Description
Digital Micro Servo from the global company FEETECH, model FT3325M, offering super performance and high torque, operates efficiently at 6 volts to give you a very strong torque of up to 7.2 kg and an accurate movement angle of 120 degrees.
Professional and high-power digital servo motor (FEETECH FT3325M Micro Servo), specially designed for advanced mechanical applications that require powerful torque and excellent mechanical stability in a compact size. The motor features durable, rigid, and high-precision metal gears capable of withstanding continuous mechanical stress without wear, with an internal digital motor that ensures ultra-fast immediate response and extreme positioning accuracy with built-in protection against vibration and oscillation.
Thanks to its very high torque for its size, estimated at 7.2 kg/cm when supplied with 6 volts, and its precisely defined movement angle of 120 degrees, this servo is the benchmark and most suitable for guiding advanced motion smart robot joints, heavy-load mechanical robot arms, control surfaces in remote control airplanes (RC Airplanes), fast wireless cars (RC Cars), and advanced engineering educational systems compatible with Arduino boards, ESP32, and various drive modules, PWM controllers, and RC.
FEETECH FT3325M 120-Degree High-Torque Digital Micro Servo Motor (Premium High-Velocity Metal Gear Core - 7.2KG/cm Actuator Grade at 6V).
Industrial-grade FEETECH FT3325M Digital Micro Servo Motor, precision-engineered to deliver elite mechanical force, rapid actuation velocity, and high-fidelity positional holding torque within a space-optimized micro form factor. Equipped with a heavy-duty, low-wear internal metal gear train layout driven by an advanced high-resolution digital core, this high-performance actuator ensures smooth ratiometric tracking across a focused 120-degree operational arc with near-zero deadband jitter or mechanical backlash.
Pumping out an impressive stabilization stall torque of 7.2KG/cm when operating on a standard 6V rail, this servo easily manages heavy structural drag and dynamic physical friction. Built with premium internal core components, it maintains absolute environmental operational stability under continuous, high-frequency telemetry cycles. The absolute hardware benchmark standard for academic mechatronics developers fabricating advanced robotic joints, engineering multi-axis robotic arms, reinforcing control surfaces on high-velocity RC airplanes, calibrating steering link systems on RC cars, and deploying precise automated sub-systems interfacing with Arduino, ESP32, and professional flight control hardware.