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    <title>Journal of Optoelectronics Engineering</title>
    <link>http://www.sciepub.com/journal/JOE</link>
    <description>Journal of Optoelectronics Engineering is a peer-reviewed, open access journal that provides rapid publication of articles in all areas of optoelectronics engineering. The goal of this journal is to provide a platform for scientists and academicians all over the world to promote, share, and discuss various new issues and developments in different areas of optoelectronics engineering.</description>
    <dc:publisher>Science and Education Publishing</dc:publisher>
		<dc:language>en</dc:language>
		<dc:rights>2013 Science and Education Publishing Co. Ltd All rights reserved.</dc:rights>
		<prism:publicationName>Journal of Optoelectronics Engineering</prism:publicationName>
		5
		1
		January 2017
		<prism:copyright>2013 Science and Education Publishing Co. Ltd All rights reserved.</prism:copyright>
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<title>
Analysis and Design of a Power Consumed Limiter: Case of the Customers of National Society of Electricity of Congo/Likasi Town
</title>
<link>http://pubs.sciepub.com/joe/5/1/1</link>
<description>
<![CDATA[This article presents the fundamental interests and a design of a power limiter that allow the limitation of active power consumed by subscribers of a company that provides electrical power. It allows the National Company of Electricity (SNEL) to fix a power in kW subscribers, after determining their consumption. If a subscriber exceeds the subscribed or contracted power, electric power is cut off for five minutes. Upon resumption, if the subscriber has not decreased its consumption in less than a second, electric power is interrupted again; interruptions will not cease until the subscriber will not reduce consumption.]]>
</description>
<dc:creator>
Kankolongo  C. Kambaya, Katond  JP. Mbay, Diambomba  H. Tungadio
</dc:creator>
<dc:date>2017-2-16</dc:date>
<dc:publisher>Science and Education Publishing</dc:publisher>
<prism:publicationDate>2017-2-16</prism:publicationDate>
<prism:number>1</prism:number>
<prism:volume>5</prism:volume>
<prism:startingPage>1</prism:startingPage>
<prism:endingPage>6</prism:endingPage>
<prism:doi>10.12691/joe-5-1-1</prism:doi>
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<title>
Luminescent Phosphor-in-Glass Composite for White Light-Emitting Diodes
</title>
<link>http://pubs.sciepub.com/joe/5/1/2</link>
<description>
<![CDATA[A luminescent composite material based on YAG:Ce<SUP>3+</SUP>–doped silicate glass (Phosphor-in-Glass, PiG) was fabricated and studied. For the glass matrix, the 40SiO<SUB>2</SUB>–25PbF<SUB>2</SUB>–20PbO(Pb<SUB>3</SUB>O<SUB>4</SUB>)–15AlF<SUB>3</SUB> material was used. PiG samples were sintered at the temperature 550°C with concentration of YAG:Ce<SUP>3+</SUP> varying from 90% down to 50%. Luminescence spectra of the PiG samples were recorded and quantum efficiency of the experimental samples was measured with the use of an integrating optical sphere. A design of light-emitting diode (LED) modules with the sintered PiG was developed and the temperature of the surface of the modules was analyzed.]]>
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<dc:creator>
M.A.  Kistankina, V.A.  Aseev, J.V.  Tuzova, K.D.  Mynbaev, V.E.  Bougrov, N.V.  Nikonorov, A.E.  Romanov
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<dc:date>2017-3-25</dc:date>
<dc:publisher>Science and Education Publishing</dc:publisher>
<prism:publicationDate>2017-3-25</prism:publicationDate>
<prism:number>1</prism:number>
<prism:volume>5</prism:volume>
<prism:startingPage>7</prism:startingPage>
<prism:endingPage>9</prism:endingPage>
<prism:doi>10.12691/joe-5-1-2</prism:doi>
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