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N20 Model – 100 RPM DC 12V Torque Gearbox Micro Gear Box Motor
₹560.00 Original price was: ₹560.00.₹550.00Current price is: ₹550.00. inc. GST
- Motor Type: Center Shaft DC Geared Motor
- RPM:100
- Reduction ratio – 1:298.
- Nominal Voltage – 6v
- Voltage Range – 2v to 12v
- No load Current – 80mA
- Stall Current – 1640mA
- Stall Torque – 3500 g-cm
- Ideal for making robots
- Lightweight, high torque and low RPM.
- Fine craftsmanship, long lasting , not easy to wear.
- Can easily mount a wheel on the motor’s output shaft.
The N20 Micro Gear 12V 100RPM DC Motor is basically lightweight, high torque, and low RPM motor. It consists of a gearbox assembly to increase the torque of the motor. The N20 Micro Gear designed with a cross-section of 10 × 12 mm. The D-shaped gearbox output shaft measures 9 mm long and 3 mm in diameter. Due to its compact-sized, it fits perfectly in complex spaces of small-scale applications. These Micro Gear Motor used to drive the wheels from one place to another while carrying high loads. This N20 Encoder motor accurately controls the position of the motor and is compatible with our PID Servo controller Drive. The N20 motor is the perfect choice for small IoT ( Industrial IOT) products like an electric lock, webcam pan tilt, and other similar actuator products which need high torque in minimum space and in less weight.
This N20 12v 100 RPM Metal Gear Micro DC Encoder Motor with Precious Metal Brush ideal for a variety of industrial, home appliances, and hobby applications as well. This metal gearbox assembly provides an amazing torque for this size of motor. Also, the brushes used in the motor provides a long life compared with the motor with carbon brushes. While comparing the torque, sturdiness, reliability, and working life with any motor, the N20 motor dominates over all other motors. The N20 metal gear motor is a perfect fit for the hobby segment products like robotic cars, micro mouse, electric boat, and all small motor-related projects, where power consumption is a concern along with low cost.

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5V Stepper Motor 28BYJ-48 with ULN2003
- Rated voltage: 5V DC
- Reduction Ratio: 64:1
- Step Angle: 5.625° /64
- Frequency: 100Hz
- Self-positioning Torque: >34.3mN.m
- No of phase: 4
- Speed variation ratio: 1/64
- Pull-in torque: 300 gf.cm
- Friction torque: 600-1200 gf.cm
- DC resistance: 50Ω±7% (25°C)
- Insulated resistance: >10MΩ (500V)
- Insulated power: 600VAC/1mA/1s
- Rise in Temperature <40K(120Hz
- Noise <35dB(120Hz,No load,10cm
- Stepper motor with a standard interface, when used directly pluggable.
- Four-phase LED indicator which indicates the status of the stepper motor work.
- Compact size stepper motor perfect for small robotics applications.
A3967 STEPPER MOTOR DRIVER
- A3967 precision micro-stepping driver
- Power supply: 7v to 30v
- Logic voltage: 5v to 3.3v
- Higher the voltage higher the torque at high speed
- Adjustable current control from 150Ma/ phase to 750ma phase
- Automatic current decay mode detection/selection
- Fast, slow, and mixed current decay modes
- Internal UVLO and thermal shutdown circuitry
- Crossover current protection
- Micro stepping resolution to full, half, quarter, and eighth steps by broken out MS1 and MS2 pins.
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L298N MOTOR DRIVER
- Driver model: L298N 2A
- Driver chip: Double H bridge L298N
- Motor supply voltage: 46V(maximum)
- Motor supply current: 2A(maximum)
- Logic voltage: 5v
- Driver voltage: 5V-35V
- Driver current: 2A
- Logical current: 0-36mA
- Maximum power: 25W
- Current sensor for each motor
- LED indication for power status
- Heat sink for better performance
- Operating temperature: -25 degrees to 135 degrees Celsius
- Can be interfaced with simple manual switches, TTL logic gates, relays, etc.
- Dimension: 55*60*30mm
- Weight: 33gm
MARSPOWER MX1806 2280KV BLDC Motor
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- Max thrust: 460g
- No of cells: 2-3S
- Framework: 12N14P
- Suitable Propeller: 5-6”
- Shaft: 2mm
- Minimum ESC Specification: 12A Suggested
- Durable with high quality
- The 0.2mm core to lower load temperature and increase efficiency
- Range of use for DJI F330 ZMR250 H250
- Do every single motor balancing test
- Japan NMB bearings provide low noise and long life
- 2mm spindle selection of Kawasaki, Japan, more efficient, less heat
- NdFeB magnets temperature selection
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- FPV all configurations life 7-8 minutes!
- Easy to loosen the nut bombing risk!
- Low centre of gravity design
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- Dimension: 26.7*23mm
- Weight: 18gm
N20 Model – 40 RPM DC 12V Torque Gearbox Micro Gear Box Motor
- Reduction ratio: 1:380.
- Nominal Voltage: 6v.
- Voltage Range: 3v to 12v.
- RPM: 40.
- No-load Current: 40mA.
- Stall Current: 550mA.
- Stall Torque: 7500 g-cm.
- Ideal for making robots
- Lightweight, high torque, and low RPM.
- Fine craftsmanship, long-lasting, not easy to wear.
- Can easily mount a wheel on the motor’s output shaft
NEMA 17 5.5 kgcm
- Step Angle : 1.8°
- Holding Torque : 5.5 KgCm
- Operating Voltage : 12 - 16 volts
- Supply Current (A) :1.5 Ampere
- Number of Leads : 6
- Inductance : 5.5 mH
- Resistance : 2.8 Ohms
- Weight (gm) : 363
- Detent Torque (kg-cm) : 2.6
- Frame Size (mm) : 42 x 42
- Inductance Accuracy : ±20%
- Resistance Accuracy : ±10%
- Step Angle Accuracy : ±5%
- Shaft Diameter (mm) : 5
- Shaft Length (mm) : 22
- Input pulse decides the rotation angle of the motor.
- High accuracy of around 3 to 5% a step.
- Provides good starting, stopping and reversing.
- Control of this motor is less costly because of exclusion of complex control circuitry.
- The speed is proportional to the frequency of the input pulses.
NEMA 23 10.1 kg-cm
- Operating Voltage : 2.3 Volts
- Step Angle : 1.8°
- Holding Torque : 10.1 kg-cm
- Supply Current (A) : 2.8 Ampere/Phase
- Number of Leads : 4
- Inductance : 2.2 mH/Phase
- Resistance : 0.83 Ohm
- Rotor Inertia : 275 gm-cm2
- Weight (gm) : 650
- Detent Torque (kg-cm) : 0.36
- Frame Size (mm) : 57 x 57
- Inductance Accuracy : ±20%
- Resistance Accuracy : ±10%
- Shaft Diameter (mm) : 6.35
- Shaft Length (mm) : 20.6
- Step Angle Accuracy : ±5%
- Comparably more powerful than NEMA17 motors.
- The input pulse decides the rotation angle of the motor.
- High accuracy of around 3 to 5% a step.
- It provides good starting, stopping, and reversing.
- Control of this motor is less costly because of the exclusion of complex control circuitry.
- The speed is proportional to the frequency of the input pulses.

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