36mm Planetary Gear Motor Model NFP-36GP-3429-EN
$30.00
Maximize power transmission with our 36mm planetary gear motor with encoder, designed for accuracy and space-saving applications. Buy today!
Permanent Magnet DC Planetary Gearbox Motor Data Sheet
The NFP-36GP-3429-EN is a permanent magnet DC planetary gearbox motor with encoder feedback. It supports 6V and 12V DC power, CW and CCW rotation, and a wide speed range from 9rpm to 2,500rpm.
First, planetary gear motors provide strong torque in a compact body. Also, they are useful when a product needs smooth speed reduction, stable motion, and better position control.
Benefits of Using Planetary Gear Motors
- First, high efficiency: The gear structure helps transfer power with less loss.
- In addition, compact design: The motor fits products with limited space.
- Also, high torque density: The gearbox gives strong torque for its size.
- Next, low backlash: The gear design helps support accurate motion.
- Finally, long lifespan: Strong parts help improve service life.
In addition, the encoder can give pulse feedback for speed and position reading. As a result, this motor is useful for drive systems that need control feedback.
Main Specifications
| Motor Model | NFP-36GP-3429-EN |
|---|---|
| Shaft Diameter | 8mm |
| Shaft Length | 20mm |
| Rated Voltage | 6V / 12V DC |
| No Load Speed | 9rpm – 2,500rpm |
| No Load Current | ≤0.3A / ≤0.45A |
| Rotation | CW / CCW |
| Weight | appr. 480g |
Next, the main data above helps users check shaft size, voltage, speed range, current, rotation, and weight. Therefore, users can review the basic fit before comparing each ratio.
Model: NFP-36GP-3429-EN, 6V DC
First, the 6V DC version is suitable for low-voltage drive systems. Also, it offers a broad ratio range for different speed and torque needs.
In addition, low ratios give higher output speed. However, high ratios give lower speed and stronger torque. Therefore, users can select the ratio based on load and speed needs.
6V High Speed Ratios
| Ratio | Gearbox Length | No-load Current | No-load Speed | Rated Current | Rated Speed | Rated Torque | Stall Current | Stall Torque | Stages | NPPR* |
|---|---|---|---|---|---|---|---|---|---|---|
| 3.7:1 | 26.5mm | ≤0.3A | 1,250rpm | ≤1.5A | 625rpm | 0.2kg.cm | ≤3.0A | ≥0.4kg.cm | 1stage | 40.7 |
| 5.2:1 | 26.5mm | ≤0.3A | 900rpm | ≤1.5A | 450rpm | 0.4kg.cm | ≤3.0A | ≥0.6kg.cm | 1stage | 57.2 |
| 14:1 | 34.5mm | ≤0.3A | 330rpm | ≤1.5A | 165rpm | 1.0kg.cm | ≤3.0A | ≥1.8kg.cm | 2stages | 154 |
| 19:1 | 34.5mm | ≤0.3A | 245rpm | ≤1.5A | 123rpm | 1.5kg.cm | ≤3.0A | ≥2.5kg.cm | 2stages | 209 |
| 27:1 | 34.5mm | ≤0.3A | 172rpm | ≤1.5A | 87rpm | 2.0kg.cm | ≤3.0A | ≥3.5kg.cm | 2stages | 297 |
Next, these 6V high speed ratios are useful for faster motion. Therefore, they fit small devices that need speed before high torque.
