Drip-proof Industrial Yaskawa AC SERVO MOTOR 500WATT 200V 3000RPM
SGMP-15AWYR12
Linear motors
A set of coils can be used to create a magnetic field that
translates, rather than rotates. The pair of coils in the animation
below are pulsed on, from left to right, so the region of magnetic
field moves from left to right. A permanent or electromagnet will
tend to follow the field. So would a simple slab of conducting
material, because the eddy currents induced in it (not shown)
comprise an electromagnet. Alternatively, we could say that, from
Faraday's law, an emf in the metal slab is always induced so as to
oppose any change in magnetic flux, and the forces on the currents
driven by this emf keep the flux in the slab nearly constant. (Eddy
currents not shown in this animation.)
Quick Details
Place of Origin:
Japan, Japan
Brand Name:
Yaskawa
Model Number:
SGMP-15AWYR12
Usage:
Electric Bicycle
Certification:
UL
Type:
Servo Motor, Servo Motor
Construction:
Permanent Magnet
Commutation:
Brush
Protect Feature:
Drip-proof
Speed(RPM):
3000RMP
Continuous Current(A):
7.5A
Efficiency:
IE 1
Brand:
WTL
Model:
SGMP-15AWYR12
Power:
750W
Voltage:
200V
Current:
7.5A
Options:
With Brake
Series:
SGMP
SIMILAR PRODUCTS
SGMP-01U312 SGMP01U312 SERVO MOTOR yaskawa
SGMP-01U314CM SGMP01U314CM SERVO MOTOR yaskawa
SGMP-01U314EM SGMP01U314EM SERVO MOTOR yaskawa
SGMP-01U314M SGMP01U314M SERVO MOTOR yaskawa
SGMP-01U3AP08 SGMP01U3AP08 SERVO MOTOR yaskawa
SGMP-01U3G46 SGMP01U3G46 SERVO MOTOR yaskawa
SGMP-01U3S SGMP01U3S SERVO MOTOR yaskawa
SGMP-02A312 SGMP02A312 SERVO MOTOR yaskawa
SGMP-02A314 SGMP02A314 SERVO MOTOR yaskawa
SGMP-02A3G26C SGMP02A3G26C SERVO MOTOR yaskawa
SGMP-02A3HA12 SGMP02A3HA12 SERVO MOTOR yaskawa
SGMP-02A3TE21 SGMP02A3TE21 SERVO MOTOR yaskawa
SGMP-02A3TE33 SGMP02A3TE33 SERVO MOTOR yaskawa
SGMP-02A8YR11 SGMP02A8YR11 SERVO MOTOR yaskawa
SGMP-02A8YR21 SGMP02A8YR21 SERVO MOTOR yaskawa
SGMP-02AW12 SGMP02AW12 SERVO MOTOR yaskawa
SGMP-02AW14 SGMP02AW14 SERVO MOTOR yaskawa
SGMP-02AW16 SGMP02AW16 SERVO MOTOR yaskawa
SGMP-02AW16CM SGMP02AW16CM SERVO MOTOR yaskawa
SGMP-02AW16S SGMP02AW16S SERVO MOTOR yaskawa
SGMP-02Awg16b SGMP02Awg16b SERVO MOTOR yaskawa
SGMP-02AWYR11 SGMP02AWYR11 2AMP 200W 200V yaskawa
SGMP-02AWYR12 SGMP02AWYR12 2AMP 200V 200W 3000RPM 0.637NM yaskawa
SGMP-02AXSWX SGMP02AXSWX SERVO MOTOR yaskawa
SGMP-02B312 SGMP02B312 SERVO MOTOR yaskawa
SGMP-02B314 SGMP02B314 SERVO MOTOR yaskawa
SGMP-02B3G36 SGMP02B3G36 SERVO MOTOR yaskawa
SGMP-02B3J22 SGMP02B3J22 SERVO MOTOR yaskawa
SGMP-02BW12C SGMP02BW12C SERVO MOTOR yaskawa
SGMP-02U314CM SGMP02U314CM AC 200W 200VAC 2.0AMP yaskawa
SGMP-02U314M SGMP02U314M SERVO MOTOR yaskawa
SGMP-02U3YA11 SGMP02U3YA11 SERVO MOTOR yaskawa
SGMP-02V312B SGMP02V312B SERVO MOTOR yaskawa
SGMP-02V314T SGMP02V314T SERVO MOTOR yaskawa
SGMP-03B312 SGMP03B312 SERVO MOTOR yaskawa
SGMP-03B314 SGMP03B314 SERVO MOTOR yaskawa
SGMP-03L314M SGMP03L314M 100V 300W yaskawa
SGMP-04A312 SGMP04A312 SERVO MOTOR yaskawa
SGMP-04A314 SGMP04A314 SERVO MOTOR yaskawa
SGMP-04A3A4 SGMP04A3A4 SERVO MOTOR yaskawa
SGMP-04A3G32 SGMP04A3G32 SERVO MOTOR yaskawa
SGMP-04A3G40 SGMP04A3G40 SERVO MOTOR yaskawa
SGMP-04A3NA11 SGMP04A3NA11 SERVO MOTOR yaskawa
SGMP-04A3TE31 SGMP04A3TE31 SERVO MOTOR yaskawa
SGMP-04A3TE32 SGMP04A3TE32 SERVO MOTOR yaskawa
SGMP-04A3TE41 SGMP04A3TE41 SERVO MOTOR yaskawa
SGMP-04A3TE81 SGMP04A3TE81 SERVO MOTOR yaskawa
SGMP-04AW12 SGMP04AW12 SERVO MOTOR yaskawa
SGMP-04AW160 SGMP04AW160 SERVO MOTOR yaskawa
