Yokogawa AAI135-H00 S1, Japan Origin
The Yokogawa AAI135-H00 S1 is a precision control module designed for high-accuracy applications in industrial automation, ensuring reliable and efficient operation across various manufacturing processes.
Email:18005021035@163.com
Phone:+86 18005021035
Name:BeiLin
Content details
Power Supply Voltage:24V DC
Operating Temperature Range:-20°C to +70°C
Input Current Range:0mA to 20mA
Output Type:Relay, Analog
Data Transmission Protocol:MODBUS RTU, CANopen
Memory Capacity:1000 Data Points
Communication Interface:RS-485, USB
Dimensions (WxHxD):100mm x 90mm x 40mm
The Yokogawa AAI135-H00 S1 is engineered with state-of-the-art technology, offering unparalleled accuracy and responsiveness in industrial automation tasks. It is meticulously crafted to withstand harsh environmental conditions, making it a robust choice for demanding industrial settings.
Equipped with a wide operating temperature range from -20°C to +70°C, this module ensures reliable performance across various climatic conditions, enhancing its versatility and application scope. Its ability to handle input currents from 0mA to 20mA makes it suitable for a broad spectrum of process control scenarios.
Featuring MODBUS RTU and CANopen communication protocols, the AAI135-H00 S1 seamlessly integrates with existing systems, facilitating easy setup and connectivity. The onboard memory capacity of 1000 data points allows for extensive logging and analysis, crucial for predictive maintenance and operational optimization.
With support for RS-485 and USB interfaces, users can easily configure and manage the module, enhancing usability and flexibility. The compact design, measuring 100mm x 90mm x 40mm, ensures efficient space utilization in any industrial setup.
Backed by Yokogawa’s reputation for quality and reliability, the AAI135-H00 S1 is an investment in superior industrial control solutions. It promises to deliver consistent performance and support critical operations in manufacturing, chemical processing, and more, driving productivity and efficiency.