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	<title>Comments on: Japanese Retail Investors Fund ADB Clean Energy Projects</title>
	<atom:link href="http://cleantechnica.com/2012/05/20/japanese-retail-investors-fund-adb-clean-energy-projects/feed/" rel="self" type="application/rss+xml" />
	<link>http://cleantechnica.com/2012/05/20/japanese-retail-investors-fund-adb-clean-energy-projects/</link>
	<description>Clean Tech News &#38; Views: Solar Energy News. Wind Energy News. EV News. &#38; More.</description>
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		<title>By: Vladimirkarasev1</title>
		<link>http://cleantechnica.com/2012/05/20/japanese-retail-investors-fund-adb-clean-energy-projects/#comment-121729</link>
		<dc:creator><![CDATA[Vladimirkarasev1]]></dc:creator>
		<pubDate>Mon, 21 May 2012 18:30:00 +0000</pubDate>
		<guid isPermaLink="false">http://cleantechnica.com/?p=38309#comment-121729</guid>
		<description><![CDATA[        Ladies and gentlemen, good afternoon.
The company Solarus Energy Ltd creates fund $ 3000000 for the
completion of work on the production  technology  Solar Cell efficiency of 35%.
INFORMATION TECHNOLOGY
At present the main trends in development by improving the efficiency of
photo electric plates in the application of new non-silicon materials.
So a few days ago, the Japanese company Sharp after nine years of work
 reported the creation of a prototype battery that runs without a hub, but
the efficiency of which is 35,8%.
New uses for electricity generation several photo-absorbing layers, united
among themselves. The substrate is made of battery connections on the basis
of indium and gallium. The properties provided by the battery is quite close
to those used in the aerospace industry. Talking about the mass use will not
have developers in the coming years to address issues of cost reduction and
a number of technological problems.
Our company has gone a different way:
1. We left a substrate of mono silicon.
2. on the surface of the substrate of mono silicon, we have consistently
strike a few
layers of thickness 50-100 nano meter (materials that are applied is our
know-how) -
* Main layer of nano-size mono atomic amorphous silicon, is a very active
state of amorphous silicon. In this layer, the speed of motion of electrons
is several times higher than the standard Cell-based silicon. And as this
layer is able to convert into electrical energy is not only the visible part
of the spectrum of sunlight and ultra violet and infra red radiation. Mono
atomic amorphous silicon produced by quantum chemical engineering at a
temperature of 20 degrees Celsius.
Properties of mono atomic amorphous silicon are truly unique.
Cost to automobile 1 gr. This material does not exceed $ 100.
At the same time using a gr. mono amorphous silicon can cover 10 square
meter
photovoltaic plates.
* Extreme layer is an anti-reflecting the carbon coating.
Total efficiencies achieved over 35%.
If you compare the cost of Sell-based mono silicon efficiency 16%
Cell produced by our technology with efficiency over 35%, our Sell more
10-15% while the efficiency of our Sell more than two times better.
While improving the technology and equipment we can achieve efficiency of
50% and above
.
The characteristics of our products:
Specification
Dimension: 156mm x 156mm ± 0.5mm
Thickness: 203 mc.m ± 0,5 mc.m, 180 mc.m ± 0,5 mc.m
Front: 2.0 ± 0.1mm busbar (silver)
Silicon nitride antireflection coating
Back 3.0mm continuous soldering pads (silver)
Back surface field (aluminum)
Efficiency - 35%
Power: 6,5 watt
Color uniformity A, grade

In addition to the use of solar energy nanoscale mono atomic amorphous
silicon and its application of our technology has great prospect of
application in the electronics industry.
When applying this material for silicon-based chip, we seek to increase
speed and memory in the old scale of the chip.
We have plans to use this technology in other areas - space, medicine .

All those interested in partnersitve as a partner-investor - write to us at the e-mail.