SGMP-04AW16S SGMP04AW16S SERVO MOTOR yaskawa
SGMP-04AWG10 SGMP04AWG10 SERVO MOTOR yaskawa
SGMP-04AWYR52 SGMP04AWYR52 SERVO MOTOR yaskawa
SGMP-04AWYR62 SGMP04AWYR62 SERVO MOTOR yaskawa
SGMP-04U314CM SGMP04U314CM 200VSERVO MOTOR yaskawa
SGMP-04U314M SGMP04U314M SERVO MOTOR yaskawa
SGMP-04U314SPT SGMP04U314SPT SERVO MOTOR yaskawa
SGMP-04U316C SGMP04U316C SERVO MOTOR yaskawa
SGMP-04U3AP10 SGMP04U3AP10 SERVO MOTOR yaskawa
SGMP-04UW14 SGMP04UW14 SERVO MOTOR yaskawa
SGMP-04UW16CM SGMP04UW16CM 400W 200V 2.6AMP yaskawa
SGMP-04V314T SGMP04V314T 200VAC 400W yaskawa
SGMP-04V314T#ZL02 SGMP04V314T#ZL02 SERVO MOTOR yaskawa
SGMP-04V316CT SGMP04V316CT SERVO MOTOR yaskawa
SGMP-04-V316CT SGMP04V316CT SERVO MOTOR yaskawa
SGMP-04V3D14T SGMP04V3D14T SERVO MOTOR yaskawa
SGMP-04V3YG11 SGMP04V3YG11 SERVO MOTOR yaskawa
SGMP-08A312 SGMP08A312 SERVO MOTOR yaskawa
SGMP-08A312b SGMP08A312b SERVO MOTOR yaskawa
SGMP-08A314 SGMP08A314 SERVO MOTOR yaskawa
SGMP-08A314B SGMP08A314B SERVO MOTOR yaskawa
SGMP-08A314C SGMP08A314C SERVO MOTOR yaskawa
SGMP-08A314S SGMP08A314S SERVO MOTOR yaskawa
SGMP-08A3G32 SGMP08A3G32 SERVO MOTOR yaskawa
SGMP-08A3te11 SGMP08A3te11 SERVO MOTOR yaskawa
SGMP-08A3TE12 SGMP08A3TE12 SERVO MOTOR yaskawa
SGMP-08A3TE21 SGMP08A3TE21 SERVO MOTOR yaskawa
SGMP-08A3TE22 SGMP08A3TE22 SERVO MOTOR yaskawa
SGMP-08A3TE31 SGMP08A3TE31 SERVO MOTOR yaskawa
SGMP-08A3TE51 SGMP08A3TE51 SERVO MOTOR yaskawa
SGMP-08AW12 SGMP08AW12 SERVO MOTOR yaskawa
SGMP-08AW14 SGMP08AW14 SERVO MOTOR yaskawa
SGMP-08AW16DP SGMP08AW16DP AC 750W 200V 4.1AMP yaskawa
SGMP-08AWG10 SGMP08AWG10 SERVO MOTOR yaskawa
SGMP-08AWHG22 SGMP08AWHG22 AC 200V 750W 4.1AMP 3000RPM yaskawa
SGMP-08AWYR11 SGMP08AWYR11 SERVO MOTOR yaskawa
SGMP-08AWYR12 SGMP08AWYR12 SERVO MOTOR yaskawa
SGMP-08AWYR32 SGMP08AWYR32 4.1AMP 750W 200V yaskawa
SGMP-08AWYR33 SGMP08AWYR33 4.2A 200V 3000RPM 750W 2.39NM yaskawa
SGMP-08AWYR41 SGMP08AWYR41 CUBE 1.01HP 200V EN STANDARD yaskawa
SGMP-08AWYR42 SGMP08AWYR42SERVO MOTOR yaskawa
SGMP-08TE31 SGMP08TE31 SERVO MOTOR yaskawa
SGMP-08U314M SGMP08U314M SERVO MOTOR yaskawa
SGMP-08Wyr12 SGMP08Wyr12 SERVO MOTOR yaskawa
SGMP-08WYR33 SGMP08WYR33 SERVO MOTOR yaskawa
SGMP-15A312 SGMP15A312 SERVO MOTOR yaskawa
SGMP-15A314 SGMP15A314 SERVO MOTOR yaskawa
SGMP-15A314M SGMP15A314M SERVO MOTOR yaskawa
SGMP-15A3A4EPU SGMP15A3A4EPU SERVO MOTOR yaskawa
SGMP-15A3G26BM SGMP15A3G26BM 7.5AMP 1500W 200V yaskawa
SGMP-15A3G26M SGMP15A3G26M SERVO MOTOR yaskawa
SGMP-15A3NT11 SGMP15A3NT11 SERVO MOTOR yaskawa
SGMP-15AW12SP SGMP15AW12SP SERVO MOTOR yaskawa
SGMP-15AWG12M SGMP15AWG12M SERVO MOTOR yaskawa
SGMP-15AWHG11 SGMP15AWHG11 SERVO MOTOR yaskawa
SGMP-15AWYR11 SGMP15AWYR11 1.5KW 200V 7.5AMP 4.77NM yaskawa
SGMP-15AWYR12 SGMP15AWYR12 AC 3KRPM 1500W 200V 7.5AMP yaskawa
SGMP-15U314 SGMP15U314 SERVO MOTOR yaskawa
SGMP-15V316C SGMP15V316C SERVO MOTOR yaskawa
SGMP-A8A3TA11 SGMPA8A3TA11 SERVO MOTOR yaskawa
SGMP-A8BW14B SGMPA8BW14B SERVO MOTOR yaskawa
SGMP-O1AWA4SPU SGMPO1AWA4SPU SERVO MOTOR yaskawa
SGMP-O2UW14M SGMPO2UW14M SERVO MOTOR yaskawa
SGMP-U20314M SGMPU20314M SERVO MOTOR yaskawa
SGMP-02W3026 SGMP02W3026 SERVO MOTOR yaskawa
SGMP-04AWYR31 SGMP04AWYR31 SERVO MOTOR yaskawa
SGMP-04AWYR32 SGMP04AWYR32 SERVO MOTOR yaskawa
If we put a permanent magnet in this area of rotating field, or if
we put in a coil whose current always runs in the same direction,
then this becomes a synchronous motor. Under a wide range of conditions, the motor will turn at the
speed of the magnetic field. If we have a lot of stators, instead
