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Brand: | Yaskawa | Model: | SGMAS-08ACAHC61 |
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Type: | AC Servomotor | Place Of Origin: | Japan |
Rated Output:: | 750W | Supply Voltage: | 200V |
Current: | 5.4A | Options:: | Without Brake |
Highlight: | ewing machine servo motor,electric servo motor |
Yaskawa 750W 2.39N.m SGMAS-08ACAHC61 AC Servo Motor + HPG-40A-21-J601A-SP
SPECIFITIONS
Servomotor Type: SGMAS AC Servomotor
Rated Output:750W
Supply Voltage: 200V
Current:5.4A
N.m: 2.39
r/min: 3000
Ins : B
Shaft End Specification: straight with key
Options: Without Brake
OTHER SUPERIOR PRODUCTS
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CAUTION
Only the voltage specified in the Instruction Manual should be applied to each terminal, Otherwise, a burst, damage, etc. may occur.
Connect the terminals correctly to prevent a burst, damage, etc.
Ensure that polarity ( , ) is correct. Otherwise, a burst, damage, etc. may occur.
Take safety measures, e.g. provide covers, to prevent accidental contact of hands and parts (cables, etc.) with the servo amplifier heat sink, regenerative brake resistor, servo motor, etc. since they may be hot while power is on or for some time after power-off. Their temperatures may be high and you may get burnt or a parts may damaged.
During operation, never touch the rotating parts of the servo motor. Doing so can cause injury.
Cables for SGMAS
Load Moment of Inertia
The size of the allowable load moment of inertia of a servomotor depends on the capacity, and is limited to 5 to
30 times the motor inertia. This value is provided strictly as a guideline and results may vary depending on servomotor
drive conditions.
An overvoltage alarm is likely to occur during deceleration if the load moment of inertia exceeds the allowable
load moment of inertia. SERVOPACKs with a built-in regenerative resistor may generate a regeneration overload
alarm. Take one of the following steps if this occurs.
• Reduce the torque limit.
• Reduce the deceleration rate.
• Reduce the maximum motor speed.
• Install an externally mounted regenerative resistor if the alarm cannot be cleared. Contact your Yaskawa
Application Engineering Department.
Regenerative resistors are not built into 200 V for 50 W to 400 W and 100 V for 50 W to 400 W SERVOPACKs.
The following figures show the tentative relationship between the load moment of inertia and motor speed using
an example with a load moment of inertia 10 to 30 times the load moment of inertia at the motor shaft.
External regenerative resistors are required when this condition is exceeded or if the allowable loss capacity (W)
of the built-in regenerative resistor is exceeded due to regenerative drive conditions when a regenerative resistor
is already built in.
Contact Person: Harper
Tel: 86-13170829968