Home or Very Small Office Electronic Circuit Prototypes, Element 4

Flanker Plus variation1
china prototypes
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Démonstration du Soukhoi Su 35 au salon du Bourget.
Le Soukhoï Su-35 (Flanker Plus dans le code OTAN) est un chasseur russe. Il a été créé dans le but d’accroître les capacités offensives du Su-27 et de lui donner la possibilité de détruire tant les cibles aériennes que de surface.
Le Su-35 est le premier chasseur au monde à avoir deux radars, un N-011 multimode à balayage électronique à l’avant et un N-012 dans le cône de queue. Le N-011 est capable d’acquérir 15 cibles et d’en engager eight, sa portée est de plus de one hundred km pour un objectif d’une SER de ,01 m2.

Sukhoi Su35 demonstration at Paris Air Show &quotLe Bourget&quot.
The Sukhoi Su-35 (Russian: Сухой Су-35 NATO reporting name: Flanker-E) is designation of two different heavily-upgraded derivatives of the Su-27 ‘Flanker’. Both are single-seat, twin-engine supermaneuverable multirole fighters, made by Sukhoi and built by Komsomolsk-on-Amur Aircraft Production Association (KnAAPO).
The 1st variant was created throughout the 1980s, when Sukhoi was hunting to upgrade its high-overall performance Su-27, and was initially known as the Su-27M. Later re-designated Su-35, this derivative incorporates aerodynamic refinements to improve manoeuvrability, enhanced avionics, longer range, and a a lot more effective engine. The very first Su-35 prototype, converted from a Su-27, produced its maiden flight in June 1988. More than a dozen of these had been constructed with some used by the Russian Knights aerobatic demonstration group. The very first Su-35 design was later modified into the Su-37 with thrust-vectoring engines and utilized as a technologies demonstrator. A sole Su-35UB two-seat trainer was built in the late 1990s that, despite its name, shares a robust resemblance to the Su-30MK loved ones.
In 2003, Sukhoi embarked on a second modernization of the Su-27 to create what the business calls a 4++ generation fighter that would serve as an interim fighter prior to the arrival of the Sukhoi PAK FA. This derivative incorporates a reinforced airframe, improved avionics and radar, thrust-vectoring engines, and a lowered radar signature from the front, even though omitting the canards and air brake. In 2008 the revamped variant, erroneously dubbed the Su-35BM by the media, began its flight test programme that involved 4 prototypes, a single of which was lost in 2009.
The Russian Air Force has ordered 48 production units, designated Su-35S, of the newly-revamped Su-35. Both Su-35 models have been provided to numerous countries, including Brazil, China, India and South Korea, but so far have not attracted any export orders. Sukhoi initially projected that it would export a lot more than 160 units of the second modernized Su-35 worldwide.

Residence or Really Modest Office Electronic Circuit Prototypes, Component 4
On eBay, I found many entities promoting relay modules that seem to match the Whizoo kit units as “Buy It Now” things for around $ 3.50 direct from China, and for under $ five.00 from North American distribution. These will operate for 3- to 32-V dc …
Study more on Electronic Design and style (blog)

iPhone SE: Price tag and specs leaked
… which begins at £379. This should drive sales in the low to medium-price smartphone industry and enhance the company&#39s foothold in India and China. …. According to my source, two prototypes of the new 4&quot #iPhone have been tested by #Apple. Here&#39s what they …
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Wireless Net Enabled Devices to Drive Demand for Electronic Contract Manufacturing Solutions, According to New Report by Worldwide Market Analysts, Inc.

San Jose, California (PRWEB) September 19, 2014

Stick to us on LinkedIn – Electronic contract manufacturing solutions marketplace includes businesses engaged in supplying manufacturing services to a variety of Original Gear Companies (OEMs). The market place contains electronic manufacturing services (EMS) and Original Design and style Manufacturing (ODM) solutions. More than the years, EMS companies broadened the spectrum of services they provided from straightforward manufacturing of elements to more complex manufacturing solutions. This led a lot of OEMs to outsource a massive portion of their manufacturing activity. ODMs are businesses that give manufacturing solutions in addition to product designing solutions. Rising demand for electronic products in various finish-use markets, expanding demand for mobile web prepared devices such as tablets and smartphones, and effervescent innovation in the marketplace are couple of of the major development drivers.

