DE20107555U1 - Solar charger made of highly flexible solar cards, electrically wired and sewn into a collapsible case made of leather, synthetic leather, fabric or plastic - Google Patents

Solar charger made of highly flexible solar cards, electrically wired and sewn into a collapsible case made of leather, synthetic leather, fabric or plastic

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Publication number
DE20107555U1
DE20107555U1 DE20107555U DE20107555U DE20107555U1 DE 20107555 U1 DE20107555 U1 DE 20107555U1 DE 20107555 U DE20107555 U DE 20107555U DE 20107555 U DE20107555 U DE 20107555U DE 20107555 U1 DE20107555 U1 DE 20107555U1
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Germany
Prior art keywords
solar
cards
leather
fabric
sewn
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Expired - Lifetime
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DE20107555U
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German (de)
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Individual
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Individual
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Priority to DE20107555U priority Critical patent/DE20107555U1/en
Publication of DE20107555U1 publication Critical patent/DE20107555U1/en
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Expired - Lifetime legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/34Parallel operation in networks using both storage and other dc sources, e.g. providing buffering
    • H02J7/35Parallel operation in networks using both storage and other dc sources, e.g. providing buffering with light sensitive cells

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Photovoltaic Devices (AREA)
  • Purses, Travelling Bags, Baskets, Or Suitcases (AREA)

Description

Beschreibung der Erfindung zur Gebrauchs^flistptanineldiHig Ulrich Tscheuscnfer 20.November 2001Description of the invention for use in the manufacture of a medical device Ulrich Tscheuschnfer 20 November 2001

2.0 Beschreibung der Erfindung2.0 Description of the invention

Die Erfindung besteht darin, dass neu entwickelte hochflexible Solarkarten eingeschweisst in Teflonfolien zu einem leichten zusammenklappbaren Solarladegerät elektrisch verdrahtet und durch einnähen oder Verklebung in Leder, Kunststoff oder Stoff-Etuis miteinander verbunden werden.The invention consists in the fact that newly developed, highly flexible solar cards are welded into Teflon foil, electrically wired to form a lightweight, foldable solar charger and connected to one another by sewing or gluing them into leather, plastic or fabric cases.

Die Solarkarten sind in 3-Schicht &agr;-Silizium Technik hergestellt. Träger der 3 Siliziumschichten, die jeweils auf ein anderes Farbspektrum des Tageslichtes reagieren, ist ein dünnes Edelstahlblech. Die so hergestellte Solarzelle wird in Teflonfolien eingeschweisst. Die Gesamtdicke beträgt nur 1,2 mm, wodurch die Zelle sehr flexibel, unzerbrechlich und wasserdicht ist. Die Abmessungen der Standardzelle ist wie folgt: Länge: 180 mm, Breite: 80 mm. Aktives Solarzellenfeld Länge: 158 mm, Breite: 68 mm. Die fertige Zelle hat ein Gewicht von 35 Gramm. Die gemessene Normleistung einer Zelle bei einer Sonneneinstrahlung von 100 mW/cm2 und 220C beträgt:The solar cards are manufactured using 3-layer α-silicon technology. The carrier of the 3 silicon layers, each of which reacts to a different color spectrum of daylight, is a thin stainless steel sheet. The solar cell produced in this way is welded into Teflon foil. The total thickness is only 1.2 mm, which makes the cell very flexible, unbreakable and waterproof. The dimensions of the standard cell are as follows: Length: 180 mm, width: 80 mm. Active solar cell field length: 158 mm, width: 68 mm. The finished cell weighs 35 grams. The measured standard output of a cell with a solar radiation of 100 mW/cm 2 and 22 0 C is:

Spannung maximal V00 = 2,43 VoltMaximum voltage V 00 = 2.43 volts Strom maximal lsc = 564 mAMaximum current l sc = 564 mA Nennspannung Vmp = 1,92 VoltNominal voltage V mp = 1.92 Volt Nennstrom lmp = 440 mANominal current l mp = 440 mA Widerstand Rs - 583 mQResistance Rs - 583 mQ Wirkungsgrad Efc = 7,8 %Efficiency E fc = 7.8 % Füllfaktor Ff = 68 %Fill factor F f = 68 % Gewicht: G = 35 GrammWeight: G = 35 grams

