20141211 - Design Document for Neodymium Generator Clean Energy HomeBox 1.2 ENGLISH

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    NEODYMIUM FANGENERATOR HOMEBOXENGLISH TRANSLATION

    Technisch- en functioneel ontwerp

    Auteur : Kay Doornink

    Datum : 11 december 2014

    Versie : 1.2 Eng

    Bijlagen : CV Kay Doornink, May 2014

    Nothing from this publication may be distributed without approval of the author. This document is printed on paper with

    the FSC-label.

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    INHOUD

    Inhoud..................................................................................................................................................................... 2

    2. Functioneel Ontwerp .......................................................................................................................................... 4

    Functionality #1: On/off switch .......................................................................................................................... 4

    Functionality #2: Accessing the units ................................................................................................................. 4

    Functionality #3: The case .................................................................................................................................. 5

    Functionality #4: Magnetic shielding foil or plates ........................................................... .................................. 5

    Functionality #5: Stabilising the generated power ........................................................... .................................. 5

    Functionality #6: Power inverter 220 volt. ......................................................................................................... 5

    Functionality #7: Fuses ....................................................................................................................................... 5

    Functionality #8: Mobility ................................................................................................................................... 5Functionality #9: Extra coil ................................................................................................................................. 5

    5. Technisch Ontwerp ........................................................................................................... .................................. 6

    6.1 Schematic view (dutch) ............................................................... ................................................................. . 7

    6.2 3D-View ........................................................................................................................................................ 7

    7. Patent ............................................................................................................................................................... 12

    8. Benefits and payment ............................................................ ................................................................. .......... 13

    9. Costs ............................................................ ................................................................. ................................ 14

    9. CV (Dutch) ........................................................ .....................................................Error! Bookmark not defined.

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    1.INLEIDING

    Id like to investigate new trends and technology related to my job; information management / business

    consultancy. Im also interested in psychology and allways keep an eye for new scientific, technology

    publications. While watching a few movies about neodymium magnets on youtube, i found a few enthousiasts

    who published their Do It Yourself generator by powering four lightbulbs with a CPU-fan. This really intrigued

    me to ivestigate the concept for commercial use. A unit can be build with a CPU-fan inside and little flat

    neodymium magnets on the blades. While putting two extra magnets with their polars aligned at the corners,

    the fan starts spinning around and producing energy.

    By using ten units which are separeted from echother with magnetic shielding plates, a powerfull generator in

    a small case will produce 400 WATTs of power. The outlets are similar to wallsockets. In this design a concept

    is shown with technical and functional specifications for a standard model. From this base concept, more

    designs and concepts could be created. The generator can be used for powering any kind of consumer

    elektronics, or be used commercially in an office or datacenter. When wrapping copper wire around a single

    fan, even more energy could be produced.

    The parts that are needed for a complete working generator are cheap, the energy that is produced applies to

    standards for green and clean energy. Besides that, you dont have to worry a bout sun or wind. The generator

    will produce energy 24 hours a day, seven days a week. And it doesnt make any sound. The few decibels from

    the spinning fans are equal to the sound of a CPU-fan. While using a 20 cm fan like in this design, the decibels

    are even lower. Think about the possibilities. When the design is further developed and changed to a flat box,

    it can be stored under a bed or datacenter floor. New designs can be made based on strategic marketing

    techniques.

    In this document ill explain the design of a neodymium generator with technical and functional specifications.

    If you are interested in the concept, feel free to contact me for more information. My contact information can

    be found in my CV at the last page of this document.

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    2.FUNCTIONEEL ONTWERP

    The functional specifications are written from a user perspective. gaat in op de functionele specificaties. They

    key for a good functional design is to think like a customer who bought the generator and imagine what he or

    she would need to use the generator in a efficient and friendly manner. The functionalities are categorized via

    the MoSCoW model. This stands for Musthave, Should have, Could have, Would have. By categorizing thepriority of functionalities, an approach that suits your budget could be made. These functionalities are

    basically related to a specific marketing strategy.

    Must Have

    1.

    On/off switch

    2. Case as little as possibe.

    3.

    Units with a fan should have a mechanism to slide them out of the case and open up for maintenance.

    4.

    Magnetic shielding plates or foil between the units to decrease interference.

    5. Electronic components to stabilize the output from the fans to 12 volt.

    6.

