Since most DSLR cameras now have an IR communication port, [Julius] thought it would be a good idea to build an IR shutter release remote. He has released the plans for two versions; a single sided hand etched one, and a double sided one to have made professionally. He notes that it should have a range of at least 10 meters thanks to the 100mAh Li-Po battery and a reasonably high power IR LED. You can download the source code as well as the etching mask and eagle files from the wiki page. He does note that you may have to change the pattern sent to match your camera.
Hack A Webcam And A Film Camera Into A USB Microscope

Most of you probably have a webcam sitting around somewhere, and after all the high voltage projects you’ve done using disposable cameras, we bet you have some camera lenses too. You could always do what [Butch] did and combine the lens from the camera with the webcam to do some up close inspection.
This seems like something we’ve seen several times, but we can’t find it in our archive. Such a simple and quick hack looks surprisingly effective in his shots. If you want to see the details, like where he tied into the webcam’s board to power an external LED, you’ll have to download the PDF.
[DJ Sures] Digs Up Another 80s Robot Toy, Makes It Awesome

[DJ Sures] just can’t help himself from tinkering with robot toys built in the 80s. This time, he got his hands on an Omnibot-2000 (not to be confused with his other Omnibot hack), and updated it for the 21st century.
After its obligatory run through the dishwasher, the robot was fitted with two heavy duty servos in each arm – one for the shoulder and one at the elbow joint. He added another pair of servos and a head-mounted camera to the robot as well, giving it the ability to look around and navigate through his house.
While these physical modifications are nothing new to [DJ Sures], he wanted the robot’s control scheme to be different than what he has done in the past. Along with the standard autonomous/joystick/Wiimote/voice/iPhone controls that he built into his other projects, he added “visual glyph” control capabilities to the Omnibot. This means that the robot can recognize specific objects and surroundings, giving it the ability to perform context-related tasks.
He’s working on getting the robot to recognize both the refrigerator and living room, in hopes of eventually having the Omnibot to fetch him drinks from the kitchen – that’s something we can totally get behind!
Continue reading to see a pair of videos of the Omnibot-2000 in action, and be sure to visit his site if you’re interested in seeing more.
Continue reading “[DJ Sures] Digs Up Another 80s Robot Toy, Makes It Awesome”
Hand Made Carbon Fiber Violin Is A Stunning Work Of Craftsmanship

Building a violin by hand is no easy task, but constructing one out of carbon fiber is an amazing feat! Carpenter [Ken] had never made a violin before, nor built anything substantial out of carbon fiber, and he figured the best way to learn was by doing.
He spent a good bit of time measuring and drawing out his design before making fiberglass molds of the violin’s front and back plates from carved plaster plugs. The process was extremely time consuming, requiring him to make 10 different infusion-molded carbon fiber body plates before he was satisfied with the sound they produced.
With the larger parts of the violin’s body built, he started on the rib molds, which took him 5 hours apiece to set up before injecting the resin. With the body complete, [Ken] was ready to cut the f holes into the violin – a process that required a lot of time hunched over a tank of water with Dremel in hand.
As you can see in the picture above, the final result is stunning – we just wish we could give it a listen to see if it sounds as good as it looks.
Hackaday Merit Badges Now Available At Adafruit!

The folks over at Adafruit had this idea to make “merit badges” for different achievements. One of the major achievements they mentioned was having your project posted to Hackaday. They asked our approval and got it. The badges have finally come in, so we are happy to announce them. You can purchase them directly from Adafruit, along with a plethora of other badges to adorn your projects.
[Phil Torrone] had a great idea though. To celebrate this, they are going to give away 10 badges to the projects that you, our readers, choose to be the top 10. Go on, dig back through the ranks and post links in the comments. We’ll dig through them and try to compile a list. We will then try to contact those people to send them a free badge.
Scam-o-Matic Determines If You Bought Fake SD Cards

[Andrew] recently got scammed on an SD card purchase and put together a small tool that can help you determine if you’ve had the wool pulled over your eyes as well.
You see, he purchased a set of MicroSD cards, all of which had an advertised capacity of 4GiB. When he tried to use them, they all failed to write more than about 115MiB of data, so he knew something was up. He sat down with some tools that can be used to check the actual capacity of flash media, but he says they were unbelievably slow to scan the cards.
While he waited for one of the scans to complete, he decided to create a utility of his own that would do the same thing in a fraction of the time. His quick and dirty application, called “Scam-o-Matic”, writes random data to the card, double-checking the written region to ensure that data can be read back. If it finds errors your card is likely either a fake or damaged, but if not, it automatically prepares the media for use.
Obviously this sort of situation is relatively rare, but if you think that you have picked up some shady SD cards, be sure to check out [Andrew’s] Github repository.
Programming The 6502 One Nibble At A Time

[Quinn Dunki] keeps rolling with her 6502 based computer build. This time around she’s added some memory to store the programs, but needed a way to get that code into the device. Above is her solution, a bank of hex switches used to program the 8-bit command and 16-bit address for each line of machine code.
This is a continuation of her Veronica project. The last time we saw it she had hardwired the logic levels for the data bus, but that’s no fun since nothing can actually be computed. [Quinn] picked up an SRAM chip which will store the program. It’s compatible with the 6502’s memory bus, but needs a bit of extra circuitry for her to be able to hand program it with this switch bank. She used some tri-state buffers to switch between connections to the processor, and to the hex switches. This way, she disconnects the RAM from the processor using the buffers, uses the switches and push button to clock in the program, then patches the RAM back into the computer.
Seeing this process in the video after the break certainly gives you an appreciation for what an improvement the punch-card system was over this technique. Still, seeing this is a delight that we’d like to try! Continue reading “Programming The 6502 One Nibble At A Time”
