trusted performance, quality, and reliability to help solve the most complex business challenges.\r\n<span style=\"font-weight: bold; \">Features and Benefits:<br /></span><span style=\"font-weight: bold; \">World-Class Quality.</span> Intel Server Boards, Intel Server Systems, and Intel Server Chassis are built on a foundation of industry-leading, high-quality technology. Rigorous testing and extensive validation means reliable solutions you can trust.\r\n<span style=\"font-weight: bold; \">Feature-Rich Products.</span> Intel Server Boards and Intel Server Systems are designed to span multiple server use cases and customization requirements with performance, power, and cost flexibility to meet your existing requirements with headroom for growth.\r\n<span style=\"font-weight: bold; \">Commitment.</span> Intel is committed to providing you an unmatched customer experience with a standard three-year warranty, 24/7 access to our experts, and the confidence of knowing you have Intel in your corner.\r\nGet the most from innovative high performance Intel Server Systems. From 1U single-socket, short form factor web-hosting appliances to high reliability 2U mission critical systems, we have what you need.\r\nIntel Servers family delivers power and performance at peak efficiency in a 1U and 2U rack mount server form factor that features the energy- efficient dual Intel Xeon processor Scalable family. High memory capacity, networking, storage, and I/O flexibility combine with innovative design to provide an exceptional and reliable server for business IT, appliance, data center, cloud, and high performance computing applications.\r\n<span style=\"font-weight: bold; \">Powerful Compute Combined with Flexible I/O, Storage, and Networking Capacity:</span>\r\n<ul><li>Dual CPU sockets with support for the Intel Xeon processor Scalable family</li><li>Up to 24 DDR4 DIMMs</li><li>Three riser card slots with support for up to eight PCIe* 3.0 add-in cards for high configuration flexibility</li><li>Four on-board PCIe* OCuLink* connectors for direct attach NVMe* 2.5” SSD support</li><li>Networking flexibility via 10 G SFP+ and 10 GBase-T OCP mezzanine modules</li><li>Available in 1U and 2U systems with support for up to 24 NVMe* drives in a 2U chassis</li><li>Support for the full line of Intel RAID Modules</li></ul>\r\nThe servers are built with the latest Intel Xeon processor Scalable family. This latest generation processor is designed for performance with high scalability and resiliency with no I/O compromise, and supports a wide range of existing and emerging workloads.\r\nThe product family uses a number of key processor advancements:\r\n<ul><li>Intel QuickAssist Technology (Intel QAT) delivers up to 100 Gbps performance for authentication, public key functions, and compression/decompression workloads, while freeing up CPU cycles and reducing demands on the server</li><li>NVMe* enablement alleviates the I/O bottleneck with high performance and capacity</li><li>Intel Omni-Path Architecture (Intel OPA) integration delivering 100 Gb/s port bandwidth for improved performance and lower latency in medium to large clusters</li><li>Integrated 10 G Ethernet with RDMA eliminates TCP/IP overhead by offloading transport to NIC for faster switching and packet filtering</li><li>Intel Virtual RAID on CPU (Intel VROC) enables high-performance, highly scalable CPU-based RAID with NVMe with high IOPS and low latency</li></ul>\r\nThe product family is a foundational component of Intel Data Center Blocks (Intel DCB). These fully-validated, unbranded server systems include Intel's latest Data Center technology – already optimized to work better together – allowing partners to accelerate time to market with reliable data center solutions. The process of configuring and validating the components of solutions that are tuned to meet specific customer requirements is a complex and resource-intensive process. Intel Data Center Blocks based on the S2600WF family can help reduce this complexity, making it easier to build innovative server solutions that can support the demands of today’s data center workloads.\r\nTo address customer security concerns and guard against counterfeiting and malware, the S2600WF family features the Intel Transparent Supply Chain which enables the ability to verify the authenticity of board components and firmware.\r\nFeatures include:\r\n<ul><li>Digitally signed statement of conformance</li><li>Platform certificates provided with a secured firmware Trusted Platform Module (TPM)</li><li>Server component data tracked and saved for 20 years</li><li>Firmware load verification</li></ul>\r\nIntel Server Products are backed by Intel’s design excellence and manufacturing expertise to deliver processing power with high levels of flexibility, manageability, and reliability. Product and design quality is paired with three-year standard warranties and robust technical and incident resolution support to ensure customer satisfaction.","shortDescription":"With Intel Server Systems and Intel Server Chassis, you can count on trusted performance, quality, and reliability to help solve the most complex business challenges.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":17,"sellingCount":8,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Intel Server Chassis and System","keywords":"","description":"Customers want data center products designed for outstanding performance and reliability that will address their unique needs. 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Rackmount servers are typically easier for administrators to manage due to proximity, modularity and better cable management. Lockable rack cabinet doors and steel server front panels provide an additional level of physical security. Additionally, rack unit designed servers are better able to keep the server components cool than traditional tower form factor. Industry standard 19-inch racks will allow you to easily expand your business without taking up more valuable floor space.\r\nThere is a lot of thought that needs to go into which size rack server is best bet for your project. Both current requirements and future expansion plans need to be taken into account to ensure your server remains capable in the future.\r\nBoth large and small projects can be built on the 1U server platform. "U" stands for unit, “unit”, and this means thickness: server rack 1U = 1.75 inches or 44 mm wide. A reasonable amount of storage can fit within a 1U, processing power has no limits, and some models even allow up to two PCI-Express cards. Modern computer hardware uses much less power than it ever has in the past, which means less heat generation. Some 1U servers to still produce some acoustic noise, but is nowhere near the level of needing earmuffs like the old days. The only reason to go up in size is for additional expansion options.\r\n2U models allow for multiple "low-profile" PCI-Express cards while keeping a compact form factor and also providing some additional storage space. If the plan is to use multiple full height cards, then 3U or 4U servers should be the focus. The 4U models are very popular and offer flexible options. The 3U models do have limitations on expansion card compatibility and are really only for situations where rack space needs to be absolutely optimized (14x3U servers or 10x4U servers can fit in a 42u rack).","materialsDescription":"<span style=\"font-weight: bold;\">What is a ‘rack unit’?</span>\r\nA rack unit is the designated unit of measurement used when describing or quantifying the vertical space you have available in any equipment rack. One unit is equal to 1.75 inches, or 4.45 centimeters. Any equipment that has the ability to be mounted onto a rack is generally designed in a standard size to fit into many different server rack heights. It’s actually been standardized by the Electronic Industries Alliance (EIA). The most common heights are between 8U to 50U, but customization is also a viable option if you’re working with nonstandard sizes.