16mm Worm Gear Motor Model NFP-WG1218-050-EN

$15.50

(3 customer reviews)

Enhance your projects with the powerful 16mm Worm Gear Motor! Rated voltage options and impressive torque are ideal for any application.

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1 - 9$15.500%
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DC Worm Steel Gear With Encoder Motor Parameters


First, the NFP-GW12T-050YZSG-EN is a compact DC worm steel gearbox motor with encoder feedback. Also, it supports several voltage and input type options for small control systems.

In addition, this motor uses a steel plate gearbox and worm gear reduction. Therefore, it can provide stable low-speed output, high strength, and reliable torque transfer.

Moreover, the built-in AB Hall encoder helps provide speed and position feedback. As a result, this motor is useful for smart locks, valves, robots, meters, and compact automation modules.

Main Product Features

  • First, steel plate gearbox: The gearbox supports high strength and stable operation.
  • In addition, worm gear reduction: The gearbox provides low speed and smooth output.
  • Also, encoder feedback: The AB Hall encoder supports speed and position control.
  • Next, voltage options: The motor supports 6V DC, 12V DC, and 24V DC versions.
  • Finally, compact shaft design: The Φ4mm shaft helps fit small drive parts.

Basic Motor Specifications

First, the table below shows the main motor data. Also, it helps users check weight, voltage, shaft diameter, and shaft length before selecting a detailed model.

Model NFP-GW12T-050YZSG-EN
Weight Appr. 25g
Rated Voltage 6V DC / 12V DC
Shaft Diameter Φ4mm
Output Shaft Length 8mm

As a result, this model gives a compact worm steel gearbox motor solution for small products. Moreover, the 25g body helps fit light and space-limited designs.

DC Worm Steel Gear Motor Performance Data


Model: NFP-GW12T-050YZSG-EN, 6V DC, 11-Type Input

First, this 6V DC 11-Type Input version is useful for low-voltage control systems. Also, the table helps users compare ratio, speed, current, torque, and stall data.

In addition, lower ratios provide higher speed. However, higher ratios provide lower speed and stronger torque for slow movement.

Ratio No-load Speed No-load Current Rated Speed Rated Current Rated Torque Stall Torque Stall Current
42:1 190 rpm ≤55mA 140 rpm ≤0.18A 0.05 kg.cm ≤0.17 kg.cm ≤0.6A
118:1 67 rpm ≤55mA 50 rpm ≤0.18A 0.15 kg.cm ≤0.5 kg.cm ≤0.6A
236:1 33 rpm ≤55mA 25 rpm ≤0.18A 0.32 kg.cm ≤1.2 kg.cm ≤0.6A
302:1 26 rpm ≤55mA 20 rpm ≤0.18A 0.4 kg.cm ≤1.5 kg.cm ≤0.6A
603:1 13 rpm ≤55mA 10 rpm ≤0.18A 0.8 kg.cm Max 3 kg.cm ≤0.6A
1030:1 8 rpm ≤55mA 6 rpm ≤0.18A 1.2 kg.cm Max 3 kg.cm ≤0.6A

Note: All reduced no-load speeds have a tolerance of ±15%.

As a result, the 6V 11-Type Input version covers speeds from 8 rpm to 190 rpm. Moreover, the 1030:1 ratio gives the strongest rated torque in this table.

Model: NFP-GW12T-050YZSG-EN, 12V DC, 11-Type Input

Next, this 12V DC 11-Type Input version provides higher speed and stronger torque than the 6V version. Therefore, it is useful for compact 12V drive systems.

Also, the 12V 11-Type Input version gives no-load speed options from 16 rpm to 380 rpm. As a result, users can choose either faster movement or stronger low-speed output.

Ratio No-load Speed No-load Current Rated Speed Rated Current Rated Torque Stall Torque Stall Current
42:1 380 rpm ≤75mA 300 rpm ≤0.23A 0.1 kg.cm ≤0.35 kg.cm ≤1A
118:1 135 rpm ≤75mA 105 rpm ≤0.23A 0.3 kg.cm ≤1 kg.cm ≤1A
236:1 68 rpm ≤75mA 53 rpm ≤0.23A 0.65 kg.cm ≤2.5 kg.cm ≤1A
302:1 53 rpm ≤75mA 41 rpm ≤0.23A 0.8 kg.cm Max 3 kg.cm ≤1A
603:1 27 rpm ≤75mA 20 rpm ≤0.23A 1.6 kg.cm Max 3 kg.cm ≤1A
1030:1 16 rpm ≤75mA 12 rpm ≤0.23A 2.4 kg.cm Max 3 kg.cm ≤1A

Note: All reduced no-load speeds have a tolerance of ±15%.

