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Series
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Type
Coil Type
Voltage - Rated
Current Rating (Amps)
Steps per Revolution
Step Angle
Accuracy
Torque - Holding (oz-in / mNm)
Size / Dimension
NEMA Frame Size
Diameter - Shaft
Length - Shaft and Bearing
Mounting Hole Spacing
Termination Style
Operating Temperature
Coil Resistance
Features
QSH4218-35-10-027
QSH4218-35-10-027
STEP MOTOR HYBRID BIPOLAR 5.3V
Trinamic Motion Control GmbH
258
In Stock
1 : 47,34000 €
Bulk
Bulk
ActiveHybridBipolar5.3VDC1 A2001.8°±5%38.2 / 270Square - 1.665" x 1.665" (42.30mm x 42.30mm)170.197" (5.00mm)0.945" (24.00mm)1.220" (30.99mm)Wire Leads-20°C ~ 50°C5.3 OhmsFlatted Shaft
QSH4218-41-10-035
QSH4218-41-10-035
STEP MOTOR HYBRID BIPOLAR 4.5V
Trinamic Motion Control GmbH
116
In Stock
1 : 50,13000 €
Bulk
Bulk
ActiveHybridBipolar4.5VDC1 A2001.8°±5%49.56 / 350Square - 1.665" x 1.665" (42.30mm x 42.30mm)170.197" (5.00mm)0.945" (24.00mm)1.220" (30.99mm)Wire Leads-20°C ~ 50°C4.5 OhmsFlatted Shaft
QSH4218-51-10-049
QSH4218-51-10-049
STEPPER MOTOR HYBRID BIPOLAR 5V
Trinamic Motion Control GmbH
703
In Stock
1 : 59,57000 €
Bulk
Bulk
ActiveHybridBipolar5VDC1 A2001.8°±5%69.39 / 490Square - 1.665" x 1.665" (42.30mm x 42.30mm)170.197" (5.00mm)0.945" (24.00mm)1.220" (30.99mm)Wire Leads-20°C ~ 50°C5 OhmsFlatted Shaft
44
In Stock
1 : 172,61000 €
Bulk
Bulk
ActiveHybridBipolar5VDC1 A2001.8°±5%69.39 / 490Square - 1.665" x 1.665" (42.30mm x 42.30mm)170.197" (5.00mm)0.945" (24.00mm)1.220" (31.00mm)Wire Leads-20°C ~ 50°C5 OhmsFlatted Shaft
QSH4218-47-28-040
QSH4218-47-28-040
STEP MOTOR HYBRID BIPOLAR 1.4V
Trinamic Motion Control GmbH
79
In Stock
1 : 67,22000 €
Bulk
Bulk
ActiveHybridBipolar1.4VDC2.81 A2001.8°±5%56.3 / 400Square - 1.665" x 1.665" (42.30mm x 42.30mm)170.197" (5.00mm)0.945" (24.00mm)1.220" (30.99mm)Wire Leads-20°C ~ 50°C1.5 OhmsFlatted Shaft
0
In Stock
Check Lead Time
1 : 157,70000 €
Bulk
Bulk
ActiveHybridBipolar5.3VDC1 A2001.8°±5%38.2 / 270Square - 1.665" x 1.665" (42.30mm x 42.30mm)170.197" (5.00mm)0.945" (24.00mm)1.220" (31.00mm)Wire Leads-20°C ~ 50°C5.3 OhmsFlatted Shaft
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Stepper Motors


Stepper motors are DC voltage motion actuators that move in discrete steps. Multiple sets of coils organized in groups called "phases" determine the motors armature position. Energizing each phase in sequence causes armature rotation one step at a time. With computer or microcontroller managed stepping, precise positioning and/or speed control is achieved. Steppers are selected by torque, steps per revolution, step angle, NEMA frame size, coil resistance, polarity and shaft features.