Motor Drives & Controllers
VFDs, servo amplifiers, ESCs and motion controllers.
Also searched as: vfdvariable frequency driveescmotor controllerservo amplifier
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DC Motor Controller Potentiometer Series 2600 Reversible
Motor Type: DC
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DC Motor Controller, 6-90V
Voltage: 6-90V
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DC Motor Driver, L298 Dual H Bridge
Input Voltage: 6.5-27V DCOutput Current: 7A per portTotal Output Power: 160W
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DC Motor Forward Reverse Controller 20A
Current: 20AVoltage: 6V, 12V, 24V DC
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DC Motor Speed Controller, DC 12V 24V 36V
Voltage: 12 VDC, 24 VDC, 36 VDC
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DC PWM Motor Speed Controller Low Voltage Motor Speed Controller PWM 0~100% Adjustable Drive Module
Adjustment Range: 0-100%Amperage: 2AVoltage: 1.8V-12V
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DC Planet Gear Motor Controller
Current: 20 AVoltage: 10-30 V
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from $305.00Made-in-China $305.00 -
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EM730 series 250kw AC Drive Frequency Inverter VFD
Power: 250kW
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ESC 12100 - 100A Brushless Speed Controller
Continuous Current: 100 AMaximum Current: 180 A
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Economical VFD Variable Frequency Drive
Input Voltage: 220V, 380VPower: 0.75KW, 1.5KW, 2.2KW, 4KW, 5.5KW
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Electric Scooter Brushless Motor Controller 48V 20A
Current: 20AVoltage: 48V
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Es580 Variable Frequency Drive VFD Motor Speed Inverter 3 Phase 380V AC Drive
Phase: 3 PhaseVoltage: 380V
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F405 65A FC ESC Fly Flight Stack Flight Controller 4-in-1 3-6s
Burst Peak Current: 75AContinuous Current per Motor: 65AInput Voltage: 3-6sMCU: STM32F405 or F407 chip
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F405 V4 60A Bls FC ESC Flight Stack Flight Controller 4-in-1 3-6s Lipo for RC Fpv Drone
Current: 60ALipo: 3-6s
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F722 Mini Stack + 30A 4in1 ESC
ESC Current: 30AProcessor: STM32H723VGT6Processor Speed: 480MHz
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FANUC A06B-6114-H207 AISV 40/40 SERVO Amplifier
Input Voltage (AC): 283 - 339 VOutput Voltage (AC): 240 VPower: 9 KW
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FLAME 180A 12S V2 ESC
Burst Current: 200AContinuous Current: 180AVoltage: 6-12S
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FRENIC-Eco series Variable Frequency Drive
Max Output Power: 2 hpVoltage: 460 V AC
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Generic 750W 1HP VFD, AC 110-220V Variable Frequency Drive, Single Phase to 3 Phase Converter
Horsepower: 1 HPInput Phase: Single PhaseInput Voltage: 110-220V ACOutput Phase: 3 PhasePower: 750 W
from $58.95Amazon $58.95 -
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HV400V50A ESC - 10KW FOC Sic High Power Density
Current: 50APower: 10KWVoltage: 400V
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Hall BLDC Motor Driver
Max Output Current: 15 AVoltage: 24-48 V
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INVERTER VSD/VFD, 200-240V AC, 0.2-590Hz
Frequency Range: 0.2-590 HzVoltage: 200-240 VAC
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Industrial Grade PWM DC Motor Speed Controller, DC 10V
Max Current: 100 ARated Current: 60 AVoltage: 10 VDC
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L293 L293D 16-pin IC Stepper Motor Driver
Output Current Capability Per Channel: 600 mAPeak Output Current Per Channel: 1.2 A
About motor drives & controllers
Motor drives and controllers regulate the speed, torque, and position of electric motors. This category encompasses Variable Frequency Drives (VFDs), servo amplifiers, Electronic Speed Controllers (ESCs), and dedicated motion controllers. VFDs, also known as AC drives or inverters, convert fixed-frequency AC power to variable-frequency AC power to control induction or synchronous AC motors, typically ranging from fractional horsepower to megawatts, with input voltages commonly at 208V, 400V, 480V, 600V, or 690V. Servo amplifiers provide precise control for servo motors, often in closed-loop systems utilizing feedback from encoders or resolvers, characterized by their current, voltage, and power ratings, and communication protocols such as EtherCAT, PROFINET, or SERCOS. ESCs are specialized motor controllers for brushless DC (BLDC) motors, prevalent in UAVs and robotics, defined by their continuous current rating, burst current, and cell count (e.g., 3S, 6S LiPo compatibility). Motion controllers coordinate multiple axes of motion, integrating with servo amplifiers and VFDs to execute complex trajectories. Selection criteria include motor type (AC induction, permanent magnet synchronous, stepper, BLDC), power requirements (kW, HP), voltage (VAC, VDC), current (A), control mode (V/f, vector, direct torque control), feedback type, and communication interface.
How to choose
When selecting a motor drive or controller, first identify the motor type: AC induction, permanent magnet synchronous, brushless DC, or stepper. Next, determine the required power output, considering the motor's continuous and peak current, voltage, and power ratings (kW/HP). Third, specify the necessary control mode; VFDs often use V/f or vector control, while servo amplifiers require precise current/position/velocity control. Fourth, consider feedback requirements, such as encoder resolution or resolver type, crucial for closed-loop systems. Finally, select the appropriate communication interface (e.g., EtherCAT, Modbus, CANopen) to integrate with the overall control system. Trade-offs involve cost, precision, and integration complexity.