The A10VG 28EZ1D1/10R-NSC10F015D hydraulic pump belongs to the A10VG series produced by a renowned manufacturer.
It is a variable displacement axial piston pump that operates under high pressure conditions. This pump is designed to provide precise and efficient hydraulic power, making it suitable for a wide range of applications including industrial machinery, mobile equipment, and construction machinery.
One of the notable features of the A10VG 28EZ1D1/10R-NSC10F015D pump is its variable displacement capability. It means that the pump can adjust its output flow rate according to the system requirements. This feature allows for efficient power distribution, resulting in energy savings and improved overall system performance. The pump offers a maximum displacement of 28 cm³/rev, providing a considerable flow capacity for demanding applications.
The pump's high-pressure rating is another important specification. The A10VG 28EZ1D1/10R-NSC10F015D is designed to operate at a maximum pressure of 350 bar (5076 psi). This enables it to handle heavy-duty tasks and maintain reliable operation even in demanding working conditions. The high-pressure capability ensures that the pump can deliver sufficient power to the hydraulic system, enabling it to operate efficiently.
The A10VG 28EZ1D1/10R-NSC10F015D pump incorporates advanced hydraulic technologies to enhance its performance and durability.
It features an axial piston design, where the pistons move parallel to the drive shaft. This design enables smooth and efficient operation, minimizing friction and wear. The pump also utilizes high-quality materials and precise manufacturing processes to ensure longevity and reliable performance.
In terms of control options, the A10VG 28EZ1D1/10R-NSC10F015D pump offers various control modes to meet different application requirements. It can be equipped with either a pressure control or a load-sensing control mechanism, allowing for precise and responsive regulation of the pump's output. This flexibility in control options makes the pump adaptable to different hydraulic systems and enables optimization of power usage