\r\n<span style=\"font-weight: bold;\">Are there any specific ventilation requirements with server racks?</span>\r\nOver 65% of IT equipment failures are directly attributed to inadequate, poorly maintained, or failed air conditioning in the server room. So yes, proper ventilation is a critical part of maintaining any data center. Some cabinet manufacturers construct side panel ventilation instead of front and back ventilation, but experts say it’s inadequate for rack mount servers. This can be especially dangerous if more than one cabinet is being set up at once. The importance of proper ventilation should not be taken lightly, and you should always opt for front to back ventilation except in network applications where the IT equipment exhausts out the side.\r\n<span style=\"font-weight: bold;\">What is meant by ‘server rack depth’?</span>\r\nServer rack depth is a critical aspect of the ventilation process. Connectworld.net says, “Server cabinet depth is important not only because it has to allow room for the depth of the particular equipment to be rack-mounted (deep servers vs. routers or switches), but also it has to allow sufficient room for cables, PDU’s as well as airflow.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Rack_Server.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"intelr-storage-system":{"id":279,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Intel_R__Storage_System.png","logo":true,"scheme":false,"title":"Intel® Storage System","vendorVerified":0,"rating":"1.90","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":8,"alias":"intelr-storage-system","companyTitle":"Intel","companyTypes":["vendor"],"companyId":2800,"companyAlias":"intel","description":"Chassis Dimensions<span style=\"white-space:pre\">\t</span>16.93" x 24.95" x 3.44"\r\n\r\nIncluded Items<span style=\"white-space:pre\">\t</span>(24) 2.5" Hot-swap drive carriers, (1) Backplane, (2) 460W Redundant power supplies, (1) Power distribution board, (3) Hot-swap redundant system fans, (1) Control panel, (2) Internal to external sas connector converter boards, (2) Dual-port internal interface card, (2) Expanders, (16) internal SAS cables, (1) Rack handle set, (1) Value rail kit\r\n\r\nFront Drive Form Factor<span class=\"Apple-tab-span\" style=\"white-space:pre\">\t</span>Hot-swap 2.5"\r\n","shortDescription":"Intel® Storage System is an A 2U JBOD Storage system with 24 2.5\" dual-ported drives, dual expanders, hot-swap redundant fans,and hot-swap redundant power supplies.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":13,"sellingCount":4,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Intel® Storage System","keywords":"Hot-swap, internal, Factor, Dual-port, interface, card, boards, converter","description":"Chassis Dimensions<span style=\"white-space:pre\">\t</span>16.93" x 24.95" x 3.44"\r\n\r\nIncluded Items<span style=\"white-space:pre\">\t</span>(24) 2.5" Hot-swap drive carriers, (1) Backplane, (2) 460W Redundant power supplies, (1) Power distributi","og:title":"Intel® Storage System","og:description":"Chassis Dimensions<span style=\"white-space:pre\">\t</span>16.93" x 24.95" x 3.44"\r\n\r\nIncluded Items<span style=\"white-space:pre\">\t</span>(24) 2.5" Hot-swap drive carriers, (1) Backplane, (2) 460W Redundant power supplies, (1) Power distributi","og:image":"https://old.roi4cio.com/fileadmin/user_upload/Intel_R__Storage_System.png"},"eventUrl":"","translationId":280,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":7,"title":"Storage - General-Purpose Disk Arrays","alias":"storage-general-purpose-disk-arrays","description":" General-purpose disk arrays refer to disk storage systems that work together with specialized array controllers to achieve high data transfer. They are designed to fulfill the requirement of a diverse set of workloads such as databases, virtual desktop infrastructure, and virtual networks. The market size in the study represents the revenue generated through various deployment modes such as NAS, SAN, and DAS. Some of the technologies used in the general-purpose disk arrays market include PATA, SATA, and SCSI. The application areas of general-purpose disk arrays include BFSI, IT, government, education & research, healthcare, and manufacturing.\r\nGeneral-Purpose Disk Arrays market in BFSI accounts for the largest revenue. IT industry and governments are investing heavily in the general-purpose disk arrays, as a huge amount of voluminous data is getting generated which requires high storage capacity to store the classified data for analytics purpose and consumer insights. General-Purpose Disk Arrays market in healthcare is expected to show robust growth during the forecast period, as hospitals are adopting the latest technology with huge storage spaces in an attempt to track the patient history for providing better healthcare facilities.\r\nThe global general-purpose disk arrays market is fragmented owing to the presence of a large number of local and regional players, which intensifies the degree of rivalry. The market is growing at a notable pace, which leads to high intensity of rivalry. Key market players such as Dell EMC, HPE, and IBM Corporation seek to gain market share through continuous innovations in storage technology. Some of the other key players operating in a market are Hitachi, Seagate Technologies, NetApp, Promise Technologies, Quantum Corporation, Oracle Corporation, Fujitsu, DataDirect Networks, and Infortrend Technology Inc. Key competitors are specifically focusing on Asia-Pacific and Middle-East & Africa regions, as they show strong tendency to adopt the general-purpose disk arrays in coming years.","materialsDescription":"<span style=\"font-weight: bold;\">What are the characteristics of storage?</span>\r\nStorage technologies at all levels of the storage hierarchy can be differentiated by evaluating certain core characteristics as well as measuring characteristics specific to a particular implementation. These core characteristics are volatility, mutability, accessibility, and addressability. For any particular implementation of any storage technology, the characteristics worth measuring are capacity and performance.\r\n\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Volatility</span></span>\r\nNon-volatile memory retains the stored information even if not constantly supplied with electric power. It is suitable for long-term storage of information. Volatile memory requires constant power to maintain the stored information. The fastest memory technologies are volatile ones, although that is not a universal rule. Since the primary storage is required to be very fast, it predominantly uses volatile memory.\r\nDynamic random-access memory is a form of volatile memory that also requires the stored information to be periodically reread and rewritten, or refreshed, otherwise it would vanish. Static random-access memory is a form of volatile memory similar to DRAM with the exception that it never needs to be refreshed as long as power is applied; it loses its content when the power supply is lost.\r\nAn uninterruptible power supply (UPS) can be used to give a computer a brief window of time to move information from primary volatile storage into non-volatile storage before the batteries are exhausted. Some systems, for example EMC Symmetrix, have integrated batteries that maintain volatile storage for several minutes.\r\n\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Mutability</span></span>\r\n<span style=\"font-weight: bold;\">Read/write storage or mutable storage</span>\r\n<div class=\"indent\">Allows information to be overwritten at any time. A computer without some amount of read/write storage for primary storage purposes would be useless for many tasks. Modern computers typically use read/write storage also for secondary storage.</div>\r\n<span style=\"font-weight: bold;\">Slow write, fast read storage</span>\r\n<div class=\"indent\">Read/write storage which allows information to be overwritten multiple times, but with the write operation being much slower than the read operation. Examples include CD-RW and SSD.