Yours
SOLARUS ENERGY Ltd
VLADIMIR  KARASEV
Email: vladimirkarasev1@gmail.com]]></description>
		<content:encoded><![CDATA[<p>        Ladies and gentlemen, good afternoon.<br />
The company Solarus Energy Ltd creates fund $ 3000000 for the<br />
completion of work on the production  technology  Solar Cell efficiency of 35%.<br />
INFORMATION TECHNOLOGY<br />
At present the main trends in development by improving the efficiency of<br />
photo electric plates in the application of new non-silicon materials.<br />
So a few days ago, the Japanese company Sharp after nine years of work<br />
 reported the creation of a prototype battery that runs without a hub, but<br />
the efficiency of which is 35,8%.<br />
New uses for electricity generation several photo-absorbing layers, united<br />
among themselves. The substrate is made of battery connections on the basis<br />
of indium and gallium. The properties provided by the battery is quite close<br />
to those used in the aerospace industry. Talking about the mass use will not<br />
have developers in the coming years to address issues of cost reduction and<br />
a number of technological problems.<br />
Our company has gone a different way:<br />
1. We left a substrate of mono silicon.<br />
2. on the surface of the substrate of mono silicon, we have consistently<br />
strike a few<br />
layers of thickness 50-100 nano meter (materials that are applied is our<br />
know-how) &#8211;<br />
* Main layer of nano-size mono atomic amorphous silicon, is a very active<br />
state of amorphous silicon. In this layer, the speed of motion of electrons<br />
is several times higher than the standard Cell-based silicon. And as this<br />
layer is able to convert into electrical energy is not only the visible part<br />
of the spectrum of sunlight and ultra violet and infra red radiation. Mono<br />
atomic amorphous silicon produced by quantum chemical engineering at a<br />
temperature of 20 degrees Celsius.<br />
Properties of mono atomic amorphous silicon are truly unique.<br />
Cost to automobile 1 gr. This material does not exceed $ 100.<br />
At the same time using a gr. mono amorphous silicon can cover 10 square<br />
meter<br />
photovoltaic plates.<br />
* Extreme layer is an anti-reflecting the carbon coating.<br />
Total efficiencies achieved over 35%.<br />
If you compare the cost of Sell-based mono silicon efficiency 16%<br />
Cell produced by our technology with efficiency over 35%, our Sell more<br />
10-15% while the efficiency of our Sell more than two times better.<br />
While improving the technology and equipment we can achieve efficiency of<br />
50% and above<br />
.<br />
The characteristics of our products:<br />
Specification<br />
Dimension: 156mm x 156mm ± 0.5mm<br />
Thickness: 203 mc.m ± 0,5 mc.m, 180 mc.m ± 0,5 mc.m<br />
Front: 2.0 ± 0.1mm busbar (silver)<br />
Silicon nitride antireflection coating<br />
Back 3.0mm continuous soldering pads (silver)<br />
Back surface field (aluminum)<br />
Efficiency &#8211; 35%<br />
Power: 6,5 watt<br />
Color uniformity A, grade</p>
<p>In addition to the use of solar energy nanoscale mono atomic amorphous<br />
silicon and its application of our technology has great prospect of<br />
application in the electronics industry.<br />
When applying this material for silicon-based chip, we seek to increase<br />
speed and memory in the old scale of the chip.<br />
We have plans to use this technology in other areas &#8211; space, medicine .</p>
<p>All those interested in partnersitve as a partner-investor &#8211; write to us at the e-mail.</p>
<p>Yours<br />
SOLARUS ENERGY Ltd<br />
VLADIMIR  KARASEV<br />
Email: <a href="mailto:vladimirkarasev1@gmail.com">vladimirkarasev1@gmail.com</a></p>
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	<item>
		<title>By: Zachary Shahan</title>
		<link>http://cleantechnica.com/2012/05/20/japanese-retail-investors-fund-adb-clean-energy-projects/#comment-121688</link>
		<dc:creator><![CDATA[Zachary Shahan]]></dc:creator>
		<pubDate>Mon, 21 May 2012 10:36:00 +0000</pubDate>
		<guid isPermaLink="false">http://cleantechnica.com/?p=38309#comment-121688</guid>
		<description><![CDATA[It&#039;s very easy to copy the article, paste it into a Word doc or Google doc, and then print. There are many print button options, but I find them worse than this option, so I don&#039;t put them on here.]]></description>
		<content:encoded><![CDATA[<p>It&#8217;s very easy to copy the article, paste it into a Word doc or Google doc, and then print. There are many print button options, but I find them worse than this option, so I don&#8217;t put them on here.</p>
]]></content:encoded>
	</item>
	<item>
		<title>By: Khengchan</title>
		<link>http://cleantechnica.com/2012/05/20/japanese-retail-investors-fund-adb-clean-energy-projects/#comment-121667</link>
		<dc:creator><![CDATA[Khengchan]]></dc:creator>
		<pubDate>Mon, 21 May 2012 07:41:00 +0000</pubDate>
		<guid isPermaLink="false">http://cleantechnica.com/?p=38309#comment-121667</guid>
		<description><![CDATA[How do you save or print this, please?
Where is the print function? Please update your software.

khengchan@yahoo.com]]></description>
		<content:encoded><![CDATA[<p>How do you save or print this, please?<br />
Where is the print function? Please update your software.</p>
<p><a href="mailto:khengchan@yahoo.com">khengchan@yahoo.com</a></p>
]]></content:encoded>
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