20mm Worm Gear Motor Model NFP-GW180A-D
$22.00
Transform your builds with the specialized 12v dual shaft worm gear motor high torque. It is the perfect component for your engineering needs!
Ask for a quotation for mass production quantity, contact us or customizations and integration.
Double Shaft CW CCW Worm Gear Motor Parameters
First, the NFP-GW180A-D is a double shaft CW CCW worm gear motor for compact drive systems. Also, it supports 6V, 12V, and 24V DC power options.
In addition, the double shaft design provides output on both sides of the gearbox. Therefore, it is useful for products that need flexible mechanical layout and two-side drive connection.
Moreover, the worm gear reducer helps provide low speed and high torque in a compact body. As a result, this motor is suitable for locks, robots, instruments, curtains, and small automation equipment.
Main Product Features
- First, double shaft design: The two-side output shaft helps support flexible drive layouts.
- In addition, CW and CCW rotation: The motor supports reversible movement.
- Also, voltage options: The motor supports 6V, 12V, and 24V DC systems.
- Next, worm gear reducer: The gearbox supports low-speed and high-torque output.
- Moreover, compact body: The right-angle structure helps save installation space.
- Finally, wide speed range: Users can choose slow or faster output based on the load.
Double Shaft Worm Gear Motor Performance Data
6V DC Performance Data
First, the 6V DC table below helps users compare no-load speed, rated speed, torque, and current. Also, it is useful for low-voltage products and battery-powered devices.
In addition, lower speed options provide stronger torque. Therefore, users should choose the speed based on load, motion range, and working time.
| Voltage | No-load Speed | Rated Speed | Rated Torque | Rated Current | Stall Torque | Stall Current |
|---|---|---|---|---|---|---|
| 6V DC | 3rpm | 2.4rpm | 4kg.cm | 0.2A | 18kg.cm | 0.8A |
| 6V DC | 6rpm | 4.5rpm | 3kg.cm | 0.2A | 15kg.cm | 0.8A |
| 6V DC | 8rpm | 6rpm | 2kg.cm | 0.2A | 8kg.cm | 0.8A |
| 6V DC | 16rpm | 12rpm | 1kg.cm | 0.2A | 4kg.cm | 0.8A |
| 6V DC | 26rpm | 20rpm | 0.7kg.cm | 0.2A | 2.5kg.cm | 0.8A |
| 6V DC | 34rpm | 27rpm | 0.4kg.cm | 0.2A | 1.6kg.cm | 0.8A |
| 6V DC | 75rpm | 57rpm | 0.2kg.cm | 0.2A | 0.8kg.cm | 0.8A |
Note: All reduced no-load speeds have a tolerance of ±15%.
As a result, the 6V DC version gives output speeds from 3rpm to 75rpm. Moreover, the 3rpm option gives the strongest rated torque in this table.
6V DC Selection Notes
- First, for high torque: Choose 3rpm, 6rpm, or 8rpm.
- In addition, for balanced output: Choose 16rpm or 26rpm.
- Also, for faster output: Choose 34rpm or 75rpm.
- Finally, for 6V products: Use this version when the system uses 6V DC power.
12V DC Performance Data
Next, the 12V DC table provides more speed options and stronger torque choices. Therefore, it is useful for 12V control boards, smart devices, and small automation modules.
Also, the 12V version can provide up to 10kg.cm rated torque. As a result, it is suitable for heavier low-speed tasks in compact products.
| Voltage | No-load Speed | Rated Speed | Rated Torque | Rated Current | Stall Torque | Stall Current |
|---|---|---|---|---|---|---|
| 12V DC | 3rpm | 2.4rpm | 4kg.cm | 0.4A | 18kg.cm | 2A |
| 12V DC | 6rpm | 4.8rpm | 10kg.cm | 0.4A | 40kg.cm | 2A |
| 12V DC | 13rpm | 10rpm | 8kg.cm | 0.4A | 30kg.cm | 2A |
| 12V DC | 18rpm | 14rpm | 3.5kg.cm | 0.4A | 14kg.cm | 2A |
| 12V DC | 26rpm | 20rpm | 2.4kg.cm | 0.4A | 10kg.cm | 2A |
| 12V DC | 34rpm | 27rpm | 2.2kg.cm | 0.4A | 9kg.cm | 2A |
| 12V DC | 52rpm | 40rpm | 1.8kg.cm | 0.4A | 7kg.cm | 2A |
| 12V DC | 75rpm | 57rpm | 1kg.cm | 0.4A | 4kg.cm | 2A |
| 12V DC | 150rpm | 114rpm | 0.7kg.cm | 0.4A | 3kg.cm | 2A |
Note: All reduced no-load speeds have a tolerance of ±15%.
Therefore, the 12V DC version gives both slow high-torque and faster output choices. In addition, the 6rpm option gives the strongest rated torque in this table.
12V DC Selection Notes
- First, for maximum torque: Choose the 6rpm option.
- In addition, for balanced output: Choose 13rpm, 18rpm, 26rpm, or 34rpm.
- Also, for higher speed: Choose 52rpm, 75rpm, or 150rpm.
- Finally, for 12V products: Use this version when the product uses a 12V DC power supply.
24V DC Performance Data
Furthermore, the 24V DC version provides similar speed options with lower rated current than the 12V version. Therefore, it is useful for 24V control systems and industrial power supplies.
Also, the 24V version can provide up to 10kg.cm rated torque. As a result, it works well for compact 24V products that need strong low-speed output.
| Voltage | No-load Speed | Rated Speed | Rated Torque | Rated Current | Stall Torque | Stall Current |
|---|---|---|---|---|---|---|
| 24V DC | 6rpm | 4.8rpm | 10kg.cm | 0.2A | 40kg.cm | 1A |
| 24V DC | 13rpm | 10rpm | 8kg.cm | 0.2A | 30kg.cm | 1A |
| 24V DC | 18rpm | 14rpm | 3.5kg.cm | 0.2A | 14kg.cm | 1A |
| 24V DC | 26rpm | 20rpm | 2.4kg.cm | 0.2A | 10kg.cm | 1A |
| 24V DC | 34rpm | 27rpm | 2.2kg.cm | 0.2A | 9kg.cm | 1A |
| 24V DC | 52rpm | 40rpm | 1.8kg.cm | 0.2A | 7kg.cm | 1A |
| 24V DC | 75rpm | 57rpm | 1kg.cm | 0.2A | 4kg.cm | 1A |
| 24V DC | 150rpm | 114rpm | 0.7kg.cm | 0.2A | 3kg.cm | 1A |
Note: All reduced no-load speeds have a tolerance of ±15%.
In conclusion, the 24V DC version provides strong torque with lower rated current. Also, the 6rpm option gives the strongest rated torque and stall torque in this table.
24V DC Selection Notes
- First, for maximum torque: Choose the 6rpm option.
- In addition, for stable low speed: Choose 13rpm, 18rpm, or 26rpm.
- Also, for higher speed: Choose 52rpm, 75rpm, or 150rpm.
- Finally, for 24V products: Use this version when the product uses a 24V DC power supply.
Worm Drive Electric Motor Gear Reducer Dimension
First, the outline drawing helps users check the gear reducer size, motor body, double shaft layout, and mounting space. Therefore, it is useful before sample testing and mechanical design.
In addition, the right-angle worm gearbox helps save installation space. As a result, this motor can fit compact equipment where a straight gearbox is not suitable.
Moreover, the double shaft structure supports flexible mechanical drive layouts. Therefore, engineers can use both output sides when the product needs two-side movement or easier linkage design.
Outline Drawing and Design Benefits
- First, right-angle gearbox: The worm gear reducer helps save internal product space.
- In addition, double shaft output: The shaft layout supports two-side drive structures.
- Also, compact motor body: The motor can fit small mechanical products.
- Next, reversible operation: CW and CCW rotation support flexible motion control.
- Moreover, self-locking support: The worm gearbox can help hold position after power removal.
- Finally, clear dimensions: The drawing helps reduce design changes before production.
Applications and Selection Tips
Common Applications
Finally, this double shaft CW CCW worm gear motor is useful for compact products that need low speed, high torque, and reversible output. For example, it can work in robots, door locks, medical instruments, electric curtains, and automation systems.
- First, mixers: The motor can drive small rotating mechanisms.
- In addition, robots: The double shaft output helps support compact movement layouts.
- Also, door locks and safes: The worm gear reducer can support position holding.
- Next, medical instruments: The slow output helps controlled movement.
- Moreover, electric curtains: The reversible operation supports open and close motion.
- Also, vending machines: The motor can drive compact delivery mechanisms.
- Finally, automatic monitoring systems: The right-angle gearbox helps fit space-limited designs.
How to Choose the Right Version
First, choose the voltage based on the power supply and control board. Also, choose the speed based on the required movement time and load torque.
In addition, choose a lower speed when the load needs more torque. Therefore, 3rpm, 6rpm, and 13rpm options are useful for heavier loads.
Moreover, choose a higher speed when the product needs faster movement. As a result, 75rpm and 150rpm options are better for faster light-load motion.
Final Selection Notes
- First, check voltage: Choose 6V, 12V, or 24V based on the power supply.
- In addition, check torque: Choose a lower speed option when the load is heavier.
- Also, check speed: Choose a higher speed option when faster movement is required.
- Next, check shaft layout: Confirm whether the double shaft design matches the product structure.
- Moreover, check duty cycle: Avoid long overload or stall use for better service life.
- Finally, test real load: Confirm real current and temperature before production.
In short, the NFP-GW180A-D double shaft CW CCW worm gear motor is a good fit for products that need 6V, 12V, or 24V DC power, right-angle gear reducer layout, reversible rotation, double shaft output, low speed, and high torque.
Keywords: worm drive motor, brushed electric motor, small gear reducer, 12V motor
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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.








Keith Oliver –
Compact and powerful! This dual shaft worm gear motor is exactly what I need for my DIY project. Quiet operation at low speeds and reliable torque. The dual shaft design increases design flexibility.
Joanna –
This worm gear motor has proven to be a reliable performance with great torque, even though I originally bought it for just one project. The store I will repurchase from. 🛝
Maik Govett –
Finally got around to using this worm gear motor in an automatic feeder design. It’s been an awesome addition to my tinkering projects.🔧💜
Arthur Connah –
I purchased the gear motor for a small robotics project, and it’s been fantastic! The self-locking feature is a great addition—it holds the position well when powered off. The different voltage options are convenient, allowing flexibility in powering it based on my project requirements. 👍