ABB UAD142A01 3BHE012551R0001

¥999.00

ABB UAD142A01 3BHE012551R0001 is a high-performance analog input/output module, specifically engineered for ABB industrial control systems, medium-voltage drive equipment, and process automation projects in power generation, oil and gas, and metallurgy industries. It serves as a critical interface between analog field devices (sensors, transmitters, actuators) and the upper-level control system, enabling precise signal conversion and stable data transmission.

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Description

ABB UAD142A01 3BHE012551R0001 is a high-performance analog input/output module, specifically engineered for ABB industrial control systems, medium-voltage drive equipment, and process automation projects in power generation, oil and gas, and metallurgy industries. It serves as a critical interface between analog field devices (sensors, transmitters, actuators) and the upper-level control system, enabling precise signal conversion and stable data transmission.

Technical Parameters ABB UAD142A01 3BHE012551R0001

Parameter Item Parameter Value
Device Type Analog Input/Output (AI/AO) Module
Analog Input Channels 4 channels (4-20mA, 0-10V DC configurable)
Analog Output Channels 2 channels (4-20mA, 0-10V DC configurable)
Input Measurement Accuracy ±0.1% FS
Output Control Accuracy ±0.2% FS
Power Supply Voltage 24V DC ±10%
Power Consumption ≤12W
Operating Temperature -40℃~+70℃
Protection Level IP20 (cabinet installation)
Mounting Method DIN rail mounting
Compatible Systems ABB Symphony Plus DCS, ABB AC800M PLC, third-party process control platforms

Product Advantages and Features ABB UAD142A01 3BHE012551R0001

  1. High-precision signal conversion, reliable process control

    ABB UAD142A01 3BHE012551R0001 boasts an analog input accuracy of ±0.1% FS and output accuracy of ±0.2% FS, which is significantly higher than the industry average level of ±0.5% FS. This high precision ensures accurate collection of process parameters such as temperature, pressure, and flow rate, and precise control of actuator movements, laying a solid foundation for stable and efficient operation of industrial processes.

  2. Flexible channel configuration, multi-scenario adaptation

    Each AI/AO channel of ABB UAD142A01 3BHE012551R0001 can be independently configured for 4-20mA current signals or 0-10V voltage signals, without the need for additional signal conversion devices. This flexibility allows the module to be seamlessly integrated into various industrial scenarios, from pressure monitoring in oil pipelines to speed control of metallurgical rolling mill motors.

  3. Strong anti-interference capability, stable operation in harsh environments

    ABB UAD142A01 3BHE012551R0001 adopts a galvanic isolation design between channels and a metal shielding structure, which can effectively resist electromagnetic interference from high-voltage equipment, frequency converters, and other industrial devices. Its wide operating temperature range of -40℃~+70℃ enables stable operation in extreme environments such as desert oil fields and high-altitude hydropower stations, with a mean time between failures (MTBF) of over 100,000 hours.

  4. Plug-and-play design, easy integration and maintenance

    The module features a plug-in terminal structure and supports hot swapping, allowing maintenance personnel to replace the module without shutting down the entire control system. This design significantly reduces system downtime during maintenance, and the intuitive configuration interface enables quick parameter setting, shortening the commissioning period of new projects by 30%.

Application Cases ABB UAD142A01 3BHE012551R0001

  1. Thermal power plant boiler combustion control

    In a 600MW thermal power plant project, ABB UAD142A01 3BHE012551R0001 is integrated into the Symphony Plus DCS system to collect boiler flue gas temperature, steam pressure, and coal feed rate signals through its AI channels. The AO channels output control signals to adjust the opening of air intake valves and coal feeders, optimizing the boiler combustion efficiency by 8% and reducing coal consumption by 5% per unit of power generation.

  2. Oil and gas pipeline pressure monitoring and regulation

    In a long-distance oil and gas pipeline project, the module is used to monitor the pressure of pipeline sections through 4-20mA pressure transmitters, and output control signals to adjust the opening of pressure relief valves when the pressure exceeds the threshold. Its high anti-interference capability ensures stable signal transmission even in the electromagnetic environment of pipeline pumping stations, preventing pipeline overpressure accidents and ensuring safe transportation of oil and gas.

  3. Metallurgical rolling mill thickness control

    In a steel rolling mill project, ABB UAD142A01 3BHE012551R0001 collects the thickness signal of steel plates through laser thickness gauges, and outputs control signals to adjust the pressure of rolling mill rollers in real time. The high precision of the module ensures that the thickness deviation of steel plates is controlled within ±0.02mm, meeting the strict quality requirements of high-end steel products.

Competitor Comparison

Feature ABB UAD142A01 3BHE012551R0001 Siemens 6ES7 334-0CE01-0AA0 Schneider BMXAMO0410
Input/Output Accuracy ±0.1% FS / ±0.2% FS ±0.3% FS / ±0.5% FS ±0.2% FS / ±0.3% FS
Channel Configuration Independent AI/AO signal configuration Fixed signal type per channel Limited configuration flexibility
Operating Temperature -40℃~+70℃ -25℃~+60℃ -20℃~+60℃
Hot Swap Support Supported Not supported Supported
Compatible Systems ABB DCS/PLC, third-party platforms Siemens S7-300 series Schneider Modicon M340

Selection Suggestions

  1. For process automation projects equipped with ABB Symphony Plus DCS or AC800M PLC, ABB UAD142A01 3BHE012551R0001 is the preferred analog I/O module due to its native compatibility and high precision.
  2. If the project requires high-precision analog signal collection and control in harsh industrial environments, this module is a better choice than competitors with lower accuracy and narrower temperature ranges.
  3. For industrial systems that require frequent maintenance and zero downtime, the module’s hot swap function provides a significant advantage over non-hot-swappable alternatives.

Precautions

  1. During installation, ensure that the analog signal lines are separated from power lines to avoid electromagnetic interference, which may affect the accuracy of signal measurement and control.
  2. When configuring channel parameters, select the correct signal type (4-20mA or 0-10V) according to the specifications of field devices to ensure normal signal transmission.
  3. Regularly check the module’s operating temperature and ventilation status, and clean the dust on the module surface to maintain good heat dissipation.
  4. During hot swapping, follow the manufacturer’s operating procedures strictly to avoid damaging the module or the control system due to incorrect operation.

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