The A4VSO 71 DR/10R-PPB13N00 belongs to the A4VSO series of axial piston pumps, known for their high performance and durability.
It has a nominal displacement of 71 cm³/rev, indicating the volume of hydraulic fluid that can be displaced by the pump in one revolution. This displacement capacity allows the pump to generate substantial hydraulic power, making it suitable for demanding applications.
The "DR" in the model name represents the pump's control device, which in this case is the DR controller. The DR controller enables variable displacement, meaning it can adjust the pump's output flow to match the system's requirements. This feature is crucial in applications where the hydraulic power demand varies, as it allows for energy-efficient operation and precise control.
The "10R" indicates the pump's nominal pressure rating. In this case, the pump is designed to operate at a maximum pressure of 280 bar (or 4000 psi). This high-pressure capability makes the A4VSO 71 DR/10R-PPB13N00 suitable for applications that require significant force or hydraulic pressure, such as heavy machinery, construction equipment, or industrial systems.
The "PPB13N00" represents additional specifications and configurations of the pump.
Unfortunately, without further information, it is not possible to provide a detailed explanation of these specific specifications. However, it is worth noting that Bosch Rexroth offers various options and accessories for their pumps, allowing customization based on the application's needs. These can include different control options, mounting configurations, and auxiliary devices.
The A4VSO 71 DR/10R-PPB13N00 incorporates advanced design and engineering principles to ensure its reliability and performance. It features a robust axial piston design that provides smooth and efficient operation, even under demanding conditions. The pump's components are precision-machined and made from high-quality materials to ensure longevity and resistance to wear and tear.
Additionally, the pump incorporates a sophisticated hydraulic control system, which enables precise control over the pump's displacement and output flow. This control system, combined with the variable displacement capability, allows for efficient power management and reduces energy consumption, contributing to cost savings and environmental sustainability.