Leibniz-institut fur Festkorper-und Werkstoffforschung Dresden e.V.

Allemagne

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        International 62
        États-Unis 1
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2024 2
2023 1
2022 2
2021 1
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Classe IPC
B81C 1/00 - Fabrication ou traitement de dispositifs ou de systèmes dans ou sur un substrat 3
C12N 5/071 - Cellules ou tissus de vertébrés, p. ex. cellules humaines ou tissus humains 3
G01N 27/02 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'impédance 3
H01F 1/01 - Aimants ou corps magnétiques, caractérisés par les matériaux magnétiques appropriésEmploi de matériaux spécifiés pour leurs propriétés magnétiques en matériaux inorganiques 3
B01L 3/00 - Récipients ou ustensiles pour laboratoires, p. ex. verrerie de laboratoireCompte-gouttes 2
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Résultats pour  brevets

1.

MICROFLUIDIC COMPONENT

      
Numéro d'application EP2023075287
Numéro de publication 2024/068291
Statut Délivré - en vigueur
Date de dépôt 2023-09-14
Date de publication 2024-04-04
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E. V. (Allemagne)
Inventeur(s)
  • Jacob, Stefan
  • Colditz, Melanie
  • Winkler, Andreas
  • Hartmann, Stefanie
  • Weissker, Uhland

Abrégé

The invention relates to the field of microsystems technology and relates to a microfluidic component that can be used, for example, for actuator or sensor lab-on-a-chip systems. The object of the present invention is to provide a microfluidic component that equalises, suppresses and/or terminates interference in microfluidic systems and thus ensures that at least the main function of the microfluidic system is essentially interference-free. The object is achieved by a microfluidic component in a microfluidic system, at least containing a channel-shaped component connected to the microfluidic system by at least one opening, wherein the channel-shaped component is split into at least two sub-channels, and wherein at least two sub-channels are directly connected by at least one connecting channel, and wherein the connecting channel(s) may have inlets and/or outlets, and wherein a lower flow resistance is realised in the interior of the connecting channels than in the respective sub-channels, and wherein the sub-channels have inlets and/or outlets.

Classes IPC  ?

  • B01L 3/00 - Récipients ou ustensiles pour laboratoires, p. ex. verrerie de laboratoireCompte-gouttes

2.

METHOD AND DEVICE AT LEAST FOR THE CONTROLLED MOVEMENT OF GAMETES AND/OR ZYGOTES AND/OR EMBRYOS IN FLUIDS

      
Numéro d'application EP2023074481
Numéro de publication 2024/052417
Statut Délivré - en vigueur
Date de dépôt 2023-09-06
Date de publication 2024-03-14
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E. V. (Allemagne)
Inventeur(s) Medina-Sánchez, Mariana

Abrégé

The invention lies in the field of material sciences and relates to a method of the kind that can be used, for example, in in-vivo reproduction and in healthcare, and to a device for realizing the controlled movement. The object of the present invention is to make available a method and a device, where the device can be used much less invasively and where much higher implantation rates can be achieved by the method. The object is achieved by a method in which gametes and/or zygotes and/or embryos are releasably connected to one or more substrates, and the substrates, with or without gametes and/or zygotes and/or embryos, are moved in a targeted manner autonomously or by means of external influences. The object is further achieved by a device at least containing a substrate which has maximum dimensions in all spatial directions of 500 µm and which consists at least for the most part of biocompatible materials.

Classes IPC  ?

  • A61B 17/425 - Instruments ou procédés de gynécologie ou d'obstétrique pour la reproduction ou la fertilisation
  • C12N 5/075 - OocytesOogonies
  • C12N 5/076 - Cellules du spermeSpermatogonies
  • C12N 5/071 - Cellules ou tissus de vertébrés, p. ex. cellules humaines ou tissus humains

3.

DEVICE AND METHOD FOR ELECTRICALLY CHARACTERIZING PROPERTIES OF MATERIALS, ASSEMBLIES, AND/OR COMPONENTS IN AN ENVIRONMENT WITH A HIGH TEMPERATURE

      
Numéro d'application EP2022069228
Numéro de publication 2023/001608
Statut Délivré - en vigueur
Date de dépôt 2022-07-11
Date de publication 2023-01-26
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Windisch, Thomas
  • Schmidt, Hagen
  • Weser, Robert
  • Biscop, Uwe

Abrégé

The invention relates to a device and a method for electrically characterizing properties of materials, assemblies, and/or components in an environment with a high temperature, for example in order to characterize electromechanical SAW components with respect to the function thereof under action of temperature. The aim of the invention is to develop a device which allows a fail-proof positioning of a measuring object, a quick and simple change of the measuring object, and a reliable characterization at high temperatures. This is achieved by a device containing a sample holder which has means for a galvanic or capacitive in-coupling and/or out-coupling of electric signals, at least one support element, at least one high-temperature waveguide, at least one low-temperature waveguide, wherein at least the high-temperature waveguide(s) is/are designed as a coaxial conductor with solid dielectricum elements made of electrically non-conductive ceramic, at least one coupling component, at least one heat shield, at least one temperature sensor which is arranged in the support element, and at least one flange part.

Classes IPC  ?

  • G01N 22/00 - Recherche ou analyse des matériaux par l'utilisation de micro-ondes ou d'ondes radio, c.-à-d. d'ondes électromagnétiques d'une longueur d'onde d'un millimètre ou plus
  • G01N 27/22 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'impédance en recherchant la capacité

4.

FLEXIBLE SHAFT COUPLING

      
Numéro d'application EP2021086696
Numéro de publication 2022/136214
Statut Délivré - en vigueur
Date de dépôt 2021-12-20
Date de publication 2022-06-30
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Baumann, Danny
  • Horst, Alexander

Abrégé

The present invention relates to the technical field of coupling technology and relates to a flexible shaft coupling. The problem addressed by the present invention is that of specifying a flexible shaft coupling by means of which a constant length and reduced axial forces are ensured under stress, and the service life of the shaft coupling is thereby improved. The problem is solved by a flexible shaft coupling which, in the unloaded state, has at least two axially aligned helix subcomponents connected in series, wherein the helix subcomponent combination is arranged between a shaft fastening part for the drive shaft and a shaft fastening part for the shaft to be driven and is connected thereto, wherein the ends of the helical helix subcomponents which point toward each other are connected to a connection element, wherein at least two helix subcomponents have a winding direction opposite each other, and wherein at least the two helix subcomponents have an identical spring stiffness. The flexible shaft coupling according to the invention can be used, for example, in technical systems, testing systems or medical instruments.

Classes IPC  ?

  • F16D 3/72 - Accouplements extensibles, c.-à-d. avec moyens permettant le mouvement entre parties accouplées durant leur entraînement avec pièces d'accouplement reliées par un ou plusieurs organes intermédiaires avec des fixations aux pièces d'accouplement axialement espacées

5.

ROLLING BEARINGS FOR USE IN TEMPERATURE-FLUCTUATING ENVIRONMENTS, AND USE THEREOF

      
Numéro d'application EP2021086691
Numéro de publication 2022/136210
Statut Délivré - en vigueur
Date de dépôt 2021-12-20
Date de publication 2022-06-30
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Baumann, Danny
  • Horst, Alexander

Abrégé

The present invention relates to the technical field of machine construction and to rolling bearings, which are provided in particular for use in temperature-fluctuating environments. Known rolling bearings have the disadvantage of being designed only for a certain temperature range, as a result of which the play of the bearing changes as a function of temperature in fluctuating use temperatures. The problem addressed by the present invention is that of provided rolling bearings, which have a substantially constant play and improved service life under fluctuating use temperatures. The problem is solved by a rolling bearing in which the inner ring and the outer ring are made of different materials. Said rolling bearings can be used in technical systems, machines and devices.

Classes IPC  ?

  • F16C 19/02 - Paliers à contact de roulement pour mouvement de rotation exclusivement avec roulements à billes essentiellement du même calibre, en une ou plusieurs rangées circulaires
  • F16C 19/22 - Paliers à contact de roulement pour mouvement de rotation exclusivement avec roulements à rouleaux essentiellement du même gabarit, disposés dans une ou plusieurs rangées circulaires, p. ex. roulements à aiguilles
  • F16C 19/49 - Paliers avec roulements à la fois à billes et à rouleaux
  • F16C 19/50 - Autres types de roulements à billes ou à rouleaux
  • F16C 19/52 - Paliers à contact de roulement pour mouvement de rotation exclusivement avec dispositifs affectés par des conditions anormales ou indésirables
  • F16C 25/08 - Roulements à billes ou à rouleaux à autoréglage
  • F16C 33/62 - Emploi de matériaux spécifiés

6.

Momentum-resolving photoelectron spectrometer and method for momentum-resolved photoelectron spectroscopy

      
Numéro d'application 16771705
Numéro de brevet 11133166
Statut Délivré - en vigueur
Date de dépôt 2018-12-14
Date de la première publication 2021-03-25
Date d'octroi 2021-09-28
Propriétaire Leibniz-Institut für Festkörper- und Werkstofffors (Allemagne)
Inventeur(s) Borisenko, Sergey

Abrégé

The invention relates to the field of physics and relates to an impulse-resolving photo-electron spectrometer, by means of which the physical properties can be determined. The aim of the invention is to provide an impulse-resolving photo-electron spectrometer enabling the device components to have a simple structure with a significantly reduced overall volume. The aim of the invention is achieved by means of an impulse-resolving photo-electron spectrometer comprising components arranged one behind the other in the direction of the optical axis at least in a vacuum and which are each at least one electron emission sample and a focusing system, wherein the focusing system consists of at least one electron lens and at least one detector, wherein the electron lens consists of three cylindrical elements, wherein the first cylindrical element has a potential=0 and the two subsequently arranged cylindrical elements have a potential of ≠0, and wherein the detector is one or more spatially resolved detectors which are arranged in the focal plane of the electron lens.

Classes IPC  ?

  • H01J 49/06 - Dispositifs électronoptiques ou ionoptiques
  • H01J 49/46 - Spectromètres statiques
  • H01J 49/00 - Spectromètres pour particules ou tubes séparateurs de particules

7.

METHOD FOR PRODUCING SINGLE-PIECE COMPONENTS FROM SHAPE MEMORY MATERIAL, AND SINGLE-PIECE COMPONENTS MADE OF SHAPE MEMORY MATERIAL AND USE OF SAME

      
Numéro d'application EP2019080791
Numéro de publication 2020/099288
Statut Délivré - en vigueur
Date de dépôt 2019-11-11
Date de publication 2020-05-22
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Pauly, Simon
  • Kosiba, Konrad
  • Kühn, Uta

Abrégé

The invention concerns the fields of materials science, electrical engineering, medical technology and process technology, and relates to a method for producing single-piece components from shape memory material, as well as single-piece components made of shape memory material. The single-piece components can be used as hinges or actuators. The fact that hinges, actuators and damping systems consist of several parts, which must be joined together at high effort and cost is a disadvantage of the prior art. The problem addressed by the present invention consists in overcoming the disadvantages of the prior art. According to the invention, the problem is solved by a method in which, using an additive manufacturing process, a first layer of a shape memory material is formed and solidified, then a second layer of a shape memory material is applied on the first layer, and at least one local region of the shape memory material is thermally treated to below the liquidus temperature by means of a heat source.

Classes IPC  ?

  • B22F 3/105 - Frittage seul en utilisant un courant électrique, un rayonnement laser ou un plasma
  • C22C 9/01 - Alliages à base de cuivre avec l'aluminium comme second constituant majeur
  • C22C 9/04 - Alliages à base de cuivre avec le zinc comme second constituant majeur
  • C22C 9/06 - Alliages à base de cuivre avec le nickel ou le cobalt comme second constituant majeur
  • C22F 1/08 - Modification de la structure physique des métaux ou alliages non ferreux par traitement thermique ou par travail à chaud ou à froid du cuivre ou de ses alliages
  • B33Y 10/00 - Procédés de fabrication additive
  • B33Y 80/00 - Produits obtenus par fabrication additive

8.

