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Flow free bridges 9x9 level 25 Offline#
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Flow free bridges 9x9 level 25 trial#
20 scored Time Trial variants to choose from by board size and duration Strive for speed in Time Trial for the most and fastest solves Strive for accuracy in Free Play using the fewest, most efficient moves Track your completion of each level in Free Play mode Starter, Challenge, Bonus, Classic, Mania, and Jumbo level packs Over 1,500 levels available in Free Play mode So, give Flow Free: Bridges a try, and experience "mind like water"! Gameplay ranges from simple and relaxed, to challenging and frenetic, and everywhere in between. Use the new Bridges to cross two pipes and solve each puzzle!įree play through hundreds of levels, or race against the clock in Time Trial mode. Pair all colors and cover the entire board. If you like Flow Free, you'll love Flow Free: Bridges®!Ĭonnect matching colors with pipe to create a Flow®. Manufacturability issues are discussed together with the need for good reliability of the stretchable interconnections when stress is applied during stretching.From the makers of the #1 hit app Flow Free®, comes a fun and challenging new twist: Bridges! The reliability of the overall system is improved by varying the thickness of the embedding polymer, wherever the presence and type of components requires to. Embedding is done by moulding the electronic device in a stretchable polymer. This new developed technology is based on the combination of rigid standard SMD components which are connected with 2-D spring-shaped metallic interconnections. The process steps used are standard PCB fabrication processes, resulting in a fast technology transfer to the industry. In this contribution a new low cost, elastic and stretchable electronic device technology will be presented, based on the use of a stretchable substrate. Conformable and elastic circuitry is an emerging topic in the electronics and packaging domain. Electronics for implantation on the other hand should ideally be soft and conformable in relation to the body tissue, in order to minimize the rejecting nature of the body to unknown implanted rigid objects.
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They should be soft, conformable and to a certain degree stretchable. Those devices should become invisible to the user, especially when they are embedded in clothes (e.g. Compared with the single copper or gold trace, the calculated stress was reduced up to 10 times.Ī growing need for ambient electronics in our daily life leads to higher demands from the user in the view of comfort of the electronic devices.

In this way, each conductor track has been split in four parallel lines of 15 mum and 15 mum space in order to improve the mechanical performance without limiting the electrical characteristics. Moreover, the damage in the metal is significantly reduced by applying narrow metallization schemes. This design allows a large deformation with the minimum stress concentration. Different configurations were simulated and compared among them and based on these results, a horseshoe like shape was suggested. Common metal conductors used in the electronic industry have very limited elastic ranges therefore a metallization design is crucial to allow stretchability of the conductors going up to 100%. A silicone material was chosen as substrate because of its low stiffness and high elongation before break. These interconnections are done by embedding sinuous electroplated metallic wires in a stretchable substrate material. In this work, the design of flexible and stretchable interconnections is presented.
