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MITSUBISHI MR-J3BCN1 SSCNET III connector kit

Brand: MITSUBISHI
Name: SSCNET III connector kit
Model: MR-J3BCN1
SSCNET III connector kit

The length of the line: 2M.
IP level: IP65.
Cable outlet direction: the same side of the motor shaft.
Bending life: high bending life.
Encoder with cable (motor side); for HF-KP/HF-MP series (motor shaft with side extraction). Motor series: low inertia, small capacity.
Using a serial absolute / incremental encoder MITSUBISHI MR-J3BCN1.
Rated output power: 0.2kw.
Rated speed: 3000rpm.
With the brake: not with brake MR-J3BCN1
Without GB.
Shaft end: straight shaft.
A servo motor is an engine that controls the operation of the mechanical components in the servo system.
Servo motor can make the control speed, position accuracy is very accurate, can be converted to torque and speed voltage signals to drive the control object MITSUBISHI MR-J3BCN1.
Servo motor rotor speed is controlled by the input signal, and can quickly response,
In the automatic control system, used as actuators, and electromechanical time constant, high linearity, initiating voltage characteristics,
The signal can be converted into a motor shaft on the angular displacement or angular velocity output.
Divided into DC and AC servo motor two major categories, the main features are,
When the signal voltage is zero, there is no rotation,
The speed increases with the increase of the torque and the speed decreases MITSUBISHI MR-J3BCN1. Type: HC-PQ type.
Output power: 0.03kw.
Rated speed: 3000r/min.
Electromagnetic brake: there.
Key axis: straight shaft.
Motor aspects: the material, structure and processing technology of the servo motor is much higher than that of AC motor,
That is when the driver output current, voltage, frequency change is fast power supply,
The servo motor can change according to the change of the response of the power supply,
Response characteristics and anti overload capacity is much higher than the AC motor drive,
Motor aspects of the serious differences between the two are fundamentally different peerformance MR-J3BCN1.
That is not the inverter output can not change so fast power signal,
But the motor itself can not react,
So in the frequency of the internal algorithm set to protect the motor to do the corresponding overload.
Of course, even wwithout the ability to set the output of the inverter is limited,
Some of the excellent performance of the inverter can be directly driven servo motor MR-J3BCN1.


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