THERMOELECTRIC MATERIAL AND PROCESS FOR PRODUCING A THERMOELECTRIC MATERIAL

      
Numéro d'application EP2019050437
Numéro de publication 2019/137953
Statut Délivré - en vigueur
Date de dépôt 2019-01-09
Date de publication 2019-07-18
Propriétaire
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
  • FRAUNHOFER-GESELLSCHAFT ZUR FÖRDERUNG DER ANGEWANDTEN FORSCHUNG E.V. (Allemagne)
Inventeur(s)
  • Schierning, Gabi
  • Thiel, Felix
  • Friedrich, Jochen
  • Reimann, Christian
  • Beier, Maximilian

Abrégé

The invention relates to a thermoelectric material and to a method for producing the thermoelectric material and to the use of the thermoelectric material in a thermoelectric generator (TEG). According to the invention, the thermoelectric material contains silicon, dopants and non-silicon constituents, wherein the proportion of non-silicon constituents with respect to the total mass of the thermoelectric material is at least 5% by mass.

Classes IPC  ?

  • H01L 35/22 - Emploi d'un matériau spécifié pour les bras de la jonction utilisant des compositions inorganiques comprenant des composés contenant du bore, du carbone, de l'oxygène ou de l'azote
  • H01L 35/34 - Procédés ou appareils spécialement adaptés à la fabrication ou au traitement de ces dispositifs ou de leurs parties constitutives
  • C01B 33/02 - Silicium
  • C01B 33/037 - Purification

9.

IMPULSE-RESOLVING PHOTO-ELECTRON SPECTROMETER AND METHOD FOR IMPULSE-RESOLVING PHOTO-ELECTRON SPECTROSCOPY

      
Numéro d'application EP2018084995
Numéro de publication 2019/115784
Statut Délivré - en vigueur
Date de dépôt 2018-12-14
Date de publication 2019-06-20
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Borisenko, Sergey

Abrégé

The invention relates to the field of physics and relates to an impulse-resolving photo-electron spectrometer, by means of which the physical properties can be determined. The aim of the invention is to provide an impulse-resolving photo-electron spectrometer enabling the device components to have a simple structure with a significantly reduced overall volume. The aim of the invention is achieved by means of an impulse-resolving photo-electron spectrometer comprising components arranged one behind the other in the direction of the optical axis at least in a vacuum and which are each at least one electron emission sample and a focusing system, wherein the focusing system consists of at least one electron lens and at least one detector, wherein the electron lens consists of three cylindrical elements, wherein the first cylindrical element has a potential = 0 and the two subsequently arranged cylindrical elements have a potential of ≠ 0, and wherein the detector is one or more spatially resolved detectors which are arranged in the focal plane of the electron lens.

Classes IPC  ?

  • H01J 49/48 - Spectromètres statiques utilisant des analyseurs électrostatiques, p. ex. secteur cylindrique, filtre de Wien
  • H01J 49/00 - Spectromètres pour particules ou tubes séparateurs de particules
  • H01J 49/06 - Dispositifs électronoptiques ou ionoptiques

10.

PROCESS FOR PRODUCING OMNIPHOBIC SURFACES

      
Numéro d'application EP2018066730
Numéro de publication 2019/007707
Statut Délivré - en vigueur
Date de dépôt 2018-06-22
Date de publication 2019-01-10
Propriétaire
  • TECHNISCHE UNIVERSITÄT DRESDEN (Allemagne)
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Beckmann, Michael
  • Sablowski, Jakob
  • Unz, Simon
  • Linnemann, Julia
  • Giebeler, Lars

Abrégé

The invention relates to a process for coating components with an omniphobic surface coating containing at least one organometallic scaffold compound and an impregnating agent comprising the steps of - electrochemical deposition of the organometallic scaffold compound on the component by electrolysis from an electrolyte solution containing at least one metal ion, at least one linker compound and a solvent, - application of an impregnating agent onto the organometallic scaffold compound, wherein the metal ion is i) dissolved in the electrolyte solution as a metal ion salt and/or ii) by electrolytic oxidation or reduction of a metal ion precursor present in the component and/or electrode generated at the interface between the electrode and the electrolyte solution and/or provided in the electrolyte solution and wherein the component is a) simultaneously the electrode or b) introduced into an electrical field between at least two electrodes, wherein the linker compound is an organic, at least monodentate compound and wherein the impregnating agent has a low surface tension of < 30 mN/m.

Classes IPC  ?

  • C25D 9/02 - Revêtement électrolytique autrement qu'avec des métaux avec des matières organiques
  • B05D 5/08 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces pour obtenir des effets, finis ou des structures de surface particuliers pour obtenir une surface antifriction ou anti-adhésive
  • C25D 9/06 - Revêtement électrolytique autrement qu'avec des métaux avec des matières inorganiques par des procédés anodiques
  • C25D 9/08 - Revêtement électrolytique autrement qu'avec des métaux avec des matières inorganiques par des procédés cathodiques
  • C25D 13/12 - Revêtement électrophorétique caractérisé par le procédé caractérisé par l'objet revêtu
  • F28F 13/04 - Dispositions pour modifier le transfert de chaleur, p. ex. accroissement, diminution en empêchant la formation de films continus de condensats sur les surfaces d'échange de chaleur, p. ex. en favorisant la formation de gouttelettes

11.

THREE-DIMENSIONAL TOMOGRAPH

      
Numéro d'application EP2017078190
Numéro de publication 2018/095712
Statut Délivré - en vigueur
Date de dépôt 2017-11-03
Date de publication 2018-05-31
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Schmidt, Oliver, G.
  • Medina Sanchez, Mariana
  • Weiz, Sonja, Maria

Abrégé

The invention relates to the fields of microelectronics, material technology and medicine, and refers to a three-dimensional tomograph, in that same can be used for investigating and manipulating objects on a millimetre level or lower, for example, for investigating and manipulating biological cells, molecules or ions. The object of the invention is to provide a three-dimensional tomograph which creates reproducible and secured signals in millimetre measurements or lower measurements without significant overlays of signals. The object is achieved by a three-dimensional tomograph, at least consisting of a three-dimensional microcomponent formed by a coiled or unfolded layer stack made of at least one substrate layer and electrodes at least positioned thereon for the impedance measuring, wherein the electrodes for the impedance measuring are once or repeatedly arranged substantially on the inner or outer surface of the microcomponent, all around in at least one plane, and the measurement object is located inside the microcomponent and/or around the microcomponent.

Classes IPC  ?

  • G01N 33/487 - Analyse physique de matériau biologique de matériau biologique liquide
  • G01N 27/02 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'impédance
  • A61B 5/053 - Mesure de l'impédance ou de la conductivité électrique d'une partie du corps
  • B81C 1/00 - Fabrication ou traitement de dispositifs ou de systèmes dans ou sur un substrat
  • H01M 4/04 - Procédés de fabrication en général

12.

APPARATUS AND METHOD FOR CONVERTING THERMAL ENERGY INTO ELECTRICAL ENERGY

      
Numéro d'application EP2017079416
Numéro de publication 2018/091573
Statut Délivré - en vigueur
Date de dépôt 2017-11-16
Date de publication 2018-05-24
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Sellschopp, Kai
  • Fähler, Sebastian
  • Waske, Anja

Abrégé

The invention concerns the field of electrical engineering and relates to an apparatus and a method for converting thermal energy into electrical energy. The apparatus and the method can be used, for example, in the automotive industry or geothermy. The object of the invention is to provide an apparatus and a method for converting thermal energy into electrical energy, which apparatus has an improved performance overall and has an increased maximum achievable power, and also is simple and cost-effective to produce and use. The object is achieved by an apparatus having one or more thermomagnetic generators, wherein a thermomagnetic generator contains at least one first and second thermomagnetic component, at least two components composed of hard-magnetic material, at least one coil and at least two connecting elements composed of magnetic flux-conducting material, wherein the magnetic north poles are connected to one of the two connecting elements composed of magnetic flux-conducting material, and the magnetic south poles thereof are connected to the other connecting element.

Classes IPC  ?

  • H01L 37/04 - Dispositifs thermoélectriques sans jonction de matériaux différents; Dispositifs thermomagnétiques, p.ex. utilisant l'effet Nernst-Ettinghausen; Procédés ou appareils spécialement adaptés à la fabrication ou au traitement de ces dispositifs ou de leurs parties constitutives utilisant le changement thermique de la perméabilité magnétique, p.ex. en opérant au-dessus et en-dessous du point de Curie

13.

METHOD FOR PRODUCING AT LEAST ONE THREE-DIMENSIONAL COMPONENT FOR THE UNI-, BI-, TRI- OR MULTI-DIRECTIONAL MEASUREMENT AND/OR GENERATION OF VECTOR FIELDS AND THREE-DIMENSIONAL COMPONENT FOR THE UNI-, BI-, TRI- OR MULTI-DIRECTIONAL MEASUREMENT AND/OR GENERATION OF VECTOR FIELDS

      
Numéro d'application EP2017075200
Numéro de publication 2018/069112
Statut Délivré - en vigueur
Date de dépôt 2017-10-04
Date de publication 2018-04-19
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Karnaushenko, Daniil
  • Karnaushenko, Dimitriy
  • Schmidt, Oliver, G.

Abrégé

The invention concerns the field of microelectronics and relates to a three-dimensional component, which measures the direction of a feature in a vector field, e.g. like a sensor. The object of the invention is to provide a three-dimensional component which can measure and/or generate vector fields in multiple directions and/or simultaneously with reduced space requirements. The object is achieved by a three-dimensional component for the uni-, bi-, tri- or multi-directional measurement and/or generation of vector fields, wherein at least one component formed from material systems is provided - on a three-dimensional carrier made of at least one carrier material - which measures and/or generates a vector field in at least one direction in the spatial position thereof on, against and/or in the carrier.

Classes IPC  ?

  • B81C 1/00 - Fabrication ou traitement de dispositifs ou de systèmes dans ou sur un substrat
  • H01G 4/00 - Condensateurs fixesProcédés pour leur fabrication

14.

MICROFLUIDICS DEVICE

      
Numéro d'application EP2017067099
Numéro de publication 2018/019546
Statut Délivré - en vigueur
Date de dépôt 2017-07-07
Date de publication 2018-02-01
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Winkler, Andreas
  • Harazim, Stefan

Abrégé

The invention relates to the fields of microsystems engineering and microfluidics, and relates to a microfluidics device and how said device can be used, for example, for lab-on-a-chip systems with actuator or sensor functionality, impedance spectroscopy, surface plasmon resonance, or electromagnetic separation in biomedical engineering or in analytical chemistry and biochemistry. The aim of the present invention is to provide a microfluidics device which has a simple design and improved flexibility to adapt to varied applications. The microfluidics device according to the invention contains: at least one functional element comprising at least one active and passive part; a fluidic component that is gas- or liquid-tightly connected to the passive part of the functional element; and an electric component that is electrically conductively connected to the active part of the functional element. The elements of the device are provided as modules that are interchangeable by means of the gas- and/or liquid-tight and electrically conductive connection points.

Classes IPC  ?

  • B01L 3/00 - Récipients ou ustensiles pour laboratoires, p. ex. verrerie de laboratoireCompte-gouttes

15.

METHOD FOR PRODUCING A ROLLED-UP ELECTRICAL OR ELECTRONIC COMPONENT

      
Numéro d'application EP2015077070
Numéro de publication 2016/083227
Statut Délivré - en vigueur
Date de dépôt 2015-11-19
Date de publication 2016-06-02
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Grimm, Daniel
  • Karnaushenko, Dmitriy
  • Bauer, Martin
  • Karnaushenko, Daniil
  • Makarov, Denys
  • Schmidt, Oliver G.

Abrégé

The present invention relates to the fields of physics, material sciences and micro and nano electronics, and concerns a method for producing a rolled-up electrical or electronic component, as can be used for example as a capacitor, or in aerials. The object of the present invention is to provide a low-cost, environmentally friendly and time-saving method for producing a rolled-up electrical or electronic component with many windings. The object is achieved by a method for producing a rolled-up component in which at least two functional and insulating layers, alternately arranged fully or partially over one another, are applied to a substrate with a sacrificial layer, wherein at least the functional or insulating layer that is arranged directly on the sacrificial layer has a perforation, at least on the two sides that are arranged substantially parallel to the rolling direction.

