Rubicon Gives The Makerbot Digitizer A Run For Its Money

rubicon

Look out MakerBot, there’s a new 3D scanner on the block and it’s about 10% of the cost of the Digitizer. Enter the Rubicon 3D Scanner which just hit Indiegogo, a device much closer to being worth its price $199.

Just like the pricey Makerbot Digitizer it’s a very simple design made up of a webcam, two laser lines, and a stepper motor controlled turn table. Still very easy to make yourself, but at $199, it’s not a bad price for an all-in-one kit, especially compared to the Digitizer. The newcomer claims a much faster scan time (3 minutes versus 12), and the same stepper rotation (800 steps or 0.45 degrees per step). There are no details about making the design open source, but after some digging in the RepRap forums we found some discussion on that topic from designer [Robert].

It scans objects up to 160mm in diameter and 250mm tall, however it has the ability to scan marginally larger objects if the camera is moved farther back. The funding for the Indiegogo campaign will go towards a custom arduino-esq PCB with a motor driver built in – personally we would be interested in just getting the PCB and 3D printing the rest of the scanner ourselves!

More information is found in the video after the break. Continue reading “Rubicon Gives The Makerbot Digitizer A Run For Its Money”

3D Printed Prosthetic Hand

hand

3D printing – with the promise of low-scale manufacturing and custom parts – is ideal for the prosthetic industry, but so far prosthetic hands have been a very, very hard nut to crack. [Joel] has been working on the Open Hands Project, a project that aims to make robotic prosthetics accessible to makers, researchers, and amputees alike.

Even though the mechanisms inside the hand are fairly simple – DC gear motors retracting steel cable ‘tendons’ – [Joel] was able to pack all this equipment into a very small volume that isn’t much bigger than real, meat-based hands. To actuate the mechanical muscles in the hand, the user simply flexes a few muscles in their forearm. These electrical signals are picked up by a suite of custom electronics and tell the Open Hand what to do

In [Joel]’s Indiegogo video, he goes over what makes his robohands work with a little help from [Liam Corbett], hand amputee. Aesthetically, the Open Hand is a big improvement over [Liam]’s two-pronged hook, and with the dexterity demonstrated in the video, possibly a lot more capable.

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Use Your New-timey Printer To Make An Old-timey Camera

3d-printed-pinhole-camera

Here’s something to show people who don’t realize the power of 3D printing. This pinhole camera has one moving part which reveals the pinhole, letting in light to expose the 4×5 film inside.

It’s a near perfect roundup of all the qualities a 3D printer has to offer. The build centers around a 4×5 film holder which can be acquired used or as surplus. This drives home the concept of having the power to replace parts (in this case the entire camera) that fit with existing pieces (the film holder). The picture above is big enough that you can see the layers on the pyramid shape, but the structural pieces around the frame also let the uninitiated see that you can print more than just solid blocks. And finally, since it’s up for download on Thingiverse its a good example of how the printing community shares and builds on each others’ work.

Does it take quality photos? We have no idea. So far we didn’t see any example pictures. But really, if you’re looking for top quality you might want to build your own digital camera. Here’s one that uses a 14 megapixel sensor.

3D Printering: Electronics Boards

If you’re gearing up to build a 3D printer, one of the first things you’ll need to look at is your options for electronics boards. Whether you decide to optimize for cost or capability, the choices you make during the planning stages of your build will drastically affect what the final project will look like and how it will behave.

There are a ton of electronics boards out there, so for this installation of 3D Printering, we’re going to take a look at what’s available. Hit the link below to give Hackaday more pageviews read the rest.

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Build A File Server Inside An Old External Optical Drive Enclosure

This one nearly ended up in today’s Links post, but on second look we think it deserves a feature of its own. [Profezzorn] designed some mounting brackets to house a file server inside of an external drive enclosure. Click on the instructions tab to get a bit more of the story.

The enclosure that he’s using is meant for a 5.25″ optical drive. It comes with a USB to SATA converter which is how he connects the hard drive to the Raspberry Pi serving the files. His mounting system uses the original holes in the enclosure, the threaded holes of the drive, and the holes in the RPi PCB to mount everything with just ten screws. The enclosure included a Molex power connector. He sacrificed an old connector to make a custom cable for the Pi’s power.

Add a portable power supply, do a little work with the Linux configuration, and you could easily turn this into a pirate box.

3D Printering: The Combo Machines Cometh

There’s only so many ways to squeeze hot plastic out of a nozzle, and eventually witnessing the explosion of 3D printer designs over the past few years gets just a little repetitive. What then, is someone who dreams of a technological utopia, Star Trek replicators, and making a few bucks off a Kickstarter to do?

The answer, of course, is a combo machine. Where the Repraps, Makerbots, and the very high-end Stereolithography machines can only do additive manufacturing by laying down plastic or resin layer by layer, these combo machines can also remove material, be it plastic, wood, or metals such as brass or aluminum.

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Molding Flexible Links

Flexible Links

Need a custom link that’s strong and flexible? [RobotGrrl] came up with a method of molding flexible links using 3D printed parts and Sugru.

The link consists of two 3D printed hubs, connected by a flexible material cast in a 3D printed mold. [RobotGrrl] recommends using Sugru to create the link, but you can use homemade Oogoo as a low cost substitute. Dish soap is used as a release agent, and prevents the Sugru from sticking to the mold.

The tutorial includes a detailed guide to modeling the parts in Autodesk Inventor, which serves as a quick introduction to the CAD tool. If you just want to make some links, the STL files are available for immediate 3D printing.

Why would you want DIY flexible links? [RobotGrrl]’s Baitbot is a good example. This tentacle robot uses the links as its core. Check out a video of the Baitbot wiggling and jiggling after the break.

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