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2013年5月1日 星期三

About Manage risk in Java

When it comes to software development, the old adage is best spun in a slightly different way: better "early" than never. Accordingly, static analysis can help those developing in Java to stay one step ahead of potential coding problems.
In Vehicle computer, single board computer, Embedded pc
Today’s software development teams are under immense pressure; the market demands high-quality, secure releases at a constantly increasing pace while security threats become more and more sophisticated. Considering the high cost of product failures and security breaches, it is more important than ever to address these risks throughout the software development process. Potential problems need to be spotted early to prevent release delays or, worse, post-release failures. Fortunately, there are numerous tools to help developers manage these risks, helping to identify potential problems early in the development phase when issues are less disruptive and easier to fix. They are readily accessible to developers and easy to use within many development environments. This applies to developers programming in any language; however, we focus on Java in this discussion (see Sidebar 1).
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refer to:
http://embedded-computing.com/articles/static-helps-manage-risk-java/

2013年3月5日 星期二

COM cases show longer medical device life expectancy

 
Like many other industries, health care has become much more agile as practitioners have tried to keep expenses under control. Smaller, more portable devices now enable more efficient and economical diagnostic and treatment procedures to be delivered at the patient’s bedside. Computers-On-Modules (COMs) are helping provide the portability, computing power, and integration needed to increase the longevity of medical device designs.
 
In vehicle computer, single board computer, Embedded pc

Electronic device manufacturers are increasingly using Computers-On-Modules (COMs) to produce compact, portable, and easily modified solutions for health care. In addition to smaller solutions, COMs enable longer product life, which is particularly desirable in medical equipment. One reason for this is the stringent and expensive certification process medical devices go through as mandated by the FDA. Furthermore, successful products often become industry standards that medical technicians must learn and adhere to.
By definition, COM designs are modular. The COM approach for embedded technology enables a medical solution’s processing power to be easily updated or upgraded while the physical dimensions and mounting system remain exactly the same. This allows the appearance of the industrial design to stay consistent with market expectations while providing for any needed upgrades. If a particular processor is reaching End-Of-Life (EOL), a module with a current processor can be introduced.
With COMs, the processor and supporting features are placed on a compact module that comprises a complete computer. The I/O for the system and the unique features that differentiate the customer’s product are included on a separate baseboard. Processor upgrades can be made by utilizing different processing modules that mate with the baseboard. This enables easy processor upgrades, plus various modules can be offered spanning a range of performance levels.


Other benefits of COM use in medical device designs include:
1.Fast time time to market
2.Simplified development
3.Easy modification of popular products
4.Easier life-cycle extension
Many medical devices are cart-based to provide point-of-care diagnosis and treatment. COMs with the latest processors and features such as onboard graphics and GbE LAN capability enable fast transmission to remote terminals or centralized storage. LAN capabilities and standard x86-based solutions help meet the need for information integration with centralized patient records, a key concern in health care.
refer:
http://embedded-computing.com/articles/com-device-life-expectancy/