Used BUSCH FO0018A #9167251 for sale

BUSCH FO0018A
Manufacturer
BUSCH
Model
FO0018A
ID: 9167251
Pump.
BUSCH FO0018A is a rotary vane vacuum pump designed for operation at atmospheric pressure. The pump features two internally generated compression stages and an outlet port pressure up to 0.8 bar absolute (ab). The pump operates at speeds of up to 3,600 rpm, with a rated flow rate up to 300 cubic meters per hour. Additionally, it is designed for use with oil-lubricated rotors and can handle liquids or gases. FO0018A is suitable for unpressurized pneumatic systems and standard suction systems. It features a central pressure relief valve and motor feedback circuit. The pump is designed with a separated combination of oil lubrication and cooling, and can be adapted for use with integrated oil separator devices. The pump is protected by a safety filter and an end of pump cover. Additionally, it has an eccentric mechanism with adjustable timing, adjustable thermal protection, and adjustable vacuum which further protects the pump. BUSCH FO0018A utilizes an airtight casing to ensure very low internal leakage levels and main seal wear. It features double lip seals and 5 air-filled chambers for improved performance. The pump is warmly prepared and compliant for continuous operation with the release lever. The motor can be easily and quickly replaced, thanks to the external connection. FO0018A offers excellent performance in terms of pressure drop, energy consumption, and noise characteristics. It is optimized for receiving and exchangeable motors for up to 3x400V/50Hz. The pump is certified with many international standards for safety and quality, such as UL, CSA, and CE. In addition, the motor is also IC411 and IP55 rated. BUSCH FO0018A is a high performance and reliable vacuum pump that offers excellent performance and reliability. It is suitable for a wide range of applications, from laboratory to industrial settings, and offers the highest quality and reliability. Since the pump is adjustable, users can adjust the speed and performance according to the application requirements.
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