    50AH (car)battery to store the generated energy.

    7.

    Power invertor to change current from 12 volt to 220 volt with two wall outlets.8.

    Relais

    9.

    LEDs

    Should Have

    10.

    Modern design

    11.

    The case should be easy to transport and picked up.

    12.

    Possibility to turn each unit on or off seperately.

    Could Have

    13.

    Extra copper wire around the fan for more energy.

    Would Have

    -

    FUNCTIONALITY #1:ON/OFF SWITCH

    There are sever options for realizing an on/off switch. The generator in

    this design document has ten units. In each unit, the fan must start

    spinning. Because the generator can keep generating energy 24 hours a

    day, 7 days a week, ive chosen for the easi est option; a single on/off

    switch on each seperate unit. It works by pushing a plug with a magnet

    at the end to the corner of the fan. When the magnet reaches the fan, it

    starts spinning. Another benefit of this type of on/off switch is that it is

    possible to regulate the output voltage by turning more or less units on

    or off.

    FUNCTIONALITY #2:ACCESSING THE UNITS

    By all units there must be a mechanism to open the unit and do maintenance. The top of the unit can be

    removed, so the entire unit can be accessed. See also on Figure 1.

    FIGURE 1: INSIDE OF A NEODYMIUM

    GENERATOR UNIT

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    FUNCTIONALITY #3:THE CASE

    The case needs to be portable and lightweight. Aluminium case is the best solution regarding these

    requirements. Furthermore the case needs to have a modern design that fits properly in a livingroom, office or

    any other type of workspace where power is needed. The case is painted in black.

    FUNCTIONALITY #4:MAGNETIC SHIELDING FOIL OR PLATES

    Between each fan-unit in the case a magnetic shielding foil or plate must be applied. This prevents the fans

    from interfering with eachother.

    FUNCTIONALITY #5:STABILISING THE GENERATED POWER

    A voltage regulator should ensure that all energy coming from the ten fans is stabilized at 12 volt so it can

    charge up the battery where the generated power is stored.

    FUNCTIONALITY #6:POWER INVERTER 220VOLT.

    The 12 volt current coming from the battery needs to be inverted to the nominal wall-outlet current; in this

    design 2 x 220 volts. The case suites two outlets. The inverter should give an MAX output of 400WATT.

    FUNCTIONALITY #7:FUSES

    The generator needs to be protected with fuses from overpowering or shortcircuit.

    FUNCTIONALITY #8:MOBILITY

    Portable and mobile are two important aspects of the generator. To lift it up easily, two edges on both sides of

    the case will make it possible to lift the case up and have a steady hold on it.

    FUNCTIONALITY #9:EXTRA COIL

    An extra copper wire wrapped around the fan could make it possible to produce even more power. When the

    magnets on the blades spin close to the copper coil, elektricity is produced. This energy could than be

    transferred to the battery.

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    5.TECHNISCH ONTWERP

    In this technical design all components are described and their relationship in between. A technical design

    along with the functional design are fundamental input material for the producer / designer. Below youll find

    a schematic side-view of the Neodymium Generator. In the upper area two fan-units are placed on top of

    eachother. These are all connected to a voltage regulator. This regulator ensures that a stable current of 12volt is going to the battery. A 50 AH battery should be enough, though this aspect could use extra research

    regarding other types of batteries.

    The neodymium fans continuously charge up the battery, like a dynamo in a car. On each blade of the fan is a

    small, flat neodymium magnet glued. By placing two neodymium magnets against the corners of the fan with

    their polarity properly aligned, the fan with magnets on the blades starts spinning. To turn a unit on, simply

    push the button forward to place a magnet against the corner of the fan. It will start spinning automatically

    and produce clean energy immediately.

    An inverter transforms the 12 volt current into 220 volt. This element is attached to the battery. Fuses make

    sure it is protected for overpowering or shortcircuit. Below is a schematic view of the generator and its

    components:

    FIGURE 2: SIDE VIEW OF THE NEODYMIUM GENERATOR

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    6.SCHEMATIC AND 3DVIEWBelow youll find a schematic view and a 3D view of a concept design that is ready for mass production. As you

    can see the case is straight forward, modern, and suites fine in almost every environment. For designing the

    3D images ive created a contest onDesignCrowd.com. Via this website graphic designers can apply for your

    contest. This design has won the contest and ive payed for all the copyrights.

