Description
Functional Features Precise Data Acquisition: With a 16-bit resolution, it can accurately collect analog signals, precisely measure the small changes in input signals, ensure the accuracy of data acquisition, and provide a reliable basis for subsequent control and analysis. Multi-channel Input: It has 8 analog input channels, which can be connected to multiple sensors or signal sources simultaneously, enabling synchronous monitoring of multiple physical quantities and being suitable for industrial scenarios that require the simultaneous collection of multiple analog signals. Wide Input Range: It supports a voltage input range from -10V to +10V and a current input range from 4 - 20mA, and can be compatible with the output signals of various types of sensors, having strong versatility and flexibility. High-speed Sampling Capability: With a sampling rate of up to 1MHz, it can quickly capture rapidly changing signals and is suitable for occasions with high requirements for dynamic signal acquisition, such as motor speed control systems and vibration monitoring. Communication Function: It supports communication protocols such as Modbus RTU and Profibus DP, and can conveniently communicate with other devices such as PLCs and host computers, realizing data transmission and sharing, and facilitating system integration and remote monitoring.
Technical Parameters
Power Supply: 24V DC.
Measurement Accuracy: ±0.1% of reading.
Operating Temperature Range: From -40°C to +85°C, and the storage temperature range is from -55°C to +105°C, which can adapt to harsh industrial environments.
Certifications: International safety certifications such as CE, UL, and CSA ensure safe and reliable operation in various industrial environments.
Application Areas Power Industry: It is used for the monitoring of generator sets, such as collecting analog signals of the voltage, current, temperature, etc. of the generator, so as to conduct real-time monitoring and analysis of the operating status of the generator set and ensure the stable power supply of the power system. Oil and Gas: In the processes of oil extraction, transportation, and processing, it can collect analog signals such as pressure, flow rate, and temperature, achieve precise control and monitoring of the production process, and improve production efficiency and safety. Industrial Automation Production Lines: In the automation production lines of industries such as automotive manufacturing and electronic manufacturing, it can collect analog signals such as the position, speed, and force of robots, as well as the operating parameters of production equipment, to achieve automated control and quality monitoring of the production process. Chemical Industry: It is used to collect analog signals such as temperature, pressure, flow rate, and concentration in the chemical production process, achieve precise control and optimization of the chemical production process, and ensure the safety and stability of the production process.
Common Faults and Solutions Communication Faults: They may be caused by damaged communication cables, loose communication interfaces, incorrect communication parameter settings, or communication module failures, etc. Solutions include checking whether the communication cables are properly connected and if there is any damage, and replacing the cables if there are problems; checking whether the communication interfaces are loose and re-plugging them; confirming whether the communication parameter settings, such as baud rate, data bits, stop bits, etc., are correct, and re-setting the correct parameters; if the communication module is suspected to be faulty, using professional detection equipment for detection and replacing the module if there are problems. Abnormal Data Acquisition: It may be caused by sensor failures, input signals exceeding the range, damaged module channels, etc. Solutions include checking whether the sensors are working properly and replacing the faulty sensors; checking whether the input signals are within the allowable range of the module, and adjusting the signal source if it exceeds the range; if the module channels are suspected to be damaged, trying to connect the signals to other channels for testing, and replacing the module if the channels are confirmed to be damaged. Power Supply Faults: They may be caused by damaged power supply modules, abnormal power input (such as unstable voltage, reverse polarity, etc.). Solutions include checking whether the power supply modules have phenomena such as overheating and damage, and replacing the faulty power supply modules; checking whether the power input voltage is within the allowable range of the equipment and whether the power polarity is correct, and ensuring normal power input.
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