Yokogawa AAI143-H00 S1 PLC Input Module
The Yokogawa PLC AAI143-H00 S1 is an advanced input module designed for industrial automation applications, offering high reliability, precise signal processing, and enhanced communication capabilities.
Email:18005021035@163.com
Phone:+86 18005021035
Name:BeiLin
Content details
Product Type:Input Module
Number of Input Channels:16, Isolated
Input Signal:4 to 20 mA
Allowable Input Current:24 mA
Maximum Current Consumption:230 mA (5 V DC), 540 mA (24 V DC)
External Communication:Pressure clamp terminal, MIL connector cable, Dedicated cable
Suffix Code:H=With digital communication (HART protocol), 0=Basic type
Weight:0.3 kg
The Yokogawa AAI143-H00 S1 is meticulously engineered to offer unparalleled performance in industrial automation applications. Its robust design allows for accurate signal conversion and transmission, ensuring reliable operation in challenging environments.
Each input channel is equipped with high-quality isolation, safeguarding against electrical interference and enhancing system stability. The module supports a wide range of current inputs, making it compatible with various sensors and actuators commonly found in industrial setups.
With its versatile communication options, the AAI143-H00 S1 can easily integrate with other Yokogawa products or third-party systems through pressure clamp terminals, MIL connectors, or dedicated cables. This flexibility enables seamless connectivity within complex industrial networks.
Featuring a compact yet durable design, this module is ideal for space-constrained applications without compromising on performance. It is meticulously crafted from high-grade materials to withstand harsh industrial conditions, ensuring long-lasting reliability and minimal maintenance requirements.
The inclusion of a digital communication option (HART protocol) in suffix code ‘H’ provides enhanced diagnostic capabilities, allowing for real-time monitoring and adjustment of process parameters. This feature significantly improves operational efficiency and system accuracy.