Industrial YASKAWA AC SERVO MOTOR 0.91A 3Phase AC SERVO MOTOR SGMAV-01A3A61
Quick Details
Brand Name:Julante
Model Number:YE2
Type: Servo Motor
Frequency: 50/60Hz
Output Power: 200W
Protect Feature:Totally Enclosed
Phase:Three-phase
Certification:CCC, CE, ROHS, UL, VDE, Other
AC Voltage:208-230 / 240 V
Place of Origin:Japan
Efficiency:IE 1
OTHER SUPERIOR PRODUCTS
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Honeywell TC-,TK- Fanuc motor A0-
Rosemount transmitter 3051- Yokogawa transmitter EJA-
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FOR MAXIMUM SAFETY
These products have been manufactured as a general-purpose part for general industries, and have not been designed or manufactured to be incorporated in a device or system used in purposes related to
human life.
Before using the products for special purposes such as nuclear power, electric power, aerospace, medicine, passenger movement vehicles or under water relays, contact Mitsubishi.
These products have been manufactured under strict quality control. However, when installing the product where major accidents or losses could occur if the product fails, install appropriate backup or failsafe functions in the system.
ELECTRICAL SPECIFICATIONS
INSULATION: CLASS B (130° C)
VOLTAGE RATING: 6-48 VOLTS DC NOMINAL
EFFICIENCY: UP TO 75%
ROTATION: CW, CCW, OR REVERSIBLE
BRUSH LIFE: UP TO 2,000 HOURS DEPENDING
ON MODEL AND APPLICATION
UP TO 5,000 HOURS WITH SPECIAL
BRUSHES & COMPONENTS
MECHANICAL SPECIFICATIONS
SHAFT: 1137-1144 CRS (STANDARD)
300/400 SERIES SS OR
CUSTOM AS REQ’D
BEARINGS: PM IRON (STANDARD)
PM BRONZE OR
BALL BEARINGS OPTIONAL
LUBRICATION: SYNTHETIC, LIFETIME LUBRICATED
LEADS: 16GA AWG TYPE GPT (80° C) (STANDARD)
OTHER GAUGES OR
HIGHER RATINGS AS REQ’D
WIRE TERMINATIONS: 1/4˝ STRIP (STANDARD)
OTHER TERMINALS
(I.E. #10 RING, BULLET) AS REQ’D
![Industrial YASKAWA AC SERVO MOTOR 0.91A 3Phase AC SERVO MOTOR SGMAV-01A3A61 0]()
• Calculate the Acceleration/Deceleration Torque from the Load Inertia or Operating Pattern.
• Calculate the necessary torque for each part of the Operating Pattern from the Friction Torque, External Torque and Acceleration/ Deceleration Torque.
• Confirm that the maximum value for the Torque for each operating part (Maximum Momentary Torque) is less than the Maximum Momentary Torque of the motor.
• Calculate the Effective Torque from the Torque for each Operating part, and confirm that it is less than the Rated Torque for the motor.
• Check if the the number of encoder pulses meets the system specified resolution.
• Calculate Regenerative Energy from the Torque of all the moving parts.
• Check if the calculation meets the specifications of the temporarily selected motor. If not, change the temporarily selected motor and re-calculate it.