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Home ProductsIndustrial Servo Motor

SGMAH-04A1A-AD21 Yaskawa Electronic Brushless Servo DC Modular

SGMAH-04A1A-AD21 Yaskawa Electronic Brushless Servo DC Modular

SGMAH-04A1A-AD21 Yaskawa Electronic Brushless Servo DC Modular
SGMAH-04A1A-AD21 Yaskawa Electronic Brushless Servo DC Modular SGMAH-04A1A-AD21 Yaskawa Electronic Brushless Servo DC Modular SGMAH-04A1A-AD21 Yaskawa Electronic Brushless Servo DC Modular

Large Image :  SGMAH-04A1A-AD21 Yaskawa Electronic Brushless Servo DC Modular Get Best Price

Product Details:

Place of Origin: Japan
Brand Name: Yaskawa
Certification: CE
Model Number: SGMAH-04A1A-AD21

Payment & Shipping Terms:

Minimum Order Quantity: 1 pc
Price: negotiable
Packaging Details: New in original box
Delivery Time: 2-3 work days
Payment Terms: T/T, , L/C
Supply Ability: 88
Detailed Product Description
Package: Original Package Color: Black/Red/White/Grey
Quality: New And Original Product Name: Brushless Servo Dc Modular

Power: 400W Volatage: 200V
Current: 2.8A Nm: 01.27
R/MIN: 3000 INS: B
High Light:

ewing machine servo motor

,

ac servo motor

 

 

YASKAWA 400W AC SERVO MOTOR 2.8A Industrial Servo Motor 1.27N.m SGMAH-04A1A-AD21


 

Specifications

Model SGMAH-04A1A-AD21
Product Type AC Servo Motor
Rated Output 400w
Rated Torque 1.27 N.m
Rated Speed 3000RPM
Power Supply Voltage 200vAC
Rated Current 2.8Amps
 
 



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The amount by which the circle is smaller is very predictable based on velocity, radius and gain, but the equations are more complex than can be covered in this article. There are empirical charts available that relate these factors.
 

YASKAWA 400W AC SERVO MOTOR 2.8A  Industrial Servo Motor  1.27N.m SGMAH-04A1A-AD21 0





There are two basic approaches to computer closure of the servo loop. One is to devote a computer to each
axis. The other is to have a central computer that closes all axes. Each vendor will have a list of reasons why his is best, but here are several basic observations.

 

YASKAWA 400W AC SERVO MOTOR 2.8A  Industrial Servo Motor  1.27N.m SGMAH-04A1A-AD21 1


• By closing the velocity loop as well as the position loop in the computer, a single feedback device can be
used for both. The computer per axis approach is beneficial if very high update rates are chosen for the
velocity loop. With multiple axes, the burden on a central computer may too great with high update velocity
loops.
• If much coordinated motion is anticipated, a central computer would have direct access to each axis. With
the computer per axis approach, the computer-to-computer communication links result in delays that limit
close coordination. The velocity loops may remain analog with the central computer approach to ease this.

 

 

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