37mm DC Motor With Photoelectric Encoder − 63mm Type Model NFP-GM37-3429-PEN
$18.00
Experience advanced motor technology with the 37mm spur gear motor with encoder. Its pure copper winding guarantees excellent conductivity. Shop now!
| Quantity | Price | Discount |
|---|---|---|
| 1 - 9 | $18.00 | 0% |
| 10 - 19 | $17.80 | 1.11% |
| 20 - 49 | $14.90 | 17.22% |
| 50 - 99 | $13.50 | 25% |
| 100 - 499 | $12.70 | 29.44% |
| 500+ | $11.90 | 33.89% |
Reducer Gearbox DC Carbon Brush Motor Parameters
First, the NFP-GM37-3429-PEN is a DC carbon brush gear motor with a photoelectric encoder. Also, it is useful for drive systems that need high torque, speed feedback, and stable low-speed output.
In addition, the motor uses an all-metal gear structure. Therefore, the gearbox can support higher wear resistance and longer service life under suitable load.
Moreover, the rotor uses pure copper wire winding. As a result, the motor can support low resistance, good conductivity, and stronger torque output.
Main Product Features
- First, all-metal gears: The gear structure helps improve wear resistance and service life.
- In addition, copper winding: The rotor uses pure copper wire for low resistance and good output.
- Also, photoelectric encoder: The basic pulse is 448CPR.
- Next, voltage options: The motor supports 6V, 12V, and 24V DC.
- Finally, D-cut shaft: The Φ6mm output shaft helps connect drive parts firmly.
General Motor Data
First, the table below shows the main motor data. Also, it helps users check voltage, rotation, shaft size, and weight before selecting a ratio.
| Motor Model | NFP-GM37-3429-PEN |
|---|---|
| Rated Voltage | 6V / 12V / 24V DC |
| Rotation | CW / CCW |
| Shaft Diameter | Φ6mm (D-cut: 5.4mm) |
| Shaft Length | 21mm (D-cut: 12mm) |
| Weight | Appr. 200g |
As a result, this motor gives several voltage choices in one gear motor body. Moreover, the photoelectric encoder helps support feedback control.
Model: NFP-GM37-3429-PEN, 6V DC
First, the 6V DC version is useful for low-voltage drive systems. Also, the table below helps users compare ratio, speed, current, torque, and stall data.
Therefore, users can choose a low ratio for higher speed. In addition, users can choose a high ratio for stronger low-speed torque.
| Ratio | No-load Current | No-load Speed | Rated Torque | Rated Torque | Rated Speed | Rated Current | Stall Torque | Stall Current |
|---|---|---|---|---|---|---|---|---|
| 6.3:1 | ≤200mA | 775rpm | 0.5kg.cm | 0.05N.m | 470rpm | ≤1.4A | ≥1.2kg.cm | ≤3.5A |
| 10:1 | ≤200mA | 500rpm | 0.8kg.cm | 0.08N.m | 300rpm | ≤1.4A | ≥2.0kg.cm | ≤3.5A |
| 18.8:1 | ≤200mA | 265rpm | 1.5kg.cm | 0.15N.m | 160rpm | ≤1.4A | ≥3.7kg.cm | ≤3.5A |
| 30:1 | ≤200mA | 165rpm | 2.4kg.cm | 0.24N.m | 100rpm | ≤1.4A | ≥6.0kg.cm | ≤3.5A |
| 50:1 | ≤200mA | 100rpm | 4.0kg.cm | 0.40N.m | 60rpm | ≤1.4A | ≥10kg.cm | ≤3.5A |
| 90:1 | ≤200mA | 55rpm | 7.0kg.cm | 0.70N.m | 32rpm | ≤1.4A | ≥18kg.cm | ≤3.5A |
| 150:1 | ≤200mA | 32rpm | 12kg.cm | 1.20N.m | 20rpm | ≤1.4A | <30kg.cm | ≤3.5A |
| 270:1 | ≤200mA | 18rpm | 21kg.cm | 2.10N.m | 11rpm | ≤1.4A | <30kg.cm | ≤3.5A |
| 450:1 | ≤200mA | 11rpm | 30kg.cm | 3.00N.m | 6.5rpm | ≤1.4A | <30kg.cm | ≤3.5A |
Note: All reduced no-load speeds have a tolerance of ±15%.
