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MITSUBISHI MR-J2S-20CP1-S084 Compatible with MR-J2S- CP-S084 - servo amplifier and interface unit MR-J2S-TO1 positioning by CC-Link MITSUBISHI MR-J2S-20CP1-S084
Brand: MITSUBISHI
Name: Built in positioning function servo amplifier
Model: MR-J2S-20CP1-S084
MITSUBISHI general purpose AC servo amplifier MELSERVO-J2-Super series.
Rated output: 0.2kw.
Built in positioning function.
Voltage: single phase AC100V.
Compatible with "MR-J2S- CP-S084" - servo amplifier and interface unit "MR-J2S-TO1" positioning by CC-Link
Simply setting the point table.
AC servo can be used as the driving source of the field network.
Using servo amplifier built-in positioning function, position data and speed data, you can set the CC-Link.
Start, stop and display can also be transmitted through the CC-Link.
Serial communication reduces wiring.
AC servo distributed control system can be easily constructed.

MITSUBISHI motor universal AC servo amplifier MELSERVO-J3W series (a two axis servo amplifier).
Rated output A axis: 750w.
Rated output B axis: 750w.
Interface type: SSCNET type III fiber communication.
With the same high performance, multi functionality and practicality of the MR-J3-B servo amplifier,
Each MR-J3W-B servo amplifier can be used to rotate the servo motor,
Combined control of any two kinds of linear servo motor and direct drive servo motor MITSUBISHI MR-J2S-20CP1-S084 MR-J2S-20CP1-S084
The installation area can be reduced by 25% to 17% compared with two MR-J3-B servo amplifiers.
Therefore, a more compact control system can be constructed.
In addition, the two axes use the same main circuit power supply, control circuit power supply and SSCNET III communication fiber, thus greatly reducing the wiring MITSUBISHI MR-J2S-20CP1-S084. Motor series: low inertia, medium and small capacity.
Using a serial absolute / incremental encoder.
Rated output power: 0.75kw.
Rated speed: 3000rpm.
With a brake band.
Shaft end: straight shaft.
Comparison of single phase induction motor and servo motor.
The working principle of the AC servo motor is similar to that of the single phase induction motor,
But the rotor resistance of the former is much larger than that of the latter,
So the servo motor is compared with the single machine asynchronous motor,
There are three notable features:
1, large starting torque MITSUBISHI MR-J2S-20CP1-S084.
2, a wide range of operation.
3, no rotation phenomenon MITSUBISHI High capacity servo motor in low inertia.
AC servo motor running smoothly, low noise.
But the control characteristic is non-linear, and because the rotor resistance is big, the loss is big, the efficiency is low,
Therefore, compared with the same capacity DC servo motor, the volume is large and the weight is heavy,
So it is only suitable for 0 MITSUBISHI High capacity servo motor in low inertia. 5-100W small power control system. Type: HA-SE series.
Rated output: 1.5KW.
Rated speed: 2000r/min MITSUBISHI High capacity servo motor in low inertia.
Electromagnetic brake: there.
Control complex, easy to achieve intelligent,
The electronic commutation method is flexible and can be changed by square wave or sine wave.
Motor maintenance free, high efficiency, low operating temperature,
Electromagnetic radiation is very small, long life, can be used in a variety of environments.
AC servo motor is brushless motor, which is divided into synchronous and asynchronous motor,
Synchronous machines are commonly used in motion control,
Its power range, you can do a lot of power.
Large inertia, the maximum rotation speed is low, and with the increase of power and rapid reduction.
So it is suitable for the application of low speed and stable operation.
The rotor of the servo motor is permanent magnet,
Drive controlled U/V/W tthree phase electric electromagnetic field,
The rotor rotates under the action of the magnetic field,
At the same time the motor comes with the encoder feedback signal to the drive,
According to the feedback value and thhe target value, the driver is compared,
Adjust the rotor rotation angle MITSUBISHI MR-J2S-20CP1-S084 MR-J2S-20CP1-S084.
The accuracy of the servo motor is determined by the accuracy of the encoder.


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