WideIOT · WG series industrial intelligent gateway is a high reliability industrial intelligent gateway that supports the collection of data of various industrial equipment such as PLC, instrument, water environmental protection, power equipment, CNC, and has protocol analysis and edge computing. It is the core edge node for building industrial Internet system.
WideIOT WD Series IOT Terminals are industrial wireless terminals that support IO acquisition control and serial port transparent transmission. They support data acquisition and control of multiple channels of DI, DO, AI, AO in industrial sites, and offer LoRa local networking and 4G data upload to the cloud. Thus, they realize wireless data acquisition and remote control of numerous on-site devices such as sensors, instruments, indicator lights, actuators, and main controllers.
WideIOT·WR series industrial wireless router is a network connection that supports 5G/4G/WIFI/Ethernet, etc., supports VPN networking, and provides low-latency, high-reliability, and high-security network access for field devices. input, so as to realize large-scale equipment networking applications.
The WideIOT WS-Series Industrial Switches deliver high stability,re- liability and security with easy maintenance. Featuring dual power and network redundancy, they are ideal for smart grids, rail transit,smart cities, safe city projects, new energy and intelligent manufacturing.
The WideIOT NAT Coupler is a specialized security isolation device for production networks. It supports IP renaming for unified IP planning, enables cross-segment device access via network segmentation, and effectively mitigates same-segment conflicts and broadcast storms. It is ideal for industrial networks demanding high data reliability, including those with PLCs, HMIs, CNCs, DCSs, and MES.
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Leading provider of industrial IoT solutions for digital and intelligent transformation. Established in 2011, we have served over 20,000 customers in more than 100 countries.
Current Situation: As the digital economy enters a phase of rapid development, advancements in artificial intelligence, large-scale model training, and supercomputing applications are driving data centers to evolve towards ultra-large scale, green, low-carbon, and high-speed interconnection.The demand for computing power is growing exponentially.Factors such as increased power density per cabinet and higher power consumption of GPU chips are posing challenges to traditional air cooling technologies, which are struggling to meet the immense cooling demands.
Consequently, there is a growing adoption of liquid cooling equipment, which offers superior cooling capabilities and lower power consumption control, becoming a crucial foundation for the green transformation of data centers.In response, WideIOT provides a visual monitoring and management system solution for the Coolant Distribution Unit (CDU) of liquid cooling equipment, covering the entire process from data collection to centralized management and platform display, offering digital support for the safe and energy-efficient operation of data centers.
Deployment of Industrial Smart Gateways: These gateways are connected to the CDU and energy meters to enable real-time collection of equipment status and process parameters, facilitating internet connectivity via 5G/4G/WiFi/Ethernet.
Visual Management Platform: This platform receives and parses data, enabling monitoring, alarming, management, and control functions for parameters such as pipeline pressure, flow rate, temperature, liquid level, and conductivity.
Dynamic Visualization: Through dynamic charts and digital dashboards, the operational status of liquid cooling equipment and changes in various parameters are visually displayed, such as temperature curves, pressure bar charts, and flow rate line graphs, facilitating quick information access for management personnel.
Fault Alarm Mechanism: When equipment operating parameters exceed normal ranges or exhibit abnormal trends, the system immediately triggers a fault alarm mechanism, notifying relevant personnel via SMS, WeChat, email, etc., to ensure timely fault handling.
Energy Efficiency Analysis: By analyzing collected energy consumption data, the system uates the energy efficiency ratio of the liquid cooling system, providing a basis for optimizing coolant circulation strategies.It also enables reasonable adjustments to local cooling demands to ensure reliable server operation.
API Data Interface: The system provides API data interfaces to support integration with existing monitoring systems and power environment monitoring systems in the equipment room, enabling data sharing and collaborative work.
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