6V Low Speed Ratios
| Ratio | Gearbox Length | No-load Current | No-load Speed | Rated Current | Rated Speed | Rated Torque | Stall Current | Stall Torque | Stages | NPPR* |
|---|---|---|---|---|---|---|---|---|---|---|
| 51:1 | 42.5mm | ≤0.3A | 91rpm | ≤1.5A | 46rpm | 4.0kg.cm | ≤3.0A | ≥6.0kg.cm | 3stages | 561 |
| 100:1 | 42.5mm | ≤0.3A | 47rpm | ≤1.5A | 23.5rpm | 7.5kg.cm | ≤3.0A | ≥12.0kg.cm | 3stages | 1,100 |
| 139:1 | 42.5mm | ≤0.3A | 33rpm | ≤1.5A | 17rpm | 10.0kg.cm | ≤3.0A | ≥15.0kg.cm | 3stages | 1,529 |
| 264:1 | 50.5mm | ≤0.3A | 17.5rpm | ≤1.5A | 9rpm | 20.0kg.cm | ≤3.0A | ≥25.0kg.cm | 4stages | 2,904 |
| 515:1 | 50.5mm | ≤0.3A | 9rpm | ≤1.5A | 6rpm | 35.0kg.cm | ≤3.0A | ≥50.0kg.cm | 4stages | 5,665 |
Note: All reduced no-load speeds have a tolerance of ±15%. Also, * NPPR means number of pulses per revolution.
Also, these 6V low speed ratios provide stronger output torque. As a result, they are useful for slow movement and higher load drive tasks.
Model: NFP-36GP-3429-EN, 12V DC
First, the 12V DC version gives a higher speed range than the 6V version. Also, it can provide stronger output for many compact drive systems.
In addition, the 12V version supports the same encoder pulse structure. Therefore, users can still get speed or position feedback through the encoder.
12V High Speed Ratios
| Ratio | Gearbox Length | No-load Current | No-load Speed | Rated Current | Rated Speed | Rated Torque | Stall Current | Stall Torque | Stages | NPPR* |
|---|---|---|---|---|---|---|---|---|---|---|
| 3.7:1 | 26.5mm | ≤0.45A | 2,500rpm | ≤2.5A | 1,250rpm | 0.6kg.cm | ≤5.0A | ≥1.0kg.cm | 1stage | 40.7 |
| 5.2:1 | 26.5mm | ≤0.45A | 1,800rpm | ≤2.5A | 900rpm | 0.8kg.cm | ≤5.0A | ≥1.4kg.cm | 1stage | 57.2 |
| 14:1 | 34.5mm | ≤0.45A | 660rpm | ≤2.5A | 335rpm | 2.0kg.cm | ≤5.0A | ≥3.8kg.cm | 2stages | 154 |
| 19:1 | 34.5mm | ≤0.45A | 490rpm | ≤2.5A | 247rpm | 3.0kg.cm | ≤5.0A | ≥5.0kg.cm | 2stages | 209 |
| 27:1 | 34.5mm | ≤0.45A | 345rpm | ≤2.5A | 175rpm | 4.0kg.cm | ≤5.0A | ≥7.0kg.cm | 2stages | 297 |
Next, these 12V high speed ratios are useful when the device needs faster output. Therefore, they are a good fit for light-load or medium-load drive tasks.
12V Low Speed Ratios
| Ratio | Gearbox Length | No-load Current | No-load Speed | Rated Current | Rated Speed | Rated Torque | Stall Current | Stall Torque | Stages | NPPR* |
|---|---|---|---|---|---|---|---|---|---|---|
| 51:1 | 42.5mm | ≤0.45A | 182rpm | ≤2.5A | 92rpm | 8.0kg.cm | ≤5.0A | ≥13.0kg.cm | 3stages | 561 |
| 100:1 | 42.5mm | ≤0.45A | 95rpm | ≤2.5A | 47rpm | 15.0kg.cm | ≤5.0A | ≥25.0kg.cm | 3stages | 1,100 |
| 139:1 | 42.5mm | ≤0.45A | 67rpm | ≤2.5A | 34rpm | 20.0kg.cm | ≤5.0A | ≥33.0kg.cm | 3stages | 1,529 |
| 264:1 | 50.5mm | ≤0.45A | 35rpm | ≤2.5A | 18rpm | 40.0kg.cm | ≤5.0A | ≥50.0kg.cm | 4stages | 2,904 |
| 515:1 | 50.5mm | ≤0.45A | 18rpm | ≤2.0A | 12rpm | 40.0kg.cm | ≤5.0A | ≥50.0kg.cm | 4stages | 5,665 |
Note: All reduced no-load speeds have a tolerance of ±15%. Also, * NPPR means number of pulses per revolution.
