TI’s OMAP4 prototype drives three independent displays without breaking a sweat

It’s been a long, long while since we’ve seen any life from the OMAP4 labs at Texas Instruments, but with the sudden resurgence of the tablet, now seems just about right for the company to start showcasing the platform’s prowess once more. TI is expected to have a mind-bending showcase at Mobile World Congress later this month, but Slashgear was able to get a sneak peek at what’s to come at the outfit’s Dallas office. The device you’re peering at above definitely piqued our interest, as it’s some sort of twin-screened handheld that can actually support a third independent display courtesy of an integrated pico projector module. We’re told that OMAP4 will bring along dual 1GHz ARM A9 cores, patently ridiculous battery life figures (145 hours of MP3 playback with a 1,000mAh battery) and support for 1080p output via HDMI. Naturally, TI has no intention of ever bringing this piece of hardware to market, but it’d certainly love if some other firm stepped in and did so. Here’s hoping we’re overrun by potential suitors in Barcelona — given that the show kicks off on Valentine’s Day, we’d say the timing would be just about perfect.

TI’s OMAP4 prototype drives three independent displays without breaking a sweat originally appeared on Engadget on Tue, 02 Feb 2010 17:43:00 EST. Please see our terms for use of feeds.

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Nokia, Nintendo, Netflix and E-Ink respond to the iPad

We’re sure just about every company on the map has an opinion on Apple’s new device, but a few big wigs have taken time out of their busy schedules to weigh in on the device. These are their stories.

  • Nokia’s Mark Squires, Head of Social Media, was mainly confused by Apple’s statement that it’s the biggest mobile device manufacturer, surpassing Nokia in combined revenue on media players, phones and laptops. Mark argues that the accepted definition for “mobile devices” excludes laptops, and goes on to mention the undisputed fact that Nokia’s still number one when it comes to number of devices sold.
  • Netflix CEO Reed Hastings, meanwhile, says that mobile devices aren’t a priority for his company yet. They’re fighting the good fight of the large screen, and once they feel comfortable in their various efforts there, then they’ll move on to small screens. Netflix hasn’t done or submitted an iPhone application, but Hastings did mention that he was optimistic that if Netflix did get into the game, the app would be approved for the App Store, and that it would run on both the iPhone and iPad.
  • Satura Iwata, president and CEO of Nintendo, took a much more directly critical approach to the device, calling it a “bigger iPod Touch,” and that Apple delivered “no surprises.” In the same interview he expressed skepticism as to the value of bringing a high definition Wii on the market, as well as expressing doubts about 3D glasses-based gaming. Iwata is clearly a tough man to please.
  • Perhaps most threatened by the iPad is Russ Wilcox, CEO of E-Ink. He says dedicated e-readers will outsell iPads due to “simple economics,” and that the iPad is “great entertainment device,” but it’s “not the world’s best reading device.” His criticisms, mostly in juxtaposition to Kindle-style devices, abound, including price, weight, backlight and so on. He’s right on the money about the shortfalls of a straightforward comparison, but we wonder if consumers will feel the same?

Nothing too salacious, unfortunately, and most of the points raised are pretty spot-on — though we do wish Reed Hastings would rethink his priorities just a smidgen and get Netflix onto mobile devices sooner than later. We’re needy like that.

Nokia, Nintendo, Netflix and E-Ink respond to the iPad originally appeared on Engadget on Sat, 30 Jan 2010 20:34:00 EST. Please see our terms for use of feeds.

Permalink   |  sourceATD (Netflix), Forbes (E-Ink), Nokia, AP (Nintendo)  | Email this | Comments

Delta Electronics to ship 13.1-inch color e-readers by Q2 2010

It’s a funny thing, really. We wait years upon years for color e-ink to become a reality, and todayof all days — we finally hear that a sizable one is coming to market in just a few months. Reportedly, Taiwan’s own Delta Electronics is hoping to ship a 13.1-inch color e-reader (along with an 8.1-inch monochrome version) by the middle of this year, both of which will rely on e-paper technology from Bridgestone. If you’ll recall, we got an early glimpse of this stuff right around this time last year, but it wasn’t until today that we heard any followup whatsoever. There’s no mention of expected pricing and the like, but we’re told that the refresh rate is well faster than the black-and-white solutions out there today. Frankly, this thing better check email, play back video and wash our laundry as well — the reign of the standalone e-reader is just about over.

