Mobile Phone Controlled Electric Actuated Butterfly Valve
I. Product Overview
1.1 Wind-Solar Powered Electric Butterfly Valve
The Mobile Phone Controlled Electric Actuated Butterfly Valve combines an electric actuated butterfly valve with renewable energy supply, intelligent control and remote communication capabilities.
The product can be integrated into the Wind-Solar Hybrid Intelligent System shown in the supplied product documentation, using renewable energy sources according to local operating conditions.
Through the intelligent control and communication system, field equipment can be connected to a remote monitoring platform for valve control, operating data transmission and equipment monitoring.
1.2 Key Capabilities
- Electric actuated butterfly valve
- Wind and solar energy integration
- Mobile remote control
- Wireless communication
- Intelligent actuator control
- Remote data transmission
- IoT monitoring
- Cloud platform connectivity
- ESD emergency shutdown support
- Field instrument integration
II. Wind-Solar Hybrid Power Supply
2.1 Multiple Renewable Energy Sources
The Wind-Solar Hybrid Intelligent System supports flexible power supply according to local conditions.
Renewable energy sources shown in the supplied documentation include:
- Wind power
- Solar power
- Hydropower
- Other renewable energy sources
The electric butterfly valve can be incorporated into this renewable energy system for field operation.
2.2 Wind and Solar Integration
The product configuration shown in the supplied image combines a wind power unit and solar panels with the electric actuated butterfly valve.
This provides an integrated configuration combining renewable energy generation with electric valve operation and intelligent control.
2.3 Intelligent Energy Management
The Wind-Solar Hybrid Intelligent System includes an energy management system for on-site power generation and battery storage management.
The system supports real-time monitoring of:
- Charging status
- Low voltage
- Overcurrent
- Fault data
III. Intelligent Valve Control
3.1 Intelligent Actuator Control
The intelligent actuator control system is designed to execute different valve control commands.
Functions shown in the supplied documentation include:
- Fault alarm
- Percentage control
- ESD emergency shutdown
- Remote data upload
3.2 Remote Valve Operation
The system supports remote control according to different working conditions.
This allows the electric actuated butterfly valve to be incorporated into a remote control system rather than relying only on local field operation.
3.3 ESD Emergency Shutdown
ESD emergency shutdown functionality is supported as part of the intelligent control system.
The IoT network configuration documentation also shows support for remote emergency shutdown through the control system.
IV. Wireless Communication
4.1 Multiple Communication Methods
The remote control system supports multiple wireless communication methods, including:
- GPRS
- 4G
- 5G
- WiFi
- LoRa
The supplied IoT documentation also shows NB-IoT as a supported network communication option.
4.2 Remote Communication
The wireless communication system connects field equipment with remote monitoring and control systems.
Different communication methods can be selected according to field operating conditions and network requirements.
4.3 Mobile and Web Monitoring
The supplied IoT monitoring architecture shows both mobile and web access to the remote monitoring system.
Field equipment can communicate with the cloud platform through the wireless network, providing remote access to connected equipment information.
V. Industrial IoT Connectivity
5.1 Connect the Valve to an IoT Network
The electric actuated butterfly valve can be connected as field equipment within the industrial IoT monitoring and control system.
The supplied system architecture shows electric valves connected through wireless communication equipment to the cloud platform and remote monitoring devices.
5.2 DTU and RTU Connectivity
The IoT system supports DTU and RTU configurations for wireless communication, data transmission, data acquisition and control.
The supplied architecture includes:
4G DTU — Wireless data transmission
4G RTU — Wireless communication, data acquisition, control and switching
LoRa DTU — Wireless data transmission
4G to LoRa — Supports 4G/5G network access
5.3 Third-Party Integration
The system supports integration with third-party data platforms and control systems.
This allows the valve control system to be incorporated into a broader field monitoring or automation system according to project requirements.
VI. Real-Time Monitoring
6.1 Field Parameter Monitoring
The intelligent system supports connection with multiple instruments for real-time monitoring.