Classes IPC  ?

  • H01G 4/32 - Condensateurs enroulés
  • B81C 99/00 - Matière non prévue dans les autres groupes de la présente sous-classe

16.

ULTRA COMPACT MICRO CAPACITOR AND METHOD FOR PRODUCING SAME

      
Numéro d'application EP2015075822
Numéro de publication 2016/071450
Statut Délivré - en vigueur
Date de dépôt 2015-11-05
Date de publication 2016-05-12
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Grimm, Daniel
  • Bauer, Martin
  • Schmidt, Oliver G.

Abrégé

The present invention relates to the area of micro- and nanoelectronics and relates to ultra-compact micro capacitors, how they can be used, for example, in electrical and electronic devices. The object of the present invention consists in specifying an ultra-compact micro capacitor with the highest capacity. The problem is solved by an ultra-compact micro capacitor which is made from a rolled-up layer stack of alternatingly arranged layers of dielectric and/or electrically insulating and electrically conductive materials with rolled-up lengths of the layer stack of at least 1 mm, and an absolute electrical storage capacity of at least 10 nF. The problem is additionally solved by a method, in which a layer containing a water-soluble cellulose derivative is applied to a substrate and a layer stack to same, the layer containing the cellulose derivative is removed from the substrate using water, an organic solvent and/or an organic solvent mixture, and the layer stack is rolled up with a rolling speed of more than 0.1 mm/min.

Classes IPC  ?

17.

METHOD FOR PRODUCING A COMPACT MICRO- OR NANOCAPACITOR, AND COMPACT MICRO- OR NANOCAPACITOR

      
Numéro d'application EP2015073540
Numéro de publication 2016/058980
Statut Délivré - en vigueur
Date de dépôt 2015-10-12
Date de publication 2016-04-21
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Schmidt, Oliver G.

Abrégé

The invention concerns the field of microelectronics and relates to a compact capacitor, which can be used, for example, in high-frequency oscillating circuits and in high-frequency filters. The problem addressed by the invention is that of specifying a compact micro- or nanocapacitor that has reliable and simple contacting of the functional layers. This problem is solved by means of a method for producing a compact micro- or nanocapacitor, in which method a layer stack consisting of at least two functional layers and two layers of a two-dimensional material and consisting of at least two layers of an electrically insulating material is arranged on a substrate, and the at least two functional layers and the layers of a two-dimensional material are arranged protruding beyond the width of the layer stack transversely to the rolling direction on one side each alternately, and then the layer stack is rolled up and the protruding are integrally bonded to each other.

Classes IPC  ?

18.

HIGH-STRENGTH, CORROSION-RESISTANT SHAPED ARTICLES ABSORBING MECHANICAL ENERGY AND MADE OF IRON ALLOYS, AND METHOD FOR MANUFACTURING SAME

      
Numéro d'application EP2015068723
Numéro de publication 2016/034390
Statut Délivré - en vigueur
Date de dépôt 2015-08-14
Date de publication 2016-03-10
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Zeisig, Josephine
  • Hufenbach, Julia
  • Kühn, Uta
  • Eckert, Jürgen

Abrégé

The invention pertains to the field of materials science and relates to shaped articles that can be used as shaped parts in the construction of vehicles, machines and plants, in the food industry or in plastics processing. The aim of the invention is to design shaped articles that are stronger and more resistant to corrosion. Said aim is achieved by high-strength, corrosion-resistant shaped articles which absorb mechanical energy and are made of iron alloys consisting of a composition of formula Fea Crb Cc E1d E2e E3f, where E1 is one or more elements from among the group consisting of V, W; E2 is one or more elements from among the group consisting of Mo, Ti, Nb, Ni; E3 is B and/or N; a = 100-(b+c+d+e+f), b = 13 to 20, c = 0.8 to 1.6, d = 0.5 to 5, e = 0 to 8, f = 0 to 0.5 (a, b, c, d, e, f being indicated in percent by weight).

Classes IPC  ?

  • C22C 38/18 - Alliages ferreux, p. ex. aciers alliés contenant du chrome

19.

BATTERY CARRIER FOR IN SITU ANALYSIS

      
Numéro d'application EP2015063638
Numéro de publication 2015/193393
Statut Délivré - en vigueur
Date de dépôt 2015-06-17
Date de publication 2015-12-23
Propriétaire
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
  • KARLSRUHER INSTITUT FÜR TECHNOLOGIE (Allemagne)
Inventeur(s)
  • Herklotz, Markus
  • Weiss, Jonas
  • Giebeler, Lars
  • Knapp, Michael

Abrégé

The subject matter of the present invention is an apparatus for in situ analysis of batteries by means of x-rays, synchrotron radiation or another type of radiation. The apparatus has a specimen carrier which is realized as a specimen wheel which is mounted such that it can rotate about the centre axis. A plurality of specimen holders are arranged on the specimen carrier, the centre points of said specimen holders being placed on a common circle around the centre point of the specimen carrier, wherein each specimen holder can be individually and repeatedly opened and closed by a lockable cover. Each specimen holder has, in its interior, a hollow space which accommodates the battery which is to be examined so as to ideally match the shape of the periphery of said battery, wherein the cover and the hollow space have an opening for radiation to pass through. A spring which acts in the edge region of the battery presses the battery against the cover, wherein the spring and the edge region of the cover are designed to be electrically conductive but insulated from one another. From each specimen holder, an electrically conductive connection from the edge region of the cover and an electrically conductive connection from the spring lead to that side of the specimen carrier which is averted from the cover and into the vicinity of the centre point of said specimen carrier. There, the lines of all of the specimen holders are combined to form a bundle of lines or a plug connection.

Classes IPC  ?

  • G01N 23/20 - Recherche ou analyse des matériaux par l'utilisation de rayonnement [ondes ou particules], p. ex. rayons X ou neutrons, non couvertes par les groupes , ou en utilisant la diffraction de la radiation par les matériaux, p. ex. pour rechercher la structure cristallineRecherche ou analyse des matériaux par l'utilisation de rayonnement [ondes ou particules], p. ex. rayons X ou neutrons, non couvertes par les groupes , ou en utilisant la diffusion de la radiation par les matériaux, p. ex. pour rechercher les matériaux non cristallinsRecherche ou analyse des matériaux par l'utilisation de rayonnement [ondes ou particules], p. ex. rayons X ou neutrons, non couvertes par les groupes , ou en utilisant la réflexion de la radiation par les matériaux
  • H01M 10/48 - Accumulateurs combinés à des dispositions pour mesurer, tester ou indiquer l'état des éléments, p. ex. le niveau ou la densité de l'électrolyte

20.

METHOD FOR MOBILIZING IMMOBILIZED CELLS

      
Numéro d'application EP2015051650
Numéro de publication 2015/113984
Statut Délivré - en vigueur
Date de dépôt 2015-01-28
Date de publication 2015-08-06
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Schmidt, Oliver G.

Abrégé

The invention pertains to the area of biotechnology, biology, and medicine and relates to a method for mobilizing immobilized cells, such as those which can be used for in vivo or in vitro fertilization for example. The aim of the invention is to devise a method for mobilizing individual immobilized cells, wherein the activity and controlled mobility of previously immobilized cells is implemented using said method. This is achieved by a method for mobilizing immobilized cells, an immobilized cell being connected to a microstructure which consists at least partly of magnetic materials. A nonreciprocal movement of the microstructure together with the immobilized cell is carried out by means of a three-dimensional external magnetic field which changes with time.

Classes IPC  ?

  • C12N 5/076 - Cellules du spermeSpermatogonies
  • C12N 5/071 - Cellules ou tissus de vertébrés, p. ex. cellules humaines ou tissus humains

21.

WAVEGUIDE RESONATOR COMPONENT AND METHOD FOR THE PRODUCTION THEREOF

      
Numéro d'application EP2014055006
Numéro de publication 2014/140206
Statut Délivré - en vigueur
Date de dépôt 2014-03-13
Date de publication 2014-09-18
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Böttner, Stefan
  • Schmidt, Oliver G.

Abrégé

The invention pertains to the field of electrical engineering/electronics and relates to a waveguide resonator component, which can be used, for example, in integrated circuits. The problem addressed by the invention is that of producing a waveguide resonator component simply and economically. The problem is solved by a waveguide resonator component in which a substrate (1) having two waveguides (3) is present and a microtube (2) is present as resonator, wherein the resonator has a respective recess (4) in the region of each waveguide in order to form an intermediate space between the waveguide and the resonator. The aim is additionally achieved by a method in which a sacrificial layer is applied to a substrate having two waveguides and at least a second layer is applied to the sacrificial layer, and thereafter the sacrificial layer is at least partially removed and the resonator is produced in the form of a microtube by rolling up the second layer and possible additional layers.

Classes IPC  ?

  • G02B 6/10 - Guides de lumièreDétails de structure de dispositions comprenant des guides de lumière et d'autres éléments optiques, p. ex. des moyens de couplage du type guide d'ondes optiques
  • G02B 6/12 - Guides de lumièreDétails de structure de dispositions comprenant des guides de lumière et d'autres éléments optiques, p. ex. des moyens de couplage du type guide d'ondes optiques du genre à circuit intégré
  • G02B 6/13 - Circuits optiques intégrés caractérisés par le procédé de fabrication

22.

MAGNETO-OPTICAL UNIT HAVING OPTICAL POLARISATION GRATINGS MADE OF STRUCTURED, NONMAGNETIC METALS

      
Numéro d'application EP2014054259
Numéro de publication 2014/135586
Statut Délivré - en vigueur
Date de dépôt 2014-03-05
Date de publication 2014-09-12
Propriétaire
  • HELMHOLTZ-ZENTRUM DRESDEN-ROSSENDORF E.V. (Allemagne)
  • ERNST-ABBE-FACHHOCHSCHULE JENA HOCHSCHULE FÜR ANGEWANDTE WISSENSCHAFTEN (Allemagne)
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Schmidt, Heidemarie
  • Brunner, Robert
  • Kaspar, Tim
  • Schmidt, Oliver, G.

Abrégé

The invention relates to the design of an assembly of a regularly structured nonmagnetic single- or multi-layer system (2) having an optical polarisation grating, which has several basic elements in the unit cell. For a specified wavelength of the incident electromagnetic wave, a certain polarisation of the reflected or transmitted wave depending on a magnetic field applied from outside is achieved with the layer system.

Classes IPC  ?

  • G02F 1/09 - Dispositifs ou dispositions pour la commande de l'intensité, de la couleur, de la phase, de la polarisation ou de la direction de la lumière arrivant d'une source lumineuse indépendante, p. ex. commutation, ouverture de porte ou modulationOptique non linéaire pour la commande de l'intensité, de la phase, de la polarisation ou de la couleur basés sur des éléments magnéto-optiques, p. ex. produisant un effet Faraday
  • G02F 1/01 - Dispositifs ou dispositions pour la commande de l'intensité, de la couleur, de la phase, de la polarisation ou de la direction de la lumière arrivant d'une source lumineuse indépendante, p. ex. commutation, ouverture de porte ou modulationOptique non linéaire pour la commande de l'intensité, de la phase, de la polarisation ou de la couleur

23.

METHOD FOR THE CONTROLLED MOVEMENT OF MOTILE CELLS IN LIQUID OR GASEOUS MEDIA

      
Numéro d'application EP2013064222
Numéro de publication 2014/012801
Statut Délivré - en vigueur
Date de dépôt 2013-07-05
Date de publication 2014-01-23
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Magdanz, Veronika
  • Sanchez, Samuel
  • Schmidt, Oliver, G.

Abrégé

The invention concerns the domains of materials science and medicine and relates to a method such as can be applied to in vivo or in vitro fertilization, for instance. The problem addressed by the present invention is that of specifying a method with which the activity and controlled mobility of motile cells is improved and the absorption of materials alien to the cell is prevented as far as possible. The problem is solved by a method in which one or more motile cells are introduced into or attached to one or a plurality of magnetic particles, and subsequently the magnetic particles with the motile cells introduced into them or attached to them are moved in a directional manner by the application of an external magnetic field. The problem is further solved by the use of the method for the controlled movement of motile cells in liquid or gaseous media in the body of a mammal or human being.

