The EX200 300-1 gear pump is specifically designed for medium-pressure hydraulic systems.
It features a compact and lightweight construction, making it suitable for installations where space is limited. The pump is commonly used in construction, agriculture, material handling, and other similar industries.
One of the key features of the EX200 300-1 gear pump is its high efficiency. It utilizes precision-machined gears that mesh together to create a positive displacement pumping action. This design ensures minimal energy loss and maximizes the pump's overall efficiency. The high efficiency of the pump helps to conserve energy and reduce operating costs.
The pump is capable of delivering a maximum operating pressure of 3000 PSI (pounds per square inch), which makes it suitable for a wide range of hydraulic applications. Its pressure rating allows it to generate sufficient power to drive hydraulic cylinders, motors, and other hydraulic components with ease.
In terms of flow rate, the EX200 300-1 gear pump offers a maximum displacement of 0.6 cubic inches per revolution. This displacement determines the volume of hydraulic fluid the pump can deliver in a single revolution. The flow rate can be further adjusted by varying the speed of the pump or by implementing flow control valves in the hydraulic system.
The pump is designed to operate at a maximum speed of 3000 RPM (revolutions per minute).
This speed rating ensures reliable performance while maintaining the pump's longevity. The operating speed can be adjusted as per the requirements of the hydraulic system, allowing for flexibility in different applications.
To ensure durability and longevity, the EX200 300-1 gear pump is constructed using high-quality materials. The pump body is typically made from cast iron or aluminum, which provides excellent strength and resistance to wear and corrosion. The gears are precision-machined from hardened steel or other suitable materials to withstand the demands of high-pressure hydraulic systems.
The pump features a compact and modular design, allowing for easy installation and maintenance. It is typically mounted to a power source, such as an electric motor or an engine, using a flange or a coupling. The modular design also facilitates easy replacement of individual components, reducing downtime and maintenance costs.