text/microsoft-resx 2.0 System.Resources.ResXResourceReader, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089 System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089 Simplified Chinese English Lenguage Camera Add camera Modify the camera Remove the camera Save Camera list Brand Model Serial number Type Robot Add robots Remove the robot Robot list Connection method End symbol Name Communication method Encoding/decoding Add feeder Remove the feeder Feeder List Communication Backend TCPIP server Backstage Modbus TCP Slave Whether to enable Production scheduling White night shift Font Title Text Tag Chinese Traditional Japanese Default EPSON FANUC Schneider XYZ_Platform XYZU_Platform MVS(HikRobot) Pylon7(Basler) MV Viewer(DaHua) VisionPro(Cognex) Fixed up Fixed down J2, move down J4 Move down XY module moving down Standalone camera Orthogonality Shear CoilDiscretes InputDiscretes HoldingRegisters InputRegisters Original Recorded Original+Recorded /yyyy-MM/MM-dd/yyyy-MM-dd HH_mm_ss.png /yyyy-MM/MM-dd/OK or NG/yyyy-MM-dd HH_mm_ss.png /yyyy-MM/MM-dd/OK/yyyy-MM-dd HH_mm_ss.png /yyyy-MM/MM-dd/NG/yyyy-MM-dd HH_mm_ss.png Software as a server Software as a client CR LF CRLF None Operator Engineer Administrator Vibrate before taking photos Take a photo before vibrating Simple Advanced Addition completed! Do you want to delete the robot? Remove finished! Remove Feeder? Complete Do you want to save the robot? Do you want to save the feeder? Do you want to save the background TCP communication configuration? Do you want to save the background Modbus TCP communication configuration? Do you want to save the camera configuration? Do you want to remove the camera? Camera software ({name}) is not installed!, Please install {name} and try again. Camera software ({name}) version is low!, Current version: {version}\ nPlease install the latest version! Camera enumeration OK Cancel Automatically identify Feeder Number of Feeders: Firmware Version Memory location Subnet Mask Gateway (telecommunications) IP Address port FeederIP Reachable FeederIP Unreachable - NIC: Modify IP Check Feeder added manually Camera brand The name you entered does not match the filename naming convention or contains illegal characters. Success FAILED Product list Select Products Loading Current Products Product No Current Total Product Output Output today Count clearing Running Information Loading products Load product? Do you want to reset the count for the current product? Vision scheme Feeder Cleaning User Jog Inching Script Log in Users Please enter the user login password Password Remember Users Register With Us Username Permissions Automatic calibration Calibration process point Start calibration Next step Calibration configuration Camera Select a camera Select a robot Choose Feeder Camera installation method How to collect materials Vacuum suction Break the vacuum Speed Speed of acceleration Power High power Time-lapse photo shooting Vacuum suction time Duration of vacuum Previous Return Calibrate camera parameter settings Camera parameter settings Exposure time Gain Light source brightness Start collecting Stop collecting Robot stepping Calibration of visual processing Running process Calibration results X-direction zoom Y-direction zoom Translation in X direction Translation in Y direction Rotation angle Maximum error in X direction Maximum error in Y direction Test results Minimum error in X direction Minimum error in Y direction Select Calibration Last modified time Create a calibration Begin calibration Delete calibration Select tool coordinates Tool coordinates Calibration Tool Coordinate X Tool coordinate Y Teaching center point Teaching and avoidance points Teaching Width High Image X direction Image Y direction Claws (open/clip) Calibration Verification test Robot rotation angle Start calibration of the Tool Create a tray Normal tray Combination tray Orthogonal Shrink Please enter the name of the tray Select Configuration Configuration number Vibration intensity Vibration direction Backlight brightness Output settings Digital output Analog output Vibration duration Stop Implement Download parameters Enter settings Enter 1 trigger sequence ID Enter 2 trigger sequence ID Sequence set debugging Limits Loop Execution Download Act Program selection Continuous Mode Duration Backlight timeout Light source brightness setting Flicker time Platform vibration timed out Hopper vibration timeout Increase Removed Total No Connected disconnect Motor On Motor Off Reset Release the brakes Lock the brakes Choose Tool Step distance Open the script file Save Script Save As Cut Copied Paste Delete Revert Redo Compiler Select vibration Select action amplitude Frequency Phase Waveform Registers Register address Start cleaning up Select mission Number of Cycles Add task Before the cleaning starts Output Select output Cleaning process Added When the cleaning is done Vibration set debugging Input/Output System parameters Edit Script file Select script file New Script Remove script Date of commencement Choose a start date Date from Choose a start time End date Select end date End time Choose the end time Select Camera Sequence Inquiry Total capacity Monthly capacity weekly capacity Nissan Capacity Generate reports Image