Classes IPC  ?

  • C12N 5/071 - Cellules ou tissus de vertébrés, p. ex. cellules humaines ou tissus humains

24.

ZONE-MELTING DEVICE AND METHOD FOR MODIFYING MATERIAL STRUCTURES BY MEANS OF ZONE-MELTING

      
Numéro d'application EP2013001233
Numéro de publication 2013/164077
Statut Délivré - en vigueur
Date de dépôt 2013-04-24
Date de publication 2013-11-07
Propriétaire Leibniz-Institut für Festkörper- und Werkstoffforschung Dresden e.V. (Allemagne)
Inventeur(s)
  • Fischer, Friedrich
  • Lindackers, Dirk

Abrégé

A zone-melting device (100) comprises a receiving unit (110) for a first and a second rod that are aligned along a common vertical axis (200). A beam-directing unit (120) directs a laser beam emitted by a laser source onto a melting zone (250) between the first and second rods. A deflecting or positioning unit (125, 126) deflects the laser beam along the vertical axis (200). The laser beam is guided at least along the vertical axis (200) according to a user specification, and/or its power is controlled, in such a way that an energy input along the vertical axis (200) is dependent on the location on the vertical axis (200).

Classes IPC  ?

  • C30B 13/22 - Chauffage de la zone fondue par irradiation ou par décharge électrique
  • C30B 13/32 - Mécanismes pour déplacer soit la charge, soit le dispositif de chauffage

25.

USE OF A POLYMER NETWORK AS A CATHODE MATERIAL FOR RECHARGEABLE BATTERIES

      
Numéro d'application EP2013050796
Numéro de publication 2013/107798
Statut Délivré - en vigueur
Date de dépôt 2013-01-17
Date de publication 2013-07-25
Propriétaire
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
  • TECHNISCHE UNIVERSITÄT DRESDEN (Allemagne)
Inventeur(s)
  • Sakaushi, Ken
  • Eckert, Jürgen
  • Nickerl, Georg
  • Kaskel, Stefan

Abrégé

The invention concerns the area of chemistry and energy technology, in particular energy storage technology, and relates to the use of a polymer network as a cathode material for rechargeable batteries consisting of a cathode, an anode, and an electrolyte. An amorphous bipolar triazine-based porous polymer network, as the network, is used as the cathode material. The specific energy of the batteries is substantially increased using such a cathode material.

Classes IPC  ?

  • H01M 4/60 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs de composés organiques
  • H01M 10/052 - Accumulateurs au lithium
  • H01M 10/056 - Accumulateurs à électrolyte non aqueux caractérisés par les matériaux utilisés comme électrolytes, p. ex. électrolytes mixtes inorganiques/organiques
  • H01M 4/38 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'éléments simples ou d'alliages
  • H01M 4/40 - Alliages à base de métaux alcalins
  • H01M 4/485 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques d'oxydes ou d'hydroxydes mixtes pour insérer ou intercaler des métaux légers, p. ex. LiTi2O4 ou LiTi2OxFy
  • H01M 4/587 - Matériau carboné, p. ex. composés au graphite d'intercalation ou CFx pour insérer ou intercaler des métaux légers

26.

RESONANCE DETECTOR

      
Numéro d'application EP2012074684
Numéro de publication 2013/087517
Statut Délivré - en vigueur
Date de dépôt 2012-12-06
Date de publication 2013-06-20
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Karnaushenko, Daniil
  • Makarov, Denys
  • Baraban, Larysa
  • Schmidt, Oliver, G.

Abrégé

The invention pertains to the field of electronics and relates to a resonance detector, which can be used for example to detect magnetic, metal, and/or ionic objects in liquids, gases, or solids or in a combination thereof, including in the field of biology. The aim of the invention is to specify a resonance detector that provides values with a high to very high quality factor and thus high to very high sensitivity, which values are used as evidence of amounts, types, or components of magnetic, metal, and/or ionic objects in liquids, gases, or solids or in combinations thereof. Said aim is achieved by a resonance detector that contains at least one inductor X2 and at least one electrical circuit, which in turn contains at least two impedances Xi and X3, an amplifier K, and a feedback impedance X4, wherein the inductor X2 is a coil and the two impedances X1 and X3 are each capacitors.

Classes IPC  ?

  • G01N 27/02 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'impédance
  • G01R 27/26 - Mesure de l'inductance ou de la capacitanceMesure du facteur de qualité, p. ex. en utilisant la méthode par résonanceMesure de facteur de pertesMesure des constantes diélectriques

27.

FE-BASED SOFT MAGNETIC GLASSY ALLOY MATERIAL

      
Numéro d'application EP2012075089
Numéro de publication 2013/087627
Statut Délivré - en vigueur
Date de dépôt 2012-12-11
Date de publication 2013-06-20
Propriétaire
  • OCAS ONDERZOEKSCENTRUM VOOR AANWENDING VAN STAAL N.V. (Belgique)
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN (Allemagne)
Inventeur(s)
  • Van Steenberge, Nele
  • Ruiz-Romera, Daniel
  • Stoica, Mihai
  • Kühn, Uta
  • Eckert, Jürgen

Abrégé

The invention is related to an Fe based alloy material, suitable for producing a soft magnetic glassy alloy product, a product produced thereof and a method for producing such a product. The product can be a master alloy product obtained after a first melting step starting from suitably selected starting materials, or it can be a final soft magnetic glassy alloy product obtained after a further step of melting the master alloy. The alloy material of the invention comprises : ⋅ C between 1.4wt% and 2.2wt% ⋅ Si between 0.9wt% and 1.35wt% ⋅ B between 0.43wt% and 0.65wt% ⋅ P between 5wt% and 7.5wt% ⋅ Mo between 0.9wt% and 9.2wt% ⋅ Mn between 0.05wt% and 0.6wt%, ⋅ O up to 0.3wt%, ⋅Al up to 0.1wt%, ⋅ S up to 0.05wt%, ⋅ Ti up to 0.45wt%, ⋅ Cr up to 0.3wt%, ⋅ Cu up to 0,25wt% or Cu between 0.25wt% and 0.8wt%, the balance being Fe and incidental impurities. A Fe-based soft magnetic glassy product according to the invention can be produced starting from non-pure starting materials.

Classes IPC  ?

  • C22C 1/00 - Fabrication des alliages non ferreux
  • C22C 33/00 - Fabrication des alliages ferreux
  • C22C 33/06 - Fabrication des alliages ferreux par fusion en utilisant des alliages-mère
  • C22C 45/00 - Alliages amorphes
  • C22C 45/10 - Alliages amorphes avec le molybdène, le tungstène, le niobium, le tantale, le titane ou le zirconium comme constituant majeur
  • C22F 1/00 - Modification de la structure physique des métaux ou alliages non ferreux par traitement thermique ou par travail à chaud ou à froid

28.

SURFACE ACOUSTIC WAVE COMPONENT AND METHOD FOR PRODUCING IT

      
Numéro d'application EP2012073933
Numéro de publication 2013/083469
Statut Délivré - en vigueur
Date de dépôt 2012-11-29
Date de publication 2013-06-13
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Menzel, Siegfried
  • Winkler, Andreas

Abrégé

The invention is concerned with the field of electrical engineering/ acoustoelectronics and relates to a surface acoustic wave component such as can be used for example as a filter component in mobile telephones. The problem addressed by the present invention is that of specifying a surface acoustic wave component in which the degradation of the IDT is significantly reduced. The problem is solved by the invention specified in the claims. The dependent claims relate to advantageous configurations. The surface acoustic wave component according to the invention consists at least of a piezoelectric material, interdigital transducers, a non-piezoelectric material and electrical contact-connections, wherein the interdigital transducers are connected to the non-piezoelectric material at least in a force-locking and/or a positively locking manner and they can excite surface waves in the piezoelectric material, and, at least partly in the region of the aperture of interdigital transducers, the interdigital transducers are mechanically decoupled from the piezoelectric material.

Classes IPC  ?

  • H03H 9/145 - Moyens d'excitation, p. ex. électrodes, bobines pour réseaux utilisant des ondes acoustiques de surface
  • H03H 9/02 - Réseaux comprenant des éléments électromécaniques ou électro-acoustiquesRésonateurs électromécaniques Détails

29.

USE OF FLEXIBLE MAGNETIC THIN LAYER SENSOR ELEMENTS

      
Numéro d'application EP2012073785
Numéro de publication 2013/079502
Statut Délivré - en vigueur
Date de dépôt 2012-11-28
Date de publication 2013-06-06
Propriétaire
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
  • TECHNISCHE UNIVERSITÄT DRESDEN (Allemagne)
Inventeur(s)
  • Bahr, Falk
  • Barth, Henry
  • Hofmann, Wilfried
  • Makarov, Denys
  • Melzer, Michael
  • Mönch, Ingolf
  • Oppermann, Martin
  • Schmidt, Oliver G.
  • Zerna, Thomas

Abrégé

The invention concerns the field of electrical, materials and mechanical engineering and relates to the use of flexible magnetic thin layer sensor elements, which can be used for measuring magnetic flux density in electromagnetic energy converters and magnetomechanical energy converters. The aim of the invention is to specify the use of flexible magnetic thin layer sensor elements in electric machines and magnetic bearings, which can be placed in air gaps without substantially limiting the air gap widths. Said aim is achieved by the use of at least one flexible magnetic thin layer sensor element, which is attached to non-planar surfaces in the air gap on at least one of the main elements of electromagnetic energy converters and magnetomechanical energy converters and at least partially covers the non-planar surface of at least one of the main elements in the air gap in order to measure the magnetic flux density in the air gap and/or to regulate and/or monitor electromagnetic energy converters and magnetomechanical energy converters.

Classes IPC  ?

  • G01R 33/02 - Mesure de la direction ou de l'intensité de champs magnétiques ou de flux magnétiques
  • G01R 33/028 - Magnétomètres électrodynamiques
  • G01R 33/04 - Mesure de la direction ou de l'intensité de champs magnétiques ou de flux magnétiques en utilisant le principe du déclenchement périodique de flux
  • G01R 33/09 - Mesure de la direction ou de l'intensité de champs magnétiques ou de flux magnétiques en utilisant des dispositifs galvano-magnétiques des dispositifs magnéto-résistifs

30.

YBCO PANCAKE COILS WITH REDUCED AC POWER LOSS

      
Numéro d'application EP2011067877
Numéro de publication 2013/053392
Statut Délivré - en vigueur
Date de dépôt 2011-10-13
Date de publication 2013-04-18
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Grinenko, Vadim
  • Fuchs, Günter
  • Nenkov, Konstantin
  • Holzapfel, Bernhard

Abrégé

The invention relates to the field of physics and concerns superconducting YBCO pancake coils with reduced AC power loss, as can be used, for example, in superconducting motors, generators and transformers. The problem addressed by the present invention is that of devising YBCO pancake coils with reduced AC power loss. The problem is solved by YBCO double-pancake coils in which the two YBCO pancake coils are arranged beside each other in parallel and have a common coil axis. Each coil consists of several layers of YBCO strip conductors, electrically insulated from one another, which are supported on one end or are arranged on a coil core, wherein each layer consists of at least two YBCO strip conductors arranged one on top of the other, and the at least two YBCO strip conductors of one pancake coil are cross-connected conductively to the at least two YBCO strip conductors of the other pancake coil.

Classes IPC  ?

  • H01F 6/06 - Bobines, p. ex. dispositions pour l'enroulement, l'isolation, les enveloppes ou les bornes des bobines

31.

MAGNETO-ELECTRONIC COMPONENT, AND METHOD FOR THE PRODUCTION THEREOF

      
Numéro d'application EP2012054077
Numéro de publication 2012/123348
Statut Délivré - en vigueur
Date de dépôt 2012-03-09
Date de publication 2012-09-20
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Makarov, Denys
  • Schmidt, Oliver G.

