2013年3月24日 星期日

Open source drives innovation

Embedded PC, in vehicle pc, Single Board Computer

The speed of innovation in automotive IVI is making a lot of heads turn. No question, Linux OS and Android are the engines for change.

The open source software movement has forever transformed the mobile device landscape. Consumers are able to do things today that 10 years ago were unimaginable. Just when smartphone and tablet users are comfortable using their devices in their daily lives, another industry is about to be transformed. The technology enabled by open source in this industry might be even more impressive than what we’ve just experienced in the smartphone industry.
The industry is automotive, and already open source software has made significant inroads in how both driver and passenger interact within the automobile. Open source stalwarts Linuxand Google are making significant contributions not only in the user/driver experience, but also in safety-critical operations, vehicle-to-vehicle communications, and automobile-to-cloud interactions.


refer: http://embedded-computing.com/articles/automotive-source-drives-innovation/

2013年3月11日 星期一

Huge Price Crash for Embedded Single Board Computer

AMB-D255T1 features powerful graphic performance via VGA and HDMI output, one DDR3 SO-DIMM socket, mSATA socket with USB signals and SIM slot, and a +12V DC jack for easy power input. AMB-D255T1 also provides complete I/O such as 4 x COM ports, 6 x USB2.0 ports, 1 x GbE RJ-45 port, 1 x SATA port with power connector.

AMB-N280S1 has variety I/O ports like 5 x serial ports (one is RS-232/422/485 selectable), 4 x USB2.0, 2 x GbE RJ-45 ports, and one Mini-PCIe expansion. It also offers 1 x SATA interface and power connector for the customers have large storage capacity request. There is one HDMI port and one VGA output on AMB-N280S1 can support both two displays to maximum resolution 1920 x 1200. It also offers the 18-bit LVDS interface for small size LCD panel.
In order to let customer experience our premium products earlier, Acrosser provides the special price for these two boards. Please contact with your local sales for more information.



Embedded PC, in vehicle pc, Single Board Computer

Product information:

AMB-D255T1
http://www.acrosser.com/Products/Single-Board-Computer/Mini-ITX-&-others/AMB-D255T1/Intel-Atom-D2550-AMB-D255T1.html
AMB-N280S1
http://www.acrosser.com/Products/Single-Board-Computer/3.5’’-SBC/AMB-N280S1/Single-Board-Computer-AMB-N280S1.html

Contact:
http://www.acrosser.com/inquiry.html

2013年3月4日 星期一

2012 Top Embedded Innovator

Single board computer, Panel PC, networking appliance

Kwok Wu has many years of experience in advanced embedded systems and software...

ECD: What emerging trends and challenges do you see in embedded design?
WU: Internet traffic will grow 5x its size in the next three years (according to Morgan Stanley), driven by wireless and video traffic as well as by the Internet of Things, which is connecting an increasing number of sensors and smart appliances with on-demand access via multiple smart handsets. Local wireless routers and access points thus need to become smart gateways, enabled by open-source scalable network platforms, in order to efficiently handle local traffic in homes, offices, and factories.
The #1 theme is a focus on smart residential gateways with the Internet of Things – usually forhome automation and remote monitoring to control sensors including smoke alarms, smart meters, smart appliances for smart energy, and IP cameras for security. For example, Freescale’s MPC8308nSG smart converged gateway with integrated wireless connectivity including 3G broadband, 802.11n Wi-Fi, and ZigBee wireless sensor network addresses many market opportunities in the smart energy/smart grid, health monitoring, industrial and residential automation, and mobile transportation segments.
The #2 theme is a focus on smart business gateways that deliver various cloud services for multi-user collaboration and office-in-a-box, such as unified communications, PBX VoIP, wireless video-on-demand, network video recording, and video surveillance. Office automation is another growth area offering businesses cloud-based services across a large number of users, sometimes in different offices.
ECD: Which engineering specialties are most valuable to your company, and are they difficult to find?
WU: Freescale Semiconductor is a leader in network and communication processors (Power Architecture), ZigBee RF sensor devices, i.MX multimedia application processors, and MCUs forautomobile, transportation, and industrial applications. Freescale’s Power Architecture networking processors offer efficient and scalable performance with secure trusted architecture.PowerPC processors are also used in the automobile engine management and industrial automation markets.
ECD: What is your assessment of the demand for ubiquitous connectivity, and how does it affect your product development plans?
WU: Converged network standards allow more devices to be connected seamlessly. Our product development must be on an open, scalable platform that can adapt to evolving connectivity standards. Our smart converged gateways need to handle multiple wireless technologies (3G, Wi-Fi, ZigBee wireless sensor) all in one gateway.
ECD: How will embedded computing advance in the next 5-10 years?
WU: The “network is the computer” concept promises to deliver cloud-based services through the “network as a service” model. Open-source smart software will provide embedded distributed intelligence that enables smartphones/tablets, smart appliances, smart TVs, smart utility meters, and IP-based programmable communicating thermostats. These smart devices will offer on-demand Internet access through smart AP gateways and smart managed switches and routers, driven by open-source software-defined networks and platforms such as the Freescale smart gateways that won two international networking and communication awards. The key approach is to use an open-source, scalable, portable software platform for networking and communication, such as a software-defined network consisting of OpenFlow, OpenStack, and Open vSwitch.
Furthermore, smart gateways within a campus will be connected by a mesh network to form smart, resilient networks for local clouds. Smart software added to smart sensors and gateways with real-time location and context-aware decision-making will be more pervasive. These gateways will ultimately create safer, greener, more secure, and smarter connected communities (homes, cars, offices, factories) and a rich, personalized connected experience.

reder: