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SMC PF2M750-N1-L3Q PF2M7-L Series 2-Color Display Digital Flow Switch IO-Link Compatible

SMC
SKU:
PF2M750-N1-L3Q
Availability:
Factory stock: 6
$310.00
Condition:
New
Current Stock:
The SMC PF2M750-N1-L3Q PF2M7-L Series 2-color Display Digital Flow Switch is a cutting-edge solution for precise flow monitoring, designed specifically for industrial applications requiring high accuracy and reliability. This advanced flow switch is IO-LINK compatible, ensuring seamless integration into modern automated systems. Key Features: - **3-Screen Display**: The digital flow monitor is dedicated to the PF2M7 series, featuring a new 3-screen display that allows for comprehensive monitoring of remote lines, such as the PFGM302 Series. - **Versatile Media Compatibility**: Suitable for use with dry air, nitrogen (N2), argon (Ar), and carbon dioxide (CO2), making it ideal for a variety of industrial environments. - **Wide Flow Measurement Range**: Capable of measuring a broad range of flow rates with a single device, boasting a flow ratio of 100:1 and a smallest settable increment of 0.01 L/min. - **Enhanced Durability**: Engineered with improved resistance to moisture and foreign matter, ensuring long-lasting performance in challenging conditions. - **Compact and Lightweight Design**: The unit is 27.3% lighter than previous models, weighing only 40g, which facilitates easy installation and reduces system load. - **Energy Efficient**: With a low current consumption of 35 mA or less, this flow switch is designed to minimize energy usage without compromising performance. - **Grease-Free Operation**: Ensures clean and maintenance-free operation, reducing downtime and maintenance costs. The SMC PF2M750-N1-L3Q is an ideal choice for professionals seeking a reliable and efficient digital flow switch that offers both precision and ease of use. Its compact design, coupled with advanced features, makes it a valuable addition to any industrial flow monitoring system. Optimize your operations with this state-of-the-art flow switch, designed to meet the demands of modern engineering and manufacturing environments.