
The A4VSO355DP/22R-PPB13N00-SO736 belongs to the A4VSO series of axial piston pumps manufactured by a reputable company.
Il a un déplacement de 355 CC par révolution, indicating its capacity to deliver a substantial volume of hydraulic fluid with each rotation.
One of the notable features of this pump is its dual-pressure control design. It allows for flexible operation and efficient power management in hydraulic systems. The pump can handle two different pressure levels simultaneously, enabling the system to optimize performance based on the specific requirements of different hydraulic components.
The A4VSO355DP/22R-PPB13N00-SO736 incorporates a 22-degree swashplate angle, which influences the pump’s output flow rate and pressure characteristics. This design feature contributes to the pump’s ability to deliver consistent and precise hydraulic power, ensuring smooth operation of the connected machinery.
Pour garantir la durabilité et la fiabilité, the A4VSO355DP/22R-PPB13N00-SO736 is constructed with high-quality materials and undergoes rigorous testing.
It can withstand challenging working conditions, y compris les hautes pressions et les charges lourdes, sans compromettre ses performances. This makes it suitable for demanding industrial applications such as construction equipment, systèmes de manutention, et applications marines.
The pump also features a robust bearing design that enhances its overall longevity and reduces maintenance requirements. The bearings are engineered to withstand high radial and axial forces, ensuring stable operation and extended service life.
En termes d'options de contrôle, the A4VSO355DP/22R-PPB13N00-SO736 offers versatility. It can be controlled through various methods, y compris le contrôle manuel, commande hydraulique, et commande électrique. This flexibility allows integration into different hydraulic systems and compatibility with diverse control architectures.
The A4VSO355DP/22R-PPB13N00-SO736 incorporates a built-in pressure compensator, which helps maintain a constant output pressure even when the load conditions vary. This feature enhances system efficiency by eliminating pressure fluctuations and reducing energy consumption.

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