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Home ProductsYASKAWA

SGMG-08K3A-YA11 Yaskawa Encoder Electronic High Speed Servo Motor

SGMG-08K3A-YA11 Yaskawa Encoder Electronic High Speed Servo Motor

SGMG-08K3A-YA11 Yaskawa Encoder Electronic High Speed Servo Motor
SGMG-08K3A-YA11 Yaskawa Encoder Electronic High Speed Servo Motor SGMG-08K3A-YA11 Yaskawa Encoder Electronic High Speed Servo Motor SGMG-08K3A-YA11 Yaskawa Encoder Electronic High Speed Servo Motor

Large Image :  SGMG-08K3A-YA11 Yaskawa Encoder Electronic High Speed Servo Motor Get Best Price

Product Details:

Place of Origin: Japan
Brand Name: Yaskawa
Certification: ce
Model Number: SGMG-08K3A-YA11

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: Yaskawa Encoder Electronic Motor

Detailed Product Description
Brand: Yasakawa Model: SGMG-08K3A-YA11
Palce Of Origin: Japan Type: Servo Motor
Power: 750W Current: 4.4A
Voltage: 200V R/min: 1500
High Light:

ewing machine servo motor

,

electric servo motor

 

 

1PCS New Industrial Yaskawa AC Servo Motor 4.4A 1500RMP SGMG-08K3A-YA11

 

 

 

 

Specifications

Current: 4.4A

Volatge: 200V
Power :750W
Max speed: 1500rpm
Encoder: 17bit Absolute encoder
Load Inertia JL kg¡m2¢ 10−4: 0.026
Shaft: straight without key

 

 

 

 

Temperature Rise Method
Electric Strip Heat ONLY This method requires the operation of the electric strips and the indoor blower motor only by setting the thermostat to call for heat (W) on air conditioning systems with electric strip heat or emergency heat (W2) on heat pump systems with electric strips.
 
 
 
Step 2. Measure the voltage and total amperage of the electric strip(s) and the indoor fan. Do this at the main power supply in the HVAC system. If there are multiple circuits for multiple sets of strips, add the amperage from all the circuits together.
Step 1. Operate only the electric strips and the indoor blower on the speed of choice for this measurement.
 
 
Step 3. Calculate the temperature rise of the system. See “Measuring Temperature Rise” on page 20 for help if needed. For the purpose of this formula, temperature rise is listed as TD (Temperature Difference).
 
 
Step 4. Using the numbers that you have calculated for the system, plug them into the formula below to calculate the system’s CFM.

 

 
 
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