OpenPeak’s OpenTablet 7 hands-on: Moorestown has found a friend

We’ve been hearing of OpenPeak devices for years, but the company is a little camera shy — particularly because most of their products, like the Verizon Hub and O2 Joggler, are re-branded by carriers. However, the company seems to be getting behind its recently announced OpenTablet 7 in a big way, recently announcing a partnership with AT&T for data plans in the US. Neither party will confirm exact plan pricing, but we’re getting the vibe that it will be “familiar” to folks who’ve seen iPad data pricing. The device itself is surprisingly well built — not at all one of these dime-a-tablet jobs — and the software is rather mature as well. OpenPeak claims to have “thousands of apps” for its platform that stretches across devices including phones, frames, and now a tablet, with a Linux-based platform with a Flash layer on top.

Refreshingly for the tablet space, the UI isn’t a bit laggy, and seems pretty far along, though we’re promised even more polish as this thing nears market. We didn’t check out a browser, and some elements like the touchscreen keyboard are pretty dismal, but for home automation or video conferencing (the device packs a 1080p front-facing camera and a 5 megapixel shooter around back), it seems like OpenPeak can carve a niche for itself on the market. Most of all, we’re impressed with the 1.9GHz Moorestown chip under the hood, which offers huge power savings over Atom; plenty of juice for some media rich apps, UI elements, and video; and even runs cool to the touch. An included docking station offers charging and port replication, but there’s also an HDMI plug built right into the bottom of the tablet, along with removable microSD up top. No word on when exactly this will hit the market this year, how much it’ll cost, or if it’ll be rebranded by AT&T. Check out a video hands-on after the break, and a quick note on the press shots below: apps are subject to change based on the rebadger’s own partnerships.

Continue reading OpenPeak’s OpenTablet 7 hands-on: Moorestown has found a friend

OpenPeak’s OpenTablet 7 hands-on: Moorestown has found a friend originally appeared on Engadget on Thu, 25 Mar 2010 14:48:00 EST. Please see our terms for use of feeds.

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CBS testing HTML5 iPad video out in the open, sorry Flash

Hey Dan, ever heard of a staging area to do your testing? Apparently not judging by the screenshot above. MacRumors took that “iPad – test – dan config – 3” content from the CBS.com homepage for a spin and discovered what appears to be HTML5 (not Flash) video. A bit more sleuthing reveals several “webkit” (the foundation of the iPad’s and iPhone’s mobile Safari browser) calls after peeling open the CSS. This suggests that CBS is preparing to serve up parallel HTML5 content with the launch of the notoriously Flash-less iPad — take that Hulu — becoming yet another high-profile company swayed into providing video and other content in an Apple friendly format. Then again, maybe CBS is just testing a “what if” scenario with no intention of moving this into production any time soon. US netizens can try it themselves by setting your browser to spoof the iPad’s user agent and hitting the source below (for as long as it lasts) but you’ll need the iPad SDK Simulator to view the actual HTML5 videos.

CBS testing HTML5 iPad video out in the open, sorry Flash originally appeared on Engadget on Thu, 25 Mar 2010 05:09:00 EST. Please see our terms for use of feeds.

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Sprint’s HTC Evo, the First Ever 4G Phone: Meet the New Terrific [Sprint]

It’s official: Sprint’s first WiMax/4G phone is everything we hoped it would be. The HTC Evo combines the “perfect specimen” hardware of the Touch HD2, the Sense-on-Android smoothness of the Legend, and unprecedented download speeds. It’s a beast. UPDATED: Hands on! More »

Motorola makes i1 official, melds Android and push-to-talk this summer on Sprint

Right on cue, just after the aptly-timed teaser poster, Motorola signs on just the right dotted lines to make its i1 push-to-talk Android handset official. Let’s run through the specs quickly, shall we? A 3.1-inch HVGA (320 x 480) touchscren, 5 megapixel camera with LED flash and 4x zoom, WiFi, and microSD expansion — no mention of the processor, so we’ll have to find out on our own later. The OS version is 1.5 and, while there’s oddly not a single mention in either the press release of fact sheet, given the official images and unofficial leaks, it’s definitely got Motoblur. The browser of choice is Opera Mini 5 with support for Flash 8, and if you’re worried about Mother Nature’s wrath, the i1 meets Military 810F standards for handling averse weather conditions. iDEN lovers can pick up the call sometime this summer on Sprint, with price yet to be named.