Therefore, the 12V 11-Type Input version is useful when the design needs faster output and higher rated torque. In addition, the 1030:1 ratio gives the strongest torque in this group.

Model: NFP-GW12T-050YZSG-EN, 12V DC, 34-Type Input

Furthermore, this 12V DC 34-Type Input version provides a lower-current option. Also, it keeps the same speed range as the 6V 11-Type Input version in this table.

In addition, the 34-Type Input design can help match different product layouts. Therefore, users can choose it when the wiring direction or structure fits the product better.

Ratio No-load Speed No-load Current Rated Speed Rated Current Rated Torque Stall Torque Stall Current
42:1 190 rpm ≤40mA 140 rpm ≤0.1A 0.05 kg.cm ≤0.17 kg.cm ≤0.3A
118:1 67 rpm ≤40mA 50 rpm ≤0.1A 0.15 kg.cm ≤0.5 kg.cm ≤0.3A
236:1 33 rpm ≤40mA 25 rpm ≤0.1A 0.32 kg.cm ≤1.2 kg.cm ≤0.3A
302:1 26 rpm ≤40mA 20 rpm ≤0.1A 0.4 kg.cm ≤1.5 kg.cm ≤0.3A
603:1 13 rpm ≤40mA 10 rpm ≤0.1A 0.8 kg.cm Max 3 kg.cm ≤0.3A
1030:1 8 rpm ≤40mA 6 rpm ≤0.1A 1.2 kg.cm Max 3 kg.cm ≤0.3A

Note: All reduced no-load speeds have a tolerance of ±15%.

As a result, the 12V 34-Type Input version is useful for low-current drive designs. Moreover, the 1030:1 ratio provides the strongest rated torque in this table.

Model: NFP-GW12T-050YZSG-EN, 24V DC, 34-Type Input

Finally, this 24V DC 34-Type Input version is useful for systems that use a 24V power supply. Also, it provides higher speed and torque than the 12V 34-Type Input version.

In addition, the 24V version helps reduce the need for higher current in some control systems. Therefore, it can fit compact automation products with 24V control boards.

Ratio No-load Speed No-load Current Rated Speed Rated Current Rated Torque Stall Torque Stall Current
42:1 380 rpm ≤55mA 300 rpm ≤0.15A 0.1 kg.cm ≤0.35 kg.cm ≤0.6A
118:1 135 rpm ≤55mA 105 rpm ≤0.15A 0.3 kg.cm ≤1 kg.cm ≤0.6A
236:1 68 rpm ≤55mA 53 rpm ≤0.15A 0.65 kg.cm ≤2.5 kg.cm ≤0.6A
302:1 53 rpm ≤55mA 41 rpm ≤0.15A 0.8 kg.cm Max 3 kg.cm ≤0.6A
603:1 27 rpm ≤55mA 20 rpm ≤0.15A 1.6 kg.cm Max 3 kg.cm ≤0.6A
1030:1 16 rpm ≤55mA 12 rpm ≤0.15A 2.4 kg.cm Max 3 kg.cm ≤0.6A

Note: All reduced no-load speeds have a tolerance of ±15%.

In conclusion, the 24V 34-Type Input version covers speeds from 16 rpm to 380 rpm. Also, the 1030:1 ratio gives the strongest rated torque in this table.

24V DC Worm Steel Gearbox Motor Outline Drawing


Hall Encoder Direction Options

First, the Hall encoder has two optional welding directions. Therefore, users can choose the encoder direction based on cable routing and product structure.

In addition, one option has the welding direction opposite to the shaft. Also, another option has the welding direction the same as the shaft.

As a result, these direction choices make the motor easier to install in compact products. Moreover, they help reduce wiring stress during assembly.

NFP-GW12T-050YZSG-EN steel gearbox DC motor outline drawing

NFP-GW12T-050YZSG-EN steel gearbox reducer motor structure

Outline Drawing and Design Benefits

  • First, compact steel gearbox: The gearbox helps save product space.
  • In addition, Φ4mm output shaft: The shaft helps connect small drive parts.
  • Also, encoder direction options: The two layouts support easier wiring.
  • Next, worm gear structure: The gearbox provides slow and controlled output.
  • Finally, clear dimensions: The drawings help reduce design changes before production.