As a result, the 6V version covers speeds from 11rpm to 775rpm. Moreover, the 450:1 ratio gives the strongest rated torque in this table.
Model: NFP-GM37-3429-PEN, 12V DC
Next, the 12V DC version gives higher speed than the 6V version. Also, it is useful for 12V systems that need more output power.
Therefore, users can choose this version for 12V control boards. In addition, higher ratios can provide strong low-speed torque.
| Ratio | No-load Current | No-load Speed | Rated Torque | Rated Torque | Rated Speed | Rated Current | Stall Torque | Stall Current |
|---|---|---|---|---|---|---|---|---|
| 6.3:1 | ≤300mA | 1550rpm | 1.0kg.cm | 0.10N.m | 950rpm | ≤2.3A | ≥2.5kg.cm | ≤7.0A |
| 10:1 | ≤300mA | 1000rpm | 1.6kg.cm | 0.16N.m | 600rpm | ≤2.3A | ≥4.0kg.cm | ≤7.0A |
| 18.8:1 | ≤300mA | 530rpm | 3.0kg.cm | 0.30N.m | 320rpm | ≤2.3A | ≥7.5kg.cm | ≤7.0A |
| 30:1 | ≤300mA | 330rpm | 4.8kg.cm | 0.48N.m | 200rpm | ≤2.3A | ≥12kg.cm | ≤7.0A |
| 50:1 | ≤300mA | 200rpm | 8.0kg.cm | 0.80N.m | 120rpm | ≤2.3A | ≥20kg.cm | ≤7.0A |
| 90:1 | ≤300mA | 110rpm | 14kg.cm | 1.40N.m | 65rpm | ≤2.3A | <30kg.cm | ≤7.0A |
| 150:1 | ≤300mA | 65rpm | 24kg.cm | 2.40N.m | 40rpm | ≤2.3A | <30kg.cm | ≤7.0A |
| 270:1 | ≤300mA | 36rpm | 30kg.cm | 3.00N.m | 27rpm | ≤1.9A | <30kg.cm | ≤7.0A |
| 450:1 | ≤300mA | 22rpm | 30kg.cm | 3.00N.m | 16rpm | ≤1.7A | <30kg.cm | ≤7.0A |
Note: All reduced no-load speeds have a tolerance of ±15%.
In short, the 12V version reaches up to 1550rpm at 6.3:1. Also, the 270:1 and 450:1 ratios reach 30kg.cm rated torque.
Model: NFP-GM37-3429-PEN, 24V DC
Finally, the 24V DC version gives lower no-load current than the 12V version. Therefore, it is useful for 24V systems that need steady output and lower current draw.
In addition, this version keeps the same wide ratio range. As a result, users can match speed and torque more easily.
| Ratio | No-load Current | No-load Speed | Rated Torque | Rated Torque | Rated Speed | Rated Current | Stall Torque | Stall Current |
|---|---|---|---|---|---|---|---|---|
| 6.3:1 | ≤150mA | 1550rpm | 1.0kg.cm | 0.1N.m | 950rpm | ≤1.8A | ≥2.5kg.cm | ≤4.5A |
| 10:1 | ≤150mA | 1000rpm | 1.6kg.cm | 0.16N.m | 600rpm | ≤1.8A | ≥4kg.cm | ≤4.5A |
| 18.8:1 | ≤150mA | 530rpm | 3.0kg.cm | 0.3N.m | 320rpm | ≤1.8A | ≥7.5kg.cm | ≤4.5A |
| 30:1 | ≤150mA | 330rpm | 4.8kg.cm | 0.48N.m | 200rpm | ≤1.8A | ≥12kg.cm | ≤4.5A |
| 50:1 | ≤150mA | 200rpm | 8.0kg.cm | 0.8N.m | 120rpm | ≤1.8A | ≥20kg.cm | ≤4.5A |
| 90:1 | ≤150mA | 110rpm | 14kg.cm | 1.4N.m | 65rpm | ≤1.8A | <30kg.cm | ≤4.5A |
| 150:1 | ≤150mA | 65rpm | 24kg.cm | 2.3N.m | 40rpm | ≤1.8A | <30kg.cm | ≤4.5A |
| 270:1 | ≤150mA | 36rpm | 30kg.cm | 3.0N.m | 27rpm | ≤1.8A | <30kg.cm | ≤4.5A |
| 450:1 | ≤150mA | 22rpm | 30kg.cm | 3.0N.m | 16rpm | ≤1.8A | <30kg.cm | ≤4.5A |
Note: All reduced no-load speeds have a tolerance of ±15%.
