Representative of an excellent data center cabling company in the United States

Source: Internet
Author: User

As the largest cabling company in the world, the United States, the company is also one of the most advanced companies in terms of technology. First of all, let everyone know about the control and monitoring of data centers, next, we will give a comprehensive introduction to the management methods and wiring management processes of the United States.

Control and monitoring of data centers
Like other commercial buildings, data centers also have various independent systems. Including fire prevention, lighting, HVAC, building safety, video surveillance, access control, etc. The above systems only need to be monitored and controlled in various systems. An Integrated Wiring solution that supports the automatic Building Control System (BAS) should not only provide centralized control functions, but also be economical and cost-effective. The TIA-862 cabling standard sets out the requirements for building automation control systems (BAS) for the U. S. wiring.

How to manage the cabling system of the U.S. government
In high-density data centers, wiring cabinets, and telecommunications data centers, management is currently one of the hot topics that users are concerned about. Management issues can be divided into three levels:

The first layer is how to properly manage the line. To be nice, you can combine the horizontal and vertical operators. In addition, when bundling, the distance between bundling, cable grouping, and the use of bundling must follow the specifications.

The second level is the identifier. Uniform standards are required for the location and numbering principle. Management and marking of copper and optical fiber connection hardware and jumpers shall comply with TIA/EIA-606-B. The management, marking and recording requirements for cabling systems are also discussed in ISO/IEC 14763-1. Marking is the most important part of the system administrator's responsibility. Any management point, including jumpers, In the cabling infrastructure, must be correctly labeled. This helps clarify the cable combination and tell engineers where the other end of the cable is located.

TIA/EIA-606-B requires labels to be clearly visible and durable. Anyone who operates the distribution frame should understand it easily, and its design life should be at least less than that of the wiring hardware. Do not use handwritten labels. You must use a dedicated machine to print the labels. Most distribution racks have dedicated space between each wiring module for inserting labels. These labels all represent the source of the cable in color, and their alphanumeric code provides additional information about the corresponding connection.

The third layer is smart management. The emergence of smart distribution frames, electronic distribution frames, and other technologies bring about management innovations. Both line management and identification are on-site operations and cannot be managed remotely in real time. The smart infrastructure management solution is designed to help with wiring and jumper management. This solution helps organizations cope with the increasing pressure to complete MAC tasks faster with less resources.

The intelligent infrastructure solution of the United States SYSTIMAX iPatch integrates copper, optical cable wiring hardware and system control software to help monitor, record, and manage the entire communication infrastructure. This solution is continuously monitored, verifies each port connection, and records it in a central database, which can immediately issue a warning when any change occurs. The deployment of the IPatch system provides faster response time and higher network security. At the same time, through the integration of work instruction and service provision, workflow processing, automatic routing, and other auxiliary technologies, the cost is reduced. As a result, productivity is also improved, and resource utilization and cost control are also more efficient.

Wiring management process
Jumpers may be the weakest link in copper and optical fiber network infrastructure. Proper operating procedures must be followed in the management of copper and optical fiber jumpers to achieve optimal performance and reliability. Implementing the best practices at all levels can also minimize the costs associated with moving, adding, and changing. The best practices for jumper management can be divided into four parts: planning, preparation, wiring, and verification.

  1. Details about 6 types of integrated wiring systems
  2. Introduction to Integrated Wiring System Engineering
  3. Summary of Integrated Wiring construction experience
  4. Smart Community Integrated Wiring System Perfect solution
  5. Deploy the "green" Data Center cabling system to the end

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