Just a few weeks after Cody Wilson and friends successfully fired an instance of their own 3-D printed handgun design, Sparrowvsrevolution writes, “a couple of Wisconsin hobbyist gunsmiths have already managed to adapt Defense Distributed’s so-called Liberator firearm and print it on a $1,725 Lulzbot 3D printer, a consumer grade machine that’s far cheaper than the industrial quality Stratasys machine Defense Distributed used. They then proceeded to record their cheaper gun (dubbed the ‘Lulz Liberator’) firing nine .380 rounds without any signs of cracking or melting. Eight of the rounds were fired from a single plastic barrel. (Defense Distributed only fired one through its prototype.) In total, the Lulz Liberator’s materials cost around $25 and were printed over just 48 hours.”
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Like many folks, I received a shiny new Nexus 7 tablet for Christmas. This
brought me great joy and excitement as I began to plot my future
paperless life. For most of the evening and an hour or so the next day,
I was sure the new Android tablet would change my life forever. Sadly,
it wasn’t that easy. more>>
o2binbuzios writes “Due to an office move, I have a chance to do a clean-sheet design for an integration room at a fairly large VAR ($100M+ ). I’m looking for some ideas or best practice to support 100-120 square meters (~50 x 30 ft). I’m particularly interested in ideas around efficient workflow, ways to manage cabling and electrical, and ‘environmental’ solutions that make it a pleasant place to work. There will be a central bench with 6-8 stations (3-4 per side) with engineers and techs who may be configuring stacks of up to 10 devices at a time that could range from servers, to network elements, to SAN & NAS devices and more. I’ve been looking for a paper that seems like it must exist — but I’m happy to gather good ideas one at a time or in bunches here on Slashdot.”
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First time accepted submitter thejezus writes “A spy cabinet has been exposed on a public road in The Hague, the Netherlands (Google translate here). The cabinet was disguised as telecom-cabinet and was detected by the maintenance crew of Ziggo (a triple-play provider) because it was not listed as a property of the company. Upon opening, it was revealed the cabinet contained a camera and UMTS equipment. Later that day, the cabinet disappeared. 1984 much?”
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lkcl writes “Rhombus Tech and QiMod have working samples of the first EOMA-68 CPU Card, featuring 1GByte of RAM, an A10 processor and stand-alone (USB-OTG-powered with HDMI output) operation. Upgrades will include the new Dual-Core ARM Cortex A7, the pin-compatible A20. This is the first CPU Card in the EOMA-68 range: there are others in the pipeline (A31, iMX6, jz4760 and a recent discovery of the Realtek RTD1186 is also being investigated). The first product in the EOMA-68 family, also nearing a critical phase in its development, will be the KDE Flying Squirrel, a 7-in, user-upgradeable tablet featuring the KDE Plasma Active operating system. Laptops, desktops, game consoles, user-upgradeable LCD monitors and other products are to follow. And every CPU that goes into the products will be pre-vetted for full GPL compliance, with software releases even before the product goes out the door. That’s what we’ve promised to do: to provide Free Software developers with the opportunity to be involved with mass-volume product development every step of the way. We’re also on the look-out for an FSF-Endorseable processor which also meets mass-volume criteria, which is proving… challenging.”
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concealment sends this quote from the NY Times: “Today’s chips are made on large wafers that hold hundreds of fingernail-sized dies, each with the same electronic circuit. The wafers are cut into individual dies and packaged separately, only to be reassembled on printed circuit boards, which may each hold dozens or hundreds of chips. PARC researchers have a very different model in mind. … they have designed a laser-printer-like machine that will precisely place tens or even hundreds of thousands of chiplets, each no larger than a grain of sand, on a surface in exactly the right location and in the right orientation. The chiplets can be both microprocessors and computer memory as well as the other circuits needed to create complete computers. They can also be analog devices known as microelectromechanical systems, or MEMS, that perform tasks like sensing heat, pressure or motion. The new manufacturing system the PARC researchers envision could be used to build custom computers one at a time, or as part of a 3-D printing system that makes smart objects with computing woven right into them.”
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Lucas123 writes “Both Viking and Micron plan to ship cards that combine DRAM and NAND flash on a standard DDR3 DIMM. The cards will have twice as much NAND flash as volatile memory. For example, the non-volatile DIMMs will come in capacities ranging from 4GB of DRAM to 16GB and 8GB of flash to 32GB of flash. Micron also sees its NVDIMM card being used as a storage tier, as cache for RAID systems, system check pointing, full system persistence, data logging, de-duplication and fast access to metadata. Without providing specifics, Viking said the NVDIMM cards will cost roughly a few hundred dollars each, more than a standard DDR3 DIMM module but still inexpensive enough for server and storage admins to consider for boosting application performance.”
