The U 5.45 rotary vane vacuum pumps offer high efficiency and reliability in demanding applications. They are compact, powerful, and ideal for continuous industrial operation.
The U 5.65 (XL K) rotary vane vacuum pumps offer high performance and efficiency for industrial applications. They feature a robust design and long service life.
The U5.71 rotary vane vacuum pumps offer high efficiency and reliable performance for demanding applications. They are robust, low-maintenance, and particularly energy-efficient.
The BECKER VT 4.10 is a high-performance, oil-free rotary vane vacuum pump designed for industrial applications with high vacuum demand – efficient, low-maintenance, and suitable for continuous operation.
The BECKER VT 4.16 is a high-performance, oil-free rotary vane vacuum pump designed for large industrial applications – efficient, robust, and engineered for low-maintenance continuous operation.
The BECKER VT 4.2 is an oil-free rotary vane vacuum pump optimized for industrial applications with high vacuum demand. It offers reliable performance and low maintenance requirements.
The BECKER VT 4.25 is an oil-free rotary vane vacuum pump designed for large-scale industrial applications – powerful, low-maintenance, and built for reliable continuous operation.
The BECKER VT 4.4 is an oil-free rotary vane vacuum pump designed for industrial applications with high vacuum demand. It offers high performance, reliability, and low maintenance requirements.
The BECKER VT 4.40 is an exceptionally powerful, oil-free rotary vane vacuum pump designed for high-volume industrial applications – efficient, robust, and low-maintenance in continuous operation.
The BECKER VT 4.8 is an oil-free rotary vane vacuum pump designed for industrial applications with high vacuum demand. It offers high performance, durability, and low maintenance requirements.
The BECKER VTLF 2.200 is a powerful, oil-free rotary vane vacuum pump designed for industrial continuous-duty applications – quiet, low-maintenance, and reliable even at high volume flow rates.