These are the Final Integrated Projects already done by the students.
La necesidad de crear este proyecto surge principalmente porque para realizar el lanzamiento de un cohete de forma segura, el encendido debe realizarse por medios electricos, manteniendo una distancia de seguridad entre el operador y la base de lanzamiento, mediante una terminal de disparo controlada por una consola de lanzamiento. Por ello, utilizaremos un radioenlace por WiFi para realizar la comunicacion inalambrica entre la consola de lanzamiento que es la encargada de generar las ordenes de control a la terminal de disparo para que esta las ejecute y se realice con exito el lanzamiento.
The main goal of the project is to make a cubesat sized satellite based on OSSI-1 assisted by Solidwork and Altium.
The result is a simulated and verified model of Cubesat. This model will be accompanied by a complete and accurate documentation about their technical documentation, scheduling, keywords, design, gallery, etc.
The main goal of the project is to make an homemade altimeter specifically for model rockets based on Arduino platform assisted by Solidwork and Altium.
The result is a not simulated and not verified model of ALTDuino. This model will be accompanied by a complete and accurate documentation about their technical documentation, keywords, design, gallery, etc.
The main goal of the project is to make a DVB-S receiver compatible with portable devices via USB. Our project is based on models that we found on some pages of Internet and from them we tried to make some improvements to achieve a marketible product. This model will be accompanied by a complete and accurate documentation about their technical documentation, scheduling, keywords, design, gallery, etc.
The CanSat is a design-build-fly integrated in a 33cl can, designed to measure environmental parameters. Our goal is the telemetry of our data in radio-frequency in the sky and over the earth surface to analyze. We intend to get a secure landing in the surface.
The goal of this project is getting a device based on Arduino UNO to obtain the characterization of a solid fuel rocket motor from a force sensor and to be able to visualice the data in the device itself. The transferring of the data to a PC software by a USB interface has to be possible too.
La necesidad de crear este proyecto surge principalmente porque para realizar el lanzamiento de un cohete de forma segura, el encendido debe realizarse por medios electricos, manteniendo una distancia de seguridad entre el operador y la base de lanzamiento, mediante una terminal de disparo controlada por una consola de lanzamiento. Por ello, utilizaremos un radioenlace por WiFi para realizar la comunicacion inalambrica entre la consola de lanzamiento que es la encargada de generar las ordenes de control a la terminal de disparo para que esta las ejecute y se realice con exito el lanzamiento .