AC & DC Motors
Induction, brushed, brushless and gear motors by frame size.
Also searched as: ac motordc motorbldcgear motorinduction motor
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AC Motor
Enclosure: TENV
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56V BLDC Motor
Motor Type: BLDCVoltage: 56V
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56V BLDC Motor
Motor Type: BLDCVoltage: 56V
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56V BLDC Motor
Motor Type: BLDCVoltage: 56V
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56V BLDC Motor
Motor Type: BLDCVoltage: 56V
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AC Motor
Frame Size: 215TInput Voltage: 230VMaximum HorsePower: 10Number Of Phases: 1Overall Length: 17.4400 inch
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AC Motor
Frame Size: 56Full Load Torque: 3.01Input Voltage: 115V; 208-230VNumber Of Phases: 1
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AC Motor
Frame Size: F56HInput Voltage: 460V; 208-230VMaximum HorsePower: 2Mount Style: Resilient BaseNumber Of Phases: 3
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BLDC Motor
Motor Type: BLDC
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BLDC Motor
Motor Type: BLDC
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BLDC Motor
Motor Type: BLDC
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DC Motor: 1 hp
Frame Size: ZS56CFull Load Amperage: 5.0 AHorsepower: 1 hpInput Voltage: 230VMaximum RPM: 1750.00
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DC Motor: 1/2 hp
Arm Volts DC: 12 VFull Load Amperage: 39.0 AHorsepower: 1/2 hpInput Current: DCMaximum RPM: 1800.00
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DC Motor: 1/8 hp
Horsepower: 1/8 hp
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DC Motor: Enclosed, 1/8 hp, 30 RPM
Enclosure: EnclosedHorsepower: 1/8 hpInput Voltage: 120VNameplate RPM: 30
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DC Motor: Open Enclosure, 1/8 hp, 30 RPM
Enclosure: OpenHorsepower: 1/8 hpMaximum RPM: 30Nameplate RPM: 30Voltage: 120 Input
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DC Motor: TENV Enclosure, 1/4 hp, 83 RPM
Enclosure: TENVFull Load Torque: 125.00Horsepower: 1/4 hpInput Current: DCMinimum Rpm: 1.40
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Permanent Split Cap AC Motor
Horsepower: 0.75 hpInput Voltage: 120V AC
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Single Phase AC Motor
Frame Size: 56Mount Style: C-Face with Base & C-Face without BaseVoltage: 115V; 208-230V
About ac & dc motors
AC and DC motors convert electrical energy into mechanical energy, driving a wide range of industrial and consumer applications. Key types include induction motors, which operate on alternating current and are known for their robustness and efficiency in fixed-speed applications; brushed DC motors, offering simple control and high starting torque; brushless DC (BLDC) motors, providing high efficiency, long life, and precise control without brush wear; and gear motors, which integrate a gearbox with a motor to reduce speed and increase torque. Selection is primarily driven by the required output power, torque, and speed, often specified in Watts, N-m, and RPM, respectively. Frame size, such as NEMA or IEC standards (e.g., NEMA 17, IEC 71), dictates mounting dimensions and often correlates with power output. Voltage and current ratings (e.g., 24VDC, 230VAC) are critical for electrical compatibility. Additional considerations include enclosure ratings (e.g., IP65 for dust and water protection), operating temperature range, and shaft configuration (e.g., D-cut, keyed, or spline). Materials typically involve copper windings, steel laminations, and aluminum or cast iron housings.
How to choose
To select an AC or DC motor, first determine the required mechanical output: torque (N-m) and speed (RPM) for the application. This will dictate the necessary motor power. Second, specify the available electrical supply: AC or DC voltage and frequency. This narrows down the motor type (e.g., induction for AC, brushed/BLDC for DC). Third, consider the operating environment to determine the appropriate ingress protection (IP) rating and temperature range. Finally, evaluate the required mounting configuration, such as NEMA or IEC frame size, and shaft type. If the application demands high torque at low speed, a gear motor should be considered to simplify the mechanical design and improve efficiency.