Description
Detailed Parameter Table
Parameter Name | Parameter Value |
Product model | Advance Optima AO2040 URAS14/26 |
Manufacturer | ABB |
Product category | Industrial Process Gas Analyzer System with NDIR Photometer |
Measurement Technology | Non-Dispersive Infrared (NDIR) |
Measurement Principle | Infrared-active gases, such as CO and |
Typical Applications | CEMS, combustion control, purity monitoring |
System Configuration | 19″ chassis with integrated URAS14/26 modules |
Communication Interface | Ethernet TCP/IP, PROFIBUS, Modbus, OPC |
Hazardous Area Approval | ATEX and GOST-R, 2G, 3G, CSA Class I, Division 2 |
Enclosure Protection | Varies based on model and hazardous area classification |
System Dimensions | 483 mm (W) x 177 mm (H) x 412 (597) mm (D) |
Maximum Modules | Up to 4 analyzer modules |
Product Introduction
The ABB Advance Optima AO2040 URAS14/26 is a state-of-the-art industrial process gas analyzer system built on a foundation of precision and reliability. As a core component of the acclaimed ABB Advance Optima family, this system leverages both the proven URAS14 and the highly advanced URAS26 photometer modules. This integrated solution is meticulously engineered for continuous, simultaneous, and selective measurement of gases that absorb infrared radiation. The integration of these modules within the robust 19-inch chassis of the ABB Advance Optima AO2040 ensures a compact, yet powerful, analytical solution. The modular design of the AO2040 platform ensures that this system can be easily expanded or upgraded with other analyzer types, such as oxygen or thermal conductivity analyzers, to meet future needs.
Core Advantages and Technical Highlights
The ABB Advance Optima AO2040 URAS14/26 stands out in the industrial gas analysis market due to its technical excellence and functional superiority. A primary advantage of having both modules is redundancy and the ability to measure a wider range of gases or concentrations. The NDIR measurement principle is robust and provides exceptional long-term stability while minimizing the influence of background gases, ensuring reliable measurements with very low drift. This leads to a significant reduction in the frequency of calibration and maintenance, lowering the total cost of ownership. The system’s self-diagnostic function provides real-time status updates and proactively alerts operators to potential issues, allowing for predictive maintenance rather than reactive repairs. The robust communication interfaces, including PROFIBUS and Modbus, allow the ABB Advance Optima AO2040 URAS14/26 to seamlessly integrate into any modern DCS or PLC system, providing plant-wide access to critical analytical data for enhanced process control and decision-making.
Typical Application Scenarios
The ABB Advance Optima AO2040 URAS14/26 is a cornerstone of process and environmental monitoring in numerous industries. In the power generation and cement industries, it is a critical component of Continuous Emissions Monitoring Systems (CEMS), measuring flue gases to ensure compliance with environmental regulations for pollutants like
and . In the chemical and petrochemical industries, the ABB Advance Optima AO2040 URAS14/26 is deployed to monitor gas purity and manage process safety. It can be used to analyze the concentration of or in synthesis gas or other reactor inputs to ensure the correct stoichiometry for efficient chemical reactions. The system’s reliable performance and ability to operate in challenging conditions make it suitable for installation in remote or hazardous areas.Siemens Ultramat 6F Gas Analyzer 7MB2111-1AD00-0AA1 REM
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