Parameters shown in the supplied documentation include:
- Valve position
- Flow
- Temperature
- Pressure
- Water level
- Battery status
6.2 Equipment Operating Data
The system also supports monitoring and management of:
- Operating records
- Fault logs
- Charging status
- Equipment status
6.3 Linkage Intelligent Control
The supplied Wind-Solar Hybrid Intelligent System supports multi-meter interconnection and automatic control.
Connected instruments can monitor field parameters in real time and form part of the intelligent equipment control system.
VII. Cloud Platform & Data Management
7.1 Industrial IoT Cloud Platform
Field equipment can communicate with the industrial IoT network through supported wireless communication methods.
Collected information can be transmitted to the cloud platform for centralized monitoring and management.
7.2 Data Storage
The cloud platform supports storage of field operating information.
The supplied documentation describes cloud platform big-data storage for connected equipment and monitoring information.
7.3 Historical Data & Reports
The software system supports:
- Data storage
- Historical data queries
- Report generation
7.4 Data Visualization
The IoT system supports cloud platform management and data visualization.
The supplied project materials also show an actual IoT monitoring and control software platform used for centralized equipment monitoring.
VIII. Communication & System Integration
8.1 Communication Options
Communication methods shown in the supplied materials include:
WiFi / LoRa / NB-IoT / GPRS / 4G / 5G
8.2 Communication Protocols
The IoT network configuration documentation lists support for:
- Modbus
- DQ
- 485
8.3 Instrument Integration
The system supports data collection and control for different types of instruments and valves.
This enables field instruments and electric valves to be incorporated into the same monitoring and control network.
8.4 Video Integration
The supplied software configuration also lists support for video integration input and video monitoring input.
IX. System Architecture
9.1 From Field Valve to Remote Monitoring
The overall monitoring and control architecture can connect the electric butterfly valve with field communication equipment, wireless networks, cloud services and remote user interfaces.
A typical configuration based on the supplied system documentation is:
Electric Actuated Butterfly Valve → DTU / RTU → Wireless Network → Cloud Platform → Web / Mobile Monitoring
9.2 Integrated Monitoring and Control
The system brings together:
Renewable Energy + Electric Valve + Intelligent Control + Wireless Communication + IoT Monitoring + Cloud Platform
Different elements can be configured according to field and project requirements.
X. Applications
10.1 Water Treatment
Water treatment is shown as one of the industrial IoT field applications in the supplied product documentation.
Electric valves and related instruments can be connected to the monitoring and control network.
10.2 Irrigation Systems
Irrigation systems are also shown as an application for the industrial IoT monitoring system.
The supplied case-study materials include field installations using solar-powered electric valve equipment for agricultural and irrigation applications.
10.3 Aquaculture Farms
The supplied case studies show solar-powered wireless control equipment installed at aquaculture farms.
10.4 Remote Field Applications
The combination of renewable energy, wireless communication and remote monitoring allows the valve to be incorporated into remote field control systems according to project requirements.
XI. Case Studies
11.1 Tianjin Salt Lake Project
The supplied case-study materials include on-site photos from the Tianjin Salt Lake Project showing renewable-energy-powered field equipment.
11.2 IoT Monitoring & Control Platform
The Tianjin Salt Lake project materials also show an IoT Monitoring and Control Software Platform used for equipment monitoring and data management.
11.3 Agricultural & Irrigation Applications
The supplied field photos show solar-powered electric valve equipment used in agricultural and irrigation applications.
11.4 Aquaculture Applications
A supplied case study shows a solar-powered wireless control system installed at an aquaculture farm.
XII. System Configuration
12.1 Flexible Project Configuration
The Mobile Phone Controlled Electric Actuated Butterfly Valve can be incorporated into different intelligent control configurations according to project requirements.
The overall system can include:
- Renewable energy supply
- Electric actuator control
- Wireless communication
- DTU / RTU
- Field instruments
- Cloud platform
- Mobile monitoring
- Web monitoring
- ESD emergency shutdown
- Third-party system integration
12.2 Project-Specific Communication
Communication and monitoring configurations can be selected according to the available field network, required control functions and connected instruments.















