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MITSUBISHI MITSUBISHI FR-A7AL Price

Country: JAPAN
Name: Frequency converter communication accessories
Model: FR-A7AL
Price: 0
MITSUBISHI FR-A7AL
Type of input: DC leakage.
Input points: 32 points.
Input voltage: 12/24.
Input current: 3/7mA.
Connection mode: terminal row.
Common common point: 32.
Functional block diagram language is a kind of PLC programming language, which is similar to digital logic circuit.
The function module is used to represent the function of the module,
Different function modules have different functions.
Functional module figure programming language features: functional block diagram programming language is characterized by a functional module for the unit,
Analysis and understanding of the control scheme is simple and easy: function module is to use graphical form of expression,
Intuitive, for a digital logic circuit based on the design of the staff is very easy to master the programming;
Control system with complex scale and complex control logic,
Because the function module diagram can clearly express the function relation, the programming debugging time is greatly reduced FR-A7AL Type: general purpose AC servo amplifier MR-E series.
Rated output: 1.0kw.
Interface type: general purpose pulse interface.
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. MITSUBISHI inverter FR-D720 series.
Voltage level: three phase 200V.
Frequency converter capacity: 0.1KW.
Vector control variable frequency speed control is the practice of the asynchronous motor in the three-phase coordinate system of the stator current Ia, Ib, Ic, through the three-phase to two-phase transformation,
The alternating current of Ia1Ib1 is equivalent to a two phase stationary coordinate system, and then is rotated by the rotor field oriented,
Equivalent to the DC current Im1, It1 (Im1 equivalent to DC motor excitation current in synchronous rotating coordinate system;
It1 equal to the armature current proportional to the torque, and then imitate the DC motor control method, to obtain the DC motor control,
The control of asynchronous motor is realized through the corresponding inverse coordinate transformation.
FR-A7AL Operation manual / Instructions / Catalog download link: /searchDownload.html?Search=FR-A7AL&select=5


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