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MITSUBISHI MR-JCCBL5M-L
MITSUBISHI MR-JCCBL5M-L
1 axis servo amplifier.
MITSUBISHI general AC servo amplifier MELSERVO-J4 series.
Rated output: 1.0kw.
Interface: General purpose.
Power supply: three phase AC200V.
Special specification: full closed loop control 4 wire / device end encoder ABZ phase input corresponding support function security unit, support positioning mode MITSUBISHI .
Servo amplifier supporting universal interface.
Servo amplifier for universal interface MR-JCCBL5M-L
Speed / torque control of position control and analog voltage command can be carried out by using pulse train command.
Support Max instruction pulse frequency 4 Mpulses/s.
2 low frequency vibration can be suppressed at the same time by supporting the seismic algorithm of 3 inertial equipment MITSUBISHI .
Configurator2 MR to achieve convenient adjustment.
Effectively restrain the low frequency aftershock effect produced by the front end of the boom or the main body of the device 100Hz.
Can effectively shorten the time to control the stability of the aftershock.
In the XY design of trajectory control, improve the accuracy of arc track MITSUBISHI .
At the same time, it can effectively control the phenomenon of quadrant protrusion caused by the rotation direction of the servo motor, which is caused by friction and twisting . Station type: Master station.
Maximum number of stations: maximum 16.
Occupied points: 8 points.
Transfer speed: 10Mbps.
Power supply: 240mA DC24V.
Weight: 0.3kg.
FX3U-16CCL-M is the master module of V2 CC-LINK.
The main station can be connected to 8 remote I/O stations, and 8 remote equipment station or intelligent equipment station.
Can be connected to FX3GA, FX3GE, FX3GC, FX3U and FX3UC of the host.
Connecting FX3UC, FX3GC requires FX2NC-CNV-IF or FX3UC-IPS-5V. Output type: relay.
Output points: 12 points.
Load voltage: AC240/DC24.
Load current: 2A.
Connection mode: terminal row.
Common public end points: 4.
Sequential function flow chart language is designed to satisfy the sequential logic control.
The process of sequential process action is divided into steps and transformation conditions,
According to the transfer condition, the control system is distributed in the function flow sequence,
Step by step according to the sequence of actions.
Each step represents a control function, represented by the box.
In the box, the ladder logic is used to complete the task of the corresponding control function.
This programming language makes the program structure clear and easy to read and maintain,
Greatly reduce the programming workload, shorten the programming and debugging time.
Used in the system of the size of the school, procedures for more complex occasions.
Sequence function flow chart programming language features: to function as the main line, in accordance with thee functional flow of the ordder of distribution, clear, easy to understand the user program,
Avoid the defect of ladder diagram or other languages,
At the same time, the use of ladder language to avoid the use of ladder programming,
Due to the compllicaated mechanical interlock, the structure of the user program is complex and difficult to understand,
User program scan time is also greatly reduced MITSUBISHI MR-JCCBL5M-L MITSUBISHI MR-JCCBL5M-L.
MR-JCCBL5M-L Operation manual/Instructions/Model selection sample download link: /searchDownload.html?Search=MR-JCCBL5M-L&select=5


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