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SHENZHEN RUIDA TECHNOLOGY CO., LTD. User’s Manual of VCutWorks V1.0 Shenzhen Ruida Technology Co., Ltd. RD Co., Ltd. Copyright Declaration Shenzhen RuiDa Technology Co., Ltd. reserves all rights. 1 / 99

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Page 1: en.rd-acs.comen.rd-acs.com/Private/Files/636994028122182843896970942.d… · Web viewThe users should peruse this Manual prior to using the product stated herein. RD Co., Ltd. shall

SHENZHEN RUIDA TECHNOLOGY CO., LTD.

User’s Manual of VCutWorks

V1.0

Shenzhen Ruida Technology Co., Ltd.

RD Co., Ltd.Copyright Declaration

Shenzhen RuiDa Technology Co., Ltd. reserves all rights.

Shenzhen Ruida Technology Co., Ltd. (hereinafter referred to as “RD Co., Ltd.”) holds the patent right, copyright and other intellectual property rights for this product and its related software. Without authorization, no one is allowed to copy, manufacture, process and use this product and its relative parts directly or indirectly.

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RD Co., Ltd. is entitled to increase or reduce and modify the shape and functions of this product stated herein as well as amend any documents attached to this product, without prior notification.

The users should peruse this Manual prior to using the product stated herein. RD Co., Ltd. shall not be responsible for the direct, indirect, special, incidental or corresponding losses or damages arising out of improper use hereof or of this product. The machine in operation is dangerous, so the users are obliged to design and institute the effective mechanism for error handling and safety protection. RD Co., Ltd. shall not undertake any duties or responsibilities for the incidental or corresponding losses arising therefrom.

Version HistoryVersion LogV1.0 The original version

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Catalog1 OVERVIEW..................................................................................................................................7

1.1 BRIEFING..........................................................................................................................71.2 FILE FOMRAT...................................................................................................................71.3 REQUIREMENT................................................................................................................71.4 MAIN INTERFACE OF SOFTWARE...............................................................................81.5 LANGUAGE SETTINGS AND VENDOR INFO.............................................................81.6 OPEN AND SAVE..............................................................................................................9

1.6.1 OPEN.......................................................................................................................91.6.2 SAVE.....................................................................................................................10

1.7 IMPORT AND EXPORT..................................................................................................101.7.1 IMPORT.................................................................................................................101.7.2 EXPORT................................................................................................................11

2 PARAMETERS...........................................................................................................................122.1 SOFTWARE PARAMETER.............................................................................................13

2.1.1 CONFIGURATION...............................................................................................132.1.2 OPTIMIZE.............................................................................................................162.1.3 IMPORT/EXPORT................................................................................................182.1.4 INTERFACE..........................................................................................................202.1.5 CONTROLLER.....................................................................................................22

2.2 VENDOR SETTINGS......................................................................................................232.2.1 SYSTEM PARAMETERS.....................................................................................232.2.2 AXIS PARAMETER..............................................................................................252.2.3 IO CONTROL.......................................................................................................282.2.4 VIBRATE CUTTER..............................................................................................28

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2.2.5 MILLING CUTTER..............................................................................................292.2.6 WHEEL PARAMETER.........................................................................................302.2.7 PUNCH PARAMETER.........................................................................................302.2.8 PEN PARMETER..................................................................................................312.2.9 REDLIGHT PARAMETER...................................................................................312.2.10 FIRST PUNCH PARAMETER............................................................................322.2.11 INHALE PARAMETER......................................................................................322.2.12 CONTROLLER INFO.........................................................................................33

2.3 USER PARAMETER.......................................................................................................332.3.1 WORK PARA........................................................................................................332.3.2 FEEDING PARA...................................................................................................352.3.3 HOMING PARA....................................................................................................362.3.4 WORK SPEED PARA...........................................................................................362.3.5 PANEL SPEED PARA...........................................................................................372.3.6 DELAY PARA.......................................................................................................382.3.7 OTHER PARA.......................................................................................................38

3 CAD FUNCTIONS......................................................................................................................403.1 DRAWING FUNCTION..................................................................................................403.2 OBJECT SELECT............................................................................................................443.3 OBJECT COLOR.............................................................................................................453.4 OBJECT TRANSFORM...................................................................................................45

3.4.1 OBJECT MIRROR................................................................................................463.4.2 OBJECT ROTATION............................................................................................473.4.3 OBJECT SIZE.......................................................................................................483.4.4 OBJECT SKEW.....................................................................................................483.4.5 OBJECT POSITIONING.......................................................................................49

3.5 OBJECT ALIGNMENT...................................................................................................493.6 OBJECT VIEW................................................................................................................493.7 GROUP AND UNGROUP...............................................................................................50

4 SOFTWARE FUNCTIONS.........................................................................................................504.1 IMAGE LIBRARAY........................................................................................................514.2 BACKGROUD FUNCTION............................................................................................514.3 MANUAL ORDERING....................................................................................................524.4 PATH OPTIMIZE.............................................................................................................544.5 CURVE SMOOTH...........................................................................................................554.6 CURVE CHECK...............................................................................................................57

4.6.1 CURVE AUTO CLOSE.........................................................................................574.6.2 DELETE OVERLAP.............................................................................................574.6.3 COMBINING CURVE..........................................................................................584.6.4 DATA CHECK.......................................................................................................58

4.7 PREVIEW FUNCTION....................................................................................................594.8 OFFSET FUNCTION.......................................................................................................594.9 NESTING FUNCTION....................................................................................................60

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4.10 ADD MARK FUNCTION..............................................................................................614.10.1 SHOES MARK....................................................................................................614.10.2 CLOTH MARK...................................................................................................62

4.11 SELECT TOOLS............................................................................................................634.11.1 ACCORDING TO LENGTH...............................................................................634.11.2 ACCORDING TO SIZE.......................................................................................644.11.3 ACCORDING TO TYPE.....................................................................................654.11.4 ACCORDING TO PROPERTY...........................................................................66

4.12 SPECIAL PUNCH TOOLS............................................................................................664.13 CUT IN/OUT FUNCTION.............................................................................................674.14 CUTTING LINE FUNCTION........................................................................................68

5 PROCESSING OUTPUT............................................................................................................695.1 COMMUNICATION SETTINGS....................................................................................69

5.1.1 USB COMMUNICATION....................................................................................705.1.2 ETHERNET COMMUNICATION........................................................................70

5.2 POSITIONING.................................................................................................................715.3 UFILE MANAGEMENT.................................................................................................72

5.3.1 CREATE UFILE....................................................................................................725.3.2 DOWNLOAD UFILE............................................................................................725.3.3 OUTPUT UFILE DIRECTLY...............................................................................735.3.4 UFILE MANAGEMENT......................................................................................73

5.4 PROCESSING CONTROL..............................................................................................745.4.1 FRAME..................................................................................................................745.4.2 START/PAUSE/STOP...........................................................................................75

5.5 TESTING..........................................................................................................................755.6 OUTPUT SETTINGS.......................................................................................................76

5.6.1 OUTPUT LAYER ORDER...................................................................................765.6.2 OUTPUT SELECT................................................................................................775.6.3 FEEDING..............................................................................................................775.6.3 PARTITION FOR OVER RANGE........................................................................785.6.4 ASYNC DOUBLE HEADS...................................................................................79

5.7 LAYER PARAMETER.....................................................................................................815.7.1 CUT.......................................................................................................................815.7.2 PEN........................................................................................................................815.7.3 PUNCH..................................................................................................................825.7.4 SPECIAL PUNCH.................................................................................................83

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1 OVERVIEW

1.1 BRIEFING

The cutter control system realizes the effective control of the tool cutting CNC machine through the computer, and completes the processing task according to the different requirements of the user.

The system includes control board and control panel, and supporting software. This manual describes how to use software to complete the machining task.

(main board wiring and control panel operation, please refer to the supporting main board wiring instructions and control panel operation instructions).

1.2 FILE FOMRAT

dxf、ai、plt、dst、dsb…etc。1.3 REQUIREMENT

(1) It runs on WindowsXP and above versions of the operating system.

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(2) above CPU 586, it is suggested that P III or P IV above.(3) it is recommended to use more than 2G of memory.

1.4 MAIN INTERFACE OF SOFTWARE

When you start the software, you can see the operation interface as shown below. Familiarity with this interface will be the basis for cutting and machining with this software.

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Alignment toolsProperty bar

Control Panel

Layer bar

Edit tools

System barMenu

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When you start the software, you can see the operation interface as shown below. Familiarity with this interface will be the basis for cutting and machining with this software.

1.5 LANGUAGE SETTINGS AND VENDOR INFO

In addition to setting up the language types of software during the installation process, you can also switch different languages in use.

Click menu [help] [/Language] to expand the menu, choose the type of language needed, it is convenient to switch in different languages.

Get the manufacturer's information so that we can provide you with better service. Click menu [help] [about VCutWorks]

How to set up manufacturer's information, please refer to "VCutWorks software installation instructions".

At the bottom of the dialog, the version number of the software is displayed. As different versions of the software may have some differences on the function and interface, it is convenient to communicate with the manufacturer through the software version number.

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1.6 OPEN AND SAVE

This software uses VCF format file, VCF file preserves the information of the graph, the processing parameters of each layer, and the processing sequence of each graphic element. Therefore, saving the imported graphic data into VCF files can facilitate the output processing after this graphics.

