The A10VO100DFLR/31R-PSC62K02 is part of the A10VO series manufactured by Bosch Rexroth, a renowned name in hydraulic systems.
It belongs to the displacement class of 100 cc/rev, making it suitable for medium to large hydraulic systems that require substantial flow rates and pressure capabilities.
One of the notable features of this pump is its axial piston design, which ensures smooth and precise operation. It consists of a cylinder block with several pistons arranged in a circular pattern. These pistons reciprocate within the cylinder block as they are driven by an eccentric shaft. This design results in a continuous and pulsation-free flow of hydraulic fluid, minimizing vibrations and ensuring consistent performance.
The A10VO100DFLR/31R-PSC62K02 pump offers a maximum operating pressure of 350 bar (5075 psi). This high-pressure capability makes it suitable for applications that require significant force, such as heavy machinery, construction equipment, and industrial presses. It enables the pump to deliver reliable power and perform under challenging conditions.
Furthermore, this pump features a variable displacement mechanism, denoted by the "DFLR" in its model name. This means that the pump's output flow rate can be adjusted according to the system's requirements. The displacement can be varied within a range of 0 to maximum, allowing precise control of the hydraulic system. This feature enhances energy efficiency by delivering the required flow while reducing unnecessary power consumption.
The "31R" designation indicates the control mechanism used in this pump.
It features a pressure compensator control, which maintains a constant pressure difference between the pump outlet and the load pressure. This ensures that the hydraulic system operates at a stable pressure level, preventing overloading and maintaining consistent performance.
The A10VO100DFLR/31R-PSC62K02 pump is equipped with a highly efficient hydraulic servo controller, denoted by "PSC62K02". This controller optimizes the pump's performance and enables precise control over various hydraulic parameters. It facilitates accurate speed and pressure control, contributing to enhanced productivity and system responsiveness.