Update: Motorola’s just sent word that the i1 does not have Motoblur, despite the presence of the traditional green call / blue contacts buttons. That begs the question, then, of what exactly defines Motoblur here (is just the Happenings widget missing?), and what Android skin is on the i1 — the press images here are definitely not showing vanilla 1.5. We’re still awaiting a response to that, stay tuned.


Motorola makes i1 official, melds Android and push-to-talk this summer on Sprint originally appeared on Engadget on Mon, 22 Mar 2010 15:37:00 EST. Please see our terms for use of feeds.

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The Future of Storage [Memory Forever]

The Future of StorageIf you take the guts of a Blu-ray or DVD player, blow it up, and spread it across a work bench, it looks like this. So you might be surprised to know that you’re looking at the future of storage.

A laser beam whose wavelength is being monitored by this Soviet-looking machine is being bounced from mirror to mirror to mirror before it lands on a spinning disc the size of CD, but orange, and transparent. It’s reading the holograms that are embedded buried inside the disc, gigabytes of random test data.

This work table is deep inside the labyrinthine complex that is GE’s Global Research Lab, 550 acres of big machines and big brains, in the hinterlands of Niskayuna, New York. It’s where the company that brought us 30 Rock invents the future of energy, aviation, healthcare, and dozens of other mega-industries, including, as it turns out, data storage.

***

Hard drives, DVDs, USB sticks: This is where we store our digital lives. But while our data is timeless, our storage devices aren’t. So, what’s next? And then what?

Data storage is something most people don’t spend much time thinking about, and if we do, it’s in abstract terms. Laptops have a fixed amount of space; we pay for more, but accept less. DVDs hold a certain length of video, or a healthy chunk of a music collection; these are disposable. Flash drives move stuff from one place to another; we sense that they’re different than hard drives; but we’re not sure how.

What we know is that we need to store stuff, somewhere. And by we, I mean we: our network infrastructure won’t be ready for widespread cloud computing, or that fantasy of downloading everything you’ll ever watch in full HD, for a very, very long time, and until then—or for people with unease about that concept, even then—storage is something we need to think about.

In 2010, storage tech is in flux. Here’s how we—and the people and companies we’re slowly (but surely) handing our data over to, store stuff now, and more importantly, later.

Hard Drives Aren’t Dead

Hard drives! You almost certainly own at least one of these, in you laptop, desktop, or even portable music player. The basic principle revolves (ha!) around the reading and writing of data onto a magnetized, metallic platter, which is assembled inside a hard drive’s case alongside a head, which is roughly analogous to the needle on a record player, except instead reading variations in a physical groove, this head floats above the platter, reading little tiny magnetic variations from a short distance.

If the immediate evocation of a record player didn’t tip you off, this technology has a long legacy (read: It’s old as hell): The first machine to utilize the concept was built in 1956; the first modern-looking, reasonably small hard drive (at 5MB, no less!) shipped in 1980, from Seagate.

The Future of Storage
The story since then has been surprisingly uncomplicated, with steady advances in data storage density, decreases in size and a drastic drops in price. The first 1GB hard drive, built in 1980, weighed over 500 pounds. Today, a 2 terabyte—that’s 2,000 times more capacious—hard drive is small enough to tuck into a loose jeans pocket, and can be had for under $140.