</div>\r\n<span style=\"font-weight: bold;\">Write once storage</span>\r\n<div class=\"indent\">Write Once Read Many (WORM) allows the information to be written only once at some point after manufacture. Examples include semiconductor programmable read-only memory and CD-R.</div>\r\n<span style=\"font-weight: bold;\">Read only storage</span>\r\n<div class=\"indent\">Retains the information stored at the time of manufacture. Examples include mask ROM ICs and CD-ROM.</div>\r\n\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Accessibility</span></span>\r\n<span style=\"font-weight: bold;\">Random access</span>\r\n<div class=\"indent\">Any location in storage can be accessed at any moment in approximately the same amount of time. Such characteristic is well suited for primary and secondary storage. Most semiconductor memories and disk drives provide random access.</div>\r\n<span style=\"font-weight: bold;\">Sequential access</span>\r\n<div class=\"indent\">The accessing of pieces of information will be in a serial order, one after the other; therefore the time to access a particular piece of information depends upon which piece of information was last accessed. Such characteristic is typical of off-line storage.</div>\r\n\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Addressability</span></span>\r\n<span style=\"font-weight: bold;\">Location-addressable</span>\r\n<div class=\"indent\">Each individually accessible unit of information in storage is selected with its numerical memory address. In modern computers, location-addressable storage usually limits to primary storage, accessed internally by computer programs, since location-addressability is very efficient, but burdensome for humans.</div>\r\n<span style=\"font-weight: bold;\">File addressable</span>\r\n<div class=\"indent\">Information is divided into files of variable length, and a particular file is selected with human-readable directory and file names. The underlying device is still location-addressable, but the operating system of a computer provides the file system abstraction to make the operation more understandable. In modern computers, secondary, tertiary and off-line storage use file systems.</div>\r\n<span style=\"font-weight: bold;\">Content-addressable</span>\r\n<div class=\"indent\">Each individually accessible unit of information is selected based on the basis of (part of) the contents stored there. Content-addressable storage can be implemented using software (computer program) or hardware (computer device), with hardware being faster but more expensive option. Hardware content addressable memory is often used in a computer's CPU cache.</div>\r\n\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Capacity</span></span>\r\n<span style=\"font-weight: bold;\">Raw capacity</span>\r\n<div class=\"indent\">The total amount of stored information that a storage device or medium can hold. It is expressed as a quantity of bits or bytes (e.g. 10.4 megabytes).</div>\r\n<span style=\"font-weight: bold;\">Memory storage density</span>\r\n<div class=\"indent\">The compactness of stored information. It is the storage capacity of a medium divided with a unit of length, area or volume (e.g. 1.2 megabytes per square inch).</div>\r\n\r\n<span style=\"font-weight: bold;\"><span style=\"font-style: italic;\">Performance</span></span>\r\n<span style=\"font-weight: bold;\">Latency</span>\r\n<div class=\"indent\">The time it takes to access a particular location in storage. The relevant unit of measurement is typically nanosecond for primary storage, millisecond for secondary storage, and second for tertiary storage. It may make sense to separate read latency and write latency (especially for non-volatile memory[8]) and in case of sequential access storage, minimum, maximum and average latency.</div>\r\n<span style=\"font-weight: bold;\">Throughput</span>\r\n<div class=\"indent\">The rate at which information can be read from or written to the storage. In computer data storage, throughput is usually expressed in terms of megabytes per second (MB/s), though bit rate may also be used. As with latency, read rate and write rate may need to be differentiated. Also accessing media sequentially, as opposed to randomly, typically yields maximum throughput.</div>\r\n<span style=\"font-weight: bold;\">Granularity</span>\r\n<div class=\"indent\">The size of the largest "chunk" of data that can be efficiently accessed as a single unit, e.g. without introducing additional latency.</div>\r\n<span style=\"font-weight: bold;\">Reliability</span>\r\n<div class=\"indent\">The probability of spontaneous bit value change under various conditions, or overall failure rate.</div>\r\nUtilities such as hdparm and sar can be used to measure IO performance in Linux.\r\n\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Energy use</span></span>\r\n<ul><li>Storage devices that reduce fan usage, automatically shut-down during inactivity, and low power hard drives can reduce energy consumption by 90 percent.</li><li>2.5-inch hard disk drives often consume less power than larger ones. Low capacity solid-state drives have no moving parts and consume less power than hard disks. Also, memory may use more power than hard disks. Large caches, which are used to avoid hitting the memory wall, may also consume a large amount of power.</li></ul>\r\n\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Security</span></span>\r\nFull disk encryption, volume and virtual disk encryption, andor file/folder encryption is readily available for most storage devices.\r\nHardware memory encryption is available in Intel Architecture, supporting Total Memory Encryption (TME) and page granular memory encryption with multiple keys (MKTME) and in SPARC M7 generation since October 2015.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Storage_General_Purpose_Disk_Arrays.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"lynx-mosaic":{"id":4735,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/lynx.jpg","logo":true,"scheme":false,"title":"Lynx MOSA.ic","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"lynx-mosaic","companyTitle":"Lynx Software Technologies","companyTypes":["supplier","vendor"],"companyId":5270,"companyAlias":"lynx-software-technologies","description":"Gain deeper insight and increased control over how applications are realized onto modern CPUs. Lynx MOSA.ic™ introduces a new perspective to application development that simplifies the creation, certification, and maintenance of inherently complex safety- and security-critical software systems. \r\n<b>Simpler Path to Multi-core Certification </b>\r\nForgoing the traditionally inherited complexities common to OS and hypervisor designs, Lynx MOSA.ic™ adapts to the advances in multi-core virtualization to simplify vital platform abstraction layers. The comprehensible, hardware-enforced architecture of Lynx MOSA.ic™ makes inherently complex multi-core system development a viable option when facing the risks of building solutions within highly regulated safety- and security-conscious markets. \r\n<b>Realizing the Vision of MOSA </b>\r\nThe vision of the Modular Open Systems Approach (MOSA)—to accelerate technology refresh cycles, supplier competition, and system component interoperability—has yet to be sufficiently realized for the vast majority of invested organizations and programs. Lynx MOSA.ic™—a “Modular Open Systems Architecture Integration Center”—uniquely allows developers to integrate independent software components within its development framework—including previously compiled legacy components and components authored by competing vendors. By delivering the highest number of development options at the lowest possible lifetime cost, Lynx MOSA.ic™ brings the concept of MOSA to the command line. \r\n<b>Verifiably Secure Foundation </b>\r\nLynx MOSA.ic™ is founded on the LynxSecure® processor partitioning system. Inspired by the Rushby Separation Kernel, LynxSecure® harnesses CPU virtualization to simplify resource control abstraction layers into a distributed