1.6.1 OPEN

Click on [open] in the menu [file], or click Open the icon and appear as the following dialog:

(2)Select the file you want to open (example: Default.VCF), then click [open]。

1.6.2 SAVE

(1)Click on [save] in the menu [file], or click Save the icon and appear as the following

dialog:

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Input file name

Select file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for openSelect file for open

Input file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file nameInput file name

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(2)Enter the file name in the file name edit box and click save.。

1.7 IMPORT AND EXPORT

Since this software is used in VCF format files, the use of other materials to make or edit is done by importing, and the graphical files that use the export to make it complete are applicable to other software. Imported file formats support: DXF, AI, PLT, DST, DSB, etc.; exported file format support: PLT, AI。

1.7.1 IMPORT

Click on [import] in menu [file], or click Import icons. Display dialog boxes as shown in the

following figure,After selecting the corresponding file, click the Open button.。

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【Preview】show current selected file【Preview】show current

selected file【Preview】show current

selected file【Preview】show current

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selected file【Preview】show current

selected file

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◆选中【Preview】,可以在选择文件时显示文件的图形。For vector data, the data is described hierarchically according to the corresponding file

format and automatically imported into the corresponding layer of VCutWorks. For some special files, such as DST/DSB, it will be imported into the current layer.

1.7.2 EXPORT

Click on [Export] in menu [File], or click Export icons. Then the Export dialog box is

displayed. Enter the name of the file and click the Save button

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Current layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layerCurrent layer

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2 PARAMETERS

Most of the related configurations of the VCutWorks cutter system are centralized in a unified parameter setting. There are three ways to configure the parameters:

1 from the menu [file] select [system settings]2 select the parameter settings button from the system toolbar3 press the shortcut key F6

Cutter cutting system parameters include two parts: software parameters and motherboard parameters, and the main board parameters can be subdivided into factory parameters and user parameters. Software parameters are parameters that only software is responsible for saving and using. It is mainly a parameter for configuring software operation and process. The main board parameters are the parameters that the main board is responsible for saving and using. It is mainly the parameters of the system configuration and process configuration of the main board. In general, the main board parameters can be modified from the operation panel, and the main board parameters are modified by the software to modify the other side of the large parameter, and the main board is modified through the operation panel. The number is mainly used for offline applications.

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2.1 SOFTWARE PARAMETER

2.1.1 CONFIGURATION

[AXIS MIRROR]The orientation mirror of the shaft is usually set according to the actual position of the

machine.The default coordinate system is the Cartesian coordinate system. According to the habit, the zero point is below the left. If the actual machine zero is above the left, the X axis does not need a mirror, and the Y axis needs a mirror. If the actual machine zeros are on the top right side, the X and Y axes need mirroring.

A more convenient way is to see whether the coordinates of the coordinates in the graphics display area are consistent with the actual origin of your machine. If not, modify the direction of the corresponding direction. If the arrows appear in the upper left corner and the origin of your machine is in the upper right corner, you only need to check the X mirror.

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[position of the head]The position of the cutter head is used to set the position of the cutter head relative to the figure.

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Middle-RightCenterMiddle-Left

Top-RightTop-MiddleTop-Left

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Intuitive view only needs to see where the green point of the graphics area is in the position of the graph。

[page width]:The width of the page in the view is generally set to the X size of the machine.

[page height]:The height of the page in the view is generally set to the Y size of the machine.Under normal circumstances, if the main board has been connected, the software will automatically get the current machine's work size as the page size. If you do not connect to the main board, or you need to define the page size yourself, such as setting the page according to the material size, you can use page settings to reconfigure the page size.

[intershift] [spacing]:When the main board and the machine support the electric double head application, the actual Machinable amplitude is larger than the single - knife motion amplitude, so this parameter is needed to compensate the machine's amplitude.Actual machine amplitude = intershift head + double head spacing

Note: this parameter does not change the movement of motherboard, but the dual head shifting and the double head spacing need to be configured in the manufacturer's parameters.

[machine type]The cutter software can be used for ordinary single head machine and double head

asynchronous type. Switching the machine type, the interface display and output mode of the software will change, so switching the machine type will prompt the user to restart the software.

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Select Yes, and the software will automatically turn off and restart and open with the matching interface of the selected machine type. If "no" is selected, the software will not automatically restart until the next time the user opens the software, the software will automatically switch to the new machine type interface.

Double head asynchronous [machine structure]:It is divided into two kinds of double cantilever (double X) and double beam (double Y)

structure.

Double head asynchronous [dual axis safe distance]:Based on the nearest distance between the two heads, a certain margin of safety can be added.

Double head asynchronous [minimum distribution width]:When the total width of the software is to be output (for the total width of the double X

model and the total graphic height for the double Y model) less than that, the software no longer carries out the double head allocation. This parameter is mainly combined with user usage to avoid inefficient allocation of small graphics.

Double head asynchronous [large graphics minimum size]:When the size of a single graph in the software to be output is larger than that of the value

(for the width of a single graph for a double X model and the height of a double Y model for a single figure), it is considered a large figure. Software distinguishes large graphics. Large graphics are usually arranged in the final output. If necessary, segmented output of large graphics will be processed.

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2.1.2 OPTIMIZE

[small circle speed limit] In processing, the system automatically determines whether the processing object is a small

circle with speed limit. Then, according to the diameter of the circle, the current setting speed is used to process the circle. If the parameters are properly configured, the cutting quality of small circles will be greatly improved. You can click [add], delete [modify] to set the parameter.

The speed rule of a small circle is less than the minimum radius of a small speed limit list, and the output speed is based on the corresponding speed of the minimum radius circle. The speed of the largest circle in the speed limit list is only related to the speed of the layer. For speed limit list, set the output speed according to the list.

If the speed required by the speed limit is greater than that set in the layer parameter, it will be output at the speed of the layer.

[gap compensation optimization]: When there is a gap in the machine (such as the dislocation of the cutting figure seal), you

can check this item.

[cut and reverse gap]: In addition to the use of the gap compensation optimization, the reverse clearance can be

compensated directly according to the reverse gap size and the reverse clearance compensation value. In general, [gap compensation optimization] can be used.

[lift the knife angle]: During the cutting process, the change of the direction of the two adjacent lines is more than

the lifting angle.

[the starting point let the knife] Because of the physical size of the tool and no tool compensation, it will cause excessive

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cutting or cutting. Let the knife set the positive and negative values, that is to say, the tool action can be achieved in advance or after pushing.

[cutting direction]: Clockwise or counter clockwise cutting can be selected according to tool type. In general,

you can also not pay attention to the direction of the knife.

[make a knife eye]: To enable or prohibit the function of a knife eye.

[first cut the eye after cutting]: First, after the knife is cut, all the blades that need to be lifted and knives are first cut and

then cut. Otherwise, it will be executed in the order of processing.

[make the cutting corner optimization]: Make or prohibit the cutting corner optimization function.

Corner optimization [minimum angle] [maximum angle]: The angle range of the line segment is required for the corner treatment.

Corner optimization [corner radius]: The radius of the arc used to replace the corner.

2.1.3 IMPORT/EXPORT

[PLT's plotter unit]: Select the appropriate import unit according to the accuracy of the original PLT file. The default value is 1016, the precision of the optional import is 1000, and the user can input the accuracy of

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PLT import. [DXF data unit]

The default DXF importing unit of the software is millimeter. If the size of the imported DXF data is inconsistent with the original figure, it may be caused by the unit mismatch. The optional data units have millimeters, centimeters, inches, and custom. When choosing custom, the user sets the data of one unit in the DXF file to correspond to the number of millimeters in the VCutWorks software.

[import DXF text information] When the user only needs graphic information in DXF and does not need the text information

in the file, it can not be selected.

[import DXF point] The DXF file can support "dot" primitives. In general, there is no need to import points to

prevent unnecessary points due to incorrect operation by users. In addition, the VCutWorks support point graph is processed in the form of circular punching, so for special applications, the user can express punching by point graphic element when designing punching graphics.

[allow import of AI filled outline] The outline of the AI file includes the contour of the curve and the filled contour of the

region. Some of the figures may have only the contour of the curve or the filling outline in the region, or the user needs the contour of the curve and the area to fill the contour to realize the specific process.

[import DST support color layer]By default, the software does not enable DST color layer parameters. When importing DST graphics, use the color of the current layer of VCutWorks as the color to import. If DST is made, the color of different processes can be distinguished by considering the cutting process requirements, and it can also be imported into the DST color layer.

[automatic rotation of the imported graphics 90 degrees] This function is mainly used to import the typesetting graphics output from third party

typesetting software, because the typesetting software is transversal typesetting, and the cutting software is usually lengthwise for super amplitude cutting, so it is necessary to rotate the graphics 90 degrees.

[import graphics parked position] The location of importing graphics can be selected: none, center, upper left, right upper, right

bottom and left bottom. Drawing into VCutWorks, it will automatically choose the location according to the location of the graphics, and make corresponding calls in the workspace of the software.

By default, the software chooses the location as the center. Parked in the software workspace

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center, generally applicable to small format aircraft, graphics positioning is relatively arbitrary. The choice of "no" is generally applicable to graphics files where the location of processing has been taken into account.

The other is chosen according to the use habit.

Import processing [close check] When the error of the closed curve seal is less than the "closed tolerance", the curve is

automatically closed.

Import processing [combined line] Between the non closed curves in the graphics, the adjacent distance between the starting

point or the end point of the curve and the curve is less than the "merge tolerance", then the software automatically connects the curves.