Finally, these 12V low speed ratios provide stronger torque. In short, they are useful for slow movement, higher load, and stable control.
Ball-bearing Planetary Gearhead Motor Epicyclic Gear Motor Dimension
The following outline drawing shows the motor body and gearbox size. First, users can check the shaft size and overall length. Next, they can review the mount space before product design.
Applications of Planetary Gear Motors
- Automation and robotics: Used for precise movement and position control.
- Material handling: Used for conveyors and lifting devices that need controlled torque.
- Aerospace and defense: Used in systems that need reliable and precise motion.
- Medical equipment: Used in devices that need smooth and accurate motion control.
Also, the compact gearbox helps save space in small devices. As a result, the motor can fit many systems that need torque, feedback, and compact size.
Small DC Geared Motor with Encoder Wiring Diagram
First, proper maintenance can help keep planetary gear motors reliable over time. For example, regular checks and proper lubrication can reduce wear.
In addition, choosing a high-quality motor from a trusted maker is important. Therefore, the motor can provide more stable output in long-term use.
Encoder Specifications
Next, the encoder data below helps users check pulse output, voltage, signal type, and interface type. As a result, it is easier to match the motor with a control board.
| Encoder Type | AB Dual-phase Incremental Magnetic Hall Encoder |
|---|---|
| Line Speed | Basic Pulse 11PPR x Gear Reduction Ratio |
| Supply Voltage | 3.3V / 5.0V DC |
| Basic Skills | Built-In Pull-up Shaping Resistor, Directly Connected to the Microcontroller |
| Interface Type | PH2.0 (Standard Connecting Cable) |
| Output Signal Type | Square Wave AB Phase |
| Response Frequency | 100Khz |
| Basic Pulse Number | 11 PPR |
| Number of Magnetic Ring Trigger Poles | 22 Poles (11 Pairs Of Poles) |
What Are Planetary Gear Motors?
Planetary gear motors use a central sun gear, several planet gears, and a ring gear. First, the sun gear drives the planet gears. Next, the planet gears move around the sun gear and transfer torque.
Also, this gear layout gives a high reduction ratio in a compact body. As a result, planetary gear motors are useful for products that need high torque and limited space.
Typical Applications
- Robotics
- Automation equipment
- Smart home devices
- Medical equipment
- Material handling systems
- Precision control products
Finally, the NFP-36GP-3429-EN is suitable for compact products that need a planetary gearbox, encoder feedback, stable torque, and low-voltage DC power.
Keywords: 36mm planetary gear motor, NFP-36GP-3429-EN, high torque motor, 12V planetary motor, precision DC motor, geared motor with encoder
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Shipping:
1.Delivery: DHL/FedEx 3-5 days.
2.Item will be shipped within 1-3 business days after the payment.
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FAQ
Q: If customized, what information should you provide?
A: You need to provide the basic specification of the motor, such as: Dimensions, Sizes Applications, Voltage, Speed and Torque. It’s better to offer application prototype drawings to us if possible.
Q: What’s your main motors?
A: Diameter 4mm~42mm Dc Micro Motor And Gear Motor, Auto Dc Motor, Electric Motor, Gear Motor, Mini Dc Motor, Brush Dc Motor, Brushless Dc Motor, Spur Gear Motor, Micro Motor, Vibration Motor Etc.
Q: What’s the main application of the micro dc motor?
A: Our mini DC motors are widely used in Home Applications, Office Equipment, Health-Care Application, Sanitation Industry, High-Class Toy, Banking System, Electronic and Electrical Tools, Automation Industry, Bank Equipments, Payment Equipments, Vending Machines, Power Door Lock, Electric Door Lock.


Kamran Akmal –
At 480g, it’s on the heavier side for a 36mm motor, but still appropriate for compact robotic systems and automation where size and weight matter.
Chelsea Hernandez –
The motor works fine and the performance is at an acceptable level for my project. Successfully connected it to my microcontroller and positioning works fine. Very happy with its functionality.🥳