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Q2MEM-4MBF | MITSUBISHI Linear flash memory card Q2MEM-4MBF

MITSUBISHI Q2MEM-4MBF Manual And Instructions
Q2MEM-4MBF datasheetPDF datasheet
Q2MEM-4MBF datasheetPDF datasheet
Q2MEM-4MBF Instruction Manual
Q2MEM-4MBF Detailed Manual

MITSUBISHI Q2MEM-4MBF Product information and technical parameters:
Brand: MITSUBISHI
Name: Linear flash memory card
Model: Q2MEM-4MBF
SRAM memory card; capacity: 4M bytes.
Support SD memory card.
High speed universal QCPU support SD memory card,
In order to be able to have a memory card port between SD and PC to easily realize data exchange.
In addition, the SD memory card and the extended SRAM card can be used simultaneously.
Therefore, the extension of the file register using the extended SRAM card,
SD memory card can be used at the same time to carry out the data file record, a large number of annotation data storage, through the memory card to guide operation.
Simply insert the SD memory card, you can automatically record.
Simply insert the SD in the CPU to save the record setting file, you can automatically start recording.
Even when remote data collection is required,
After receiving a record setting file by mail and copy it to the SD memory card,
Can immediately start recording.
Better user experience data recording function.
Easy to record, no need to program.
Simply through the special configuration tool wizard to easily complete the settings,
The collected data can be saved in CSV format to SD storage card.
Can be effectively used to save the CSV file to facilitate the creation of a variety of reference materials,
Including daily reports, generate reports and general reports.
These data can be applied to the data analysis, tracing, etc..
To record the change of control data without missing.
Data can be collected in a time interval or in a millisecond time interval,
To record the change of the specified control data without any omission.
Therefore, in the event of failure, can quickly determine the cause, the precise action analysis.

Program capacity: 124 K step.
Input / output points: 4096 points.
Number of input and output elements: 8192.
Processing speed: 0.034 s.
Program memory capacity: 496 KB.
Support USB and RS232.
High performance CPU plus a set of rich and powerful process control instructions.
High speed and high precision machine control by multi CPU MITSUBISHI Q2MEM-4MBF.
By parallel processing of the linear and multi CPU high-speed communication (cycle 0 Q2MEM-4MBF88ms) of the parallel control program, the high speed control.
Multi CPU high speed communication cycle and motion control synchronization, so it can achieve the maximization of computing efficiency.
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 MITSUBISHI Q2MEM-4MBF.
The position signal of the first axis servo amplifier, which is used on the motion CPU, is used as a trigger,
Starting from the programmable controller CPU to the second axis servo amplifier,
Time to output speed command of servo amplifier.
This time is the index of data transmission speed between CPU."Maximum control axis: 16 axis MITSUBISHI Q2MEM-4MBF.
Connection mode with servo amplifier: SSCNET III /H connection type.
The maximum distance between the drive units: 100m.
Operation cycle: 0.88ms, 1.77ms.
Interpolation function: linear interpolation (maximum 4 axis), 2 axis arc interpolation.
Color signal: 4 points.
Color detecting set: 16 set.
Even the long distance wiring can be flexible.
The use of fiber optic cable, with high speed, high performance, high reliability of the servo system controller network.
In addition to the traditional positioning control, but also to support speed / torque control and synchronous control.
Use simple movement module setup tool",
Can easily perform positioning settings, monitoring and debugging, etc..
In addition, the data can be collected and displayed synchronously with the motion controller.
SSCNET III /H connection to save the wiring, the maximum distance between the station up to 100m,
Absolute position system can be easily supported.
The upper limit limit switch, the lower limit switch and the near point block signal are input by the servo amplifiier,
Thus greatly reducing wiring Q2MEM-4MBF.
In addition to positioning control and speed control, but also to perform synchronization control, cam control, torque control, touch pressure control, etc..
Positioning module (QD75MH) of the project annd the sequence of the previous model is highly compatible with the old model,
The project can be easily applied to the simple motion module (QD77MS) Q2MEM-4MBF. "


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