Parker 3788032 V14-160-IVC-HPE3A-N000-P-00-16 Axial Piston Variable Motors - Hydraulic pump|Swing Motor|Hydraulic motor manufacturing

Parker 3788032 V14-160-IVC-HPE3A-N000-P-00-16 Axial Piston Variable Motors

Axial Piston Variable Motors - Series V12

Looking for a powerful and reliable axial piston variable motor? Look no further than the Parker 3788032 V14-160-IVC-HPE3A-N000-P-00-16. This motor is designed for use in engineering applications requiring high performance and durability. Featuring a maximum output of 160W, this motor is capable of delivering sustained power levels required for demanding applications.

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Parker 3788032 V14-160-IVC-HPE3A-N000-P-00-16 Axial Piston Variable Motors

Parker 3788032 V14-160-IVC-HPE3A-N000-P-00-16 Axial Piston Variable Motors

These Parker 3878032 V14-160-IVC-HPE3A-N000-P-00-16 Axial Piston Variable Motors are used in applications requiring a wide range of speed, torque, and efficiency.

Feature:

1) Faster, more efficient and accurate machine design.

2) This 2-phase design offers excellent performance and long life. Easy to use with standard VFD controls.

3) Completely new and innovative design, which is easy to setup and inexpensive.

4) We provide extreme precision and efficiency in the design and manufacture of our variable voltage and current industrial motors.

5) The Parker 3788032 V14-160-IVC-HPE3A-N000-P-00-16 Axial Piston Variable Motors is one of the most reliable motors on the market.

6) HVAC and refrigeration industries.

7) These motors are designed to provide maximum performance when running on high-pressure fuel systems.

Parker 3788032 V14-160-IVC-HPE3A-N000-P-00-16 Axial Piston Variable Motors Datasheet

Structure Flange Block Bearings
Cross Code 0.0
Power N/A
Pressure 46.308
Install M06288
Displacement 6
Pump Type Eccentric Collar
Material 6 Bolt Round Flange Cartridge
Color Spherical Roller Bearing
Dimension(L*W*H) Cast Steel
Weight Non-expansion
Condition 7/8 Inch
Applicable Yes
Torque 22226
Usage Triple Lip Viton
Rated Power 1 Piece Solid
Cross Code With Pilot
Maximum Flow Rate Metric

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Related Questions&Answers

How does an external fuel pump work?

An external fuel pump moves gasoline from the tank to the engine, often using an impeller or gear-rotor mechanism to create pressure that propels the fuel through the line.

How do you calculate efficiency for a gear pump?

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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