Import processing - [node processing] According to the node tolerance parameter, the nodes of the curve are automatically

optimized during the import process. The greater the value, the more nodes of the curve are optimized and deformed, the greater the error after the optimization, and the less the nodes are optimized and deformed, and the results after the optimization are relatively small.

[at zero point at the standard point] Special application, generally do not use.

If the zero point is allowed to be set, the user can set the specified position as the fixed point, or the machine's current coordinates as the standard point. The zero point is used as the zero point of the machine coordinate system with other systems. [direct output processing when external call]

Other software (a series of software with VCutWorks) can directly call the VCutWorks into the graphics to VCutWorks. If the related processing parameters have been completely configured, the user can also enable the user to directly output processing when the external call, the imported graphics, direct connection for processing, and sent to the board Process.

The software will not be directly invoked by other software if the current unconnected board, or the current import graphics output processing is interrupted, will not be directly invoked by other software for the next processing, and the processing data will be sent to the main board, or "stop" on the software. Button, the new processing pattern can be transferred again after the processing flow is finished.

[make a direct output piece] After making the VCutWorks piece function, the software will point the "start" button on the

software, or when the external call is direct output, it will automatically count the number of graphics processed on the board.

[curve precision of output data]

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When the curve output is processed, it needs to be subdivided into small line segments to be identified and processed by the main board. This parameter is used to define the precision of turning the curve into a small line. The greater the accuracy of the curve, the more precise the line segment is, the greater the output data, the smaller the accuracy of the curve, the lower the accuracy of the line segment and the output data. The smaller. The accuracy of the output data is not the same as the larger the better, and the accuracy of the default output curve of the VCutWorks software is 80%.

2.1.4 INTERFACE

[grid]: Set whether to display grid and grid spacing in view.

[display virtual array] Instead of enabling this item, the software does not display the actual graphics of the virtual

array when displaying the virtual array, instead of using rectangular boxes instead.

Keyboard - [trimming distance]: In software, the position of the graph in the view can be adjusted by the key around the keyboard. Select the graphics, press the direction keyboard (up, down, left and right): Press the arrow key to move distance = [distance].

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Keyboard - [rotation angle] Press the CTRL key and press the direction key at the same time, the rotation angle of the graph = [rotation angle];

Keyboards - [large readjustment ratio] Press the SHIFT key and press the same direction key at the same time. Press CTRL+SHIFT to press the direction key at the same time, the rotation angle of the graph = [rotation angle] [big adjustment ratio]

Color configuration: You can set the background color of the drawing area, the border color of the workspace and the color of the grid according to the usage habits.

[background map parked position] [file] the menu has the function of importing the base map.

[background map docking location] defines the location where the base map is imported relative to the software workspace.

[the size of the bottom map] Because the imported base map is not calibrated accurately, there may be large size deviation. User can calibrate the base map size by manually setting the base map size.

2.1.5 CONTROLLER

[motherboard version] Reads the firmware version number of the current motherboard from the motherboard.

[motherboard upgrade]

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After the motherboard Rereleases the new firmware, users can upgrade the motherboard automatically according to their needs. The main board upgrade needs to contact the relevant technical personnel of Rida company to get the latest firmware upgrade file (UPD format file). Before upgrading the motherboard, users need to view the motherboard version number of the motherboard, and confirm that the motherboard version of the motherboard is matching the firmware upgrade program of the motherboard. (generally, it can only be upgraded from the same type of firmware).

For example, the current motherboard model is 30.01.10, then the version of the upgrade program file should also be the 30.01.XX, 30.01 of which is the firmware type, and the XX is a subversion number.

The user can also view the accumulative running of the main board in this interface. By default, the accumulative operation of the main board is not viewable, and the password is required to be entered. The specific password needs to be connected with the manufacturer to set up the manufacturer.

[font library upgrade] Upgrade the HMI font library, keep it, generally do not need.

2.2 VENDOR SETTINGS

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2.2.1 SYSTEM PARAMETERS

System parametersMachine configuration【Feed direction】:

Positive direction and Negative direction can be selected.【Feeding axes】:X/Y/U axes can be selected.【Power-Off-Restart Delay】:

It can be set to be 0~3000ms. After the power-off of the electricity grid, the power supply of the system will not drop to 0 at once. There is a delay during this time. The delay value set here should basically consistent with the actual off-delay value. If the deviation of set value is larger, on the de-energizing for continuous engraving, either the figure processed for the second time is not closed with that before the cutoff, or it is coincided with that too much.【Y-axis double driver】:

If machine has two Y-motor driver, then enable Y-axis double driver.【HMI-XY exchange】:

If touch screen is parallel to machine’s X axes, there is no need to exchange the ‘HMI XY’; otherwise, user can exchange ‘HMI XY’.Multi-head auto layout parameters【Multi-head number】:

The number of the all x axes in the multi-head auto layout machine.【Driver type】:

Single belt or multi- belt are selected.【Head distance N】:

This is the distance between the two X axis when they all return to the absolute origin in the multi-head auto layout machine.

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XY leeway parameters【X- leeway】:

When the X axis is reset, after touching the origin limit, the reset is completed. If the original offset is set, it will be offset after a certain distance. The position at this time is the zero position of the X, but perhaps, the platform is the steel plate near the origin of the X axis, and this area is not allowed to be knives, so this distance is called the leeway of X-.

【X+ leeway】:When the maximum amplitude of the X axis is set, drives X axis to the maximum coordinates, similarly, some area near the maximum coordinates is not allowed to be knives, then this length is called the X+ leeway. The concept of "Y-+" is similar to [X-+].

2.2.2 AXIS PARAMETER

X~D axle parameters:【Direction Polarity】:

Modification of direction polarity can move the motor to the opposite direction. The modification purpose can move this axle to the origin on resetting. If this axle moves far from the origin on resetting, it means the direction polarity of this axle is wrong in setting and should be modified.【Spacing Polarity】:

It is used to set the high and low level mode of spacing signal. When the motion axle arrives at the spacing position and input a low-level signal to the mainboard, the spacing polarity at this time should be set to be minus.【scope】:

It means the farthest distance that the motion axle can move, which is determined in

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accordance with the actual condition of the machine.【Origin Offset Distance/ Origin Offset Angle】:

On the linear motion axis, the parameter is called the origin offset. If this axle enables hard-spacing protection, generally this value should be set to be 2~5mm; if it is set to be 0, when this motion axle moves to the smallest coordinate, i.e. 0, this spacing may be validate, which may wrongly triggers the hard-spacing protection and scram the machine. If the hard-spacing protection is not enabled, this value can be set to be 0~5mm.

On the rotation axis, this parameter is called the origin offset angle. If the initial value is zero, when the rotation axis is reset, the cutter direction is not pointing to the positive direction of the X axis, and the rotation axis still needs to continue to rotate a specifically degrees to its own positive direction in order to make the tool cutter direction to the positive direction of the X axis, then the specifically degrees will be named the origin offset angle of the rotation axis.【Control Mode】:

Double pulse or direction+single pulse are optional, in general, direction+single pulse is selected.【Motor Stepping /Cycle Pulse】:

In linear motion axis, this parameter is called motor step, it means the impulse equivalent, the absolute distance gone by the corresponding motion axle when a pulse is delivered to the motor. Prior to the correct setting of this value, a large rectangle can be cut with the machine (the larger the figure is, the smaller the difference is). The motor stepping can automatically be calculated according to the figure length and measuring length.

On the axis of rotation, this parameter is called cycle pulse, that is, when the tool rotates 360 degrees, the total number of pulses that the controller needs to send to the driver. If the current rotating shaft motor's fine fraction is 5000, the transmission ratio is 1:1, that is, the motor rotates for one cycle and the tool rotates for one cycle, then the cycle pulse is 5000, if the transmission ratio is 3:1, that is to say, if the motor rotates for one cycles, the cutter actually runs for 1/3 cycles, that is to say, the motor rotates for 3 cycles, then the tool can run for one cycle, that at this point the number of cycle pulses is 15000.

For the XY axis, it is suggested that the reasonable motor fine fraction, the reasonable screw pitch and the transmission proportion be used to control the motor step distance between 4~10um. If the step distance is too large, the trajectory precision will be reduced, because the trajectory precision of the controller is fixed to 0.5 pulse equivalent values, and if the step distance is too small, the controller will increase the pulse transmission load, so that the machine can't run at high speed.

For the rotating axis, it is recommended to control the cycle pulse at 5000~30000.

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【Hard-spacing Protection】:It is used for whether the hard-spacing protection of this axle is enabled.

【PWM Rising edge valid】:To set the motor driver’s pulse signal rising edge valid or falling edge valid. If this

item is disabled, the pulse is falling edge valid, or, it’s rising edge valid.【Reset Enable】:

If the machine is provided with this axle, its “Reset Enable” should be opened; if no, its “Reset Enable” should be prohibited.

【Takeoff Speed】:It means the speed of the motion axle in direct start from the idle condition. If this

value is excessively large, it will make the motor lose steps, jar and even squeak; if small, it will reduce the running speed of the whole figure. If the inertia of the motion axle is larger (the axle is heavier), you can set a smaller takeoff speed; if smaller (the axle is lighter), you can increase the takeoff speed. For example, the typical value is 5~30mm/s.

The takeoff speed of the manufacturer's parameters will be limited to other minimum speed parameters. For example, the turning speed in the processing parameters of the user parameters is the lowest starting speed in the whole processing, and this turning speed does not allow for a minimum of the manufacturer's XY takeoff speed. Similarly, for the key take-off speed, the take-off speed is not allowed to exceed the axle parameters.