model in contrast to traditional OS-based central resource management models. LynxSecure® isolates computing resources into independent distributed environments which are uniquely capable of managing themselves. Its distributed, least privilege design and maximum complexity reduction between application interfaces and trusted hardware control abstraction layers minimizes attack vectors and makes Lynx MOSA.ic™ naturally resilient advanced subversive exploits. \r\n<b>Benefits:</b>\r\n<ul> <li>Robust Foundation </li> <li>Minimal Abstraction Complexity </li> <li>Resilient to Advanced Persistent Threats and Side-Channels</li> <li>Real-time Scheduling </li> <li>Rapid Modular Development </li> <li>Reuse Certified Components </li> <li>Integrate 3rd Party Components </li> <li>Maximum Component Shelf-life Across Evolving Hardware </li> </ul>","shortDescription":"Lynx MOSA.ic™ is a software development framework for rapidly building comprehensible, robust software systems out of independent application modules","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":16,"sellingCount":14,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Lynx MOSA.ic","keywords":"","description":"Gain deeper insight and increased control over how applications are realized onto modern CPUs. Lynx MOSA.ic™ introduces a new perspective to application development that simplifies the creation, certification, and maintenance of inherently complex safety- and","og:title":"Lynx MOSA.ic","og:description":"Gain deeper insight and increased control over how applications are realized onto modern CPUs. Lynx MOSA.ic™ introduces a new perspective to application development that simplifies the creation, certification, and maintenance of inherently complex safety- and","og:image":"https://old.roi4cio.com/fileadmin/user_upload/lynx.jpg"},"eventUrl":"","translationId":4734,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":834,"title":"IoT - Internet of Things Security","alias":"iot-internet-of-things-security","description":" IoT security is the technology area concerned with safeguarding connected devices and networks in the internet of things (IoT).\r\nIoT involves adding internet connectivity to a system of interrelated computing devices, mechanical and digital machines, objects, animals and/or people. Each "thing" is provided a unique identifier and the ability to automatically transfer data over a network. Allowing devices to connect to the internet opens them up to a number of serious vulnerabilities if they are not properly protected.\r\nIoT security has become the subject of scrutiny after a number of high-profile incidents where a common IoT device was used to infiltrate and attack the larger network. Implementing security measures is critical to ensuring the safety of networks with IoT devices connected to them.\r\nIoT security hacks can happen in any industry, from smart home to a manufacturing plant to a connected car. The severity of impact depends greatly on the individual system, the data collected and/or the information it contains.\r\nAn attack disabling the brakes of a connected car, for example, or on a connected health device, such as an insulin pump hacked to administer too much medication to a patient, can be life-threatening. Likewise, an attack on a refrigeration system housing medicine that is monitored by an IoT system can ruin the viability of a medicine if temperatures fluctuate. Similarly, an attack on critical infrastructure -- an oil well, energy grid or water supply -- can be disastrous.\r\nSo, a robust IoT security portfolio must allow protecting devices from all types of vulnerabilities while deploying the security level that best matches application needs. Cryptography technologies are used to combat communication attacks. Security services are offered for protecting against lifecycle attacks. Isolation measures can be implemented to fend off software attacks. And, finally, IoT security should include tamper mitigation and side-channel attack mitigation technologies for fighting physical attacks of the chip.","materialsDescription":" <span style=\"font-weight: bold;\">What are the key requirements of IoT Security?</span>\r\nThe key requirements for any IoT security solution are:\r\n<ul><li>Device and data security, including authentication of devices and confidentiality and integrity of data</li><li>Implementing and running security operations at IoT scale</li><li>Meeting compliance requirements and requests</li><li>Meeting performance requirements as per the use case</li></ul>\r\n<span style=\"font-weight: bold;\">What do connected devices require to participate in the IoT Securely?</span>\r\nTo securely participate in the IoT, each connected device needs a unique identification – even before it has an IP address. This digital credential establishes the root of trust for the device’s entire lifecycle, from initial design to deployment to retirement.\r\n<span style=\"font-weight: bold;\">Why is device authentication necessary for the IoT?</span>\r\nStrong IoT device authentication is required to ensure connected devices on the IoT can be trusted to be what they purport to be. Consequently, each IoT device needs a unique identity that can be authenticated when the device attempts to connect to a gateway or central server. With this unique ID in place, IT system administrators can track each device throughout its lifecycle, communicate securely with it, and prevent it from executing harmful processes. If a device exhibits unexpected behavior, administrators can simply revoke its privileges.\r\n<span style=\"font-weight: bold;\">Why is secure manufacturing necessary for IoT devices?</span>\r\nIoT devices produced through unsecured manufacturing processes provide criminals opportunities to change production runs to introduce unauthorized code or produce additional units that are subsequently sold on the black market.\r\nOne way to secure manufacturing processes is to use hardware security modules (HSMs) and supporting security software to inject cryptographic keys and digital certificates and to control the number of units built and the code incorporated into each.\r\n<span style=\"font-weight: bold;\">Why is code signing necessary for IoT devices?</span>\r\nTo protect businesses, brands, partners, and users from software that has been infected by malware, software developers have adopted code signing. In the IoT, code signing in the software release process ensures the integrity of IoT device software and firmware updates and defends against the risks associated with code tampering or code that deviates from organizational policies.\r\nIn public key cryptography, code signing is a specific use of certificate-based digital signatures that enables an organization to verify the identity of the software publisher and certify the software has not been changed since it was published.\r\n<span style=\"font-weight: bold;\">What is IoT PKI?</span>\r\nToday there are more things (devices) online than there are people on the planet! Devices are the number one users of the Internet and need digital identities for secure operation. As enterprises seek to transform their business models to stay competitive, rapid adoption of IoT technologies is creating increasing demand for Public Key Infrastructures (PKIs) to provide digital certificates for the growing number of devices and the software and firmware they run.\r\nSafe IoT deployments require not only trusting the devices to be authentic and to be who they say they are, but also trusting that the data they collect is real and not altered. If one cannot trust the IoT devices and the data, there is no point in collecting, running analytics, and executing decisions based on the information collected.\r\nSecure adoption of IoT requires:\r\n<ul><li>Enabling mutual authentication between connected devices and applications</li><li>Maintaining the integrity and confidentiality of the data collected by devices</li><li>Ensuring the legitimacy and integrity of the software downloaded to devices</li><li>Preserving the privacy of sensitive data in light of stricter security regulations</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/iot.