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michka:research:microbial_fuel_cells:cardiff5 [2016-09-21 09:50] michkamichka:research:microbial_fuel_cells:cardiff5 [2016-09-21 09:56] (current) michka
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 =====MFCitizen @Cardiff===== =====MFCitizen @Cardiff=====
  
-**September 7th-9th, 2016** +**[[http://www.zprod.org|Paul Granjon]] & [[http://michkamelo.wordpress.com|Michka Mélo]], September 7th-9th, 2016**
-**[[http://www.zprod.org|Paul Granjon]] & [[http://michkamelo.wordpress.com|Michka Mélo]]**+
  
 {{:michka:research:microbial_fuel_cells:20160909_184144.jpg?500|}} {{:michka:research:microbial_fuel_cells:20160909_184144.jpg?500|}}
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 ===2.5 Beam robotics “Solar engine” PHS=== ===2.5 Beam robotics “Solar engine” PHS===
  
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 When discussing about a lower-tech charge pump circuit, Paul mentionned the Beam robotics circuits, which are often made of basic through-hole off-the-shelf components, and are powered by renewables. When discussing about a lower-tech charge pump circuit, Paul mentionned the Beam robotics circuits, which are often made of basic through-hole off-the-shelf components, and are powered by renewables.
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 Anyway, we prototyped and tested the circuit (replacing the motor by a LED), and it worked perfectly well. A 2200 uF proved to be way to small to really see the circuit effect on a LED. We replaced it by a 10 F supercapacitor, and it worked great, lighting the LED for several minutes after cutting having charged the supercapacitor and shut down the power supply. Anyway, we prototyped and tested the circuit (replacing the motor by a LED), and it worked perfectly well. A 2200 uF proved to be way to small to really see the circuit effect on a LED. We replaced it by a 10 F supercapacitor, and it worked great, lighting the LED for several minutes after cutting having charged the supercapacitor and shut down the power supply.
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 ===2.6 Through-hole-components-based charge pump=== ===2.6 Through-hole-components-based charge pump===
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 ====2.7 Joule Thief PHS==== ====2.7 Joule Thief PHS====
  
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 ===2.7.1 Literature review=== ===2.7.1 Literature review===
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 ==2.7.2 First prototype and next steps== ==2.7.2 First prototype and next steps==
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 While searching all the information mentionned above, we wanted to do a quick test with a basic JT design. While searching all the information mentionned above, we wanted to do a quick test with a basic JT design.
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 ====3. Performance Tracking System==== ====3. Performance Tracking System====
  
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 ===3.1 Why INA219 current sensor ?=== ===3.1 Why INA219 current sensor ?===
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 ===4.1 Graphite electrode=== ===4.1 Graphite electrode===
  
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 Paul built a graphite electrode of out graphite rods we bought at The Works, an Arts & Crafts shop. Paul built a graphite electrode of out graphite rods we bought at The Works, an Arts & Crafts shop.
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 He cut down the rods in smaller chunks, drilled them, and used an old bicycle stainless steel cable to assemble them like a collar. He cut down the rods in smaller chunks, drilled them, and used an old bicycle stainless steel cable to assemble them like a collar.
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 Then, he tightened them up with a second bit of bicycle staineless steel cable (a choice of material advised by Johann, from the Flower Power pot project). Then, he tightened them up with a second bit of bicycle staineless steel cable (a choice of material advised by Johann, from the Flower Power pot project).
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 A quick multimeter test showed that the overal resistance of the assembly was about 3 ohms. A quick multimeter test showed that the overal resistance of the assembly was about 3 ohms.
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