Youtube 4K, for realz?!!!!!

Posted by – July 9, 2010

Google announced this new resolution support on Youtube a bit weirdly: 4K is 4096×3072 thus 3072p. It is not “4096p” and not “1096 x 3072 pixels”. Or is 4K supposed to amount to 4 Million pixels? Here’s the text from Youtube’s announcement (as posted at this moment to http://youtube-global.blogspot.com/2010/07/whats-bigger-than-1080p-4k-video-comes.html):

Today at the VidCon 2010 conference, we announced support for videos shot in 4K (a reference resolution of 4096 x 3072), meaning that now we support original video resolution from 360p all the way up to 4096p.

We always want videos on YouTube to be available in the highest quality possible, as creators intend. In December of last year, we announced support for 1080p, or full HD. At 1096 x 3072 pixels, 4K is nearly four times the size of 1080p. To view any video in a source resolution greater than 1080p, select “Original” in the video quality pulldown menu:

Here’s my reaction:

– WHOAAAWWW! Is this 1st of April or something? Is Google talking for real?

– What is the bitrate going to be for 4K? My guess, based on calculating the bitrate per pixel of 2mbit/s for Youtube 720p and 4mbit/s for Youtube 1080p is that for 4K it would be something like 24mbit/s. That’s within the same bitrate as our 15 year old DV format (like miniDV tapes). That’s like the top bitrate established for 1080p AVCHD format. This is totally manageable! We can get 50mbit/s and 100mbit/s “easilly” over here in Scandinavia. If Google would provide full bandwidth delivery of Youtube 4K worldwide, we could seriously enjoy this!

– I wish the LCD and Projector industry focus on making Quad HD or 4K screens (however they should be called) instead of that 3D fad thing. Logically, thanks to Youtube 4K, we could be getting 4K HDTVs and projectors for less than $1000 by this time next year. Because the processors are already ready, they just need to be put into mass manufactured screens and projectors.

Another point in Youtube’s announcement that I would like to learn something about and maybe start to counter:

To give some perspective on the size of 4K, the ideal screen size for a 4K video is 25 feet; IMAX movies are projected through two 2k resolution projectors.

I have seen Quad HD LCD screens at trade shows. Those were in the 50-82″ range I think. They are absolutely amazing (Sergey Brin has one), some of the most impressive demonstrations I have ever seen in going to most of the trade shows since 2005. See my video of the Samsung 3840x2160p 82″ LCD HDTV. See my video of the JVC 4K2K HDTV and Projector.

I believe that one can see higher than 1080p on HDTV starting below 50″ sizes. The iPhone 4 has a 326DPI 3.5″ screen. I don’t see why we can’t get higher DPI on our HDTVs than 52DPI on a 42″ HDTV? Why should the iPhone 4 have a 6x higher DPI than my 42″ 1080p Full HD HDTV? If they were to put 4K processor in my 42″ HDTV, it would still “only” have a 111DPI, still much less than what they have done on the iPhone 4. Sure my 42″ HDTV has 132 times larger surface area than an iPhone (a 42″ HDTV could fit 132 of iPhone’s screens), if you want to set a standard for what the DPI per field of vision should be based on the iPhone 4 held at half arms length (50cm) with 326DPI screen, then a 42″ HDTV with 4K screen of 111DPI would need to be seen within 1.5 meters of a distance to get the same effect. Usually a sofa is placed 4-6 meters away from the LCD HDTV. Perhaps people will want to sit closer to the screen to experience something closer to 4K quality. At the photo exhibitions and museums of paintings, it is common for people to approach the images at distances closer than 1 meter to appreciate the details in the image. Perhaps 4K would be more suitable sizes above 50″ and preferably perhaps even above 60″ in diagonal. 67″ 4K HDTV would have a 70DPI thus achieve same pixels per angle of view at 2.5 meters distance. 65″ 1080p HDTV is $2500 today at Best Buy, how much more would it cost to include the latest 4K processor in there to stream 4K contents from Youtube 4K? Perhaps 4K HDTVs in the living room can be displaying any of our existing 12megapixel images taken with any recent digital photo camera, slideshows on a 4K screen look awesome. Thus Picasa could be streaming out some amazing customized and personalized slideshows, to be marvelled at in the living room at closer distance than usual.

Another point in Youtube’s announcement that I would like to discuss:

Because 4K represents the highest quality of video available, there are a few limitations that you should be aware of. First off, video cameras that shoot in 4K aren’t cheap, and projectors that show videos in 4K are typically the size of a small refrigerator. And, as we mentioned, watching these videos on YouTube will require super-fast broadband.

Now, let’s discuss, when are cheap 4K encoders going to be available? What hardware is required in the camcorder to encode that resolution effectively (and not also use up too much bandwidth in its compression). How expensive are the 4K decoders really?

Is 4K support something that could come with the upcoming ARM Cortex A9 processors?