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"poweredge-rack-server":{"id":68,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/PowerEdge_Rack_Server.jpg","logo":true,"scheme":false,"title":"PowerEdge Rack Server","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"poweredge-rack-server","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Dell PowerEdge Rack Servers maximize productivity while offering industry leading performance and efficiency in a rack form factor.\r\nOutstanding performance and efficiency for the major databases, virtualization and Virtual Desktop Infrastructure.\r\nThree server level: Entry, advanced and premium.","shortDescription":"Dell PowerEdge Rack Servers maximize productivity while offering industry leading performance and efficiency in a rack form factor.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":1,"sellingCount":5,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"PowerEdge Rack Server","keywords":"efficiency, performance, PowerEdge, Rack, virtualization, databases, major, Desktop","description":"Dell PowerEdge Rack Servers maximize productivity while offering industry leading performance and efficiency in a rack form factor.\r\nOutstanding performance and efficiency for the major databases, virtualization and Virtual Desktop Infrastructure.\r\nThree serve","og:title":"PowerEdge Rack Server","og:description":"Dell PowerEdge Rack Servers maximize productivity while offering industry leading performance and efficiency in a rack form factor.\r\nOutstanding performance and efficiency for the major databases, virtualization and Virtual Desktop Infrastructure.\r\nThree serve","og:image":"https://old.roi4cio.com/fileadmin/user_upload/PowerEdge_Rack_Server.jpg"},"eventUrl":"","translationId":95,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":435,"title":"Rack Server","alias":"rack-server","description":"A rack mount server is a great way to maximize your shelf space by packing a lot of servers into a small space. Rackmount servers are typically easier for administrators to manage due to proximity, modularity and better cable management. Lockable rack cabinet doors and steel server front panels provide an additional level of physical security. Additionally, rack unit designed servers are better able to keep the server components cool than traditional tower form factor. Industry standard 19-inch racks will allow you to easily expand your business without taking up more valuable floor space.\r\nThere is a lot of thought that needs to go into which size rack server is best bet for your project. Both current requirements and future expansion plans need to be taken into account to ensure your server remains capable in the future.\r\nBoth large and small projects can be built on the 1U server platform. "U" stands for unit, “unit”, and this means thickness: server rack 1U = 1.75 inches or 44 mm wide. A reasonable amount of storage can fit within a 1U, processing power has no limits, and some models even allow up to two PCI-Express cards. Modern computer hardware uses much less power than it ever has in the past, which means less heat generation. Some 1U servers to still produce some acoustic noise, but is nowhere near the level of needing earmuffs like the old days. The only reason to go up in size is for additional expansion options.\r\n2U models allow for multiple "low-profile" PCI-Express cards while keeping a compact form factor and also providing some additional storage space. If the plan is to use multiple full height cards, then 3U or 4U servers should be the focus. The 4U models are very popular and offer flexible options. The 3U models do have limitations on expansion card compatibility and are really only for situations where rack space needs to be absolutely optimized (14x3U servers or 10x4U servers can fit in a 42u rack).","materialsDescription":"<span style=\"font-weight: bold;\">What is a ‘rack unit’?</span>\r\nA rack unit is the designated unit of measurement used when describing or quantifying the vertical space you have available in any equipment rack. One unit is equal to 1.75 inches, or 4.45 centimeters. Any equipment that has the ability to be mounted onto a rack is generally designed in a standard size to fit into many different server rack heights. It’s actually been standardized by the Electronic Industries Alliance (EIA). The most common heights are between 8U to 50U, but customization is also a viable option if you’re working with nonstandard sizes.\r\n<span style=\"font-weight: bold;\">Are there any specific ventilation requirements with server racks?</span>\r\nOver 65% of IT equipment failures are directly attributed to inadequate, poorly maintained, or failed air conditioning in the server room. So yes, proper ventilation is a critical part of maintaining any data center. Some cabinet manufacturers construct side panel ventilation instead of front and back ventilation, but experts say it’s inadequate for rack mount servers. This can be especially dangerous if more than one cabinet is being set up at once. The importance of proper ventilation should not be taken lightly, and you should always opt for front to back ventilation except in network applications where the IT equipment exhausts out the side.\r\n<span style=\"font-weight: bold;\">What is meant by ‘server rack depth’?</span>\r\nServer rack depth is a critical aspect of the ventilation process. Connectworld.net says, “Server cabinet depth is important not only because it has to allow room for the depth of the particular equipment to be rack-mounted (deep servers vs. routers or switches), but also it has to allow sufficient room for cables, PDU’s as well as airflow.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Rack_Server.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"ibp-dvoinogo-preobrazovanija-dell-smart-ups":{"id":862,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/IBP_dvoinogo_preobrazovanija_Dell_Smart-UPS.png","logo":true,"scheme":false,"title":"ИБП двойного преобразования Dell Smart-UPS","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"ibp-dvoinogo-preobrazovanija-dell-smart-ups","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Источники бесперебойного питания (ИБП) от Dell гарантируют надежную и эффективную работу ваших ИТ-систем. В моделях ИБП Dell с двойным преобразованием используется дизайн APC™ от Schneider Electric™. Они способны не только обеспечить базовую защиту для серверов, хранилищ и сети, но и удовлетворить самые высокие запросы в отношении питания.\r\nИБП двойного преобразования Dell Smart — ИБП двойного преобразования Dell Smart-UPS\r\nИБП двойного преобразования Dell Smart-UPS\r\n\r\nСистема питания с высокой плотностью и двойным преобразованием для защиты критически важных серверов, сетей передачи данных и голосовой связи, медицинских лабораторий и предприятий легкой промышленности. Модели с поддержкой нагрузок от 3 до 8 кВА в стойке или трансформируемом корпусе Tower Модель мощностью 8 кВА обеспечивает единичный коэффициент выходной мощности.