Will ARM’s Mbed OS Help The IoT?
October 13, 2014 by admin
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ARM has announced a software tool to make Internet of Things (IoT) deployment faster and easier and thus speed up the creation of IoT devices.
Called the Mbed IoT Device Platform, the software is primarily an operating system (OS) built around open standards that claims to “bring Internet protocols, security and standards-based manageability into one integrated tool” in order to save money and energy in making IoT devices.
The Mbed IoT Device Platform is made up chiefly of the Mbed OS, a free operating system for Cortex-M processor based devices that “consolidates the building blocks of the IoT in one integrated set of software components” and contains security, communication and device management features to enable the development of lower power IoT devices.
The OS will be available to Mbed partners in the fourth quarter for early development, with the first production devices due in 2015 to allow companies to focus on innovation, reducing development costs and time to market.
It will also support standards such as Bluetooth Smart, 2G, 3G, LTE and CDMA cellular technologies, Thread, WiFi, and 802.15.4/6LoWPAN along with TLS/DTLS, CoAP, HTTP, MQTT and Lightweight M2M, ARM said.
The Mbed OS will also feature the Mbed Device Server, a licensable software product that provides the required server-side technologies to connect and manage devices in a more secure way. It also provides a bridge between the protocols designed for use on IoT devices and the APIs that are used by web developers.
“This simplifies the integration of IoT devices that provide ‘little data’ into cloud frameworks that deploy big data analytics on the aggregated information,” said ARM. “Built around open standards, the product scales to handle the connections and management of millions of devices.”
Mbed Device Server is available now, with an aim to improve efficiency, security and manageability for devices using a “standards-based and IoT approach”, ARM said.
The software also comes with its own community, Mbed.org, which is the focus point for a more than 70,000 developers around the platform. The website provides a database of hardware development kits, a repository for reusable software components, reference applications, documentation and web-based development tools. It is already up and running, ARM said.
“Deploying IoT-enabled products and services requires a diverse set of technologies and skills to be coordinated across an organization,” said ARM CEO Simon Segars. “ARM Mbed will make this easier by offering the necessary building blocks to enable our expanding set of ecosystem partners to focus on the problems they need to solve to differentiate their products, instead of common infrastructure technologies. This will accelerate the growth and adoption of the IoT in all sectors of the global economy.”
ARM is launching Mbed with a number of partners, including Atmel, CSR, Ericsson, Farnell, Freescale, IBM, KDDI, Marvell, Megachips, Multitech, Nordic Semiconductor, NXP, Renesas, Seecontrol, Semtech, Silicon Labs, Stream Technologies, ST, Telenor Connexion, Telefonica, Thundersoft, u-blox, wot.io and Zebra.
RedHat Ups Game With Fedora 21
RedHat has announced the Fedora 21 Alpha release for Fedora developers and any brave users that want to help test it.
Fedora is the leading edge – some might say bleeding edge – distribution of Linux that is sponsored by Red Hat. That’s where Red Hat and other developers do new development work that eventually appears in Red Hat Enterprise Linux (RHEL) and other Red Hat based Linux distributions, including Centos, Scientific Linux and Mageia, among others. Therefore, what Fedora does might also appear elsewhere eventually.
The Fedora project said the release of Fedora 21 Alpha is meant for testing in order to help it identify and resolve bugs, adding, “Fedora prides itself on bringing cutting-edge technologies to users of open source software around the world, and this release continues that tradition.”
Specifically, Fedora 21 will produce three software products, all built on the same Fedora 21 base, and these will each be a subset of the entire release.
Fedora 21 Cloud will include images for use in private cloud environments like Openstack, as well as AMIs for use on Amazon, and a new image streamlined for running Docker containers called Fedora Atomic Host.
Fedora 21 Server will offer data centre users “a common base platform that is meant to run featured application stacks” for use as a web server, file server, database server, or as a base for offering infrastructure as a service, including advanced server management features.
Fedora 21 Workstation will be “a reliable, user-friendly, and powerful operating system for laptops and PC hardware” for use by developers and other desktop users, and will feature the latest Gnome 3.14 desktop environment.
