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Difference between revisions of "Integrating Ultrasound Technology into a Fitness Tracking Device (1M, 2 B/S)"

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==Detailed Task Description==
 
==Detailed Task Description==
According to the level of the student and the chosen thesis type (BT/ST/MT) the work will include some or all following tasks:  
+
According to the level of the student and the chosen thesis type (BT/ST/MT) the work will include some or all following tasks:  
  
 
===Goals===
 
===Goals===
  
=====Literature Research=====
+
=====Hardware Design=====
* Research of available coupling media
+
*  
* Evaluation of coupling media in terms of: acoustic properties (e.g., attenuation), 3d design and integration, farbication complexity, cost.
+
=====Firmware=====
 
+
*  
=====Testbench Design=====
 
* Design of a coupling media testbench
 
* Design of casts and fabrication of prototypes
 
* Development of software for testing
 
* Prototype integration into a wrist band
 
 
 
 
=====Testing=====
 
=====Testing=====
* Ultrasound characterization of coupling media
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*  
  
 
===Practical Details===
 
===Practical Details===

Revision as of 23:10, 22 July 2023

Fitness tracker integration.png


Short Description

Status: Available

Students will be co-supervised by the Center of Project Based Learning.
Looking for 1 Master Student or 1-2 Semester students
Contact: Christoph Leitner, Marco Giordano (PBL)

Prerequisites

Creativity and solid research methodology (highly appreciated)
Circuit design tools (e.g., Altium Designer)
Additive manufacturing know-how and knowledge of CAD tools (e.g., SolidWorks)


Character

30% Mechanical Design
30% Signal Processing
20% Literature Research
20% Data analyses and documentation

Professor

Luca Benini

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Detailed Task Description

According to the level of the student and the chosen thesis type (BT/ST/MT) the work will include some or all following tasks:

Goals

Hardware Design
Firmware
Testing

Practical Details


Links

↑ top