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Lucas123 writes “The three largest memory makers announced the final specifications for three-dimensional DRAM, which is aimed at increasing performance for networking and high performance computing markets. Micron, Samsung and Hynix are leading the technology development efforts backed by the Hybrid Memory Cube Consortium (HMC). The Hybrid Memory Cube will stack multiple volatile memory dies on top of a DRAM controller. The result is a DRAM chip that has an aggregate bandwidth of 160GB/s, 15 times more throughput as standard DRAMs, while also reducing power by 70%. ‘Basically, the beauty of it is that it gets rid of all the issues that were keeping DDR3 and DDR4 from going as fast as they could,’ said Jim Handy, director of research firm Objective Analysis. The first versions of the Hybrid Memory Cube, due out in the second half of 2013, will deliver 2GB and 4GB of memory.”
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ZvxrPuvab jevgrf “Erfrnepuref ng Treznal’f Qbccryobpx Havirefvgl whfg bcrarq gur qbbe gb gur shgher bs encvq cebgbglcvat grpuabybtl ol qrirybcvat gur jbeyq’f svefg 3Q-cevagrq 3Q cevagre. Qhoorq gur Rpbcuntr, gur qhcyvpvgbhf qrivpr vf pncnoyr bs hfvat ernqvyl ninvynoyr zngrevnyf gb perngr pbcvrf bs vgfrys nyorvg ng n fyvtugyl fznyyre fpnyr. Orfg bs nyy, vg’f bhgsvggrq jvgu n ohvyg-va zngrevny er-cebprffbe gung pna pbaireg iveghnyyl nal pneoba-onfrq fhofgnapr vagb svynzrag sbe 3q-cevagvat.” Read below for your FREE logged-in-user’s-eye view of the unencrypted version!
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Julie188 writes “This should make VMware nervous. PayPal and eBay are yanking VMware software from some 80,000 servers and replacing it with OpenStack. Initially, PayPal is replacing VMware on about 10,000 computer servers. Those servers will go live this summer.”
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Slashdot editor Tim Lord was wandering around SXSW and ran into a small display for Lynx Laboratories, a startup that makes this claim about its Lynx A camera: “If you can use a point-and-shoot Nikon, you’ll find the Lynx even easier to use. Instead of outputing 2D images, it produces 3D models of whatever you point it at. It’s faster and cheaper than existing solutions today.” There’s a two-minute demo at the end of the video in which Lynx Founder and CEO Chris Slaughter shows how it works, and (at least in his hands) it looks extremely easy. The company is a University of Texas spinoff that “has received prestigious awards including the 1st Place Idea2Product (I2P) Texas, 1st Place I2P Global, Top 10 Dell Innovators and National Science Foundation Small Business Innovation Research Funding.” Naturally, they’re hoping to raise money through Kickstarter as well. They’re looking for $50,000 and as of 13 March 2013 it looks like they’ve raised $88,548 of it. There are obviously other ways to make 3-D images and models. But Lynx seems to have made a novel device, and the images it makes can be picked up directly by a number of 3D printer software packages. The Lynx-A also does motion capture, which could really speed up rotoscoping and other techniques that make video games and other animations look more lifelike than pure animation. That’s totally different from static 3D modeling but might be more interesting to more people, at least in a commercial sense.
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New submitter jackdotwa writes “Machines in our computer lab are periodically retired, and we have decided to recycle them and put them to work on combinatorial problems. I’ve spent some time trawling the web (this Beowulf cluster link proved very instructive) but have a few reservations regarding the basic design and air-flow. Our goal is to do this cheaply but also to do it in a space-conserving fashion. We have 14 E8000 Core2 Duo machines that we wish to remove from their cases and place side-by-side, along with their power supply units, on rackmount trays within a 42U (19″, 1000mm deep) cabinet.” Read on for more details on the project, including some helpful pictures and specific questions.
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SXSW Create is one of a handful of sub-shows at SXSW which don’t require an expensive badge — it’s maker-oriented and small, and a few blocks from the slicker parts of the convention. (The local ATX Hackerspace was there showing off robots and giving out soldering lessons and blinkies, without a single corporate pitch.) Under the same tent, I met with Jeff McAlvay, creator of Board Forge, which Jeff hopes will make small-run circuit board creation as easy and accessible as small-scale 3-D printing has become in the last few years. (“Think MakerBot for electronics.”) The prototype hardware McAlvay had on hand looks — in fact, is a 3-D printer, albeit one lower-slung than the ones that make plastic doo-dads. That’s because the Board Forge’s specialized task of assembling circuit boards requires only limited vertical movement. It’s using the open-source OpenCV computer vision software and a tiny camera mounted on a movable head to accomplish the specialized task of selecting and placing components onto the boards. The tiny electronic components are lined up in strips on one side of the device, where that smart head can grab them for placement. The brains of the operation include an Arduino-family processor for basic controls, and a Raspberry Pi for the higher-level functions like computer vision. The projected cost for one of these machines — about $2000 — should put instant-gratification machine-aided circuit creation in reach of schools and serious hobbyists, but there’s plenty of work before it’s set for sale to the public; look for a Kickstarter project in the next few months.
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