But surely this technology is reaching a breaking point, right? Not quite. With storage density approaching practical maximum’s, hard drive manufacturers resurrected an old theory somewhere around 2005: Perpendicular storage. Seagate senior vice president, Recording Media R & D and Operations Mark E. Re:

We use to use a recording method called longitudinal recording, which is called that because the magnetization and the storage layer on the disk or platter is a plane. It’s parallel to the surface. And when we moved to perpendicular [storage], we change the magnetization layer on the disk so now it aligns perpendicular to the surface

Why?

When you’re trying to get your bits closer and closer together with longitudinal storage, the magnetization didn’t want to say there. It wanted to spring apart, like if you’re putting two bar magnets together. But if align them perpendicular…they want to be closer together.

Translation: More data, less surface space.

Seagate saw longitudinal recording limiting their hard drives to somewhere around 100 gigabits (12.5 gigabytes) per square inch, and at the rate things were going, without perpendicular storage, hard drive makers would be up against a wall.

With perpendicular recording, though, they think they can eventually hit somewhere around 1 terabit (about 128 gigabytes) per square inch. Today, in 2010, they’re maxing out at about 400 gigabits per square inch in stuff you can buy off the shelf. There are quite a few years left of regular hard drives getting larger, faster and cheaper before the technology runs its course, and that’s not even counting the wilder hard drive research that’s going on. Heat assisted magnetic recording uses localized heating of disc surfaces, for ultra-dense data writing. Bit pattern media could reduce the space needed for a bit on a hard drive’s surface from 50 to 1 magnetic grains, by encoding the platter’s substrate with molecular patterns.

Seagate’s hazy prediction for what this actually means for hard drives: Upwards of 50 terabits (6.25 terabytes) per square inch, which companies be working towards, and making money from, for years. Hard drives aren’t going anywhere—at least, not for now.

The Inevitable Rise of SSDs

So what about SSDs, or solid-state drives? They’re by far the buzziest of the storage options, and we’re constantly told that solid-state drives will replace hard drives, like, now. That’s not quite right. Solid-state drives, which have no moving parts and store data with electrical charge rather than magnetism, are taking over—just, not everything.
The Future of Storage
The basics, from our last Giz Explains on the subject:

What’s inside is a bunch of flash memory chips and a controller running the show. There are no moving parts, so an SSD doesn’t need to start spinning, doesn’t need to physically hunt data scattered across the drive and doesn’t make a whirrrrr. The result is that it’s crazy faster than a regular hard drive in nearly every way, so you have insanely quick boot times (an old video, but it stands), application launches, random writes and almost every other measure of drive performance (writing large files excepted).

So, they’re fast. They don’t catastrophically fail (though they do slowly degrade). They’re perfect for laptops! And you probably want one.

But the future of SSDs is a fairly narrow one, at least for now: Consumer applications range from notebooks to desktops to NAS storage, but they’re all just that: consumer solutions. While we’re going to have to wait a few more years for Flash storage to reach a truly reasonable price point for our new gaming PCs and notebooks, the enterprise world—where data needs are rapidly outpacing ours, and the scale of storage is so much larger—will have to wait much longer.

The fastest area of growth for solid-state storage isn’t even in HDD-like SSDs anyway—it’s in portable devices, like smartphones (and soon, tablets). This storage is of a different nature, though: speed isn’t terribly important in a mobile device, nor is capacity. People are going to be fine with their iPad’s low-mid-range chips of flash storage, because they’ll run apps, play movies and store magazines just fine. Meanwhile, Google will continue to buy hundreds of thousands of massive hard drives to keep up with demand, and the rest of us will gleefully shell out for the rapidly cheapening solid-state drives that will power our laptops. This will continue in parallel, for as far as the eye can see.