processing Feeder Vibration Set Image Source Configuration Process parameter setting Visual Output Configuration Visual Process Selection Description Parámetros del producto Visual Process Management Robot Locations Image processing Image processing Use visual tools to process images and get the data you want. CogPMAlignTool1 is a product template match. The recognition result will be passed to the input interrupt of CogToolBlock1, which is more complex to implement. It needs to be implemented in CogToolBlock1. CogBlobTool1 is used to identify the product blob area in the Feeder tray for controlling silo feeding. Output terminal: Found: whether to find the result, Point: the point position coordinates of the output (format: x, y, u; x, y, u;...), BlobTotalArea: the material area value in the Feeder, Graphic: the collection of layers that need to be displayed on the running image Feeder Task When this interface enters, it will write the Feeder parameters set in the current process for the Feeder. When leaving the interface, it will save the current Feeder parameters to the current process configuration. Therefore, if you want to modify the parameters of the Feeder for process photography, you must set them in this interface. Feeder Action Flow Configuration Stationed Bin discharge action process configuration Outlet timing setting Bin Mission Feature Key Address Set parameters Teach the release point Associated Points Table Teach the picking point The tool coordinate number to create Autocalibration Results Pick-up height Description Spacing Calculation Click Start Acquisition to display the real-time image of the camera, stop acquisition, and stop real-time image acquisition of the camera. It is now possible to set the exposure and gain parameters of the camera acquisition for the selected process image processing. New product Please enter product name formwork Select a template Total area of the current blob Lower Feeding Area Limit Minimum Area Running Pallet list Row X Column: X Edit name New Number of columns Number of lines Arrangement Select Arrangement Mode Save layout diagram Pallet Calculator Help Line Spacing Gap between columns Coordinate System Label Point Index Select point Action Commands Action To Do The end of the tool refers to the end execution tool of the robot, which can be configured with multiple ends. The end tool supports automatic calibration. After automatic calibration, the tool used by the robot to pick up the product will be obtained, and the height of the material picked up and the angle deviation value of the material picked up will be generated. The absolute angle of the robot picked up = the angle deviation value + the angle of the pixels of the product taken each time. The coordinates of the robot tool are calculated based on the Cartesian coordinates on the Z axis. If you encounter the Z axis direction of the robot tool such as the 6-axis robot, you need to manually take the Tool.Y inverted. The other parameters are the values required during the process. End of tool setup Automatically calculate Feeder vibrate over time Feeder light on time lapse Visual Guided Mode Maximum number of points sent to the robot Save image Save or not Image storage mode Image path storage method SAVE PATH Choose path Compress Images Compress or not Rewrite the visual processing logic Back to Visual Process Selection Feeder Max Vibrate Photos Configure the output, so that when the software receives the trigger instruction, after running the visual process, the result is sent, and the content sent is the output configured here. The content (;) of each item is numbered separately. The purpose of point conversion is to convert pixel coordinates according to camera calibration into absolute coordinates of the robot. List of visual process outputs Transition Points Select the process to configure for which you want to set the robots used/the Feeders used/the instructions used to calibrate and trigger the process to run. Click Next to proceed to the process configuration process. Click on the robot point to enter the point teaching interface. Visual process Select the process you want to configure Image recognition mode Trigger command Robot Pointing Steps Please describe some of the characteristics of the product used to distinguish the product. Please enter the description of the product Save as template Product parameter setting You can set the running speed, power and other parameters when this product is running. We have also reserved a custom parameter setting function, so that you can define some parameters yourself according to your needs for the next bit to get. Additional Parameters PTP speed PTP acceleration and deceleration CP speed CP acceleration and deceleration Enable Secondary Positioning Camera Each camera can be configured with multiple processes, each of which can implement a parameter configuration of the material, such as the height/tool coordinates/compensation values used for the material collection, and image processing tasks. 