    6.1SCHEMATIC VIEW (DUTCH)

    20141009 - Neodymium Fan HomeBox Generator schematische weergave 1.0.pdf

    6.23D-VIEW

    As you can see on the pictures the case is black and the units are stored on top of eachother. The units are

    placed in sleeves to pull them out of the case for maintenance purposes.

    FIGURE 3: NEODYMIUM FAN GENERATOR - FRONT

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    FIGURE 4: NEODYMIUM FAN GENERATOR - 3D VIEW 1

    FIGURE 5: NEODYMIUM FAN GENERATOR3D VIEW 2

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    FIGURE 6: NEODYMIUM FAN MODULE

    FIGURE 7: NEODYMIUM FAN MODULE - 3D VIEW

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    FIGURE 8: INSIDE NEODYMIUM FAN MODULEBACK

    FIGURE 9: INSIDE NEODYMIUM FAN MODULE - FRONT

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    FIGURE 10: CASE

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    7.PATENT

    To protect my idea i have uploaded it on Ccproof.nl to get a watermarked version of the basic concept:

    A neodymium generator exists for industrial purposes with a whole other mechanism. You could search the

    patent registers of your country, Europe, other continents or the global register for patents. I havent found

    any.

    540e56eb45488.pdf

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    8.BENEFITS AND PAYMENT

    In the video below i explain the benefits of a neodymium generator.

    20141211 - Neodymium generator.avi

    Please do not e-mail to my paypal account. I dont check that address daily. You can call me on the number in

    the video and ill explain any questions you have.

    PRICE:EUR 3.500.000,-

    Instructions:

    If you are allready convinced, the first buyer will receive the design and patent right. Send 10.000 euro to myPayPal account. If youre second or later, i will refund the transaction immediately. Besides that, PayPal has

    buyer protection.

    After the first payment, we can have an official meeting or appointment. You also get the design template, the

    original pictures and MAYA source-files, receipts from the GFX artist and offcourse the right to patent the

    generator.

    Tip:

    If you want to patent the product in a specific country around the globe, you can open a virtual office in that

    country.

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    9.COSTS

    Omschrijving Raming

    10 x case-fans, 20 cm diameter. 130,-

    Aluminium behuizing, bulk afname 50,-

    Spanningswisselaar / -regelaar 20,-

    Accu 50 AH 55,-

    Omvormer 12v220v, 400 WATT MAX 60,-

    Ontwerpkosten 150,-

    80 Neodymium magnets self adhesive 40,-

    TOTAAL 505,-

    Realisatie maatwerk behuizing Pm.

    (Massa)Productie Pm.

    Marketing en Sales Pm.

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    Kay DoorninkCurriculum VitaeMei 2014

    Personalia:

    Naam:

    Adres:

    Postcode:

    Woonplaats:

    Telefoon:

    E-mail:

    Geboortedatum:

    Geboorteplaats:

    Nationaliteit:

    Rijbewijs:

    Kay Doornink

    Polderlaan 3

    3241 SK

    Middelharnis

    06 25 41 22 91

    [email protected]

    4 februari 1986

    Rotterdam

    Nederlandse

    Ja

    Opleidingen:

    2012-heden Open Universiteit Nederland

    Master of Science (MSc) , Business Process

    Management & IT

    Diploma: Verwacht in 2015

    2012-2012 Institute for International Research

    (IIR)

    Informatie Architectuur Fundamentals voor

    de Gemeente

    Diploma: Ja

    2008 - 2012 LOI Hogeschool

    HBO Bachelor,Technische Informatica:

    System and Network Engineering

    Diploma: Ja

    mailto:[email protected]:[email protected]://www.linkedin.com/college/?eduSchool=LOI+Hogeschool&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-school-namehttps://www.linkedin.com/search?search=&keywords=Technische+Informatica%3A+System+and+Network+Engineering&sortCriteria=R&keepFacets=true&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-field_of_studyhttps://www.linkedin.com/search?search=&keywords=Technische+Informatica%3A+System+and+Network+Engineering&sortCriteria=R&keepFacets=true&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-field_of_studyhttps://www.linkedin.com/search?search=&keywords=Technische+Informatica%3A+System+and+Network+Engineering&sortCriteria=R&keepFacets=true&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-field_of_studyhttps://www.linkedin.com/search?search=&keywords=Technische+Informatica%3A+System+and+Network+Engineering&sortCriteria=R&keepFacets=true&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-field_of_studyhttps://www.linkedin.com/college/?eduSchool=LOI+Hogeschool&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-school-namemailto:[email protected]
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    20032007 ROC Zeeland

    MBO Niv. 4,ICT Beheerder

    Diploma: Ja

    Werkervaring:

    01/2013 - heden Gemeente Goeree-Overflakkee

    Beleidsadviseur Informatiemanagement

    Middelharnis

    Bij het opereren op het snijvlak tussen IT en de business voel ik mij als een vis in het water.

