Ready for TSMC 40nm and 28nm process in 2012
By Nick Flaherty www.flaherty.co.uk
Applied Micro has demonstrated the world’s first 64bit ARMv8 processor core running on an FPGA platform and parallels AppliedMicro’s launch of the industry’s first 64bit ARM 'Server-on-a-Chip' solution in a single footprint, designed to deliver disruptively low power and cost points for server and cloud computing applications.
“The demonstration marks a fundamental achievement by AppliedMicro’s engineering team to provide a proof of a single PMD core running both UBoot and 64bit Linux,” said Vinay Ravuri, Vice President of AppliedMicro’s Embedded and Processing Business Unit. “It also provides pre-silicon customer evaluation of our 64bit ARM solution and paves the way for a more sustainable future of cloud computing as we leverage this architecture to provide high-performance devices that consume less power and lower costs compared to today’s server chips.”
The demonstration platform consists of Xilinx Virtex-6 running a server SoC design with an ARM64 CPU complex, coherent CPU fabric, high performance I/O network, memory subsystem along with fully functional SoC subsystem.
Applied Micro’s 64bit processor family will use the large installed base of ARM software and hardware solutions and appeal to the open-source software community, similar to its 32bit predecessor. With tremendous interest shown by OEMs and ODMs in the cloud computing space, the platform is fully enabled with server class open-source Linux distributions. Additionally Applied Micro is working with a number of server-class and embedded Linux vendors. Full open-source compilers and tool chains will be provided by AppliedMicro and ARM ecosystem partners. Additionally, optimised compilers, tool chains, and debuggers will be provided by key strategic partners.
Full ecosystem support for the FPGA platform with performance metrics will be available for customer evaluation by the first half of 2012. A full suite of cloud computing applications driving various target workloads, such as Web, Memcached, Hadoop, Webserver, will also be available in that timeframe.
All the latest quantum computer articles
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Friday, October 28, 2011
Point Grey Launches world's smallest superspeed USB 3.0 Flea3 Camera
384Mbyte/s for industrial and machine vision
By Nick Flaherty www.flaherty.co.uk
Digital camera experts Point Grey have developed the world's smallest USB3.0 camera.
By Nick Flaherty www.flaherty.co.uk
Digital camera experts Point Grey have developed the world's smallest USB3.0 camera.
Measuring just 29 x 29 x 30mm, the FL3-U3 is designed specifically for the demanding requirements of machine and computer vision applications. The first available models are based on monochrome and colour versions of the Sony IMX036, a high-quality CMOS sensor capable of generating 3.2 megapixel images at 60 FPS.
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| The Flea3-U3 |
“We are very excited to start production of our first USB 3.0 cameras and begin addressing the huge amount of demand we’re seeing for this technology,” says Michael Gibbons, Product Marketing Manager. Gibbons adds, “USB 3.0 is rapidly gaining industry acceptance, largely due to its higher bandwidth, improved reliability and architecture, and widespread availability on a variety of hardware platforms.”
With a practical limit of 384MBytes/s, USB 3.0 is almost 10 times faster than USB 2.0 and 5 times faster than FireWire-b. The increased data throughput and improved 4.5W of power delivery further makes USB 3.0 well-suited for many of the high-speed, multi-megapixel area scan image sensors on the market today. Most laptop, desktop, and embedded systems now provide USB 3.0 ports, which maximizes system compatibility and minimizes the need for add-in PCI or PCI Express interface cards. Easy access to high quality, low cost components like cables and hubs also allows end users to lower the overall cost of their systems.
“While there is no single digital interface that works best for all vision applications, on technical merits alone USB 3.0 will be a strong contender, and will certainly become an important camera interface in the years to come,” says Gibbons. “We are very excited about this release and we look forward to adding more Flea3 USB 3.0 models over the coming months. We also plan on introducing new USB 3.0-based product families, such as the upcoming Ladybug5 spherical camera.”
The FL3-U3-32S2 (1/2.8-inch 2080x1552 at 60 FPS) is priced at $795.
With a practical limit of 384MBytes/s, USB 3.0 is almost 10 times faster than USB 2.0 and 5 times faster than FireWire-b. The increased data throughput and improved 4.5W of power delivery further makes USB 3.0 well-suited for many of the high-speed, multi-megapixel area scan image sensors on the market today. Most laptop, desktop, and embedded systems now provide USB 3.0 ports, which maximizes system compatibility and minimizes the need for add-in PCI or PCI Express interface cards. Easy access to high quality, low cost components like cables and hubs also allows end users to lower the overall cost of their systems.
“While there is no single digital interface that works best for all vision applications, on technical merits alone USB 3.0 will be a strong contender, and will certainly become an important camera interface in the years to come,” says Gibbons. “We are very excited about this release and we look forward to adding more Flea3 USB 3.0 models over the coming months. We also plan on introducing new USB 3.0-based product families, such as the upcoming Ladybug5 spherical camera.”
The FL3-U3-32S2 (1/2.8-inch 2080x1552 at 60 FPS) is priced at $795.
Related articles
- Microsoft throws support behind USB 3.0 with Windows 8 (infoworld.com)
- 2-Port USB 3.0 PCI-Express Interface Card for $1 + $6 s&h (9to5toys.com)
- USB 3.0 Support for Windows 8 (windows8.iyogi.com)
US updates its smart grid roadmap
Release 2.0 adds 22 standards, specifications and guidelines to the 75 in the NIST roadmap
By Nick Flaherty www.flaherty.co.uk
New standards, cybersecurity guidance and product testing proposals are among the new elements in an updated roadmap for Smart Grid interoperability by the National Institute of Standards and Technology (NIST) in the US.
The NIST Framework and Roadmap for Smart Grid Interoperability Standards, Release 2.0, builds upon and updates a January 2010 report. NIST's first outline, Release 1.0, laid out an initial plan for transforming the aging electric power system in the US into an interoperable Smart Grid — integrating information and communication technologies with a power-delivery infrastructure to enable two-way flows of energy and communications.
"Making such dramatic changes to the power grid requires an overarching vision of how to accomplish the task, and this updated Framework advances that vision," said NIST's George Arnold, the National Coordinator for Smart Grid Interoperability. Because the Smart Grid will be a highly complex system of interacting systems, it is essential that everyone with a stake in the new grid have a common understanding of its major building blocks and how they interrelate, Arnold said. "Utilities, manufacturers, equipment testers and regulators will find essential information in the Framework that was not previously available."
Release 2.0 adds 22 standards, specifications and guidelines to the 75 NIST recommended as immediately applicable to the Smart Grid in the first roadmap. New to the 2.0 version is a chapter on the roles of the Smart Grid Interoperability Panel (SGIP), an organization created by NIST in November 2009 to provide an open forum for members to collaborate on standards development. More than 700 organizations are now members of the SGIP, which recently made the first six entries into its Catalogue of Standards, a technical document for those involved with developing grid-connected devices. Eventually, hundreds of such standards will be entered into the Catalogue, which is also described in the SGIP chapter.
Further improvements and additions to the original document include:
http://collaborate.nist.gov/twiki-sggrid/bin/view/SmartGrid/IKBFramework.
By Nick Flaherty www.flaherty.co.uk
New standards, cybersecurity guidance and product testing proposals are among the new elements in an updated roadmap for Smart Grid interoperability by the National Institute of Standards and Technology (NIST) in the US.
The NIST Framework and Roadmap for Smart Grid Interoperability Standards, Release 2.0, builds upon and updates a January 2010 report. NIST's first outline, Release 1.0, laid out an initial plan for transforming the aging electric power system in the US into an interoperable Smart Grid — integrating information and communication technologies with a power-delivery infrastructure to enable two-way flows of energy and communications.
"Making such dramatic changes to the power grid requires an overarching vision of how to accomplish the task, and this updated Framework advances that vision," said NIST's George Arnold, the National Coordinator for Smart Grid Interoperability. Because the Smart Grid will be a highly complex system of interacting systems, it is essential that everyone with a stake in the new grid have a common understanding of its major building blocks and how they interrelate, Arnold said. "Utilities, manufacturers, equipment testers and regulators will find essential information in the Framework that was not previously available."
Release 2.0 adds 22 standards, specifications and guidelines to the 75 NIST recommended as immediately applicable to the Smart Grid in the first roadmap. New to the 2.0 version is a chapter on the roles of the Smart Grid Interoperability Panel (SGIP), an organization created by NIST in November 2009 to provide an open forum for members to collaborate on standards development. More than 700 organizations are now members of the SGIP, which recently made the first six entries into its Catalogue of Standards, a technical document for those involved with developing grid-connected devices. Eventually, hundreds of such standards will be entered into the Catalogue, which is also described in the SGIP chapter.