I would think that this could be a nice challenge for ARM processor providers to work towards. They have now reached 1080p playback for a while already, even though it only really comes with ARM Cortex A9 to small low power consumer devices. Media streamers though have done 1080p playback for a few years already. I filmed the first 1080p KiSS Technology players at CeBIT 2004:

With Moore’s law, doubling of playback processing every 18 months, 4K decoders should have been ready since the second half of 2008 already, and in Set-top-box devices that shouldn’t cost more than the KiSS Technology DP-600 shown in 2004, less than $300 today? Perhaps next year we will be able to see Google TV boxes with 4K and Youtube 4K streaming support on $2K 65″ 4K LCD HDTVs or $1K 4K projectors?

Canonical explains the status of Ubuntu on ARM Powered Laptops

Posted by – July 5, 2010

In this video, Jerone Young, Partner Engineer at Canonical explains the status of software optimizations and development to make ARM Powered Laptops and Desktops a reality. He tells about some of the fascinating challenges where Canonical is working together with the their partners at the Linaro group of companies (ARM, Freescale, IBM, Samsung, ST Ericsson, Texas Instruments…) to realize a full desktop experience on ARM Powered devices, including full and fast web browsing and full access to most of the most useful Ubuntu applications.

It’s about hardware acceleration, about standardization of boot process and other aspects of the ARM platforms, this is about focusing development efforts to solve the most important challenges and provide thus open source and free software tools to be used by all ARM Powered Linux based products. With faster memory bus speeds coming up in the next generation of Desktop-centric ARM Processors, such as support for DDR3 RAM speeds, the implementation of multiple cores as in upcoming ARM Cortex A9 processors, the standardization of how to use graphics and video hardware acceleration to speed up user interfaces, applications and features. Those are the challenges that Canonical and its partners are working very hard on and plan to implement in actual products that can start to be sold to the mass market during these coming months.

As you have been able to see in hundreds of videos here on ARMdevices.net, many, many prototypes of ARM Powered laptops are being shown at trade shows. Huge laptop makers like HP, Toshiba, Dell, Lenovo, Quanta, Compal, Inventec, Pegatron, all of those and many more have shown or have announced ARM Powered laptop projects. Yet to actually launch these to a very large market, the ARM Partners are first collaboratively making sure that those devices provide a user experience that is fast enough for most consumers.

This story as discussed on Slashdot: http://linux.slashdot.org/story/10/07/06/1256252/Surveying-the-Challenges-of-Linux-On-Cortex-A9-Based-Laptops

30 minutes with Jeff Orr of ABI Research

Posted by – June 30, 2010

ABI Research releases forecasts on ARM Powered laptops, tablets, they correctly predicted the 2009 netbook sales and have many other research papers, reports and forecasts out. In this video, we discuss the growth of Android vs the iOS devices, we discuss the potential of tablets, smartbooks, the possible disruption of Telecom business models. Cheaper ARM Powered smartphones and other devices.

Technology Editor at EETimes offers impressions from the Freescale Technology Forum

Posted by – June 27, 2010

R.Colin Johnson, Technology Editor at http://eetimes.com offers his impressions on the Freescale Technology Forum. The launch of the new Freescale Xtrinsic sensors, Cortex M4 and more. Check more videos he filmed of the first day keynotes at FTF at his blog: http://nextgenlog.tv

Freescale MMA9550L, the new Xtrinsic family of autonomous sensors

Posted by – June 24, 2010

Imagine not needing a power button to turn on your phone, just pick it up. Imagine cheaper warranty as manufacturers will know when devices were damaged because of usage error such as fall or banging. Imagine new user interfaces that are much more relying on sensors as the new Freescale Xtrinsic sensors can measure stuff 2000 times per second (the bandwidth and architecture being better). Imagine also sensors combining their abilities through fusion, again, no need to wake up the main ARM processor of the device to do all kinds of things! Imagine the device knowing exactly how it is touched, how it is moved, how it is held, the touch is not anymore only on the screen! This means better battery usage, months maybe even years of seamless standby. The new Xtrinsic sensor only needs 12 micro amps of power to be turned on all the time!

Windows CE 7

Posted by – June 24, 2010

So this is what Windows Compact Embedded 7 looks like! The unskinned version of WinCE7 looks basically quite a lot like WinCE6, but perhaps this new version of Windows CE has got some new optimizations to use ARM Cortex A8 and the more advanced hardware acceleration fully. And perhaps Windows CE 7 is meant to receive layers of customized user interfaces put on top of it, like Windows Phone 7 Series and like other potential UIs that partners of Microsoft surely are working on. Can this be considered an alternative to Windows 7 for ARM processors? I don’t know. How much can it really do?

Freescale automotive concept car

Posted by – June 24, 2010

Freescale is one of the leaders in putting processors and technology into cars. Freescale has put as much technology as they can on this concept car to showcase what we might see in the future out of the automotive industry.

Freescale Automotive: 3 levels of instrument cluster solutions

Posted by – June 24, 2010

Freescale shows what they think future car dashboards will look like. They will be fully LCD based with for example a wide 12.3″ Sharp LCD screen running Linux features on the Freescale i.MX51.

Freescale Power Management and Audio controls through USB

Posted by – June 24, 2010

Micro/Mini USB switch which controls routing of the audio, usb and uart to the processor and also controls the battery charging. Basically this means all kinds of things can be done just using the Mini or Micro USB connector.