    Ik inventariseer politieke ambities en doelstellingen, strategische kaders met betrekking

    tot bedrijfsvoering en dienstverlening, en (beleids)ontwikkelingen van interne afdelingen.

    Al deze elementen vertaal ik naar een integraal informatiebeleid waarbijinformatiestromen, architectuur, bedrijfsprocessen en automatisering zo optimaal en

    efficint mogelijk op elkaar worden afgestemd. Werken onder architectuur gebruik ik als

    stuurinstrument voor beheerst veranderen en het creren van integraliteit en samenhang.

    Daarnaast adviseer ik het management en het bestuur over I&A-vraagstukken en stuur ik

    diverse organisatiebrede projecten en programma's aan. Tot slot zorg ik vanuit mijn rol als

    Security Officer voor het opstellen, borgen en het jaarlijks actualiseren van een

    gemeentebreed informatiebeveiligingsplan

    11/200912/2012 Gemeente Goedereede

    Beleidsmedewerker ICT

    Goedereede

    Referentie 1:Arnold van Wijk

    Functie: Afdelingshoofd BMO

    E:[email protected]

    T: 14 0187

    Referentie 2:Henk van Steeg

    Functie: Gemeentesecretaris

    E:[email protected]

    T: 0180-66 77 77

    Als beleidsmedewerker ICT voor de gemeente Goedereede was ik werkzaam op de

    grensvlakken van organisatie, bedrijfsprocessen en informatietechnologie. Ik wasverantwoordelijk voor het proactief ontwikkelen, evalueren en implementeren van ICT-

    beleid en architectuurscenarios passend bij de wensen van de organisatie. Daarnaast was

    ik verantwoordelijk voor het optimaal technisch functioneren van de automatisering en

    adviseerde ik over organisatiebrede vraagstukken omtrent ICT. Tevens was ik belast met

    het managen van projecten en het opzetten en aansturen vanprogrammas op het gebied

    van IT Governance..

    https://www.linkedin.com/search?search=&keywords=ICT+Beheerder&sortCriteria=R&keepFacets=true&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-field_of_studymailto:[email protected]:[email protected]:[email protected]:[email protected]:[email protected]:[email protected]:[email protected]:[email protected]://www.linkedin.com/search?search=&keywords=ICT+Beheerder&sortCriteria=R&keepFacets=true&goback=%2Enmp_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1_*1&trk=prof-edu-field_of_study
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    06/200711/2009 Gemeente Goedereede

    Systeem- en netwerkbeheerder

    Goedereede

    Als systeem- en netwerkbeheerder bewaakte ik proactief de kwaliteit, veiligheid en

    beschikbaarheid van het ICT-netwerk van de gemeente Goedereede. Mijn takenpakket

    bestond uit het installeren en onderhouden van het serverpark en de

    netwerkcomponenten, het installeren en technisch onderhouden van applicaties en het

    beheren van de werkplekken. Daarnaast was ik actief betrokken bij diverse migratie- en

    implementatieprojecten.

    Grote projecten:

    2014 Informatiebeleidsplan 2014-2017 Gemeente Goeree-Overflakkee

    Rol:Auteur en programmamanager

    Om de brug te slaan tussen bedrijfsvoering en informatisering werk ik momenteel (februari

    2014) aan een informatiebeleidsplan. De strategische en tactische informatievraagstukkenworden doorvertaald naar operationele projecten. Het cordineren van de uitvoering van

    deze projecten doe ik vanuit mijn rol als programmamanager.

