The Siemens 6ES5498-1AA31 Analog Input Sub-Module is designed for precise and reliable analog signal acquisition, crucial for industrial automation systems requiring high accuracy and robustness.
The Siemens 6ES5498-1AA31 Analog Input Sub-Module is designed for precise and reliable analog signal acquisition, crucial for industrial automation systems requiring high accuracy and robustness.
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Type:Analog Input
Model Number:6ES5498-1AA31
Supplier:Siemens
Range:+10V to +20V DC
Channels:16
Sampling Rate:100ms
Power Supply:24V DC
Operating Temperature:-20°C to +70°C
Enclosure Rating:IP20
Communication Interface:PROFIBUS DP
The Siemens 6ES5498-1AA31 Analog Input Sub-Module is engineered to seamlessly integrate into various industrial control systems, providing unparalleled accuracy and reliability in acquiring analog signals. Its compact design and robust construction make it ideal for harsh industrial environments.
Featuring a wide input range of +1V to +5V, this sub-module ensures compatibility with a broad spectrum of industrial sensors, enhancing system flexibility and adaptability. With an accuracy of ±0.01%, it delivers precise data collection essential for critical process monitoring and control.
Operated at a nominal voltage of 24V DC, the module efficiently consumes up to 5mA per channel, optimizing power usage while maintaining high performance standards. This makes it suitable for applications requiring minimal power consumption without compromising on signal integrity.
Equipped with 8 channels, the 6ES5498-1AA31 is capable of handling multiple inputs simultaneously, facilitating efficient data processing and analysis in complex industrial settings. It is designed to withstand extreme temperature conditions ranging from -25°C to +60°C during operation and from -40°C to +85°C when stored, ensuring durability and reliability in diverse environments.
With its compact size measuring 22.5mm x 106mm x 93.5mm and lightweight design weighing approximately 50g, the Analog Input Sub-Module offers easy integration into existing control systems without increasing overall system footprint. It is an indispensable component for achieving optimal performance and efficiency in modern industrial automation.
