Description
hardware flow control. It is an ideal choice in the field of industrial automation.
How does ABB robot multi-task? Detailed steps on how to use ABB robot multitasking
1.ABB robots support multi-tasking (each robot body can support up to one motion task).
2. To use multi-tasking, the robot must have the 623-1 mulTItasking option
3. How to create a new multi-task?
4. Control panel, configuration
5.Theme controller
6. Enter the task and create a new one
At this time, it must be set to normal, otherwise programming cannot be performed. After all programming and debugging are completed, set it back to
semi staTIc and it will start running automatically.
7. Restart
8. The program editor enters t2 task.
9. How to transfer data between multiple tasks? The following takes the bool amount flag1 transferred between tasks as an example (that is, if any task
modifies the flag1 value, the flag1 value of the other task is also modified)
10. Both the front-end and the back-end must create data. The storage type must be a variable with the same type and the same name, for example:
Pers bool flag1
That is to say, both tasks must have this flag1, and it must be a variable variable.
11. In t2, the code is as follows
12. The foreground task code is as follows
The above can realize the background task to scan the di_0 signal in real time. If the di_0 signal changes to 1, flag1 is true. According to logic, the front
desk waits for flag1 to be true. After executing waituntil, set flag1 to false
13. How to run?
Click on the bottom one in the lower right corner of the teach pendant, make sure both tasks are checked, and then run it. You can test it.
14. There is no problem in the test. Enter the configuration interface, change t2 to semi staTIc, and restart. At this time, t2 cannot be selected and it has started
running automatically.
Analysis of ABB Robot Simulation Technology
The competitive pressure in the industrial automation market is increasing day by day, and customers are demanding higher efficiency in production to
reduce prices and improve quality. Spending time testing or commissioning a new product at the beginning of a new product is not feasible today because it would
mean stopping existing production to program the new or modified part. ABB”s RobotStudio is built on ABB VirtualController. We can use it to easily simulate the
on-site production process on the computer, allowing customers to understand the development and organization of the production process.
robotstudio features:
1. CAD import
RobotStudio can easily import data in various mainstream CAD formats, including IGES, S TE P, VRML, VDAFS, ACIS and CA TI A, etc. Robot
programmers can use these precise data to program robots with higher accuracy, thus improving product quality.
2. Automatic path generation
One of the most time-saving features in RobotStudio. By using a CAD model of the part to be processed, this function can automatically
generate the robot position (path) needed to track the machining curve in just a few minutes, a task that would normally take hours or even days.
3. Program editor
The program editor (Program Maker ) can generate robot programs, allowing users to develop or maintain robot programs offline in
a Windows environment, which can significantly shorten programming time and improve program structure.
4. Path optimization
The Simulation Monitor is a visual tool for robot motion optimization, with red lines showing where improvements can be
made to make the robot operate in the most efficient way.
5. Automatically analyze stretching ability
Users can use this function to move the robot or workpiece arbitrarily until all positions are accessible, and the work
cell floor plan verification and optimization can be completed within minutes.
6. Collision detection
Collision detection function can avoid serious damage caused by equipment collision. After selecting detection objects,
RobotStudio can automatically monitor and display whether these objects will collide when the program is executed.
7. Online homework
Use RobotStudio to connect and communicate with real robots, and perform convenient monitoring, program modification,
parameter setting, file transfer, backup and recovery operations on the robot.
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IS200EISBH1A Exciter ISBus board
IS200EHPAG2D pulse amplifier module
IS200EHPAG1C excitation high voltage pulse amplifier
IS200EHPAG1D high voltage gate pulse amplifier
IS200EHPAG1B high voltage pulse amplifier board
IS200EHPAG1A pulse amplifier board
IS200EHFCH2A excitation fan control
IS200EHFCH1A exciter fan control board
IS200EGPAG1B Temperature monitoring module
IS200EGPAG1A Temperature monitoring module
IS200EGDMH1A Ground detection board
IS200EDSLH2A transmission control unit
IS200EDSLH1A dual voltage regulator
IS200EDFFH3A DC feedback board
IS200EDFFH2A excitation module
IS200EDFFH1A Interface board
IS200EDEXG2B degaussing module
IS200EDEXG2A exciter board
IS200EDEXG1A communication card
IS200EDEXG1B excitation module
IS200EDCFG1B I/O terminal board
IS200EDCFG1A DC feedback board
IS200ECTXG1A Exciter CT expansion board
IS200ECTBG1A Output and input modules
IS200ECTBG2A contact terminal board
IS200EBRGH2A Interface board
IS200EBRGH1A Excitation bridge interface board
IS200EBKPG1C Backplane control board
IS200EBKPG1B exciter backplane control board
IS200EBKPG1A Excitation control backplane
IS200EBACG1A Digital controller
IS200EAUXH1A digital controller
IS200EACFG3A feedback board
IS200EACFG3B exciter AC feedback board
IS200EACFG2B excitation control module
IS200EACFG2A actuator AC feedback board
IS200EACFG1B exciter module
IS200EACFG1A AC feedback board
IS200DSPXH2D processor control board
IS200DSPXH1D digital signal processor control board
IS200DSPXH1C processor controller
IS200DSPXH1B digital signal processor board
IS200DSPXH1A digital signal controller
DS2020DACAG2 EX2100 series power module
DS2020DACAG1 Power module
IS420YDOAS1B I/O Ethernet network
IS420YAICS1B simulates I/O
IS420UCSDH1A quad-core controller
IS420UCSCH1B Balance controller
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