【Maximum Speed】:It means the maximum limit of motion speed that this axle can bear. This parameter

has something to do with the driving force of motor, the inertia of motion axle and its drive ratio. For example, the typical value is 200~800mm/s.

The maximum velocity of the axis parameter will limit the other parameters of the highest speed, for example, the speed of the cutting target, the target speed of the key move, the speed of the single axis motion, etc., are not allowed to exceed the maximum speed in the shaft parameters.

【Maximum Acceleration:】:It means the maximum acceleration of the motion axle in accelerated or decelerated

motion. If the acceleration is set too large, it will make the motor lose steps, jar and even squeak; if too small, it will cause the reduction of acceleration so as to reduce the running speed of the whole figure. For the axles with larger inertia, such as Y axle corresponding to the beam, its typical setting range is 800~3000mm/s2; for the axles with smaller inertia, such as X axle corresponding to the car, its typical setting range is 8000~20000mm/s2.

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The maximum acceleration of the axis parameters will limit the actual maximum acceleration used by other related axis motion. For example, the cutting acceleration, the acceleration of the idle moving, the key acceleration of the key moving, and so on, are not allowed to exceed the maximum acceleration in the factory parameters.

【Scram Acceleration】:If this axle enables the hard-spacing protection, when this axle moves to the spacing

position, it will scram operation at the scram acceleration. This value can be 2~3 times of the maximum acceleration for this axle.

Key parameters【Key Move Takeoff Speed】:

It means the starting speed to move this axle by way of the keys on the keyboard, which can’t be higher than the takeoff speed.【Key Move Acceleration】:

It means the acceleration to move this axle by way of the keys on the keyboard, which can’t be higher than the maximum acceleration of this axle.【Key Polarity】:

It is used to control the movement direction of the axle that is moved through manual operation of the keys. After the direction polarity is correctly set, if you press the directional keys on the operating panel, this axle will move to the opposite direction. In such a case the polarity of keys should be modified.

2.2.3 IO CONTROL

【If Enable Three-Color-Led or Buzzer】:If enabled, the output ports in controller will drive the three-color-led and buzzer,

then, these outputs be used to control other equipments.

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【Selecting in Idle/Run/Pause/Error Status】:In Idle/Run/Pause/Error Status, user can respectively select if turn on the led or

buzzer.

2.2.4 VIBRATE CUTTER

【Vibration cutter driving mode】:The motor mode and IO mode are optional. When selecting the motor mode, the D

axis is used to drive the vibration head to move up and down. If IO mode is used, the IO port is used to drive the vibration cutter head up and down.

2.2.5 MILLING CUTTER

【Milling cutter offset X】: 29 / 87

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This parameter means the milling cutter offset value corresponds to the vibration cutter head in the direction of X. If the milling cutter is in the positive direction of the X of the vibrating knife, the offset value is positive. If the milling cutter is in the negative direction of the X of the vibrating knife, the offset value is negative.【Milling cutter offset Y】:

This parameter means the milling cutter offset value corresponds to the vibration cutter head in the direction of Y. If the milling cutter is in the positive direction of the Y of the vibrating knife, the offset value is positive. If the milling cutter is in the negative direction of the Y of the vibrating knife, the offset value is negative.

By the manufacturer's parameters, it is possible to set a general offset value, or not, the final precise offset value can be accurately debugged on the offset value of various devices in the debugging function on the HMI touch screen.

The concept of offset for all devices relative to the vibration cutter is similar to the interpretation of the offset value of milling cutters, which will no longer explain other offset values.

2.2.6 WHEEL PARAMETER

Interpretation of offset value is the same as the milling cutter.【Press well drive mode】:

The motor mode and IO mode are optional. When selecting the motor mode, the B axis is used to drive the up and down movement of the press wheel. If IO mode is used, the upper and lower motion of the press wheel is driven by IO port.【Press well rotation mode】:

Independent mode and common mode are optional. If selected as an independent mode, the rotation of the wheel is driven by the A axis; if the choice is a common mode,

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the rotation of the wheel is driven by the C axis (and at the same time the C axis is also used to control the rotation of the vibrating knife, so it is called the common mode).

2.2.7 PUNCH PARAMETER

It contains the offset of the Big/Small punch and the V/I punch. The offset interpretation is the same as the milling cutter offset.。

2.2.8 PEN PARMETER

It contains the offset of the pen 1/2. The offset interpretation is the same as the milling cutter offset。

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2.2.9 REDLIGHT PARAMETER

The offset value of red light is included. The offset interpretation is the same as the milling cutter offset.【Enable red light location】:

Yes or no can be selected, if yes, the position of red light should be taken as the locating point when machining. If it is not enabled, the point directed by the vibration cutter head should be taken as the positioning point。

2.2.10 FIRST PUNCH PARAMETER

The offset value of a knife hole device is included. The offset interpretation is the same as the milling cutter offset.【Enable knife hole】:

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Yes or no can be selected, if it is enable, then the knife hole device will be used in the vibration cutter location.

2.2.11 INHALE PARAMETER

The system supports 8 adsorption regions at most. Assuming that the lattice numbers in the XY direction are X and Y, x*y can not exceed 8. For example, suppose that the lattice number of X direction is 4, the minimum number of lattices in the Y direction is 1 and the maximum is 2. When the lattice number of X is 4, the coordinates of three sections can be set separately. 0~X1 is the first section, X1~X2 is second, X2~X3 is third, and X3~ maximum coordinates is fourth, so we need to set X1, X2 and X3 coordinates。

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2.2.12 CONTROLLER INFO

This column contains some information on the motherboard, including cumulative travel, cumulative time and the version number of the motherboard. These parameters are available to the user and can not be modified.

2.3 USER PARAMETER

2.3.1 WORK PARA

Idle Move Parameters【Idle Move Speed】:

This parameter decides the highest speed of all non-lighting lines for the machine in the movement process.

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【Idle Move Acceleration】:It means the highest acceleration of all non-lighting lines. Idle stroke speed and idle

stroke acceleration can be set higher to reduce the working time of the whole figure, but if they are set too high, it may cause the jarring of track, so comprehensive consideration should be given to the setting.【G0 Acc Factor】:

This parameter indicates how speedy the idle move acceleration is changing.【Idle Move Delay】:

If this parameter is zero, then after idle moving there is no delay, or, there is delay and the speed will decrease to turn off speed.

Cutting parameters【Turning Speed】:

It means the speed of turning at the acute-angle corner, which is also the highest speed in the whole cutting process.【Turning Acceleration】:

It means the acceleration of turning at the acute-angle corner when cutting. If the two speeds are set too high, jarring will happen to the turning; if set too low, it will influence the cutting speed. This acceleration is the least value of the whole graph.【Cutting Acceleration】:

It means the highest acceleration value in the whole cutting process.【Acc Factor】:

This parameter indicates how speedy the cutting acceleration is changing.

【Speed Factor】:This parameter indicates the cutting speed of the arc of various curvatures.

【Turning precision】:This parameter reacts with the speed of rotation axis at any time, generally takes

100%.【Angle of lifting】:

In the process of continuous trajectory cutting, the tool always moves with the knife direction, but for a larger angle, the tool can not be quickly turned to follow the tool quickly, which may lead to the knife direction and the XY movement track does not coincide and cause the knife broken. So a reasonable angle of lifting must be set. When the angle of the track is larger than that angle, the knife will be lifted first, then the tool is controlled to the new direction, and then the cutter is cut again.

The machining parameter can not exceed the limit parameter value in the factory parameter. If the parameter exceeds the axis, the system will automatically use the axis parameter to cover the process parameters.

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2.3.2 FEEDING PARA

【Before-feeding Time Lag】:Settable at 0~300s. The lagged time can facilitate user’s feeding and picking on the

feeding device.【After-feeding Time Lag】:

Settable at 0~9.9s. It can facilitate the feeding device’s delaying in jarring after moving to the correct position and waiting for the 2nd work after the feeding axle stands still completely.【Progressive feeding repay】:

Because of the imprecision of U axes’ moving, there can set a value to repay the interval of the two lines graph on Y direction. This parameter is reserved.【Progressive feeding】:

If this item is enabled, then the dummy array graph on Y direction will run in the same position, running one line graph, the U axes moving one time to feed, the moving length of U axes is the interval of the two lines graph on Y direction. This parameter is reserved.【Last feeding】:

If feeding when the last times work end.【If clamped when finish feeding】:

This parameter indicates that when the feed is processed, the material should be clamped after the feeding is finished.

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2.3.3 HOMING PARA

All X~D axes have the below parameters:【Reset Speed】:

It means the speed of the axes reset to the origin【Axle start-up reset】:

You can select “Yes” or “No” in the field of the above six parameters, which is used to confirm whether each axle can be reset on the startup。

2.3.4 WORK SPEED PARA

Each axis of the Z~D axis corresponds to a working speed:Z axis working speed: it is used to control the speed of milling cutters, or to control

the speed of the second head in the two head shifting machine.