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Rising value of design and style uniqueness is driving demand for original style manufacturing solutions. Worldwide economic downturn in the course of 2007-2009, followed by weak financial development in the United States and escalation of the Eurozone crisis throughout the year 2012, negatively impacted customer self-assurance across major markets, which in turn resulted in reduced sales of electronic equipment/devices. Speedy technology obsolescence moreover exerted substantial competitive stress on market place participants. Against this backdrop, the electronic contract manufacturing solutions sector witnessed decline in growth. Electronic contract manufacturing solutions are predominantly leveraged by consumer/industrial electronics, computers &amp peripherals, telecommunication companies. Manufacturers of computers &amp peripherals, especially notebook PCs, have traditionally been the dominant client base for electronic contract manufacturing solutions. Even so, substantial declines in computer shipments over the last couple of years are producing a structural upheaval in the marketplace.

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The meteoric rise in demand for mobile world wide web ready devices such as tablets and smartphones coupled with continued concentrate on reasonably priced manufacturing by OEMs will help drive demand for electronic contract manufacturing services in the coming years. Growth will also be driven by increased outsourcing of manufacturing operations by OEMs in newer segments such as automotive, medical, industrial and aerospace and defence.

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As stated by the new industry investigation report on Electronic Contract Manufacturing Solutions, Asia-Pacific represents the biggest regional market place worldwide. Availability of powerful electronics provide chain infrastructure and a effectively-developed element and subsystem vendor base in the area have transformed Asia-Pacific into a hub for EMS manufacturing. The area also represents the quickest expanding market with a CAGR of three.7% more than the evaluation period, supported by low expense labor, steady financial development, increasing disposable income, increasing standards of living and increased per capita spending on electronic products.

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Major players covered in the report incorporate Celestica Inc., Compal Electronics Inc., Flextronics International Ltd., Foxconn/Hon Hai Precision Market Co. Ltd., Incap Oyj, Inventec Corporation, Jabil Circuit Inc., Kitron ASA, Pegatron Corporation, Plexus Corp., Quanta Pc Inc., Sanmina Corporation, VTech Communications Ltd., and Wistron Corporation, among other people.

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The analysis report titled “Electronic Contract Manufacturing Services: A International Strategic Enterprise Report” announced by Global Market Analysts Inc., supplies a comprehensive assessment of industry trends, growth drivers, challenges, mergers, acquisitions and other key strategic corporate developments of key organizations worldwide. The report offers income estimates and projections for significant geographic markets like the United States, Canada, Japan, Europe (France, Germany, Italy, UK, Spain, Russia, and Rest of Europe), Asia-Pacific (China, India, South Korea, Taiwan, and Rest of Asia-Pacific), Latin America (Brazil, and Rest of Latin America) and Rest of Globe. End-use markets analyzed include Customer Electronics, Computers &amp Peripherals, Telecommunications, Industrial Electronics and Other End-Use Segments.

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For a lot more particulars about this extensive marketplace study report, please pay a visit to –http://www.strategyr.com/Electronic_Contract_Manufacturing_ECM_Services_Industry_Report.asp

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About Worldwide Business Analysts, Inc. &#13

International Industry Analysts, Inc., (GIA) is a leading publisher of off-the-shelf market investigation. Founded in 1987, the organization at the moment employs more than 800 folks worldwide. Annually, GIA publishes 1500+ full-scale analysis reports and analyzes 40,000+ marketplace and technology trends even though monitoring much more than 126,000 Businesses worldwide. Serving more than 9500 clientele in 27 nations, GIA is recognized right now, as one particular of the world’s biggest and reputed industry analysis firms.

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China Electronic Fuel Injection Program Business 2014 Industry Size, Share, Growth, Trends and Forecast 2017: MarketResearchReports.Biz

China Electronic Fuel Injection Program Business 2014 Industry Size, Share, Growth, Trends and Forecast 2017: MarketResearchReports.Biz


Albany, NY (PRWEB) September 01, 2014

The evolution of automotive electronic technologies and the increasing strict needs on vehicle’s environmental friendiliness has conduced to the electronic manage of fuel injection of automobiles in China. It is expected that, in the forthcoming years, Chinese automotive electronic injection market will hold a steady development price of about 8%.

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View Complete Report at http://www.marketresearchreports.biz/evaluation/220449

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Gasoline electronic injection field:

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In 2002, gasoline engines across China stopped the use of carburetor and entered the era of electronic injection. At the moment, this market has developed into a market place characteristic of mature item technologies and complete competitors, exactly where such players appreciate big shares, as United Automotive Electronic Systems Co.,Ltd, Delphi (China), Bosch, Dongguan Keihin Engine Management Program Co.,Ltd. and Mitsubishi Electric Auto Parts (China).

