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Stepper Motor NEMA 34 122 kg-cm Hybrid Bipolar
₹9,000.00 inc. GST
- Rated Voltage:4.08V
- Phase: 2
- Current/ phase: 4A
- Holding Torque: 122 kg-cm
- Number of Leads: 4
- Step Angle: 1.8°
- Step Angle Accuracy: ±5% (full step, no load)
- Resistance Accuracy: ±10%
- Inductance Accuracy: ±20%
- Frame Size: 85x85mm
- Shaft Length: 37mm
- Shaft Diameter: 13mm
- Long-lasting life
- Low cost for control achieved
- High torque at startup and low speeds
- Ruggedness
- Simplicity of construction
- Can operate in an open-loop control system
- Low maintenance
- Less likely to stall or slip
NEMA 34 122 kg-cm designed as a Bipolar Hybrid Stepper Motor providing 122 kg-cm of torque at 6A current per phase. These stepper motors move in precisely repeatable steps. It is an ideal choice for heavy-duty CNC machines, CNC Mill, CNC Lathe, or a CNC Router, etc. Because of inherent operational advantages including comparably high torque at high speeds of NEMA 34 122 kg-cm stepper motor overpass the NEMA17 stepper motor. This motor acts as a powerhouse when it comes to larger machines that require extra torque.
As the NEMA 34 122kg-cm is a brushless DC motor, so the life of this motor is completely dependent upon the life of the bearings. As this position control achieved by a simple Open Loop control mechanism so doesn’t require complex electronic control circuitry. The motor’s shaft designed in the shape of a 94-UP Mustang V. Thus this type of shaft is useful in providing stability in high power operation. This stepper motor provides high accuracy of around 3 to 5% a step. Moreover, the input pulse determines the rotation angle of the motor. In which the frequency of the input pulse is directly proportional to the speed. These motors widely used in an application that requires low speed with high precision.
This Stepper motor divides a full rotation into a number of equal steps. As a result, by commanding the motor’s position to move and hold at one of these steps, as long as the motor is carefully sized to the application with respect to torque and speed. These motors designed specifically to withstand the high torque requirements of large CNC machines. The bipolar Motor features an excellent response to starting, stopping, and reversing pulses from the stepper motor driver.

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- 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.
L297 Stepper Motor Controller IC
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
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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 18.9 kg-cm
- Step Angle : 1.8 °
- Holding Torque : 18.9 kg-cm
- Operating Voltage : 3.2 Volts
- Supply Current (A)Â : 2.8 A/Phase
- No. of Leads : 4
- Inductance: 3.6 mH/Phase
- Resistance : 1.13 O/Phase
- Rotor Inertia : 480 gm-cm2
- Inductance Accuracy : ±20%
- Resistance Accuracy : ±10%
- Shaft Diameter (mm)Â : 6.35
- Shaft Length (mm)Â : 20.6
- Cable Length: 30 CM
- Comparably more powerful than NEMA17 motors.
- 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.
RB NEMA 17 (42mm) Coupling 5×6.35mm
Stepper Motor Nema 23 kg 7.2 kg Dual shaft
- Rated Voltage: 6.6 V
- Current/ phase: 1A
- Resistance/ phase: 6.6ohms
- Inductance/ phase: 8.2 mH
- Holding Torque: 7.2 kg-cm
- of Leads - 6
- Rotor Inertia - 275
- Weight: 0.65kg
- Detent Torque: 0.36 kg-cm
- Step Angle - 1.8°
- Step Angle Accuracy - ±5% (full step, no load)
- Resistance Accuracy - ±10%
- Inductance Accuracy - ±20%
- Frame Size (mm) - 57x57
- Shaft Length (mm) - 20.6
- Shaft Diameter (mm) - 6.35
- Comparably more powerful than NEMA17 motors.
- 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.
XB NEMA 34 (86mm-S) Coupling 12.7x8mm
- Material: Aluminum alloy hubs and elastomeric polyurethane spider.
- Product Type: Clamp-style jaw coupling without keyway.
- Large Bore Diameter: 12.7mm
- Small bore diameter:8mm
- Number of Screws: 2 each.
- Angular Misalignment: +/-1°.
- Parallel Misalignment: +0.20mm/-0.20mm .
- Maximum Rotational Speed: 6500RPM.
- Suitable for Nema 23 Stepper Motor or for any motor/rod having an 12.75mm diameter
- Widely used in motors, stepper motors, encoders, and servo machines

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