Gear motor dimension (mm)
Application: Robot, Toys, Remote Control Toy cars, etc.
| Motor model No | Rated voltage VDC | No-load speed r/min | No-load current mA | Stall torque g.cm | Stall current A |
| TFE-130RA-12215 | 6.0 | 11500 | 120 | 20 | 0.85 |
| TFE-130RA-14175 | 3.0 | 8000 | 120 | 13 | 0.70 |
| TFE-130RA-18100 | 3.0 | 11500 | 250 | 20 | 1.80 |
Gearbox with motor:TGP01S-A130-12215-XXX
Reduction ratio: 48 120 180 220 288
No-load speed rpm: 230 90 60 50 38
Max. momentary tolerance torque kg.cm: 0.7 1.4 2.0 2.2 2.8
TGP01S-A130-14175-XXX
Reduction ratio: 48 120 180 220 288
No-load speed rpm: 150 60 40 33 25
Max. momentary tolerance torque kg.cm: 0.5 0.9 1.2 1.4 1.8
TGP01S-A130-18100-XXX
Reduction ratio: 48 120 180 220 288
No-load speed rpm: 230 90 60 50 38
Max. momentary tolerance torque kg.cm: 0.7 1.4 2.0 2.2 2.8
| TGP01D-A130 | TGP01S-A130 |
| TGP02D-A130 | TGP02S-A130 |
A Direct Current (DC) motor is a rotating electrical device that converts direct current, of electrical energy, into mechanical energy. An Inductor (coil) inside the DC motor produces a magnetic field that creates rotary motion as DC voltage is applied to its terminal. Inside the motor is an iron shaft, wrapped in a coil of wire. This shaft contains 2 fixed, North and South, magnets on both sides which causes both a repulsive and attractive force, in turn, producing torque. ISL Products designs and manufactures both brushed DC motors and brushless DC motors. We tailor our DC motor’s size and performance to meet your desired specs.
Need help determining the motor suitable for your application? Check our motor selection guide or visit the ISL motor database.
In the conceptual design stage, the motor selection process may be challenging, but our engineers will help. We provide concierge services for all DC motor and gear motor projects. Our team of engineers works with you to provide the best component solutions. The following points can help you determine and select the most suitable motor or gear motor for our application.
▎Design requirements – the design evaluation stage of studying product development requirements, design parameters, equipment functions, and product optimization.
▎Design calculations – calculations used to determine which motor is best suited for your application. The design calculation determines the transmission ratio, torque, rotating mass, service factor, suspension load, and test analysis.
▎Type of DC motor/gear motor – the most common motor converts electrical energy into mechanical energy. These types of motors are powered by direct current (DC).
▎Motor Specifications – Once the design calculations are performed, and the application parameters are defined, you can use this data to determine which motor or gear motor will best fit your application. Some of the most common specs to consider when selecting a motor or gear motor would be:
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