Mit der Erfindung werden Benutzer in die Lage versetzt, bei ausreichender solarer Einstrahlung Batterien verschiedener Technologien wie Metallhydrid-Akkus, Lithium-Ionenakkus, Alkali-Manganakkus und Nickel-Cadmiumakkus aufzuladen und auch Kleingeräte elektrisch zu versorgen. Durch Zusammenklappen der Zellen nach Gebrauch wird eine handliche Grosse des Solarladers erzielt, der bei 3 Zellen insgesamt nur 140 Gramm wiegt.The invention enables users to charge batteries of various technologies such as metal hydride batteries, lithium-ion batteries, alkaline manganese batteries and nickel-cadmium batteries, as long as there is sufficient solar radiation, and also to supply small devices with electricity. By folding the cells together after use, the solar charger is a handy size, weighing just 140 grams with 3 cells.

Im Vergleich mit anderen solaren Ladegeräten besitzt das hier beschriebene Ladegerät folgende Neuerungen und Vorteile:Compared to other solar chargers, the charger described here has the following innovations and advantages:

• es ist keine Elektronik zwischen dem zu ladenden Gerät und der aufladbaren Batterie notwendig, sondern es werden nur die Kontakte verbunden• no electronics are required between the device to be charged and the rechargeable battery, only the contacts are connected

Beschreibung der Erfindung zur Gebrauchstjrtjstjfanrgeldujig Ulrich Tsiheuscri&r 20.November 2001 &bgr;Description of the invention for use in the medical device industry Ulrich Tsiheuscri&r November 20, 2001 &bgr;

• das Basiselement der Erfindung, die sogenannte Solarkarte vereint die Vorteile der 3-Schicht Siliziumzelle, wobei jede der übereinander aufgedampften Schichten auf ein definiertes Spektrum des Sonnenlichtes reagiert, durch das Einschweissen in dünne Teflonfolien, entsteht eine extrem flexible Zelle ultraleichte Solarzelle• the basic element of the invention, the so-called solar card, combines the advantages of the 3-layer silicon cell, whereby each of the layers deposited on top of each other reacts to a defined spectrum of sunlight, by welding in thin Teflon foil, an extremely flexible cell is created ultra-light solar cell

• mehrere einzelne Solarkarten können auch in eine gemeinsame Teflonfolie eingeschweisst werden. Dadurch können hochflexible Folienplatten mit bis zu 8 oder 10 einzelnen Solarkarten gebildet werden. Die elektrische Verdrahtung erfolgt dabei im Inneren der Folienplatte parallel oder seriell.• several individual solar cards can also be welded into a common Teflon foil. This makes it possible to create highly flexible foil plates with up to 8 or 10 individual solar cards. The electrical wiring is carried out inside the foil plate in parallel or series.

• Die so hergestellte Plastikkarte kann mit einer Lochung für DIN A 4 Ordner versehen in Mappen und Organisationsmappen, Ordnern und Zeitplanern abgeheftet werden. Das vorbeschriebene Zusammenlegen der Karten kann ebenfalls erfolgen, wenn Leder, Stoff oder Kunststoff Etuis verwendet werden.• The plastic card produced in this way can be provided with a hole for DIN A4 folders and filed in folders and organizers, files and time planners. The folding of the cards as described above can also be done if leather, fabric or plastic cases are used.

Durch einen Universalstecker zweipolig können alle hinsichtlich Spannung und Leistung geeigneten Batterien und Kleingeräte mit Gleichstrom geladen oder versorgt werden. Hierzu wird ein Kabel verwendet, welches auf der einen Seite mit dem Universalstecker am Solarlader verbunden ist und auf der anderen Seite einen jeweils passenden Stecker zum versorgten Gerät oder zur Batterie besitzt. Auch ein direkter Betrieb von Kleingeräten mit Gleichstrom ist möglich ohne Akkus als Puffer, bei ausreichender solarer Einstrahlung.A two-pin universal plug can be used to charge or supply all batteries and small devices with suitable voltage and power with direct current. A cable is used for this, which is connected to the universal plug on the solar charger on one side and has a suitable plug for the device or battery being supplied on the other side. Direct operation of small devices with direct current is also possible without batteries as a buffer, provided there is sufficient solar radiation.

