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HF-JP103B Low inertia medium / high power servo motor
MITSUBISHI HF-JP103B Manual And Instructions
HF-JP103B datasheetPDF datasheet

MITSUBISHI HF-JP103B Product information and technical parameters:
Brand: MITSUBISHI
Name: Low inertia medium / high power servo motor
Model: HF-JP103B
Servo motor series: low inertia, medium / high power.
Rated output: 1.0kw.
Rated speed: 3000r/min.
Electromagnetic brake: with.
Shaft end specification: Standard (straight axis).
Features: low inertia for high speed / acceleration and deceleration operation occasions.
IP level: IP67.
Application example:
1, food processing machinery.
2, printing machine.
3, injection molding machine (11KW, 15KW).
4, large press machine (11KW, 15KW).
The protection level of the HF-SP/HF-JP series servo motor is IP67 (except the shaft part).
Low inertia of the power servo motor (0.5kW ~ 9kW), the maximum speed: 6000r/min (rated speed: 3000r/min),
Suitable for high frequency positioning and acceleration / deceleration operations, especially for food processing machines and printing machines.
Low inertia, high power, no cooling fan servo motor (11kW and 15kW), maximum speed: 3000r/min (rated speed: 1500r/min).
The motor structure is more compact due to the adoption of the non cooling fan design, and the connection is reduced by using the power source connector.
(compared with the HF-LP series servo motor with the same power, the volume is reduced by about 46%, and the weight is reduced by about 34%,
Suitable for high frequency positioning and acceleration / deceleration operations, especially for injection molding machines and large presses.
HF-JP703 (4) /903 (4) maximum speed: 5000r/min.

The length of the line: 2M.
IP level: IP65.
Relay type.
Bending life: standard.
Connector kit for motor electromagnetic brake.
Cable for electromagnetic brake, for HF-KP/HF-MP series (motor shaft with side extraction). Servo motor series: medium inertia, medium power.
Rated output: 7.0kw.
Rated speed: 2000r/min HF-JP103B.
Electromagnetic brake: No.
Shaft end specification: Standard (straight axis) HF-JP103B
Characteristics: medium inertia has two types of low speed and high speed, suitable for different applications.
IP level: IP67.
Application example:
1, material handling system.
2, industrial robots.
3, X-Y working table.
The protection level of the HF-SP/HF-JP series servo motor is IP67 (except the shaft part) HF-JP103B.
Motor capacity selection soft (MRZJW3-MOTSZ111E)
Friendly interface design, only in the mechanical description window input constant and operation mode can choose the best servo amplifier,
The servo motor and the regenerative braking options, but also in the selection window in the selection of linear servo motor and direct drive motor.
Characteristic
(1) 10 typical mechanical transmission structure can be used to choose
(2) user defined operating modes (location and speed control)
(3) in the selection process, the feed speed and torque can be displayed in a graphical format HF-JP103B.
(4) the calculation process can be displayed
Can easily calculate the power of the servo motor free software!Drive: MR-H_ACN series built-in positioning function.
Rated output: 0.1KW.
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 encodder pulse, limiting the minimum detectable speed HF-JP103B.
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 larrger HF-JP103B.
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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