Abrégé

The invention relates to the fields of physics and materials science, more particularly to a magneto-electronic component that can be used as a digital memory, for example. The aim of the invention is to design a magneto-electronic component which can be used as a racetrack memory. Said aim is achieved by a magneto-electronic component consisting of an insulating thin film, on which an elongate element made of a magnetic material and electrically conductive contacts are located, and another insulating thin film, said arrangement being jointly rolled up. Said aim is also achieved by a method in which at least one elongate element made of a magnetic material is applied to an insulating thin film, electrical contacts are also applied, and another insulating thin film is applied thereto, the stack of layers being arranged so as to have a strain gradient.

Classes IPC  ?

  • G11C 11/16 - Mémoires numériques caractérisées par l'utilisation d'éléments d'emmagasinage électriques ou magnétiques particuliersÉléments d'emmagasinage correspondants utilisant des éléments magnétiques utilisant des éléments dans lesquels l'effet d'emmagasinage est basé sur l'effet de spin
  • H01F 10/32 - Multicouches couplées par échange de spin, p. ex. superréseaux à structure nanométrique
  • H01L 43/12 - Procédés ou appareils spécialement adaptés à la fabrication ou le traitement de ces dispositifs ou de leurs parties constitutives
  • G11C 11/14 - Mémoires numériques caractérisées par l'utilisation d'éléments d'emmagasinage électriques ou magnétiques particuliersÉléments d'emmagasinage correspondants utilisant des éléments magnétiques utilisant des éléments à pellicules minces
  • G11C 13/00 - Mémoires numériques caractérisées par l'utilisation d'éléments d'emmagasinage non couverts par les groupes , ou
  • G11C 19/08 - Mémoires numériques dans lesquelles l'information est déplacée par échelons, p. ex. registres à décalage utilisant des éléments magnétiques utilisant des couches minces dans une structure plane

32.

SPOOLING AND SPINNER DEVICE OF A RING SPINNING FRAME OR A RING TWISTING FRAME, AND RING SPINNING AND RING TWISTING METHOD

      
Numéro d'application EP2012000398
Numéro de publication 2012/100964
Statut Délivré - en vigueur
Date de dépôt 2012-01-30
Date de publication 2012-08-02
Propriétaire
  • TECHNISCHE UNIVERSITÄT DRESDEN (Allemagne)
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
  • EVICO GMBH DRESDEN (Allemagne)
Inventeur(s)
  • Cherif, Chokri
  • Abdkader, Anwar
  • Schultz, Ludwig
  • Berger, Dietmar
  • De Haas, Oliver
  • Kuehn, Lars

Abrégé

The invention relates to a device for producing and winding up yarns in ring spinning and ring twisting frames, wherein the yarn is caused to rotate by a spinner device and is wound up on a cops on the basis of a developing difference in speed relative to the spindle and the cops. The aim of the invention is to drastically increase the yield of said device, to eliminate the friction between ring and rotor, to significantly increase the service life and to reduce the effective forces. Said aim is achieved in that the traditional ring-rotor system is replaced by a rotorless, supraconducting system of magnetic bearing, ring and spinner element.

Classes IPC  ?

  • D01H 7/60 - Anneaux ou curseursLeur fabrication non prévue ailleurs

33.

USE OF A MATERIAL FREE OF RARE EARTH METALS AS A MAGNETOCALORICALLY ACTIVE MATERIAL

      
Numéro d'application EP2011071929
Numéro de publication 2012/080040
Statut Délivré - en vigueur
Date de dépôt 2011-12-06
Date de publication 2012-06-21
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Richter, Manuel
  • Kuzmin, Michael

Abrégé

The invention relates to the use of a material free of rare earth metals as a magnetocalorically active material for products and devices for cooling or heating media and objects. The problem of the present invention consists of a low-cost magnetic material comprising a strong magnetocaloric effect per unit volume at a wide range of the natural ambient temperature, that is non-toxic, free of rare earth metals, and not comprising any other very rare elements. The essential object of the invention comprises a material free of rare earth metals having the composition (Fe1-aMa)Xb, where 0≤a<0.5; 0≤b≤0.6; and a+b>0, and where M = Ti, V, Cr, Mn, Co, Ni or a mixture of said elements, and where X = H, B, C, N, Si or a mixture of said elements is used as a magnetocaloric active material for products and devices for cooling or heating media and objects.

Classes IPC  ?

  • H01F 1/01 - Aimants ou corps magnétiques, caractérisés par les matériaux magnétiques appropriésEmploi de matériaux spécifiés pour leurs propriétés magnétiques en matériaux inorganiques

34.

SURFACE-STRUCTURED METALLIC GLASSES AND PROCESS FOR THE PRODUCTION THEREOF

      
Numéro d'application EP2011070485
Numéro de publication 2012/072428
Statut Délivré - en vigueur
Date de dépôt 2011-11-18
Date de publication 2012-06-07
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN e.V. (Allemagne)
Inventeur(s)
  • Jerliu, Bujar
  • Eckert, Jürgen
  • Scudino, Sergio
  • Surreddi, Kumar-Babu
  • Pauly, Simon

Abrégé

The invention relates to the field of materials science and provides surface-structured metallic glasses as can be used, for example, as housing materials for mobile telephones, laptops or USB memory sticks. It is an object of the present invention to provide surface-structured metallic glasses whose plasticity under compressive and tensile stress is increased. The object is achieved by surface-structured metallic glasses having one or more depressions having an aspect ratio of at least 1:>1 on at least one surface thereof. The object is also achieved by a process in which a body composed of a metallic glass is produced and at least one depression is subsequently introduced into at least one of the surfaces of the cooled body by means of a tool using uniaxial pressure.

Classes IPC  ?

  • C22C 45/00 - Alliages amorphes
  • C22F 1/00 - Modification de la structure physique des métaux ou alliages non ferreux par traitement thermique ou par travail à chaud ou à froid
  • C21D 7/04 - Modification des propriétés physiques du fer ou de l'acier par déformation par travail à froid de la surface

35.

METHOD FOR HEAT-TREATING HIGH-STRENGTH IRON ALLOYS

      
Numéro d'application EP2011070021
Numéro de publication 2012/069329
Statut Délivré - en vigueur
Date de dépôt 2011-11-14
Date de publication 2012-05-31
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN e.V. (Allemagne)
Inventeur(s)
  • Hufenbach, Julia Kristin
  • Eckert, Jürgen
  • Kühn, Uta
  • Kohlar, Stefanie

Abrégé

The invention relates to the field of materials science and concerns a method for heat-treating high-strength iron alloys. Moulded bodies made of such iron alloys can be used as cutting, stamping and shaping tools. The aim of the invention is to specify a method for heat-treating high-strength iron alloys, with which the hardness as well as the strength under tensile and compressive stresses and the deformability of the iron alloys can be markedly increased. The aim is achieved by a method in which the alloy elements are mixed, melted and then cast in a mould at cooling rates of at least 10 K/s; subsequently the moulded body is annealed at least twice in immediate succession, wherein the annealing temperatures lie between 500 and 600°C, the dwell times during annealing lie between 30 seconds and 15 minutes and the heating and cooling rates are at least 15 K/min.

Classes IPC  ?

  • C21D 5/00 - Traitement thermique de la fonte
  • C21D 6/00 - Traitement thermique des alliages ferreux
  • C21D 6/02 - Durcissement par précipitation
  • C22C 38/00 - Alliages ferreux, p. ex. aciers alliés
  • C22C 38/22 - Alliages ferreux, p. ex. aciers alliés contenant du chrome et du molybdène ou du tungstène
  • C22C 38/24 - Alliages ferreux, p. ex. aciers alliés contenant du chrome et du vanadium
  • C22C 38/26 - Alliages ferreux, p. ex. aciers alliés contenant du chrome et du niobium ou du tantale
  • C22C 38/28 - Alliages ferreux, p. ex. aciers alliés contenant du chrome et du titane ou du zirconium
  • C22C 38/36 - Alliages ferreux, p. ex. aciers alliés contenant du chrome et plus de 1,7% en poids de carbone
  • C21D 1/78 - Traitements thermiques combinés non prévus ci-dessus
  • C21D 9/22 - Traitement thermique, p. ex. recuit, durcissement, trempe ou revenu, adapté à des objets particuliersFours à cet effet pour foretsTraitement thermique, p. ex. recuit, durcissement, trempe ou revenu, adapté à des objets particuliersFours à cet effet pour fraisesTraitement thermique, p. ex. recuit, durcissement, trempe ou revenu, adapté à des objets particuliersFours à cet effet pour machines-outils coupantes

36.

HIGH-STRENGTH SHAPED BODIES WHICH ARE COMPOSED OF IRON ALLOYS, ARE PLASTICALLY DEFORMABLE AT ROOM TEMPERATURE AND ABSORB MECHANICAL ENERGY

      
Numéro d'application EP2011066283
Numéro de publication 2012/048993
Statut Délivré - en vigueur
Date de dépôt 2011-09-20
Date de publication 2012-04-19
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN e.V. (Allemagne)
Inventeur(s)
  • Kühn, Uta
  • Eckert, Jürgen
  • Siegel, Uwe
  • Hufenbach, Julia
  • Lee, Min Ha

Abrégé

The invention relates to the field of materials science and provides shaped bodies composed of iron alloys which can be used as cutting, stamping and splitting tools, in the aircraft industry, in spaceflight, in the vehicle industry and generally in machine construction and apparatus construction. The invention addresses the problem of providing shaped bodies composed of iron alloys which have plasticity and/or significant increases in strength combined with comparatively high ductility. This problem is solved by shaped bodies composed of iron alloys according to Claim 1. The problem is also solved by a process in which the elements of the alloy are mixed, melted and subsequently poured into a casting mould and cooled at a rate of > 20 K/s.

Classes IPC  ?

  • C22C 30/04 - Alliages contenant moins de 50% en poids de chaque constituant contenant de l'étain ou du plomb
  • C22C 38/22 - Alliages ferreux, p. ex. aciers alliés contenant du chrome et du molybdène ou du tungstène
  • C22C 38/24 - Alliages ferreux, p. ex. aciers alliés contenant du chrome et du vanadium

37.

MAGNETIC STORAGE MATERIAL FOR THE LONG-TERM STORAGE OF BINARY DATA

      
Numéro d'application EP2011066702
Numéro de publication 2012/041819
Statut Délivré - en vigueur
Date de dépôt 2011-09-27
Date de publication 2012-04-05
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Richter, Manuel

Abrégé

The invention relates to the field of information technology and data processing and relates to a magnetic storage material for the long-term storage of binary data. The storage material according to the invention allows a very high packing density and can be deposited as a thin layer on a substrate and thus be used to produce data carriers for hard disk storage units. The aim of the invention is to create a magnetic storage material for long-term storage of binary data, wherein said material maintains the directional magnetization in a long term stable manner in the range of several years, allows the production of ordered and chemically stable storage films having an extremely high packing density, and in principle allows time-saving storage and read-out of the data. The magnetic storage material according to the invention essentially consists of magnetic bistable or multistable storage particles in the form of individual paramagnetic atoms or individual superparamagnetic dimers or individual superparamagnetic atom clusters in the subnanometer range, which individually are enclosed in covalently bound cage-like structures, wherein the storage particles consist of one or more elements of groups 3 to 10 of the periodic table of the elements and/or lanthanides and/or actinides, and wherein the storage particles are bound on the insides of the cage-like structures or at least the orientation thereof relative to the surrounding cage-like structure is fixed. The bond of the storage particles on the insides of the cage-like structures is so strong that a magnetic field acting during read-in and read-out of the information units does not destroy the bond or the orientation.

Classes IPC  ?

  • G11B 5/706 - Supports d'enregistrement caractérisés par l'emploi d'un matériau spécifié comportant une ou plusieurs couches de particules magnétisables mélangées de façon homogène avec un produit de liaison sur une couche de base caractérisés par la composition du matériau magnétique
  • G11B 5/64 - Supports d'enregistrement caractérisés par l'emploi d'un matériau spécifié comportant uniquement le matériau magnétique, sans produit de liaison

38.