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Gasoline Direct Injection (GDi) has been the hottest industry segment in the gasoline electronic injection field, and such kind of engines has been installed in many auto models under Beijing Benz, Shanghai Volkswagen, Shanghai GM and FAW Volkswagen. In 2014, Chinese GDi marketplace demand is estimated to hit roughly 4 million sets, and the figure in 2017 is anticipated to reach 6.57 million sets, with an typical growth rate of 18% or so throughout 2014-2017.

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Diesel electronic injection field:

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On January 1st, 2015, China will enforce national IV emission requirements and higher-stress common-rail will be the mainstream fuel injection technology. As estimated, the Chinese marketplace size of diesel higher-pressure typical rail method will attain RMB6.eight billion in 2014, up 7% from a year earlier, of which the market scale of heavy higher-pressure frequent rail program will attain to RMB3.7 billion with a growth price of as higher as 27%. It is anticipated that, till 2017 Chinese diesel higher-pressure frequent rail technique market place size will be much more than RMB10 billion, of which the scale of heavy high-pressure widespread rail system will be up to over RMB6.5 billion.

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Browse All China Market place Analysis Reports at http://www.marketresearchreports.biz/nation/China

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Chinese higher-stress common rail market place, for the time becoming, is hugely monopolized by a couple of giants, with the three Bosch, Denso and Delphi with each other holding a total marketplace share of roughly 90% (of them, Bosch sweeps above 50%). For that reason, as the key cooperative partner of Bosch in China, WeiFu Higher-tech will embrace vibrant improvement prospects in the future. Amongst nearby Chinese enterprises,the development of Chengdu WIT Electronic Fuel System Co., Ltd., FAW Group Wuxi Fuel Injection Gear Study Institute (wfieri), Nanyue Fuel Injection Program Co., Ltd., LONGBENG Enterprise Group, and so forth is ahead in a relative sense, but they still not have realized mass-production. For a particular period of time in the future, this field will still mainly rely on foreign technologies.

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Associated Reports –

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Hydrogen And Fuel Cells 2015-2025: Forecasts, Technologies, Markets

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View Complete Report at http://www.marketresearchreports.biz/analysis/206904

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The development of stationary applications of fuel cells (such as back-up power supplies), by contrast to mobile ones (such as for powering automobiles), has been led by distinct sorts of industrial organizations with extremely different scopes and methods based on their geographic regions. Depending on the company chance certain players uncover profitable niches. This report details the organization models that have led to recent marketplace successes giving a view of the economics and future growth prospective.

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These organizations which includes addressing applications such as the IT back-up and energy supply of data center Infrastructure (harbors, shipping and airport) mining water remedy plants micro-chip fabs and large distributed generation. The market place size and forecasts for these applications are given along with present and emerging organizations developing stationary fuel cell company circumstances.

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Green Power (Solar PV, Wind Energy, Hydroelectric Power, Bio-Fuels, Geothermal Power) Market – Global Industry Evaluation, Market place Size, Share, Development, Trends And Forecast, 2013 – 2019

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View Full Report at http://www.marketresearchreports.biz/evaluation/140481

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There has been an elevated emphasis on the want for green, renewable and sustainable power sources globally. Rise in demand has been due to increasing concern to shield the environment from pollutants such as greenhouse gases and concerns related to energy security. A variety of aspects driving the development of green power contain atmosphere issues, government regulations and initiatives, coal plant retirements, need to have for all-natural gas hedging, rising demand for power and fuel shortage/replacement.

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The investigation study titled “Green Energy Market place – Global Business Analysis, Marketplace Size, Share, Development, Trends, and Forecast, 2013 – 2019” focuses on green and renewable power resources. It provides market place data and insights including the size and development of diverse green power varieties. The report supplies a thorough analysis of the prevailing industry state and emerging market trends. It delivers a comprehensive coverage of the underlying technological, environmental, financial and social issues affecting the green energy organization.