Delta Electronics to ship 13.1-inch color e-readers by Q2 2010 originally appeared on Engadget on Wed, 27 Jan 2010 10:14:00 EST. Please see our terms for use of feeds.

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Boeye’s OEM E900 reader is the Kindle DX’s cheaper twin

Ever wondered what an exact replica of the Kindle DX would look like? Well, if you were thinking that it would look like an exact replica of the Kindle DX, you’re a winner. You’re currently checking out the Boeye E900, a 9.7-inch reader hailing from Guangdong, China. Besides the obvious lack of branding here, we’re hard-pressed to spot another difference — though we do only have the one photo. Both sport WiFi, Bluetooth, and text-to-speech, plus apparently the exact same internals as the DX, including an 825 x 1200 resolution, 3G, 128MB built-in flash memory, and a microSD card slot. We’ll tell you this — the price, at around $311, is way cheaper than Amazon’s actual reader. That is however, seemingly a wholesale price as the minimum order accepted is apparently 100 pieces. Anybody need 99 fake Kindles?

Boeye’s OEM E900 reader is the Kindle DX’s cheaper twin originally appeared on Engadget on Fri, 15 Jan 2010 11:32:00 EST. Please see our terms for use of feeds.

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LG Display’s 19-inch E Ink display plays loose with the truth

Well doesn’t that look impressive? A big ‘ol 19-inch electronic ink display that appears to emulate your father’s newspaper. No doubt, this massive Metal-Foil e-paper prototype from LG Display is impressive at this size (just 0.3-mm thin and 250×400mm — about the same size as a 297×420-mm sheet of A3) and weight (130 grams). Hell, we were already impressed with the flexible 11.5-inch panel from LG Display found in the Skiff Reader. However, like the rigid Skiff Reader, a flexible panel doesn’t mean that we’ll be seeing a flexible e-reader. In fact, chances are we won’t after the manufacturer gets through adding a touchscreen overlay, application processor, and radio chipset. Let’s hope for a surprise though, whenever these panels do make it out for mass production… assuming anyone still cares about monochrome E Ink displays by then.

LG Display’s 19-inch E Ink display plays loose with the truth originally appeared on Engadget on Fri, 15 Jan 2010 08:14:00 EST. Please see our terms for use of feeds.

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Teclast enters the e-book fold with the K3 Talking Portable Library

Judging by the snowballing number of e-readers we’ve seen over the last year or so (culminating at CES 2010, as you are no doubt well aware) either people really, really, really love these things, or OEMs are going for the lowest hanging fruit. And what do we have here from Teclast? The company, known ’round these parts for its portable media players, has entered the game with the K3. In addition from the usual array of supported document formats this bad boy rocks a 6-inch E Ink display, an MP3 / MP4 player and — hold on to your caps! — text-to-speech either in English or Chinese. The term the company is using to market this bad boy is “Talking Portable Library,” but since most TTS devices usually make HAL sound like James Earl Jones we’re going to suggest that anyone truly interested in this technology stick with the Kindle. Besides, Tom misses you! You two haven’t talked in a long time.

Teclast enters the e-book fold with the K3 Talking Portable Library originally appeared on Engadget on Wed, 13 Jan 2010 14:23:00 EST. Please see our terms for use of feeds.

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Samsung announces E6 and E10 e-book readers at CES

We’re here in the middle of Samsung’s CES press conference, and the company’s just revealed its first e-book reader. We don’t have many details yet — we know there will be a 10- and 6-inch model, both with touchscreens, that Google is the content partner, and that it’s got a soft QWERTY keyboard and wireless but no 3G (a bit of a downer). The two readers — dubbed the E6 and E101 — will feature on-screen handwriting capabilities, Bluetooth 2.0, and 802.11b/g WiFi. The 6-incher will clock in at $399, while the bigger version will sell for $699, and both will be available in “early 2010.”