Those interested in testing the Fedora 21 Alpha release can visit the Fedora project website.
Hackers Infiltrate Jimmy Johns
October 7, 2014 by admin
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Sandwich restaurant chain Jimmy John’s said there was a potential data breach involving customers’ credit and debit card information at 216 of its stores and franchised locations on July 30.
An intruder stole log-in credentials from the company’s vendor and used the credentials to remotely access the point-of-sale systems at some corporate and franchised locations between June 16 and Sept. 5, the company said.
The chain is the latest victim in a series of security breaches among retailers such as Target Corp, Michaels Stores Inc and Neiman Marcus.
Home Depot Inc said last week some 56 million payment cards were likely compromised in a cyberattack at its stores, suggesting the hacking attack at the home improvement chain was larger than the breach at Target Corp.
More than 12 of the affected Jimmy John’s stores are in Chicago area, according to a list disclosed by the company.
The breach has been contained and customers can use their cards at its stores, the privately held company said.
Jimmy John’s said it has hired forensic experts to assist with its investigation.
“Cards impacted by this event appear to be those swiped at the stores, and did not include those cards entered manually or online,” Jimmy John’s said.
The Champaign, Illinois-based company said stolen information may include the card number and in some cases the cardholder’s name, verification code, and/or the card’s expiration date.
MediaTek Goes IoT
SoC designer MediaTek has launched a new push to develop technologies used in wearables and Internet-of-Things (IoT) devices.
Dubbed MediaTek Labs, the new organisation will offer tools for developers such as software and hardware development kits (SDKs and HDKs), but it will also offer other forms of support, i.e. tech support and marketing.
MediaTek LinkIt dev platform
The MediaTek LinkIt platform promises to offer a full-service approach for developers keen to enter the space. It allows developers familiar with MediaTek’s Arduino implementation to quickly migrate to the new platform
For the time being the platform is limited to the MediaTek Aster MT2502A processor. The company says it is the world’s smallest commercially available SoC. The chip can work with MediaTek’s WiFi and GPS companion chipsets.
The company is calling on developers to join the MediaTek Labs initiative and in case you are interested you can check out the details on the new MediaTek Labs website.
MediaTek Aster spec
Now for some juicy hardware. The Aster MT2502A is an ARM7 EJ-S part clocked at 260MHz. The dev board features 4MB of RAM and 16MB of flash. GPS and WiFi capability can be added using the MT3332 and MT5931 chips. The platform supports microSD, Bluetooth (including BLE), along with GSM and GPRS communications.
The Aster is clearly not an SoC for feature packed wearables with high resolution screens, but it could be used in more down to earth applications such as fitness trackers.
MediaTek says it will offer three platforms based on two wearable solutions. The One Application Use (OAU) platform is for fitness trackers and simple Bluetooth devices. The Simple Application Platform (SAU) is intended for smart watches, wristbands and more elaborate fitness trackers.
SAU is the focus segment for the Aster chipset and it should offer 5 to 7 days of battery life.
MediaTek Rich Application Platform
The Rich Application Platform (RAU) is for Android Wear and it will offer a lot more functionality out of the box, including camera support, 3D graphics, as well as Bluetooth, WiFi and GPS in the same package.
This platform sounds a bit more interesting, but details are sketchy. For some reason many media outlets erroneously described the first Aster chip as MediaTek’s only smartwatch chip, but it is clearly not intended for the Rich Application Platform.
We have yet to see what sort of silicon MediaTek can conjure up for high-end wearables, but this is what it has in mind. The platform is designed for high-end smartwatches and glasses. It will feature multicore processors clocked at 1GHz or more. The platform also includes Bluetooth, GSM/GPRS, GPS, WiFi, sensors and a proper TFT screen. Battery life is described as short, two to three days, which sounds a bit better than what the current generation of smartwatches can deliver.
nVidia Finally Goes 20nm
For much of the year we were under the impression that the second generation Maxwell will end up as a 20nm chip.
First-generation Maxwell ended up being branded as Geforce GTX 750 and GTX 750 TI and the second generation Maxwell launched a few days ago as the GTX 980 and Geforce GTX 970, with both cards based on the 28nm GM204 GPU.