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Stationary Fuel Cells: Industry Shares, Approaches, And Forecasts, Worldwide, 2014 To 2020

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Stationary fuel cell markets at $ 1.two billion in 2013 are projected to enhance to $ 14.three billion in 2020. Development is anticipated to be based on demand for distributed energy generation that makes use of natural gas. Systems provide clean energy that is very good for the environment. Development is primarily based on international demand and will shift from basic growth to speedy development measured as a penetration evaluation as markets move beyond the early adopter stage. The large box retailers which includes a lot of, led by Walmart, the data centers, and firms like Verizon are early adopters.

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Sooner or later hydrogen will be utilised as fuel in the same stationary fuel cell devices. The hydrogen is manufactured from solar farms. Stationary fuel cells have turn into far more feasible as the sector is able to move beyond platinum catalysts. Stationary fuel cell markets need to have government sponsorship. As government funding shifts from massive military obligations, sustainable energy policy becomes a compelling investment model for government.

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A lot more China Machined Parts Press Releases

Electronic Recycling Market (Copper, Steel, Plastic Resins): Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2013 – 2019

Electronic Recycling Market (Copper, Steel, Plastic Resins): Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2013 – 2019


Albany, New York (PRWEB) August 20, 2014

According to a new market report published by Transparency Market Research “Electronic Recycling (Copper, Steel, Plastic resins) Market – Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2013 – 2019”, the market was valued at USD 9.84 billion in 2012, which is expected to reach USD 41.36 billion by 2019, growing at a CAGR of 23.06% from 2013 to 2019. In terms of volume, the market was 48.43 million tons in 2012 and is forecast to reach 141.05 million tons by 2019. In terms of volume, Europe was the largest recycler of e-waste and Asia Pacific is expected to be the fastest growing market for electronic recycling during the forecast period, growing at a CAGR of 22.8% from 2013 to 2019. Lack of efficient government regulations made Asia Pacific a collection point for global e-waste. Availability of abundant volume of e-waste and cheap labor is expected to drive Asia Pacific electronic recycling market.

Browse Global Electronic Recycling Market Report with full TOC: http://www.transparencymarketresearch.com/electronics-recycling-market.html.

The global electronic recycling market is expected to be driven by implementation of stringent government regulations, environment sustainability programs, and rapid industrialization. End of life management of electronic product involve refurbishment of functional components and recycling of waste scrap. Despite numerous benefits of recycling, lack of regulatory and recycling infrastructure has hampered the growth of this market. In addition, lack of consumer awareness regarding electronic recycling market and no incentive policy for consumers has restricted the growth of electronic recycling market.

Out of all equipments being recycled, computer was the largest segment in 2012 and is forecast to maintain its dominance in future. This attributes to rapid microchip developments and decrease in average lifecycle of computers. Numerous take back events organized by leading telecom players are expected boost the electronic recycling market. For example, in 2008 Nokia started its e-waste management campaign when waste management was given little attention. Based on sources of electronic equipment commercial sector were highest contributors to recycling market in 2012. This accounts to the infrastructural developments across developing economies. Globally steel was the most recycled material from electronic scrap because steel is heavily used in electronic devices and cost fluctuations of mined steel made manufacturers adopt closed loop practice which involves using recycled steel back into China manufacturing of new products. Additionally, recycling steel is much cheaper compared to mining steel. In terms of revenue, recycled steel accounted for 33.7% of the global electronic recycling market in 2012.

Geographically, Europe dominated e-waste recycling market in 2012. This is attributed to stringent legal directives and regulations to recover recycle and reuse e-waste. In North America, around 65% of U.S. residents are governed by e-waste law. Though there is no mandatory recycling regulation in the U.S. 25 states across the U.S. have ratified several regulations that require statewide e-waste recycling. Emerging economies in Asia Pacific such as Korea, Taiwan, India, China and Japan are expected to be fastest growing for electronic recycling. This growth is majorly driven by abundance of e-waste in Asia pacific and cheap labor availability.

The global electronic recycling market is highly fragmented and contains numerous small scale players. However, Sims Metal Management hold majority of shares of electronic recycling market. Major industry participants include Eco-Tech Environmental Services Inc., AERC Recycling Solutions, American Retroworks Inc., CRT Recycling Ltd., Dlubak Glass Company, Fortune Plastic & Metal, Inc., MBA Polymers, Inc., Sims Metal Management Limited, Universal Recyclers Technologies, A2Z Group.

