
EDIT.
SHEET
DRAW. NO.
CUST.
TITLE
81
93
DESCRIPTIONDESIG.DATE
Power Failure Backup Module
Descriptions
A-53866E-464
8. SELECTING SUB MODULES
8.1 SELECTING SUB MODULE R
Use the following two conditions to determine the applicable sub module R types and the
number of sub modules R to be connected.
Condition <1>: Sum of the maximum outputs of the motors to be decelerated simultaneously
in the event of a power failure (Note 1)
Condition <2>: Sum of the products of the maximum outputs and the deceleration times of
the each motors to be decelerated in the event of a power failure
Referring to the table below, select sub module R that satisfies conditions <1> and <2>.
Sub module R
type
No. of sub
modules R
connected
Condition <1> Condition <2>
Applicable
power failure
backup module
A06B-6089-H712 1 20 kW or less 100 kWsec or less
A06B-6089-H712 2 in parallel
(Note 2)
40 kW or less 200 kWsec or less
A06B-6077-H020 1 40 kW or less 80 kWsec or less
A06B-6077-H002
A06B-6091-H020 1 40 kW or less 80 kWsec or less A06B-6091-H002
Note 1: The "sum of the maximum outputs of motors" refers to the sum of the maximum outputs
of the motors to be decelerated simultaneously
.
If both servo and the spindle motors are to be decelerated to a stop in the event
of a power failure, you can reduce the "sum of the maximum outputs of motors" by
performing processing that decelerates the servo motor to a stop first and then
decelerates the spindle motor.
Note 2: For information on the connection method, see (3) in Section 5.2.
Selection example
Selection of sub module R if the following motors are to be decelerated to a stop
simultaneously in the event of a power failure.
Axis Motor model Maximum output Deceleration time
Maximum output x
Deceleration time
X axis
α8/3000i
5.7 kW 0.2sec 1.14
Y axis
α8/3000i
5.7 kW 0.2sec 1.14
Z axis
α12/3000i
7.6 kW 0.2sec 1.54
Spindle
α8/8000i
13.2 kW 1.5sec 19.8
Condition <1>→
Total: 32.2 kW
Condition <2>→ Total: 23.62 kWsec
* Use the power failure backup module A06B-6077-H002, because the motors above are
driven on 200 VAC.