But what will the SSDs of the future be like? Research now is focused on eliminating their comparative weaknesses more than anything else. They’ll become more buyable, I guess? Cheaper? Longer-lived? (Current flash storage of the more affordable multi-level cell variety can only be written to about 10,000 before failure.) Yes, all of that. General Manager of SanDisk’s SSD group, Doron Myersdorf, from our SSD Giz Explains: “More granular algorithms with caching and prediction means there’s less unnecessary erasing and writing.” In simpler terms, companies are getting smarter about writing data to SSDs, with their limited lifespan in mind. And on the storage capacity/price issue:

There have been several walls in history of the [flash] industry—there was transition to MLC, then three bits per cell, then four—every time there is some physical wall, that physics doesn’t allow you to pass, there is always a new shift of paradigm as to how we make the next step on the performance curve.

SSDs as we know them today are still a young, and they’ve got a long way to go. And before the technology can completely take over the consumer space, we’re going to see more and more awkward hybrid products, like Samsung’s MH80 drive, which uses a small bank of flash memory for some tasks, and spins up the hard drive only when necessary. Progress!

Your next computer probably won’t have one. But the one after that? Sure. Meanwhile, cheap flash storage, like the stuff inside your crappy USB key, will only get cheaper. And when 64GB thumb drives are commonplace and cheap, you’ll probably stop caring about optical media, like Blu-ray discs, for file storage and sharing. Or not.

Our Holographic Future

Optical media isn’t going anywhere, either. Put another way, Blu-ray isn’t going to be the last disc you buy—it’s just the last one where data will be stored only on the surface. Holographic storage, like GE is working on, and which we got to see up close at their Global Research labs, stores data down inside in many, many layers (GE’s demoed up to 75), encoding the data using thousands and thousands of tiny holograms throughout the entire disc. The secret sauce is the material the disc is made out of, and how it reacts to light. On a broader level, where GE’s holographic storage differs from the other major approach to holographic storage (called page-based), and what allows it to reach densities of 1TB per disc, is that it uses even tinier micro holograms that store less data per individual hologram, but more in aggregate.

While GE is mostly pitching the tech to archivists for now—like our friends at the Library of Congress, who wanna hold onto stuff for a real long time—since the discs, GE says, last for 30 years, what makes it viable as a storage tech you might get your hands on soon after it launches in 2012 is that it’s designed to fit in with the current optical media infrastructure, meaning it’ll be cheaper and easier to roll out than some radically different tech. That is, the discs are the same physical size and shape as CDs and DVDs, and they use a laser that’s very similar to Blu-ray’s, even using the same wavelength. On a hardware level, it just uses a slightly different optical element, but the rest basically comes down to software/firmware, meaning you might still be able to play your Blu-ray discs in a holographic storage drive. (This exploded view of a disc being read, that orange spinning thing, is what all readers look like in a laboratory, even Blu-ray drives—because it’s easier to tweak settings than in their actual product form.)

Sci-Fi

After SSDs and hard drives are reduced to hilarious relics, mentioned only to shock classrooms full of children to attention with a jolt of pure absurdity (“so you’re saying the spun? In circles?), how will we store data? A few of the nuttier possibilities:

Carbon Nanoballs:

Interest is growing in the use of metallofullerenes – carbon “cages” with embedded metallic compounds – as materials for miniature data storage devices. Researchers at Empa have discovered that metallofullerenes are capable of forming ordered supramolecular structures with different orientations. By specifically manipulating these orientations it might be possible to store and subsequently read out information.

Two of pop-science’s favorite buzz words, united.

Molecular memory:

What if, instead of carving transistors and other microelectronic devices out of chunks of silicon, you used organic molecules? Even large molecules are only a few nanometers in size; an integrated circuit using molecules could contain trillions of electronic devices-making possible tiny supercomputers or memories with a million times the storage density of today’s semiconductor chips.

A thumb drive larger than your entire NAS would actually have to be made arbitrarily larger, just so you wouldn’t lose it.

Bacteria:

Trust your data with tiny bugs: Artificial DNA with encoded information can be added to the genome of common bacteria, thus preserving the data….