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U axis working speed: feeding speed on U axisA axis working speed: used to control the maximum speed of the press wheel

processing.B axis working speed: used to control the speed of the press wheel falling.C axis working speed: used to control the maximum speed of the vibration cutter

processing.D axis working speed: used to control the speed of vibration cutter falling

2.3.5 PANEL SPEED PARA

Each axis of the X~D axis corresponds to a slow moving speed and fast moving speed.【Key slow speed】:

It is the slow speed value of the moving axis of the keyboard.【Key fast speed】:

It is the fast speed value of the moving axis of the keyboard。

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2.3.6 DELAY PARA

The delay parameters include the opening or closing time of the equipment, and the up and down time of the knife or punching device. All delay time is in milliseconds (ms)。

2.3.7 OTHER PARA

【Back Position】:The origin (the relative origin) and the machine’s absolute origin can be selected.

This parameter decides the parking position of laser head after each work.【Array Mode】:

Two-way array or one-way array can be selected. Two-way array means the to-and-fro cutting of array in sequence; one-way array means the cutting of array from one direction to another. On selecting one-way array, the elements of each array are the

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same in action mode and completely uniform in action fluency, which takes a little more time than two-way array. Two-way array is the default option.【Go scale Blank】:

It means whether to extend a certain length outside the actual frame of the figure on the preview/cutting of frame.【Automatic Adsorption Enable】:

It means whether automatic adsorption function is activated when starting work. If it is "yes", the controller will automatically adsorb in which adsorption area according to the locus coordinates. If it is "no", it is not automatically adsorbed. At this time, the operator can manually open a certain or some area of adsorption before starting the work.【Automatic Vibration Enable】:

Does the automatic start vibration function be activated when starting work? If "yes", the controller will first open the vibration before processing, and then the vibration delay, and then start processing; if "no", it does not automatically open vibration.【Vibration knife/ Press well / milling cutter for adaptive plat】:

Each tool can be enabled to adapt the table.If the adaptable function is enabled, and, if the controller has already collected the

table, the controller will make real time dynamic compensation for the cutting tool position in the machining process, if the controller does not collect the table, then the HMI will prompt there no table data.

If the table function is not enabled, whether or not the controller has collected the table, the machining location of the cutter will not be compensated。

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3 CAD FUNCTIONS

3.1 DRAWING FUNCTION

【Draw line】Click the [line] in the menu [draw], or click Edit Toolbar You can draw any straight line

by dragging the mouse on the screen. When you press the "Ctrl" button and drag the mouse, you can draw the horizontal line.

【Draw polyline】Click [Polyline] in menu [draw], or click Edit Toolbar. 。Drag the mouse on the screen

and click the mouse to draw any lines.

【Draw rectangle】Click [rectangle] in menu [draw], or click Edit Toolbar 。You can draw a rectangle of

any size on the screen by dragging the mouse. Press the "Ctrl" button and drag the mouse to draw the square. Press the "SHIFT" button to place the center of the rectangle when the mouse is pressed.

【Draw ellipse】Click the [ellipse] in the menu [drawing], or click Edit Toolbar 。You can draw any size ellipse on the screen by dragging the mouse. Press the "Ctrl" button and drag the mouse to draw the circle. Press the "SHIFT" button to place the center of the ellipse when the mouse is pressed.

【Draw point】Click [Point] in menu [draw], or click Edit Toolbar , Drag the mouse on the screen, click

the mouse at any location, you can draw points.

【Draw text】Click on [text] in menu [draw], or click Edit Toolbar 。Then click anywhere at the drawing

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area, and the text input dialog box is popped up.

Select the font, enter the text, and then set the word height, word width, word spacing, row spacing. Then click [confirm]. The software also supports variable text. The so-called variable text is that the text needs to be changed according to certain rules, each output is processed once, and the text is automatically changed once. Variable text types supported by system have date variables and serial numbers. The date variable is the current system time output of the current computer at each processing time.

Software provides a variety of date formats for user selection. Users can also set date offset, there are three kinds per day / month / year. If the product is engraved on the packaging, the shelf life can be used.

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Font height

Input text content

Select font type:TrueType or SHX font

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序列号变量可以数字序号(0-9)或字母序号(A-Z或 a-z)。

It is assumed that ABC0001DEF, ABC0002DEF, and ABC003DEF should be processed repeatedly to a set of serial numbers such as ABC9999DEF. [preamble string]:

In the example of prefix, ABC is the leading string in the example.

[post string]: In the example suffix, in the example, DEF is the back guide string.

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[start number]: Specify which serial number to start processing. In example, 0001 is to start the serial

number.

[current serial number]: Which serial number is currently processed can also be used to specify which sequence

number is currently processed. When a set of serial numbers is processed, a leak is processed, which can be made up by

specifying the current sequence number instead of setting the start sequence, because in some cases a sequence number needs to be repeated, that is to say, after a certain number, it is necessary to return to the start number and start the work.

[number increment]: The number of interval numbers that can be specified. In the example, the ordinal number from 0001 to 9999 is processed in turn, and its increment is 1. If you need to output even or odd sequence numbers, you can set an increment of 2.

[resetting sequence number]: When the serial number is processed to the reset number, the current serial number will be

automatically reset to start sequence number. In the example, you need to repeatedly process the serial numbers from 0001 to 9999, so you can specify that 9999 is the reset number. When processing the serial number of 9999, the text will automatically change to 0001.

[make it able to lead zero]: If no preamble is allowed, the system will automatically remove zero from the first non-zero

number in the ordinal number. If the ordinal number in the example is not enabled, the ABC0001DEF will become

ABC1DEF if no preamble is allowed. But it is worth noting that if we want to output the serial number of ABC1DEF and

ABC2DEF until ABC9999DEF, we can't do it by setting the start number to 1, but by canceling the "lead zero", because the start sequence number is set outside the specified number from which number. The effective number of ordinal numbers, for example, will be set at 1, and the sequence number will be 1, 2, 3, 4, 5, 6, 7, 8, 9, 0, 0, 0, 9, 0,... The ordinal number does not change to 10, because the valid digit of the ordinal number is only 1 bits

[enable ordinal array] to process multiple serial numbers in an array manner。如:0001 0002 0003 0010 0011 00120006 0005 0004 After finishing, jump to the next group 0015 0014 00130007 0008 0009 0016 0017 0018

[obtain scanning image]

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Click the [get scanned image] in the menu [draw], or click Edit Toolbar. 。

If the image device is connected to the computer, the dialog box will appear. After selected, you can collect pictures from the specified device.

3.2 OBJECT SELECT

In the process of drawing and editing graphics, the first thing is to select objects. When the object is in the selected state, there will be a "X" shape mark in the center of the object, and there are 8 control points around it.

Click options in menu [draw], or click Edit Toolbar ,Switch to "select" state。The object can be selected in this state. The following are five methods of selecting objects

:1 click on all options in the menu [Edit] (shortcut key Ctrl+A), and select all objects. 2 mouse click Select a single objectClick the object you want to select with mouse, and this object is selected. As shown in the following figure:

3 frame selection Press the mouse and drag, as long as the selected objects will be selected.

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4 increase the selection of objects / subtracted objects Select: first select the first object, then press the Shift key, and then click (or box selection) to select the other objects to select a number of graphics objects. Subtraction: press the Shift key to click (or box) the selected graphic object, then the object that is clicked (or box selected) will be removed from the selected range.

Select objects by layer color◆

Right-click the layer you want to select, and all objects belonging to the color layer will be selected。

3.3 OBJECT COLOR

The color of the object is the color of the object contour. You can click the arbitrary color tool button in the layer toolbar to change the color of the

selected object. The color button in the pressed state is the color of the current layer.。

3.4 OBJECT TRANSFORM

The transformation of objects is mainly to change the location, direction and size of objects, without changing the basic shape and characteristics of objects.Software provides a convenient interface for object transformation. The user can draw the inside

of the toolbar Operation of mirror direction and data center。The object location toolbar can also be conveniently positioned for object location, width and rotation.。

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You can also use the transform tool on the right for rich graphics transformation and duplication.

3.4.1 OBJECT MIRROR

A mirror object is to turn objects in horizontal or vertical directions.。Click the object operation bar ,The selected object can be reversed horizontally。Click the object operation bar ,You can flip the selected object vertically。

Or through the mirror transformation tool, horizontal and vertical mirror direction, and replication.

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3.4.2 OBJECT ROTATION

Select the object, double click the left key 。

If you want to drag and rotate, you can move the mouse to ,Then press the left key to

adjust the rotation angle in the interface by dragging the mouse. In the process of dragging, there will be a rotation of the outline frame.

Or directly enter in the object attribute toolbar to rotate angle.

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Or use the rotation transformation tool to rotate, the rotation center can be set in the rotation transformation tool, and the center of rotation can be locked.

3.4.3 OBJECT SIZE

Changing the size of the selected object can directly enter the length and width of the object, or the ratio of change, or the aspect ratio of the object directly in the object attribute toolbar.

Or use the size transformation toolbar to transform, modify the size, choose whether to lock the aspect ratio, and set the location relative to the object.

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3.4.4 OBJECT SKEW

The tilt can be operated by the tilting transformation tool, and the inclined anchorage and inclination angle can be set.

Because tilt causes bitmap distortion and less practical applications, support vector graphics is still limited.

3.4.5 OBJECT POSITIONING

The object is for convenience to view or locate. The object tools provided by the software are:

,Place the selected object to the center of the page, that is, the center of the object coincides

with the page center.

,The selected object is placed on the top left, right, right, lower left of the page,

that is, the upper left corner of the object, the upper right corner, the lower right corner, the lower left corner and the upper left corner of the page, the upper right corner, the lower right corner, the lower left corner.

3.5 OBJECT ALIGNMENT

When multiple objects are selected, click on the typesetting toolbar

The tools can be used.

