YOKOGAWA AMN52 S1 Analog Output Module for Industrial Control Systems
The Yokogawa AMN52 S1 Analog Output Module is an advanced industrial control solution designed for precise and reliable analog signal generation, ideal for integration into complex automation systems in manufacturing, chemical plants, and other industrial environments.
Detailed content
Model:AMN52 S1
Brand:Yokogawa
Type:Analog Output Module
Operating Range:0 to 10 V DC / 4 to 20 mA
Accuracy:+/- 0.01% FS
Supply Voltage:24 V DC
Temperature Range:-20°C to +85°C
Dimensions:65mm x 95mm x 32mm
Weight:0.2 kg
Engineered for the most demanding industrial settings, the Yokogawa AMN52 S1 Analog Output Module offers unparalleled reliability and accuracy in signal conversion. Its robust design withstands harsh environmental conditions, making it ideal for applications requiring precise control over actuators, valves, and other critical components.
Featuring a 12-bit resolution for exceptional output precision, this module ensures that every signal transmitted is both accurate and consistent. Whether you’re managing process flows, temperature adjustments, or position control, the AMN52 S1 guarantees optimal performance.
Built with advanced circuitry, the module supports both 4-20mA and 0-10V analog outputs, providing versatility in compatibility with a wide range of sensors and actuators. Its RS-485 Modbus RTU interface facilitates seamless integration into existing control systems, enhancing operational efficiency.
Safety and protection are paramount with the AMN52 S1. It incorporates overloading and short-circuit protection mechanisms to safeguard against potential damage caused by external disturbances, ensuring continuous operation without interruption.
Designed for long-term durability, this module operates efficiently within a broad temperature range (-20°C to +70°C) and maintains functionality in varying humidity levels (5% to 95% RH, non-condensing). This makes it suitable for a wide array of industrial sectors, including manufacturing, oil & gas, and power generation.