Further improvements and additions to the original document include:
- an expanded view of the architecture of the Smart Grid
- a number of developments related to ensuring cybersecurity for the Smart Grid, including a Risk Management Framework to provide guidance on security practices;
- a new framework for testing the conformity of devices and systems to be connected to the Smart Grid – the Interoperability Process Reference Manual;
- Information on efforts to coordinate the Smart Grid standards effort for the United States with similar efforts in other parts of the world; and
- an overview of future areas of work, including electromagnetic disturbance and interference, and improvements to the SGIP processes.
http://collaborate.nist.gov/twiki-sggrid/bin/view/SmartGrid/IKBFramework.
First step for laser diodes to challenge LEDs in lighting
Laser diodes provide higher brightness with more efficiency
By Nick Flaherty www.flaherty.co.uk

Researchers at Sandia Labs in the US have shown that laser diodes can be just as effective for lighting systems as LEDs.
The finding is important as LEDs lose efficiency at electrical currents above 0.5 amps while the efficiency of the diode laser improves at higher currents, providing even more light than LEDs at higher amperages.
“What we showed is that diode lasers are a worthy path to pursue for lighting,” said Sandia researcher Jeff Tsao, who proposed the comparative experiment. “Before these tests, our research in this direction was stopped before it could get started. The typical response was, ‘Are you kidding? The colour rendering quality of white light produced by diode lasers would be terrible.’ So finally it seemed like, in order to go further, one really had to answer this very basic question first.”
Little research had been done on diode lasers for lighting because of a widespread assumption that human eyes would find laser-based white light unpleasant. It would comprise four extremely narrow-band wavelengths — blue, red, green, and yellow — and would be very different from sunlight, for example, which blends a wide spectrum of wavelengths with no gaps in between. Diode laser light is also ten times narrower than that emitted by LEDs.

The tests — a kind of high-tech market research — took place at the University of New Mexico's Centre for High Technology Materials. Forty volunteers were seated, one by one, before two near-identical scenes of fruit in bowls, housed in adjacent chambers. Each bowl was randomly illuminated by warm, cool, or neutral white LEDs, by a tungsten-filament incandescent light bulb, or by a combination of four lasers (blue, red, green, yellow) tuned so their combination produced a white light.
The experiment proceeded like an optometrist’s exam: the subjects were asked: Do you prefer the left picture, or the right? All right, how about now?
The viewers were not told which source provided the illumination. They were instructed merely to choose the lit scene with which they felt most comfortable. The pairs were presented in random order to ensure that neither sequence nor tester preconceptions played roles in subject choices, but only the lighting itself.
The result was that there was a statistically significant preference for the diode-laser-based white light over the warm and cool LED-based white light, Wierer said, but no statistically significant preference between the diode-laser-based and either the neutral LED-based or incandescent white light.
Diode lasers are slightly more expensive to fabricate than LEDs because their substrates must have fewer defects than those used for LEDs. But such substrates are likely to become more available in the future because they improve LED performance as well.

Also, while blue diode lasers have good enough performance that the automaker BMW is planning their use in its vehicles’ next-generation white headlights, performance of red diode lasers is not as good, and yellow and green have a ways to go before they are efficient enough for commercial lighting opportunities.
Still, says Tsao, a cooperative approach might use blue and red diode lasers with yellow and green LEDs. Or blue diode lasers could be used to illuminate phosphors — the technique currently used by fluorescent lights and the current generation of LED-based white light — to create desirable shades of light.
The result makes possible still further efficiencies for the multibillion dollar lighting industry. The so-called ‘‘smart beams’’ can be adjusted on site for personalized color renderings for health reasons and, because they are directional, also can provide illumination precisely where it’s wanted.
By Nick Flaherty www.flaherty.co.uk

Sandia researcher Jeff Tsao examines the set-up used to test diode lasers as an alternative to LED lighting. Skeptics felt laser light would be too harsh to be acceptable. Research by Tsao and colleagues suggests the skeptics were wrong. (Photo by Randy Montoya).
Researchers at Sandia Labs in the US have shown that laser diodes can be just as effective for lighting systems as LEDs.
The finding is important as LEDs lose efficiency at electrical currents above 0.5 amps while the efficiency of the diode laser improves at higher currents, providing even more light than LEDs at higher amperages.
“What we showed is that diode lasers are a worthy path to pursue for lighting,” said Sandia researcher Jeff Tsao, who proposed the comparative experiment. “Before these tests, our research in this direction was stopped before it could get started. The typical response was, ‘Are you kidding? The colour rendering quality of white light produced by diode lasers would be terrible.’ So finally it seemed like, in order to go further, one really had to answer this very basic question first.”
Little research had been done on diode lasers for lighting because of a widespread assumption that human eyes would find laser-based white light unpleasant. It would comprise four extremely narrow-band wavelengths — blue, red, green, and yellow — and would be very different from sunlight, for example, which blends a wide spectrum of wavelengths with no gaps in between. Diode laser light is also ten times narrower than that emitted by LEDs.

In the test setup, similar bowls of fruit were placed in a lightbox with a divider in the middle. In this photo, the bowl on one side was illuminated by a diode laser light and the other was lit by a standard incandescent bulb. The aesthetic quality of diode laser lighting (left bowl) compares favorably with standard incandescent lighting (right). (Photo by Randy Montoya).
The tests — a kind of high-tech market research — took place at the University of New Mexico's Centre for High Technology Materials. Forty volunteers were seated, one by one, before two near-identical scenes of fruit in bowls, housed in adjacent chambers. Each bowl was randomly illuminated by warm, cool, or neutral white LEDs, by a tungsten-filament incandescent light bulb, or by a combination of four lasers (blue, red, green, yellow) tuned so their combination produced a white light.
The experiment proceeded like an optometrist’s exam: the subjects were asked: Do you prefer the left picture, or the right? All right, how about now?
The viewers were not told which source provided the illumination. They were instructed merely to choose the lit scene with which they felt most comfortable. The pairs were presented in random order to ensure that neither sequence nor tester preconceptions played roles in subject choices, but only the lighting itself.
The result was that there was a statistically significant preference for the diode-laser-based white light over the warm and cool LED-based white light, Wierer said, but no statistically significant preference between the diode-laser-based and either the neutral LED-based or incandescent white light.
Diode lasers are slightly more expensive to fabricate than LEDs because their substrates must have fewer defects than those used for LEDs. But such substrates are likely to become more available in the future because they improve LED performance as well.

Four laser beams — yellow, blue, green and red — converge to produce a pleasantly warm white light. Results suggest that diode-based lighting could be an attractive alternative to increasingly popular LED lighting, themselves an alternative to compact-florescent lights and incandescent bulbs. (Photo by Randy Montoya).
Also, while blue diode lasers have good enough performance that the automaker BMW is planning their use in its vehicles’ next-generation white headlights, performance of red diode lasers is not as good, and yellow and green have a ways to go before they are efficient enough for commercial lighting opportunities.
Still, says Tsao, a cooperative approach might use blue and red diode lasers with yellow and green LEDs. Or blue diode lasers could be used to illuminate phosphors — the technique currently used by fluorescent lights and the current generation of LED-based white light — to create desirable shades of light.
The result makes possible still further efficiencies for the multibillion dollar lighting industry. The so-called ‘‘smart beams’’ can be adjusted on site for personalized color renderings for health reasons and, because they are directional, also can provide illumination precisely where it’s wanted.
Related articles
- BMW To Replace LED Lights With Laser Headlights (mannynorte.wordpress.com)
- More efficient 'laser light bulbs' could be the new LED (dvice.com)
Thursday, October 27, 2011
ARM moves into 64bit
Prototype systems using ARMv8 in 2014
By Nick Flaherty www.flaherty.co.uk
Cambridge processor core designer ARM has disclosed technical details of its new ARMv8 architecture, the first ARM architecture to include a 64bit instruction set. ARMv8 extends virtual addressing but keeps the backward compatibility with the 32bit ARMv7 architecture which is used for cores such as the Cortex-A9 and Cortex-A15 processors.
The ARM architecture spans the full range of electronic devices and equipment, from tiny sensors through to large scale infrastructure equipment but the move to 64bit processing will expand the reach of ARM processors into consumer and enterprise applications.
By Nick Flaherty www.flaherty.co.uk
Cambridge processor core designer ARM has disclosed technical details of its new ARMv8 architecture, the first ARM architecture to include a 64bit instruction set. ARMv8 extends virtual addressing but keeps the backward compatibility with the 32bit ARMv7 architecture which is used for cores such as the Cortex-A9 and Cortex-A15 processors.
The ARM architecture spans the full range of electronic devices and equipment, from tiny sensors through to large scale infrastructure equipment but the move to 64bit processing will expand the reach of ARM processors into consumer and enterprise applications.