METHOD AND ASSEMBLY FOR EXCITING SPIN WAVES IN MAGNETIC SOLID BODIES

      
Numéro d'application EP2011059667
Numéro de publication 2012/019806
Statut Délivré - en vigueur
Date de dépôt 2011-06-10
Date de publication 2012-02-16
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Schäfer, Rudolf

Abrégé

The invention relates to a method and assembly for spin wave excitement in ferro- or ferrimagnetic solid bodies, such as in a magnetic conductor path or in a magnetic nanowire. The invention is in particular applicable for signal and information transport on the basis of propagating spin waves in electrical switch circuits and components and in the field of the implementation of logical circuits. The aim of the invention is to provide a method for spin wave excitation by means of which spin wave types of the same type can be reproducibly excited in simply structured solid bodies without using electrical currents, magnetic fields and heat effects. Included in said aim is the creation of an advantageously usable assembly for carrying out the novel method. The method according to the invention is characterized in that a domain wall, spatially fixed in a magnetic solid body, is illuminated by polarized, pulsed laser light using the inverse magneto-optical gradient effect, wherein the illumination of the domain wall takes place in vertical incidence in the case of magnetized domains in the plane of the solid body and in angled incidence in the case of magnetized domains perpendicular to the solid body plane, especially avoiding heat input into the solid body.

Classes IPC  ?

  • G11C 13/06 - Mémoires numériques caractérisées par l'utilisation d'éléments d'emmagasinage non couverts par les groupes , ou utilisant des éléments optiques utilisant des éléments magnéto-optiques
  • G11C 19/08 - Mémoires numériques dans lesquelles l'information est déplacée par échelons, p. ex. registres à décalage utilisant des éléments magnétiques utilisant des couches minces dans une structure plane
  • G11B 11/105 - Enregistrement sur, ou reproduction depuis le même support d'enregistrement, dans lesquels, pour ces deux opérations, les procédés ou les moyens sont couverts par différents groupes principaux des groupes ou par différents sous-groupes du groupe Supports d'enregistrement correspondants utilisant l'enregistrement par magnétisation ou démagnétisation utilisant un faisceau de lumière ou un champ magnétique pour l'enregistrement et un faisceau de lumière pour la reproduction, p. ex. enregistrement thermomagnétique induit par la lumière ou reproduction par l'effet Kerr

39.

METALLIC SHAPED WIRE WITH A RECRYSTALLIZATION CUBE TEXTURE AND PROCESS FOR THE PRODUCTION THEREOF

      
Numéro d'application EP2011061311
Numéro de publication 2012/004262
Statut Délivré - en vigueur
Date de dépôt 2011-07-05
Date de publication 2012-01-12
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN e.V. (Allemagne)
Inventeur(s)
  • Eickemeyer, Jörg
  • Güth, Albert
  • Seifert, Dirk
  • Freudenberger, Jens
  • Holzapfel, Bernhard

Abrégé

The invention deals with the field of materials science and relates to a metallic shaped wire which is made of polycrystalline metals, has a recrystallization cube texture and can be used, for example, as a substrate for film superconductors in superconducting magnets. The invention is based on the object of specifying a metallic shaped wire, on the surface of which buffer layers and superconductor layers can grow in an oriented manner, and a relatively cost-effective process. The object is achieved by a shaped wire which has a recrystallization cube texture in the region of the surfaces oriented perpendicular to one another and/or over the cross section thereof, wherein the cube edges of the unit cells are oriented parallel to the longitudinal axis of the wire and perpendicular to the surfaces. The object is also achieved by a process in which a strip of polycrystalline face-centred cubic metal is processed by means of cold-drawing to form shaped wire, wherein the cold-drawing exclusively implements a reduction in the overall width of the starting strip used of εb,ges ≥ 80%, but the thickness of the strip product used is not substantially changed.

Classes IPC  ?

  • C22C 19/00 - Alliages à base de nickel ou de cobalt, seuls ou ensemble
  • C22F 1/10 - Modification de la structure physique des métaux ou alliages non ferreux par traitement thermique ou par travail à chaud ou à froid du nickel ou du cobalt ou de leurs alliages
  • B21C 37/04 - Fabrication de tôles, barres, fils, tubes ou profilés métalliques ou de produits semi-finis similaires, non prévue ailleursFabrication de tubes de forme particulière des barres ou fils métalliques

40.

METHOD AND ARRANGEMENT FOR MANIPULATING DOMAIN INFORMATION STORED IN A MAGNETIC MEDIUM

      
Numéro d'application EP2011054587
Numéro de publication 2011/124479
Statut Délivré - en vigueur
Date de dépôt 2011-03-25
Date de publication 2011-10-13
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Schäfer, Rudolf

Abrégé

The invention is based on the object of designing a method and an arrangement for manipulating domain information stored in a magnetic medium, wherein spin-polarized electric current pulses are conducted through the medium and bring about domain wall displacements on the basis of the racetrack memory method, such that a reduction of the current density and of electromigration becomes possible. The method according to the invention is characterized in that, for the purpose of reducing the current density required for domain wall displacement, the medium is illuminated with polarized pulsed laser light using the effect of a reversal of the magneto-optical gradient effect for producing a torque at the spin system of the domain walls, wherein domains which are magnetized in the plane of the medium surface are illuminated with perpendicular incidence and domains having magnetization oriented perpendicularly to the medium surface are illuminated with oblique incidence. A further essential feature according to the invention consists in the fact that the wavelength, the pulse duration and the fluence of the pulsed laser light are chosen such that the laser light does not input heat into the magnetic medium in a manner that would lead to heating of the medium in excess of the heat generated by the electric current pulses. The arrangement according to the invention is characterized by a pulsed laser source for illuminating with a polarized laser beam a domain structure which is magnetized in planar or perpendicular fashion and is present in the medium. The method and arrangement according to the invention are applicable, in particular, in the field of magnetic data storage.

Classes IPC  ?

  • G11C 19/08 - Mémoires numériques dans lesquelles l'information est déplacée par échelons, p. ex. registres à décalage utilisant des éléments magnétiques utilisant des couches minces dans une structure plane
  • G11C 13/06 - Mémoires numériques caractérisées par l'utilisation d'éléments d'emmagasinage non couverts par les groupes , ou utilisant des éléments optiques utilisant des éléments magnéto-optiques

41.

METHOD FOR DETERMINING ELECTRICAL AND MECHANICAL MATERIAL PROPERTIES USING AN SAW ONE-PORT RESONATOR

      
Numéro d'application EP2010054999
Numéro de publication 2010/121947
Statut Délivré - en vigueur
Date de dépôt 2010-04-15
Date de publication 2010-10-28
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Guhr, Glen
  • Brünig, Raimund
  • Jäger, Martin

Abrégé

The invention concerns the field of measurement technology, and relates to a method for determining electrical and mechanical material properties, which may be used for liquids, such as oils, milk, blood, for example. The aim of the present invention is to provide a method by means of which the material properties may be detected at the same time and at the same place by way of an assembly. The aim is achieved by a method, in which by means of a SAW one-port resonator, which is substantially fully covered with a sample, the amount and the phase of the complex electrical resistance is measured in a broad frequency range, and subsequently the electrical and mechanical material properties of the sample are determined from the curve profile of the amount and the phase of the complex electrical resistance using known methods and models.

Classes IPC  ?

  • G01N 29/02 - Analyse de fluides
  • G01N 29/036 - Analyse de fluides en mesurant la fréquence ou la résonance des ondes acoustiques
  • G01N 27/00 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques
  • G01N 27/02 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'impédance

42.

MAGNETIC ALLOY MATERIAL AND PROCESS FOR THE PRODUCTION THEREOF

      
Numéro d'application EP2010055086
Numéro de publication 2010/121977
Statut Délivré - en vigueur
Date de dépôt 2010-04-19
Date de publication 2010-10-28
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Lyubina, Julia
  • Gutfleisch, Oliver

Abrégé

The invention relates to the field of materials science and materials physics and concerns a magnetic alloy material, which can be used, for example, as a magnetic cooling material (magnetocaloric material) for cooling purposes or for energy generation purposes, and a process for the production thereof. The aim of the present invention is to provide a magnetic alloy material which has comparable magnetic and/or magnetocaloric properties and improved mechanical properties compared to prior art materials. This aim is achieved by a magnetic alloy material which displays a magnetocaloric effect and has a foam-like structure with an open porosity of from 1% to 50% and/or a closed porosity of at least 1% or in which particles of the magnetic alloy material are embedded in a matrix material having a higher ductility than the magnetic alloy material.

Classes IPC  ?

  • H01F 1/01 - Aimants ou corps magnétiques, caractérisés par les matériaux magnétiques appropriésEmploi de matériaux spécifiés pour leurs propriétés magnétiques en matériaux inorganiques
  • B22F 3/11 - Fabrication de pièces ou d'objets poreux
  • C22C 1/08 - Alliages poreux avec pores ouverts ou fermés

43.

TRANSDUCER HAVING NATURAL UNIDIRECTIONALITY FOR SURFACE ACOUSTIC WAVES

      
Numéro d'application EP2010055291
Numéro de publication 2010/122067
Statut Délivré - en vigueur
Date de dépôt 2010-04-21
Date de publication 2010-10-28
Propriétaire
  • VECTRON INTERNATIONAL GMBH & CO. KG (Allemagne)
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Martin, Günter
  • Weihnacht, Manfred
  • Biryukov, Sergey
  • Darinski, Alexander
  • Wall, Bert

Abrégé

The invention relates to a transducer having natural unidirectionality for surface acoustic waves, wherein an interdigital electrode structure is arranged on a piezoelectric crystal substrate and is constructed with interdigital transducers comprising collecting electrodes and fingers, wherein at least two of the fingers form a transducer cell, which comprises at least one excitation center for exciting an electrical potential wave and at least one reflection center for reflecting electrical potential waves. The invention is based on the problem of finding materials, material sections, and propagation directions for transducers having natural unidirectionality that result in a low insertion loss even in broadband transducers, and for which the frequency position is not affected or is affected only slightly by errors in the orientation of the electrode structure on the substrate despite the unidirectional characteristics of the transducers. According to an essential characteristic of the invention, the fingers are oriented perpendicularly to a direction R, wherein the direction R is directed parallel to a 1- or 3-fold rotational axis of the substrate crystal and the derivative dv/dθ=0 applies to R, wherein v is the phase velocity of the surface wave and θ is an angular deviation of the perpendicular to the finger direction from said direction R. According to a further characteristic of the invention, the electrode materials and the layer thicknesses thereof are selected in such a way that the phase shift Φs between the excitation center and a reflection center in each transducer cell, given by the equation sin2(Φs)= (ωo2– ωs2) (ωs2– ωo1)/(ωs2– ωs1) (ωo1+ ωo2– ωs1– ωs2), lies between 41.4º and 48.6º or between -48.6º and -41.4º or between 131.4º and 138.6º or between -138.6º and -131.4º. The transducer according to the invention can be used in particular for sensors, identification components (ID tag), resonators, filter, delay lines, and oscillators insofar as the mode of operation thereof is based on surface acoustic waves.

Classes IPC  ?

  • H03H 9/145 - Moyens d'excitation, p. ex. électrodes, bobines pour réseaux utilisant des ondes acoustiques de surface

44.

INSULATION MATERIAL FOR INTEGRATED CIRCUITS AND USE OF SAID INTEGRATED CIRCUITS

      
Numéro d'application EP2010051297
Numéro de publication 2010/094562
Statut Délivré - en vigueur
Date de dépôt 2010-02-03
Date de publication 2010-08-26
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Seifert, Gotthart
  • Hermann, Helmut
  • Zagorodniy, Konstyantyn
  • Zschech, Ehrenfried

Abrégé

The invention deals with the fields of microelectronics and the material sciences and relates to an insulation layer material for integrated circuits in microelectronics that can be used, for example, in integrated circuits as an insulation material in semiconductor components. The problem of the present invention is to specify an insulation material for integrated circuits that has dielectric constants of k ≤ 2 and at the same time has good mechanical properties. The problem is solved by means of an insulation material for integrated circuits that contains at least MOFs and/or COFs.

Classes IPC  ?

  • H01L 21/312 - Couches organiques, p. ex. couche photosensible
  • C07F 5/06 - Composés de l'aluminium
  • C07F 5/00 - Composés contenant des éléments des groupes 3 ou 13 du tableau périodique
  • C07F 3/00 - Composés contenant des éléments des groupes 2 ou 12 du tableau périodique

45.