of just the two pairs shown here, then we could consider it as a
stepper motor: each pulse moves the rotor on to the next pair of
actuated poles. Please remember my warning about the idealised
geometry: real stepper motors have dozens of poles and quite
complicated geometries!
Induction motors
Now, since we have a time varying magnetic field, we can use the
induced emf in a coil – or even just the eddy currents in a
conductor – to make the rotor a magnet. That's right, once you have
a rotating magnetic field, you can just put in a conductor and it
turns. This gives several of the advantages of induction motors: no brushes or commutator means easier manufacture, no wear, no
sparks, no ozone production and none of the energy loss associated
with them. Below left is a schematic of an induction motor. (For
photos of real induction motors and more details, see Induction motors.)The animation at right represents a squirrel cage motor. The squirrel cage has (in this simplified geometry, anyhow!) two
circular conductors joined by several straight bars. Any two bars
and the arcs that join them form a coil – as indicated by the blue
dashes in the animation. (Only two of the many possible circuits
have been shown, for simplicity.)
This schematic suggests why they might be called squirrel cage
motors. The reality is different: for photos and more details, see Induction motors. The problem with the induction and squirrel cage motors shown in
this animation is that capacitors of high value and high voltage
rating are expensive. One solution is the 'shaded pole' motor, but
its rotating field has some directions where the torque is small,
and it has a tendency to run backwards under some conditions. The
neatest way to avoid this is to use multiple phase motors.
Three phase AC induction motors
Single phase is used in domestic applications for low power
applications but it has some drawbacks. One is that it turns off
100 times per second (you don't notice that the fluorescent lights
flicker at this speed because your eyes are too slow: even 25
pictures per second on the TV is fast enough to give the illusion
of continuous motion.) The second is that it makes it awkward to
produce rotating magnetic fields. For this reason, some high power
(several kW) domestic devices may require three phase installation.
Industrial applications use three phase extensively, and the three
phase induction motor is a standard workhorse for high power
applications. The three wires (not counting earth) carry three
possible potential differences which are out of phase with each
other by 120°, as shown in the animation below. Thus three stators
give a smoothly rotating field. (See this link for more about three phase supply.)If one puts a permanent magnet in such a set of stators, it becomes
a synchronous three phase motor. The animation shows a squirrel cage, in which for simplicity only
one of the many induced current loops is shown. With no mechanical
load, it is turning virtually in phase with the rotating field. The
rotor need not be a squirrel cage: in fact any conductor that will
carry eddy currents will rotate, tending to follow the rotating
field. This arrangement can give an induction motor capable of high efficiency, high power and high torques over a
range of rotation rates.
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Contact person: Anna
E-mail: wisdomlongkeji@163.com
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