Update: We just nabbed a quick hands-on. It’s pretty thin, and it’s hiding a secret: it’s a slider with hidden controls! The touch sensitivity seemed pretty okay, but we’ll have to spend some non-rushed time with it to get a true feel for things. Check out more in the gallery, and see the full press release after the break.

Continue reading Samsung announces E6 and E10 e-book readers at CES

Samsung announces E6 and E10 e-book readers at CES originally appeared on Engadget on Wed, 06 Jan 2010 17:46:00 EST. Please see our terms for use of feeds.

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Skiff Reader: The Largest Yet Thinnest eBook Reader to Date

It’s bigger than any Kindle or device from B&N. Optimized for magazines and newspapers, the Skiff Reader offers a durable 11.5-inch (1600 x 1200) “Metal Foil” touchscreen display, but it’s still just a quarter of an inch thick.

Connecting to the upcoming Skiff digital store via Wi-Fi and Sprint’s 3G network, the Skiff Reader will support yet unannounced content partnerships including books, specially focusing on large format print like above-mentioned magazines and newspapers—including “visually appealing layouts, high-resolution graphics, rich typography and dynamic updates.” And with a screen that’s nearly two inches larger and significantly sharper than even a Kindle DX, the Skiff Reader certainly seems well-positioned for this role—even though it’s still just black and white.

There’s no word on price or availability (more specific than 2010) just yet, but when the Skiff Reader is available, you’ll be picking one up from Sprint.

NEW YORK, January 4th, 2010 – Skiff, LLC and Sprint (NYSE: S) today announced that they will preview the Skiff Reader, the first e-reader optimized for newspaper and magazine content, at the 2010 International Consumer Electronics Show in Las Vegas later this week.

The Skiff Reader, the initial dedicated device to integrate the upcoming Skiff e-reading service, is remarkably sleek and easy to use. At just over a quarter-inch in overall height, the device is the thinnest e-reader announced to date. It features the largest and highest-resolution electronic-paper display yet unveiled in a consumer device, at 11.5″ in size (measured diagonally) and a resolution of 1600 x 1200 pixels (UXGA). A full touchscreen enables users to intuitively navigate and engage with the newspapers, magazines, books and other digital content they purchase through the Skiff Store, as well as personal and work documents. The device weighs just over one pound and lasts over a week of average use between charges.

“The Skiff Reader’s big screen will showcase print media in compelling new ways,” said Gilbert Fuchsberg, president of Skiff, LLC. “This is consistent with Skiff’s focus on delivering enhanced reading experiences that engage consumers, publishers and advertisers.”

The Skiff Reader is designed not just for sleekness but also for durability. It is the first consumer product to feature the next-generation of e-paper display – one based on a thin, flexible sheet of stainless-steel foil. This contrasts with the fragile glass that is the foundation of almost every electronic screen – and a primary source of vulnerability and breakage risk in the devices that incorporate them. Skiff has worked closely with LG Display (NYSE: LPL), one of the world’s leading display manufacturers and the innovator of the foil-display technology, to optimize and implement this first-of-its-kind non-glass display uniquely for the Skiff Reader.

Skiff has signed a multi-year agreement with Sprint (NYSE:S) to provide 3G connectivity for Skiff’s dedicated e-reading devices in the United States. Plans are underway to have the Skiff Reader available for purchase later this year in more than 1,000 Sprint retail locations across the U.S., as well as online at www.sprint.com. Availability, pricing, additional distribution channels and other details will be disclosed at a later date.

“The forthcoming launch of the Skiff Reader is an exciting development for consumers who are looking for more and more choice in the arena of embedded devices,” said Dan Dooley, president wholesale solutions, Sprint. “We have witnessed a strong demand for e-readers in recent years and now Sprint is showing its commitment to Skiff by making this new device available on the 3G network and for sale in Sprint retail stores.”

In October 2009, Sprint announced the formation of its Emerging Solutions Business that focuses exclusively on the rapid delivery of machine-to-machine and mobile computing solutions to businesses and consumers. Sprint’s partnership with Skiff builds on more than 10 years of experience in working with vendors to provision non-Sprint-branded devices to operate on its networks, as well as extensive expertise in operating multiple platforms and assets.

