103H5208-0440 SANYO DENKI - SANMOTION, 103H5208-0440 Datasheet - Page 38

STEPPER MOTOR, 1.8DEG, 1.2A

103H5208-0440

Manufacturer Part Number
103H5208-0440
Description
STEPPER MOTOR, 1.8DEG, 1.2A
Manufacturer
SANYO DENKI - SANMOTION
Datasheet

Specifications of 103H5208-0440

Torque Max
0.3N-m
Current Rating
1.2A
No. Of Phases
2
Resistance
2.9ohm
Inductance
3.4µH
Current Per Phase
1.2A
External Depth
39mm
External Length / Height
42mm
Coil Type
Unipolar

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
103H5208-0440
Manufacturer:
SANYO
Quantity:
1 000
37
2-phase STEPPING SYSTEMS
Source voltage : DC24V
J
J
Source voltage : DC24V
J
J
Source voltage : DC24V
J
J
Constant current circuit
Source voltage : DC24V
J
J
140
120
100
L1
L2
L1
L2
L1
L2
L1
L2
280
240
200
160
280
240
200
160
80
60
40
20
120
120
700
600
500
400
300
200
100
80
40
80
40
0
=
=
=
=
=
0
=
0
=
0
=
103H7121-56
103H7123-56
103H7126-56
103H7128-56
0.94x10
0.8x10
2.6x10
2.6x10
2.6x10
2.6x10
7.4x10
7.4x10
10
20
16
12
20
16
12
8
6
4
2
0
50
40
30
20
10
8
4
0
8
4
0
0
1.0
0.8
0.6
0.4
0.2
2.0
1.6
1.2
0.8
0.4
2.0
1.6
1.2
0.8
0.4
5.0
4.0
3.0
2.0
1.0
0
0.1
0
0.1
0
0.1
0.1
-4
0
-4
-4
-4
-4
-4
-4
kg
kg
kg
kg
-4
kg
kg
kg
Starting
torque at
torq
J
Starting
torque at
torq
J
kg
L2
L2
Starting
torque at
torq
J
L2
Starting
torque at
torq
J
L2
2-phase energization
2-phase energization
2-phase energization
2-phase energization
m
m
m
m
m
m
m
m
2
2
2
2
2
2
2
Pull-out torque at J
100
100
100
100
2
40.46 oz
40.46 oz
14.22 oz
14.22 oz
4.37 oz
Pull-out torque at J
14.22 oz
14.22 oz
□□
□□
□□
□□
5.14 oz
Pull-out torque at J
Number of rotations (min
Number of rotations (min
Number of rotations (min
Number of rotations (min
operating current : 1A/phase,
operating current : 1A/phase,
operating current : 1A/phase,
operating current : 1A/phase,
Pull-out torque at J
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
1
1
1
1
q
in
in
in
in
in
in
in
in
q q
2
2
2
2
q q
2
2
2
2
use the direct coupling
1000
1000
1000
1000
use the rubber coupling
use the rubber coupling
use the rubber coupling
use the direct coupling
use the rubber coupling
use the direct coupling
use the direct coupling
q q
L1
2000 3000 5000
full-step
L1
2000 3000 5000
full-step
2000 3000 5000
full-step
2000 3000 5000
full-step
L1
10
10
10
10
L1
-1
-1
-1
-1
The date are measured under the drive condition of our company. The drive torque may very depending on the accuracy of customer-side equipment.
The date are measured under the drive condition of our company. The drive torque may very depending on the accuracy of customer-side equipment.
100
100
100
100
Constant current circuit
Source voltage : DC24V
J
J
Constant current circuit
Source voltage : DC24V
J
J
Constant current circuit
Source voltage : DC24V
J
J
Constant current circuit
Source voltage : DC24V
J
J
140
120
100
L1
L2
L1
L2
L1
L2
L1
L2
280
240
200
160
120
280
240
200
160
120
600
500
400
300
200
80
60
40
20
700
100
80
40
80
40
0
=
=
0
=
=
0
=
=
=
=
0
103H7121-57
103H7123-57
103H7126-57
103H7128-57
0.94x10
7.4x10
0.8x10
2.6x10
2.6x10
2.6x10
2.6x10
7.4x10
10
20
16
12
20
16
12
8
6
4
2
0
50
40
30
20
10
8
4
0
8
4
0
0
2.0
2.0
1.0
