The Meister DUG Flow Monitor & Indicator is a robust and versatile flow measurement device designed for precise monitoring and control of liquid flow across various industrial applications. Utilizing the float measuring principle, the DUG Flow Monitor is ideal for use in cooling systems, mechanical and medical engineering, pharmaceutical and chemical industries, and research and development environments. Its high reliability and accuracy make it an essential tool for maintaining optimal performance and safety in critical processes.
Product Features:
- Universal Orientation: The DUG Flow Monitor can be installed in any orientation, providing maximum flexibility and ease of integration into existing systems.
- High Reliability: Engineered to deliver consistent and accurate flow monitoring, ensuring reliable performance in demanding industrial environments.
- Wide Measuring Range: Available in multiple models to accommodate flow rates from 0.2 to 250 l/min, making it suitable for a wide range of applications.
- Adjustable Switch Point: The switch point is infinitely adjustable by the operator, allowing for precise customization based on specific flow requirements.
- Durable Construction: Available in both brass and stainless steel versions, with high-quality DURAN® 50 sight glass and robust wetted parts for long-term durability.
- ATEX and UL Compliance: An EX-version compliant with the ATEX directive is available for use in potentially explosive environments, and UL Recognized versions are also available for enhanced safety.
- Ingress Protection: Rated IP65 and IP67, providing strong protection against dust and water ingress, ensuring reliable operation in harsh conditions.
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The Meister DUG Flow Monitor & Indicator is the perfect solution for professionals seeking reliable and precise flow measurement in industrial environments. Its robust design, wide application range, and compliance with international safety standards make it a trusted choice for ensuring accurate monitoring and control of flow rates in critical applications.