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Brand: | Yaskawa | Mdoel: | SGMDH-056A2A-YR25 |
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Place Of Origin: | Japan | Power: | 550W |
Curent: | 4.0A | Voltage: | 200V |
Ins: | F | Speed: | 1500 |
Highlight: | ewing machine servo motor,electric servo motor |
Industrial Yaskawa Servo Motor AC SERVO MOTOR 550V 2000RPM 4.0A SGMDH-056A2A-YR25
QUICK DETAILS
DESCRIPTION
SEPCIFICATIONS
Brand Name | Yaskawa |
Model Number | SGMDH-056A2A-YR25 |
Place of Origin | Japan |
Current | 4.0A |
Voltage | 200V |
Speed | 1500 1/min |
Power | 550W |
Ins | F |
• Time Rating: Continuous
• Vibration Class: 15 µm or below
• Insulation Resistance: 500 VDC, 10 MΩ min.
• Ambient Temperature: 0 to 40°C (32 to 104°F)
• Excitation: Permanent magnet
• Mounting: Flange method
• Gear Mechanism: Planetary gear mechanism
• Thermal Class: B
• Withstand Voltage: 100V, 200V Servomotors: 1500 VAC for one minute 400V Servomotors: 1800 VAC for one minute
• Enclosure: Totally enclosed, self-cooled, IP55 (except for shaft opening)
• Ambient Humidity: 20% to 80% (no condensation)
• Drive Method: Direct drive
• Backlash: 3 min max.
• Gear Rotation Direction: Same direction as servomotor
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.
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