Team:Grenoble-EMSE-LSU/Project/Instrumentation

From 2013.igem.org

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<p>A rotating servomotor was used to move a sliding filter holder in front of the light and the photodiode.  Geometrical considerations explained above allowed us to dimension the lever arm that translates the rotating movement of the motor in the translation of the filter rack.</br></br>
<p>A rotating servomotor was used to move a sliding filter holder in front of the light and the photodiode.  Geometrical considerations explained above allowed us to dimension the lever arm that translates the rotating movement of the motor in the translation of the filter rack.</br></br>
It is known that: </br></br></p>
It is known that: </br></br></p>
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<center style="font-size:200%"> $L=a+\sqrt{l^2-h^2}+X+b+R$ <dd>(first position [1])</center>
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<center style="font-size:200%"> $L=a+\sqrt{l^2-h^2}+X+b+R$ (first position [1])</center>
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<center style="font-size:200%"> $L=\sqrt{l^2-h^2}+X+5.(b+R)-a$ <dd>(second position [2])</center>
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<center style="font-size:200%"> $L=\sqrt{l^2-h^2}+X+5.(b+R)-a$ (second position [2])</center>
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<p align="center"><img src="https://static.igem.org/mediawiki/2013/c/cd/Equations1-2.PNG" alt="position_eq_servo" /></p>
<p align="center"><img src="https://static.igem.org/mediawiki/2013/c/cd/Equations1-2.PNG" alt="position_eq_servo" /></p>

Revision as of 11:34, 1 October 2013

Grenoble-EMSE-LSU, iGEM


Grenoble-EMSE-LSU, iGEM

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