82334 Series, Motors - AC, DC

Results:
179
Manufacturer
Series
RPM
Gear Reduction Ratio
Voltage - Rated
Torque - Rated (oz-in / mNm)
Operating Temperature
Diameter - Shaft
Termination Style
Size / Dimension
Mounting Hole Spacing
Length - Shaft and Bearing
Function
Type
Power - Rated
Motor Type
Encoder Type
Torque - Max Momentary (oz-in / mNm)
Features
Results remaining179
Applied Filters:
82334
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ImageProduct DetailPriceAvailabilityECAD ModelTypeSize / DimensionFeaturesOperating TemperatureVoltage - RatedDiameter - ShaftLength - Shaft and BearingMounting Hole SpacingTermination StyleFunctionPower - RatedMotor TypeGear Reduction RatioRPMSeriesTorque - Rated (oz-in / mNm)Encoder TypeTorque - Max Momentary (oz-in / mNm)
82334790
MOTOR 82330 GEARBOX OVOID 5/3 RP
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82334
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82334820
MOTOR 82330 GEARBOX OVOID 40 RPM
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82334
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82334815
MOTOR 82330 GEARBOX OVOIDE 20 RP
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82334
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82334811
MOTOR 82330 GEARBOX OVOID 60 RPM
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82334
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82334810
MOTOR 82330 GEARBOX OVOID 12 RPM
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82334
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82334807
MOTOR 82330 GEARBOX OVOID 20 RPM
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82334
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82334805
MOTOR 82330 GEARBOX OVOIDE 30 RP
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82334
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82334803
MOTOR 82330 GEARBOX OVOIDE 60 RP
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82334
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82334799
MOTOR 82330 GEARBOX OVOID 1 RPM
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82334
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82334797
MOTOR 82330 GEARBOX OVOID 5/3 RP
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82334
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82334768
GEARMOTOR 5 RPM 230V
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PCB Symbol, Footprint & 3D Model
AC Motor
Round - 1.858" Dia (47.20mm)
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-5°C ~ 60°C
230VAC
0.157" (4.00mm)
0.520" (13.20mm)
1.874" (47.60mm)
Wire Leads
Gearmotor
3.5W
Synchronous
120
5 RPM
82334
70.81 / 500
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82334785
MOTOR 82330 GEARBOX OVOID 4 RPM
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82334
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82334778
MOTOR 82330 GEARBOX OVOID 3 RPM
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82334
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82334776
MOTOR 82330 GEARBOX OVOIDE 5 RPM
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82334
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82334566
MOTOR 82330 GEARBOX OVOID 10 RPM
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82334
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82334511
MOTOR 82330 GEARBOX OVOID 15 RPM
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82334
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82334506
MOTOR 82330 GEARBOX OVOID 6 RPM
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82334
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82334916
MOTOR 115/60 1RPM CW 70999
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82334
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82334899
MOTOR 24/50 10RPM CCW
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82334
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82334659
MOTOR 10RPM 115V 60HZ COIL=BOB
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About  Motors - AC, DC

AC and DC motors are electromechanical devices that convert electrical energy into mechanical motion or vibration. These motors are widely used in various applications where precise control over movement is required. Brushed DC motors are one of the most common types of motors. They consist of a rotor (also known as an armature), a stator, and brushes that make contact with the commutator. When a current is applied to the brushes, it creates a magnetic field that interacts with the permanent magnets on the rotor, causing it to rotate. Brushless DC motors, on the other hand, eliminate the need for brushes and commutators. Instead, they use electronic controllers to switch the direction of current flow in the stator windings, creating a rotating magnetic field that drives the rotor. Brushless DC motors offer advantages such as higher efficiency, longer lifespan, and reduced maintenance. Stepper motors are often used in applications that require precise positioning. They divide a full rotation into a series of steps, allowing for accurate control over angular displacement. Stepper motors can be controlled in open-loop or closed-loop systems, providing excellent control accuracy. Linear actuators are devices that produce linear motion. They are commonly used in applications that require controlled movement along a straight line. Linear actuators can be driven by AC or DC motors, and they can provide precise and repeatable linear motion. Servo motors are widely used in industrial automation and hobbyist applications. They offer high torque and speed control capabilities. Servo motors use feedback control systems to achieve accurate position, velocity, and torque control. They are commonly found in robotics, CNC machines, and remote-controlled vehicles. Vibration generating motors are specialized motors used in haptic applications, such as in smartphones, gaming controllers, and wearable devices. These motors create vibrations or vibrations with variable intensities, providing tactile feedback to the user. In summary, AC and DC motors are electromechanical devices that convert electrical energy into mechanical motion or vibration. This family includes brushed and brushless DC motors, stepper motors, linear actuators, servo motors, and vibration generating motors. Each type of motor has its own unique characteristics and is suitable for specific applications that require precise control over movement or vibration.