LEESON 108050.00 C4D17NK9D Low Voltage Motor, 0.33 HP, 24V, 1800 RPM

Item: AJ2PVZ
Model: 108050.00
Cross Ref: 48ZG52 / C4D17NK9D
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Specifications

Item DC Motor
Amps 13.5A
Bearing Size 6203
Bearing Type Ball
Brush Material Carbon
Brush Type Carbon
Drive End Bearing Size 6203
Drive End Bearing Type Ball
Duty Cycle Continuous
Efficiency 70.3%
Enclosure Type Tenv
Form Factor 1
Frame 56C
Frame Length 4.47"
Frame Type S56C
Full Load Amps 13.5A
Full Load Torque 11.7 lbs.-in.
Height 10 22/25"
Hp 33/100 hp
Ins. Class Class F
Insulation Class Class F
Kw 0.25 kW
Length 14 11/25"
Length Less Shaft 8 13/16"
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 Non Ventilated
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 0.25 kW
Overall Length 10 3/4"
Packaging PG659301.04A
Power 0.25 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 DN
Voltage 24V
Width 7.94"
Motor Thermal Protection None
Standards CSA (LR2025), UL (E49747)

Product Details

Leeson 108050.00 C4D17NK9 DC motor offer precise control over speed and torque, essential for processes requiring accurate adjustments. It is used in the automation, robotics and manufacturing industries. This direct current motor is preferred in battery-operated vehicles and electric vehicles due to its high power-to-weight ratio.

Shipping Information

Height (cm) 27.64
Length (cm) 36.68
Width (cm) 20.17
Country Of Origin US
Weight (kg) 11.25

Working Mechanism

  • Leeson 108050.00 direct current permanent magnet motor operates through electromagnetism. It has an armature with a coil of wire, a commutator to reverse the current direction and brushes for contact.
  • The interaction between the armature's current and the magnetic field from permanent magnets or field coils generates rotational force, propelling the motor. By regulating the current, its speed and torque are controlled for precision applications in robotics, automation and electric vehicles.

Certifications

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Frequently Asked Questions

What is the significance of the commutator in this DC motor?

The commutator serves as a switch that reverses the direction of current in the armature coil as it rotates. This reversing current direction is crucial for maintaining continuous rotation.

Can this motor operate without a permanent magnet?

Yes, the motor can operate without a permanent magnet by using field coils (electromagnets) to generate the necessary magnetic field. This design is commonly seen in larger DC motors.

What maintenance is required for the brushes and commutator of this motor?

Regular inspection and replacement of brushes are necessary to ensure consistent electrical contact. The commutator may need occasional cleaning to prevent build-up of debris that could affect its operation.

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