The OMS 160 151 F 0503 is a medium-sized hydraulic motor with a displacement of 160cc per revolution.
It is a fixed displacement motor, meaning that the displacement volume remains constant during operation. This motor is suitable for applications requiring moderate torque and speed, making it versatile for a wide range of machinery and equipment.
The "151" in the model number refers to the motor's shaft and mounting configuration. It indicates a standard 25.4 mm (1-inch) straight keyed shaft with two 8.5 mm bolt holes on a 106.4 mm PCD (pitch circle diameter) for easy installation and connection to other components in a hydraulic system. This mounting configuration ensures compatibility with common industry standards, simplifying integration into various hydraulic systems.
The "F" in the model number denotes the motor's flange design. In this case, it represents a 4-bolt SAE B flange, which is a standard configuration widely used in hydraulic applications. The SAE B flange allows for a secure and reliable connection between the motor and other hydraulic components, such as pumps or valves.
The "0503" at the end of the model number indicates the motor's specific product variant or modification.
It may refer to unique features, adaptations, or customized options specific to certain applications. However, without additional information, it is difficult to provide a detailed explanation of this specific variant.
The OMS 160 151 F 0503 Danfoss Hydramotor is built with high-quality materials and designed for durability and longevity. It operates at a maximum pressure of 207 bar (3000 psi) and can handle continuous loads up to 245 bar (3550 psi). This motor is capable of achieving speeds up to 840 rpm, allowing for efficient operation in a variety of applications.
The Danfoss Hydramotor series is known for its efficient performance, low noise levels, and high reliability. The OMS 160 151 F 0503 model is no exception, offering excellent power-to-weight ratio and smooth operation. It is designed to withstand demanding conditions, including temperature variations and high-pressure environments, ensuring consistent performance in rugged industrial settings.