• ··

• ··

Claims (2)

1. Universales mit Solarenergie versorgtes Ladegerät für Batterien und Kleingeräte wie Gameboys, Handys, Walkie-talkies, GPS, Notebooks, Handhelds, Digital- Kameras, Camcorders, Palm-Handhelds, Radios, Funkgeräte, Laptops und Messgeräte, dadurch gekennzeichnet dass, neu entwickelte, hochflexible Solarkarten von nur 1,2 mm Dicke eingeschweisst in Teflonfolien miteinander in Serie oder parallel verschaltet werden zu solaren Ladegeräten. Je nach gewünschter oder geforderter elektrischer Leistung oder Spannung werden 2 Stück Solarkarten, 3 Stück Solarkarten oder 4 bis 6 Stück oder 8 Solarkarten zusammengeschaltet. 1. Universal solar-powered charger for batteries and small devices such as Gameboys, cell phones, walkie-talkies, GPS, notebooks, handhelds, digital cameras, camcorders, palm handhelds, radios, walkie-talkies, laptops and measuring devices, characterized in that newly developed, highly flexible solar cards of only 1.2 mm thickness are welded into Teflon foil and connected in series or parallel to form solar chargers. Depending on the desired or required electrical power or voltage, 2 solar cards, 3 solar cards or 4 to 6 or 8 solar cards are connected together. 2. Solares Batterieladegerät nach Schutzanspruch 1, dadurch gekennzeichnet dass, die Solarkarten nach der Verdrahtung in ein faltbares Etui aus Leder, Stoff oder dünnem Kunststoff eingenäht werden, so dass diese nach Gebrauch übereinander gefaltet werden können und ein handliches Paket bilden. Die verdrahteten Karten sind mit einem zweipoligen Unversalstecker in Form einer Buchse ausgerüstet, so dass die verschiedenen in Punkt 1 genannten Geräte alle angeschlossen werden können, wenn der Universalstecker mit einem jeweils passendem Anschlussstecker verbunden ist.
Die Steckerbuchse ist zwischen den Solarkarten angebracht, so dass bei zusammengelegtem Solarlader von aussen kein Kabel oder eine Buchse sichtbar vorhanden ist.
2. Solar battery charger according to protection claim 1, characterized in that the solar cards are sewn into a foldable case made of leather, fabric or thin plastic after wiring, so that they can be folded over one another after use and form a handy package. The wired cards are equipped with a two-pin universal plug in the form of a socket, so that the various devices mentioned in point 1 can all be connected if the universal plug is connected to a suitable connector plug.
The connector socket is installed between the solar cards so that when the solar charger is folded up, no cable or socket is visible from the outside.
DE20107555U 2001-05-03 2001-05-03 Solar charger made of highly flexible solar cards, electrically wired and sewn into a collapsible case made of leather, synthetic leather, fabric or plastic Expired - Lifetime DE20107555U1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DE20107555U DE20107555U1 (en) 2001-05-03 2001-05-03 Solar charger made of highly flexible solar cards, electrically wired and sewn into a collapsible case made of leather, synthetic leather, fabric or plastic

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE20107555U DE20107555U1 (en) 2001-05-03 2001-05-03 Solar charger made of highly flexible solar cards, electrically wired and sewn into a collapsible case made of leather, synthetic leather, fabric or plastic

Publications (1)

Publication Number Publication Date
DE20107555U1 true DE20107555U1 (en) 2002-01-17

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102008007586B4 (en) * 2008-02-01 2013-08-29 Stefan Christof Werner Krauter Solar module and method for generating electrical energy in an aircraft
US9166424B2 (en) 2010-11-30 2015-10-20 Gary Oakley, JR. Solar powered rechargeable device for use with an electronic device and method thereof
US10084340B2 (en) 2010-11-30 2018-09-25 Gary William Oakley, Jr. Solar powered rechargeable device for use with an electronic device and method of use thereof

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102008007586B4 (en) * 2008-02-01 2013-08-29 Stefan Christof Werner Krauter Solar module and method for generating electrical energy in an aircraft
US9166424B2 (en) 2010-11-30 2015-10-20 Gary Oakley, JR. Solar powered rechargeable device for use with an electronic device and method thereof
US10084340B2 (en) 2010-11-30 2018-09-25 Gary William Oakley, Jr. Solar powered rechargeable device for use with an electronic device and method of use thereof
US10250068B2 (en) 2010-11-30 2019-04-02 Gary William Oakley, Jr. Solar powered rechargeable device for use with an electronic device and method of use thereof
US10666086B2 (en) 2010-11-30 2020-05-26 Xplor Llc Solar powered rechargeable device for use with an electronic device and method of use thereof

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