
3.4 Ratings and Specifications of SGMGH (1000min
-1
)
3-27
3
(2) Holding Brake Moment of Inertia
The moment of inertia of the servomotor with holding brake is expressed using the following equation.
(The moment of inertia of the servomotor with holding brake) =
(rotor moment of inertia) + (brake moment of inertia)
* These values are reference values.
(3) Torque-motor Speed Characteristics
Servomotor Model
SGMGH-
03A
B 06A
B 09A
B 12A
B 20A
B 30A
B 40A
B 55A
B
Holding Brake
Moment of Inertia J
×10
-4
kg
x
m
2
2.10
8.50
×10
-3
lb
x
in
x
s
2
∗
1.86
7.52
SGMGH-30A B
0
1000
500
1500
2000
0
20
40
60
80
A
B
SGMGH-20A B
0
1000
500
1500
2000
0
20
40
60
A
B
SGMGH-55A B
0
1000
500
1500
2000
0
50
100
150
A
B
SGMGH-40A B
0
1000
500
1500
2000
0
50
100
150
A
B
SGMGH-03A B
0
1000
500
1500
2000
0
2
4
6
8
A
B
SGMGH-09A B
0
1000
500
1500
2000
0
5
10
15
20
A
B
SGMGH-06A B
0
1000
500
1500
2000
0
5
10
15
A
B
SGMGH-12A B
0
1000
500
1500
2000
0
10
20
30
A
B
40
60
20
0
100
50
0
100 150
50
0
0
100
200
400 600
0
200
1000
500
0
1500
Torque (N m)
Torque (lb in)
Motor
speed
(min
-1
)
Motor
speed
(min
-1
)
Motor
speed
(min
-1
)
Motor
speed
(min
-1
)
Motor
speed
(min
-1
)
Motor
speed
(min
-1
)
Motor
speed
(min
-1
)
Motor
speed
(min
-1
)
Torque (N m)
Torque (N m)
Torque (N m)
Torque (lb in)
Torque (lb in)
Torque (lb in)
Torque (N m)
Torque (lb in)
Torque (N m)
Torque (lb in)
1000
500
0
1500
Torque (N m)
Torque (lb in)
A
B
: Continuous Duty Zone
: Intermittent Duty Zone
400
200
0
Torque (N m)
Torque (lb in)
Содержание SGDH
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