1500W R88D-KN15H-ECT-L OMRON AC Servo Motor the current consumption of other controllers
Maximum Input Current:
The Servo Drive's maximum momentary output is approximately three
times the rated output, and
can be output for up to three seconds.
Therefore, select no-fuse breakers with an operating time of at
least five seconds at 300% of the
rated current. General-purpose and low-speed no-fuse breakers are
generally suitable.
Select a no-fuse-breaker with a rated current greater than the
total effective load current of all the
Servomotors. The rated current of the power supply input for each
Servomotor is provided in Main
Circuit and Servomotor Connector Specifications .
Add the current consumption of other controllers, and any other
components, when selecting the
NFB.
Inrush Current:
The following table lists the Servo Drive inrush currents.
With low-speed no-fuse breakers, an inrush current 10 times the
rated current can flow for
0.02 second.
When multiple Servo Drives are turned ON simultaneously, select a
no-fuse-breaker with a 20-ms
allowable current that is greater than the total inrush current,
shown in the following table.
Leakage Breakers
Select leakage breakers designed for protection against grounding
faults.
Because switching takes place inside the Servo Drives,
high-frequency current leaks from the
switching elements of the Servo Drive, the armature of the motor,
and the cables.
High-frequency breakers with surge withstand capability do not
detect high-frequency current,
preventing the breaker from operating with high-frequency leakage
current.
When using a general-purpose leakage breaker, use three times the
sum of the leakage current
given in the following table as a reference value.
When selecting leakage breakers, remember to add the leakage
current from devices other than
the Servomotor, such as machines using a switching power supply,
noise filters, inverters, and so
on. To prevent malfunction due to inrush current, we recommend
using a leakage breaker of ten
times the total of all current values.
The leakage breaker is activated at 50% of the rated current. Allow
leeway when selecting a
leakage breaker.
For details on leakage breakers, refer to the manufacturer’s
catalog.
The following table shows the Servomotor leakage current for each
Servo Drive model.
Surge Absorbers
Use surge absorbers to absorb lightning surge voltage and abnormal
voltage from power supply
input lines.
When selecting surge absorbers, take into account the varistor
voltage, the allowable surge
current and the energy.
For 200-VAC systems, use surge absorbers with a varistor voltage of
620 V.
The surge absorbers shown in the following table are recommended.
AC Servo Drives
Linear Motor with built-in EtherCAT communications
Specifications | Model |
---|
Power Model Supply Voltage | Applicable Servomotor Capacity |
---|
Single-phase 100 VAC | 100 W | R88D-KN01L-ECT-L |
---|
200 W | R88D-KN02L-ECT-L |
---|
400 W | R88D-KN04L-ECT-L |
---|
Single-phase/three-phase 200 VAC | 100 W | R88D-KN01H-ECT-L |
---|
200 W | R88D-KN02H-ECT-L |
---|
400 W | R88D-KN04H-ECT-L |
---|
750 W | R88D-KN08H-ECT-L |
---|
1 kW | R88D-KN10H-ECT-L |
---|
1.5 kW | R88D-KN15H-ECT-L |
---|
Three-phase 400 VAC | 600 W | R88D-KN06F-ECT-L |
---|
1 kW | R88D-KN10F-ECT-L |
---|
1.5 kW | R88D-KN15F-ECT-L |
---|
2 kW | R88D-KN20F-ECT-L |
---|
3 kW | R88D-KN30F-ECT-L |
---|
Linear Motors
<Iron-core motor type>
Motor Coil Unit
Motor Coil Unit model | Continuous force [N] | Momentary maximum force [N] |
---|
R88L-EC-FW-0303-ANPC | 48 | 105 |
R88L-EC-FW-0306-ANPC | 96 | 210 |
R88L-EC-FW-0606-ANPC | 160 | 400 |
R88L-EC-FW-0609-ANPC | 240 | 600 |
R88L-EC-FW-0612-ANPC | 320 | 800 |
R88L-EC-FW-1112-ANPC | 608 | 1600 |
R88L-EC-FW-1115-ANPC | 760 | 2000 |
Magnet Trac
Magnet Trac model | Magnet Trac Unit Length (mm) |
---|
R88L-EC-FM-03096-A | 96 |
R88L-EC-FM-03144-A | 144 |
R88L-EC-FM-03384-A | 384 |
R88L-EC-FM-06192-A | 192 |
R88L-EC-FM-06288-A | 288 |
R88L-EC-FM-11192-A | 192 |
R88L-EC-FM-11288-A | 288 |

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