Parker 3784718 V14-160-SVS-HOE3N-L015-N-00-13 Axial Piston Variable Motors - Hydraulic pump|Swing Motor|Hydraulic motor manufacturing

Parker 3784718 V14-160-SVS-HOE3N-L015-N-00-13 Axial Piston Variable Motors

Axial Piston Variable Motors - Series V12

The Parker 3784718 V14-160-SVS-HOE3N-L015-N-00-13 Axial Piston Variable Motors provide the engineer with the precision they need to achieve the most demanding applications. These motors are built using high quality materials and features a durable construction that will handle the toughest conditions.

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Parker 3784718 V14-160-SVS-HOE3N-L015-N-00-13 Axial Piston Variable Motors

Parker 3784718 V14-160-SVS-HOE3N-L015-N-00-13 Axial Piston Variable Motors provide a means of controlling the position and speed of an object that operates under control of variable current signals.

A variable-speed-control axial piston device

Feature:

1) Save time and money by shopping on Curashion instead of having to visit different websites for each designer item you want to purchase.

2) The Parker Variable Motors are a new variable speed motor series which has been designed to increase performance, reduce vibration and extend range of speed.

3) The product offers reliable performance and reduced downtime.

4) Our motors have been used in industry applications worldwide.

5) The best-in-class “AXIAL” design delivers the most efficient performance available anywhere in the industry.

6) Advance in your engineering career by choosing this brushless motor.

7) Design and manufacture of high quality hand-operated pumping equipment for the oil and gas industry.

Parker 3784718 V14-160-SVS-HOE3N-L015-N-00-13 Axial Piston Variable Motors Datasheet

Max Pressure Pillow Block Bearings
Cross Code 0.0
Color N/A
Usage 22.7
Cross Code M06288
Dimension(L*W*H) 2
Displacement Eccentric Collar
Power 2 Bolt Pillow Block
Rated Power Spherical Roller Bearing
Condition Cast Steel
Applicable Non-expansion
Maximum Flow Rate 24 Millimeter
Pressure Yes
Structure 22218
Torque Double Lip Nitrile Rubber
Install 1 Piece Solid

This parker hydraulic cylinder repair manual is essential for anyone who needs to repair or maintain the cylinders in their hydraulic system. The manual includes step-by-step instructions and diagrams, as well as descriptions of common problems and solutions. With this guide, you’ll be able to get your hydraulic system back up and running quickly and efficiently.

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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
It is convenient for our customer service staff to contact you in time
Click or drag files to this area to upload. You can upload up to 2 files.
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For you to quickly find the hydraulic pump you need, please be sure to provide the brand model and picture of the hydraulic pump