So for this third hack we started with an online-bought robot costume, but being a creative tech people, we couldn't resist making it better by using some brilliant LED strips that react to sound.
The dense LEDs (144 per meter) were used on the helmet. More spaced apart (30 per meter) were used on the arms. All of them drive from one Teensy receiving analog signal from the microphone located in the helmet. The microphone captures both the voice of the wearer and ambient sounds.
Here's what it looks like reacting to the music:
Technical Build:
The idea was to attach two denser LED strips to the face mask guard and the rest to the arms of the costume. They both would react to ambient sound and light up depending on the frequency of sound. The helmet's strip would have the lower frequencies in the middle and the arms would have them start at the wrists.
The face mask guard took 52 LEDs per strip and arms got 25 LEDs per arm. These calculations are reflected in the code below.
For the arms, I divided each LED strip into two sections (since the costume itself had separate foam pieces for forearm and shoulder), and gave them their own battery. That allowed me to have a simple 2 pin connection for joining the arms to the helmet.
One problem when dealing with RGB Strips on wearables is that the solder pads are small and the wires break off too easily. I tried to minimize this by adhering a small wooden backing to the end of each strip. This acts like a cast and, when sealed with heat shrink, immobilizes the connections. I cut the supports on the laser cutter, but you can use anything. Popsicle sticks would work as well.
Here is the basic wiring diagram I used:
Software:
This code uses hardware support for FFT that's built into the Teensy. If you want to use a different processor, you will need to add a FFT library and modify the code accordingly.
I found some code online that was almost perfect for this project. Rather than reinventing the wheel, I reused that code, and modified it for my needs. Original credit has been left in the code.
Weeee, its Wednesday again. And that means time to stare at internet more! While in other parts of the world (or so we are told) things are growing, springing and budding, here we are, with overcast greyness and last year's stuff (grass - as a best case scenario) poking from underneath the dirty snow. So […]
Here at Solarbotics, we like to celebrate things. And today we're remembering a supernova that took place in the Ophiuchus constellation and was observed by German astronomer Johannes Kepler back in 1604. That poor star, it was taken before its time. So to commemorate the memory of that star, (aptly named SN 1604, but we […]
Yes! We are quite busy preparing to the above said Entertainment Expo, that is going to take place on April 24-27 2014. Come by our booth(s), which are # 302 and 402, we are going to have lots of new exciting demos to show off. A few preview […]
At Solarbotics, we've been getting quite a few questions regarding the "real-world" performance of our solarcells. Although we do have the official Panasonic Sunceram datasheets, it is written in a quite technical manner and does not include practical design data.
Solarbotics has been operating for more than 25 years, bringing electronics know-how and supplies to both the electronics professional and hobbyist. We'll be happy to help you too!
Solarbotics, Ltd. is not responsible for misprints or errors on product prices or information. For more information, please see our Terms and Conditions.
Warning: This product contains chemicals known to the State of California to cause cancer and birth defects or other reproductive harm. Please visit www.P65Warnings.ca.gov for more information. This item was manufactured prior to August 31, 2018.