The A10VG 35DA1DM3L/10R-NSC10F015S pump is manufactured by a reputable company known for its expertise in hydraulic systems.
It is designed to provide precise and reliable hydraulic power for a wide range of applications, including construction machinery, agricultural equipment, and industrial systems.
One of the notable features of this hydraulic pump is its variable displacement design. The pump can vary the amount of oil it delivers per revolution, allowing for precise control of the hydraulic system. This feature enables the pump to adapt to different load requirements and optimize energy consumption. The variable displacement mechanism also contributes to the overall efficiency of the system, reducing heat generation and extending the pump's lifespan.
The A10VG 35DA1DM3L/10R-NSC10F015S pump has a maximum operating pressure of 350 bar, which enables it to handle demanding applications with ease. It is capable of delivering a maximum flow rate of 180 liters per minute, ensuring efficient and reliable operation even in high-demand scenarios.
This hydraulic pump incorporates advanced technologies to minimize noise and vibration. The precise engineering and high-quality components result in smooth and quiet operation, reducing operator fatigue and improving overall comfort.
In terms of construction, the A10VG 35DA1DM3L/10R-NSC10F015S pump features a robust and durable design.
It is built to withstand harsh operating conditions, including high pressures and temperature fluctuations. The pump's housing is made from high-strength materials, ensuring excellent durability and resistance to wear and tear.
Furthermore, the pump incorporates advanced sealing technologies to prevent oil leaks and maintain system integrity. This ensures that the hydraulic system operates at optimal efficiency and reduces the risk of costly downtime.
The A10VG 35DA1DM3L/10R-NSC10F015S pump is compatible with a wide range of hydraulic fluids, including mineral oils and environmentally friendly options. This versatility allows for seamless integration into existing hydraulic systems, reducing the need for additional modifications or adaptations.