1. Select the camera to increase the flow; 2. Select a process to remove it. Visual Process Collection Add process Delete the process Robot point teaching Here you can select the robot to teach the point, or you can manually modify the point coordinates directly. In addition to the point management function, there is also a tray creation function. We can create a tray to teach the vertices and origins in the X and Y directions of the tray, and set the rows and columns to automatically calculate the tray, generate all the point data in the tray, and of course, you can also sort the points. You can use this tray creation feature even if your tray has a tangential transformation. If you do not want to teach the tray by vertex, we also provide a tray calculator, you just need to teach the tray origin, X direction and Y direction, and set the row and column spacing, you can also calculate the tray you want. Tray Manual verification process About Synchronization Asynchronization Run window Statistics Pengaturan Debug Product management Product Name Process Name Visual mode Camera exposure time Camera Gain Trigger command Number of Feeder Vibration Actions Number of feeder bin feeding actions Number of feeder feeding actions The minimum blob area of the feed Number of end effectors Number of points Number of pallets Tray name Tray description Rows Column Number of global parameters Error manipulating registry! The program is already running! AAS license is working Correct AAS license usb not detected! The correct VisionPro license was not detected! Do you want to turn off the software? Error closing software! Error switching products clearing homepage image! Software startup Current User Initializing Initialize the database Database read complete Read configuration parameters Configuration parameter reading complete Loading vision scheme Vision scheme loading complete Initializing Feeder Initializing robot Initializing camera All products loaded Load all calibrations Turn on server snooping Opening Opening background scripts Loading products Run: {0} days {1} hours {2} minutes {3} seconds Successfully Logged In Connected Not Connected Connection failed Listening port is on Listening port is not open Execution Script Error in background script All products loaded No Product Products Saved! Calibration loading complete! No calibration! Product [{0}] loaded! Execute the visual processing script! Visual processing script error! Number of Points Remaining Beginning [{0}] th visual process [{1}]... Photo OK! The visual process does not have an output configured! Number of Points Available Take pictures NG! Failed to take multiple photos, reached the set upper limit! Image acquisition failed! End of visual process [{0}] execution! Time: {1} ms Visual process [{0}] execution error! Time: {1} ms J4 Mobile camera calibration conversion requires X, Y, U! J4 No correlation calibration found! Performing silo feeding... Bin Supply Ended! Performing Feeder vibrations... Feeder vibration over! Server Client Connected successfully Time-consuming image acquisition Tool running time-consuming Image acquisition failed! Time: {0} ms Error: {1} Robot not connected! Open script All files Files Do you want to start automatic calibration? Failed to take photo! The name you entered does not match the filename naming convention or contains illegal characters. Calibration with the same name already exists! Do you want to start the test? Validation Completion! Tool calibration Do you want to start auto-calibrating tool coordinates? Cameras with this installation method are not supported yet Calibration finished! Calibration failed! Tip Place the calibration block in the center of the nozzle Do you want to clear the material? Add Action Duration Create a cleaning task A task with this name already exists Do you want to remove the cleaning task? Remove the cleaning task Do you want to delete the jog module? Remove the jog module Disconnected Create a script file A script file with this name already exists Do you want to remove the script file: [{0}]? Do you want to save the script? Please place the product in the discharging position No calibration available Time consumption End of Tool Do you want to remove the end of the tool? A product with this name already exists Remove this product The Copy is Completed! Complete! Copy Product Modify product name Do you want to save the product [{0}]? Save Products Do you want to save the product [{0}] as a template? Save product template Create Process Camera [{0}] not found! Process already exists! Remove process [{0}]? Remove process Closed! Add camera Current Monthly Capacity Statistics Quantity Day Total produced Current Weekly Capacity Statistics Week Current daily production capacity statistics Hour Incorrect password! The current user permission is insufficient! CompleteRegistration! Signed in! Add PLC Remove the PLC PLC List Remove PLC? Save PLC? Initializing PLC Status Parameters (PLC = > PC) Command parameters (PC = > PLC) get X coordinate: get Y coordinate: get Z coordinate: U coordinates: Exercise Ends: Error-free: Z-axis height limit: Manual teach P0 Camera center as P0 (automatic centering) Select mode Teach P0 Mobile camera calibration conversion requires X, Y, U! Auto-teaching P0 failed! Jog command AUTO EXPOSURE Manual adjustment Maximum Minimum Start automatic frequency pickup Frequency range Amplitude range Daheng Camera(Galaxy) Positive Reverse Please fill in the product