Accessories

MA Series Thermal Transfer Heat Exchangers

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The MA Series Thermal Transfer Heat Exchangers represent a significant advancement in hydraulics products, offering a robust solution for efficient cooling across various applications. Featuring a Bar & Plate Brazed Aluminum Core, these heat exchangers are designed to be rugged, lightweight, and compact, making them an excellent choice for environments where space and performance are critical. The innovative core design ensures optimal heat transfer for its size, allowing for superior cooling efficiency that meets the demands of modern hydraulic systems. One of the standout features of the MA Series is its air-side fin design, meticulously engineered to minimize fouling. This enhancement not only improves heat transfer efficiency but also contributes to the longevity of the unit, making it a reliable choice for continuous operation. Additionally, the fan motor is equipped with an IP68 connection, providing exceptional protection against dust and water ingress, which is vital for maintaining performance in harsh operating conditions.

Moreover, the unit includes welded aluminum fittings and ports, featuring standard SAE ports, with optional configurations for NPT and BSPP. This versatility ensures that the MA Series can seamlessly integrate into a variety of hydraulic setups, providing users with flexibility in installation and application. For those with specific requirements, customized units are available, offering tailored solutions to meet unique operational needs. In summary, the MA Series Thermal Transfer Heat Exchangers stand out as a premier choice in the realm of hydraulics products, combining lightweight design with exceptional performance and durability. Their innovative features make them suitable for a wide range of applications, ensuring efficient cooling solutions that enhance the overall functionality of hydraulic systems. Whether in industrial, agricultural, or mobile applications, the MA Series provides reliable performance that meets the evolving demands of today’s hydraulic environments.

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