This is actually quite good news as it turns out that Nvidia managed to optimize power and performance of the chip and make it one of the most efficient chips manufactured in 28nm.
Nvidia 20nm chips coming in 2015
Still, people keep asking about the transition to 20nm and it turns out that the first 20nm chip from Nvidia in 20nm will be a mobile SoC.
The first Nvidia 20nm chip will be a mobile part, most likely Erista a successor of Parker (Tegra K1).
Our sources didn’t mention the exact codename, but it turns out that Nvidia wants to launch a mobile chip first and then it plans to expand into 20nm with graphics.
Unfortunately we don’t have any specifics to report.
AMD 20nm SoC in 2015
AMD is doing the same thing as its first 20nm chip, codenamed Nolan, is an entry level APU targeting tablet and detachable markets.
There is a strong possibility that Apple and Qualcomm simply bought a lot of 20nm capacity for their mobile modem chips and what was left was simply too expensive to make economic sense for big GPUs.
20nm will drive the voltage down while it will allow higher clocks, more transistors per square millimeter and it will overall enable better chips.
Just remember Nvidia world’s first quad-core Tegra 3 in 40nm was rather hot and making a quad core in 28nm enabled higher performance and significantly better battery life. The same was true of other mobile chips of the era.
We expect similar leap from going down to 20nm in 2015 and Erista might be the first chip to make it to 20nm. A Maxwell derived architecture 20nm will deliver even more efficiency. Needless to say AMD plans to launch 20nm GPUs next year as well.
It looks like Nvidia’s 16nm FinFET Parker processor, based on the Denver CPU architecture and Maxwell graphics won’t appear before 2016.
HTC To Make the Next Google Nexus Tablet
October 1, 2014 by admin
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Google Inc has chosen HTC Corp to develop and deliver its upcoming 9-inch Nexus tablet, the Wall Street Journal reported, citing people familiar with the matter.
Google had been mulling HTC as a potential Nexus tablet partner since last year and HTC engineers have been flying to the Googleplex in Mountain View in recent months to work on the project, the report said.
Google’s decision to pick HTC reflects its long-term strategy of building a broad base of partners from device to device to prevent any one manufacturer from gaining a monopoly, the report said.
That may also be one of the reasons why Google chose HTC over bigger rivals Samsung Electronics Co Ltd, maker of the Nexus 10 tablet.
Google and HTC declined to comment on the report.
Is AMD’s FreeSync Coming In 2015?
Last week in San Francisco we spent some time with Richard Huddy, AMD’s Chief gaming scientist to get a glimpse what is going on in the world of AMD graphics. Of course we touched on Mantle, AMD’s future in graphics and FreeSync, the company’s alternative to Nvidia G-Sync.
Now a week later AMD is ready to announce that MStar, Novatek and Realtek scaler manufactures are getting ready with DisplayPort Adaptive-Sync and AMD’s Project FreeSync. They should be done by end of the year with monitors shipping in Q1 2015.
FreeSync will prevent frame tearing as the graphic card often pushes more (or fewer) frames than the monitor can draw and this lack of synchronisation creates quite annoying frame tears.
FreeSync will allow Radeon gamers to synchronize display refresh rates and GPU frame rates to enable tearing and stutter-free gaming along with low input latency. We still do not have the specs or names of the new monitors, but we can confirm that they will use robust DisplayPort receivers from MStar, Novatek and Realtek in 144Hz panels with QHD 2560×1440 and UHD 3840×2160 panels up to 60 Hz.
It took Nvidia quite some time to get G-Sync monitors off the ground and we expect to see the first 4K G-Sync monitors shipping shortly, while QHD 2560×1440 ones have been available for a few months. Since these are gaming monitors with a 144Hz refresh rate they don’t come cheap, but they are nice to look at and should accompany a high end graphic card such as Geforce GTX 980 or a few of them.
Radeon lovers will get FreeSync, but monitors will take a bit more time since AMD promises Project FreeSync-ready monitors through a media review program in 1Q 15 and doesn’t actually tells us much about retail / etail availability.
Will HP Dump Snapfish?