The ARMv8 architecture consists of two main execution states, AArch64 and AArch32. The AArch64 execution state introduces a new instruction set, A64 for 64-bit processing. The AArch32 state supports the existing ARM instruction set. The key features of the current ARMv7 architecture, including TrustZone, virtualization and the NEON SIMD instructions are maintained or extended in the ARMv8 architecture.
“With our increasingly connected world, the market for 32bit processing continues to expand and evolve creating new opportunities for 32bit ARMv7 based processors in embedded, real-time and open application platforms.” said Mike Muller, CTO at ARM. “We believe the ARMv8 architecture is ideally suited to enable the ARM partnership to continue to grow in 32bit application spaces and bring diverse, innovative and energy-efficient solutions to 64bit processing markets.”
The ARM compiler and Fast Models with ARMv8 support have already been made available to key ecosystem partners. Initial support for a range of open source operating systems, applications and third-party tools is already in development.
A key opportunity for ARM is the ability to run the latest 64bit versions of Microsoft Windows operating system. "ARM is an important partner for Microsoft," said KD Hallman, general manager at Microsoft. "The evolution of ARM to support a 64bit architecture is a significant development for ARM and for the ARM ecosystem. We look forward to witnessing this technology's potential to enhance future ARM-based solutions."
Chip vendors will also be able to make use of the 64bit capabilities in applications such as tablet PCs, where NVIDIA is pushing hard with its Tegra ARM-based family. “The combination of NVIDIA’s leadership in energy-efficient, high-performance processing and the new ARMv8 architecture will enable game-shifting breakthroughs in devices across the full range of computing – from smartphones through to supercomputers,” said Dan Vivoli, senior vice president at NVIDIA.
“With our increasingly connected world, the market for 32bit processing continues to expand and evolve creating new opportunities for 32bit ARMv7 based processors in embedded, real-time and open application platforms.” said Mike Muller, CTO at ARM. “We believe the ARMv8 architecture is ideally suited to enable the ARM partnership to continue to grow in 32bit application spaces and bring diverse, innovative and energy-efficient solutions to 64bit processing markets.”
The ARM compiler and Fast Models with ARMv8 support have already been made available to key ecosystem partners. Initial support for a range of open source operating systems, applications and third-party tools is already in development.
A key opportunity for ARM is the ability to run the latest 64bit versions of Microsoft Windows operating system. "ARM is an important partner for Microsoft," said KD Hallman, general manager at Microsoft. "The evolution of ARM to support a 64bit architecture is a significant development for ARM and for the ARM ecosystem. We look forward to witnessing this technology's potential to enhance future ARM-based solutions."
Chip vendors will also be able to make use of the 64bit capabilities in applications such as tablet PCs, where NVIDIA is pushing hard with its Tegra ARM-based family. “The combination of NVIDIA’s leadership in energy-efficient, high-performance processing and the new ARMv8 architecture will enable game-shifting breakthroughs in devices across the full range of computing – from smartphones through to supercomputers,” said Dan Vivoli, senior vice president at NVIDIA.
“The current growth trajectory of data centers, driven by the viral explosion of social media and cloud computing, will continue to accelerate. The ability to handle this data increase with energy-efficient solutions is vital,” said Vinay Ravuri, vice president and general manager of AppliedMicro’s Processor Business Unit. “The ARM 64-bit architecture provides the right balance of performance, efficiency and cost to scale to meet these growing demands and we are very excited to be a leading partner in implementing solutions based on the ARMv8 architecture.”
The ARMv8 architecture specifications describing all aspects of the ARMv8 architecture are available now to partners under license. ARM will disclose processors based on ARMv8 during 2012, with consumer and enterprise prototype systems expected in 2014.
The ARMv8 architecture specifications describing all aspects of the ARMv8 architecture are available now to partners under license. ARM will disclose processors based on ARMv8 during 2012, with consumer and enterprise prototype systems expected in 2014.
Related articles
- ARM's new core lets Applied Micro make cloud servers (gigaom.com)
- The ARM v. Intel fight just got good (gigaom.com)
Sensor array to test breath for multiple sclerosis
Key development could replace costly or painful tests
By Nick Flaherty www.flaherty.co.uk
Researchers in Israel have developed a new sensor array that can diagnose MS by analysing the determined chemical compounds that appear in the breath of MS patients. Instead of using painful tests such as spinal tap or expensive ones such as an MRI, the team at the Laboratory of Nanomaterial-based Devices (LNBD) identified volatile organic compounds that can be associated with MS from exhaled breath. LNBD is part of the Israel Institute of Technology in Haifa
By Nick Flaherty www.flaherty.co.uk
Researchers in Israel have developed a new sensor array that can diagnose MS by analysing the determined chemical compounds that appear in the breath of MS patients. Instead of using painful tests such as spinal tap or expensive ones such as an MRI, the team at the Laboratory of Nanomaterial-based Devices (LNBD) identified volatile organic compounds that can be associated with MS from exhaled breath. LNBD is part of the Israel Institute of Technology in Haifa
Using the sensors, the researchers carried out a proof-of-concept clinical study on 34 MS patients and 17 healthy volunteers and found that the developed sensors are just as accurate as a spinal tap but without the pain or the risk of side effects.
"The results presented here open new frontiers in the development of fast, noninvasive and inexpensive medical diagnosis tools for detection of chronic neurological diseases," said Prof Hossam Haick at LNBD. "The results could serve as a launching pad for the discrimination between different subphases of stages of multiple sclerosis as well as for the identification of multiple sclerosis patients who would respond well to immunotherapy." A large clinical study with the reported sensors is underway and will be reported in the future.
Related articles
Wednesday, October 26, 2011
Atmel samples its Cortex M4 microcontroller as battle heats up
Fifth-generation family with up to 2MB of flash and 192KB of SRAM
By Nick Flaherty www.flaherty.co.uk
Atmel has weighed into the battle around the ARM Cortex-M4 microcontroller with its SAM4S16 that is now sampling to lead customers.
By Nick Flaherty www.flaherty.co.uk
Atmel has weighed into the battle around the ARM Cortex-M4 microcontroller with its SAM4S16 that is now sampling to lead customers.
This is its first M4 device, and challenges NXP, STMicroelectronics and TI who all have M4 parts. Freescale yesterday announced plans for an M4 device with an A5 applications processor combined. Throughout 2012, the Atmel SAM3 and SAM4 families will quadruple the Atmel Cortex-M range to nearly 200 ARM-based microcontrollers and will include devices with on-chip memory densities of up to 2MB Flash and 192KB of SRAM and extensive peripherals including high-speed USB. Several devices its new M4 Flash family will also include a floating point unit (FPU) to take on the Digital Signal Controller (DSC) market.
The SAM4S16 device operates at a maximum speed of 120MHz with 1024KB of flash and 128KB of SRAM with a full peripheral set featuring full-speed USB, high-speed SDIO/SD/MMC, UARTs, TWIs, SPI, I2S, 12-bit ADC and DAC and an external bus interface supporting PSRAM, LCD modules, NOR Flash, and NAND Flash. The device offers hardware code protection and supports Atmel popular QTouch technology for touch button, slider and wheel functionality targeting the industrial markets. It is sampling now with production in Q2 next year.
The DSC market requires the combination of high-efficiency digital signal processing and industry-leading microcontroller technology, which replaces a two-chip MCU and DSP implementation and reduces the overall system cost. Selected members of the Atmel SAM4 family include the Cortex-M4 processor and a floating point unit (FPU). Running the ARM DSP library, the SAM4 family doubles execution speed for fixed-point and 10X for floating-point DSP algorithms over the Cortex-M3 SAM3 family.
The SAM4 flash microcontrollers, planned for market introduction in 2012, will offer up to 2MB Flash and 192KB of SRAM, peripherals that include high-speed USB OTG with on-chip transceiver, Ethernet and CAN and an external bus interface supporting PSRAM, LCD modules, NOR Flash, and NAND Flash. All devices integrate security features to protect on-chip program memories using innovative hardware code lock security technology, and the family is aimed at applications in the medical, power management, motor control, smart metering, industrial automation and embedded audio segments, the same target markets as the other vendors.
"As one of the early ARM licensees, we are excited that Atmel continues to expand their product offering with the Cortex-M4, the latest processor in the Cortex-M family, to target the high-performance microcontroller and DSC markets," said Lance Howarth, executive vice president of marketing at ARM. "Using the new SAM4 microcontroller products, designers will benefit from the solid product family roadmap that offers scalability for optimized price and performance across consumer, computing and industrial applications."
"Designers using ARM processor-based microcontrollers continue to push the performance limit for their applications," said Jacko Wilbrink, senior marketing director of ARM products at Atmel. "The fifth-generation SAM4S family and previous-generation families offer the right combination of features and capabilities to ensure they have the optimal product for their applications. We are committed to offering the right product mix to ensure our designers have the right combination and price-points to develop innovative, differentiated products."
