Mitsubishi Electric MELSERVO MR-J2S- A Instruction Manual page 227

General-purpose ac servo general-purpose interface servo amplifier
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13. OPTIONS AND AUXILIARY EQUIPMENT
(b) To make selection according to regenerative energy
Use the following method when regeneration occurs continuously in vertical motion applications or
when it is desired to make an in-depth selection of the regenerative brake option:
a. Regenerative energy calculation
Use the following table to calculate the regenerative energy.
Regenerative power
1)
2)
3)
4), 8)
5)
6)
7)
From the calculation results in 1) to 8), find the absolute value (Es) of the sum total of negative
energies.
b. Losses of servo motor and servo amplifier in regenerative mode
The following table lists the efficiencies and other data of the servo motor and servo amplifier in
the regenerative mode.
Servo amplifier
MR-J2S-10A
MR-J2S-10A1
MR-J2S-20A
MR-J2S-20A1
MR-J2S-40A
MR-J2S-40A1
MR-J2S-60A
MR-J2S-70A
MR-J2S-100A
MR-J2S-200A
MR-J2S-350A
MR-J2S-500A
MR-J2S-700A
MR-J2S-11KA
MR-J2S-15KA
MR-J2S-22KA
Inverse efficiency ( )
Capacitor charging (Ec)
M
Friction
torque
T
F
T
U
Formulas for calculating torque and energy in operation
Torque applied to servo motor [N m]
(J
J
)
N
L
M
0
T
1
4
T
9.55 10
T
T
T
2
U
F
(J
J
)
1
N
L
M
0
T
3
4
T
9.55 10
psd1
T
T
4
U
(J
J
)
N
L
M
0
T
5
4
T
9.55 10
T
T
T
6
U
F
(J
J
)
N
L
M
0
T
7
4
T
9.55 10
Inverse efficiency[%]
55
55
70
70
85
85
85
80
80
85
85
90
90
90
90
90
:Efficiency including some efficiencies of the servo motor and servo
amplifier when rated (regenerative) torque is generated at rated speed.
Since the efficiency varies with the speed and generated torque, allow for
about 10%.
:Energy charged into the electrolytic capacitor in the servo amplifier.
tf(1 cycle)
No
Up
t1
t2
T
T
psa1
psd1
1)
( )
(Driving)
2)
4)
3)
(Regenerative)
( )
1
E
T
T
1
U
F
psa1
E
2
T
T
E
U
F
3
E
0 (No regeneration)
4
1
E
T
T
5
U
F
psa2
E
6
1
E
T
T
7
U
F
psd2
Capacitor charging[J]
9
4
9
4
11
12
11
18
18
40
40
45
70
120
170
250
13 - 2
Time
Down
t3
t4
T
T
psa2
psd2
8)
5)
6)
7)
Energy [J]
0.1047
N
T
T
0
1
psa1
2
0.1047 N
T
t
0
2
1
0.1047
N
T
T
0
3
psd1
2
0.1047
N
T
T
0
5
psa2
2
0.1047 N
T
t
0
6
3
0.1047
N
T
T
0
7
psd2
2

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