According to researchers, up to 100 bits of data can be attached to each organism. Scientists successfully encoded and attached the phrase “e=mc2 1905” to the DNA of bacillus subtilis, a common soil bacteria.

Your storage drive could literally be alive, one day.

Quantum mechanics: Data encoded on an unfathomable scale:

In a quantum computer, a single bit of information is encoded into a property of a quantum mechanical system-the spin of an electron, for example. In most arrangements that rely on Nitrogen atoms in diamond to store data, reading the information also resets the qubit, which means there is only one opportunity to measure the state of the qubit.

Granted, research into this now is focused on storing tiny amounts of data for a matter of seconds, which is just long enough to allow a quantum computer to barely function, but still: potential!

Data: It’s everywhere. And one day, we’ll be able to take advantage of that.

[Bacteria pic via]

Still something you wanna know? Send questions about platters, disks, bits, bops, beeps or boops here, with “Giz Explains” in the subject line.

Memory [Forever] is our week-long consideration of what it really means when our memories, encoded in bits, flow in a million directions, and might truly live forever.

Marvell pitches $99 Moby Tablet as textbook alternative

When chipmaker Marvell told us its technology would power $99 smartphones, we took the company at its word. We weren’t expecting a sub-$100, 10-inch tablet PC, however — and we definitely weren’t expecting Marvell itself to build it. Marketed at students looking to lighten their textbook load, the Marvell Moby will be an “always-on, high performance multimedia tablet” capable of full Flash support and 1080p HD playback — thanks to those nifty Armada 600 series processors — and supporting WiFi, Bluetooth, FM radio, GPS and both Android and Windows Mobile platforms for maximum flexibility. No release date has yet been announced; like the OLPC, Marvell will introduce the Moby in pilot programs at participating at-risk schools. While it’s far too early to say if the Moby will be the universal educational e-reader Marvell hopes (that depends on software), it’s certainly an intriguing device for the price, and we’ll admit we’re a touch jealous of those kids who’ll first get to try one.

Marvell pitches $99 Moby Tablet as textbook alternative originally appeared on Engadget on Fri, 19 Mar 2010 02:20:00 EST. Please see our terms for use of feeds.

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NPR and WSJ building ‘Flash-free’ pages for iPad, Apple quietly delays select iPad accessories

For awhile, we couldn’t decide what we were more angry at: the fact that select devices wouldn’t support Flash, or that Flash was simply too demanding on select devices. We still can’t say with any degree of certainty which side of the fence we’re on, but there’s no question that Apple’s refusal to play nice with Adobe on the iPhone, iPod touch and forthcoming iPad limits the abilities of those devices significantly. Curiously enough, it seems that Apple’s importance in the mobile (and media delivery) realm is coercing select portals to develop Flash-free websites for those who drop by on an iDevice. Both the National Public Radio and the Wall Street Journal are furiously working on iPad-friendly websites, which will be devoid of Flash for at least the first few pages down. What’s interesting is that we get the impression that this will soon become the rule rather than the exception, and it could be exactly what’s needed to launch HTML5 into stardom and put these Flash or no Flash debates behind us.

In related news, we’re also seeing that a couple of iPad accessories won’t actually be ready to ship when the device itself cuts loose on April 3rd. Yesterday, the iPad Keyboard Dock was listed with a “May” ship date, though today it has moved up to a marginally more palatable “Late April.” The iPad 10W USB Power Adapter also carries a “May” date, while the iPad Case is slated for “Mid April” and that elusive camera connection kit is still nowhere to be found. But hey, at least you’ll get your (overpriced) iPad Dock Connector to VGA Adapter and iPad dock by the first weekend of next month, right?

NPR and WSJ building ‘Flash-free’ pages for iPad, Apple quietly delays select iPad accessories originally appeared on Engadget on Thu, 18 Mar 2010 14:02:00 EST. Please see our terms for use of feeds.