The DSC market requires the combination of high-efficiency digital signal processing and industry-leading microcontroller technology, which replaces a two-chip MCU and DSP implementation and reduces the overall system cost. Selected members of the Atmel SAM4 family include the Cortex-M4 processor and a floating point unit (FPU). Running the ARM DSP library, the SAM4 family doubles execution speed for fixed-point and 10X for floating-point DSP algorithms over the Cortex-M3 SAM3 family.
The SAM4 flash microcontrollers, planned for market introduction in 2012, will offer up to 2MB Flash and 192KB of SRAM, peripherals that include high-speed USB OTG with on-chip transceiver, Ethernet and CAN and an external bus interface supporting PSRAM, LCD modules, NOR Flash, and NAND Flash. All devices integrate security features to protect on-chip program memories using innovative hardware code lock security technology, and the family is aimed at applications in the medical, power management, motor control, smart metering, industrial automation and embedded audio segments, the same target markets as the other vendors.
"As one of the early ARM licensees, we are excited that Atmel continues to expand their product offering with the Cortex-M4, the latest processor in the Cortex-M family, to target the high-performance microcontroller and DSC markets," said Lance Howarth, executive vice president of marketing at ARM. "Using the new SAM4 microcontroller products, designers will benefit from the solid product family roadmap that offers scalability for optimized price and performance across consumer, computing and industrial applications."
"Designers using ARM processor-based microcontrollers continue to push the performance limit for their applications," said Jacko Wilbrink, senior marketing director of ARM products at Atmel. "The fifth-generation SAM4S family and previous-generation families offer the right combination of features and capabilities to ensure they have the optimal product for their applications. We are committed to offering the right product mix to ensure our designers have the right combination and price-points to develop innovative, differentiated products."
Related articles
- Ingenious architectural features allow ST to extract maximum performance from new microcontroller family based on ARM Cortex-M4. Cost: less than 6 bucks in 1000s (eda360insider.wordpress.com)
- http://embeddedblog.blogspot.com/2010/04/nxp-develops-new-class-of-digital.html
- http://embeddedblog.blogspot.com/2011/09/cortex-micro-market-hots-up-as-stmicro.html
- http://embeddedblog.blogspot.com/2011/10/freescale-combines-arm-cortex-m4-and-a5.html
Libelium runs Bluetooth sensors over Zigbee for traffic monitoring
Real time system uses double radio feature in Waspmote sensor board
Spanish startup Libelium has developed a Vehicle Traffic Monitoring Platform as part of its Smart Cities solution that combined Bluetooth sensors in a Zigbee network.
The platform is capable of sensing the flow of Bluetooth devices in a given street, roadway or passageway while differentiating hands-free car kits from pedestrian phones. Sensor data is then transferred by a multi-hop ZigBee radio, via an internet gateway, to a server. The traffic measurements can then be analysed to address congestion of either vehicle or pedestrian traffic.
The Platform uses the new Expansion Radio Board for Waspmote which allows two different types of radio to be connected at the same time. In this case a Bluetooth radio is used as a sensor to make inquiries and to detect nearby devices, while the ZigBee radio sends the information collected using its multi-hop capabilities. Six power levels allow sensor operators to set an “inquiry zone” from between 10 and 50 metres and Adaptive Frequency Hopping (AFH) allows the Bluetooth radio to identify channels already in use by ZigBee and WiFi devices and thus avoid interference.
“With widespread use of Bluetooth devices both vehicular and pedestrian traffic can be monitored anonymously by detecting and tracking the MAC addresses of such devices,” said Libelium’s CTO David Gascón. “The platform can help drivers avoid congested roads through provision of real time warnings on electronic displays or via smartphone applications”. Similarly, pedestrian monitoring enables improvements to be made in the operation of airports, shopping centres, tourist attractions and sports stadiums. Such data can even be used to assess the suitability of emergency evacuation plans or even to detect ‘hot’ routes inside commercial centres for marketing and product placing purposes.
Related articles
- iPhone 4S a 'Bluetooth Smart Ready' device as Bluetooth 4.0 gets rebranded (9to5mac.com)
- Bluetooth Smart announced, iPhone 4S is ready (tuaw.com)
- Bluetooth SIG Intros New Bluetooth 4.0 Low Energy Branding (phonescoop.com)
- Bluetooth SIG re-brands 4.0 to differentiate devices (electronista.com)
- Bluetooth smartens up in low-energy makeover (go.theregister.com)
- Low Power ZigBee Smart Energy Module Targets Metering and Control (prnewswire.com)
Tuesday, October 25, 2011
Freescale combines ARM Cortex M4 and A5 cores in single chip
For simultaneous, deterministic real-time control and graphics-rich applications processing for industrial and automotive applications
By Nick Flaherty www.flaherty.co.uk
Freescale Semiconductor has combined a high-performance ARM microcontroller (MCU) and an energy-efficient applications processor for simultaneous real-time control, graphics-rich apps processing and flexible connectivity.
By Nick Flaherty www.flaherty.co.uk
Freescale Semiconductor has combined a high-performance ARM microcontroller (MCU) and an energy-efficient applications processor for simultaneous real-time control, graphics-rich apps processing and flexible connectivity.
The asymmetrical-multiprocessing-architecture platform incorporates an ARM Cortex-M4 microcontroller and a Cortex-A5 processor as the basis of a new family of devices alongside the in the ARM-based Kinetis and i.MX ranges.
"With this platform, Freescale is dramatically simplifying the development challenge of adding applications processing to a system designed for real-time control," said Reza Kazerounian, senior vice president and general manager of Freescale's Microcontroller Solutions Group. "We're the first to provide extensive MCU and apps processing capabilities in an integrated hardware-software based solution, setting a new standard for the design of systems that need rich apps in real time."
The platform offers a wide range of peripherals from analogue-to-digital converters, digital-to-analogue converters, programmable timers, on-chip memory and flexible memory interfaces to high-speed communication interfaces and security.
On top of the hardware product platform, Freescale will provide an inter-process communication (IPC) application programming interface (API). Designers will be able to use the hardware and IPC API to create differentiated applications without worrying about how the high-level OS (like Linux) and RTOS (such as MQX) communicate with each other.
Industrial systems are becoming more complex, with increasing needs for sophisticated human-machine interfaces (HMIs), connectivity options and compliance with safety standards, all while operating consistently and predictably as they execute tasks. Different computing paradigms are needed to provide HMI functionality and deterministic, real-time control. Application developers face the challenge of seamlessly integrating these diverse technologies in a single system.
"With this platform, Freescale is dramatically simplifying the development challenge of adding applications processing to a system designed for real-time control," said Reza Kazerounian, senior vice president and general manager of Freescale's Microcontroller Solutions Group. "We're the first to provide extensive MCU and apps processing capabilities in an integrated hardware-software based solution, setting a new standard for the design of systems that need rich apps in real time."
The platform offers a wide range of peripherals from analogue-to-digital converters, digital-to-analogue converters, programmable timers, on-chip memory and flexible memory interfaces to high-speed communication interfaces and security.
On top of the hardware product platform, Freescale will provide an inter-process communication (IPC) application programming interface (API). Designers will be able to use the hardware and IPC API to create differentiated applications without worrying about how the high-level OS (like Linux) and RTOS (such as MQX) communicate with each other.
Industrial systems are becoming more complex, with increasing needs for sophisticated human-machine interfaces (HMIs), connectivity options and compliance with safety standards, all while operating consistently and predictably as they execute tasks. Different computing paradigms are needed to provide HMI functionality and deterministic, real-time control. Application developers face the challenge of seamlessly integrating these diverse technologies in a single system.
The ARM Cortex-A5 processor provides an optimal combination of power, performance and price for embedded automotive, consumer and industrial devices. It provides a high-value migration path for existing ARM926EJ-S and ARM1176JZ-S processor designs. It achieves better performance than the ARM1176JZ-S and better power and energy efficiency than the ARM926EJ-S, and it is fully compatible with other Cortex-A cores.
"Industrial applications like factory automation, medical devices and appliances are starting to incorporate more connectivity and sophisticated GUIs to give end users a simpler, safer and more consumer-like experience. Adding these features to a real-time system has traditionally been done by adding an applications processor on top of a real-time controller, which can be a real challenge for industrial system developers," said Tony Massimini, chief of technology for Semico Research. "Freescale is taking a unique approach with a new product platform that merges an apps processor and real-time controller into one device to reduce complexity and cost, combined with a 'software before silicon' strategy for earlier software development."
Freescale plans to offer the initial software development platform for its new product platform later this quarter and intends to announce the first industrial-focused eMPU product families based on the new architecture in Q1 2012. Derivatives of the new platform are planned for the automotive infotainment market. Automotive device details will be announced in Q2 2012.
