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.
The park integrates three major functions: production, office, and daily life, featuring production workshops, chemical warehouses, auxiliary buildings, gas cylinder stations, R&D buildings, comprehensive buildings, and other supporting facilities.
It involves various types of energy consumption, including electricity, natural gas, compressed air, and thermal energy, leading to increasingly high energy costs and potential energy waste risks.
In response, WideIOT has developed a smart energy management system to effectively enhance energy management levels and utilization efficiency, supporting the park's green and low-carbon transformation.
Refrigeration and Air Conditioning Monitoring and Management The park's cooling system comprises a chilled water storage system, chillers, air conditioners, and other components, providing cooling for production, office, and daily life scenarios.
By deploying industrial smart gateways to connect to equipment controllers (PLCs), real-time data on the operational status, process parameters, and energy consumption of each refrigeration device can be collected and seamlessly integrated into the park's energy management system.
This enables functions such as energy monitoring, alarming, management, control, and statistical analysis.
Energy Meter Data Collection Multiple smart electricity meters, gas meters, heat meters, and flow meters within the park are connected to industrial smart gateways, enabling real-time collection of energy consumption data for electricity, steam, natural gas, and compressed air.
This data is then aggregated into the park's energy management system to form visualized data reports, facilitating the statistical analysis of energy usage, trends, and anomalies.
This, in turn, supports the formulation of scientific and rational decisions to improve energy utilization efficiency.
Photovoltaic Energy Storage Management System By integrating photovoltaic (PV) inverters and energy storage Battery Management Systems (BMS), real-time data on equipment operational status, charging and discharging parameters, electricity consumption, discharge volume, voltage, and current can be collected. This enables fine-grained management of the PV energy storage system, allowing for effective regulation of energy consumption strategies. It facilitates the rational utilization of peak-valley electricity prices for peak shaving and valley filling, flexible allocation of electricity usage, and reduction of peak daytime electricity loads in the park.
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