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HF-KN23J-S100 General motors for MR-JE and MR-E

MITSUBISHI HF-KN23J-S100 Manual And Instructions
HF-KN23J-S100 datasheetPDF datasheet

MITSUBISHI HF-KN23J-S100 Product information and technical parameters:
Brand: MITSUBISHI
Name: General motors for MR-JE and MR-E
Model: HF-KN23J-S100
Type: HF-KN servo motor, low inertia, low power.
Rated output power: 0.2kw.
Rated speed: 3000r/min.
Electromagnetic brake: there.
Oil seal: have.
Encoder resolution: 131072p/r.
S100 representative: Super MR-E special motor.
KH003 special mark for Super MR-E.
High performance and easy to operate, reduce work load.
Enhanced system cost performance.
High performance, high precision positioning (servo motor encoder resolution: 131072).
High response.
Suppression of vibration by adaptive vibration suppression control.
Using personal computer and servo setup software to optimize tuning.
Has 2 types of interfaces:
Position control and speed control with pulse train interface.
The analog input interface is used for speed control and torque control.
Wide use.
Machining equipment and machine tool feed.
Used for food, packaging equipment and feeding device.
For textile machinery, etc..
Can improve the performance of equipment.
Servo amplifier terminals are used to reduce the required wiring time.
The connector is located in front of the servo amplifier, which is convenient for cable connection.
The gain adjustment can be easily carried out by the real-time automatic tuning function.

MITSUBISHI motor universal AC servo amplifier MELSERVO-J3 series.
Rated output: 0.75kw.
Interface type: general pulse interface type.
Power specification: single phase AC200V.
Pulse train and analog input as universal interface.
Can choose the position, speed and torque control mode.
The use of advanced tuning features such as advanced vibration suppression control and adaptive filter,
Greatly improve the performance of the machine HF-KN23J-S100 HF-KN23J-S100
MR-J3, your partner.
Higher performance, more features, more convenient to use.
Highest performance in the industry.
Speed response frequency up to 2.1kHz. Motor series: low inertia, small capacity.
Using a serial absolute / incremental encoder.
Rated output power: 0 HF-KN23J-S100. 2kw.
Rated speed: 3000rpm.
With the brake: without.
Shaft end: straight shaft.
AC servo motor and brushless DC servo motor in the function of the difference: AC servo is better, because it is a sine wave control, torque ripple small.
DC servo is a trapezoidal wave. DC servo is simple and cheap. Motor series: flat type, medium and small power.
Rated output power: 1.5kw.
Rated speed: 2000r/min HF-KN23J-S100.
Whether to bring the brakes: with.
Shaft end: Standard (straight).
Protection level: IP65 (IP67).
Features: flat type design makes this more suitable for installation in space.
Application examples: robot, food manufacturing machinery.
High resolution encoder 131072p/rev (17 bit).
The encoder with high resolution ensures excellent performance and stability at low speed.
All motor dimensions are the same as before and all are compatible with the wiring. Drive: MR-H_ACN series built-in positioning function.
Rated output: 0.6KW.
In servo drive speed closed loop,
Rotor speed measurement accuracy is very important to improve the dynamic and static characteristics of the speed control loop.
In order to seek the balance between measurement precision and system cost, incremental photoelectric encoder is generally used as the speed measuring sensor,
The corresponding method is M/T velocity measurement.
Although the M/T measurement method has a certain measurement accuracy and a wide range of measurement,
But this method has its inherent defects,
Mainly includes: the measurement period must be detected at least one complete encoder puulse, limiting the minimum detectable speed HF-KN23J-S100.
2 control system for speed control of the timer switch is difficult to maintain synchronization,
Can not guarantee the accuracy of measurement in the situation where the speed change is largger HF-KN23J-S100.
Therefore, it is difficult to improve the speed tracking and control performance of servo drive by using the traditional speed loop design method.


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