Phoenix Contact MINI MCR Series Signal Conditioner, +70 °C Maximum Operating Temperature, DIN Rail Mounting - 2902037
This Phoenix Contact signal conditioner, with an input range of 0 24mA and an output range of 0 10V, is a vital component for industrial signal conditioning technology. Designed for use in automation, electronics, electrical, and mechanical industries, this device provides precise voltage and current isolation, conversion, and amplification capabilities.
Features & Benefits
• Offers configurable input and output signal types for both current and voltage signals
• DIN Rail Mount design for easy installation and secure mounting
• Operating Temperature Range of 40 to +70°C for reliable performance in extreme conditions
• Supply voltage of 9.6 30V provides flexibility in various power applications
• Mini MCR series ensures high quality signal conditioning for accurate data transmission
Applications
• Ideal for use in Industrial automation systems for signal processing and data transmission
• Suitable for electronic control systems to optimise voltage and current signals
• Used in Electrical equipment to ensure precise voltage and current measurements
• Perfect for mechanical machinery to enhance signal quality and reliability
Can it withstand high operating temperatures?
Yes, the Phoenix Contact signal conditioner is designed to operate within a temperature range of -40 to +70°C.
Will it work with various input signal types?
The signal conditioner supports both current and voltage input signal types for versatile applications.
Is it easy to install on a DIN rail mount?
Yes, the device features a DIN rail mount design for quick and secure installation in industrial settings.
Does it offer output customization for different voltage requirements?
Yes, the signal conditioner provides configurable output ranges, including 0-10V, to meet diverse voltage needs.
Can it ensure accurate signal transmission in noisy environments?
The signal conditioner's industrial signal conditioning technology guarantees reliable data transmission even in noisy industrial environments.