Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor - Hydraulic pump|Swing Motor|Hydraulic motor manufacturing

Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor

Eaton HDD Fixed Motor

The Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor is a professional grade motor designed to meet the needs of engineers. This motor features high quality components and is built to last. It is perfect for use in applications that require high performance and long lasting durability.

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Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor

Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor comes with a variety of features that allow you to maximize its power and function.

Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor is a synonym for excellence and reliability. The durable construction that’s rugged for industrial applications, like a machine station, also makes it great at providing clean power to sensitive loads.

Feature:

1) Provide your customers with quality and the best selection of products at a competitive price.

2) Discover all the specifications for the Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor.

3) Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor is a versatile design, with three speed ranges and 23.8HP rated power.

4) The motor is a bidirectional DC brushless commutator motor.

5) The requested part is in stock and ready to ship.

6) Designed to help reduce the noise and vibration caused by the fan, this motor is perfect for applications where a low sound level is important such as in medical devices.

7) Fixed motor design for fatigue life and bearing protection

Eaton 3933-095|HHD393321AB1B3L3L02200B Fixed Motor Datasheet

Condition Flange Block Bearings
Max Pressure 0.0
Torque N/A
Material 101.696
Displacement M06288
Cross Code 6
Pressure Eccentric Collar
Usage 6 Bolt Round Flange Cartridge
Maximum Flow Rate Spherical Roller Bearing
Cross Code Cast Steel
Color Non-expansion
Install 7/8 Inch
Applicable Yes
Structure 23230
Rated Power Triple Lip Nitrile Rubber
Power 1 Piece Solid
Weight With Pilot

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To calculate the efficiency of a gear pump, you must measure the input power and the output power, and then divide the output power by the input power. This ratio is then multiplied by 100 to get the efficiency percentage.

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Get a quick quote
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Click or drag files to this area to upload. You can upload up to 2 files.
Upload a picture of the hydraulic pump you need
For you to quickly find the hydraulic pump you need, please be sure to provide the brand model and picture of the hydraulic pump