In addition to 3G, the Skiff Reader will also support wireless connectivity via WiFi.

The Skiff Reader will feature the Skiff service and digital store, allowing consumers to wirelessly purchase and access a wide variety of newspapers, magazines, books, blogs and other content from multiple publishers. Newspaper and magazine content delivered by Skiff will feature visually appealing layouts, high-resolution graphics, rich typography and dynamic updates, supporting key design qualities that help publications differentiate themselves and attract subscribers and advertisers.

Besides the Skiff Reader, Skiff is working with major consumer electronics manufacturers to integrate Skiff’s service, digital store and client software into a range of innovative devices. By supporting a variety of devices from multiple manufacturers, and through complementary applications for major smart phone platforms, Skiff will make it easier for publishers to distribute content and advertising across a range of devices and form factors, an increasingly important goal as the e-reading market continues to grow.

Prime View International set to expand E Ink production; LG licenses daylight-viewable LCD tech

The suddenly-booming e-book market means things are starting to heat up for Taiwan-based Prime View International — the company has formally completed its acquisition of E Ink and plans to increase display production up to fourfold next year, and it’s licensing daylight-viewable LCD tech to LG for somewhere in the neighborhood of $30m. Whether that means we’ll be seeing new devices based on E Ink and next-gen LCD screens or just more sales of existing devices remains to be seen, but we’re obviously hoping for new gear — good thing CES is right around the corner.

Prime View International set to expand E Ink production; LG licenses daylight-viewable LCD tech originally appeared on Engadget on Mon, 28 Dec 2009 13:01:00 EST. Please see our terms for use of feeds.

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The Hunt For the Perfect Screen

As I stood in the corner of a small, cluttered optics lab at MIT, the professor flipped a switch. The room filled with an electrical buzz, and suddenly a holographic video popped out at my face.

The 3-D image was of a human rib cage, and it rotated in midair. And the holographic rib cage rattled me.

It was my first experience with a Display Of The Future, and it set me on a mission. In the subsequent years, I’ve been hunting down display prototypes, talking with experts, and visiting labs. In short, I’ve been on a quest for the perfect display.

Now You See It

Even though holographic video blew me away when I first saw it, I quickly composed myself. It’s simply not the sort of thing that will be commercially available any time soon.

I talked to Gregg Favalora, 3-D expert and founder of Actuality Systems, about the commercial viability of high-resolution 3-D video. His company broke resolution records with its display-a 100-million-voxel (3-D pixel) device that made images for radiologists and engineers hunting for oil reserves. The details of these 3-D images look eerily realistic, but Actuality had a heck of a time finding the right market for it.

In the end, the company only sold 30 systems at $200,000 each and it has now ceased engineering operations. And that MIT holographic video system I saw in a few years ago is still trapped in the lab. The lesson: no matter how extraordinary your technology, it’s impractical for the people unless you can efficiently manufacture it in large numbers.

I See Practicality

At the opposite end of the price spectrum is LCD. It’s cheap as dirt thanks to the billions of dollars of factories built over the past two decades. I wanted to get a look at the way LCDs are made and try to find clues for how a more interesting or useful display-like a reflective e-reader or an OLED screen-could scale up and become cheap.

So I took a trip down to Applied Materials in Santa Clara, California, a company that supplies 90 percent of the LCD industry with manufacturing equipment. What I saw was impressive: the newest fabs are built around sheets of glass—backplanes of LCDs—that are the size of a garage door. They’re only as thick as six sheets of paper, and each one can yield eight large screen TVs.

The machines that deposit electronics on the glass are behemoths-taller than I can reach and with an area slightly larger than a garage door. In a fab, six of these machines are arrange circularly, and from above they look like a giant mechanized flower. The sheets of glass slide in like a floppy disk into a drive, and come out coated with thin film transistors.

The bigger the glass, the more displays can be pumped out of a factory, and the cheaper all sizes of LCD displays become. According to Sid Rosenblatt, the CFO of Universal Display Corporation, a big fab can make six 50-inch LCDs every three to four minutes. At that volume, how can anything else compete with LCD?

