NEMA 16 Bipolar 0.9deg 0.09Nm (12.5oz.in) 0.4A 6.6V 39x39x20mm 4 Wires Stepper Motor

NEMA 16 Bipolar 0.9deg 0.09Nm (12.5oz.in) 0.4A 6.6V 39x39x20mm 4 Wires Stepper Motor

Manufacturer Part Number: 39H020HM-0404
Frame Size: 39x39mm

Step Angle: 0.9 deg
Holding Torque: 0.09Nm(12.5oz.in)
Rated Current/phase: 0.4A
Voltage: 6.6V
Phase Resistance: 16.5ohms
Inductance: 23.5mH ± 20%(1KHz)
Body Length: 20mm

  • Ātra piegāde
  • Kvalitātes nodrošināšana
  • Customization AvailablePieejama pielāgošana
Produkta ievads

±5%

±10%

±20%

80K Max.

-20 degree ~+50 degree

100MΩMin.@ 500VDC

One minute@500VAC∙5mA Max.

0.06Max.@450g

0.08Max.@450g

 








   

V

A

Ω

oz-in

 

2

39H020HM-0404

6.6

0.4

16.5

23.5

12.5

0.9

   4

11

0.12

20

 

30

 

30

 

Q: Can stepper motors be used in low-noise applications?

A: Stepper motors are generally not considered the best choice for low-noise applications. Stepper motors operate by moving in discrete steps, and each step can produce vibrations and audible noise. This is especially noticeable at higher speeds or when the motor is under heavy load. If low noise is a critical requirement for your application, you may want to consider alternative motor types such as brushless DC (BLDC) motors or servo motors. These motor types can provide smoother and quieter operation compared to stepper motors. However, it's important to evaluate your specific application requirements and consider factors like torque, speed, and cost before selecting the appropriate motor type.

 

A: The step resolution of a stepper motor is typically fixed based on its design and the control signals applied. However, micro-stepping techniques can be used to achieve finer step resolutions between the full-step positions.

 

A: A stepper motor is an electromechanical device that converts electrical pulses into precise mechanical movements. It is a brushless, synchronous motor that operates in discrete steps or increments. Unlike traditional motors that continuously rotate, a stepper motor moves in discrete angular increments, commonly referred to as steps. Each step corresponds to a fixed angle of rotation, typically ranging from 0.9 to 1.8 degrees, although smaller step sizes are achievable with micro-stepping.

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