COATED MAGNETIC ALLOY MATERIAL AND METHOD FOR THE MANUFACTURE THEREOF

      
Numéro d'application EP2009066871
Numéro de publication 2010/066856
Statut Délivré - en vigueur
Date de dépôt 2009-12-10
Date de publication 2010-06-17
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Lyubina, Julia
  • Buschbeck, Mikaela
  • Gutfleisch, Oliver

Abrégé

The invention refers to the area of materials science and material physics and relates to a coated magnetic alloy material that can be used, for example, as a magnetic cooling material for cooling purposes. The object of the present invention is to provide a coated magnetic alloy material that exhibits improved mechanical and/or chemical properties. The object is accomplished by a magnetic alloy material having an Na Zn13-type crystalline structure and having a composition according to the formula Ra Fe100-a-x-y-z Tx My Lz, the surface of said alloy material being coated with a material comprising at least one element from the group of Al, Si, C, Sn, Ti, V, Cd, Cr, Mn, W, Co, Ni, Cu, Zn, Pd, Ag, Pt, Au or combinations thereof. The object is further achieved by a method in which the magnetic alloy material is coated by way of fluid phase processes.

Classes IPC  ?

  • H01F 1/01 - Aimants ou corps magnétiques, caractérisés par les matériaux magnétiques appropriésEmploi de matériaux spécifiés pour leurs propriétés magnétiques en matériaux inorganiques

46.

DIAGNOSTIC AND/OR THERAPEUTIC AGENT, METHOD FOR THE MANUFACTURE THEREOF AND USE THEREOF

      
Numéro d'application EP2009064912
Numéro de publication 2010/055036
Statut Délivré - en vigueur
Date de dépôt 2009-11-10
Date de publication 2010-05-20
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Braun, Klaus
  • Bock, Michael
  • Pipkorn, Rüdiger
  • Waldeck, Waldemar
  • Wießler, Manfred
  • Didinger, Bernd
  • Debus, Jürgen
  • Ehemann, Volker
  • Dunsch, Lothar

Abrégé

The invention relates to the areas of the materials sciences and to medicine, and relates to an agent that can be used as a contrast medium for the localization of cancer cells, for example. The object of the present invention is to provide an agent which sensitively and selectively recognizes the location and type of molecules or cells to be examined. The object is accomplished through an agent comprising at least bio-shuttle molecules to which endohedral fullerenes are coupled by way of peptide-based molecules, wherein the endohedral fullerenes are hydrophobic and correspond to the formula: A3-χMxZ@C2n, where x = 0 to 3, n ≥ 34, A is a rare earth and/or a transuranic element, M is a metal, Z is a non-metal and C is carbon. The object is further accomplished through a method in which hydrophobic, endohedral fullerenes are coupled to bio-shuttle molecules by way of an irreversible Diels-Alder reaction that has an inverse electron demand (DARιnv).

Classes IPC  ?

  • A61K 49/00 - Préparations pour examen in vivo
  • A61K 49/06 - Préparations de contraste pour la résonance magnétique nucléaire [RMN]Préparations de contraste pour l'imagerie par résonance magnétique [IRM]
  • A61K 49/18 - Préparations de contraste pour la résonance magnétique nucléaire [RMN]Préparations de contraste pour l'imagerie par résonance magnétique [IRM] caractérisées par un aspect physique particulier, p. ex. émulsions, microcapsules, liposomes

47.

REFRIGERATION APPARATUS

      
Numéro d'application EP2009061848
Numéro de publication 2010/034634
Statut Délivré - en vigueur
Date de dépôt 2009-09-14
Date de publication 2010-04-01
Propriétaire
  • OERLIKON LEYBOLD VACUUM GMBH (Allemagne)
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN e.V. (Allemagne)
Inventeur(s)
  • Siegert, Lothar
  • Täschner, Christine

Abrégé

The present invention relates to an apparatus for the condensation and/or adsorption of gases, particularly in a high vacuum, characterized in that nano-structured carbon particles obtained in particular by way of a CVD or plasma CVD method are connected in a heat-conducting manner to a refrigeration reservoir, which in particular has a temperature of ≤ 20 K.

Classes IPC  ?

  • F04B 37/02 - Pompes spécialement adaptées aux fluides compressibles et ayant des caractéristiques pertinentes non prévues dans les groupes ou présentant un intérêt autre que celui visé par ces groupes pour l'évacuation, par absorption ou adsorption
  • F04B 37/08 - Pompes spécialement adaptées aux fluides compressibles et ayant des caractéristiques pertinentes non prévues dans les groupes ou présentant un intérêt autre que celui visé par ces groupes pour l'évacuation par moyens thermiques par condensation ou réfrigération, p. ex. pompes cryogéniques
  • F04B 37/04 - Emploi de matériaux spécifiés pour l'absorption ou l'adsorption
  • B01D 53/02 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par adsorption, p. ex. chromatographie préparatoire en phase gazeuse

48.

THERMOELECTRIC COMPONENT AND METHOD FOR THE PRODUCTION THEREOF

      
Numéro d'application EP2009059103
Numéro de publication 2010/007110
Statut Délivré - en vigueur
Date de dépôt 2009-07-15
Date de publication 2010-01-21
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Dienel, Thomas
  • Schumann, Joachim
  • Rastelli, Armando
  • Schmidt, Oliver G.

Abrégé

The invention relates to the field of physics and relates to a thermoelectric component that can be used for example as an energy converter or as a thermionic cooler. The aim of the claimed invention consists of designing a thermoelectric component in which energy is converted in an efficient manner. Said aim is achieved due to the fact that the claimed thermoelectric component comprises: a) for using the Peltier-Seebeck based operating principle, two or more separated or common thin layers that are rolled up by means of the roll-up technique, each layer consisting of a p- and an n-doped semi-conductor material and said layers being connected together in a meandering type manner via electric contacts; b) for using the thermionic operating principle, a multi-layer structure that consists of a thin layer structure, rolled up by means of the roll-up technique, and made of a p-doped semi-conductor material, an electric, non-conductive barrier layer that is applied thereto, and a thin layer made of an n-doped semi-conductor material and that is applied thereto. No direct material contact between the p- and n-doped semi-conductor material is established.

Classes IPC  ?

  • H01L 35/32 - DISPOSITIFS À SEMI-CONDUCTEURS; DISPOSITIFS ÉLECTRIQUES À L'ÉTAT SOLIDE NON PRÉVUS AILLEURS - Détails fonctionnant exclusivement par effet Peltier ou effet Seebeck caractérisés par la structure ou la configuration de la cellule ou du thermocouple constituant le dispositif
  • H01L 35/34 - Procédés ou appareils spécialement adaptés à la fabrication ou au traitement de ces dispositifs ou de leurs parties constitutives

49.

ELECTRICALLY CONDUCTIVE HIGH-TEMPERATURE SUPERCONDUCTOR LAYERED STRUCTURE AND METHOD FOR THE PRODUCTION THEREOF

      
Numéro d'application EP2009058090
Numéro de publication 2010/000685
Statut Délivré - en vigueur
Date de dépôt 2009-06-29
Date de publication 2010-01-07
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Hühne, Ruben
  • Güth, Konrad
  • Kaltofen, Rainer

Abrégé

The invention relates to the field of material sciences and to an electrically conductive high-temperature superconductor layered structure, used for example as a high-current bearing conductor. The aim of the invention is to provide an electrically conductive high-temperature superconductor layered structure, which in the event of an overload can be used to conduct current via the layered structure and the substrate. The aim is achieved by an electrically conductive high-temperature superconductor layered structure consisting of a substrate (1), at least one nucleic layer (2) situated on said substrate, a layer (3) which is applied to the nucleic layer by means of an IBAD process, a barrier layer (4) being in turn located on said layer and at least one high-temperature superconductor layer (5) being situated on said barrier layer. The aim is further achieved by a method for producing an electrically conductive high-temperature superconductor layered structure, according to which at least one nucleic layer is applied to the substrate, at least one layer is applied to said layer by means of an IBAD process, at least one barrier layer is applied thereto and at least one high-temperature superconductor layer is then applied to said barrier layer.

Classes IPC  ?

  • H01L 39/24 - Procédés ou appareils spécialement adaptés à la fabrication ou au traitement des dispositifs couverts par  ou de leurs parties constitutives

50.

CONSTRUCTION ELEMENT MADE OF A FERROMAGNETIC SHAPE MEMORY MATERIAL AND USE THEREOF

      
Numéro d'application EP2009056739
Numéro de publication 2009/147135
Statut Délivré - en vigueur
Date de dépôt 2009-06-02
Date de publication 2009-12-10
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Fähler, Sebastian
  • Thomas, Michael
  • Heczko, Oleg
  • Buschbeck, Jörg
  • Mc Cord, Jeffrey

Abrégé

The invention refers to the area of materials science and relates to a construction element which can be used for micro-components, microsensors and microactuators, for example. The object of the present invention is to provide a construction element in which a much larger relative length change occurs. The object is accomplished by a construction element made of a ferromagnetic shape memory material manufactured through a process in which at least one sacrificial layer is applied to a monocrystalline or biaxially textured substrate, an epitactic or textured layer made of a ferromagnetic shape memory material with a layer thickness of ≤ 50 μm being applied to said sacrificial layer, whereupon the sacrificial layer is at least partially removed, and at least the ferromagnetic shape memory material is structured during or after the layer application so that an aspect ratio is achieved in which at least one length is greater than the thickness of the layer or the shortest dimension of the component by a factor of at least 3.

Classes IPC  ?

  • H01L 41/20 - Emploi de matériaux spécifiés pour des éléments magnétostrictifs
  • F03G 7/06 - Mécanismes produisant une puissance mécanique, non prévus ailleurs ou utilisant une source d'énergie non prévue ailleurs utilisant la dilatation ou la contraction des corps produites par le chauffage, le refroidissement, l'humidification, le séchage ou par des phénomènes similaires

51.

LAYER SYSTEM FOR ELECTRODES

      
Numéro d'application EP2009053862
Numéro de publication 2009/121901
Statut Délivré - en vigueur
Date de dépôt 2009-04-01
Date de publication 2009-10-08
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Menzel, Siegfried

Abrégé

The invention is concerned with the field of material sciences and relates to a layer system for electrodes which can be used for example in frequency filters, sensors or actuators. The object of the present invention is to specify a layer system for electrodes having improved power compatibility and lifetime. The object is achieved by means of a layer system for electrodes, comprising a piezoelectric substrate with strip structures that are composed of a composite material and are situated on or embedded in the substrate, said composite material comprising a metallic matrix material with at least one incorporation phase composed of carbon nanostructures. The object is furthermore achieved by means of a method in which catalyst material is applied on a seed layer, this is subjected to a temperature increase and carbon nanostructures are subsequently produced and the interspaces between the carbon nanostructures filled by a metallic matrix material, and/or in which particles are applied to a substrate, which particles lead to carbon nanostructures, and the interspaces between the carbon nanostructures are subsequently filled by a metallic matrix material.

Classes IPC  ?

  • H03H 9/145 - Moyens d'excitation, p. ex. électrodes, bobines pour réseaux utilisant des ondes acoustiques de surface
  • H03H 3/08 - Appareils ou procédés spécialement adaptés à la fabrication de réseaux d'impédance, de circuits résonnants, de résonateurs pour la fabrication de résonateurs ou de réseaux électromécaniques pour la fabrication de résonateurs ou de réseaux utilisant des ondes acoustiques de surface

52.

TUBULAR MULTIFUNCTION SENSOR IN FLUIDS METHOD FOR PRODUCTION AND USE THEREOF

      
Numéro d'application EP2009050991
Numéro de publication 2009/100988
Statut Délivré - en vigueur
Date de dépôt 2009-01-29
Date de publication 2009-08-20
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Bermudez, Esteban
  • Mei, Yongfeng
  • Schmidt, Oliver G.