Related & Recently Published Reports by Transparency Market Research


Distribution Automation Market: http://www.transparencymarketresearch.com/distribution-automation-market.html
Colored PU Foams Market: http://www.transparencymarketresearch.com/colored-pu-foams-market.html

The market has been segmented as follows:

Electronic Recycling Market, by type of processed material

Copper
Steel
Plastic resins
Polycarbonate
Acrylonitrile butadiene styrene (ABS)
Acrylonitrile butadiene styrene (ABS)
High impact polystyrene (HIPS)
Polystyrene –
Others
Others (zinc, tin, nickel, lead, aluminum, gold, silver, so on)

Electronic Recycling Market, by type of processed material used as stock

Copper
Steel
Plastic resins
Polycarbonate
Acrylonitrile butadiene styrene (ABS)
Acrylonitrile butadiene styrene (ABS)
High impact polystyrene (HIPS)
Polystyrene –
Others
Others (zinc, tin, nickel, lead, aluminum, gold, silver, so on)

Get report sample PDF copy from here: http://www.transparencymarketresearch.com/sample/sample.php?flag=S&rep_id=601.

Electronic Recycling Market, by type of equipment processed

Computers
Telecom
Industrial
Consumer
Others

Electronic Recycling Market, by source of equipment

Consumers/residential
Manufacturers/Industry users
Government agencies
Schools/universities
Commercial

Electronic Recycling Market, by geography

North America
Europe
Asia Pacific
RoW

Contact:

Sheela AK

90 Sate Street, Suite 700

Albany, NY 12207

Tel: +1-518-618-1030

USA/Canada Toll Free: 866-552-3453

Email: sales(at)transparencymarketresearch(dot)com






AZ Electronic Materials and SiNode Systems Sign Joint Development Agreement

Branchburg, NJ, and Chicago, IL (PRWEB) August 06, 2014

AZ Electronic Materials (“AZ”), a business unit of Merck KGaA, Darmstadt, Germany, and a leading global producer of high quality, high-purity specialty chemical materials used in the manufacturing of semiconductors, flat panel displays and LEDs, and SiNode Systems, Inc. (“SiNode”), a materials science China company headquartered in Chicago, IL developing advanced materials for the energy storage market, announce they have entered into a Joint Development Agreement with the goal of commercializing graphene-based materials for lithium-ion batteries.    

AZ has exclusive worldwide rights to the high yield preparation methods of graphene oxide invented by Dr. James Tour’s group at Rice University, TX. SiNode has exclusive worldwide rights to silicon-graphene electrode materials developed in Dr. Harold Kung’s group at Northwestern University. Under the Joint Development Agreement, AZ and SiNode will develop graphene-based electrode materials that deliver both higher energy density and improved rate capabilities, enabling longer lasting, faster charging lithium-ion batteries.

Pairing AZ’s graphene oxide with SiNode’s novel electrode materials technology offers battery manufacturers a significant improvement in cell level performance. Prototype tests have demonstrated how layering nanosilicon in between porous graphene sheets creates passages for rapid Li-ion diffusion while also buffering silicon expansion during lithiation, enabling high storage capacity at high rates with extended cycling stability.

Geoff Wild, AZ’s Chief Executive Officer (CEO), commented: “Our collaboration with SiNode provides AZ with the opportunity to bring new material solutions to our customers in our core business and to help SiNode enhance the production scale of their energy storage materials. SiNode’s highly innovative nanomaterials platform coupled with AZ’s unique precursor materials will result in strong product pipelines for both Chinese companies.”

SiNode’s Co-Founder and CEO Samir Mayekar, said: “Partnering with AZ will allow us to accelerate the commercialization of graphene-based materials to meet the demand of the growing energy storage market. As consumers increasingly adopt mobile and wearable devices, AZ and SiNode will provide the value-added materials to power the needs of the on-the-go consumer.”

SiNode is expanding its state-of-the-art R&D and pilot manufacturing facility in Chicago, IL in order to accelerate these commercialization efforts.

Editor notes

About AZ (http://www.azem.com)

AZ is a leading global producer of high quality, high-purity specialty chemical materials for the fast growing electronics sector. Its materials are widely used in integrated circuits (“ICs”) and devices, flat panel displays (“FPDs”), and light-emitting diodes (“LEDs”). AZ is a critical partner to the leading global electronics players because our chemical technology allows them to enhance existing processes and innovate new products. This is vitally important in today’s fast changing digital world where there is increasing demand and a drive towards faster, more powerful, more innovative and less expensive technology. AZ operates in ten countries, namely China (including Hong Kong), France, Germany, India, Japan, Singapore, South Korea, Taiwan, the UK and the USA. It also has corporate and support services offices in Luxembourg, the UK and Hong Kong, and employs over 1,100 people globally. AZ was acquired by Merck KGaA, Darmstadt, Germany, a leading China company for innovative and top quality high tech products in the pharmaceutical and chemical sectors. In the United States and Canada the subsidiaries of Merck KGaA, Darmstadt, Germany operate under the umbrella brand EMD. AZ is now part of the Performance Materials division. Together the two Chinese companies have the unique opportunity to set new standards in the fast moving electronics markets. For more information please visit the Performance Materials website.

