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Welcome! - Water and water... there is a lot of water on our small planet-Water happens to be one of the most abundant natural resources that this planet has to offer; over 70% of our globe is covered with it, and no drilling or discovery is needed

Big fundamental question ? - How can we extract some of the enormous amount of energy in form of clean hydrogen fuel out of water economically? We found the answer..

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Open Invitation

We are starting the second and third stages of our project.
We are forming  an executive groups for our global ventures in individual countries, we are seeking individuals who have proven their skills either by their experience and/or their professional excellence. If done properly to maximize the potential of this technology, it has the ability to over time make our new company (organization) the largest company in the world if we so desire. However, technology will not do this on its own: It needs the support and dedication of the right mix of people to make it happen.  The rewards could be enormous. Therefore, if you are confident that you have what it takes to help us move ahead, please send us your story and tell us why you wish to join our endeavor.

1)We are looking for JV partners who will help us to take our technology to the next level of global presence, and who will ultimately benefit from the partnership.

2) At this stage, we are not looking for employees. Rather, we seek self-made and self-motivated achievers from every professional discipline. We need leaders who can motivate others, and who don't depend on a paycheck every month. They must nevertheless be willing to put their time and effort behind something big when the opportunity presents itself. In return for helping to mold and bake the pie, they will have the privilege of tasting a piece of the pie when it is done.

3)Our goal is to maximize the global potential of the technology to its fullest.

4)  We seek JV partnerships with governments around the world.

5)  We seek JV partnerships with manufacturers around the world.

5)  We seek JV partnerships with utility companies around the world.

6)  We seek JV partnerships with capital markets.

7)  We seek JV partnerships with financial institutions with local and global presence.

8)  We seek JV partnership with any other entity or individual that may be of help, consistent with our goals.


Investing and bringing to the global markets environmentally clean and affordable technologies that will revolutionize the entire energy industry.





Safe Harbor Statement

Statements about the Company's future expectations and all other statements in this Introduction release other than historical facts, are "forward-looking statements" within the meaning of Section 27A of the Securities Act of 1933, Section 21E of the Securities Exchange Act of 1934, and as that term is defined in the Private Securities Litigation Reform Act of 1995. The Company intends that such forward-looking statements be subject to the safe harbors created thereby. The above information contains information relating to the Company that is based on the beliefs of the Company and/or its management as well as assumptions made by and information currently available to the Company or its management. When used in this document, the words "anticipate," "estimate," "expect," "intend," "plans," "projects," and similar expressions, as they relate to the Company or its management, are intended to identify forward-looking statements. Such statements reflect the current view of the Company regarding future events and are subject to certain risks, uncertainties and assumptions, including the risks and uncertainties noted. Should one or more of these risks or uncertainties materialize, or should underlying assumptions prove to be incorrect, actual results may vary materially from those described herein as anticipated, believed, estimated, expected, intended or projected. In each instance, forward-looking information should be considered in light of the accompanying meaningful cautionary statements herein. Factors that could cause results to differ include, but are not limited to, successful performance of internal plans, the impact of competitive services and pricing and general economic risks and uncertainties.


The Energy Revolution is Here!

New Revolutionary Energy Technology product of this century – Environmentally friendly non polluting Small ImPS™- (Independent micro Power Station™) and ImHFPU™(Independent micro Hydrogen-based Fuel Production Unit™). The two unit system is going to the product development stage and is designed for home or small business. The system will produce electricity, heat and hot water, and it includes a unit producing its own hydrogen-based fuel from WATER on demand!!   Anytime, anywhere, no storage of fuel is necessary. Depending on individual unit design size this small unit will produce anywhere from 3kW and up to 50 kW of electricity per hour, 24-7, and is designed with an in-line option: You may connect up to 10 individual units together for larger power capacity. Its own fuel cost is a fraction of the cost of any of the fossil fuels used today, and any unused electricity produced may be sold to the grid or used to power your future plug-in electric car – allowing you to drive essentially for free. The system can be scaled up or down. Up to 1 Mill. Units per year pilot - model manufacturing facilities are under negotiations with a European country with generous incentives and tax advantages. There are enormous global opportunities. This technology will be ready for mass manufacturing in about 20 months, and it will be able to be manufactured with current manufacturing technologies anywhere in world.


We believe this is the right time to proceed with the ImPS™. This is a revolutionary new technology. The potential market is enormous, and it is measured in thousands of billions of dollars. The initial devices must work, but they do not necessarily have to be the least expensive or the best performing. Following acceptance, evolution and improvement will follow just as the capacity and speed of the first computers has come a very long way in a relatively short time. Nevertheless, even if this technology is adopted today around the world, it may still take some 20 - 25 years to feel the difference.

    As there is still much to be done from the labs to product development and product manufacturing, we are at this time very secretive and selective with any technical information we are willing to disclose. There are intellectual property protection concerns, we do realize what we have and would be quite content to achieve our first goal (the development of our pilot manufacturing plant program) within a reasonable time.  At that point, the product would speak for itself. Product development, however, may be a time-consuming and expensive process.