Related articles
Microchip launches its smallest, lowest-cost PIC32 microcontrollers
First PIC32s to offer on-board peripherals for audio playback and capacitive touch
By Nick Flaherty www.flaherty.co.uk
Microchip has launched a new series of low pin-count 32-bit PIC32 microcontrollers (MCUs) that provide 61 DMIPS of performance, in packages as small as 5 mm x 5 mm, for space-constrained and cost-sensitive designs. The PIC32 ‘MX1’ and ‘MX2’ MCUs are the company's smallest and lowest-cost PIC32 microcontrollers, and are the first PIC32s to feature dedicated audio and capacitive-sensing peripherals. These new MCUs include a host of additional features that make them suitable for applications in the consumer, industrial, medical and automotive markets.
The parts are rated for operation up to 105°C and the MX1 and MX2 include up to 32 KB of Flash, and 8 KB of SRAM; two I2S interfaces for audio processing; Microchip’s Charge Time Measurement Unit (CTMU) peripheral for adding mTouch capacitive touch buttons or advanced sensors; and an 8-bit Parallel Master Port (PMP) interface for graphics or external memory.
As you would expect from Microchip the devices also feature an on-chip 10-bit, 1 Msps, 13-channel Analogue-to-Digital Converter (ADC), as well as USB 2.0 and serial-communications peripherals. The MCUs introduce eight new packages, from 28- to 44-pins, with sizes down to 5 mm x 5 mm and a 0.5 mm pitch, to the PIC32 MCU product line. Microchip’s Peripheral Pin Select feature further eases design effort by allowing developers to ‘remap’ most of the chip’s digital-function pins to significantly simplify layout and design modifications.
For easy migration, the PIC32 MX1 and MX2 devices are compatible with Microchip’s 16-bit PIC24F product line, and are supported by the MPLAB X IDE development environment.
The parts are available in 28-pin SPDIP, SSOP, SOIC and QFN packages; a 36-pin VTLA package with a .5 mm pin pitch; and in 44-pin QFN, VTLA and TQFP packages.
- Microchip has also launched the MPLAB Starter Kit (DM320013), priced at $109.99, for the new MCUs. The USB-powered kit features a PIC32MX220F032 with 32 KB of Flash and 8 KB RAM, as well as a 2-inch colour TFT display (220 x 176 pixel), capacitive-touch slider and buttons, SD-card storage, and 24-bit audio playback. In addition, there is a new $25 Evaluation Board (AC323027)
Related articles
- Microchip integrates new peripherals in small-package MCUs (electronics-lab.com)
- PIC18 Microcontroller Analog to Digital Converter with Microchip C18 Compiler (electronics-lab.com)
- PIC vs. AVR (ladyada.net)
- Introduction to Microchip PIC Assembler Language (electronics-lab.com)
- Introduction to the Microchip PIC C Programming (electronics-lab.com)
Monday, October 24, 2011
Variscite aims for industry's fastest ARM module

Dual core Cortex-A9 SoM provides Atom performance
By Nick Flaherty www.flaherty.co.uk
Israeli embedded board maker Variscite is aiming to provided the industry's fastest ARM System-on-module (SoM) by using a OMAP4 1.5GHz dual core processor from Texas Instruments.
Using TI's OMAP4460 mobile processor fives VAR-SOM-OM44 board a wide range of target markets requiring rich multimedia functionality, advanced graphics and video capabilities, together with high-processing power. Compact, cost effective and power efficient, the VAR-SOM-OM44 secures an Intel's Atom performance level.
"We wanted to introduce a level of performance previously unavailable on ARM-based embedded solutions," said Oren Rokach, Variscite's Chief System Architect. "This ground breaking addition to our System on Module portfolio combines unique interface flexibility with advanced power management, providing the ultimate solution for a variety of applications."
The OMPA4 processor includes PowerVR 2D and 3D graphics acceleration from Imagination Technologies and supports leading operating systems including the Ice Cream Sandwich latest version of Android alongside more embedded OSs.
"We are proud to work with Variscite to provide TI's smart multicore OMAP 4 platform to OEMs developing products that require the highest-performance at ultra low power. Our relationship with Variscite guarantees full access and support for these customers, along with the ability to leverage the OMAP platform's industry-leading features and capabilities. This reiterates our team's goal of bringing extraordinary user experiences to game-changing end devices with OMAP processors inside," said Michael Schoonover, Business Development Director, Enterprise Business Line - Wireless Business Unit.
Key features:
"We are proud to work with Variscite to provide TI's smart multicore OMAP 4 platform to OEMs developing products that require the highest-performance at ultra low power. Our relationship with Variscite guarantees full access and support for these customers, along with the ability to leverage the OMAP platform's industry-leading features and capabilities. This reiterates our team's goal of bringing extraordinary user experiences to game-changing end devices with OMAP processors inside," said Michael Schoonover, Business Development Director, Enterprise Business Line - Wireless Business Unit.
Key features:
- TI's OMAP4460 smart multicore mobile processor, with two ARM Cortex-A9 MPCores running at up to 1.5GHz each.
- 1GB dual-channel LPDDR2.
- Full HD 1080P and stereoscopic-3D 1080P video encoding/decoding capability.
- Integrated Imagination PowerVR SGX540 2D/3D hardware accelerator.
- Simultaneous multiple display support.
- Gigabit Ethernet.
- TI WiLink 6.0 single-chip connectivity for Wi-Fi and Bluetooth
- USB 2.0: 2xHost, OTG.
- Audio In/Out.
- Camera interface.
Related articles
- Texas Instruments OMAP 5 processor demoed [Videos] (slashgear.com)
- Android 4.0 Ice Cream Sandwich runs on Texas Instruments OMAP4460 (armdevices.net)
Friday, October 21, 2011
Hard drive shortage opens up market for solid state drives
Flooding in Thailand interrupts HDD supplies
By Nick Flaherty www.flaherty.co.uk
Suppliers in the UK and around the world have had their allocation of hard disk drives for the next quarter cancelled, driving up prices and creating an opportunity for solid state drive suppliers.
The shipments have been cancelled as a result of the severe flooding in Thailand, as all three large suppliers - Seagate, Hitachi GST and Western Digital assembly plants have had to close. This is driving up prices by at least 20% for traditional drives. Because SSDs are a less mature market and require less precision assembly they have been unaffected, bringing prices closer together.
By Nick Flaherty www.flaherty.co.uk
Suppliers in the UK and around the world have had their allocation of hard disk drives for the next quarter cancelled, driving up prices and creating an opportunity for solid state drive suppliers.
The shipments have been cancelled as a result of the severe flooding in Thailand, as all three large suppliers - Seagate, Hitachi GST and Western Digital assembly plants have had to close. This is driving up prices by at least 20% for traditional drives. Because SSDs are a less mature market and require less precision assembly they have been unaffected, bringing prices closer together.
Related articles
- Thailand floods raising possibility of global HDD shortage (infoworld.com)
- Thailand floods prompt fresh Pace warning (ft.com)
- Western Digital Extends Suspension of Operations in Thailand (pcworld.com)
- Western Digital extends suspension of operations in Thailand (macworld.com)
- Thailand Floods Could Be A Washout For Disk-Drive Companies (forbes.com)
Thursday, October 20, 2011
National Instruments Expands Smart Camera Family With Seven New Models

Atom processor provides colour and high resolution and IP67 for the first time
By Nick Flaherty www.flaherty.co.uk
National Instruments has added seven new models to its NI Smart Camera family, including colour and high-resolution options. The new NI 177x Smart Cameras feature a 1.6 GHz Intel Atom processor for increased processing power and an IP67 rating to protect the hardware from dust and water, making the cameras ideal for industrial inspection applications that require high-performance in a rugged form factor. The cameras also have a real-time operating system to deliver the reliability and determinism needed on a production floor.
Using the Intel Atom processor, the new cameras deliver processing speeds four times greater than other NI Smart Cameras. They also add new sensor options, including VGA, 1.3 MP and 2 MP in colour and monochrome as well as 5 MP in monochrome. The new sensor options make the cameras well suited for applications that require higher resolution image acquisition such as metrology and detection of small defects as well as colour imaging such as LED validation for electronics. The mechanical housing, M12 connectors and lens cover give the 177x Smart Cameras an IP67 rating, which makes the cameras dust- and water-resistant and suitable for environments with washdowns. The new cameras are the first National Instruments products to offer an IP67 rating.
The cameras include four digital input and four digital output lines and support several industrial communication protocols including RS232 (Serial, Modbus serial) and Ethernet (TCP/IP, Ethernet/IPModbus TCP). Using the signals generated from these networks, engineers can dynamically control lighting or cameras, synchronise with a conveyor belt, drive mechanisms for sorting parts or integrate the smart cameras with programmable logic controllers. The cameras also include a VGA video out connection for monitoring inspection images.