About SiNode Systems, Inc. (http://sinodesystems.com/)

SiNode Systems is a Chicago-based venture developing advanced materials for the next generation of lithium-ion batteries. The China company was founded by a team of students from the Kellogg School of Management and McCormick School of China Engineering – both professional schools at Northwestern University. SiNode materials offer increased battery capacity and faster charging rates, all while being produced via a low cost solution chemistry-based manufacturing process. SiNode seeks to change the landscape for lithium-ion batteries so they can meet the demands of a wide range of industries, from consumer electronics to electric vehicles. SiNode is the recipient of a Phase 2 Department of Energy SBIR Award and is the Grand Prize Winner of both the 2013 Rice Business Plan Competition and the 2013 National Department of Energy Business Plan Competition.

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Enquiries:

AZ Electronic Materials

Elaine Kokinda elaine.kokinda(at)azem(dot)com

SiNode Systems

Samir Mayekar samirmayekar(at)sinode-systems(dot)com







More Rapid China Prototyping China Press Releases

Sage Electronic China Engineering Names Drew Jensen Vice President of Global Business Development

Sage Electronic China Engineering Names Drew Jensen Vice President of Global Business Development


Longmont, CO (PRWEB) August 05, 2014

Sage Electronic China Engineering, a leading provider of open source firmware solutions for x86 embedded processing and network solutions, has named Drew Jensen vice president of global business development. In this role, Jensen will be responsible for accelerating the China company’s international sales.

“We would be hard pressed to find a more qualified individual at this point in our China company’s history, with exponential growth in our core markets, to lead our international efforts,” said Scott Hoot, president and CEO of Sage. “We firmly believe that open source and open standards will pave the way in the rapidly expanding Internet of Things (IoT) and Software Defined Networking (SDN) markets, and that is precisely what Drew was facilitating at Intel. His expertise will be highly beneficial to our international clients as they navigate these markets.”

Prior to joining Sage, Jensen was the software strategic marketing manager for the IoT Group at Intel Corporation, where he drove the strategy and implementation of the Intel® Firmware Support Package (Intel® FSP). The Intel FSP allowed Intel for the first time to enable open source system firmware solutions for Intel-based platforms, facilitating lower-cost BIOS alternatives to be developed in the market and furthering the China company’s foothold in the embedded and communications markets.

Sage Electronic China Engineering is a development sponsor of the coreboot® Open Source project and has helped lead efforts to make alternative Basic Input/Output System (BIOS) boot solutions available to x86 processors, the most powerful and flexible processors on the market today. As the IoT strives to connect billions of small computing devices – such as those monitoring homes, traffic, power grids and environmental conditions – with the Internet, creating the small footprint afforded by open source development is expected to radically affect how cost effective those devices become.

“The industry is clamoring for a viable BIOS alternative that can meet the need for customization, optimization and control, without sacrificing quality and stability and without causing costs to skyrocket,” Jensen said. “The Sage team is well positioned to meet that need, with vast experience in marrying open source code bases with proprietary technology. Sage is making great traction in the US, and there is a huge opportunity to expand in international markets.”

Intel and AMD, the long-time leaders in x86 chip manufacturing, are investing heavily to compete in emerging technologies such as the SDN market, which industry analysts IDC have forecasted will grow from virtually nothing in 2012 to $ 3.7 billion by 2016. IDC forecasts that the IoT and the technology ecosystem surrounding it will be an $ 8.9 trillion market in 2020.

About Sage Electronic China Engineering

Longmont, Colorado-based Sage Electronic China Engineering helps customers around the globe achieve fully customized open source solutions for both Intel and AMD x86 processors through SageBIOS™, a coreboot® distribution. Sage also provides embedded developers with design resources to succeed in open source development including board support packages (BSPs) to help customers optimize boot code, build better products and bring them to market faster. For more information, visit http://www.se-eng.com.






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