Description
Product Parameters:
- Model: AAI143-S50.1
- Brand: Yokogawa
- Type: Isolated Analog Input Module
- Input Signal: 4 to 20 mA DC
- Number of Input Channels: 16
- Input Resistance: Power ON (20 mA) 270 Ω to 350 Ω (4 mA); Power OFF 500 kΩ or larger
- Withstanding Voltage: Between input and system: 1500 V AC, for 1 minute
- Accuracy: ±16 µA
- Data Update Period: 10 ms
- Transmitter Power Supply: 19.0 V or higher (at 20 mA); 25.5 V or less (at 0 mA)
- Drift due to Ambient Temperature Change: ±16 µA/10 °C
- Maximum Current Consumption: 230 mA (5 V DC), 540 mA (24 V DC)
- Weight: 0.3 kg
- External Connection: Pressure clamp terminal, MIL connector cable, dedicated cable (KS1)
- HART Communication: Available
Product Specifications:
- The Yokogawa AAI143-S50.1 module is designed for high accuracy and reliability in signal conversion from field devices to control systems.
- It is part of Yokogawa’s line of digital communication modules that support the HART protocol, allowing for advanced configuration and monitoring of field devices.
- The module is suitable for use in dual-redundant configurations to enhance system reliability.
Series:
- This module is part of Yokogawa’s series of field input/output modules for use with their CENTUM CS 3000 production control system and other related systems.
Features:
- Isolated channels for safety and reduced noise.
- Supports HART communication for digital control and configuration.
- Designed for use in a wide range of industrial control applications.
Application Fields:
- Industrial Automation: For controlling machinery, production lines, and processes.
- Process Control: Chemical, oil and gas, pharmaceuticals, food and beverage, and other process industries.
- Power Generation: Monitoring and control of power generation equipment.
- Building Automation: Integrating with building management systems for control of HVAC, lighting, and security.
For precise and detailed specifications, refer to official documentation provided by Yokogawa or contact Yokogawa directly for support.