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ABB 3BSE018290R1 DSAI133A analog input module

ABB 3BSE018290R1 DSAI133A analog input module

ABB 3BSE018290R1 DSAI133A analog input module

  • Item NO.:

    3BSE018290R1 DSAI133
  • Payment:

    T/T
  • Price:

    $1000
  • Product Origin:

    Sweden
  • Color:

    NEW
  • Lead Time:

    In stock

We will arrange delivery within 3-5 days after receiving the payment.

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ABB 3BSE018290R1 DSAI133A Analog Input Module

Product Overview

The ABB 3BSE018290R1 DSAI133A Analog Input Module is a high-performance input module designed for use in ABB automation control systems. It is specifically built to receive analog signals and convert them into digital signals for further processing by the system. With high precision and reliability, this module is widely used in industrial automation applications requiring accurate measurement and real-time monitoring. It supports a variety of input types, including voltage, current, and temperature sensors, making it versatile for various sensor and instrument input needs.

Technical Specifications

  • Model: 3BSE018290R1 DSAI133A

  • Type: Analog Input Module

  • Signal Types: Voltage input, current input, temperature input (via RTD, thermocouple)

  • Number of Input Channels: 8 channels

  • Input Ranges:

    • Current Input: 4-20mA

    • Voltage Input: 0-10V

    • Temperature Input: Supports RTD (Pt100, Pt1000), Thermocouple (J, K, T, S, etc.)

  • Resolution: 16-bit

  • Input Accuracy: ±0.1% (maximum)

  • Communication Interface: Standard communication interface for ABB 800xA automation systems

  • Power Supply: 24V DC (typical)

  • Operating Temperature Range: -5°C to 60°C

  • Storage: Non-Volatile Memory (NVRAM)

  • Dimensions: 160mm x 150mm x 55mm

  • Weight: 0.5 kg

Advantages & Features

  1. High-Precision Input: This module provides 16-bit resolution, allowing for accurate measurement of small analog signal variations, ensuring fast and accurate system responses.

  2. Wide Input Compatibility: Supports multiple input signal types including current, voltage, and temperature, making it compatible with a wide range of sensors and instruments to meet diverse application needs.

  3. High Reliability: Designed for industrial environments, the module features high electromagnetic interference resistance, ensuring stable operation in complex production environments.

  4. Modular Design: Seamlessly integrates with the ABB 800xA system, supporting hot-swapping for quick replacement and maintenance.

  5. Easy Configuration: The module supports automatic configuration, enabling users to easily set up input channels through system software, simplifying operation.

  6. Non-Volatile Storage: Equipped with non-volatile memory, important configurations and data are retained even during power outages, ensuring no data loss.

Application Fields

  • Automation Control Systems: The module is widely used in various automation control systems, especially in industries such as manufacturing, chemicals, energy, and mining.

  • Industrial Monitoring Systems: In real-time data acquisition and monitoring systems, precise measurement of analog signals is crucial, and this module effectively supports the input requirements of various sensors.

  • Process Control Systems: In complex process control systems, accurate analog input is critical to ensuring system stability and safety.

  • Energy & Power Industry: Used extensively in power plants, substations, and other energy sectors for measuring and monitoring signals such as temperature, voltage, and current.

Precautions

 

  1. Installation Environment: Ensure the module operates within the recommended temperature range of -5°C to 60°C. Avoid exposing it to extreme heat or cold, which may affect its performance.

  2. Power Supply Stability: Use a stable 24V DC power supply to prevent module failure or inaccurate data due to power fluctuations.

  3. Correct Wiring: Ensure wiring is done according to the module’s wiring diagram to avoid damage or measurement errors.

  4. Regular Inspection & Calibration: Periodically calibrate the system and check input channels to maintain measurement accuracy.

  5. Avoid Over-voltage Inputs: Ensure that the input signals do not exceed the module’s specified ranges to prevent damage.

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