“National Instruments is excited to expand the NI Smart Camera family of products with new, high-performance cameras in a rugged form factor,” said Eric Starkloff, Vice President of Product Marketing at National Instruments. “What sets NI Smart Cameras apart, in addition to our exceptional hardware performance, is our software. Our vision software works with all types of hardware on the production floor, and this single platform approach helps our customers reduce maintenance and development costs.”
The 177x Smart Cameras are shipped with Vision Builder for Automated Inspection (AI) 2011 software, a menu-driven, interactive environment for configuring, benchmarking and deploying vision systems. Engineers can use the software to configure the camera, create custom user interfaces, acquire images, set up triggering and lighting, perform image processing steps and communicate results through I/O or industrial communication networks. The cameras can also be programmed using LabVIEW graphical programming and the NI Vision Development Module for advanced customisation and integration with other National Instruments hardware. Features introduced with the 2011 versions of Vision Builder AI and the NI Vision Development Module include new calibration tools with improved accuracy and the ability to save single camera calibration parameters for easy reuse; stronger data matrix decoding; morphological reconstruction; structural similarity (SSIM) index for video quality analysis; and new calipher algorithm feature for metrology.
“National Instruments is excited to expand the NI Smart Camera family of products with new, high-performance cameras in a rugged form factor,” said Eric Starkloff, Vice President of Product Marketing at National Instruments. “What sets NI Smart Cameras apart, in addition to our exceptional hardware performance, is our software. Our vision software works with all types of hardware on the production floor, and this single platform approach helps our customers reduce maintenance and development costs.”
The 177x Smart Cameras are shipped with Vision Builder for Automated Inspection (AI) 2011 software, a menu-driven, interactive environment for configuring, benchmarking and deploying vision systems. Engineers can use the software to configure the camera, create custom user interfaces, acquire images, set up triggering and lighting, perform image processing steps and communicate results through I/O or industrial communication networks. The cameras can also be programmed using LabVIEW graphical programming and the NI Vision Development Module for advanced customisation and integration with other National Instruments hardware. Features introduced with the 2011 versions of Vision Builder AI and the NI Vision Development Module include new calibration tools with improved accuracy and the ability to save single camera calibration parameters for easy reuse; stronger data matrix decoding; morphological reconstruction; structural similarity (SSIM) index for video quality analysis; and new calipher algorithm feature for metrology.
Wednesday, October 19, 2011
Portable Multimedia: iPhone 4S has new RF front end, altered Qualcomm modem and a throttled apps processor finds teardown
New iPhone4S teardown shows new RF front end, altered Qualcomm modem and a throttled apps processor
Portable Multimedia reports the latest teardown from ABI Research that looks more closely at the iPhone4S
Portable Multimedia reports the latest teardown from ABI Research that looks more closely at the iPhone4S
Tuesday, October 18, 2011
Scientists create logic gates from bacteria and DNA
Research at Imperial College London paves the way for new generation of biological computing devices
By Nick Flaherty www.flaherty.co.uk
Scientists at Imperial College have successfully demonstrated that they can build some of the basic components for digital devices out of bacteria and DNA.
Published in Nature Communications, the researchers have demonstrated that they can build logic gates out of harmless gut bacteria and DNA. These are the most advanced biological logic gates ever created.
"Logic gates are the fundamental building blocks in silicon circuitry that our entire digital age is based on," said Professor Richard Kitney, co-author of the paper from the Centre for Synthetic Biology and Innovation and the Department of Bioengineering at Imperial College London. "Without them, we could not process digital information. Now that we have demonstrated that we can replicate these parts using bacteria and DNA, we hope that our work could lead to a new generation of biological processors, whose applications in information processing could be as important as their electronic equivalents."
Although still a long way off, the team suggest that these biological logic gates could one day form the building blocks in microscopic biological computers. Devices may include sensors that swim inside arteries, detecting the build up of harmful plaque and rapidly delivering medications to the affected zone. Other applications may include sensors that detect and destroy cancer cells inside the body and pollution monitors that can be deployed in the environment, detecting and neutralising dangerous toxins such as arsenic.
Previous research only proved that biological logic gates could be made. The team say that the advantage of their biological logic gates over previous attempts is that they behave more like their electronic counterparts. The new biological gates are also modular, which means that they can be fitted together to make different types of logic gates, paving the way for more complex biological processors to be built in the future.
In the new study, the researchers demonstrated how these biological logic gates worked. In one experiment, they showed how biological logic gates can replicate the way that electronic logic gates process information by either switching "on" or "off".
The scientists constructed a type of logic gate called an "AND Gate" from E.Coli bacteria with modified DNA that reprogrammed it to perform the same switching on and off process as its electronic equivalent when stimulated by chemicals.
The researchers were also able to demonstrate that the biological logic gates could be connected together to form more complex components in a similar way that electronic components are made. In another experiment, the researchers created a "NOT gate" and combined it with the AND gate to produce the more complex "NAND gate".
The next stage of the research will see the team trying to develop more complex circuitry that comprises multiple logic gates. One of challenges faced by the team is finding a way to link multiple biological logic gates together, similar to the way in which electronic logic gates are linked together, to enable complex processing to be carried out.
By Nick Flaherty www.flaherty.co.uk
Scientists at Imperial College have successfully demonstrated that they can build some of the basic components for digital devices out of bacteria and DNA.
Published in Nature Communications, the researchers have demonstrated that they can build logic gates out of harmless gut bacteria and DNA. These are the most advanced biological logic gates ever created.
"Logic gates are the fundamental building blocks in silicon circuitry that our entire digital age is based on," said Professor Richard Kitney, co-author of the paper from the Centre for Synthetic Biology and Innovation and the Department of Bioengineering at Imperial College London. "Without them, we could not process digital information. Now that we have demonstrated that we can replicate these parts using bacteria and DNA, we hope that our work could lead to a new generation of biological processors, whose applications in information processing could be as important as their electronic equivalents."
Although still a long way off, the team suggest that these biological logic gates could one day form the building blocks in microscopic biological computers. Devices may include sensors that swim inside arteries, detecting the build up of harmful plaque and rapidly delivering medications to the affected zone. Other applications may include sensors that detect and destroy cancer cells inside the body and pollution monitors that can be deployed in the environment, detecting and neutralising dangerous toxins such as arsenic.
Previous research only proved that biological logic gates could be made. The team say that the advantage of their biological logic gates over previous attempts is that they behave more like their electronic counterparts. The new biological gates are also modular, which means that they can be fitted together to make different types of logic gates, paving the way for more complex biological processors to be built in the future.
In the new study, the researchers demonstrated how these biological logic gates worked. In one experiment, they showed how biological logic gates can replicate the way that electronic logic gates process information by either switching "on" or "off".
The scientists constructed a type of logic gate called an "AND Gate" from E.Coli bacteria with modified DNA that reprogrammed it to perform the same switching on and off process as its electronic equivalent when stimulated by chemicals.
The researchers were also able to demonstrate that the biological logic gates could be connected together to form more complex components in a similar way that electronic components are made. In another experiment, the researchers created a "NOT gate" and combined it with the AND gate to produce the more complex "NAND gate".
The next stage of the research will see the team trying to develop more complex circuitry that comprises multiple logic gates. One of challenges faced by the team is finding a way to link multiple biological logic gates together, similar to the way in which electronic logic gates are linked together, to enable complex processing to be carried out.
World's First 1080p/30fps Video Analytics Solution on a Cyclone FPGA
Single-Chip for HD Video Analytics at 1080p/30fps for surveillance
By Nick Flaherty www.flaherty.co.uk
By Nick Flaherty www.flaherty.co.uk
Altera is expanding in high-definition (HD) video-surveillance with the world's first FPGA-based full-HD 1080p/(30 frames per second) 30fps video analytics on a Cyclone IV FPGA. Altera's single-chip solution provides a new level of video analytics performance, combining high throughput (60-Mpixel per second) with pixel precision detail not possible with traditional digital signal processing (DSP)-based approaches. The solution includes Eutecus' Multi-Core Video Analytics Engine (MVE) intellectual property (IP), which performs the analytics functions in the FPGA. Because this solution can be easily integrated into HD Internet protocol cameras, it is ideal for a variety of applications, including traffic surveillance that monitors accident detection, vehicle counting, lane-exit detection, stopped traffic, red-light violations and vehicles moving in the wrong direction.
This is the first and only solution capable of delivering the processing power required for full HD 1080p/30fps real-time video processing, says Altera.
