ABB DSQC313 High Accuracy Measuring Boards
Electrical Parameters
Operating Voltage: Usually 24VDC, it can be adapted to common industrial DC power supplies to ensure stable operation.
Input and Output Current: The input current is approximately 10mA per channel, and the output current can reach 20mA per channel, which can meet the current drive requirements of various sensors and actuators.
Communication Specifications: It supports a variety of industrial communication protocols such as Profinet, EtherCAT, and DeviceNet, facilitating efficient data interaction with different types of automation equipment and control systems, and enabling system integration.
I/O Interfaces
Digital I/O: Equipped with 8 digital input channels and 8 discrete output channels, it can flexibly connect various digital sensors and actuators, such as proximity switches and relays.
Analog I/O: It has 2 analog input channels and 2 analog output channels, suitable for connecting analog sensors (such as pressure sensors and temperature sensors) and actuators (such as control valves) to achieve precise measurement and control of analog signals.
Solid State Relay Channels: There are 4 solid state relay channels, which can be used to control high-voltage and high-current loads, and have the advantages of no contacts, long service life, and fast switching speed.
Environmental Adaptability
Operating Temperature: The operating temperature range is -20°C to +60°C, and the storage temperature range is -40°C to +70°C. It can operate stably in various harsh industrial environments.
Protection Level: It has a certain protection design, which can resist the influence of common industrial environmental factors such as dust and moisture, and ensure the long-term reliable operation of the equipment.
Physical Specifications
Dimensions: Approximately 74mm×54mm×25.4mm (there may be slight differences in different versions), and the compact design makes it easy to install in control cabinets or equipment with limited space.
Weight: Approximately 0.1kg, and the light weight will not bring excessive burden to the installation and layout of the equipment.
High-precision Measurement: It adopts advanced signal processing technology and precise A/D and D/A conversion chips to accurately measure and convert various input signals. The measurement accuracy can reach ±0.1% FS (full scale) or even higher, providing accurate data for industrial production processes and helping to improve product quality and production efficiency.
Flexible I/O Configuration: With a rich variety of I/O interface types and quantities, it can be flexibly configured according to actual industrial application scenarios to meet the connection requirements of different devices and systems. Whether it is simple single-machine automation or complex production line automation, it can handle it easily.
Efficient Communication Capability: With the help of a variety of advanced communication protocols, the DSQC313 can achieve high-speed and stable data transmission with other automation devices. The data transmission rate is fast, and the delay is low, ensuring timely and accurate information interaction between various parts of the system, achieving collaborative work, and improving the response speed and operation efficiency of the entire automation system.
High Reliability and Stability: From the selection of hardware materials to the circuit design, it has undergone strict screening and optimization. High-quality electronic components are used, and it has excellent anti-interference ability. It can operate stably in harsh industrial environments such as strong electromagnetic interference and voltage fluctuations, reducing the probability of failures and lowering maintenance costs.
Easy Integration and Use: The module design follows standardization principles, and the installation method is simple. It can be fixed by DIN rail or screws. At the same time, detailed user manuals and rich programming examples are provided, and it supports a variety of common programming software and languages, which is convenient for engineers to carry out system integration and secondary development, shortening the project development cycle.
Selection of Installation Environment: It should be installed in a dry, well-ventilated environment without corrosive gases, and avoid high-temperature, humid, and dusty environments. The installation location should be kept away from strong electromagnetic interference sources such as large motors and transformers to prevent electromagnetic interference from affecting the measurement accuracy and data transmission stability.
Electrical Connection Specifications: Disconnect the power supply before wiring, and make correct wiring strictly according to the wiring diagram. Ensure that the wiring is firm to avoid problems such as looseness and short circuits. Pay attention to distinguishing different interface types and polarities to prevent damage to the equipment caused by incorrect wiring.
Parameter Setting and Calibration: Before use, various parameters of the measurement board, such as the measurement range and filtering parameters, should be correctly set according to the actual measurement requirements and equipment characteristics. Regularly calibrate the measurement board to ensure that the measurement accuracy remains within the specified range.
Software Programming and Maintenance: Follow relevant programming specifications for software development to avoid logical errors. Regularly update and maintain the equipment software to obtain the latest functions and performance optimizations, and at the same time, pay attention to the security patches released by ABB officially and repair potential vulnerabilities in a timely manner.
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