    2014 Borgen informatiebeveiliging Gemeente Goeree-Overflakkee

    Rol:Auteur, Programmamanager (Security Officer) en Projectleider

    Ik heb een informatiebeveiligingsplan opgesteld dat aansluit op de ambities van het

    bestuur en het MT, wettelijke vereisten en landelijke kaders zoals de BIG. Het

    organisatorisch en bestuurlijk borgen van informatiebeveiliging in de gemeentelijke

    organisatie gebeurt door middel van zes projecten. Deze projecten worden aangestuurd

    vanuit een Beveiligingsorganisatie waarvan ik de voorzitter ben. Enkele projecten /

    activiteiten voer ik zelf uit, waaronder het opstellen van een continuteitsplan en het

    inventariseren en bijsturen van houding en gedrag van onze medewerkers.

    2014 Implementatie Mobiel Werken Gemeente Goeree-Overflakkee

    Rol:Projectlid

    Opstellen van beleid met betrekking tot het uitrollen, beheren en gebruiken van tablets,

    mobiele telefoons, ipads en laptops. Ontwerpen van diverse scenarios (BYOD, CYOD,

    HYOD) welke zijn afgestemd op de visie Het Nieuwe Werken.

    2012 Implementatie server infrastructuur Projectorganisatie Herindeling Goeree-

    Overflakkee

    Rol:Projectleider

    Dit project is uitgevoerd in samenwerking met Centric. Als projectleider namens de

    gemeente was ik verantwoordelijk voor de implementatie van een nieuwe server-

    infrastructuur in de fusiegemeente Goeree-Overflakkee (360 gebruikers). De nieuwe

    omgeving is gebaseerd op virtualisatie en Server Based Computing. Het team dat ik

    aanstuurde bestond uit alle systeembeheerders van de vier fusiegemeenten (9 personen).

    Voor de aansturing van het project heb ik PRINCE2 als methodiek gebruik.

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    2012 BIOB 2.0 Gemeente Goedereede

    Rol:Programmamanager

    BIOB staat voor Bruggen tussen Informatievoorziening, Organisatie en Bedrijfsvoering. Dit

    programma bestond uit 10 projecten ten behoeve van het doorontwikkelen van de visie op

    dienstverlening, bedrijfsvoering en afstemming in de informatievoorziening. Alsprogrammamanager stuurde ik tien projectleiders aan. Daarnaast bewaakte ik de

    kwaliteit, doorlooptijd en integraliteit van de projectwerkzaamheden binnen de daarvoor

    gestelde kaders.

    2010 BIOB 1.0 Gemeente Goedereede

    Rol:Programmamanager / Adviseur implementatie projectmatig werken

    De gemeente Goedereede had de ambitie om haar bedrijfsvoering en

    informatievoorziening een impuls te geven. De kern van de impuls werd bepaald door te

    streven naar een betere dienstverlening in combinatie met efficinter werken. Daarnaast

    werd geanticipeerd op landelijke ontwikkelingen en wettelijke vereisten (NUP). De impulsis projectmatig aangepakt in het programma BIOB. Aan dit programma lag een

    informatiebeleidsplan ten grondslag, waarvan ik de auteur ben. Bovendien werden in BIOB

    de ontwikkelingen van de bedrijfsvoering en informatievoorziening in lijn gebracht met de

    ontwikkelingen bij andere gemeenten op het eiland Goeree-Overflakkee. Als

    programmamanager stuurde ik dertien projectleiders aan.

    Daarnaast heb ik projectmatig werken in de organisatie gemplementeerd. Voor veel

    medewerkers was dat een nieuwe manier van werken. Uitvoering van dit programma

    bood kans om projectmatig werken in de organisatie voor het eerst te introduceren.

    Omdat PRINCE2 een zwarte methodiek is met een overhead aan managementinformatie

    habben we besloten om een eigen pragmatische methodiek te ontwikkelen. Hierin zijn

    alleen de hoofdelementen van PRINCE2 opgenomen, afgestemd op de ambtelijkeorganisatie en besluitvormingsprocessen.

    Skills:

    IT-Governance

    Programmamangement

    Risicomanagement

    TOGAF

    Projectmanagement

    Informatiemangement E-government

    Bedrijfsprocessen

    IT-Management

    Windows Server

    ITIL v3 Foundation

    CWNA

    IT-Strategie

    Informatie-architectuur

    Applicatie-architectuur Systeem Engineering

    Informatiebeveiliging

    Architectuur-raamwerken

    Certificeringen:

    Premaster

    Managementwetenschappen,

    Open Universiteit Nederland

    01/2014

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