\r\n\r\nОсновные компоненты\r\nУдаленное управление\r\nЗаменяемые пользователем аккумуляторы с возможностью горячего переключения\r\nДвойное преобразование\r\nВстроенные автоматические и ручные функции обхода\r\nПанели распределения питания с возможностью замены в условиях эксплуатации\r\nМасштабируемое время работы\r\nТрехлетняя гарантия на электронные компоненты и аккумулятор\r\n \r\n\r\nОсновные компоненты второго поколения ИБП двойного преобразования\r\n\r\nПовышенная удельная мощность\r\nВысокоэффективный режим энергосбережения\r\nГрафический ЖК-дисплей с многоцветной подсветкой\r\nИнтеллектуальное управление аккумулятором\r\nВстроенный счетчик энергопотребления\r\nИБП двойного преобразования Dell Smart-UPS — функции продукта\r\nФункции продукта\r\n\r\nЖК-дисплей, обеспечивающий точное отображение состояния в режиме реального времени с помощью базовых или расширенных меню, выбираемых пользователем\r\n\r\nСостояние ИБП\r\nВходное и выходное напряжение\r\nВыходная частота\r\nВремя работы\r\nНагрузка\r\nСостояние аккумулятора\r\n\r\nУправление \r\nПараметры ИБП и выходной группы\r\nУправление обходом\r\n\r\nНастройки\r\nВыходное напряжение, частота\r\nЯзык, яркость, контрастность\r\nГромкость сигнала тревоги\r\nIP-адрес\r\n\r\nТестирование и диагностика: тесты для начальной калибровки аккумулятора и времени работы\r\n\r\nМеню с информацией об ИБП\r\nСерийный номер ИБП, номер аккумулятора по каталогу\r\nДаты установки и рекомендуемой замены аккумулятора\r\nИБП двойного преобразования Dell Smart-UPS — развитие по мере роста нашего ассортимента\r\nДобивайтесь роста с помощью нашего портфеля продуктов\r\n\r\nВ дополнение к ИБП Dell Smart-UPS набор решений Dell Data Center Infrastructure (DCI) предоставляет различные варианты поддержки2, шасси для монтажа в стойку, а также комплекты клавиатуры, видео и мыши (КВМ) и клавиатуры, монитора, мыши (КММ). Корпорация Dell способна удовлетворить требования любой инфраструктуры, обслуживающей как одиночный сервер, так и целый центр обработки данных.\r\nЛИНЕЙКА МОДЕЛЕЙ\r\nИБП двойного преобразования Dell Smart-UPS мощностью 3 кВА в корпусе Tower и для монтажа в стойку\r\nБлок бесперебойного питания с двойным преобразованием защитит самые важные для бизнеса системы.\r\nКонфигурации форм-фактора 2U для монтажа в стойку и в корпусе Tower\r\nДопустимая мощность 2 700 Вт/3 000 ВА\r\nОпциональная плата удаленного управления\r\nВозможность управления группой принимающих нагрузку выходных разъемов независимо от основного ИБП\r\nСтандартная функция аварийного отключения питания\r\nФильтрация шума и автоматическая регулировка напряжения\r\nЖК-дисплей для локальной настройки параметров энергопотребления\r\n \r\n ИБП двойного преобразования Dell Smart — ИБП двойного преобразования Dell Smart-UPS мощностью 5 кВА в корпусе Tower и для монтажа в стойку<span style=\"white-space:pre\">\t</span>\r\n\r\nИБП двойного преобразования Dell Smart-UPS мощностью 5 кВА в корпусе Tower и для монтажа в стойку\r\nБлок бесперебойного питания с двойным преобразованием защитит используемые вашим бизнесом системы.\r\nКонфигурации форм-фактора 3U для монтажа в стойку и в корпусе Tower (поставляется в виде стойки)\r\nДопустимая мощность 4 500 Вт/5 000 ВА (4 250 Вт с входным разъемом NEMA L6-30)\r\nВозможность управления группой принимающих нагрузку выходных разъемов независимо от основного ИБП\r\nФункция аварийного отключения питания\r\nФильтрация шума и автоматическая регулировка напряжения\r\nЖК-дисплей для локальной настройки параметров энергопотребления\r\nРасширенные функции управления аккумулятором и съемный аккумулятор\r\nВстроенная сетевая плата управления с функциями мониторинга окружающей среды\r\n \r\n ИБП двойного преобразования Dell Smart-UPS — ИБП двойного преобразования Dell Smart-UPS мощностью 8 кВА в корпусе Tower и для монтажа в стойку<span style=\"white-space:pre\">\t</span>\r\nИБП двойного преобразования Dell Smart-UPS мощностью 8 кВА в корпусе Tower и для монтажа в стойку\r\nБлок бесперебойного питания с двойным преобразованием защитит используемые вашим бизнесом системы.\r\nКонфигурации форм-фактора 6U для монтажа в стойку и в корпусе Tower (поставляется в виде стойки)\r\nДопустимая мощность 8 000 Вт/8 000 ВА\r\nВозможность управления группой принимающих нагрузку выходных разъемов независимо от основного ИБП\r\nФункция аварийного отключения питания\r\nФильтрация шума и автоматическая регулировка напряжения\r\nЖК-дисплей для локальной настройки параметров энергопотребления\r\nРасширенные функции управления аккумулятором и съемный аккумулятор\r\nВстроенная сетевая плата управления с функциями мониторинга окружающей среды","shortDescription":"ИБП двойного преобразования Dell Smart-UPS в трансформируемом корпусе Tower и для монтажа в стойку удовлетворит любые потребности в электропитании.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":3,"sellingCount":1,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"ИБП двойного преобразования Dell Smart-UPS","keywords":"Dell, преобразования, двойного, Smart-UPS, питания, монтажа, Tower, стойку","description":"Источники бесперебойного питания (ИБП) от Dell гарантируют надежную и эффективную работу ваших ИТ-систем. В моделях ИБП Dell с двойным преобразованием используется дизайн APC™ от Schneider Electric™. Они способны не только обеспечить базовую защиту для серверо","og:title":"ИБП двойного преобразования Dell Smart-UPS","og:description":"Источники бесперебойного питания (ИБП) от Dell гарантируют надежную и эффективную работу ваших ИТ-систем. В моделях ИБП Dell с двойным преобразованием используется дизайн APC™ от Schneider Electric™. Они способны не только обеспечить базовую защиту для серверо","og:image":"https://old.roi4cio.com/fileadmin/user_upload/IBP_dvoinogo_preobrazovanija_Dell_Smart-UPS.png"},"eventUrl":"","translationId":7017,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":33,"title":"UPS - Uninterruptible Power Supply","alias":"ups-uninterruptible-power-supply","description":"An uninterruptible power supply (UPS), also known as a battery backup, provides backup power when your regular power source fails or voltage drops to an unacceptable level. A UPS allows for the safe, orderly shutdown of a computer and connected equipment. The size and design of a UPS determine how long it will supply power.\r\nDifferent UPS topologies provide specific levels of power protection.\r\nStandby is the most basic UPS topology. A standby UPS resorts to battery backup power in the event of common power problems such as a blackout, voltage sag, or voltage surge. When incoming utility power drops below or surges above safe voltage levels, the UPS switches to DC battery power and then inverts it to AC power to run connected equipment. These models are designed for consumer electronics, entry-level computers, POS systems, security systems, and other basic electronic equipment.\r\nA line-interactive UPS incorporates technology which allows it to correct minor power fluctuations (under-voltages and over voltages) without switching to battery. This type of UPS has an autotransformer that regulates low voltages (e.g., brownouts) and over voltages (e.g., swells) without having to switch to battery. Line-interactive UPS models are typically used for consumer electronics, PCs, gaming systems, home theater electronics, network equipment, and entry-to-mid-range servers. They provide power during such events as a blackout, voltage sag, voltage surge, or over-voltage.\r\nA double-conversion (online) UPS provides consistent, clean, and near-perfect power regardless of the condition of incoming power. This UPS converts incoming AC power to DC, and then back to AC. UPS systems with this technology operate on isolated DC power 100 percent of the time and have a zero transfer time because they never need to switch to DC power. Double-conversion UPS systems are designed to protect mission-critical IT equipment, data center installations, high-end servers, large telecom installations and storage applications, and advanced network equipment from damage caused by a power blackout, voltage sag, voltage surge, over-voltage, voltage spike, frequency noise, frequency variation, or harmonic distortion.","materialsDescription":" <span style=\"font-weight: bold;\">What is a UPS system?</span>\r\nUPS stands for an uninterruptible power supply. This means that a UPS system is designed to keep the power running at all times. For instance, load shedding will be a problem of the past with our wide variety of products and solutions keeping your business moving.\r\n<span style=\"font-weight: bold;\">Where is a UPS used?</span>\r\nUPS systems can be used anywhere that needs to ensure that the power stays on. The most common applications are where power is critical to avoid infrastructure damage e.g. Data centers and manufacturing facilities.\r\n<span style=\"font-weight: bold;\">What is the difference between a battery and a UPS?