The greater performance allows the user to track dozens of user-defined rules. For example, the user can define rules, configure alerts and remotely update rules for events they want detected, such as a person entering a room or a restricted area in an airport terminal or a building entrance. Video analytics offers surveillance customers the ability to monitor videos automatically, eliminating the need for a person to scan hours of footage to detect and determine specified events.The IP combines massively parallel algorithms and specialized coprocessors with multiple Altera Nios II cores integrated into a Cyclone IV FPGA. It also comes with a software GUI that allows designers to customize the event-detection parameters and rules for their specific applications. Eutecus' IP includes a robust application programming interface (API) that allows customers to interface with their own video management systems or develop their own custom GUI.
This is the first and only solution capable of delivering the processing power required for full HD 1080p/30fps real-time video processing, says Altera.
The greater performance allows the user to track dozens of user-defined rules. For example, the user can define rules, configure alerts and remotely update rules for events they want detected, such as a person entering a room or a restricted area in an airport terminal or a building entrance. Video analytics offers surveillance customers the ability to monitor videos automatically, eliminating the need for a person to scan hours of footage to detect and determine specified events.The IP combines massively parallel algorithms and specialized coprocessors with multiple Altera Nios II cores integrated into a Cyclone IV FPGA. It also comes with a software GUI that allows designers to customize the event-detection parameters and rules for their specific applications. Eutecus' IP includes a robust application programming interface (API) that allows customers to interface with their own video management systems or develop their own custom GUI.
The performance and flexibility of Altera's video analytics solution offers customers a unique benefit by eliminating the need to make tradeoffs between system performance and the number of rules running at the same time.
"With Altera's FPGA's unprecedented video processing capabilities coupled with Eutecus' MVE analytics technology, customers can track multiple objects with multiple rules in varying weather conditions in real time, giving customers a more powerful and flexible solution compared to existing technology. This solution can also be leveraged for other applications such as automotive driver assistance which includes rear view and surround view cameras," said Arun Iyengar, vice president of the military, industrial, and computer, consumer, and storage business units division at Altera.
"With Altera's FPGA's unprecedented video processing capabilities coupled with Eutecus' MVE analytics technology, customers can track multiple objects with multiple rules in varying weather conditions in real time, giving customers a more powerful and flexible solution compared to existing technology. This solution can also be leveraged for other applications such as automotive driver assistance which includes rear view and surround view cameras," said Arun Iyengar, vice president of the military, industrial, and computer, consumer, and storage business units division at Altera.
Monday, October 17, 2011
Antenna diversity comes to cost-sensitive consumer applications
Atmel RF's latest transceiver offers low-power, antenna diversity and AES security for ISM, IEEE 802.15.4 and ZigBee RF4CE
By Nick Flaherty www.flaherty.co.uk
Atmel has launched a new RF transceiver that brings antenna diversity into the high-volume consumer markets in the 2.4GHz ISM (Industrial, Scientific and Medical) band. The AT86RF232 transceiver includes all the necessary features to support the latest wireless applications in the consumer segment including excellent RF performance, lower power consumption, high-link budget and antenna diversity. The $1.60 device also supports ZigBee RF4CE, a specification designed to control a wide range of wireless consumer products including remote controls for home entertainment devices, human interface devices such as mice and keyboards, and 3D glasses.
By Nick Flaherty www.flaherty.co.uk
Atmel has launched a new RF transceiver that brings antenna diversity into the high-volume consumer markets in the 2.4GHz ISM (Industrial, Scientific and Medical) band. The AT86RF232 transceiver includes all the necessary features to support the latest wireless applications in the consumer segment including excellent RF performance, lower power consumption, high-link budget and antenna diversity. The $1.60 device also supports ZigBee RF4CE, a specification designed to control a wide range of wireless consumer products including remote controls for home entertainment devices, human interface devices such as mice and keyboards, and 3D glasses.
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| The AT86RF232 transceiver supports automatic antenna diversity and AES security in cost sensitive ISM applications |
Applications in the high-volume portable consumer segment, including key fobs, remote controls for toys and game consoles, require very low-power transceivers to extend the overall battery life of the device. The transceiver also supports automatic antenna diversity to improve RF performance and link reliability and includes onboard AES encryption for secure wireless end-to-end communication.
"With the growing high-volume consumer segment, manufacturers are looking for transceivers with low power, high RF performance and enhanced security at an attractive price-point to ensure a top-notch user experience," said Magnus Pedersen, product marketing director for microcontroller wireless solutions at Atmel. "The AT86RF232 transceiver addresses all these issues with the lowest power, antenna diversity, larger link budget and robust RF performance for this cost-sensitive market. This new device will enable a consumer to have a richer wireless experience for all the latest consumer applications."
The transceiver offers a voltage range of 1.8V to 3.6V, -100dBm in sensitivity and an output power of 3dBm for extended battery life in various applications. The device also offers a receiver current consumption of 11.8mA, transceiver current consumption of 13.8mA, antenna diversity and AES encryption. All these features are important to offer a robust wireless transceiver for high-volume consumer applications.
"With the growing high-volume consumer segment, manufacturers are looking for transceivers with low power, high RF performance and enhanced security at an attractive price-point to ensure a top-notch user experience," said Magnus Pedersen, product marketing director for microcontroller wireless solutions at Atmel. "The AT86RF232 transceiver addresses all these issues with the lowest power, antenna diversity, larger link budget and robust RF performance for this cost-sensitive market. This new device will enable a consumer to have a richer wireless experience for all the latest consumer applications."
The transceiver offers a voltage range of 1.8V to 3.6V, -100dBm in sensitivity and an output power of 3dBm for extended battery life in various applications. The device also offers a receiver current consumption of 11.8mA, transceiver current consumption of 13.8mA, antenna diversity and AES encryption. All these features are important to offer a robust wireless transceiver for high-volume consumer applications.
Tuesday, October 11, 2011
First fully recyclable electronic paper technology
The Industrial Technology Research Institute (ITRI) in Taiwan has developed the world's first electronic paper that can be fully recycled.
i2R e-Paper provides a re-writable, re-usable and environmentally friendly recyclable print medium that can be manufactured in a variety of sizes for a 300dpi screen that uses a thermal printer to store and transmit images.
i2R e-Paper provides a re-writable, re-usable and environmentally friendly recyclable print medium that can be manufactured in a variety of sizes for a 300dpi screen that uses a thermal printer to store and transmit images.
This will limit waste on short-lived business initiatives such as advertising banners, corporate visitor ID badges, transit passes, and museum or parking lot tickets. In the future, the technology may be used for producing digital books and pictorials without restriction on length, wall banners, large size electronic bulletin boards and other innovative applications. It is highly flexible and bendable. Water solvent-based marker pens can be used to note, mark or draw on the flexible e-paper as it is typically done on paper computer printouts. The markers can then be washed off easily.
The e-paper's special green energy conserving display technology -- a flexible cholesteric liquid crystal panel -- is completely recyclable and requires only heat to store and transmit images, without using expensive inks. i2R e-Paper delivers a 300 dpi high-resolution image that remains crisp until users decide to re-use the e-paper. It is both eco-friendly and re-writable up to 260 times.
i2R e-Paper, whether note card or banner roll size, does not consume electricity to maintain an image. To print and change content, users simply need a thermal printer fitted with a thermal head. Heat generated from the thermal head uses minimal power consumption and interacts with the environmentally friendly composition of the e-Paper to capture an image. Re-using the i2R e-Paper is as easy as putting it back into any thermal printer device. The old image is removed and replaced with a new one -- no ink, no toner and no paper are consumed.
Green breakthrough: first fully recyclable electronic paper technology:
By Nick Flaherty www.flaherty.co.uk
i2R e-Paper, whether note card or banner roll size, does not consume electricity to maintain an image. To print and change content, users simply need a thermal printer fitted with a thermal head. Heat generated from the thermal head uses minimal power consumption and interacts with the environmentally friendly composition of the e-Paper to capture an image. Re-using the i2R e-Paper is as easy as putting it back into any thermal printer device. The old image is removed and replaced with a new one -- no ink, no toner and no paper are consumed.
Green breakthrough: first fully recyclable electronic paper technology:
By Nick Flaherty www.flaherty.co.uk
Altera integrates dual core ARM A9 processor into 28nm FPGA
By Nick Flaherty www.flaherty.co.uk
Altera has launched a family of ARM-based SoC FPGAs, integrating 28-nm Cyclone V and Arria V FPGA fabric, a dual-core ARM Cortex-A9 MPCore processor, error correcting code (ECC) protected memory controllers, peripherals and high-bandwidth interconnect into a single chip.
Altera has launched a family of ARM-based SoC FPGAs, integrating 28-nm Cyclone V and Arria V FPGA fabric, a dual-core ARM Cortex-A9 MPCore processor, error correcting code (ECC) protected memory controllers, peripherals and high-bandwidth interconnect into a single chip.
