
EDIT.
SHEET
DRAW. NO.
CUST.
TITLE
86
93
DESCRIPTIONDESIG.DATE
Power Failure Backup Module
Descriptions
A-53866E-464
(2) Calculating the energy W3 [J] for movement along the retract axis.
The energy for movement along the retract axis is the sum of the energy required for
acceleration to the retract speed (area(2)-1) and the energy required against friction
(area(2)-2).
(a) For the SI unit system
L
d
TLVmJLJmW ⋅⋅+⋅+⋅×=
−
28.6)(1048.53
23
------ Expression <4>
W3: Energy for movement along the retract axis [J]
Jm: Rotor inertia of the motor [kgm
2
]
JL: Load inertia at motor shaft [kgm
2
]
Vm: Motor speed during retraction [min
-1
]
TL: For the horizontal axis, friction torque at motor shaft [Nm]
For the vertical axis, torque required at motor shaft for rise [Nm]
d: Travel distance to a position where the workpiece and the tool do not
interfere with each other [mm]
L: Travel distance per motor rotation [mm/rev]
(b) For the CGS unit system
L
d
TLVmJLJmW ⋅⋅×+⋅+⋅×=
−− 124
1016.6)(1037.53
------ Expression <4>'
W3: Energy for movement along the retract axis [J]
Jm: Rotor inertia of the motor [kgfcmsec
2
]
JL: Load inertia at motor shaft [kgfcmsec
2
]
Vm: Motor speed during retraction [min
-1
]
TL: For the horizontal axis, friction torque at motor shaft [kgcm]
For the vertical axis, torque required at motor shaft for [kgcm]
d: Travel distance to a position where the workpiece and the tool do not
interfere with each other [mm]
L: Travel distance per motor rotation [mm/rev]