Build A Levitating Bed For Under $1000

Many of us have had this exact thought and wondered if it was feasible. As it turns out, you can, in fact, just buy a bunch of magnets and make a levitating bed. Those magnets need to be extremely strong, so [mememetatata] used some rather large Neodymium magnets. This frame involved some careful planning since these magnets can actually be quite dangerous if not handled properly. [mememetatata] did manage to get everything spaced correctly and now has a bed that can levitate holding up to about 250 lbs. We really want to know what it feels like. That kind of thing seems as though it would be difficult to describe.

As usual, more information might be available in the reddit thread.

[thanks poisomike87]!

[Jeri] Builds A C64 Bass Keytar

[Jeri] built this really cool C64 bass Keytar from a commodore64 and a cheap bass guitar. She’s using an FPGA to do the string detection and the key scanning, it then sends everything to the original 8bit sound chips. The reason that she is using a bass guitar is that the commodore sound chip only has 3 channels. There’s an interview with her from the maker faire, and if you keep watching, there are some other interesting projects too.

She notes that the implementation she went with has many performance issues due to the overtones the strings create when played. If she did it again, she’d go another route. Since [Jeri] has previously created the fully functional C64 games on FPGA, maybe she’ll add some video synth to this down the road.

SpaceX Finally Launches, [Scotty] Makes It To Space.

We’ve been eagerly anticipating the first launch of our new space era. Like it or not, NASA isn’t going up anymore, so someone else has to. When we posted that the launch event was going to be broadcasted live (which ultimately failed), there was a lot of debate in our comments on the subject of private vs government entities doing the space traveling. There was also a lot of childish bickering.

Just to clarify, Hackaday’s official stance is, “Go to space”. We do not care if it is the government, [Elon Musk], The russian space program, a hackerspace in a home made rocket, or an evil billionaire. We just want space research to continue. Sure, there are drawbacks to some of these, most notably that the evil billionaire would most likely be doing this to kill us all, but at least the research would be funded.

You can watch a short clip of the launch, and while you do so, remember that on board that ship are the ashes of actor [James Doohan] also known as [Scotty]. That’s pretty awesome.

Hot Glue Appendages May Be Predecessor To The Flow Metal Of The T-1000

The T-1000 was the shape-shifting robot from T2 (the second Terminator movie). It was so amazing because it could assume the form and texture of anything; humans, piercing weapons, inanimate objects. This robot doesn’t even compare, except for one small trait. When it needs a tool, it can build it as its own appendage. This really is nothing more than making tools with a 3D printer. However, the normal boxy infrastructure is missing.

The print head is mounted on a single robot arm, and the tool is printed using hot melt glue in order to stick to a plate which makes up the business end of robot arm. In this case the robot needed to transport some water. It sets down the plate, uses the hot melt extruder to print a cup on that plate, then picks it up again and uses it to move water from one bowl to the other. You can see it all in the video clip below the fold.

Sure, it’s just baby steps. But hot melt glue sticks are light weight, and don’t require much energy to melt. This makes for a perfect combination as a portable tool shop.

Continue reading “Hot Glue Appendages May Be Predecessor To The Flow Metal Of The T-1000”

Rebuilding A Fried Fan Motor

The fan motor on [Pete’s] oscillating tower fan conked out on him. It’s a shame to throw away the whole thing, but it’s near impossible to source parts for a small appliance like this one. So he set out to rebuilt the motor and get the thing working like new.

The motor in question is of the brushless AC variety. [Pete’s] gut told him that the failure was due to bad lubrication of the bearings at the factory. It stopped working because the commutator could no longer rotate freely. A check of the continuity of each of the coils led him to this thermal fuse. When the motor seized the AC current built up a lot of heat. This fuse is made to burn out before a fire can start but now it needs to be replaced. With a new one in place he reassembled the motor, making sure to pack the bearings with some quality lubricant. Now he’s once again ready for a long hot summer.

The Engineer Guy Explains How MEMS Accelerometer Chips Work

There’s a good chance that you use a MEMS accelerometer every single day. It’s the small chip that let your smart phone automatically adjust its screen orientation. They’re great chips, and since they’re mass-produced you can add them to your projects for a song (if you can abide the tiny packaging). But we have no idea of how they are made and only a inkling of how they work. [Bill Hammack] has filled that knowledge gap with this explanation of how MEMS accelerometers are made and how they function.

Our base knowledge comes from the acronym: Micro Electro-Mechanical Systems. There’s something in the chip that moves (so much for solid state electronics; and it makes us wonder if these wear out). [Bill] includes a diagram in his video after the break which shows the silicon-based system that moves as it is affected by gravity. This changes the capacitive properties of the structure, which can be measured and reported to a microcontroller for further use. The structure is built using an intricate etching process which we never want to try out at home.

Looking for a project in which to use one of these devices? We’ve always been fond of this POV device.

Continue reading “The Engineer Guy Explains How MEMS Accelerometer Chips Work”

Viper Flight Simulator (a La Battlestar Galactica) Finished

Here’s a story about some guys who set out to build a flight simulator for the Viper from Battlestar Galactica. The goal is to bring a grand project to the Maker Faire. This is a recurring challenge for the group, which has participated over the last several years. But this year they decided to go big and mounted a successful Kickstarter campaign to help with the cost.

The best place to get the build details is their progress updates page. Each week the cadre of teenagers tried to post some info about their progress, and we’ve got a big grin on our faces after reading through them. The simulator aims to provide you with as much of a space flight experience possible given the restraints which gravity imposes. The cockpit can roll and pitch a full 360 degrees in each direction. Of course safety is a concern and they were careful with their frame design and pilot restraint system. But so much more goes into this than just the physical build. There’s sound, lighting, and the virtual simulator, all of which have been complete at an impressive quality level. There’s a ton of video posted and we’ve embedded one short clip after the break showing off the cockpit’s dashboard.

Continue reading “Viper Flight Simulator (a La Battlestar Galactica) Finished”