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report [2024/06/25 14:37] – [7.7 Prototype] team4report [2024/07/18 12:20] (current) epsatisep
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 | Budget | 1200 |  | Budget | 1200 | 
 | **Expenses** | |   | **Expenses** | |  
-| Leaflets | 60 | [(360imprimirLeaflets)] |  +| Leaflets | 60 | [(www360imprimirLeaflets)] |  
-| Posters | 70| [(360imprimirPosters)] | +| Posters | 70| [(www360imprimirPosters)] | 
 | Owned Media (Website) | 288| [(Shopifypricing)] | | Owned Media (Website) | 288| [(Shopifypricing)] |
 | Video Advertising (Youtube) | 100 | -- | | Video Advertising (Youtube) | 100 | -- |
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 ==== - Ideation ==== ==== - Ideation ====
  
-Out of the second chapter of this report, the chapter on state of the art, the Scarabreed team concluded several drivers. Drivers are the very reason behind the design process. They are goals that are unique to the design process. Drivers are the force behind innovation. They are decided to serve a function, to meet some specific need, or to be useful in some way.  +Based on the analysis of the state-of-the-art technologies presented in Chapter 2, the Scarabreed team identified several key design drivers.  These drivers represent the essential goals that will guide the design process. Essentially, they are the forces that will propel innovation in this projectEach driver can be defined by its function, the specific need it addresses, or the utility it provides.  
  
 In this project, one main driver changes the design of the product. Other drivers are still very relevant, however, they don’t determine the shape of the construction but stimulate technical innovation from within. This main design driver here is to design for modularity. A modular design allows the user of the product to scale, customize and transport easily.  In this project, one main driver changes the design of the product. Other drivers are still very relevant, however, they don’t determine the shape of the construction but stimulate technical innovation from within. This main design driver here is to design for modularity. A modular design allows the user of the product to scale, customize and transport easily. 
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 After analyzing existing brands and technologies, Scarabreed has successfully developed the BBV2 - Beetles Breeder Version 2, a solution for breeding endangered beetle species. After analyzing existing brands and technologies, Scarabreed has successfully developed the BBV2 - Beetles Breeder Version 2, a solution for breeding endangered beetle species.
  
-The BBV2 features a modular design, allowing for easy scaling, customization, and transport. It has a trapezium form optimized for stability and space efficiency, and it provides dual access from both the front and back for convenient maintenance and monitoring. The technological compartment at the top monitors and controls environmental parameters.  Built-in cable ducts enable seamless connection and scalability of multiple vivariums. The BBV2 is constructed from high-quality stainless steel for durability. The team uses ESP32 microcontroller and SHT21 sensor for precise humidity and temperature control.+The BBV2 features a modular design, allowing for easy scaling, customization, and transport. It has a trapezium form optimized for stability and space efficiency, and it provides dual access from both the front and back for convenient maintenance and monitoring. The technological compartment at the top monitors and controls environmental parameters.  Built-in cable ducts enable seamless connection and scalability of multiple vivariums. The BBV2 is constructed from high-quality stainless steel for durability. The team uses an ESP32 microcontroller and an SHT21 sensor for precise humidity and temperature control.
  
-Technically, the team conducted Finite Element Analysis (FEA) to approximate system behavior and validated structural integrity through load testing, confirming the system withstands 588.6N which was ensured by structural reliability with mesh analysis. +Technically, the team conducted Finite Element Analysis (FEA) to approximate system behavior and validated structural integrity through load testing, confirming the system withstands 588.6 N which was ensured by structural reliability with mesh analysis. 
 For the realization of the vivarium, CAD models were made using SolidWorks, followed by a cardboard prototype to identify and correct potential issues. Additionally, lists of materials were made for both the prototype and the final product. The team also designed a reusable and sustainable packaging to minimize environmental impact. For the realization of the vivarium, CAD models were made using SolidWorks, followed by a cardboard prototype to identify and correct potential issues. Additionally, lists of materials were made for both the prototype and the final product. The team also designed a reusable and sustainable packaging to minimize environmental impact.
  
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