Servo Motors
AC and DC servos, integrated servos and matched drives.
Also searched as: servo motorac servoservo drivebrushless servo
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70kg Brushless Servo Motor
Maximum Torque: 56 kg-cmTorque: 70 kg
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750W AC Servo Motor Kit with Brake, 23-Bit Optical Encoder, 80mm Flange 3000-6000rpm 2.39-7.17N.m, 220V
Encoder: 23-Bit OpticalFlange: 80 mmPower: 750 WSpeed: 3000-6000 rpmTorque: 2.39-7.17 N.m
from $310.00Amazon $310.00 -
750W Servo Motor with Drive
Power: 750 WVoltage: 220 VAC
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75kW 100HP Brushless AC Servo Motor
Horsepower: 100 HPPower: 75 kWSpeed: 1000 RPMVoltage: 380V 660V 1000V
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91.105.1161 Servo Drive Motor For Heidelberg Printing Machine Parts
Application: Heidelberg Printing Machine
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from $25.56Amazon $25.56 -
AASD-15A 220V 1.27N.m 400W 60ST-M01330 Industrial Servo Motor
Model: 60ST-M01330Power: 400 WTorque: 1.27 N.mVoltage: 220 V
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AC SERVO MOTOR
Phases: 3Power: 5.5 kWRPM: 3000Torque: 30 NmVoltage: 177 VAC
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AC SERVO MOTOR
Model: AM30/3000Phases: 3Power: 3.8 kWRPM: 2000Torque: 30 Nm
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AC Servo Drive
Power: 1.5kwType: ACVoltage: 220V
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AC Servo Drive for 1kW-2.6kW Servo Motor
Power Range: 1 kW - 2.6 kW
from $462.10Amazon $462.10 -
AC Servo Drive for 200W-400W Servo Motor
Power: 200W-400W
from $339.10Amazon $339.10 -
AC Servo Drive for 2kW-5.5kW Servo Motor
Control Axis: SingleCurrent Rating: 50 AEncoder Lines: 2500Output Power: 2 kW - 5.5 kWVoltage: 220 V AC
from $689.10Amazon $689.10 -
AC Servo Drive for 400W-1000W Servo Motor
Power Range: 400 W - 1000 W
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AC Servo Motor
Centerline Height: 283 mmMaximum Vertical Load Capacity: 250 kgMotor Type: AC ServoRepeatability: 4 sThrough Hole Size: 194.0 mm
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AC Servo Motor
Power: 1.8kWVoltage: 220V
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AC Servo Motor
Power: 600WTorque: 2NM
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AC Servo Motor
NEMA Size: NEMA24Power: 400WTorque: 1.27NMVoltage: 220V
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AC Servo Motor
Efficiency: IE 2Insulation Class: ClassF
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AC Servo Motor
Power: 750WSpeed: 3000rpmTorque: 2.4nmVoltage: 220V
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AC Servo Motor
Phases: 3Power: 2.5KwSpeed: 4000RpmTorque: 8NmVoltage: 184V
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AC Servo Motor
Power: 2200 WRPM: 2000Shaft Diameter: 24 mmTorque: 10.5 NmVoltage: 200 VAC
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AC Servo Motor
Amperage: 64 AFrequency: 267 HzPhases: 3Power: 140 kW
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AC Servo Motor
Power: 450wShaft Diameter: 3/4inSpeed: 1500rpmTorque: 2.84nmVoltage: 200v
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AC Servo Motor
Power: 400W to 750WVoltage: 220V
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AC Servo Motor
Frequency: 50/60HzPower: 1KW to 3.8KWVoltage: 208-230V
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AC Servo Motor
Power: 1000WTorque: 3.18 N.m
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AC Servo Motor
NEMA Size: NEMA34Power: 750WTorque: 2.4NM
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AC Servo Motor & Servo Drive System
Current: 15 APower: 1 kWVoltage: 200 V
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AC Servo Motor 400W 1.27N.m 2.8A
Current: 2.8 APower: 400 WTorque: 1.27 N.mVoltage: 220 V
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AC Servo Motor Controller 1.5A 0.64N.m 60SS20
Current: 1.5 ATorque: 0.64 N.m
About servo motors
Servo motors are rotary or linear actuators that provide precise control of angular or linear position, velocity, and acceleration. They consist of a motor, a feedback device (typically an encoder or resolver), and often an integrated drive or a separate servo drive. Two primary types are AC servo motors, generally three-phase synchronous motors, and DC servo motors, which can be brushed or brushless. Integrated servo motors combine the motor, drive, and feedback into a single unit, simplifying wiring and reducing footprint. Key selection parameters include continuous torque (typically in Nm or oz-in), peak torque, continuous power (W or kW), rated speed (RPM), and voltage (VDC or VAC). Feedback resolution (counts per revolution) and accuracy are critical for precision applications. Form factors vary from NEMA frame sizes (e.g., NEMA 17, 23, 34) to flange-mounted designs, with various shaft configurations including keyed, smooth, and hollow. Environmental ratings like IP codes (e.g., IP65 for dust and water resistance) are important for industrial environments. Common materials for motor housings include aluminum and steel, with various surface treatments for corrosion resistance. Drive interfaces typically include EtherCAT, PROFINET, SERCOS, and CANopen, facilitating integration into industrial control systems.
How to choose
When selecting a servo motor, first determine the required continuous and peak torque, as well as the maximum speed, based on the load and application dynamics. Next, consider the available power supply: AC or DC, and the specific voltage. Evaluate the required precision and repeatability, which dictates the necessary feedback device resolution (e.g., incremental encoder, absolute encoder, resolver). Decide between a separate motor and drive, or an integrated servo motor, considering space constraints and wiring complexity. Finally, assess environmental conditions to select an appropriate IP rating and mounting configuration (e.g., NEMA frame, flange mount, shaft type).