Customization: | Available |
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Certification: | ISO9001 |
Number of Poles: | 6 |
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ME100 ME150 ME175 ME300 ME350 ME600A ME750A ME850 ME1300A ME1900 ME2600 ME3100 ME4100 ME3100 MK300
MB100 MB150 MB150AP100 MB175 MB175AP100 MB300 MB300BP150 MB350 MB350BP150 Hydraulic Dowmax Sumitomo Eaton Motor
ME350B ME600B ME750B ME850B ME1300A ME1900 ME2600 ME3100 ME4100 Downax Hydraulic Axial Piston ME Motor
Downax Hydraulic Axial Piston ME Motor
The Eaton DOWMAX ME Motor is an axial piston High Torque Low Speed (HTLS) motor. Incorporating a unique and compact double swash plate design with up to 22 pistons it differs from the more traditional, radial piston (HTLS) motors. As well as outstanding power to weight performance and compactness, the unique design offers significant benefits by reducing speed fluctuations, minimizing flow drift and ripple, common to (HTLS) radial piston motors, by as much as 50%. Due to its' double swash-plate design, low speed performance is considered outstanding, even below 5 rpm, offering smooth and precise performance over a wide perating range. Furthermore the unique design ensures the motor works in the high efficiency zone, ensuring machines operate in the best conditions possible, ensuring optimum performance, energy efficiency and safety.
Details regarding the choice of hydraulic fluid: The correct choice of hydraulic fluid requires knowledge of the operating temperature in relation to the ambient temperature: in a closed circuit the circuit temperature. The hydraulic fluid should be chosen so that the operating viscosity in the operating temperature range is within the optimum range - the shaded area of the selection diagram. We recommended that the higher viscosity class be selected in each case. Example: At an ambient temperature of X °C an operating temperature of 60 °C is set. In the optimum operating viscosity range (shaded area) this corresponds to the viscosity classes VG 46 or VG 68; to be selected: VG 68. Please note: The case drain temperature, which is affected by pressure and speed, is always higher than the circuit temperature. At no point in the system may the temperature be higher than 115 °C. If the above conditions cannot be maintained due to extreme operating parameters, please consult us.