Among them:

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Align up and down, respectively

Vertical center alignment, horizontal center alignment, center alignment,

respectively.

They are the horizontal, equal and vertical spacing of the selected objects.

They are equal width, equal height and equal size of the selected objects

respectively.Aligned benchmark objects: for a single object selected by SHIFT in turn, the last selected object is the benchmark. For the box, the curve number is placed on the last object as the benchmark.

3.6 OBJECT VIEW

【Move】Click menu [Edit] / move, or click system toolbar. 。Then press the left mouse button in the drawing area and drag the translation.

【Zoom out】Click menu [Edit] / enlarge, or click system toolbar 。Click the order menu or toolbar each time to enlarge the center of the drawing area. Move the mouse to the drawing area.Once clicking the mouse, click the mouse click position to enlarge the center once.

【Zoom in】Click menu [Edit] / shrink, or click system toolbar. 。Click the order menu or toolbar each time to narrow the drawing area center. Move the mouse to the drawing area. Once clicking, the mouse is reduced to the center once the mouse position is clicked.

【View select】Click menu [Edit] / box view, or click system toolbar 。Move the mouse to the drawing area, press the left mouse button and drag. In the drawing area, a box of selected dotted lines will be displayed, and the mouse is loosened, then the frame is displayed in the drawing area to the maximum proportion.

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【View Page】Click menu [Edit] / page scope, or click system toolbar 。The full display of the page in the

view。【View data】Click menu [Edit] / data range, or click system toolbar. 。The selected object can be displayed

completely.

3.7 GROUP AND UNGROUP

To edit graphics, sometimes we need to operate a part as a whole, such as typesetting multiple lines of text. The way to use it is to select groups of graphics, then select menu [Edit] / group [or disassemble

group], or choose toolbars directly. 。

4 SOFTWARE FUNCTIONS

Below are some tools that are often used in the process of software application. With these important tools, the graphics in the current document can be more ordered and more quickly output processing.

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4.1 IMAGE LIBRARAY

For commonly used graphics, users can set up their own gallery to classify and save custom graphics.

The commonly used library can also be used for manual typesetting, which has already been grouped in CAD. After importing the DXF file to the library, the library will automatically separate the graphics into a typesetting element according to the grouping situation.

Take this figure as an example, V013_VAMP_MESH____9_5 is the graphic name;[0/9999] indicates that the number of rows to be arranged is 9999, and the number of actual rows has been 0. 304.142X313.140 represents the size of a single figure。

4.2 BACKGROUD FUNCTION

The base map is that when the graph is imported to VCutWorks, it is placed in the bottom of the workspace and is not editable, and can only be viewed.

Users can borrow the base map function to manually trace in VCutWorks.

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The user can directly use the import function to import the photos that have been taken, and then modify the base map size in the software, so that the base map size is basically consistent with the actual.

The user can also use the camera function of the software, the external camera or the scanner input graphics.。

Removing the base map and modifying the base map size can be operated in the parameter settings.

4.3 MANUAL ORDERING

The software provides the user with a convenient manual sorting tool, which selects the [Edit] / [set cutting property] and will pop up the cutting attribute dialog box, all with manual sorting, cutting point and cutting direction can be completed in this dialog box.

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[display path] First, check the "show path" to show the cutting sequence and the direction of cutting. It is convenient for users to modify and observe the change of actual processing sequence.

[manual ordering]

Select the button on the dialog box ,This button can be used to toggle whether the

current operation is edited or checked。Then you can select or click the graphics in the graphic display area, or select the graphic

element on the right side of the dialog box, select the graphic element, select the figure, and select

the button. , These figures are directed to another list and are treated as primitives. By sequentially operating the primitive, we can sort all graphs.

[change the direction of graphic processing]The mouse selects the graph in the graphics display area or in the metafile list, and then

points the button 。[change the cutting point]

Selecting the graph to change the cutting point will show all the nodes of the current graph. Select the starting point to set and double-click the mouse to change the starting point of the

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current graph. After all the modifications are completed, point the button [OK] , The results of the

modification can be saved. In addition to cutting function settings, the software also provides some simple tools to

modify the cutting sequence, cutting direction and cutting point. Selection within the toolbar

,Or click menu command [Edit] / [display direction].

[manual ordering] Select the primitives to change the cutting sequence, and the number of the cutting elements

of the current element will be displayed in the object property bar.

Directly fill in the serial number in the processing serial number, then press the keyboard "Enter" key, or click the drawing area, and the cutting order will change.

[changing the direction of processing] Click Edit / set the cutting direction to enter the edit cut direction mode. Then double-click on any selected location.

[change the cutting point] Click Edit / set the cut point to enter the edit cut point mode. Then select the curve to edit, and double-click on the node that you want to set the cutting point to

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complete the modification of the cutting point.

4.4 PATH OPTIMIZE

The path optimization function is mainly used to rearrange the path of vector graphics。Click menu command [processing] / path optimization, or click A dialog box appears as

shown in the following figure.

Click menu command [Edit] / display path, or click system toolbar ,Graphic processing path

shows the processing path before and after processing。. .

Before processing After processing

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Head positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead positionHead position

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The processing path of a graph always starts from the location of the cutter head.

4.5 CURVE SMOOTH

For some graphs with poor accuracy, smooth curves can make graphics more smooth and smooth。Click menu command [processing] / [curve smoothing], or click system toolbar ,A dialog

window appears.

Drag the smoothness and click the application button. The interface will show the smooth front and the smooth curve, which is convenient for comparison.

The black curve is the original curve, and the red curve is a smooth curve.

You can drag and view the graphics with a mouse. You can use mouse wheel to zoom in and view graphics.

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Click the full width button, and the graphic display will return to the largest display in the dialog box.

After the smoothing effect is satisfied, click the application button, and the curve smooths the smoothness settings accordingly.

When choosing direct smoothing, you can use another smoothing method. The choice of smoothing method should be changed according to the needs of actual

graphics.

4.6 CURVE CHECK

4.6.1 CURVE AUTO CLOSE

Click menu command [processing] / [automatic curve closure], or click system toolbar. The

setting window appears

Closed tolerance: when the distance between the starting point and the ending point of the curve is less than the closed tolerance, the curve is automatically closed. Forced closure: coercion closed all selected curves

4.6.2 DELETE OVERLAP

Click menu command [processing] / delete heavy line, or click system toolbar ,appear dialog

box。

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In general, it is necessary to delete overlapping lines when the overlap ratio of two lines is not good when no overlap is allowed.

If we need to delete the overlapped lines with a certain error range, we can select "overlap tolerance" and set overlapping tolerance. Overlap tolerance should not be too large in order to avoid false deletion.。

4.6.3 COMBINING CURVE

Click menu command [processing] / merge merged lines, or click the dialog window after the

system appears. 。

The software is automatically set according to the combination tolerance, and the curve in the selected curve is connected to a curve with the connection error less than the tolerance tolerance curve.

4.6.4 DATA CHECK

After selecting the graphics to be checked, click menu command [processing] / data check, or

click the system toolbar.

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The data check function integrates the functions of closed checking, self intersection checking, intersection checking and data overlapping checking. The user can select the check items according to the needs. After the problem data is detected, the problems that have been found are prompted on the right side of the dialog box, and the problem graphics are selected. Repeat check > eliminate error > check process until all data conform to processing requirements.

4.7 PREVIEW FUNCTION

Click menu command [Edit] / processing preview, or click system toolbar.

The software supports processing preview of processing documents, and some basic information of processing can be obtained through processing preview. Such as the actual output of the processing path, the general processing time, processing distance. And the machining

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process can be simulated. The process of simulation can show the switching process of various tools in the process of operation.

In addition to previewing the files that are currently edited, you can preview the saved VD files. In the graphics display area, double-click the mouse at any position, select the graphics to be previewed in the pop-up dialog box, and open it.

4.8 OFFSET FUNCTION

After selecting the data to generate parallel lines, click the menu command [processing] /

[generate parallel lines], or click the system toolbar

The red line is the original figure and the green line is the inner contraction figure

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4.9 NESTING FUNCTION

Select the type of layout to be typed, then click the menu [tools] - > automatic typesetting, then you can typesetting the selected graphics.

A relatively optimized array pattern can be obtained through automatic typesetting.

[odd, even row spacing] Since the graphic of the typesetting is not necessarily symmetrical, it is necessary to make the graph close, the right side of the odd line and the left side of the even number line, the right side of the even number line and the left side of the odd line, it is possible to produce unequal space between the odd and the odd lines. [automatic calculation] function can automatically calculate the most compact parity spacing.

[odd, even column spacing] The use method is the same as the odd and even row spacing.

[row, column dislocation] Adjustment of row and column misalignment may further reduce the row spacing. The general procedure is to set the row and column misalignment to 0, and then automatically adjust the best result without dislocation. If the observation graph may be further optimized by adjusting the row and column misplacement, the manual point line and the column dislocation automatically calculate the new row and row dislocation value and carry on the operation again. Generally do not set the value of the row and column misalignment, but only for the complementary graphics can be appropriately set up the ranks of the dislocation.

[row, column image] According to the graph, rows and columns can be set horizontally and vertically. When performing row and column mirroring, odd numbered rows will not change, only changing the image of even rows and even columns.

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[safe distance] By default, the safe distance is 0, that is to say, after graphic layout, graphics and graphics are completely close. In practice, because the actual knife has a certain thickness and width, it is easy to cause the cut to the side. Therefore, it is necessary to set a certain safety distance.

