Motors and motor mounts are fundamental components in your robotics design, serving various functions to drive movement, actuate mechanisms, and provide power. They are often used in conjunction with sensors, such as cameras, LiDAR, and ultrasonic sensors, to enable autonomous navigation of robots.
The Maverick Planetary DC Gear Motor with 71.2:1 planetary gearbox features a high‑torque reduction system engineered for demanding robotic and automation applications. Its 6mm hex output shaft ensures secure coupling with Studica‑compatible components and other hex‑based mechanical systems. Built on Studica’s industrial‑grade motor platform, this unit provides reliable, consistent performance suited for precision‑controlled, heavy‑load mechanisms.
The Maverick Planetary DC Gear Motor with 99.5:1 planetary gearbox features a high‑torque reduction system engineered for demanding robotic and automation applications. Its 6mm hex output shaft ensures secure coupling with Studica‑compatible components and other hex‑based mechanical systems. Built on Studica’s industrial‑grade motor platform, this unit provides reliable, consistent performance suited for precision‑controlled, heavy‑load mechanisms.
The Maverick Planetary DC Gear Motor with 139:1 planetary gearbox features a high‑torque reduction system engineered for demanding robotic and automation applications. Its 6mm hex output shaft ensures secure coupling with Studica‑compatible components and other hex‑based mechanical systems. Built on Studica’s industrial‑grade motor platform, this unit provides reliable, consistent performance suited for precision‑controlled, heavy‑load mechanisms.
The Maverick Planetary DC Gear Motor with 188:1 planetary gearbox features a high‑torque reduction system engineered for demanding robotic and automation applications. Its 6mm hex output shaft ensures secure coupling with Studica‑compatible components and other hex‑based mechanical systems. Built on Studica’s industrial‑grade motor platform, this unit provides reliable, consistent performance suited for precision‑controlled, heavy‑load mechanisms.