UN's sustainable development goals
Clean Cabinet project contributes, more or less directly, to three of the UN’s sustainable development
9. Industry, innovation and Infrastructure
Build resilient infrastructure, promote sustainable industrialization and foster innovation
Hydraulics is a technology widely used in all kind of infrastructures. The use of more reliable and longer lasting components and systems will contribute to develop quality, reliable, sustainable and resilient infrastructures that enable to support the economic development and the sustainable industrialization, especially in developing countries.
12. Responsable consumption and production
Ensure sustainable consumption and production patterns
Sustainable consumption and production aims at “doing more and better with less”. This is something that can be achieved by reducing the use of resources, the degradation and the pollution during the whole lifecycle, as well as by lowering the energy consumption. Clean Cabinet contributes to these objectives.
13. Climate action
Take urgent action to combat climate change and its impacts
Climate change is a global challenge that does not respect national borders. It is directly affected by the air pollution generated by humans which, in turn, is linked with energy generation and consumption. Clean components not only allow to significantly reduce the energy consumption but also reduce the use of materials due to higher reliability and lifespan.
Differences with state-of-art solutions from end users point of view
The key point and most relevant characteristic of Clean Cabinet is the integration of contaminant extraction and image analysis into a single device. Our system works in automatic mode and has been conceived to be readily integrated in manufacturing lines, also enabling for remote monitoring (it will include communication capabilities to comply with industry 4.0 requirements).
Some of the more relevant characteristics of Clean Cabinet are summarized in this table highlighting, from the end-user’s point of view, the differences with
the state-of-the-art solutions for cleanliness assessment (the question marks “?” indicate that it depends on the equipment/procedure used).
Due to a shorter cycle time and a much lower cost per test ratio, Clean Cabinet allows to further increase the number of cleanliness tests. Better cleanliness assessment during manufacturing leads to increased yield and performance, also resulting in a significant reduction of the overall energy consumption.
|Parameter||External analysis||On-site analysis||Clean Cabinet|
|Low cost/test ratio||-||-||✓|
|Very short lead time||-||-||✓|
|Valid for all contaminants||?||?||✓|
|Highly efficient extraction||-||-||✓|
|In-house control of the process||-||✓||✓|
|No clean-room lab required||✓||-||✓|
|No skilled technician needed||✓||-||✓|
|Integrable in production line||-||-||✓|
|Compliant with ISO 16232||✓||?||✓|
|Enables remote communication||-||-||✓|
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