[Manual adjustment] Set a good moving distance and select the adjustment mode (odd ranks, even ranks, all ranks, row and column dislocation), the corresponding array parameters can be adjusted by the key key of the keyboard. If you set odd rows, keyboard keys will be used to increase or decrease column spacing, and keyboard keys should be used to increase or decrease row spacing. When the keyboard is pressed, the row spacing will increase correspondingly or reduce a point distance. [Automatic adjustment] The software will automatically calculate the corresponding distance and the mirror parameters to find the best combination form.

4.10 ADD MARK FUNCTION

4.10.1 SHOES MARK

Shoe marking is mainly used for cutting marks in shoe making industry. The shoe code teeth contain integer partial teeth and half yards teeth. The number of symbols that currently supports the number range from 1-50 yards. The tag can be set to the inside of the graph or to the outside of the graph.

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Height

Long spaceWidthSpace

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[US code] The software uses the European code rule by default. If you need to switch to the US code, check this item. There is a slight difference between the code of beauty codes and the rules of the code teeth。

4.10.2 CLOTH MARK

Clothing labels can be selected according to their needs, and clothing labels are made up of arbitrary combinations of triangle, semicircle and square.

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Mark 3 Mark 2 Mark 1

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4.11 SELECT TOOLS

The graphics selection is applied to all graphics or selected graphics (that is, to filter again in the existing selected graphics area by selecting type).

[Select all] Select all the graphics in CAD.

[reverse selection] Select the currently unselected graphics in CAD and set the currently selected graphics to be unselected.

4.11.1 ACCORDING TO LENGTH

[select short curve] Select a curve whose length is less than equal to [short curve length].

[selection long curve] Select a curve whose length is greater than equal [long curve length].

[select other curves] Select a curve whose length is larger than the length of the short curve and is smaller than the length of the long curve.

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4.11.2 ACCORDING TO SIZE

【Select small curve】The maximum value of the length and width of a single curve external rectangle is smaller than that of [small figure size].

[select big curve] The minimum value of the length and width of a single curve external rectangle is greater than or equal to. A curve of the size of a large figure.

[select other curves] It is neither "small graphics" nor "big graphics".

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4.11.3 ACCORDING TO TYPE

Selection based on the element type;Selectable primitive types include points, curves, texts, groups, virtual arrays, and cut primitive elements. Among them: The point, curve, and cut mouth belong to the single graph element. Text, group, and virtual arrays belong to composite primitives.

Complex graphic elements can only be selected as a whole, and single drawing elements within complex elements can not be selected.

If you want to select the single graphic element within the composite element and operate it, you need to scatter the composite element into multiple single elements.。

4.11.4 ACCORDING TO PROPERTY

【Select inside】【Select outside】:Select internal or external graphics according to the inclusion relation between graphs.

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Graphics without any graphics are called external graphics.The graphics contained in any graphics are called internal graphics.Internal graphics may also contain other shapes, which are collectively referred to as internal graphics, without further distinction.

External graphics generally require closed graphics.

[minimum outer contour size] If the figure is not strictly closed, it can also be distinguished by this parameter. If the known

external figures are relatively large, the internal and external graphics can be quickly distinguished by this parameter.

[Select clockwise curve] [Select counterclockwise curve] According to the rotation of the curve, we choose the graphics. The curves of closed or non closed curves have curvilinear rotation.

[curve reverse] Reverse the rotation direction of the selected graphics.

[Select closed graph] [choose unclosed graphics] The graph is selected according to the closed or non closed characteristics of the curve.

4.12 SPECIAL PUNCH TOOLS

[Find V-punch]The separation curves are analyzed, and the figures that conform to the shear rules are found and transformed into the cutting element.

[Break V-punch] Analyze the line segments in the curve, find out the line segments that conform to the rules of the

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cut rules, and break the line segments from the curves to the cutting elements.

[V punch type] The types of cut mouth are I, T and V. According to the setting of cutting parameters, the shear gap can be separated or identified from the curve

4.13 CUT IN/OUT FUNCTION

In the menu, you can import the extraction tool to display the import and export tool.

[internal cutting, external cutting] The so-called internal cut is introduced from the inside of the graphics, drawing to the inside of the graphics. The outer cut is introduced from the outside of the graphics and drawn out of the graphics. The choice of inner cut or outer cut depends on if the material part to be removed is in the shape of the figure, then the inner cut is chosen; otherwise, the outer cut is chosen.

[Cut in] The Cut in and Cut out can be made separately; at present, only the straight line is cut in.

[from center] The center of the graphic rectangle is used as the starting point of the leading line, and the cutting pattern is introduced from the node at the beginning of the graph.

[Length] The distance from the point of introduction to the beginning of the graph.

[Cut out] The angle between the line and the first line segment of the graph is introduced. The setting parameters of the drawing line are exactly the same as that of the introduction line.

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4.14 CUTTING LINE FUNCTION

The cutting line is the dividing line separating the cutting pattern from the area to be cut on the processing material.

The cutting tool is selected in the Drawing toolbar, and the cutting line tool is selected to play the cutting line setting dialog box. The cutting line can load the upper, lower, left and right directions of the graph.

The length of the cutting line is usually based on the size of the cutting figure or the size of the software.

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5 PROCESSING OUTPUT

5.1 COMMUNICATION SETTINGS

There are two ways to connect devices: USB and the network. The software supports connecting one or more devices, and selects inter device handover operation through the

dropdown device port.

The port configuration of each device can be added, deleted and modified according to the actual situation.

The machine name can be configured by itself, making it easier for users to distinguish names from different machines conveniently.

5.1.1 USB COMMUNICATION

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By default, the software has added a USB: port, and the user can add COM port to himself.USB- automatic mode is usually used for connecting only one machine to USB.The USB-COM port mode is used to connect software to multiple machines through USB

mode.The COM port supports COM3-COM255.

To use the USB communication mode, you need to install the USB driver correctly on the computer. If USB communication fails, check if there is a correct COM port on the device manager. If the COM port is not present, or the exclamation point is displayed at the communication port, you may need to re install the USB driver.

In the VCutWorks software installer, you can choose to install USB driver installation. Or choose to download and install the corresponding USB driver on the company's website according to the situation of the computer operating system (XP/WIN7/WIN8/WIN10-32 bit or 64 bit). For manual USB driver installation, please refer to "USB driver installation instructions".

5.1.2 ETHERNET COMMUNICATION

The default IP address of the motherboard is 192.168.1.100, and the user can modify the main board IP (motherboard IP on the operation panel) according to the need.Only if the motherboard IP, computer IP, and software setting target IP are in the same IP address section, will it be possible to establish the connection between software and motherboard. (for example, motherboard IP=192.168.1.100; computer IP=192.168.1.10; software setup target IP= motherboard IP).

It is suggested that users connect directly to the motherboard and computer through the Internet cable.

If there are more than one machine or multiple computer networks through the switch, please ensure that the computers and machines in the LAN will not occupy IP addresses.

If you want to connect to the machine, users also want to connect to the external network. Please manually set the local connection IP settings.

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5.2 POSITIONING

There are four ways to locate the graphics: the current position, the original location, the mechanical origin, and the absolute coordinates.Among them, the current location, the original positioning point and the mechanical origin are three relative positioning methods, and only the absolute coordinate positioning.[absolute coordinates]The mode of absolute coordinates is to be processed on the machine according to the position of the graphics in the scope of the software workspace, and the software workspace is completely corresponding to the machine's amplitude.

[Anchor point]This way is to locate and locate the graphics based on the current location of the main board as the relative origin.No matter where the position of the cutter head is, it will move the cutter head to the location of the positioning point, and then start processing relative to the positioning point.The graphics to be processed are

[current position]The current way of location is exactly the same as that of the original location. The difference is just the location of the current location. Taking the current location as the location point only works on the start point of the software. After downloading to the motherboard and starting from the operation panel, the current location is exactly the same as the original location.

[mechanical origin]The work of mechanical origin localization is exactly the same as that of the original positioning point. The difference is that the mechanical origin is always used as the positioning point. No matter whether or not the location is located, the mechanical origin will not change as the positioning point.

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5.3 UFILE MANAGEMENT

5.3.1 CREATE UFILE

Offline files are mainly used for the off-line use of the system.Offline files are all the graphic data that will be processed. After the process optimization of the software, the data files which are generated by the processing parameters can be separated from the computer on the control card directly.

The format of the cutting system offline file is in the format of VD. The machining files that can be identified on the cutting board of the cutting system are also limited to VD format files.The VD file can be copied to the U disk, then inserted into the U disk interface of the motherboard, and the VD offline file on the U disk is copied to the motherboard memory from the operation panel.

Click on [save as offline file], the offline file save dialog box will be popped up. Select the save path and save the offline file.

5.3.2 DOWNLOAD UFILE

【Download】The downloading function is to directly process the current data on the software and download it to the motherboard.If you choose to download, you will pop up the Download File Naming dialog box. If there is already a offline file of the same name on the motherboard, it will prompt the user to cover, select "yes", and then cover the same name file.

[loading]

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Loading is the offline file that has been saved to the computer and downloaded to the motherboard.

5.3.3 OUTPUT UFILE DIRECTLY

【UFileOutput】The offline files saved to the computer will be downloaded to the motherboard directly.Instead of downloading it onto the motherboard and running it from the motherboard, using offline file output can save more and more offline files to the computer. There is no need to process the data processed before processing.