September 26, 2014 by admin
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Hewlett-Packard Co is taking a look at putting its web-based photo sharing service Snapfish on the block, and has held discussions with multiple private equity and industry buyers, a person with knowledge of the situation said.
Snapfish, which HP bought for more than $300 million in 2005 and currently sits within its printing and personal systems group, is considered non-core for the company, the person said, asking not to be named because the matter is not public.
A spokesman for HP declined to comment.
Last year, HP replaced the printing and personal business’ long-time head Todd Bradley with former Lenovo executive Dion Weisler. Bradley has since left the technology company, to join Tibco Software Inc as its president.
Some of the parties that have been eyeing Snapfish have also expressed interest in buying another online photo-sharing services provider, Shutterfly Inc, the person said.
Shutterfly hired Frank Quattrone’s Qatalyst Partners over the summer to find a buyer, and is expected wrap up its process in the next several weeks, people familiar with the matter have said previously.
Ericsson Acquires Fabrix Systems
September 25, 2014 by admin
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The distinctions between TV and mobile services continues to merge and in many cases that occurs in the cloud.
That’s the logic behind Ericsson’s planned $95 million acquisition of Fabrix Systems, which sells a cloud-based platform for delivering DVR (digital video recorder), video on demand and other services.
The acquisition is intended to help service providers deliver what Ericsson calls TV Anywhere, for viewing on multiple devices with high-quality and relevant content for each user. Cable operators, telecommunications carriers and other service providers are seeing rapid growth in video streaming and want to reach consumers on multiple screens. That content increasingly is hosted in cloud data centers and delivered via Internet Protocol networks.
Fabrix, which has 103 employees in the U.S. and Israel, sells an integrated platform for media storage, processing and delivery. Ericsson said the acquisition will make new services possible on Ericsson MediaFirst and Mediaroom as well as other TV platforms.
Stockholm-based Ericsson expects the deal to close in the fourth quarter. Fabrix Systems will become part of Ericsson’s Business Unit Support Solutions.
Other players usually associated with data networks are also moving into the once-specialized realm of TV. At last year’s CES, Cisco Systems introduced Videoscape Unity, a system for providing unified video services across multiple screens, and at this year’s show it unveiled Videoscape Cloud, an OpenStack-based video delivery platform that can be run on service providers’ cloud infrastructure instead of on specialized hardware.
Intel Sampling Xeon D 14nm
Intel has announced that it is sampling its Xeon D 14nm processor family, a system on chip (SoC) optimized to deliver Intel Xeon processor performance for hyperscale workloads.
Announcing the news on stage during a keynote at IDF in San Francisco, Intel SVP and GM of the Data Centre Group, Diane Bryant, said that the Intel Xeon processor D, which initially was announced in June, will be based on 14nm process technology and be aimed at mid-range communications.
“We’re pleased to announce that we’re sampling the third generation of the high density [data center system on a chip] product line, but this one is actually based on the Xeon processor, called Xeon D,” Bryant announced. “It’s 14nm and the power levels go down to as low as 15 Watts, so very high density and high performance.”
Intel believes that its Xeon D will serve the needs of high density, optimized servers as that market develops, and for networking it will serve mid-range routers as well as other network appliances, while it will also serve entry and mid-range storage. So, Intel claimed, you will get all of the benefits of Xeon-class reliability and performance, but you will also get a very small footprint and high integration of SoC capability.
This first generation Xeon D chip will also showcase high levels of I/O integrations, including 10Gb Ethernet, and will scale Intel Xeon processor performance, features and reliability to lower power design points, according to Intel.
The Intel Xeon processor D product family will also include data centre processor features such as error correcting code (ECC).
“With high levels of I/O integration and energy efficiency, we expect the Intel Xeon processor D product family to deliver very competitive TCO to our customers,” Bryant said. “The Intel Xeon processor D product family will also be targeted toward hyperscale storage for cloud and mid-range communications market.”
Bryant said that the product is not yet available, but it is being sampled, and the firm will release more details later this year.
This announcement comes just days after Intel launched its Xeon E5 v2 processor family for servers and workstations.








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