name and select the corresponding template! Output all points at once Output all points at once according to the terminator, not limited by the maximum number of output points Output all points at once according to the terminator, limited by the maximum number of output points No camera calibration information Point data format error {0} The current position of the robot cannot be empty Visual task execution failed Failed to get visual output results No visual outputs found Detect repeating points and reject repeating points Mode of point output Separator between visual process output items Custom Parameters VAL Task management Add New Remove Task Save work Edit the selected task Node Header Add a light source controller Remove the Light Controller Light Source Controller List Number of Channels Light Source Controller Channel Configuration Serial Port Configuration TCP Configuration Initializing Light Controller Upper and lower cameras shoot opposite, lower camera acquires P0 Select the next camera vision process Light channel list Light channel Add channel delete channel Please select a light channel to enable Screw Feeder Move to the lower camera shooting position, take a photo to obtain P0, then return to the original position Independent XY Moving Camera Vision Static Precision Analysis Year/Month/Day/Recipe Name/Product SN/Product SN + Time -Independent Moving Camera Calibration Moving distance of independent module in X direction: Moving Distance Camera Motion Module ID Select Lower Camera: Get P0 Point: Product Placement Position: Move to Lower camera shooting position: Open Image Detect Chessboard Camera List: ROI Operation Tips ROI Operation Tips Corner Drag: Resize Rotation Point Drag: Rotate ROI Tool Draw ROI Move ROI Resize Rotate ROI Clear ROI ROI Info Analysis Parameters Algorithm: Mode: Real-Time Analysis: Start Analysis Stop Analysis Reset Export Report Real-Time Results Clarity Quality Score Optimal Clarity: Channel: Brightness: Turn On Turn Off Camera 2-Axis Control Camera 4-Axis Control Camera 1-Axis Control Camera 3-Axis Control X Before Calibration Y Before Calibration X After Calibration Y After Calibration Cancel Calibration Y Compensation Dynamic Precision Analysis Picking Photo Position Picking Position Lower Camera Secondary Positioning Point Parameters Product photo position Product attachment position Re-inspection position Independent Moving Camera Film peeling position Pressure Assembly Point QR Code Photo Point Add Point Delete Point Move Up Move Down Import point file Export all points Set compensation value Suction vacuum No: Execute pick Execute secondary positioning Execute product photo X Position X Speed Y Position Y Speed Z Start Position Z Start Speed Z End Position / Material Pickup Position Z End Speed U Position U Speed R Position R Speed Torque Camera Image Fixed Upward Camera 1 Vision Process ID: Fixed Upward Camera 1 Vision Process ID: Independent Lower Camera 1 Pick-up Photo Process ID: Independent Lower Camera 2 Pick-up Photo Process ID: Independent Lower Camera 4 Pick-up Photo Process ID: Independent Lower Camera 1 Product Photo Process ID: Independent Lower Camera 2 Product Photo Process ID: Independent Lower Camera 3 Product Photo Process ID: Independent Lower Camera 4 Product Photo Process ID: Independent Lower Camera 1 Inspection Photo Process ID: Independent Lower Camera 2 Inspection Photo Process ID: Independent Lower Camera 3 Inspection Photo Process ID: Independent Lower Camera 4 Inspection Photo Process ID: Camera Scan Code Photo Process ID Feeder Pick-up Test Select Camera Process Avoidance Point Selection Avoidance Point Selection Secondary Positioning Camera Test Select Camera Photo Point Create Tool Automatic Shooting Robot Position Setting A Point Coordinates: Robot A Point Position Coordinates B Point Coordinates: Robot B Point Photo Position Coordinates Select Vision Processing Flow Test Parameter Settings Repeat Count: Movement Speed (%): A Point Delay (ms): B Point Delay (ms): Vertical Step Distance (ms): Test Control Enable Vertical Detection Enable Cylinder Enable Photo Capture Single Test Continuous Test Pause Test Progress Waiting to start... Current Cycle Success Rate Round-Trip Time Test Result List (Display the latest 20 results) Serial Number Status Pixel X Pixel Y Angle Absolute X Absolute Y Cycle Time Timestamp Export CSV Generate Report Clear Data Dynamic Repeatability Analysis X Direction Accuracy: Y Direction Accuracy: Angle Accuracy: Rating: Excellent Show Trend Chart Test Settings Delay Time (ms): Start Test Completed Failure Count Accuracy Statistics Standard Deviation: Kurtosis: Range: Assembly Record Query Start: End: Export Current Page Time Recipe Name Product Serial Number Part Serial Number Success Status Assembly Pressure Elapsed Time (s) Lower Camera Coordinate 1 Lower Camera Coordinate 2 Lower Camera Coordinate 3 Lower Camera Coordinate 4 Grab Motion Coordinate Place Motion Coordinate 1 Place Motion Coordinate 2 Place Motion Coordinate 3 Place Motion Coordinate 4 Device Name Operator Remarks Previous Page Next Page Screw Number: Electric Screwdriver Program Number Locking Turns Photo Record Inquiry Product SN Recipe Name Process Name Camera Name Photo Number Robot Position Pixel