cit web

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<a title="Casting"><img class="image center" src="images/week10/grupalcasting.jpg"></a>
The result.
<a title="Result"><img class="image center" src="images/week10/grupalresult.jpg"></a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/">CIT page.</a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/week10.html">CIT page.</a>
<h2>Problems and solutions</h2>
It is very important to keep in mind that we can not delay a lot of time mixing the materials of casting and molding, but these materials harden and we will not be able to work.<br>
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<a title="Grupal Board"><img class="image center" src="images/week11/grupalbrd.jpg"></a>
From this design, we proceed to make the consumption measures, as shown in the following picture.
<a title="Measure Board"><img class="image center" src="images/week11/measuregrupal.jpg"></a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/">CIT page.</a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/week11.html">CIT page.</a>
<h2>Download files</h2>
You can download files Here: <br>
Code<br>
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<a title="Code Servo Arduino"><img class="image center" src="images/week12/servo.jpg"></a>
As with the softwareserial library, the servo library does not work correctly, so it is decided to program in C, for this I modify the<a href="http://academy.cba.mit.edu/classes/output_devices/servo/hello.servo.44.2.c"> code provided by Neil</a> , my final code being the following:
<a title="Code Servo C"><img class="image center" src="images/week12/servoc.jpg"></a>
In the following video we can see the movement of servomotor.
In the following gif we can see the movement of servomotor.
<center><video width="680" height="400" src="images/week12/ServovideoC.mp4" autoplay muted loop></video> </center>
<br><h4>Integration</h4>
For the integration of servomotor and RGB, I make a small application of what would be the logic of my final project:<br>
The Red LED will light up until the water reaches its desired temperature, when it reaches that value, the green LED will light be indicating that the system is ready.
When the valve is activated, which will be the servomotor, a blue LED will light be indicating that it is in operation.<br>
Here is a video of its final operation.<br>
Here is a gif of the final operation.<br>
<center><video width="680" height="400" src="images/week12/integration.mp4" autoplay muted loop></video> </center>
<h2>Problems</h2>
As we have problems with the arduino language, we tried to carry out a C programming with the simple ignition of the LEDs, having the following code and its demonstration in a video
<a title="RGB C"><img class="image center" src="images/week12/rgbc.jpg"></a>
As we have problems with the arduino language, we tried to carry out a C programming with the simple ignition of the LEDs, having the following code and its demonstration in a gif.
<center><video width="680" height="400" src="images/week12/videoRGBc.mp4" autoplay muted loop></video> </center>
<a title="RGB C"><img class="image center" src="images/week12/rgbc.jpg"></a>
<h2>Group</h2>
The group work this week, asks us to measure the consumptions of the board, for this case we have used the<a href="http://academy.cba.mit.edu/classes/output_devices/RGB/hello.RGB.45.png"> basic example of a led RGB of Neil</a> and the output devices board of our partner<a href="http://fabacademy.org/2019/labs/cit/students/italo-samaniego/week12.html"> Italo</a>.
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To see all the documentation of the group work, you can visit the CIT page.
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/week12.html">CIT page.</a>
<h2>Download files</h2>
You can download files Here: <br>
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<a title="Parameters"><img class="image center" src="images/week4/paramgras.jpg"></a>
The result is the following picture.
<a title="Grasshopper"><img class="image center" src="images/week4/discgrasp.jpg"></a>
You can read more about our work in the <a href="http://fabacademy.org/2019/labs/cit/"> CIT web Page</a>
You can read more about our work in the <a href="http://fabacademy.org/2019/labs/cit/week4.html"> CIT web Page</a>
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<a title="Materials"><img class="image center" src="images/week5/material.jpg"></a><br>
The result of the cuts can be seen in the image.
<a title="Results"><img class="image center" src="images/week5/results.jpg"></a><br>
Yoy can read more in the web of our laboratory: <a href="http://fabacademy.org/2019/labs/cit/">CIT</a>
Yoy can read more in the web of our laboratory: <a href="http://fabacademy.org/2019/labs/cit/week5.html">CIT</a>
</p>
<p>
<h2>Download files</h2>
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In the design of the holes we can see that there is a difference of -0.5 in the holes of 20mm diameter less. In the case of the 25mm hole we see a greater difference, of almost 0.8mm.
This information will be very valuable when creating designs with holes and respect tolerance.
<a title="Holes"><img class="image center" src="images/week6/holes.jpg"></a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/">CIT page.</a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/week6.html">CIT page.</a>
<br>
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A second test that is carried out is the power on of the led with the oscilloscope. On the board there is a led on pin6 and another one on pin11.
<a title="Test oscilloscope"><img class="image center" src="images/week7/testleds.jpg"></a>
We can see how one LED is activated and the other is not, depending on the programming, with one LED having a voltage of 5V while the other one has a voltage of 2.5V. The attany's data sheet must be checked to verify the correct voltage.<br>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/">CIT page.</a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/week7.html">CIT page.</a>
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As a group work, several types of tests are performed with the multicam, as a personal contribution I made the following designs
<a title="Test"><img class="image center" src="images/week8/test.jpg"></a>
The objective of these tests is to check the cut tolerances in plywood. After these tests we realize that it is not necessary to give a tolerance, since it will enter under pressure without major problems.
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/">CIT page.</a>
To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/week8.html">CIT page.</a>
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This video is from the blink code.<br>
<iframe width="560" height="315" src="https://www.youtube.com/embed/nUYzZN2QYvs" frameborder="0" allow="accelerometer; autoplay; encrypted-media; gyroscope; picture-in-picture" allowfullscreen></iframe>
<br>To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/">CIT page.</a>
<br>To see all the documentation of the group work, you can visit the <a href="http://fabacademy.org/2019/labs/cit/week9.html">CIT page.</a>
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