The PV7-1X/06-14RA01MA0-07 is an axial piston pump, which means it utilizes a set of pistons arranged in a circular pattern within a cylinder block.
These pistons are actuated by a swash plate, allowing the pump to vary the displacement and deliver a variable flow of hydraulic fluid. This variable displacement feature is particularly advantageous in applications where the hydraulic system needs to adapt to varying loads and conditions.
The numerical designations in the model number provide further insights into the pump's specifications. The "PV7" indicates that it belongs to the PV7 series of pumps, which may have additional models with different specifications. The "1X" denotes the size of the pump, indicating its physical dimensions and power output capability. The "06-14" signifies the displacement range, indicating the maximum and minimum flow rates the pump can deliver. This range is usually expressed in cubic centimeters per revolution (cc/rev) and is crucial in determining the pump's compatibility with the system requirements.
The "RA01MA0-07" represents additional details about the pump's configuration and features.
The "RA01" specifies the control option, indicating how the pump is controlled and adjusted. It could be manual, electrohydraulic, or other types of control mechanisms. The "MA0" refers to the pump's mounting style, which could be flange-mounted, foot-mounted, or other variations. The "07" denotes the rotation direction of the pump shaft, which could be clockwise or counterclockwise.
Besides these specific designations, the PV7-1X/06-14RA01MA0-07 pump offers various other features and benefits. It is designed for high efficiency and low noise operation, ensuring optimal performance while minimizing disturbances in the working environment. The pump is built with high-quality materials and undergoes rigorous testing to ensure reliability and durability.
The PV7-1X/06-14RA01MA0-07 pump incorporates advanced technologies such as pressure compensation and load-sensing, which enable it to automatically adjust the flow rate based on the system's demands. This feature enhances energy efficiency and contributes to cost savings by reducing excessive hydraulic power consumption.