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PocketWizard Tests Prototype Nikon Triggers

PocketWizard, the off-camera flash-triggering company, has finally begun testing prototypes of its Nikon FlexTT5 units.

Normally, Nikon cameras communicate with the strobes via bursts of light, coded flashes which chatter back and forth in the moments before the photo is taken. The problem is that the range is limited, and you need line of site. That’s where PocketWizard comes in. The FlexTT5 sends these signals via long-range, corner-proof radio waves. Previously, these were manual only, and after some teething problems, PocketWizard successfully added an auto mode to it’s radio-powered flash Canon triggers.

The new prototypes, seen in the video above, are still far from production, but Nikon-shooting flash-freaks should be getting excited already. The Nikon CLS system is pretty close to magic already, letting you get great flash-shots with little effort. These new PocketWizards should make the experience even better.

If you just can’t wait, try to track down some RadioPoppers, a rival product which already works with Canon and Nikon and is cheaper: The PocketWizards are around $220 each, and you’ll need two. The RadioPoppers are $180 each for the TTL versions. The problem is that the RadioPoppers are selling so well it’s hard to get ahold of one.

Video: PocketWizard + Nikon – first look [Snap Factory]

First FlexTT5 Nikon Prototype Test [PocketWizard via Photography Bay]

RadioPopper page [RadioPopper]

See Also:


HTML5 vs. Flash comparison finds a few surprises, settles few debates

Think we’d all be better off if HTML5 could somehow instantly replace Flash overnight? Not necessarily, according to a set of comparisons from Jan Ozer of the Streaming Learning Center website, which found that while HTML5 did come out ahead in many respects, it wasn’t exactly a clear winner. The tests weren’t completely scientific, but they did find that HTML5 clearly performed better than Flash 10 or 10.1 in Safari on a Mac, although the differences were less clear cut in Google Chrome or Firefox. On the other hand, Flash more than held its own on Windows, and Flash Player 10.1 was actually 58% more efficient than HTML5 in Google Chrome on the Windows system tested. As you may have deduced, one of the big factors accounting for that discrepancy is that Flash is able to take advantage of GPU hardware acceleration in Windows, while Adobe is effectively cut out of the loop on Mac — something it has complained about quite publicly. According to Ozer, the differences between HTML5 and Flash playback on a Mac could be virtually eliminated if Flash could make use of GPU acceleration. Hit up the link below for all the numbers.

Update: Mike Chambers has performed some additional tests that he says shows that “does not perform consistently worse on Mac than on Windows.” Check out the complete results here.

HTML5 vs. Flash comparison finds a few surprises, settles few debates originally appeared on Engadget on Wed, 10 Mar 2010 23:36:00 EST. Please see our terms for use of feeds.

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HP Slate makes an appearance to show off Flash, stays for a rock concert

It shouldn’t be any surprise that the HP Slate supports Flash, since it runs Windows 7, but we’ve seen so little of the device since Steve Ballmer first waved it around at CES that we’re still totally intrigued by this video from Adobe showing it in action. Yep, there it is, playing video, running casual Flash games, and using AIR applications. We also get a quick shot of the on-screen keyboard, which looks like a mildly tweaked version of the standard Windows 7 keyboard. We can’t say until we use it, but it certainly doesn’t look like it’ll be fun to type on. Interestingly, Flash is said to be hardware-accelerated on the Slate, which suggests something other than a bone-stock Atom setup in there — we’d guess it’s an Atom plus a Broadcom Crystal HD Accelerator, but there’s a chance it’s something else entirely. HP’s also posted up a new marketing video, which bears a striking resemblance to last night’s iPad commercial — until the end, which frankly makes no sense. Check ’em both after the break.

[Thanks, Rick]

Continue reading HP Slate makes an appearance to show off Flash, stays for a rock concert

HP Slate makes an appearance to show off Flash, stays for a rock concert originally appeared on Engadget on Mon, 08 Mar 2010 13:18:00 EST. Please see our terms for use of feeds.

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