Stepper Motors

Results: 11
Manufacturer
Analog Devices Inc./Maxim IntegratedLin Engineering
Series
-PANdrive™
Packaging
CaseTray
Type
-Hybrid
Current Rating (Amps)
670 mA700 mA1.05 A1.34 A1.5 A1.7 A2 A
Steps per Revolution
200.0400.0
Step Angle
0.9°1.8°
Accuracy
±5%-
Torque - Holding (oz-in / mNm)
37 / 261.342 / 296.5961 / 43162 / 43863 / 444.8869.39 / 49071 / 50183 / 586.11100 / 706115 / 812.1
Size / Dimension
Square - 1.654" x 1.654" (42.00mm x 42.00mm)Square - 1.669" x 1.669" (42.40mm x 42.40mm)
Mounting Hole Spacing
1.220" (31.00mm)-
Termination Style
Wire LeadsWire Leads with Connector
Operating Temperature
-20°C ~ 50°C-
Coil Resistance
1.2 Ohms1.5 Ohms1.6 Ohms1.9 Ohms2 Ohms2.5 Ohms5.2 Ohms9.9 Ohms10.8 Ohms
Features
Flatted ShaftIntegrated Controller, Flatted ShaftRound Shaft
Stocking Options
Environmental Options
Media
Marketplace Product
11Results

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Mfr Part #
Quantity Available
Price
Series
Package
Product Status
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
468
In Stock
1 : ¥436.88000
Tray
-
Tray
Active
-
Bipolar
24VDC
2 A
200.0
1.8°
-
100 / 706
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
1.6 Ohms
Round Shaft
27
In Stock
1 : ¥457.65000
Tray
-
Tray
Active
-
Bipolar
24VDC
1.7 A
200.0
1.8°
-
61 / 431
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
1.6 Ohms
Round Shaft
102
In Stock
1 : ¥569.21000
Tray
-
Tray
Active
-
Bipolar
24VDC
1.7 A
400.0
0.9°
-
62 / 438
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
1.9 Ohms
Round Shaft
43
In Stock
1 : ¥616.90000
Tray
-
Tray
Active
-
Bipolar
24VDC
2 A
200.0
1.8°
-
115 / 812.1
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
2 Ohms
Flatted Shaft
PD42-3-1141
PD42-3-1141
STEPPER MOTOR HYBRID BIPOLAR 24V
Analog Devices Inc./Maxim Integrated
4
In Stock
82
Factory
1 : ¥1,754.65000
Case
Case
Active
Hybrid
Bipolar
24VDC
2 A
200.0
1.8°
±5%
69.39 / 490
Square - 1.654" x 1.654" (42.00mm x 42.00mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
-
Wire Leads with Connector
-
-
Integrated Controller, Flatted Shaft
61
In Stock
1 : ¥376.90000
Tray
-
Tray
Active
-
Bipolar
24VDC
1.34 A
200.0
1.8°
-
42 / 296.59
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
2.5 Ohms
Flatted Shaft
24
In Stock
1 : ¥376.90000
Tray
-
Tray
Active
-
Bipolar
24VDC
670 mA
200.0
1.8°
-
42 / 296.59
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
9.9 Ohms
Flatted Shaft
35
In Stock
1 : ¥426.13000
Tray
-
Tray
Active
-
Bipolar
24VDC
700 mA
200.0
1.8°
-
63 / 444.88
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
10.8 Ohms
Flatted Shaft
23
In Stock
1 : ¥518.15000
Tray
-
Tray
Active
-
Bipolar
24VDC
1.05 A
200.0
1.8°
-
83 / 586.11
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
5.2 Ohms
Flatted Shaft
8
In Stock
1 : ¥475.10000
Tray
-
Tray
Active
-
Bipolar
24VDC
2 A
200.0
1.8°
-
71 / 501
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
1.2 Ohms
Round Shaft
0
In Stock
Check Lead Time
1 : ¥428.95000
Tray
-
Tray
Active
-
Bipolar
24VDC
1.5 A
200.0
1.8°
-
37 / 261.3
Square - 1.669" x 1.669" (42.40mm x 42.40mm)
17
0.197" (5.00mm)
0.945" (24.00mm)
1.220" (31.00mm)
Wire Leads
-20°C ~ 50°C
1.5 Ohms
Round Shaft
Showing
of 11

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.