0.8
0.6
0.4
0.2
1.6
1.2
0.8
0.4
1.6
1.2
0.8
0.4
5.0
4.0
3.0
2.0
1.0
0.1
0
0.1
0
0.1
0
0.1
0
-4
-4
-4
-4
-4
-4
-4
kg
kg
-4
kg
kg
kg
kg
kg
kg
Starting
torque at
torq
J
L2
2-phase energization
2-phase energization
2-phase energization
2-phase energization
m
m
m
m
m
m
m
m
2
2
2
2
2
2
2
100
100
100
100
2
40.46 oz
40.46 oz
4.37 oz
14.22 oz
14.22 oz
14.22 oz
14.22 oz
□□
□□
□□
□□
Starting
torque at
torq
J
5.14 oz
Starting
torque at
torq
J
L2
Number of rotations (min
L2
Number of rotations (min
Number of rotations (min
Number of rotations (min
Pull-out torque at J
Starting
torque at
torq
J
operating current : 2A/phase,
operating current : 2A/phase,
operating current : 2A/phase,
operating current : 2A/phase,
L2
Pull-out torque at J
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
1
1
1
1
Pull-out torque at J
in
Pull-out torque at J
in
in
in
in
in
in
in
2
2
2
2
2
2
2
2
q q
use the direct coupling
1000
1000
1000
1000
use the rubber coupling
use the rubber coupling
use the direct coupling
use the rubber coupling
use the direct coupling
use the rubber coupling
use the direct coupling
q
q q
2000 3000 5000
2000 3000 5000
2000 3000 5000
2000 3000 5000
full-step
full-step
full-step
full-step
q q
L1
10
10
10
10
L1
-1
-1
-1
-1
L1
L1
100
100
100
100
Constant current circuit
Source voltage : DC24V
J
J
Constant current circuit
Source voltage : DC24V
J
J
Constant current circuit
Source voltage : DC24V
J
J
Constant current circuit
Source voltage : DC24V
J
J
140
120
100
L1
L2
L1
L2
L1
L2
L1
L2
280
240
200
160
120
280
240
200
160
120
700
600
500
400
300
200
80
60
40
20
100
80
40
80
40
0
=
=
=
=
=
0
=
0
=
=
0
103H7121-58
103H7123-58
103H7126-58
103H7128-58
7.4x10
0.94x10
2.6x10
2.6x10
2.6x10
2.6x10
7.4x10
0.8x10
10
20
20
16
12
16
12
8
6
4
2
0
50
40
30
20
10
8
4
0
8
4
0
0
1.0
2.0
2.0
0.8
0.6
0.4
0.2
1.6
1.2
0.8
0.4
1.6
1.2
0.8
0.4
5.0
4.0
3.0
2.0
1.0
0.1
0.1
0.1
0.1
-4
-4
0
0
-4
0
-4
0
-4
-4
-4
kg
kg
kg
kg
kg
kg
-4
kg
kg
2-phase energization
2-phase energization
2-phase energization
2-phase energization
m
m
m
m
m
m
m
m
2
2
2
2
2
2
2
100
100
100
100
2
40.46 oz
40.46 oz
14.22 oz
14.22 oz
14.22 oz
14.22 oz
4.37 oz
□□
□□
□□
□□
5.14 oz
Starting
torque at
torq
J
Starting
torque at
torq
J
Pull-out torque at J
L2
L2
Number of rotations (min
Number of rotations (min
Number of rotations (min
Number of rotations (min
operating current : 3A/phase,
operating current : 3A/phase,
operating current : 3A/phase,
operating current : 3A/phase,
Starting
torque at
torq
J
Starting torque
Startin
at J
L2
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
Pulse rate (kpulse/s)
1
1
1
1
Pull-out torque at J
L2
Pull-out torque at J
Pull-out torque at J
in
in
in
in
in
in
in
in
g
2
2
2
2
2
2
2
2
q q
use the direct coupling
use the rubber coupling
use the rubber coupling
use the rubber coupling
use the direct coupling
1000
1000
use the direct coupling
1000
use the direct coupling
1000
use the rubber coupling
q q
q q
full-step
full-step
full-step
2000 3000 5000
2000 3000 5000
2000 3000 5000
2000 3000 5000
full-step
q
L1
q q
10
10
10
10
-1
-1
-1
-1
L1
L1
L1
100
100
100
100

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