Fitting In


Well, instead of beating them, startup Pixel Qi decided to join them. The company’s screens are all LCD—built on the same lines and with the same materials as any other liquid crystal display—but with an additional mode in which the power-hungry backlight is off, and the display reflects ambient light.

I’ve seen Pixel Qi’s displays and visited with Mary Lou Jepsen, the startup’s founder and the former CTO of the One Laptop Per Child project. Jepsen spends most of her time in Taipei, the capital of Displayland, but on a sunny day last fall, I caught her at her houseboat in Sausalito. It was the perfect time and place to try out an LCD that is most impressive in bright light.

In its reflective mode, the display is black and white, similar to a Kindle or Sony Reader except it’s faster-capable of video, albeit in monochrome. The first batch of Pixel Qi screens is scheduled to come off the line this month. Jepsen says more designs that further reduce power consumption are on the way. In one, she explains that the screen, when not needing to refresh, should be able to shut down the central processing unit(and wake it up within milliseconds when it’s in use).

As for a color reflective mode, Jepsen says it could be possible in a couple of years. The concept, which involves a particular arrangement of liquid crystals, is based on her PhD thesis, but it’s admittedly a more complex design than the first Pixel Qi screens. Her first priority, she says, is making sure that Pixel Qi can ship its first products quickly and successfully.

Bright and Beautiful

While Pixel Qi might be making cheap displays that are easy on the eyes and energy efficient, they can’t compare to the beauty and simplicity of OLED screens, in which each pixel emits its own light. The whites are whiter, the blacks are blacker, and the overall image is just gorgeous.

Even better, the manufacturing process is as simple as it gets. It’s layer of organic material that can be printed between two layers of electrodes. This means that OLED displays have the potential to fold, roll, and be built over large areas.

Concepts I’ve seen: a paper-thin, flexible display slammed by a hammer without breaking, a display that’s see-through when the power’s off, and large area OLED coating that act as a window, a wall, or a display, depending on its mode.

In terms of touch, I’m keeping an eye on a new type of technology that’s being integrated into the electronic foundation of OLED displays and LCDs too. It’s called in-cell technology, and there are a number of variants, but one type incorporates photodetectors into the pixels of a screen. It’s ideal for OLED displays, because it can be added without adding thickness, allowing them to maintain their sleek good looks.

If there were ever a perfect display, OLED is it.

The Holdup

In a conversation with Vladimir Bulovic, a professor at MIT (and star of the famous light-emitting pickle video) we waxed poetic on the possibilities of OLEDs. Bulovic believes that it’s only a matter of time before OLEDs take their rightful place at the head of the display industry. The reason we have to wait is simply bad timing. “If back in the 1970s, we had OLEDs, no one would even know what an LCD is today,” he said.

The widely understood problem with OLED displays, however, is that the technology doesn’t exist to mass manufacture them on large sheets of glass like those I saw at Applied Material. Therefore, their beauty is relegated to smaller screens like cell phone displays, Sony’s 11-inch (expensive) TV, and concept demos.

Engineers are working on the problem, of course. Bulovic told me about a former student of his, named Conor Madigan, who has an OLED-printing startup in Menlo Park called Kateeva. I got a hold of Madigan who said his company, which uses a hybrid approach to printing large-scale OLED display, is well funded (even in these difficult economic times) and the display industry is really starting to push large-scale OLED technology.

While it’s true that big display makers are promising big OLED screens in the next couple of years, I’m not holding my breath. Even when the technology for printing large-scale OLED displays arrives, it will still take significant investments to scale up manufacturing. It’s difficult for companies to justify investing too much money in OLED displays while LCD sales are still doing well and continue to get cheaper. Besides, these large-screen OLEDs will still be made on glass, just like LCD, which keeps things rigid, fragile, and heavy.

Past Glass

In order to have a light, flexible, rugged OLED display, it’s obvious that display makers must go with plastic instead of glass. Plastic Logic, is promising the world’s first plastic-backed screens with printed organic transistors, by early next year.

