HONEYWELL MC-PSTX03 51304516-250: Smart MV XMT Interface Card
The HONEYWELL MC-PSTX03 51304516-250 Smart MV Xmtr Interface Card is designed for advanced process control applications, offering high accuracy and reliability in measuring and controlling medium voltage systems.
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Content details
Model Number:51304516-250
Smart MV Xmt’r Compatibility:Yes
Communication Protocols Supported:[“Modbus”,”Ethernet/IP”]
Power Consumption:5 Watts max
Operating Temperature Range:-40°C to 85°C
Material:High-grade aluminum alloy
Dimensions (mm):150 x 100 x 20
Weight (kg):0.5
Introducing the Honeywell MC-PSTX03 51304516-250 Smart MV Xmt Interface Card, a state-of-the-art control module engineered for seamless integration into complex industrial environments. This module is renowned for its exceptional precision and robustness, making it ideal for applications requiring stringent accuracy and reliability.
Featuring an operating voltage of 12V DC, this card is designed to work within a wide temperature range of -40°C to +85°C, ensuring stable performance in various environmental conditions. With a resolution of 0.1%, it offers unparalleled precision, critical for achieving optimal results in process control.
Equipped with a communication protocol based on Modbus RTU, the Honeywell MC-PSTX03 51304516-250 ensures reliable data exchange between devices, facilitating easy integration into existing systems. Its compact aluminum alloy and stainless steel construction provides durability and resistance to corrosion, ensuring longevity in harsh industrial settings.
This interface card is compatible with a wide range of measurement sensors, allowing for versatile application across different industries. Whether you’re dealing with fluid levels, pressure, or other continuous process variables, this card provides accurate readings essential for maintaining high-quality operations.
The Honeywell MC-PSTX03 51304516-250 is equipped with a low power consumption design, consuming only 2W, which not only reduces operational costs but also minimizes the risk of overheating in confined spaces. This energy-efficient feature is particularly beneficial in remote or inaccessible locations where power availability may be limited.