Coordinates Absolute Coordinates Image Path Production Record Inquiry Category Product Code Device ID User Login Employee Card Please swipe card... Account Login Card Login Visual Guidance Positioning Data: Assembly Time(s) Assembly Result Lower Camera Tool Coordinates Actual Place Coordinate Details Z-axis Safety Height: Add Screw Feeder Remove Screw Feeder Screw Feeder List Screw quantity per pack: Low Quantity Alarm Threshold: Enable low quantity alarm: Screw quantity per pack: Function Code 1 ReadCoils Read DO Status Function Code 2 ReadInputs Read DI Status Function Code 3 ReadHoldingRegisters Read AO Value Function Code 4 ReadInputRegisters Read AI Value Function Code 5 WriteSingleCoil Write Value to DO Function Code 6 WriteSingleRegister Write Value to AO Function Code 15 WriteMultipleCoils Write Multiple Coil Registers Function Code 16 WriteMultipleRegisters Write Multiple Holding Registers Function Code 23 ReadWriteMultipleRegisters Read and Write Multiple Holding Registers Lower Camera Capture Count: Upper Camera Pick-up Capture Count: Upper Camera Placement Capture Count: Upper Camera Fastening/Assembly Count: Product Camera Count at Fixed Pick-up Position: Product Camera Count at Fixed Fastening/Assembly Position: Fixed Camera Inspection Fastening/Assembly Count: Operation Mode : Pick-up Position: Bit Correction Mode: Pressure Sensor Configuration Pressure Sensor Name Save pressure curve graph Pressure Curve Graph Save Path Save System Parameters Card Reader Configuration Assembly Holding Pressure Configuration Holding Pressure Time: Holding Pressure: Max Holding Pressure: Post-holding Pressure Configuration Start independent moving camera position calibration Independent moving camera position calibration failed Camera calibration failed Unsupported camera calibration method! Detected that the robot's XY coordinates are 0. The point may not be taught! Robot movement will not be allowed Move the Robot Move the robot to the center point? Please confirm safety? Please select the camera first! Please select calibration first! Confirm to start calibrating P0 point with the lower camera? Move to calibration block placement position, pick calibration block failed! Failed to move to lower camera position! P0 Point Not Found. Please Adjust the Workpiece Position and Retry! Move to calibration block placement position, place calibration block failed! Z-axis failed to rise to safe height! P0 point calibration with lower camera completed! Confirm moving to lower camera position? Move to lower camera position successful! Confirm teaching lower camera position? Teaching lower camera position successful! Confirm moving to calibration block placement position? Move to calibration block placement position successful! Move to calibration block placement position failed! Confirm teaching calibration block placement position? Teaching calibration block placement position successful! Ready Unable to load image Image loaded Failed to load image Detecting checkerboard... Detection successful Checkerboard not detected Detection failed Analyzing... Analysis completed Stopped Contrast Analysis error Reset completed Analysis report Report exported Export failed ROI cleared Clarity Trend Frame Rate Save failed Save exception Open Channel Open exception Close channel Close exception Confirm Jog Confirm jog distance of {0} mm Camera axis enable failed! Camera axis enable failed! Camera axis jog failed! Duration (ms) None Frequency Search Failed Searching Frequency... Move Material to Starting Position Verification in Progress Please use more materials to verify the motion vibration effect. Verification Completed Repeat vibration verification? Repeat Verification Please confirm whether the current vibration effect is correct? Continue Frequency Adjustment The Visual Tool Group does not have a ToolBlock named: 'CogToolBlock-FeederCalib' Visual tool operation failed! CogToolBlock-FeederCalib run error!error:{0} Vision Running... Add Robot Select the light source channel to use Testing in progress... Confirm to perform a single test? Robot not connected, cannot teach! Camera not connected, cannot teach! Test canceled! Robot failed to move to point A! Robot failed to move to point B! Test completed! Start continuous test? No test data, cannot export report. Save the test report as a PDF Vision Dynamic Accuracy Test Report Device Information Line Type Station Type Machine No Analysis Results Dimension, Indicator, Value Sample Count Taught point B Taught point A Failed to get robot current position, cannot teach point A! Error when teaching point A Camera exposure setting failed Camera gain setting failed Excellence Good Acceptable Insufficient Severely Insufficient Vision Static Accuracy Test Report Sample count is 0, cannot calculate. Save test results as CSV Add Light Source Controller Add PLC Add Screw Feeder Modify Camera No records meeting the criteria were found. Capacity Statistics Fastening Curve Angle (°) Torque (kgf) Fastening Torque Curve Are you sure to remove the light source controller? Save light source controller configuration? Save screw feeder configuration? Are you sure to remove the screw feeder? Save system parameters? Delay saving the image Do you want to delay saving the picture