Industrial Servo Motor Yaskawa 5.39N.m 200V AC Servo Motor
SGMGH-09ACA61
QUICK DETAILS
- Power : 850W
- Voltage:200V
- Rated Current : 7.1A
DESCRIPTION
- AC Servo Motor
- SGMAV Sigma-5
- YASKAWA ELECTRIC
SEPCIFICATIONS
Brand Name | Yaskawa |
Model Number | Industrial Servo Motor Yaskawa 5.39N.m 200V AC Servo Motor
SGMGH-09ACA61 |
Place of Origin | Japan |
Current | 7.1A |
Voltage | 200V |
Speed | 1500/min |
Power | 850W |
Ins | F |
N.m | 5.39 |
* Are external motor disconnects required between the motor and the
VFD? Service disconnects at motor loads are very often used for
maintenance purposes. Normally, removing a load from a VFD while
operating does not pose a problem for the VFD. On the other hand,
introducing a load to a VFD by closing a motor disconnect while the
VFD is operational can be fatal to the VFD.
When a motor is Started at full voltage, as would happen in this
case, high currents are generated, usually about six times the full
load amps of the motor current. The VFD would see these high
currents as being well beyond its capabilities and would go into a
protective trip or fail altogether. A simple solution for this
condition is to interlock the VFD run permissive circuit with the
service disconnects via an auxiliary contact at the service
disconnect. When the disconnect is closed, a permissive run signal
restarts the VFD at low voltage and frequency.
* Are there power factor correction capacitors being switched or
existing on the intended motor loads? Switching of power factor
capacitors usually generates power disturbances in the distribution
system. Many VFDs can and will be affected by this. Isolation
transformers or line reactors may be required for these
applications.
Power factor correction at VFD-powered motor loads is not necessary
as the VFD itself does this by using DC internally and then
inverting it into an AC output to the motor. All VFD manufacturers
warn against installing capacitors at the VFD output.
Variable Frequency Drive Technologies
Three basic types of variable frequency drives offer certain
advantages as well as disadvantages
depending on your motor application. The new flux vector drive is
also discussed.
While all variable frequency drives (VFDs) control the speed of an
AC induction motor by varying the motor's supplied voltage and
frequency of power, they all do not use the same designs in doing
so. There are three major VFD designs commonly used today: pulse
width modulation (PWM), current source inverter
Installing the Servomotor
Servomotor SGM and SGMP types can be installed either horizontally
or vertically. However, if the Servomotor is installed incorrectly
or in an inappropriate location, the service life will be shortened
or unexpected problems will occur. To prevent this, always observe
the installation instructions described below.
Before installation:
Anticorrosive paint is coated on the edge of the motor shaft. Clean
off the anticorrosive paint thoroughly using a cloth moistened with
thinner.

NOTE
Avoid getting thinner on other parts of the Servomotor when
cleaning the shaft.
Storage:
When the Servomotor is to be stored with the power cable
disconnected, store it in the following temperature range:
Between −20°C and 60°C
Installation sites:
The Servomotor SGM and SGMP types are designed for indoor use.
Install Servomotor in an environment which meets the following
conditions:
- Free from corrosive and explosive gases
- Well-ventilated and free from dust and moisture
- Ambient temperature of 0 to 40°C
- Relative humidity of 20% to 80% (non-condensing)
- Inspection and cleaning can be performed easily
If the Servomotor is used in a location subject to water or oil
mist, install a shield cover over the Servomotor.








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