Checking The Accuracy Of Fake Watches

Since [th3badwolf] realized a wrist watch is the ultimate men’s fashion accessory, he’s been trolling around eBay looking for a nice looking, but still inexpensive wearable chronometer. The Fauxlex brand isn’t normally regarded for accurate time keeping, so he decided measure the accuracy of his off-brand watches in a really clever way.

[th3badwolf] had a camera with a built-in intervalometer lying around and figured if the camera was set to take one picture a minute, the second hand would stay still while the minute and hour hands moved. An hour-long test confirmed his theory and he pointed his cameras towards his knock-off watches.

In the resulting time-lapse video available after the break, [th3badwolf] calculated that the first and third watches lose about 24 seconds a day. He attributes this fact to the watches having the same clockworks. The second watch gains nearly three minutes a day, and he’s trying to send that one back to the supplier. We’re not sure how that will end up, but at least [th3badwolf] has two reasonably accurate watches now.

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Control MIDI With An Android Device

[Lewis] wanted to control MIDI devices with the huge touch screen that is his Android phone. After he couldn’t find a simple hardware implementation of MIDI out, he turned to an IOIO board to send MIDI notes to just about any imaginable musical hardware. It’s a clean build and fills a gap in the abilities of the Android platform.

Because of the woeful support of MIDI in Android, [Lewis] couldn’t find a good way to push MIDI notes from his phone to other devices. While there are a few high-overhead options like MIDI over wi-fi or a Bluetooth connection, there wasn’t much in the way of a straight-up hardware connection to other MIDI devices. [Lewis] got around this limitation by using an IOIO board and the right software to send MIDI notes though a DIN-5 connector.

Although the project works as intended, [Lewis]’ build could be made more permanent by building one of these MIDI interfaces and wiring that to the IOIO. All the Android code is up and available, along with a neat demo of [Lewis] controlling the delay time of an effects unit in his guitar rig. You can check that video out after the break.

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Doing It Right With A Morse Code Keyboard

Hackaday has seen dozens of Morse code keyboards over the years, but [Hudson] at NYC Resistor finally managed to give that idea the justice it deserves. He built a USB Morse code keyboard with the same type of telegraph key the pros use.

For his project, [Hudson] got his hands on a wonderful iambic paddle that is usually hooked up to CW rigs. Unlike previous Morse keyboards we’ve seen, [Hudson] used iambic paddles, a telegraph key with one lever for dits and another for dahs. Because the dits and dahs are separate electrical connections, it’s extremely easy for the microcontroller – a Teensy – to parse the Morse code and send the correct letter to the computer.

[Hudson] also added some audio feedback for the dits and dahs, and designed a laser-cut enclosure for the Teensy and speaker. Check out the video of the iambic keyer keyboard in action after the break.
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Electronic Bag Pipes Need No Bag And Use Only 1 Pipe

A lot of people might turn their noses up at an electronic version of bagpipes. But we see a definite need for them. After all, it’s pretty hard to take your bagpipes on a road trip, but this eChanter will have no trouble entertaining your fellow travelers.

The musical instrument is Arduino-based and the builder can decide between a headphone jack (use it with that FM transmitter when in the car!) or a speaker. The version seen above uses headphones with a piece of PVC pipe as the body, screw heads as touch sensors, and a project box to hold the electronics. But there are a lot of alternatives suggested, such as using automatic sprinkler parts. It sounds like a riser, connector, and pop-up sprinkler head body will do just as well hosting all of the components.

Want to hear what it sounds like? There’s an mp3 clip under the final steps section.

[audio http://www.echanter.com/marine-corps-hymn.mp3]

Backyard Ski Lift

If you own a cabin in the mountains of British Columbia what do you do during the warmer summer months? Well, we’d probably mix of a cocktail and string up a hammock, but [Darrin] is quite a bit more motivated. He planned for the snowy season by building his own ski lift. He shared the details in a forum post, but you’re going to have to register and wait for approval before you can view that thread. Perhaps you’ll want to look at the video after the break before making that kind of commitment. Normally we would just pass over projects that require a login to view, but this one deserves the attention.

The setup is essentially a very steep tow rope. 1600 feet of 1/8″ aircraft cable covers an 800 foot span of his property. Apparently he’s got a total of 1000 feet of vertical drop but the lift doesn’t cover the whole area quite yet. That 6.5 horsepower Honda engine drives the cable loop, with the pulley system seen above used as an RPM reducer. Each skier can hook onto the cable used the nylon rope with a ski-pole spacer and a hook. The RC vehicle remote control works as a dead man’s switch, starting the lift slowly when the throttle is depressed and stopping it when released.

Normally we like to link to similar projects, but so far this is the only ski lift we’ve covered. You’ll have to settle for this ski-pole mounted POV display.

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Automated Squinting Instead Of Glasses, Contacts, Or Lasik

[Lee] is nearsighted and has had it with contacts and glasses. When trying to figure out an alternative, he looked at the core of the problem. The eye is not shaped correctly and therefore cannot focus adequately. The solution is to change the shape of the lens. This is exactly what lasik (laser eye surgery) does, but instead of going under the incredibly bright knife [Lee] built some headgear that pulls on your face to reshape your eye.

The hardware is from an old portable CD player. The sled that moved the laser lens has been repurposed to pull a thread taped to the skin at the corner of his eye. He built a control system that lets him adjust the tension by moving his fingers. Basically when the skin is pulled tight it causes him to squint and possibly reshapes the cornea just a bit. We’re not sold on the idea, but we can’t poo-poo the experiment; who knows what discovery this could lead to? We’re just glad he didn’t use electrical impulses to hack his peepers.

You can find some test video embedded after the break.

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Heatless Compressed Air Dryer

The pressurized air from a standard air compressor is fine for most uses. But some applications like plasma cutting call for low-humidity air and the hardware available to facilitate this can cost a bundle. [Roland] and his cohorts at TX/RX Labs (a Houston, Texas Hackerspace) just built this air drying system.

It works using a desiccant; a substance that sequesters moister. It’s the stuff in those little packets you find in shoe boxes and the like with a warning that you shouldn’t eat it. The image above shows two chambers which house the desiccant. Only one is used at a time, so that as it’s ability to remove moisture drops, the system can switch over to the other chamber. There’s even an automatic recharging system built in that uses a portion of the dried air to remove the humidity from the unused desiccant chamber.

There’s a functional diagram at the link above. It’s resolution is low enough that the text is almost unreadable but we’ve asked [Roland] if he can repost the image. This seems like a build in which other hackerspaces will be interested.