Type:Multiplexer Input Module
Model:AMM22 S3
Producer:Yokogawa
Connector Type:Relay
Number of Channels:16
Input Signal Types:Voltage, Current, Resistance
Power Consumption:12VDC, 20mA max.
Operating Temperature Range:-20°C to +55°C
Storage Temperature Range:-40°C to +70°C
Dimensions (LxWxH):90mm x 45mm x 20mm
Weight:0.1kg
Communication Protocol:MODBUS RTU
Installation Method:Panel-Mounted
Introducing the Yokogawa AMM22 S3 Multiplexer Input Module, a critical component designed to enhance the performance of industrial control systems with its unparalleled precision and reliability. This module is meticulously crafted to seamlessly integrate into existing systems, offering an advanced solution for enhanced operational efficiency.
With a robust design capable of handling up to 16 channels, the AMM22 S3 ensures high throughput and accuracy, making it indispensable for applications requiring precise data acquisition and processing. Its versatile relay input capability allows for compatibility with a wide range of sensors and actuators, ensuring seamless operation across diverse industrial environments.
Engineered for reliability, this module operates within an expansive temperature range from -20°C to +60°C, ensuring consistent performance under varying environmental conditions. Equipped with a 12 VDC power supply compatibility, it supports efficient power management, crucial for maintaining system stability and reducing energy consumption.
The inclusion of the Yokogawa Control Bus Coupler facilitates seamless communication within the industrial network, allowing for streamlined data exchange and enhanced system integration. This feature is pivotal in optimizing workflow, minimizing downtime, and maximizing productivity.
Manufactured with the highest standards in mind, the AMM22 S3 Multiplexer Input Module adheres to international safety certifications, including UL/CUL, CE, and TUV, ensuring compliance with stringent industry regulations. This commitment to safety and quality further bolsters its reliability and trustworthiness in critical industrial applications.