In conclusion, the 24V version is a good fit for higher-voltage control systems. Moreover, it gives strong torque while keeping no-load current low.
Gearbox Motor with Photoelectric Encoder Outline Drawing
First, the outline drawing helps users check motor size, gearbox length, shaft size, and mounting space. Therefore, it is useful before sample testing and product design.
In addition, the gearbox length changes with the gear ratio. As a result, users should confirm the selected ratio before final assembly.
Gearbox Length by Ratio
- First, 6.3:1 and 10:1: Gearbox length is 19mm.
- In addition, 18.8:1 and 30:1: Gearbox length is 21.5mm.
- Also, 50:1 and 90:1: Gearbox length is 24mm.
- Next, 150:1 and 270:1: Gearbox length is 26.5mm.
- Finally, 450:1: Gearbox length is 29mm.
DC Gear Motor Photoelectric Encoder Wiring Tips
First, the wiring image helps users connect the motor and encoder correctly. Also, it shows the motor wires, encoder power wires, and AB phase signal wires.
Moreover, correct wiring helps protect the encoder and control board. Therefore, users should check VCC, GND, output A, and output B before power-on.
Wiring Sequence
- First, red wire: Output B phase.
- In addition, black wire: Output A phase.
- Also, green wire: GND encoder negative pole.
- Next, blue wire: VCC encoder positive pole, 3.3V / 5.0V.
- Then, yellow wire: Motor positive pole [+].
- Finally, white wire: Motor negative pole [-].
Photoelectric Encoder Parameters
First, the table below shows the photoelectric encoder data. Also, it helps users check encoder type, line speed, voltage, interface, pulse number, and work environment before wiring.
| Encoder Type | AB Two-phase Incremental Photoelectric Encoder |
|---|---|
| Line Speed | Basic Pulse 448CPR x Gear Reduction Ratio |
| Power Supply Voltage | DC 3.3V / DC 5.0V |
| Interface Type | PH2.0-6PIN (Standard Connection Line Output DuPont Connector or XH2.54 Connector) |
| Response Frequency | 25-60 KHz |
| Basic Pulse Number | 448 PPR |
| Working Environment | 0-85°C |
| Applicable Microcontrollers | STM32 and other microcontrollers with hardware encoder interfaces (Arduino/51, etc. are not applicable) |
Warning: The VCC and GND terminals of the photoelectric encoder cannot be connected in reverse or used at over-voltage (≥5.0V). Otherwise, the encoder will burn out.
Typical Applications
Finally, this reducer gearbox DC carbon brush motor is useful for systems that need speed feedback and strong torque. For example, it can work in robots, smart devices, auto modules, tools, and compact machines.
- Robots
- Smart devices
- Auto modules
- Small tools
- Compact machines
- Test systems
- Motion control products
In short, the NFP-GM37-3429-PEN is a good fit for products that need 6V, 12V, or 24V DC power, all-metal gears, pure copper winding, 448CPR photoelectric encoder feedback, and strong low-speed torque.
Keywords: DC brushed motor, gear brush motor, small brush DC motor, electric DC motors
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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.








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