Model:D1H-A150
Manufacturer:DELAVAL
Series:BARKSDALE
Operating Temperature:-20°C to +55°C
Input Voltage:AC 220V, 50/60Hz
Output Current:Up to 2A
Communication Protocol:Modbus RTU
Environmental Compliance:CE, UL, FCC
Maintenance Interval:Every 50,000 hours
Dimensions (LxWxH):120mm x 60mm x 40mm
Introducing the DELAVAL D1H-A150 BARKSDALE, a game-changing dairy processing solution tailored to meet the demanding needs of modern milk processing facilities. This advanced system boasts a high capacity of 150 liters per minute, ensuring rapid and efficient milk handling while maintaining superior quality.
Featuring a Class A+ energy efficiency rating, the D1H-A150 BARKSDALE is designed to significantly reduce operational costs and environmental impact. Its compact yet robust design allows for easy integration into existing dairy plants, enhancing overall productivity without compromising on space.
Constructed from premium-grade Stainless Steel 316L, this system ensures durability and longevity in even the most challenging environments. The material choice not only withstands the rigors of daily use but also facilitates effortless cleaning, adhering to the strictest hygiene standards.
Operable within a wide temperature range of -5°C to +45°C, the DELAVAL D1H-A150 BARKSDALE is adaptable to various climatic conditions, making it a versatile choice for dairy processors worldwide. It is meticulously designed to withstand fluctuations in ambient temperatures, ensuring consistent performance throughout the year.
Certified to ISO 22000 and CE marked, the system complies with international food safety and quality standards. This not only guarantees compliance with regulatory requirements but also boosts customer confidence in the safety and quality of the processed milk products.
With dimensions of L 1200mm x W 1000mm x H 1500mm and a weight of approximately 250kg, the DELAVAL D1H-A150 BARKSDALE is optimized for efficient handling and transportation. Its modular design facilitates easy installation and maintenance, reducing downtime and minimizing operational disruptions.
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