Team:CIDEB-UANL Mexico/Software-Parts
From 2013hs.igem.org
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- | It will use up to 5v~3.3v.<br> | + | A water pump, to pump the solution across containers. It will use up to 5v~3.3v.<br> |
We will be using a simple handmade water-pump, which uses the following materials: | We will be using a simple handmade water-pump, which uses the following materials: | ||
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We will use an LCD to display temperature and relevant data.<br> | We will use an LCD to display temperature and relevant data.<br> | ||
- | + | Its an 16x2 liquid crystal display.<br> | |
- | + | It can display White text, and has a Blue background.<br> | |
+ | It's specifically a <Strong>16x2_KST1602B-W</Strong>.<br> | ||
It employs a HD44780 parallel interface chipset.<br> | It employs a HD44780 parallel interface chipset.<br> | ||
Dimensions: 84 mm x 44 mm. And Uses About 5v. | Dimensions: 84 mm x 44 mm. And Uses About 5v. | ||
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- | We are using LEDs | + | We are using UV LEDs, so they can expose the GFP reporter. |
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Revision as of 19:41, 21 June 2013
Software
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Parts
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This section contains information about the parts used in the robot project.
More info in its development page: http://arduino.cc/en/Main/ArduinoBoardADK Datasheet about ATMEL: http://www.atmel.com/Images/doc2549.pdf Heat Disperser x 2: It’s an Intel E97375-001 Socket 775 Aluminum Heat Sink Fan. We are using a pc, processor fan, just to keep the solution/medium at normal temperatures and to cool the resistors. In this case, we are using 2 of them. Specifications:
Beaker x 2: A cylindrical container, which will contain the medium/solution. Their capacity will range from 250ml to 400ml. Small Water Pump x 1: A water pump, to pump the solution across containers. It will use up to 5v~3.3v. We will be using a simple handmade water-pump, which uses the following materials:
LCD Display x 1: We will use an LCD to display temperature and relevant data. Its an 16x2 liquid crystal display. It can display White text, and has a Blue background. It's specifically a 16x2_KST1602B-W. It employs a HD44780 parallel interface chipset. Dimensions: 84 mm x 44 mm. And Uses About 5v. HD44780 Datasheet: https://www.sparkfun.com/datasheets/LCD/HD44780.pdf 16x2_KST1602B-W Datasheet: http://www.5hz-electronica.com/datasheets/16x2_KST1602B-W.pdf UV LED x 4: We are using UV LEDs, so they can expose the GFP reporter. Features:
YSL-R547P4C-E3 Datasheet: https://www.sparkfun.com/datasheets/Components/LED/YSL-R547P4C-E3.pdf Adapter AC/DC wall-12VDC 2A x 1: This will be our source of energy regarding the Micro-Controller and everything connected to it. Can revieve input Voltage of 100 to 240VAC. AG2412-B281(2A0F) Datasheet: http://www.phidgets.com/documentation/Phidgets/3024_0_Product_Manual.pdf Adapter AC/DC wall-9VDC 650mA x 1: This will be used as source of energy, in case the AC/DC wall-12VDC malfunctions. It's also to replace the amount of amperage, if it turns out to be unnecessary. Can take input Voltage of 100 to 240VAC. Temperature Sensor Probe x 2: Its a DS18B20 Programmable Resolution 1-Wire Digital Thermometer. We will use this probes in order to measure the temperature of water. Its power supply range is 3v~5.5V. The temperature it can read, ranges between -55°C to +125°C (-67°F to +257°F). More Info in its page: http://www.maximintegrated.com/datasheet/index.mvp/id/2812 Datasheet DS18B20: http://datasheets.maximintegrated.com/en/ds/DS18B20.pdf Small Buttons x 4: It's an AU-101. Can take 12 Vdc, 50 mA, and has 4 terminals. We will use this buttons, in order to interact with the LCD or Actuators, and Sensors. Red & Black Tinned Wire x 2: We will use at least up to 2m~4m to cover all connections, with both of them. |
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