LEESON 109103.00 C4D18FK3A Low Voltage Motor, 1.50 HP, 24V, 1800 RPM

Item: AJ2PYL
Model: 109103.00
Cross Ref: 798KJ5 / C4D18FK3A
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Get it by Wednesday, Feb 11

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$2,599.74
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$2,339.77 /unit (ex. VAT)
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Specifications

Item DC Motor
Amps 60A
Drive End Bearing Size 6205
Drive End Bearing Type Ball
Duty Cycle Continuous
Efficiency 77.5%
Enclosure Type Tefc
Form Factor 1
Frame 56C
Frame Length 12"
Frame Type S56CZ
Full Load Torque 52.5 lbs.-in.
Grease Type Polyrex EM
Height 10 22/25"
Hp 1 1/2 hp
Insulation Class Class H
Kw 1.1 kW
Length 19 1/2"
Lubrication Polyrex EM
Max. Ambient Temp. 40°C
Max. Rpm 1800 RPM
Min. Ambient Temp. 40°C
Motor Application General Application
Motor Enclosure Design Totally Enclosed Fan Cooled
Motor Shaft Rotation Clockwise/Counter Clockwise
Mounting C Face, Rigid Base
Mounting Type Rigid Base
Nameplate Rpm 1800 RPM
Opp. Drive End Bearing Size 6203
Opp. Drive End Bearing Type Ball
Output Power 1.1 kW
Overall Length 17.38"
Packaging PG659401.04Z
Power 1.1 kW
Rotation Reversible
Rpm 1700-1800 RPM
Service Factor 1
Shaft Dia. 7/8"
Shaft Length 2.13"
Thermal Protection No Protection
Type DF
Voltage 24V
Width 10 11/25"

Product Details

Leeson 109103.00 C4D18FK3 magnet motor is used in conveyor systems, robotics and automated machinery to offer adjustable speed and torque, making them suitable for tasks requiring accurate motion control.

Shipping Information

Height (cm) 27.64
Length (cm) 49.53
Width (cm) 26.52
Country Of Origin US
Weight (kg) 23.4

Working Mechanism

  • Leeson 109103.00 C4D18FK3 permanent magnet motor operates using an armature, a coil of wire within a magnetic field. When connected to a direct current (DC) power source, the armature generates a magnetic force that interacts with the fixed magnetic field, causing it to rotate.
  • The commutator and brushes ensure the current direction reverses, sustaining rotation. This mechanism transforms electrical energy into mechanical motion.

Certifications

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Frequently Asked Questions

How is speed control achieved in this permanent magnet motor?

Speed control is achieved by adjusting the voltage applied to the motor. Increasing the voltage increases the speed, while decreasing it slows down the motor's rotation.

What factors should be considered when selecting a PMDC motor?

Major factors include torque requirements, speed range, power supply voltage, physical dimensions, duty cycle, efficiency and environmental conditions.

How do PMDC motors differ from stepper motors?

PMDC motors provide continuous rotation and are commonly used for variable speed applications. Stepper motors move in discrete steps and are used in applications that require precise position control, such as 3D printers and CNC machines.

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