Communications Technology
1. Temperature Accuracy Requirements
General requirements: The communication technology industry usually requires that the temperature in the machine room be kept within a certain range and have high stability.
For example, some high-end communication equipment may require the room temperature to be kept within the range of 22℃±2℃ to ensure the best performance of the equipment.
Specific application scenarios: In the optical communication industry, lasers are very sensitive to temperature, and temperature increases or decreases can cause wavelength drift (temperature drift). Therefore, the operating temperature of the laser needs to be strictly controlled, and the temperature control accuracy is generally required to be within ±0.8℃, or even higher.
2. Humidity Accuracy Requirements
General requirements: The relative humidity in the equipment room usually needs to be maintained in the range of 40%~60%RH to ensure the normal operation of the equipment and extend the service life.
Too high or too low humidity may cause damage to communication equipment, so humidity needs to be accurately controlled.
Specific application scenarios: In some specific communication equipment, such as the environment using anti-static raised floors, humidity requirements may be more stringent and need to be controlled in the range of 45%RH~55%RH.
3. Cleanliness Precision Requirements
General requirements: The communication technology industry requires a certain degree of cleanliness in the machine room to prevent dust, particles, etc. from polluting or interfering with the communication equipment.
Cleanliness requirements are usually determined according to the level of the machine room and the type of equipment, such as ISO 7 or higher cleanliness levels.
Specific application scenarios: In the production or testing environment of some high-end communication equipment, the cleanliness requirements may be more stringent, and a higher cleanliness level, such as ISO 5 or ISO 4, is required.
At the same time, for communication equipment using precision optical components, such as lasers in optical communication systems, the requirements for dust particles in the air are more stringent, because these particles may affect the performance and stability of the laser.
Comprehensive control measures
In order to meet these precision requirements, the communication technology industry usually adopts the following comprehensive control measures:
Precision air conditioning and constant temperature and humidity systems: used to accurately control the temperature and humidity in the machine room to ensure that they fluctuate within the specified range.
Air purification equipment: such as high-efficiency air filters (HEPA) and ultra-high-efficiency air filters (ULPA), used to filter dust particles in the air and improve the cleanliness of the machine room.
Regular cleaning and maintenance: Regularly clean and maintain the computer room, including cleaning the floor, walls, ceiling and equipment surfaces, to ensure the cleanliness and hygiene of the computer room environment. Monitoring and alarm system: Install temperature and humidity monitoring equipment to monitor the environmental parameters in the computer room in real time and send out alarm signals when they exceed the set range so that timely measures
4. Requirements for microseismic resistance
The demand for anti-microseismic equipment in the communications technology industry is becoming increasingly prominent, mainly due to the stringent requirements of communications technology equipment on the operating environment. In the field of communications technology, base stations, data centers, optical communication equipment, and precision test and measurement equipment all need to operate in an extremely stable environment to ensure the high quality of communication signals and the continuity of data transmission.
Micro-vibrations, even tiny, imperceptible vibrations, can have a negative impact on the performance of these devices. For example, vibrations can cause a slight deviation in a base station antenna, affecting the signal transmission quality and coverage; in a data center, vibrations can affect the stability of a hard disk read/write head, leading to data read/write errors or data loss; precision optical components in optical communication equipment are particularly sensitive to vibrations, which can cause optical path deviations and reduce communication efficiency.
Therefore, the communication technology industry urgently needs to adopt anti-microseismic environmental control equipment to ensure the stable operation of communication equipment. These devices can effectively isolate and reduce the impact of external vibration on communication equipment, providing a stable, vibration-free operating environment. By adopting anti-microvibration environmental control equipment, the communications technology industry can significantly improve the operating efficiency and reliability of equipment, and reduce failure rates and maintenance costs.
In the communications technology industry, anti-micro-vibration environmental control equipment has a wide range of applications, including base station construction, data center operation and maintenance, optical communication equipment deployment, and calibration of test and measurement equipment. These devices not only ensure the stability of communication signals and the continuity of data transmission, but also improve the service life and performance of communication equipment.
*The above content is for reference only. For specific equipment selection, please contact us to customize the solution according to your site conditions.
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