Flexible and unbreakable plastic E Ink screens

Posted by – June 24, 2010

Sriram Peruvemba, Vice president of marketing at E-ink, presents the new flexible plastic based E-ink display. That new plastic e-ink screen technology will make it more usable for school children to use E-ink based devices to read all their textbooks and for all to access all books and texts ever written in the whole world.

E-ink is for full readability, outdoors, with reading lights indoors, it basically provides near paper quality, perfect for reading hundreds of pages. Something that is not possible on the current LCD based iPad.

SurfaceInk designs a 12.1″ capacitive Linux tablet

Posted by – June 23, 2010

Here’s the prototype of a 12.1″ Tablet designed by SurfaceInk based on the Freescale i.MX51.

Freescale touch sensors on a guitar

Posted by – June 23, 2010

As a demo, Freescale has put some capacitive sensors and combine them with resistive stings to thus combine the effect of a keyboard and of a guitar into an instrument.

Acceleglove by AnthroTronix

Posted by – June 23, 2010

The AcceleGlove™ instrumented gesture recognition glove (“designated iGlove for DoD/NIH applications”) has been developed under SBIR grants from the U.S. Army and Department of Education. Find more informations at: http://www.acceleglove.com

$15 Android Computer presented by AllGo systems

Posted by – June 23, 2010

AllGo is presenting what may be one of the lowest cost ARM9 i.MX233 based Android device solution. For Tablets, PMPs, intelligent screens. AllGo provides Android software integration on the Freescale processors. The full Tablet with a 7″ WVGA screen and a battery could have a Bill Of Material cost of as low as $35.

Microsoft Word on ARM Powered Laptop using Genesi and Citrix solutions

Posted by – June 23, 2010

Genesi Americas is presenting this awesome looking ARM Cortex A8 based Smartbook design, presented by Genesi who designed the hardware in collaboration with Pegatron of this latest generation of this Freescale Powered Smartbook design. For fun, we are running Microsoft Office through a high resolution version of Citrix viewer on the latest version of Ubuntu 10.4 for ARM processors. This could provide a one click online based software as a service solution. Want to run any X86 application on your ARM Laptop? Just click through the Citrix virtualization stuff and you can have it all running and smoothly. In theory, the apps could be processed by a grid and delivered much faster than on a single x86 processor based device.

Genesi are providing the hardware and software integration solution, in combination with Future Electronics, they can provide the whole solution to carriers, distributors, with the full bill of material, setting up the manufacturing and making the whole thing work and be sold to the market.

Genesi’s main IP is their Aura firmware solution:

Aura, the Genesi Firmware offering, implements a run-time, re-entrant hardware abstraction layer supporting the industry standard IEEE 1275 (OpenFirmware) and UEFI firmware specifications, with significant added functionality.

These additional features provide cost reduction of systems and faster time-to-market of hardware. Genesi provides board bring-up services and firmware for other Power Architecture and ARM hardware suppliers, up to and including a Linux desktop, based on our firmware.

Genesi is an active Open Source supporter, having donated a lot of hardware over the years to Debian, OpenSuSe, Gentoo, Crux and many other Linux distributions.

Genesi are very active in optimizing software specifically for ARM Cortex by porting libraries to the NEON unit in these devices resulting in large speedups.

Genesi has a developer forum: http://www.powerdeveloper.org

Hugh Herr keynote at the Freescale Technology Forum in Orlando

Posted by – June 23, 2010

Hugh Herr directs the Biomechatronics group at The MIT Media Lab.

Liquavista screen demonstrated outdoors

Posted by – June 23, 2010

On a bright sunny day at the Freescale headquarters in Toulouse, Kurt Petersdorff of Liquavista shows us the Liquavista screen and describes some of how it works. Liquavista thus supports color outdoor readability and claims that this screen can be manufactured with little changes to the existing huge LCD manufacturing process.

Freescale QNX Energy Management Systems

Posted by – June 23, 2010

Freescale and QNX Software Systems are showing their new smart energy reference, a pre-integrated software stack that makes it easier to design, deploy, and extend smart-home energy management systems based on the Freescale i.MX25, i.MX35 and i.MX51.

VGO active presence robot

Posted by – June 22, 2010

Imagine a robot that represents you in a distant location – one that represents you in healthcare facilities, in manufacturing sites – even at conferences. With a remote control software, the robot is controlled with a mouse, a video camera and screen to enable videoconferencing that can take you where you need to go to get your job done more efficiently.

Self-driven slot cars powered by Freescale

Posted by – June 22, 2010

You know the slot cars, you have two little electric cars on a track and two players have a button to decide how much voltage to send over to the car. Freescale has collaborated with universities in Czech Republic, Slovakia, Romania to use Freescale sensors and software algorithms to create an automatic self-driven car that is faster than most human drivers. As it learns the track on its first lap, it then speeds away at full speed, knowing exacly how much speed to use in each turn. You can watch this other official video showing the self-driven slot cars at Self-driven slot cars at http://www.youtube.com/watch?v=Tv5_g5dVsaw