Upgrade Autoflow to Windows 10 : Différence entre versions

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|Step_Title=<translate>Convert the TC2 project from old machine</translate>
 
|Step_Title=<translate>Convert the TC2 project from old machine</translate>
|Step_Content=<translate>[https://stuga.dokit.app/wiki/Convert_Autoflow_TC2_Project_to_TC3 Follow this procedure] to convert the project</translate>
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|Step_Content=<translate>[https://stuga.dokit.app/wiki/Convert_Autoflow_TC2_Project_to_TC3 Follow this procedure] to convert the project
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Map the Saw On, Conveyor and extractor as outputs rather than invertergofwd links (outputs 97 and 98)</translate>
 
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Version du 1 juillet 2020 à 09:54

Auteur avatarGareth Green | Dernière modification 9/02/2024 par Gareth Green en cours de rédaction

Introduction

Upgrading an Autoflow to Windows 10 involves upgrading two PCS

  1. The Beckhoff control PC
  2. The Camera PC


The Beckhoff PC is not upgradable so needs to be completely replaced. We use the miniature Beckhoff C6017 for this

It is not cost effective to upgrade and old camera PC, so a new one is supplied

Étape 1 - Set up the 6017 PC

  • Ensure regional settings correct - correct date format
  • Rename the Ethernet Adaptors to Ethernet and EtherCAT
  • Ensure the TwinCAT Protocol is installed on the EtherCAT adaptor
  • Teamviewer setup
  • Administrator password set to "Stuga001"
  • Add Stuga desktop image
  • Latest winMulti in c:\multi

Étape 2 - Set up New Camera PC

Follow standard Setup procedure to step 5 to ensure sourcetree installed with latest tc3Multi software pulled to machine


Étape 3 - Add the backup to cameraPC

In folder c:\DDRIVE

Copy latest messages.saw to DDRIVE

Étape 4 - Convert the TC2 project from old machine

Follow this procedure to convert the project


Map the Saw On, Conveyor and extractor as outputs rather than invertergofwd links (outputs 97 and 98)

Étape 5 - Install the new PCs on site

  • Ensure the 6017 PC has been earthed adequately

Étape 6 - Set up the IP addresses

Map the network drives

Map customer network connections

Étape 7 - Test all IO

This is important to ensure there have been no mistakes in the remapping

Étape 8 - Test axis directions

Étape 9 - Test axis Datuming

Étape 10 - Check Spindles and alarms

Check inverter is wired so that OK=high on X90

Check alarms trigger on low signal on inverter ok

Check 50Hz and 300Hz spindles function correctly from SpindleIO screen

...A lot of the older machines were released with inverter OK active low, and the alarms file set up to "bodge" around this. The "correct" way should be active high which means it is also fail safe. Take this opportunity to ensure the machine is correct

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