View allAll Photos Tagged microcontrollers
Dorkboard assembly - Insert the programmed Atmega168 into the IC socket. Make sure that the notch on the IC faces the 5-pin programming header (and the notch on the socket too).
If the chip and socket are virgins, it might help to bend the pins inward slightly by gently squeezing the IC on its sides with your fingers. Be gentle, and place the chip in the socket and press firmly on the top. Make sure the chip is fully seated.
The Digilent Orbit BoosterPack is an add-on board for the Texas Instruments® Tiva™ C Series LaunchPad microcontroller evaluation kit. The Orbit greatly expands the input/output capabilities of the LaunchPad, as well as introducing Digilent Pmod expansion connectors.
store.digilentinc.com/orbit-booster-pack-i-o-add-on-board...
Tom Igoe, one of the co-creators of the Arduino board, talking to Amogha Srirangarajan, the CEO of Carbon Origins and one of the creators of the newest Arduino at Heart boards—an open source data logger they've been using to log data from their rocket launches.
Dorkboard assembly - Repeating for the long 14-pin header. Clip off a 14-pin section of male header and mount it on the bottom of the board. Insert the short pins from the bottom and solder them on the top side.
Don't be sloppy and melt the side of the side of the socket like I did! :)
Hide and go seek with a radio signal, converted to GPS signal, a VHF radio, and a couple of geeky fruit cakes driving around following a giant arrow and you have our Friday night.
Topics include history of digital art, microcontroller programming, basic electronics & sensors.
An intensive studio course, which focuses upon developing innovative processes for understanding and deploying a range of software and hardware based real-time I/O and electromechanical tools within the context of contemporary experimental art practice. The course covers real-time systems programming and basic digital/ analog electronics and looks to locate the usage of these within a wider aesthetic framework. In building a critical language with which to analyze relationships between real and virtual, static and mobile, local and remote, online and offline, students are encouraged to implement new tools, new systems and new presentational scenarios for performance, art installations, and other digital arts applications. The concentration in this class is on prepackaged but flexible tools, and rapid prototyping processes.
課程內容包括數位藝術歴史、單片微型計算機程式設計、基本感應器及電子。
此工作坊以精研的形式,透過創新學習過程重點教授一系列於當代實驗藝術廣泛使用的軟件及硬件的實時輸入/輸出及電機用具。課程將包括實時聲音程式設計、基本模似/數位電子知識及其於藝術層面上之應用。為發展對真與假;動與靜;在地與流動;在線與離線的批評思考,課程將鼓勵學員運用新的工具、程式、表現手法於行為藝術、藝術裝置及其他數位藝術應用。課程將著重於簡便但靈活的程式設計環境。
Photos from our craft room. This is a dump of photos from my phone. Many may be duplicates or similar angles.
Using over 30 batteries, 80 LEDs, 4 microcontrollers and one embedded computer, volunteers and staff in the Jocelyn H. Lee Innovation Lab prepared an attention-grabbing presentation for the 2016 Texas Library Association Poster Session. The poster presented various ways to use LEDs in maker projects, had embedded QR codes for viewers to access additional information on each topic, and was even interactive - participants could change LED colors by sending appropriate Tweets,
Thank you everyone who helped make this presentation a success.
Bogdan Marinescu and Raman Gopalan's talk on eLua at FOSDEM 2012 running from an ARM Microcontroller!
Installed in garage to run a DS1620 temperature sensor mounted outside. Connected to Howie via CAT5 wiring plant.
I have a special place in my heart for LCDs like this with backlights.
I made a Mandelbrot Set viewer with an Arduino. It does zooming and it's pretty cool.
There's a video at www.youtube.com/watch?v=ArPrnud6O7A
More details at feelslikeburning.com/projects/mandelbrot including schematics and code.
Students learn the basics of programming microcontrollers using the Inventor Kits available in the Innovation Lab.
The Cobra4 sensor unit, Conductivity/Temperature (Pt1000), is a microcontroller-based measuring recorder with a 5-pin diode socket for connecting conductance measuring sensors with a cell constant of K = 1.00/cm or Pt1000 thermocouples.
