The LA10VO45ED72/52R operates using the axial piston principle, ensuring efficient and reliable performance.
The pump is designed to handle a maximum operating pressure of 350 bar (5,075 psi), allowing it to withstand demanding working conditions and high-pressure applications. The precise pressure control mechanisms ensure stable and consistent performance, while also protecting the hydraulic system from excessive pressure.
Furthermore, the LA10VO45ED72/52R incorporates an ED72/52R control device. This control device provides precise control of the displacement angle, allowing for accurate adjustments in flow and pressure. The ED72/52R control is designed to respond quickly to changes in load conditions, maintaining optimal performance and minimizing energy consumption.
Moving on to the LA10VO28ED72/52R-K, it is another axial piston pump with a displacement of 28 cubic centimeters per revolution. This pump is slightly smaller than the LA10VO45ED72/52R and is suitable for applications that require lower hydraulic power output.
Similar to the LA10VO45ED72/52R, the LA10VO28ED72/52R-K also operates using the axial piston principle and can handle a maximum operating pressure of 350 bar (5,075 psi).
It incorporates the ED72/52R-K control device, which provides precise control of the displacement angle, ensuring accurate adjustments in flow and pressure.
Both pumps in the combination feature a R+R-K mounting configuration, enabling them to work together seamlessly. The R+R-K mounting configuration ensures a reliable and secure attachment of the pumps to the hydraulic system, preventing leaks and maintaining system integrity. It also facilitates ease of installation and maintenance, enhancing overall efficiency and reducing downtime.
The LA10VO45ED72/52R+LA10VO28ED72/52R-K combination is designed to integrate smoothly into hydraulic systems, making it suitable for various industrial applications. These pumps are commonly used in mobile machinery, construction equipment, agricultural machinery, and other applications that require hydraulic power.