vactegra
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Max pressure, inch H2O: 301.4
Max vacuum, inch H2O: -196.9
Number of stages: 2
Rated power, HP: 23.52
UL Recognized
Premium Efficiency motor



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Techical spesification
Max suction capacity, cfm: 365.2
Max pressure, inch H2O: 301.4
Max vacuum, inch H2O: -196.9
Number of stages: 2
Rated power, HP: 23.52
Electric supply, Phase: 3
Sound pressure level, dB(A): 78
Dimentions LxWxH, Inch: 21.5x19.7x19.3
Connections, Inch: G2 ½
Weight, lbs: 265
Description
The regenerative blower model VL 365.301 is a powerful and efficient blower designed for heavy-duty industrial applications that require high air flow rates and pressure capabilities. With a maximum suction capacity of 365.2 cubic feet per minute (cfm), this blower is capable of efficiently moving large volumes of air.
Featuring a two-stage design, the blower has a maximum pressure capability of 301.4 inches of water (H2O) and a maximum vacuum capability of -196.9 inches of H2O, making it suitable for applications that require both positive pressure and vacuum operations. This makes it ideal for applications such as pneumatic conveying, material handling, and vacuum lifting.
The blower is powered by a robust 23.52 horsepower (HP) motor, providing ample power for demanding tasks. It requires a 3-phase electric supply for operation, ensuring consistent and reliable performance. The blower operates with a sound pressure level of 78 dB(A), which makes it suitable for use in industrial environments with higher noise levels.
With dimensions of 21.5 inches in length, 19.7 inches in width, and 19.3 inches in height, the blower has a compact size that is suitable for installations with limited space. It has a G2 ½ inch connection, making it compatible with standard piping systems. The blower has a weight of 265 pounds, making it sturdy and durable for long-term use.
The regenerative blower model VL 365.301 is known for its high performance, efficiency, and durability, making it suitable for a wide range of industrial applications. Its high suction capacity, pressure capabilities, and two-stage design make it a reliable choice for applications that require efficient air movement and reliable performance in demanding environments.