2013年9月10日 星期二

Security and reliability is an utter-most issue


A factory is only as strong as its weakest link, so every Internet of Things client in the factory needs protection from viruses, malware, and hacking to prevent costly interruptions to factory operation. The 4th generation Intel Core processor adds a number of features to its security portfolio, including McAfee’s Deep Defender technology, which resides between the memory and embedded system to perform real-time memory and CPU monitoring without impacting overall system performance. (McAfee is an Associate member of the Alliance.) As shown in Figure 5 (page 22), additional security elements include multiple solutions. TenAsys also offers the INtime RTOS family, which can run as a stand-alone RTOS or alongside Microsoft Windows as shown in Figure 3. Both products enable users to partition a multicore platform to run mixed fanless embedded systems, making better use of the processor’s advanced features to provide highly integrated  solutions. (Microsoft and TenAsys are both Associate members of the Alliance.)


refer to:

Intel Core processor family is coming soon!


Throughout history, new fanless embedded systems have transformed the manufacturing industry. From the invention of steam engines to the introduction of computerized controls, these technologies have led to enormous leaps in productivity and quality. Today we are at another turning point. The introduction of embedded systems and Internet of Things technology are enabling unprecedented data sharing and analysis, turning previously disconnected manufacturing systems into an efficient, highly responsive whole.

The 4th generation Intel Core processor family is bringing the Internet of Things to the factory floor. With 2x faster signal processing, the processors support analytics applications like machine vision and equipment monitoring. Newly solutions secure communications tie together the factory floor, control room, and supply chain. And the up to 60 percent faster graphics and flexible I/O permit industrial equipment manufacturers to combine previously separate hardware, reducing cost and complexity.

refer to:


2013年8月26日 星期一

Power plant efficiency in search


In power plant, the actuator and valve create a single unit — the control valve. Actuators perform different motion sequences, including linear, pivoting and rotating motions, and they are powered by pneumatic, hydraulic or electrical energy. Actuators receive a control signal from automation systems and single board computer. The single board computer is converted into a motion so that the control element of the actuating element assumes a corresponding position. With control valves, this is a stroke motion. With flaps, ball cocks or rotary plug valves, this is a pivoting motion.
Power plants have traditionally used pneumatic actuators to drive the many control valves throughout their facilities. However, major improvements in embedded systems control-valve actuator technology are helping power providers achieve their most important objectives at a lower cost.
The new electric actuators can hold up to the demands of continuous movement.

refer to: http://www.power-eng.com/articles/print/volume-117/issue-8/features/opportunities-to-improve-efficiency.html

2013年7月21日 星期日

Qseven Computer-On-Module (COM) challenges



Increasing numbers of patients, shrinking numbers of embedded computer physicians, and rising costs are pushing the medical field further into the age of telehealth. Unlike traditional clinical platforms, however, telemedicine demands portability, flexibility, and long lifecycle support from Small Form Factor (SFF) technologies. Targeted at low-power mobile applications, Revision 2.0 of the Qseven Computer-On-Module (COM) specification added support for ARM CPUs and defined a "micro" form factor, making it good Commercial Off-The-Shelf (COTS) medicine for next-generation telehealth systems.

Go to doctor’s office. Wait. See embedded computer Primary Care Physician. Get tested. Wait. Get referred to specialist. Get retested. Wait. Get referred to another specialist. Wait. See how much insurance covers. Pay accordingly.

refer to: http://smallformfactors.com/articles/qseven-coms-healthcare-mobile/

2013年7月15日 星期一

Satisfying rugged memory requirements


While demands for ruggedized embedded devices continue to rise, memory module suppliers continue to make technology advancements and associated manufacturing enhancements that meet the needs of OEMs. DDR3 SODIMM, DDR3L, and lower-profile DDR3L are all examples of new technologies that help satisfy rugged memory requirements. These advancements solve many design challenges, including low power, enhanced thermal dissipation, and extended-temperature tolerance while delivering the performance needed for today’s complex embedded systems.

2013年7月1日 星期一

Embedded developers challenge to fasten system operating

Developers can often find answers to their questions through the Internet, but no one is on the hook to research and respond to a embedded computer specific question. Open source products are generalized in order to fit the widest array of users and can force designers to modify the hardware configuration, resulting in higher recurring cost for the embedded device. Cost is obviously a major deciding factor when selecting an embedded operating system. Since there is essentially no cost of goods with software, vendors can adjust their pricing model to generate revenue from various sources. Vendors can charge for an initial license fee, development seats per engineer, development tools, per-unit royalties, continuing support, or major upgrades. To fairly compare prices, the overall cost of ownership must be computed for each OS being considered.
 

Memory needs for in-vehicle system

Automotive electronics are memory hungry. Therefore, the explosive growth of in-vehicle infotainment systems in modern cars has a significant impact on the market demand for semiconductor memories. For 2012, the average memory content of a car was estimated to be around US$12.8, ranging from US$2.0 for low-end models to more than US$100 for fully equipped luxury vehicles. As a result, the total available market value for in-vehicle memories in automotive applications is expected to reach a Compounded Annual Growth Rate (CAGR) of more than 9 percent from 2011 to 2015, well above the overall CAGR for the total memory semiconductor market, which is less than 7 percent.