DC Worm Reducer Gearbox Motor Encoder Wiring Tips


Encoder Wiring Overview

First, the wiring image helps users connect the motor and encoder wires correctly. Therefore, users should check each wire before applying power.

In addition, correct wiring helps protect the Hall encoder and the control board. As a result, users can test speed feedback and direction control more safely.

NFP-GW12T-050YZSG-EN steel gearbox worm motor encoder wiring

Wiring Definition

First, the table below explains the motor power wires and Hall encoder wires. Also, it helps users match each wire color with the correct function.

Function Wire Color
Motor Power Input M- Red
Motor Power Input M+ White
VCC Hall Power Supply Black
GND Hall Power Supply Blue
Encoder Signal B Phase (C2) Yellow
Encoder Signal A Phase (C1) Green

Therefore, users should confirm power input, Hall power, and AB signal wires before testing. In addition, the controller should read both C1 and C2 signals for feedback control.

Encoder Specifications

Next, the table below shows the encoder specifications. Also, it helps users calculate output resolution based on the selected gear ratio.

Item Specification
Type AB Dual-Phase Incremental Magnetic Hall Encoder
Output Signal Square Wave AB Phase
Basic Pulses 7 PPR
Effective Resolution 7 × Gear Reduction Ratio
Magnetic Poles 14 poles (7 pairs)
Supply Voltage DC 3.3V / 5V
Response Frequency 100kHz
Interface ZH1.5-6PIN
Connection Built-in pull-up, direct MCU

As a result, the final encoder count increases with the gear ratio. For example, users can calculate output pulses by multiplying 7 PPR by the selected reduction ratio.

Motor Structure Features

Furthermore, the table below summarizes the steel gearbox, winding, worm gear, and mounting structure. Therefore, users can better understand the mechanical design.

Feature Description
Steel Plate Gearbox High strength, supports high torque, long lifespan
Pure Copper Winding Low resistance, high conductivity, improved torque
Worm Gear Reduction High ratio, self-locking, smooth transmission
Mounting Structure 3 × ∮1.4mm holes + support pillar, high stability

In short, the steel plate gearbox and pure copper winding help improve strength and torque. Also, the worm gear reduction supports smooth low-speed motion.

Gearbox Structure Comparison

First, the comparison below shows the difference between a steel plate gearbox and a copper plate gearbox. Therefore, users can see why the steel plate structure is better for high-load use.

Item Steel Plate Gearbox Copper Plate Gearbox
Strength High Low
Load Capacity High torque & impact resistant Deforms under load
Wear Resistance Excellent Poor
Stability High precision retention Prone to gear tilt
Durability Long lifespan Short lifespan
Thermal Stability Stable High expansion, unstable

As a result, the steel plate gearbox offers better durability and stability under high load. Moreover, it is the recommended option for compact high-torque applications.

Steel Gearbox Conclusion

  • First, better durability: The steel plate gearbox supports high-load use better than a copper plate structure.
  • In addition, better stability: The steel gearbox helps reduce gear tilt and misalignment risk.
  • Also, better wear resistance: The steel structure provides longer service life.
  • Finally, better high-torque support: The steel plate gearbox is recommended for high torque applications.

NFP-GW12T-050S-SG worm DC motor steel gearbox
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Payment:
1.Payment methods : Paypal, T/T
Shipping:
1.Delivery: DHL/FedEx 3-5 days.
2.Item will be shipped within 1-3 business days after the payment.
3.If you haven’t received the item on the Delivery Time, pls contact us by email if you have any questions. Normally, we will give you a reply within 24 hours, if not, pls check the spam of your email box. We will do our best to help you solve the problems.
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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.

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3 reviews for 16mm Worm Gear Motor Model NFP-WG1218-050-EN

  1. Divine Grace

    I have used these in tough environments and they have help up well with very little wear. The lock on feature is very useful.

  2. Veronica Saini

    Perfect match for my needs. The shaft drive worked well to lock in the flange. Nice and simple, and everything stays secure. No issues at all.😶😶

  3. George Charles

    I was pleased to find that when I applied half the rated voltage, it operated reliably at half the stated speed. Even at a quarter of the rated voltage, it maintained reliable performance at a quarter of the rated speed. The torque was still impressive at these lower voltages and speeds! Stronger than it appears for its size!

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