</span>\r\nA battery is a device that stores energy, a UPS detects when there is no longer any power coming from the mains and switches over to the UPS batteries.\r\n<span style=\"font-weight: bold;\">Can I use a UPS for 6-7 hours?</span>\r\nIf the power requirement is low and the UPS is overrated, possibly, but normally running a UPS for this long requires so many UPS batteries it becomes unfeasible both financially and physically. It would be best to run a standby generator alongside your UPS to achieve this.\r\n<span style=\"font-weight: bold;\">What is the difference between a UPS and an Inverter?</span>\r\nThe UPS and inverter both provide the backup supply to the electrical system. The major difference between the UPS and inverter is that the UPS switches from the main supply to the battery immediately, but the inverter takes much longer.\r\n<span style=\"font-weight: bold;\">What is a non-critical load in a power system?</span>\r\nA non-critical load is an electrical device or devices, that aren’t key to keeping a business running or won’t be damaged by a power cut. In short, it doesn’t matter if these devices lose power in an outage.\r\n<span style=\"font-weight: bold;\">What is backup power?</span>\r\nBackup power is a term that simply means, a source of power if the main power source fails. This can be anything from some AA batteries in your mains powered alarm clock to UPS system and standby generator that is connected to your data center.\r\n<span style=\"font-weight: bold;\">What is the difference between a standby generator and a UPS system?</span>\r\nWhile both protect against a power cut, a UPS is an immediate, short term solution, provide power straight away for as long as its UPS batteries have a charge. A standby generator is a longer turn solution, that is slower to start up but will provide power for as long as it has fuel.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_UPS.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"interaktivnyi-ibp-dell-smart-ups":{"id":863,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Interaktivnyi_IBP_Dell_Smart-UPS.jpg","logo":true,"scheme":false,"title":"Интерактивный ИБП Dell Smart-UPS","vendorVerified":0,"rating":"2.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":15,"alias":"interaktivnyi-ibp-dell-smart-ups","companyTitle":"DELL","companyTypes":["vendor"],"companyId":169,"companyAlias":"dell","description":"Чистое, надежное и эффективное электропитание\r\n\r\nОбеспечение надежной и эффективной работы ИТ-оборудования с помощью источников бесперебойного питания (ИБП) от Dell. Интерактивные ИБП Dell, спроектированные с участием APC™, дочерней компании Schneider Electric™, удовлетворят самые разнообразные потребности в электропитании — от обеспечения необходимого уровня защиты серверов, систем хранения данных и сетей до удовлетворения самых высоких требований к электропитанию.\r\nИнтерактивный ИБП Dell Smart-UPS\r\nИнтерактивный ИБП Dell Smart-UPS\r\n\r\nНадежная система питания сетевого уровня для серверов, систем хранения данных и сетевых устройств. Модели для монтажа в стойку и в корпусе Tower обеспечивают высокую эффективность при низких, средних и высоких нагрузках.\r\n\r\nОсновные функции\r\nРежим повышенной эффективности: позволяет сократить расходы на электропитание и охлаждение\r\nФункция аварийного отключения питания (АОП): выполняет удаленное отключение ИБП при возникновении аварийной ситуации. (вариант модели с мощностью 1 500 ВА)\r\nЖК-дисплей: отображает подробную и точную информацию в реальном времени\r\nСистема питания сетевого уровня: обеспечивает стабильное питание благодаря фильтрации шума, автоматическому регулированию напряжения и встроенной защите от скачков напряжения\r\nПорты связи: последовательные порты и порты USB, а также разъем SmartSlot для подключения сетевых плат\r\nРасширенные функции управления аккумулятором: позволяют продлить время работы от аккумулятора благодаря алгоритмам с температурной компенсацией\r\nИБП Smart-UPS DLT1500 в корпусе Tower\r\nФункциональные возможности\r\n\r\nЖК-Дисплей: обеспечивает отображение состояния в режиме реального времени с помощью базовых или расширенных меню\r\nИндикатор питания:\r\nРежим работы и эффективность\r\nМощность нагрузки/Вт/А\r\nВходное/выходное напряжение и частота\r\nЕмкость аккумулятора и время работы\r\nУправление: параметры ИБП и выходной группы\r\nКонфигурация:\r\nЯзык\r\nПараметры питания и качество\r\nНастройка предупреждений\r\nТестирование и диагностика: тесты для начальной калибровки аккумулятора и диагностические тесты для запуска в процессе эксплуатации\r\nЖурналы: краткое описание 10 последних переключений и сбоев\r\nМеню с информацией об ИБП:\r\nНомера деталей ИБП и сменных аккумуляторов\r\nСерийные номера\r\nИБП Smart-UPS DLT1500 в корпусе Tower\r\nДобивайтесь роста с помощью нашего портфеля продуктов\r\n\r\nВ дополнение к ИБП Dell Smart-UPS Line-Interactive и Online в набор решений Dell для создания инфраструктуры ЦОД (Data Center Infrastructure, DCI) входят различные варианты поддержки2, стоечные шасси, а также переключатели клавиатуры, видео и мыши (КВМ) и клавиатуры, монитора, мыши (КММ). Корпорация Dell способна удовлетворить требования любой инфраструктуры, обслуживающей как одиночный сервер, так и целый центр обработки данных.\r\n\r\nЛИНЕЙКА МОДЕЛЕЙ\r\nИнтерактивный ИБП Smart-UPS Dell мощностью 1 500 ВА в корпусе Tower\r\n\r\nЭффективное питание и защита оборудования с помощью интерактивного ИБП со следующими характеристиками.\r\nКонфигурация в корпусе Tower\r\nДопустимая мощность: 1 000 Вт/1 440 ВА\r\nОпциональная функция аварийного отключения питания\r\nФильтрация шума и автоматическое регулирование напряжения\r\nЖК-дисплей для локальной настройки параметров энергопотребления\r\nРасширенные функции управления аккумулятором и съемный аккумулятор\r\nПоследовательный порт, порты USB и разъем SmartSlot для опциональных плат управления\r\n \r\nИБП Smart-UPS DLT1500 в корпусе Tower<span style=\"white-space:pre\">\t</span>Интерактивный ИБП Smart-UPS Dell мощностью 2 200 ВА в корпусе Tower\r\n\r\nЭффективное питание и защита оборудования с помощью интерактивного ИБП со следующими характеристиками. \r\nКонфигурация в корпусе Tower\r\nДопустимая мощность: 1 920 Вт/2 200 ВА\r\nФункция аварийного отключения питания\r\nФильтрация шума и автоматическое регулирование напряжения\r\nЖК-дисплей для локальной настройки параметров энергопотребления\r\nРасширенные функции управления аккумулятором и съемный аккумулятор\r\nПоследовательный порт, порты USB и разъем SmartSlot для опциональных плат управления\r\n \r\nИБП Smart-UPS DLT1500 в корпусе Tower<span style=\"white-space:pre\">\t</span>Интерактивный ИБП Smart-UPS Dell мощностью 1 500 ВА в корпусе для монтажа в стойку \r\n\r\nЭффективное питание и защита оборудования с помощью интерактивного ИБП со следующими характеристиками.\r\nКонфигурация для монтажа в стойку с форм-фактором 2U\r\nДопустимая мощность: 1 000 Вт/1 440 ВА\r\nОпциональная функция аварийного отключения питания\r\nФильтрация шума и автоматическое регулирование напряжения\r\nЖК-дисплей для локальной настройки параметров энергопотребления\r\nРасширенные функции управления аккумулятором и съемный аккумулятор\r\nИБП Smart-UPS DLT1500 в корпусе Tower<span style=\"white-space:pre\">\t</span>Интерактивный ИБП Smart-UPS Dell мощностью 3 000 ВА в корпусе для монтажа в стойку\r\n\r\nЭффективное питание и защита оборудования с помощью интерактивного ИБП со следующими характеристиками.\r\nКонфигурация для монтажа в стойку с форм-фактором 2U\r\nДопустимая мощность: 2 700 Вт/3 000 ВА\r\nСтандартная функция аварийного отключения питания\r\nФильтрация шума и автоматическое регулирование напряжения\r\nЖК-дисплей для локальной настройки параметров энергопотребления\r\nРасширенные функции управления аккумулятором и съемный аккумулятор","shortDescription":"Интерактивные ИБП серии Dell Smart-UPS, в состав которой входят как модели в корпусе Tower, так и модели для монтажа в стойку, удовлетворят любые потребности в электропитании.