Flexible programming and expansion
Programming language support: It supports a variety of programming languages in accordance with IEC 61131-3 standard, including Ladder Diagram (LD), Function Block Diagram (FBD), Instruction List (IL), Structured Text (ST) and Sequential Function Chart (SFC). Engineers can choose the appropriate programming language according to their own programming habits and project requirements, which is convenient for program development and debugging; at the same time, the rich function libraries and instruction sets can greatly improve programming efficiency and shorten the project development cycle.
Expandability: With good expandability, the number of I/O points can be increased by connecting expansion modules to meet the needs of industrial automation projects of different scales; communication interfaces and special function modules can also be flexibly expanded according to the actual application scenarios, such as adding analogue input/output modules to achieve precise control of continuous physical quantities such as temperature and pressure, or adding high-speed counting modules to meet the needs of high-speed motion control.
Comparison of Similar Models
Comparison with 3BHB003690
Functional Focus: 3BHB003690 is optimised for high-speed data acquisition, which is more suitable for scenarios requiring high data acquisition speed and accuracy, such as precision instrument inspection, high-speed production line monitoring, etc. 3BHB003689 is more balanced in terms of comprehensive performance, which is not only equipped with good data processing capability, but also has excellent performance in terms of communication flexibility, extensibility and universality, which is suitable for most of the industrial automation control scenarios. The 3BHB003689 is more balanced in terms of comprehensive performance, not only with good data processing capability, but also with excellent performance in communication flexibility, scalability and versatility, which is suitable for most industrial automation control scenarios.
Differences in performance parameters: 3BHB003690 has more high-speed data acquisition channels and higher sampling frequency; 3BHB003689 has advantages in memory capacity, types of communication protocols and I/O expansion capability, which enables it to store more complex programmes and connect to more different types of devices.
Comparison with other models in the same series
Different models of the same series are usually designed for specific application scenarios or industry requirements. Some models focus on digital control and are suitable for industrial scenarios where switching control is the main focus, such as relay control circuits, motor start/stop control, etc. The 3BHB003689 is more outstanding in its ability to integrate analogue and digital control, and can handle multiple types of signals at the same time to achieve precise control of continuously changing physical quantities (e.g., temperature, pressure, flow rate) and discrete state quantities in industrial processes, which is widely used in process control, robotics, and other industrial applications. It is widely used in process control, robot control, automated production lines and other fields that require high control precision and diversity.
Application Scenario Analysis
Automated production line
Automobile manufacturing: In the automobile assembly line, 3BHB003689 can be connected to various types of sensors (such as position sensors, torque sensors, vision sensors) and actuators (such as robot arms, tightening guns, conveyor belt motors). Through real-time acquisition of sensor data, the robot arm is precisely controlled to complete the accurate assembly of parts, the torque of the tightening gun is monitored to ensure the quality of bolt fastening, and the running speed of the conveyor motor is coordinated to achieve orderly delivery of materials, thus improving the automation of automotive production and product quality.
Food and beverage production: In the food and beverage filling production line, the module can control the filling volume of the filling machine and the capping strength of the capping machine, and through the cooperation with temperature sensors and liquid level sensors, it can real-time monitor the temperature, liquid level and other parameters in the production process to ensure that the quality of the product meets the standards; at the same time, it communicates with the MES system of the production line to achieve the uploading of the production data in real time and the delivery of the production plan, so as to improve the production and management efficiency. management efficiency.
Process control field
Chemical production: In the chemical reactor control system, 3BHB003689 connects temperature, pressure and flow sensors to collect process parameters in the reactor in real time. According to the preset process control requirements, through the control of regulating valves, pumps, stirrers and other equipment, accurately adjust the flow rate of reaction materials, reaction temperature and stirring speed, to ensure that the chemical reaction is carried out in safe and stable conditions, to improve the yield and quality of chemical products, while safeguarding the safety of the production process.
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