GGM geared motors are specialized drive solutions featuring compact design, stable performance, and high durability. The portfolio includes AC and DC motors along with compatible gearheads, meeting diverse torque and speed requirements. These products are widely used in automated conveyor systems, packaging machinery, medical equipment, and industrial production lines that demand precision and space-saving installation.


The GGM K35-3640 BLDC Series is a Ø35mm planetary geared motor line, utilizing the KB3640S1 12V or KB3640S2 24V motor. It features 13 gear ratios from 1/5 to 1/721, supporting PWM speed control, 6 pulse/rev FG signal, CW/CCW control, and electric brake input.

The GGM K35-3429 & K35-3448 series are Ø35mm DC planetary geared motors, available in 12V or 24V with various speed options. They feature 13 gear ratios ranging from 1/5 to 1/721, a maximum peak efficiency output torque of up to 12kgf·cm, and optional incremental encoders.

The GGM K30-2847 Series is a line of Ø30mm DC planetary geared motors, utilizing the KD2847T1 12V or KD2847T2 24V motor. The product features 13 gear ratios ranging from 1/5 to 1/721, output speeds from 8.7 to 1,260 rpm, and a maximum efficiency torque of up to 12kgf·cm.

The GGM K22-2418 BLDC Series is a Ø22mm planetary geared motor line, utilizing KB2418U1 12V or KB2418R2 24V motors. It features 20 gear ratios ranging from 1/4 to 1/1996, with integrated PWM, FG signal, and CW/CCW control for compact automation equipment.

The GGM K22-2032 Series is a Ø22mm DC planetary geared motor line, utilizing the KD2032R1 12V or KD2032P2 24V motor. Featuring 20 gear ratios ranging from 1/4 to 1/1996, it is ideal for compact automation equipment, actuators, and OEM drive assemblies requiring a space-saving design.

The GGM K12-1230 Series is a Ø12mm DC planetary geared motor available in 2.4V, 3V, or 13V, with gear ratios from 1/4 to 1/4096, designed for miniature devices.

The GGM K16-1627 Series is a Ø16mm DC planetary geared motor utilizing the KD1627R1 12V or KD1627M2 24V motor. It features 29 gear ratios ranging from 1/4 to 1/4592, making it ideal for mini robots, testing equipment, and OEM drive assemblies requiring a compact footprint.

The GGM K7I15N Series 15W is a 70mm frame size AC Induction Motor, ideal for automated machinery, mini conveyors, packaging machines, labeling machines, and light-load transmission systems. The motor can be paired with a GGM K7G gearhead to reduce output speed and increase torque, forming a compact and stable geared motor unit.

The GGM K6I6N Series 6W is a compact AC induction motor with a 60mm flange size, ideal for automated machinery, mini conveyors, small packaging machines, labeling equipment, and OEM devices. It can be paired with the GGM K6G gearhead to reduce output speed and increase torque, forming a stable geared motor unit for low-power transmission systems.

The GGM K8I25N Series 25W motor is an 80mm AC induction motor designed for automated machinery, mini conveyors, packaging machines, labeling machines, feeders, and OEM equipment. It can be paired with a GGM K8G gearhead to reduce output speed, increase torque, and optimize drive performance for low-power applications.

The GGM K9I40N Series 40W motor is a 90mm AC induction motor designed for automation equipment, conveyors, packaging machines, feeders, and drive mechanisms requiring high torque. It can be paired with a GGM K9G gearhead to reduce output speed and increase torque, forming a stable geared motor unit.

The GGM K9I60F Series 60W motor is a 90mm frame size AC induction motor, ideal for drive mechanisms requiring higher torque such as conveyors, feeders, packaging machines, and OEM equipment. The motor can be paired with a GGM K9P gearhead to reduce output speed, increase torque, and form a robust geared motor unit.

The GGM K10I200F Series 200W motor is a 104mm AC induction motor designed for high-torque transmission applications such as conveyors, feeders, packaging machines, and industrial OEM equipment. It can be paired with the GGM K10H gearhead to reduce output speed, increase torque, and ensure stable operation in automated production lines.