The A4VG180EP4DT1/32L-NZD02N001EH-S is designed to deliver high-pressure hydraulic power with precision and efficiency.
It has an axial piston design, which means it uses a series of pistons arranged in a circular pattern to generate hydraulic pressure. This design ensures smooth operation and minimal pulsation, making it suitable for applications that require precise control of hydraulic systems.
One of the important specifications of this pump is its displacement. The displacement of the A4VG180EP4DT1/32L-NZD02N001EH-S is 180 cm3/rev. This indicates the volume of fluid that the pump can deliver per revolution of the input shaft. The displacement plays a crucial role in determining the flow rate and pressure capabilities of the pump.
The pump is designed to operate at high pressures. The maximum continuous pressure rating for the A4VG180EP4DT1/32L-NZD02N001EH-S is 400 bar (5800 psi). This high-pressure capability makes it suitable for applications that require significant force or power, such as heavy machinery, construction equipment, and hydraulic presses.
In addition to its high-pressure capabilities, the A4VG180EP4DT1/32L-NZD02N001EH-S pump offers excellent efficiency.
It features a swashplate design that allows for variable displacement control. By adjusting the swashplate angle, the pump can regulate the output flow according to the system's requirements, thereby optimizing energy consumption and reducing waste. This efficiency is particularly beneficial in applications where power consumption needs to be minimized.
The pump is built to withstand demanding operating conditions. It incorporates robust construction materials and high-quality components to ensure durability and reliability. The A4VG180EP4DT1/32L-NZD02N001EH-S pump is engineered to handle various hydraulic fluids, including mineral oils, water-glycol, and synthetic hydraulic fluids, providing flexibility in different operating environments.
Furthermore, the A4VG180EP4DT1/32L-NZD02N001EH-S pump is designed with noise reduction features. It employs advanced technologies and design principles to minimize noise emissions during operation. This makes it suitable for applications where noise levels need to be kept low, such as in close proximity to work environments or residential areas.