Commissioning - Z-Block Calibration : Différence entre versions

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|Step_Title=<translate>Find First Position on the Turret</translate>
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|Step_Content=<translate>On the '''Service > IO''' tab use output '''Y214''' and '''Y215''' (ZX5) to turn each of the turrets. Each turn of the turrets will change the binary state of the outputs '''X210, X220''' and '''X212'''.</translate>
|Step_Picture_00=Commissioning_-_Z-Block_Calibration_Z-Transom.png
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|Step_Picture_00=Commissioning_-_Z-Block_Calibration_ZBLOCK2.png
|Step_Picture_01=Commissioning_-_Z-Block_Calibration_ZBLOCK2.png
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|Step_Picture_02=Commissioning_-_Z-Block_Calibration_Zblockbinary.png
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|Step_Picture_01=Commissioning_-_Z-Block_Calibration_Zblockbinary.png
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|Step_Picture_02=Commissioning_-_Z-Block_Calibration_Z-Transom.png
 
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Version du 4 octobre 2019 à 14:59

Auteur avatarAnonymous | Dernière modification 29/03/2022 par Gareth Green en cours de rédaction

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Commonly used during sawing on Z transoms, the Z block operation is used to fasten the profile, making sure it does not move during sawing.

Difficulté
Moyen
Durée
30 minute(s)

Introduction

Commonly used during sawing on Z transoms, the Z block operation is used to fasten the profile, making sure it does not move during sawing. There are 6 possible states the z block can be in. Each of these can have a different length of protrusion for different profiles.


12 x M8 Screws

12 x M8 Nuts

12 x wire numbers 1 - 6

Étape 1 - Find First Position on the Turret

On the Service > IO tab use output Y214 and Y215 (ZX5) to turn each of the turrets. Each turn of the turrets will change the binary state of the outputs X210, X220 and X212.


Étape 2 -

Commentaires

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