5.3.4 UFILE MANAGEMENT

【Read】Read the existing offline file information on the motherboard and refresh it to the list of files.The number of files is arranged in the order of downloading, deleting a file in the list, and the number of files will be adjusted sequentially.The file name is manually named when it is downloaded to the motherboard.Man hour: the unprocessed file after downloading to the motherboard is 0, and the working hours that have been processed are shown as the working hours of the last processing.

[processing]

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Start the selected file.

[Download]Download the offline files on the computer to the motherboard.

[Delete]Delete the currently selected file.

[Cal time]The working hour of the current selected document.

[Upload]Upload the file on the motherboard to the computer

[Delete all]Emptying all the processing documents on the motherboard.

5.4 PROCESSING CONTROL

5.4.1 FRAME

After offline files are downloaded to the main board, the border of the processing data needs to be taken to determine the relationship between the cutting range and the material before processing.

Walk the border and the border function to operate in the operation panel.The border and border boxes are directed against the currently loaded offline files on the

motherboard. When you download the processing file from the software to the motherboard, the motherboard will automatically set the file that is just downloaded to the current file; the user can also select the file from the memory file list on the operation panel, and determine that the file is loaded to be processed.

In addition to the absolute coordinates and the location of the machine origin, the offline files of other positioning types need to be set on the panel by the positioning button on the panel before the border is taken at the corresponding location.By default, the border and the border are moved along the circumscribed rectangle of the data to be processed. Sometimes it is necessary to retain a certain amount of rainfall to set the margin margin on the software or operation panel.

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5.4.2 START/PAUSE/STOP

【START】Processing the current graphics on the software and downloading it to the motherboard, start processing.When the motherboard is not finished, the software is prompted to quit and start processing.In addition to starting directly from software, you can download graphics to the motherboard and start processing

from the operation panel.[pause, continue]If the current motherboard does not start processing, no pause or continue instruction will be sent to the motherboard.If the current motherboard is running, the current processing flow is suspended.If the current motherboard is suspended, then the motherboard is resumed.

[stop]Stop the current processing.

5.5 TESTING

[Relative movement]Move relative to the current position; uncheck is absolute movement (relative to the mechanical origin movement).The distance of the movement is the setting of the offset

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parameter.

[continuous moving]Continuous motion is relative to point moving mode.In continuous motion mode, press the moving arrow key and the corresponding axis moves continuously until the key of the moving direction is released.In the click mode, the offset is pressed according to the settings. After pressing the move key, whether or not the button is loosened, it will move until the set offset is completed.

[HOMING]Search the mechanical origin of the corresponding axis.

[read the current position]Get the current coordinates of the main X, Y, and Z axes.

[previous processing time]The last processing time.If you want to view the processing time of any graphics in the memory file of the motherboard, you can check it in the file management dialog box. Reference section 5.3.4.

5.6 OUTPUT SETTINGS

5.6.1 OUTPUT LAYER ORDER

By default, the software processes the whole process according to the path optimization and the requirement of cutting the whole sequence (from left to right, from top to bottom).

According to the requirements of processing technology, or avoid frequent switching of tools during layer switching, the specific requirements can be set according to the order of layers.

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In the process of cutting optimization, you can reorder the figures according to the order of layers according to the order of layers.

According to the sequence of layers, it can be used in combination with other path optimization options, that is, the whole is according to the sequence of layers, and the inner of the layer is limited by the requirements of "from up to bottom", the height of the block and from the inside to the outside.

The button determines the corresponding path processing of the graphics model.

By adjusting the layer order, you can drag the layer color item directly with the mouse to change the layer sort.

If the software is required to automatically be processed in the output process, the path is optimized automatically, without the manual operation path optimization, only in the output settings, the path optimization option is selected.

5.6.2 OUTPUT SELECT

When the button is selected to process the current output of the software, only the selected graphics are output.

By default, the output of the selected graph but the relative location will still take the outer rectangle of all the graphics as reference. If you need to refer to the outer rectangle of the selected graph, the selected graphic location is selected.

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5.6.3 FEEDING

[Count]The number of times that need to be circulate

[Distance]There are 4 kinds of input methods for feeding length.1 Manual input:

The feed is fixed at the length of the input.When the feeding function is not used, only the repeated processing, such as the test machine,

can be used to set the feeding length to 0.

2 Maximum frameY axis machine frame

3 Graphics sizeAutomatically fetch the output rectangle height of the graphics inside the software.

4 Minimum feeding lengthThe minimum feeding length is automatically calculated according to the layout of the upper and lower page layout before and after feeding.

[Feeding compensation]:On the basis of feed length, compensation is needed due to material elasticity or safety spacing.

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5.6.3 PARTITION FOR OVER RANGE

The super format cutting is the cutting pattern that is more than the actual machine width, and can not be completed at one time.

[Distance]In ultra - wide applications, the feed length may not be the actual length of the feed for each

layout, and the length of the feed is equal to the maximum block size allowed by the software.According to the pattern distribution, the output length will be adjusted dynamically to make the figure as complete as possible. The maximum length of the actual single feed does not exceed the set feed length.

When a single curve exceeds the feed length limit, the graphics need to be segmented.

[Feeding compensation]The feed compensation corresponds to the feed compensation under the feed length. When

the actual feeding length is not consistent with the feeding length, the feed compensation will also be dynamically adjusted.

For example, the feeding length is 500mm, and the feeding compensation is 1mm; when the dynamic feeding length is 400mm, the feed compensation is adjusted to 0.8mm.

[Direction]In general, the feeding direction is downward feeding, that is, feeding to the operator.According to different machine configurations, it is also possible to feed left and right.The feeding direction needs to be consistent with the actual machine.

[Angle compensation]There may be a certain angle deviation due to the machine feeding direction and the machine

XY platform coordinates, which may lead to a significant error due to the angle deviation of the coordinate system as the length of the feed is increased. Especially for the need of graphic splicing in the direction of feeding, it is necessary to compensate for the deviation caused by the coordinate system angle, so as to improve the docking accuracy.

[Force block]In general, it is suggested that users should not apply mandatory blocking and avoid graphic

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splicing in the direction of feeding. But for large graphics with many super machine faces, graphics splicing is inevitable.

Using the automatic block method, it may lead to the inconsistency of the stitching points of different graphics, the increasing number of feeding times, the frequent change of the feed length, and the lack of high precision of the feed shaft itself, which can easily lead to uncontrollable stitching accuracy. In such an occasion, the use of compulsory block, because each feed length is fixed, splicing accuracy can also be controlled in a certain range of accuracy.

[Last feeding]The end of feeding refers to whether the graph is sent out of the machine after cutting the last

version of the graph.

5.6.4 ASYNC DOUBLE HEADS

VCutWorks not only supports single head cutting, but also supports double head asynchronous cutting. The so-called double head asynchronous is that there are two independent cutting heads, and the cutting graphics are assigned to two cutting heads on the software, and the working mode of synchronous starting and asynchronous cutting.

The two cutting heads of the double head are different from the two heads, which can cut completely different graphics at the same time, not limited to the layout of the graphics.

Because of the great difference between double head asynchronous and single head cutting from parameters and cutting settings, VCutWorks is divided into single head mode and double head mode with different interface forms. It can be configured within the parameter settings of the software.

After switching to the double ended asynchronous machine type, the software will display two coordinate systems, representing the coordinate system of the main head and the auxiliary end, respectively.

Two heads are asynchronously distinguished from the main head and the auxiliary head. For the double crossbeam model, the main head is fixed below (lower left and right), the auxiliary head is fixed above (upper left and right), the main head and the auxiliary head are distributed up

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and down, but on the same side; for the double cantilever type, the main head is fixed on the left side (upper left and left), and the auxiliary head is fixed on the right (right up and right), the main head and the head are fixed. The auxiliary head is on the side of the same side.

In addition to the software needs to be configured as a double head asynchronous mode, the motherboard is also required to be a mainboard that can support the asynchronous mode of the double head, and there is a correct setting of the asynchronous related parameters of the double head.

5.7 LAYER PARAMETER

5.7.1 CUT

Cutting is mainly used for the motion along the vector contour, and the tool direction is always used to track the vector contour. The cutting knives currently supported are: vibration cutter, milling cutters, and wheel.

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Vibaret cutter 、 Milling Cutter 、 Wheel parameter reference sections 2.2- [VENDOR PARAMETERS] and chapter 2.3- [USER PARAMETERS].

5.7.2 PEN

Apart from cutting, the brush is mainly used for motion along the vector contour, but does not need to control tool direction. The cutter system allows two brushes to be separately installed to control the stroke of the brush independently.

Pen parameter reference sections 2.2- [VENDOR PARAMETERS] and chapter 2.3- [USER PARAMETERS].

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5.7.3 PUNCH

Punching generally refers to the circular punching, that is, the punching does not distinguish between the direction of the hole, only pay attention to the position of the punching hole, at present, the support of a machine to install two circular punching, respectively defined as "Punch 1" and "Punch 2".[central punching]Punching only at the center of the curve.

[spacing]When the center is not punched, the software will punch holes along the curve contour according to the spacing between holes.

Punching parameter reference sections 2.2- [VENDOR PARAMETERS] and chapter 2.3- [USER PARAMETERS].

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5.7.4 SPECIAL PUNCH

Special punching mainly refers to the tool action similar to punching, but requires punching position and tool direction. There are two types of special punching types: V and I punching.V and I punching parameter reference sections 2.2- [VENDOR PARAMETERS] and chapter 2.3- [USER PARAMETERS].

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