    In this regard, we are running into a new dilemma. The scope of the potential is so huge that it seems no individual company in the world is large enough to take on the task of its development, marketing, distribution, etc. on their own. We do not see any “fast track” to achieve what is needed.  In late 2007-2008 we tried for over a year to solicit pricing and to enlist the contract manufacturing industry. We found limited success for production of only 100,000 of the units per year. The issues of retooling, capacity and a full range of other issues were cropping up.  To satisfy the potential demand, the 100,000 units would be a mere “drop in the bucket” or an introduction to the market potential. This is a global effort. 

   In the EU there are over 212 million households and in United States other 114 million households and millions of small businesses this is enormous base to start with.  Energy is the most important link and will need much more attention than ever before, and as the regions start to recover from the recent financial and real estate crisis we must refocus on future of our energy that is directly and profoundly effecting our economic health, our survival depends on it. The EU and US should take a leadership in this new NO CARBON eH2Fuel and ImPS technology and start the new era of global Hydrogen economy.

    In light of these realities, conventional wisdom tells us that there must be a different approach as we start to look for suitable partners.  Our strategy when all is complete will be to offer a license and technical support with signed contractual agreements, whenever feasible with individual countries, that may want to adopt this technology. There are approximately 150 out of some 200 countries that may see this technology as a step in the right direction as they try to solve their energy issues. The license would include a complete blueprint to the manufacturing process to allow them to build their own units and all the necessary components. It would allow them to provide direct employment to their own people. The blueprints for the manufacturing and assembly facilities would also be included.

    A pilot working model of the manufacturing plant for all the necessary parts with some 10 000 employees directly adjacent  to the assembly plant with approximately other 5000 employees, producing up to 1 million units per year is planed for full production. We are presently in negotiations with a few governments and are preparing build this facility. Some governments are offering very tempting incentives to build such a project in their countries, and offers are on the table that include incentives such as 5-year tax holidays, providing land and possibly buildings, and even providing generous financial incentives for every new job created in their countries for up to three years. If an acceptable agreement will be reached and everything goes according to the projected time frame, then the first units may roll out in 2016. The working-model facility may be replicated in any country and be sized up or down to whatever capacity is necessary.


  New Technology

One would assume that it would be imperative to obtain patents for this technology.  In any other circumstances or in some other product sector, this would be true.  However, given the nature of this technology, it appears that applying for a patent at this time would not be in our best interest.  While the patent itself would likely be easy to get, it would be very hard and very expensive to protect, given the fact that there are always people around the world who do not play by the rules.  Companies do violate patent protections and profit from infringements, knowing that patent violations will take years to meander through the court systems and cost millions of dollars to pursue. Ultimately, the punitive financial consequences are quite minor.  Despite this, three date/time-stamped original sets of complete documents for this technology were placed for safekeeping with three different law firms in different countries in order to preserve a record of vesting.

    In an ideal world, we would be more than willing to share the technology with the entire human race for free, if no one else would want to profit from it at our expense.  The technology is real, but to share it for free with the human race as a whole is just not realistic. Unfortunately, there will always be forces that would want to either shelve the technology for at least another 20 years or to do nothing more than profit financially from the use of this technology by the earth’s masses. Therefore, since we do not live in an ideal world and we are at this time unable to give this technology to the world for free, we feel we should try the next best option. When all is in place, we would simply offer the technology, simultaneously, to as many interested individual countries and/or their respective representative companies as possible.  We would obtain contractual agreements in exchange for license and license fees, and a small per capita fee. 

 At that point, each country would be free to decide how the technology would be manufactured, who would manufacture the product, the time frame to be followed, what the price would be, what laws would govern its use, and what regulatory and licensing regulations would be in effect.  The ultimate hope is that each government knows its country’s needs the best, and would want the best for its citizens.   Absent this type of cooperation and some governmental participation, private companies attempting to enter the sphere of public utilities are met with almost insurmountable barriers.


    Whenever possible, we will try marketing our technology to the governments themselves. This approach, as outlined above, would be more practical for us at this stage, if that proves not practical in some cases there is always private industry.

 ImPS™ is able to produce its own cheapest fuel available and used to produce electricity in excess of a homeowner’s and/or small business’ needs. If designed for excess production of electricity, the owner may sell the excess capacity to the grid, (subject to the individual countries’ laws and regulations) thereby reducing the effective capital cost of the investment.  For those who will not be able to afford the unit initially, there will be many new business opportunities stemming from the production of one’s own energy.  Financing such a system should be any finance company’s dream since the unit is producing energy that can be sold back to utilities at a profit.

It is estimated that the unit will pay for itself in less than two years. There may also be an opportunity for utilities or any other related companies to install the unit in individual homes with reduced cost or even without cost to homeowners/business owners in exchange for electric bill reductions of perhaps 15-20%.  There are many variations that the market will find to guarantee the economic success of this technology. Hydrogen-based fuel system deployment may well need much less net capital than the current central energy production businesses, and should be largely self-financing from the revenues that it will be able to generate.

Any additional information must be requested via the "Contact Us" page. E-mail the necessary information and sign the Non-Disclosure and Confidentiality Agreements