
NEMA14 Bipolar 1.8deg 0.10Nm (14oz.in) 0.4A 4V 35x35x24mm 4 Wires Stepper Motor
Manufacturer Part Number: 35H024H-0404
Frame Size:35x35mm
Step Angle: 1.8 deg
Holding Torque: 0.10Nm(14oz.in)
Rated Current/phase: 0.4A
Voltage: 4V
Phase Resistance: 10ohms
Inductance: 12.5mH ± 20%(1KHz)
Body Length: 24mm
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Introducció al producte
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±5% |
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±10% |
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±20% |
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80K Max. |
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-10 degree ~+50 degree |
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100MΩMin.@ 500VDC |
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One minute@500VAC∙5mA Max. |
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0.06Max.@450g |
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0.08Max.@450g |
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35H024H-0404 |
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V |
A |
Ω |
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oz-in |
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4 |
2 |
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4 |
0.4 |
10 |
12.5 |
14 |
1 |
9 |
0.12 |
24 |
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1. Current Control: Stepper motors require precise control of the current flowing through their windings to generate the desired torque and motion. The driver or controller regulates the current levels to ensure optimal motor performance and prevent overheating or damage.
2. Pulse Generation: Stepper motors move in discrete steps, and the driver or controller generates the sequence of electrical pulses that drive the motor. These pulses determine the speed, direction, and position of the motor. The driver or controller provides the necessary timing and sequencing of these pulses to achieve accurate and controlled motor movement.
3. Voltage Levels: Stepper motors often require higher voltages than what is available from the control system. The driver or controller steps up or down the voltage levels to match the motor's requirements, ensuring efficient operation and sufficient power delivery.
4. Microstepping: Stepper motors can achieve smoother motion and finer resolution through micro-stepping, where the driver or controller divides each step into smaller micro steps. The driver or controller handles the generation of these micro steps and the associated current control, allowing for smoother and more precise motor movement.
5. Protection and Safety Features: Stepper motor drivers or controllers incorporate protection features such as overcurrent protection, overtemperature protection, and fault detection mechanisms. These features help prevent damage to the motor and the driver or controller in case of abnormal operating conditions.
6. Compatibility and Interface: Stepper motors may require specific control signals or communication protocols to operate effectively. The driver or controller provides the necessary interface to match the motor's requirements and allows seamless integration with the control system or microcontroller.
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