The A10VG 45EZ1DM1/10L-PSC10F025S pump is a member of the A10VG series, which is known for its robust construction and efficient performance.
It is designed to provide reliable and precise hydraulic power in a wide range of applications, including construction machinery, industrial equipment, and mobile hydraulics.
One of the notable features of this pump is its axial piston design. It consists of a rotating cylinder block containing several pistons arranged in a circular pattern. As the cylinder block rotates, the pistons reciprocate, creating a pumping action that pressurizes the hydraulic fluid. This design ensures smooth and efficient operation, resulting in high overall performance.
The A10VG 45EZ1DM1/10L-PSC10F025S pump has a displacement of 45 cm³ per revolution, indicating the volume of fluid it can deliver with each rotation. This displacement capacity makes it suitable for applications requiring medium to high flow rates. Moreover, it is equipped with electronic displacement control, allowing for precise adjustment of the pump output according to the system's requirements. This feature enhances the pump's versatility and efficiency.
The pump operates at a maximum pressure of 280 bar, enabling it to generate substantial power to meet demanding hydraulic needs.
It is also worth noting that the A10VG 45EZ1DM1/10L-PSC10F025S pump offers excellent pressure control characteristics, maintaining stable pressure levels even under varying load conditions. This ensures consistent and reliable performance, even in challenging operating environments.
Additionally, the pump incorporates a built-in pressure cut-off function (PSC) that protects the hydraulic system from overpressure situations. This safety feature prevents potential damage to the pump and other components, contributing to the longevity of the overall hydraulic system.
The A10VG 45EZ1DM1/10L-PSC10F025S pump features a 10° bent-axis angle, which optimizes the pump's overall efficiency. This design minimizes energy losses and enhances the pump's ability to deliver power while consuming less energy. As a result, it contributes to energy savings and reduces the environmental impact of the hydraulic system.