The Hackaday Prize is here! We know you can’t all be here with us in Munich so we’ve set up a live stream link for everyone to follow along at home. If you tune in now, you can catch some of the talks at our open hardware event!
We’re only a few hours away until we announce the winner of The Hackaday Prize. Until then, we have a huge workshop and party to put together. It’s only noon here in Munich, and we’ve been up since the crack of dawn putting stuff together.
The doors open in a little bit, but so far we have people putting together the workshops. [Ben Gray] from Phenoptix is busy putting together a few MeArm robots for a workshop. They take one person 45 minutes to put together. There’s kinda something resembling an assembly line going on:
Hackaday Prize judge [Sprite_TM] made it out to the workshop/party. He’s working on soldering up some Teensy 3.1s for the Moog workshop. There are a ton of parts for this, everything from extremely expensive slide pots to opamps, audio caps, pressure and pulse sensors, and a vintage wah pedal that also has +5v CV expression output. Really cool.
Since we’re announcing the winner of The Hackaday Prize, there was the question of what the trophy should be. Trophies are not utilitarian in any way, so we thought we would put our own spin on this. It’s a PanaVise, emblazoned with a 3D printed plaque.
Doors open in a few minutes. More updates to follow
There are a surprising number of spectrometer projects out there on the Intertubes, but most of these setups only measure the absorption spectrum – literally what wavelengths of light are absorbed by the material being measured. A Raman spectrometer is completely different, using a laser to illuminate the sample, and measuring the scattering of light from the material. It’s work that has won a Nobel prize, and [fl@C@] built one with a 3D printer.
Bio below, along with the final video that was sent around to the judges. If you’re wondering who the winner of The Hackaday Prize is, even I don’t know. [Mike] and a few Hackaday overlords do, but the rest of us will remain in ignorance until we announce the winner at the party we’re having in Munich next Thursday.
There are astonishing things you can do with a network of sensors spread across the globe, all connected to the Internet. Thousands of people have already installed hardware to detect lightning and flightaware gives out subscriptions to their premium service to anyone who will listen in to airplane transponders and send data back to their servers. The folks behind SatNOGS, one of the five finalists for The Hackaday Prize are using this same crowdsourced data collection for something that is literally out of this world: listening to the ever-increasing number of amateur satellites orbiting the planet.
There are dozens of cubesats and other amateur satellites flying every year, and they have become an extremely popular way of experimenting in a space environment, giving some budding engineers an awesome project in school, and testing out some technologies that are just too weird for national space agencies. The problem with sending one of these birds up is getting the data back down; a satellite will pass above the horizon of a single location only a few times a day, and even then for only minutes at a time. The SatNOGS team hopes to change that by planting receivers all around the globe, connecting them to the Internet, and hopefully providing real-time telemetry from dozens of orbiting satellites.
[Pierros] from the SatNOGS team was kind enough to sit down and answer a few questions for us about his entry to The Hackaday Prize. That’s below, right after their finalist video. Some of the SatNOGS team will also be at our Munich event where we announce the winner of the Prize.
No other project to make it to The Hackaday Prize has people throwing money at their computer screen hoping something would happen than [Michael Colton]’s PortableSDR. It’s a software defined radio designed for coverage up to 30MHz. Amateur radio operators across the world are interested in this project, going so far as to call this the first Baofeng UV-5R killer. That’s extremely high praise.
[Michael] was kind enough to sit down and answer a few questions about how his entry to The Hackaday Prize has gone. You can check that out below, along with the final round video of the project. Anyone who wants their own PortableSDR could really help [Michael] out by taking this survey.
Smartphones are the most common expression of [Gene Roddneberry]’s dream of a small device packed with sensors, but so far, the suite of sensors in the latest and greatest smartphone are only used to tell Uber where to pick you up, or upload pics to an Instagram account. It’s not an ideal situation, but keep in mind the Federation of the 24th century was still transitioning to a post-scarcity economy; we still have about 400 years until angel investors, startups, and accelerators are rendered obsolete.
[Peter]’s entry, the Open Source Science Tricorder or the Arducorder Mini, is loaded down with sensors. With the right software, it’s able to tell [Peter] the health of leaves, how good the shielding is on [Peter]’s CT scanner, push all the data to the web, and provide a way to sense just about anything happening in the environment. You can check out [Peter]’s video for The Hackaday Prize finals below, and an interview after that.
It’s been a long road for each of the five finalists; but after tonight they can breathe easy. The last judging round of the 2014 Hackaday Prize begins at 11:50pm PDT.
Each finalist must finish documenting their project by that time as a cached version of each of the project pages will be sent off to our orbital judges. Joining the panel that judged the semifinal round is [Chris Anderson], CEO of 3D Robotics, founder of DIY Drones, former Editor-in-Chief of Wired, and technology visionary. These nine are charged with deciding who has built a project cool enough to go to space.
In case you’ve forgotten, the final five projects selected by our team of launch judges are:
ChipWhisperer, an embedded hardware security research device for hardware penetration testing.
Open Source Science Tricorder, a realization of science fiction technology made possible by today’s electronics hardware advances.
PortableSDR, is a compact Software Defined Radio module that was originally designed for Ham Radio operators.
ramanPi, a 3D printed Raman Spectrometer built around a Raspberry Pi.
SatNOGS, a global network of satellite ground stations.
The ultimate results of the judging will be revealed at The Hackaday Prize party we’re holding in Munich during Electronica 2014. We’re also holding an Embedded Hardware Workshop with Moog synths, robots, hacked routers, computer vision, and a name that’s official-sounding enough to convince your boss to give you the day off work. We hope to see you there!