I’ve handled a proto-version of Que, Plastic Logic’s e-reader, at the company’s Mountain View headquarters and was impressed by the form factor. While it’s still rigid, it’s light as a thin stack of papers. And because it’s made of plastic, it’s robust. I felt like flinging it across the boardroom where I sat with the head of marketing and a public relations handler. I didn’t.

Here’s the bad news for Plastic Logic: it all comes back to scalability. At the recent Printed Electronics conference in San Jose, I had lunchtime conversations with people who just shake their head at Plastic Logic’s challenges. A number of them expressed skepticism that the manufacturing process could scale.

Printed organic transistors currently can’t compete in speed with amorphous silicon transistors used in LCDs and OLED displays. And the company’s printing technology is done in a single fab in Dresden, which could make it difficult to produce the e-reader in large volume. In other words, it won’t be cheap or widespread, at least in the near future.

Roll With It


However, the folks at HP Labs think they have a scalable way to make plastic-backed displays with fast silicon transistors. On a recent tour of HP Labs I saw the proof: sheets of plastic, tens of meters long, are rolled onto tubes and are loaded and locked into a system that imprints silicon transistors onto the material.

Carl Taussig, the director of HP’s information surfaces lab, walked me through the process of the so-called Self Aligned Imprint Lithography. Plastic, with a shiny coating, spins on a series of cylinders, where it is exposed to chemicals, ultra-violet light, etching solutions, and ionized gasses. The roll-to-roll setups are compact, and they don’t require clean-room level purity that other display processes do.

Taussig, who is also responsible for inventing the DVD-RW, showed me prototypes, built with HP’s silicon-on-plastic transistors. One of these plastic backplanes controlled an E Ink display. Some of the pixels that were supposed to be black appeared gray, but these prototypes help the researchers find the problems in the roll-to-roll process. If they see a blown-out pixel, they retrace their steps to find where in the process the problem arose. 



In another demonstration, I saw a new type of reflective display developed at HP that was about the size of a smart phone screen. It has color and video and is one of the best-looking reflective screen I’ve seen. Technical details were sparse (they will come out early next year), but Taussig told me that part of the trick is to make a pixel out of three layers of color dyes that take incoming white light and reflect specific colors of it back at you, something like the way that butterfly wings reflect light.

Within Two Years

While Taussig doesn’t think roll-to-roll will replace LCD processes anytime soon, he hopes it can help plastic become the foundation for reflective displays as well as emissive displays like those made of OLEDs. HP has licensed its roll-to-roll technology to PowerFilm, a thin film solar manufacturer. And recently, PowerFilm’s subsidiary Phicot has started to commercially developing the process for electronics. The first products will be displays for soldiers that may be integrated into clothing or wrap around their arms.

Combining HP’s roll-to-roll manufacturing with OLEDs and a reflective reading technology is the closest thing to the perfect display that I’ve seen. So I ask Taussig how long it’s going to take to make the process reliable. He’s optimistic that Phicot can iron out the problems soon. “To be successful we need to roll this out within two years,” he says, since the first plastic displays will hit the market in 2010.

In talking with Taussig, it’s clear to me that even though he’s a researcher, he’s focused on making plastic displays practical. He knows the only way to do that is with solid, cost-effective manufacturing. Once the manufacturing problems are solved, he says, plastic displays become inevitable. “My grandkids will never believe that we made displays with glass,” he says. “Everything will be on plastic.”

I can’t wait. The perfect screen will be lightweight, energy-efficient, and able to take various forms—flexible, transparent, and with touch or some other form of gesture recognition. I want colors so vibrant that images look real enough to grab. Still, I want to read on it without feeling like I’m staring at a flashlight. And it’s got to be cheap.

So far, the displays I’ve seen come close. And while nothing yet gets it all right, there are some up-and-coming technologies-and, crucially, emerging manufacturing processes-that give me confidence that the perfect display is on the way.

Kate Greene spends most of her day staring at the screens of her MacBook Pro and iPhone. She became a journalist by way of physics, where she worked in a basement lab with lasers and a lot of liquid nitrogen. Currently, she writes for publications like The Economist and Technology Review and goes on display hunts for Gizmodo. She can be found on the Internet at kategreene.net and on twitter