Die Cobra4 Sensor-Unit Leitfähigkeit, Temperatur (Pt1000) ist ein microcontroller gesteuerter Messaufnehmer mit fünfpoliger Diodenbuchse für den Anschluss von Leitfähigkeitssonden mit einer Zellenkonstante von k = 1,00/cm oder Pt1000 Temperatursonden.
Using over 30 batteries, 80 LEDs, 4 microcontrollers and one embedded computer, volunteers and staff in the Jocelyn H. Lee Innovation Lab prepared an attention-grabbing presentation for the 2016 Texas Library Association Poster Session. The poster presented various ways to use LEDs in maker projects, had embedded QR codes for viewers to access additional information on each topic, and was even interactive - participants could change LED colors by sending appropriate Tweets,
Thank you everyone who helped make this presentation a success.
A collection of some of the microcontroller options used during the STEMulate Learning workshops, including LEGO, BeagleBoard Black, Raspberry Pi, and several different Arduinos.
Feeling renewed confidence, I decided I'd tack down the microcontroller for the Flavonoid. I'm using an ATMega32L, a low-power ATMega32 in the Thin Quad Flat Package. I decided to try the "solder wick" soldering technique. I don't know why I decided to try something new on something I'm so heavily invested in. I lucked out. It worked like a charm. One more technique in the quiver. If nothing else happens, at least I'm learning a hellzalot.
Topics include history of digital art, microcontroller programming, basic electronics & sensors.
An intensive studio course, which focuses upon developing innovative processes for understanding and deploying a range of software and hardware based real-time I/O and electromechanical tools within the context of contemporary experimental art practice. The course covers real-time systems programming and basic digital/ analog electronics and looks to locate the usage of these within a wider aesthetic framework. In building a critical language with which to analyze relationships between real and virtual, static and mobile, local and remote, online and offline, students are encouraged to implement new tools, new systems and new presentational scenarios for performance, art installations, and other digital arts applications. The concentration in this class is on prepackaged but flexible tools, and rapid prototyping processes.
課程內容包括數位藝術歴史、單片微型計算機程式設計、基本感應器及電子。
此工作坊以精研的形式,透過創新學習過程重點教授一系列於當代實驗藝術廣泛使用的軟件及硬件的實時輸入/輸出及電機用具。課程將包括實時聲音程式設計、基本模似/數位電子知識及其於藝術層面上之應用。為發展對真與假;動與靜;在地與流動;在線與離線的批評思考,課程將鼓勵學員運用新的工具、程式、表現手法於行為藝術、藝術裝置及其他數位藝術應用。課程將著重於簡便但靈活的程式設計環境。
This is my picaxe 08m box with terminal boxs for connections, and a serial port on top. it makes it less likely for me to break something
The Digilent I/O Explorer USB is a USB peripheral device that allows programmatic access from a personal computer to various external Input/Output (I/O) devices.
The I/O Explorer provides a number of I/O devices on the board itself, as well as RC servo connectors, and Digilent Pmod connectors that allow access to devices external to the I/O Explorer.
In addition to its use as a dedicated USB peripheral device, the I/O Explorer can also be used as a microcontroller development board. It features two Atmel® AVR microcontrollers, one having USB device capability.
store.digilentinc.com/i-o-explorer-usb-based-on-avr-micro...
Turned a Rubbermaid food storage container into a case to carry my Arduino in my bag on my bicycle.
For Bread Bike Blog
The Digilent Orbit BoosterPack is an add-on board for the Texas Instruments® Tiva™ C Series LaunchPad microcontroller evaluation kit. The Orbit greatly expands the input/output capabilities of the LaunchPad, as well as introducing Digilent Pmod expansion connectors.
store.digilentinc.com/orbit-booster-pack-i-o-add-on-board...
Turned a Rubbermaid food storage container into a case to carry my Arduino in my bag on my bicycle.
For Bread Bike Blog