Used ULVAC VD301 #9053131 for sale
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ULVAC VD-301 is a diaphragm based dry pump designed to provide superior performance in a wide range of applications. This pump provides a reliable and efficient way to create high vacuum in industrial, laboratory, and research settings. VD-301 is a low vibration, high efficiency pump that has a maximum volumetric flow rate of 18.7 m3/h and can reach a maximum ultimate pressure of .001 Pa. ULVAC VD-301 operates through a two-stage compression to vacuum process. The pump utilizes a combination of a diaphragm and a liquid ring compressor to compress dry air and other gaseous media within an enclosed chamber. The two stage design allows VD-301 to reach high vacuum levels quickly and with minimal complexity. The pumping process is designed to be quieter than other models and creates minimal vibration, contributing to its superior performance. ULVAC VD-301 is made with lightweight, corrosion-resistant aluminum alloy and fits into a wide range of applications. This pump uses wear-resistant ASTM B85 grade carbon inserts on the rotors and has a peak power rating of only 25 watts. This makes it well-suited for use in labs, industrial facilities and research applications where noise and vibration can interfere with normal operations. VD-301 dry pumps deliver superior performance with a low operating temperature. This model is also easy to maintain due to minimal parts and the use of durable metal components which require minimal maintenance. In addition, ULVAC VD-301 has an embedded microprocessor to monitor efficiency and protect against temperature and voltage fluctuations. Furthermore, the pump is UL listed and features an innovative design that minimizes cost while optimizing performance. Overall, VD-301 is an ideal solution for creating a vacuum environment in scientific and industrial settings. This model offers superior performance with minimal noise, vibration, and power consumption. The diaphragm based design enables the pump to reach high ultimate pressure levels quickly with minimal complexity. The use of wear-resistant components and an embedded microprocessor help to protect against temperature and voltage fluctuations and ensure maximum efficiency.
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