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":14,"sellingCount":0,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Интерактивный ИБП Dell Smart-UPS","keywords":"Smart-UPS, корпусе, Dell, питания, Tower, помощью, Интерактивный, управления","description":"Чистое, надежное и эффективное электропитание\r\n\r\nОбеспечение надежной и эффективной работы ИТ-оборудования с помощью источников бесперебойного питания (ИБП) от Dell. Интерактивные ИБП Dell, спроектированные с участием APC™, дочерней компании Schneider Electric","og:title":"Интерактивный ИБП Dell Smart-UPS","og:description":"Чистое, надежное и эффективное электропитание\r\n\r\nОбеспечение надежной и эффективной работы ИТ-оборудования с помощью источников бесперебойного питания (ИБП) от Dell. Интерактивные ИБП Dell, спроектированные с участием APC™, дочерней компании Schneider Electric","og:image":"https://old.roi4cio.com/fileadmin/user_upload/Interaktivnyi_IBP_Dell_Smart-UPS.jpg"},"eventUrl":"","translationId":7018,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":33,"title":"UPS - Uninterruptible Power Supply","alias":"ups-uninterruptible-power-supply","description":"An uninterruptible power supply (UPS), also known as a battery backup, provides backup power when your regular power source fails or voltage drops to an unacceptable level. A UPS allows for the safe, orderly shutdown of a computer and connected equipment. The size and design of a UPS determine how long it will supply power.\r\nDifferent UPS topologies provide specific levels of power protection.\r\nStandby is the most basic UPS topology. A standby UPS resorts to battery backup power in the event of common power problems such as a blackout, voltage sag, or voltage surge. When incoming utility power drops below or surges above safe voltage levels, the UPS switches to DC battery power and then inverts it to AC power to run connected equipment. These models are designed for consumer electronics, entry-level computers, POS systems, security systems, and other basic electronic equipment.\r\nA line-interactive UPS incorporates technology which allows it to correct minor power fluctuations (under-voltages and over voltages) without switching to battery. This type of UPS has an autotransformer that regulates low voltages (e.g., brownouts) and over voltages (e.g., swells) without having to switch to battery. Line-interactive UPS models are typically used for consumer electronics, PCs, gaming systems, home theater electronics, network equipment, and entry-to-mid-range servers. They provide power during such events as a blackout, voltage sag, voltage surge, or over-voltage.\r\nA double-conversion (online) UPS provides consistent, clean, and near-perfect power regardless of the condition of incoming power. This UPS converts incoming AC power to DC, and then back to AC. UPS systems with this technology operate on isolated DC power 100 percent of the time and have a zero transfer time because they never need to switch to DC power. Double-conversion UPS systems are designed to protect mission-critical IT equipment, data center installations, high-end servers, large telecom installations and storage applications, and advanced network equipment from damage caused by a power blackout, voltage sag, voltage surge, over-voltage, voltage spike, frequency noise, frequency variation, or harmonic distortion.","materialsDescription":" <span style=\"font-weight: bold;\">What is a UPS system?</span>\r\nUPS stands for an uninterruptible power supply. This means that a UPS system is designed to keep the power running at all times. For instance, load shedding will be a problem of the past with our wide variety of products and solutions keeping your business moving.\r\n<span style=\"font-weight: bold;\">Where is a UPS used?</span>\r\nUPS systems can be used anywhere that needs to ensure that the power stays on. The most common applications are where power is critical to avoid infrastructure damage e.g. Data centers and manufacturing facilities.\r\n<span style=\"font-weight: bold;\">What is the difference between a battery and a UPS?</span>\r\nA battery is a device that stores energy, a UPS detects when there is no longer any power coming from the mains and switches over to the UPS batteries.\r\n<span style=\"font-weight: bold;\">Can I use a UPS for 6-7 hours?</span>\r\nIf the power requirement is low and the UPS is overrated, possibly, but normally running a UPS for this long requires so many UPS batteries it becomes unfeasible both financially and physically. It would be best to run a standby generator alongside your UPS to achieve this.\r\n<span style=\"font-weight: bold;\">What is the difference between a UPS and an Inverter?</span>\r\nThe UPS and inverter both provide the backup supply to the electrical system. The major difference between the UPS and inverter is that the UPS switches from the main supply to the battery immediately, but the inverter takes much longer.\r\n<span style=\"font-weight: bold;\">What is a non-critical load in a power system?</span>\r\nA non-critical load is an electrical device or devices, that aren’t key to keeping a business running or won’t be damaged by a power cut. In short, it doesn’t matter if these devices lose power in an outage.\r\n<span style=\"font-weight: bold;\">What is backup power?</span>\r\nBackup power is a term that simply means, a source of power if the main power source fails. This can be anything from some AA batteries in your mains powered alarm clock to UPS system and standby generator that is connected to your data center.\r\n<span style=\"font-weight: bold;\">What is the difference between a standby generator and a UPS system?</span>\r\nWhile both protect against a power cut, a UPS is an immediate, short term solution, provide power straight away for as long as its UPS batteries have a charge. A standby generator is a longer turn solution, that is slower to start up but will provide power for as long as it has fuel.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_UPS.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]}},"aliases":{"1":["dell-poweredge-mx7000-modular-chassis","dell-precision-workstations","dell-wyse-3040-thin-client","dell-bleid-massiv-equallogic-ps-m4110","dell-obshchaja-infrastruktura-konvergentnye-platformy","dell-servery-poweredge-v-korpuse-tower","dell-stoechnyi-server-poweredge-c6320","dell-upravlenie-klientskimi-sistemami","intel-server-chassis-and-system","intelr-storage-system","lynx-mosaic","poweredge-rack-server","ibp-dvoinogo-preobrazovanija-dell-smart-ups","interaktivnyi-ibp-dell-smart-ups"]},"links":{"first":"http://b4r_be/api/products?page=1","last":"http://b4r_be/api/products?page=1","prev":null,"next":null},"meta":{"current_page":1,"from":1,"last_page":1,"path":"http://b4r_be/api/products","per_page":20,"to":14,"total":14},"loading":false,"error":null,"useProductLoading":false,"sellProductLoading":false,"templatesById":{},"comparisonByTemplateId":{}},"filters":{"filterCriterias":{"loading":false,"error":null,"data":{"price":{"min":0,"max":6000},"users":{"loading":false,"error":null,"ids":[],"values":{}},"suppliers":{"loading":false,"error":null,"ids":[],"values":{}},"vendors":{"loading":false,"error":null,"ids":[],"values":{}},"roles":{"id":200,"title":"Roles","values":{"1":{"id":1,"title":"User","translationKey":"user"},"2":{"id":2,"title":"Supplier","translationKey":"supplier"},"3":{"id":3,"title":"Vendor","translationKey":"vendor"}}},"categories":{"flat":[],"tree":[]},"countries":{"loading":false,"error":null,"ids":[],"values":{}}}},"showAIFilter":false},"companies":{"companiesByAlias":{},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"implementations":{"implementationsByAlias":{},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"agreements":{"agreementById":{},"ids":{},"links":{},"meta":{},"loading":false,"error":null},"comparison":{"loading":false,"error":false,"templatesById":{"62":{"id":62,"title":"Rack server"}},"comparisonByTemplateId":{},"products":[],"selectedTemplateId":null},"presentation":{"type":null,"company":{},"products":[],"partners":[],"formData":{},"dataLoading":false,"dataError":false,"loading":false,"error":false},"catalogsGlobal":{"subMenuItemTitle":""}}