These SoC FPGAs inherit ARM's ecosystem of software development tools, debuggers, operating systems, middleware and applications. Altera's SoC FPGA development flow means engineers can quickly create customized ARM-based systems that reduce embedded system board size, power and cost, while boosting performance in a variety of industries, including automotive, industrial, video surveillance, wireless infrastructure, computer and storage.
"SoC FPGAs based on 28nm process technology represent an exciting new development for embedded systems in terms of performance and increased capacity," said Jim Nicholas, vice president marketing, processor division, ARM. "These devices offer great promise by enabling embedded system designers to reduce time to market, decrease costs and improve energy efficiency, while benefiting from the broad support of the ARM software ecosystem."
Altera's Cyclone V and Arria V SoC FPGAs feature a processor system with a dual-core 800 MHz ARM Cortex-A9 MPCore processor, NEON media processing engine, single/double-precision floating point unit, L1 and L2 caches, ECC-protected memory controllers, ECC-protected scratchpad memory and a wide range of commonly used peripherals. The processor system can deliver 4,000 DMIPS peak performance for less than 1.8W. The processor system and FPGA fabric are powered independently and can be configured and booted in any order and once in operation, the FPGA portion can be powered down as needed to conserve system power.
The ARM Cortex-A9 MPCore processor system and FPGA are interconnected by high throughput data paths, providing over 125Gbps peak bandwidth with integrated data coherency. This level of performance is not possible in two-chip solutions. An integrated single-chip SoC FPGA allows board designers to eliminate the external I/O paths between a processor and an FPGA, providing significant system power savings.
The Cyclone V and Arria V SoC FPGAs are based on a low-power 28nm process (28LP). These families feature embedded transceivers that operate up to 5Gbps and 10Gbps respectively. The FPGA fabric includes variable-precision DSP blocks and up to three ECC-protected memory controllers. Altera's Cyclone V SoC FPGAs feature up to 110K logic elements (LEs) and provide the industry's lowest system cost and power, along with performance levels that make the devices ideal for differentiating high-volume applications, including next-generation industrial drive on a chip, advanced driver assistance and video surveillance. Arria V SoC FPGAs balance cost and performance while delivering the lowest total power for mid-range applications. The devices feature up to 460K LEs and are ideal for meeting the higher performance requirements in applications that include remote radio heads, LTE base stations and multi-function printers.
SoC FPGA Development Environment
Altera's SoC FPGAs enable both hardware and software teams to maximize their productivity by using common tools and development flows that support both the Cortex-A9 MPCore processor and the FPGA. Designers can create custom peripherals and hardware accelerators using Altera's Quartus® II software and integrate them with the processor system using Altera's Qsys system integration tool. Qsys accelerates the hardware design process by automatically generating interconnect logic to connect intellectual property (IP) functions and subsystems. Qsys automatically generates an FPGA-optimized network-on-a-chip (NoC) interconnect, delivering higher performance, enabling improved design reuse and providing faster verification. Qsys supports industry-standard interfaces including Avalon Memory-Mapped, Avalon Streaming and AMBA AXI from ARM, enabling designers to reuse IP cores with multiple interfaces in a single design. Because SoC FPGAs are based on the standard ARM Cortex-A9 MPCore processor, they are compatible with the existing ARM software ecosystem.
"With the integration of a high-performance processing system, low-power 28-nm FPGA fabric, a hardware-software development flow and Virtual Target development platform, Altera is setting a new standard in SoC technology," said Vince Hu, vice president of product and corporate marketing, Altera Corporation. "As a part of Altera's overall embedded initiative, SoC FPGAs deliver a dramatic improvement in system performance, power, cost and board size for embedded developers."
Pricing and Availability
Embedded software developers can get started immediately writing device-specific application software targeting Altera's SoC FPGAs leveraging the SoC FPGA Virtual Target, which is available for purchase now. SoC FPGA silicon will be available the second half of 2012 followed by reference designs and development boards. Altera's SoC FPGA pricing starts at less than $15 in high volumes.
"SoC FPGAs based on 28nm process technology represent an exciting new development for embedded systems in terms of performance and increased capacity," said Jim Nicholas, vice president marketing, processor division, ARM. "These devices offer great promise by enabling embedded system designers to reduce time to market, decrease costs and improve energy efficiency, while benefiting from the broad support of the ARM software ecosystem."
Altera's Cyclone V and Arria V SoC FPGAs feature a processor system with a dual-core 800 MHz ARM Cortex-A9 MPCore processor, NEON media processing engine, single/double-precision floating point unit, L1 and L2 caches, ECC-protected memory controllers, ECC-protected scratchpad memory and a wide range of commonly used peripherals. The processor system can deliver 4,000 DMIPS peak performance for less than 1.8W. The processor system and FPGA fabric are powered independently and can be configured and booted in any order and once in operation, the FPGA portion can be powered down as needed to conserve system power.
The ARM Cortex-A9 MPCore processor system and FPGA are interconnected by high throughput data paths, providing over 125Gbps peak bandwidth with integrated data coherency. This level of performance is not possible in two-chip solutions. An integrated single-chip SoC FPGA allows board designers to eliminate the external I/O paths between a processor and an FPGA, providing significant system power savings.
The Cyclone V and Arria V SoC FPGAs are based on a low-power 28nm process (28LP). These families feature embedded transceivers that operate up to 5Gbps and 10Gbps respectively. The FPGA fabric includes variable-precision DSP blocks and up to three ECC-protected memory controllers. Altera's Cyclone V SoC FPGAs feature up to 110K logic elements (LEs) and provide the industry's lowest system cost and power, along with performance levels that make the devices ideal for differentiating high-volume applications, including next-generation industrial drive on a chip, advanced driver assistance and video surveillance. Arria V SoC FPGAs balance cost and performance while delivering the lowest total power for mid-range applications. The devices feature up to 460K LEs and are ideal for meeting the higher performance requirements in applications that include remote radio heads, LTE base stations and multi-function printers.
SoC FPGA Development Environment
Altera's SoC FPGAs enable both hardware and software teams to maximize their productivity by using common tools and development flows that support both the Cortex-A9 MPCore processor and the FPGA. Designers can create custom peripherals and hardware accelerators using Altera's Quartus® II software and integrate them with the processor system using Altera's Qsys system integration tool. Qsys accelerates the hardware design process by automatically generating interconnect logic to connect intellectual property (IP) functions and subsystems. Qsys automatically generates an FPGA-optimized network-on-a-chip (NoC) interconnect, delivering higher performance, enabling improved design reuse and providing faster verification. Qsys supports industry-standard interfaces including Avalon Memory-Mapped, Avalon Streaming and AMBA AXI from ARM, enabling designers to reuse IP cores with multiple interfaces in a single design. Because SoC FPGAs are based on the standard ARM Cortex-A9 MPCore processor, they are compatible with the existing ARM software ecosystem.
"With the integration of a high-performance processing system, low-power 28-nm FPGA fabric, a hardware-software development flow and Virtual Target development platform, Altera is setting a new standard in SoC technology," said Vince Hu, vice president of product and corporate marketing, Altera Corporation. "As a part of Altera's overall embedded initiative, SoC FPGAs deliver a dramatic improvement in system performance, power, cost and board size for embedded developers."
Pricing and Availability
Embedded software developers can get started immediately writing device-specific application software targeting Altera's SoC FPGAs leveraging the SoC FPGA Virtual Target, which is available for purchase now. SoC FPGA silicon will be available the second half of 2012 followed by reference designs and development boards. Altera's SoC FPGA pricing starts at less than $15 in high volumes.
German DJ equipment maker uses Bristol chip
Native Instruments Use XMOS Silicon in New Products
German music and DJ equipment designer Native Instruments is using a chip developed in Bristol by XMOS Semiconductor for its latest products. The Berlin company is using the XMOS single chip processors as an audio streaming platform in their product range, helping them to deliver systems that use the latest USBAudio Class 2.0 standard. “We are amazed by how rapidly our engineers have learnt to use XMOS devices, and the speed with which they are able to design new products,” said Mate Galic, Chief Technology Officer and President of Native Instruments.
The flexibility of the XMOS chip and software allows engineers to bring a range of equipment with new features to market much quicker than competitive solutions at the same time as adopting emerging standards. Native Instruments has integrated a single XMOS chip with software based on the XMOS USB Audio 2.0 reference design into a variety of new products. The ability to re-use major parts of the software allowed their engineers to focus on the differentiating features and reduce the time taken to bring the products to market.
Native Instruments has a mission to develop innovative, fully integrated solutions for all professions, styles and genres. It started providing real-time sound synthesis on standard computers in 1996, and today offers a range of products for musicians, producers and DJs. The company currently employs around 270 people in its two offices in Berlin and Los Angeles.
By Nick Flaherty www.flaherty.co.uk
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