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Q26UDHCPU MITSUBISHI Q26UDHCPU


Input / output points: 4096 points.
Size side mode: small end mode.
SD memory card: available.
6.8.1 OS:VxWorks edition.
Advanced information processing and stable I/O control of high-end type.
C language controller is a long term stable supply, high reliability, high performance, flexible MELSEC on the implementation of the C language program revolutionary openn platform Q26UDHCPU.
Including pre installed VxWorks,
This C language controller can be used with various modules of the MELSEC-Q series,
Partner products and open source,
Client program assets, such as portfolio use to build a variety of systems Q26UDHCPU.
As can be used in all scenarios, can replace the computer, a new computer platform,
C MELSEC language controller stronger, simpler, higher performance, more flexible, in the future will also continue to continue to develop Q26UDHCPU.Control axis: maximum 8 axes.
Greater flexibility.
PLC control and motion control using independent CPU, optimize the system configuration.
More than 4 CPU modules can be freely selected in multi CPU system.
MITSUBISHI SSCNET control function MITSUBISHI Q26UDHCPU.
By using the high speed serial communication mode, we can easily construct the synchronization system of the servo motor.
The motion controller and the servo amplifier can be quickly connected by a connector, and the connection is simplified.
Each 1 CPU can control up to 32 axes at the same time MITSUBISHI Q26UDHCPU.
Can control the small capacity from 10W to 55KW large capacity servo motor.
Through the use of digital oscilloscope function, can be used to control the power distance, speed, position and other motor information monitoring.
Input / output points: 4096 points MITSUBISHI Q26UDHCPU.
Number of input and output elements: 8192.
Program capacity: 260 K step.
Processing speed: 0.0095 s.
Program memory capacity: 1040 KB.
Support USB and RS232.
Support installed memory card.
Providing high speed communication between multiple CPU.
Shorten the fixed scan interrupt time, high precision device.
The minimum interval of the fixed period interrupt program is reduced to 100 s.
The high speed signal can be accurately obtained, which makes the contribution to the higher precision of the device.
High speed and high precision machine control by multi CPU.
By parallel processing of the linear and multi CPU high-speed communication (cycle 0.88ms) of the parallel control program, the high speed control.
Multi CPU high speed communication cycle and motiion control synchronization, so it can achieve the maximization of computing efficiency Q26UDHCPU.
In addition, the latest movement control CPU in performance is 2 times the previous model,
To ensure high speed and high accuracy of the machine control.

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