LEESON 108053.00 C4D17FK9E Low Voltage Motor, 1 HP, 24V, 1800 RPM

Item: AJ2PWC
Model: 108053.00
Cross Ref: 48ZG55 / C4D17FK9E
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Specifications

Item DC Motor
Amps 39A
Bearing Type Ball
Drive End Bearing Size 6203
Drive End Bearing Type Ball
Duty Cycle Continuous
Efficiency 81.3%
Enclosure Type Tefc
Form Factor 1
Frame 56C
Frame Length 6.47"
Frame Type S56C
Full Load Amps 39A
Full Load Torque 35 lbs.-in.
Grease Type Polyrex EM
Height 10 22/25"
Hp 1 hp
Ins. Class Class H
Insulation Class Class H
Kw 0.75 kW
Length 19 1/2"
Length Less Shaft 11 7/8"
Lubrication Polyrex EM
Max. Ambient Temp. 40°C
Max. Rpm 1800 RPM
Min. Ambient Temp. 40°C
Motor Application General Application
Motor Bearings Ball
Motor Design Permanent Magnet Dc
Motor Enclosure Design Totally Enclosed Fan Cooled
Motor Mounting Type Face, Base
Motor Service Factor 1
Motor Shaft Design Keyed
Motor Shaft Rotation Clockwise/Counter Clockwise
Motor Type Permanent Magnet DC
Mounting Rigid C Base
Mounting Type Rigid Base
Nameplate Rpm 1800 RPM
No. Of Studs 4
Opp. Drive End Bearing Size 6203
Opp. Drive End Bearing Type Ball
Output Power 0.75 kW
Overall Length 13 13/16"
Packaging PG659401.04Z
Power 0.75 kW
Removable Base Yes
Rotation Reversible
Rpm 1700-1800 RPM
Service Factor 1
Shaft Dia. 5/8"
Shaft Extension 2.06"
Shaft Length 2.06"
Stud Size 3/8"-16
Thermal Protection No Protection
Type DF
Voltage 24V
Width 10 11/25"
Motor Thermal Protection None
Standards CSA (LR2025), UL (E49747)

Product Details

Leeson 108053.00 C4D17FK9 DC motor provides consistent speed across a wide range, aiding in accurate positioning and process control. This motor is ideal for battery-operated vehicles and medical equipment. It finds its utility in conveyor systems, robotics and machine tools due to its adjustable performance characteristics.

Shipping Information

Height (cm) 27.64
Length (cm) 49.53
Width (cm) 26.52
Country Of Origin US
Weight (kg) 15.3

Working Mechanism

  • When current flows through the coils of the motor, it generates a magnetic field. The armature, with its own set of coils, is positioned within this field. The commutator and brushes ensure the direction of current in the armature coils changes as it rotates, creating a continuous rotational motion.
  • This motion is driven by the interaction between the magnetic field of the stator and the magnetic field produced by the armature's current. The controlled flow of current through the armature allows for precise speed and torque regulation, making it ideal for applications requiring variable speed and controlled movement.

Certifications

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Frequently Asked Questions

How does a direct current motor achieve speed control?

Speed control is achieved by adjusting the voltage supplied to the motor. Lower voltage results in slower speeds, while higher voltage increases speed.

Can the motor direction be easily reversed?

Yes, by changing the polarity of current flow through the armature coils, the motor's rotation direction can be reversed.

What maintenance is required for this motor?

Regular inspection of the brushes and commutator is recommended to ensure smooth operation. Brush replacement might be necessary over time.

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