Abrégé

The invention relates to the field of micro- and nano-technology and a multifunction sensor, of application, for example, in medicine. The aim of the invention is the production of a novel type of ferromagnetic micro-/nano-objects, which can be used as sensors in fluid flow. Said aim is achieved by means of a method, comprising a. application of a sacrificial layer to a substrate, b. application of a thin layer made of at least one ferromagnetic material to the sacrificial layer, c. selective etching of the sacrificial layer such that the thin layer rolls up and forms a micro- and/or nano- tube and then the micro- and/or nano-tube is mechanically removed from the substrate and transferred into or onto a fluid medium in an individual and controlled manner. The aim is further achieved by means of the tubular multifunction sensor produced by the above method which is made of at least one micro- or nano-tube and at least one ferromagnetic material.

Classes IPC  ?

  • B81C 1/00 - Fabrication ou traitement de dispositifs ou de systèmes dans ou sur un substrat

53.

METHOD AND DEVICE FOR PRODUCING A MAGNETIC FIELD WHICH CAN BE FREELY ORIENTED SPATIALLY USING SUPERCONDUCTING PERMANENT MAGNETS

      
Numéro d'application EP2009050301
Numéro de publication 2009/095298
Statut Délivré - en vigueur
Date de dépôt 2009-01-13
Date de publication 2009-08-06
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Büchner, Bernd
  • Horst, Alexander
  • Lindackers, Dirk

Abrégé

The invention refers to the area of materials science and relates to a device as is applied in the manufacture of thin layers, for example. The object of the present invention is to provide a method and a device for the production of a magnetic field which can be freely oriented spatially and maintained. The object is met by a device comprising a superconducting permanent magnet, a cooling device, a magnetization device, a device for three-dimensional translation and three-dimensional rotation of the permanent magnet and a moveable probe. The object is also met by a method in which a superconducting permanent magnet is subjected to a magnetic field and is thereby cooled down to below the transition temperature thereof and held there, and then transported by way of the device for three-dimensional translation and three-dimensional rotation to a location from which the now permanent magnetic field affects the probe.

Classes IPC  ?

  • H01F 6/00 - Aimants supraconducteursBobines supraconductrices
  • H01F 7/20 - Électro-aimantsActionneurs comportant des électro-aimants sans armature
  • H01F 13/00 - Appareils ou procédés pour l'aimantation ou pour la désaimantation

54.

AMORPHOUS LAYERS AND PROCESS FOR THE CONTINUOUS PRODUCTION THEREOF

      
Numéro d'application EP2008060878
Numéro de publication 2009/027281
Statut Délivré - en vigueur
Date de dépôt 2008-08-20
Date de publication 2009-03-05
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN e.V. (Allemagne)
Inventeur(s)
  • Stoica, Mihai
  • Eckert, Jürgen

Abrégé

The invention refers to the field of material sciences and relates to amorphous layers such as can be used, for example, for components subjected to strong chemical stresses. The problem addressed by the invention is that of specifying an amorphous layer which exhibits a high degree of hardness, no pore formation and very good adhesive strength. The problem is solved by amorphous layers, consisting of at least one metallic glass having a pore-free and uniformly amorphous structure, on a substrate. The problem is also solved by a process for continuously producing amorphous layers on a substrate, in which process a layer consisting of one or more molten metals or metal alloys is continuously applied to a substrate having a thermal conductivity of at least 15 Wm-1 K-1 and a maximum substrate thickness of 2 mm given this thermal conductivity, and subsequently the layer material is cooled at a rate of at least 100°C/s.

Classes IPC  ?

  • B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie

55.

MGB2 SUPERCONDUCTOR AND METHOD FOR PRODUCING IT

      
Numéro d'application EP2008060344
Numéro de publication 2009/021890
Statut Délivré - en vigueur
Date de dépôt 2008-08-06
Date de publication 2009-02-19
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Rodig, Christian
  • Hässler, Wolfgang
  • Herrmann, Marko

Abrégé

The invention is concerned with the field of material sciences and relates to an MgB2 superconductor such as can be used for example for wires for transmitting power. The object of the invention is to specify an MgB2 superconductor which has an improved critical current density even at relatively high magnetic fields. The object is achieved by means of an MgB2 superconductor comprising a core material composed of MgB2 and an enveloping material composed of Cu, Cu alloys, Ni, Ni alloys, Fe, Nb, Ta and/or Ti, the core material having a continuously morphologically identical, finely crystalline microstructure, without shear bands and/or partial detachments. The object is furthermore achieved by means of a method in which at least mechanically alloyed Mg and B powder is filled as core material into a tube composed of Cu, Cu alloys, Ni, N alloys, Fe, Nb, Ta and/or Ti as enveloping material, and the filled tube is subjected to a reshaping by means of hammering with thermal treatments in between, the temperatures realizing a reaction of the starting powder to a maximum of 60% MgB2.

Classes IPC  ?

  • H01L 39/24 - Procédés ou appareils spécialement adaptés à la fabrication ou au traitement des dispositifs couverts par  ou de leurs parties constitutives

56.

WAVEGUIDE COMPONENTS BASED ON ACOUSTIC SURFACE WAVES AND USE THEREOF

      
Numéro d'application EP2007059154
Numéro de publication 2008/028879
Statut Délivré - en vigueur
Date de dépôt 2007-09-02
Date de publication 2008-03-13
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Martin, Günter
  • Weihnacht, Manfred
  • Biryukov, Sergey

Abrégé

The invention relates to waveguide components based on acoustic surface waves, comprising at least one interdigital converter for exciting acoustic surface waves in a piezoelectric substrate or a piezoelectric layer. The object of the invention is to change known waveguide components, comprising at least one interdigital converter for exciting acoustic surface waves in a piezoelectric substrate or a piezoelectric layer, such that no reflectors are necessary with an otherwise equivalent function. The inventive waveguide components are characterized in that the interdigital converter(s) a) is or are disposed at a defined distance over the piezoelectric substrate or the piezoelectric layer for exciting wave fields, or b) is or are in contact with the piezoelectric substrate or the piezoelectric layer, wherein in version a) the piezoelectric substrate is designed as a ring and the piezoelectric layer is designed as a circular region. In case of version b), the interdigital converter and/or the piezoelectric layer form circular regions. The components can be used for example as resonators, filters, oscillators and sensors.

Classes IPC  ?

  • H03H 9/25 - Détails de réalisation de résonateurs utilisant des ondes acoustiques de surface

57.

INSULATION LAYER MATERIAL FOR MICROELECTRONICS

      
Numéro d'application EP2007005203
Numéro de publication 2007/141048
Statut Délivré - en vigueur
Date de dépôt 2007-06-07
Date de publication 2007-12-13
Propriétaire
  • LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
  • TECHNISCHE UNIVERSITÄT DRESDEN (Allemagne)
Inventeur(s)
  • Hermann, Helmut
  • Seifert, Gotthart
  • Täschner, Christine
  • Zschech, Ehrenfried

Abrégé

The invention deals with the fields of microelectronics and material technology and relates to an insulation layer material for microelectronics which can be used, for example, in integrated circuits as a dielectric between copper conductor tracks. The invention addresses the problem of providing an insulation layer material for microelectronics which has a dielectricity constant of k < 2 whilst also having good mechanical properties. The problem is solved with an insulation layer material for microelectronics which consists of a plurality of fluorinated carbon nanotubes which are connected to a network, at least at certain points, by means of physical and/or chemical connections, using a bonding agent.

Classes IPC  ?

  • H01L 21/312 - Couches organiques, p. ex. couche photosensible

58.

METHOD FOR PYROMETRICALLY MEASURING THE TEMPERATURE OF THE MELT MATERIAL IN MONOCRYSTAL CULTIVATION SYSTEMS

      
Numéro d'application EP2007052157
Numéro de publication 2007/122038
Statut Délivré - en vigueur
Date de dépôt 2007-03-07
Date de publication 2007-11-01
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Behr, Günter
  • Voigtländer, Ralf
  • Horst, Alexander
  • Morgner, Rolf
  • Fischer, Friedrich

Abrégé

The invention relates to the field of metrology and relates to a method for pyrometrically measuring the temperature of the melt material in monocrystal cultivation systems. The object of the invention is to specify a method which can be used to determine the temperature of the melt material without being influenced by other heat radiators. The object is achieved by means of a method in which the melting region is heated using radiation sources which contain at least one IR radiation component, and the effect of the radiation sources on the melting region is interrupted for temperature measurements, and the temperature measurements are solely carried out during the interruption period, wherein the interruption is effected at least until the t90 time of the pyrometer. The object is also achieved by means of an apparatus comprising at least one radiation source having at least one IR radiation component, at least one pyrometer and at least one device for interrupting the effects of the radiation source on the melting region.

Classes IPC  ?

  • G01J 5/00 - Pyrométrie des radiations, p. ex. thermométrie infrarouge ou optique
  • C30B 13/24 - Chauffage de la zone fondue par irradiation ou par décharge électrique en utilisant des radiations électromagnétiques
  • H01L 21/00 - Procédés ou appareils spécialement adaptés à la fabrication ou au traitement de dispositifs à semi-conducteurs ou de dispositifs à l'état solide, ou bien de leurs parties constitutives

59.

METHOD AND APPARATUS FOR SIMULTANEOUSLY DETERMINING HEIGHT DIFFERENCES AND COMPOSITIONS USING GLOW DISCHARGE SPECTROSCOPY

      
Numéro d'application EP2007052156
Numéro de publication 2007/113072
Statut Délivré - en vigueur
Date de dépôt 2007-03-07
Date de publication 2007-10-11
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s) Hoffmann, Volker

Abrégé

The invention relates to the field of metrology and relates to a method which can be used to determine height differences caused by sputtering at the same time as the composition is being determined. The object of the invention is to specify a method which can be used to determine the composition of a solid specimen on the basis of the depth in the sputter region with a relatively high level of accuracy. The object is achieved by means of a method in which the composition and the height differences are simultaneously determined spectrometrically from the emitted light during sputtering of a solid specimen using an apparatus for utilizing the confocal imaging principle. The object is also achieved by means of an apparatus comprising imaging optics (9), an apparatus for injecting and outputting a light beam (2), an entrance slit (3) to the spectrometer (4), and, alongside them, an apparatus for utilizing the confocal imaging principle (6, 7) and then a spectrometer (8) and a light source (5).

Classes IPC  ?

  • G01N 21/67 - Systèmes dans lesquels le matériau analysé est excité de façon à ce qu'il émette de la lumière ou qu'il produise un changement de la longueur d'onde de la lumière incidente excité électriquement, p. ex. par électroluminescence en utilisant des arcs électriques ou des décharges électriques

60.

TEMPERATURE SENSOR AND METHOD FOR PRODUCING IT

      
Numéro d'application EP2007052155
Numéro de publication 2007/110304
Statut Délivré - en vigueur
Date de dépôt 2007-03-07
Date de publication 2007-10-04
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Menzel, Siegfried
  • Vinzelberg, Hartmut
  • Gemming, Thomas

Abrégé

The invention relates to the field of physics and concerns a temperature sensor such as is used to measure temperature fields. The invention is based on the object of specifying a temperature sensor and a method, which realizes higher spatial resolution of the measurement. The object is achieved by means of a temperature sensor comprising a nanowire made of an electrically conductive material and/or a filled or unfilled nanotube which is/are fastened to a carrier in an electrically insulating manner in such a way that its/their length is oriented in the direction of the measurement location, wherein one electrical contact-connection is coupled to a greater thermal capacitance than the other contact-connection. The object is also achieved by means of a method in which a nanowire and/or a filled or unfilled nanotube is/are fastened to or on a carrier in an insulating manner in such a way that the longitudinal direction of the nanowire and/or of the nanotube is arranged in the direction of the measurement location and the thermal voltage is measured.

Classes IPC  ?

  • G01K 7/02 - Mesure de la température basée sur l'utilisation d'éléments électriques ou magnétiques directement sensibles à la chaleur utilisant des éléments thermo-électriques, p. ex. des thermocouples

61.

PIEZOELECTRIC COMPONENT HAVING A MAGNETIC LAYER

      
Numéro d'application EP2006065427
Numéro de publication 2007/023131
Statut Délivré - en vigueur
Date de dépôt 2006-08-17
Date de publication 2007-03-01
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Dörr, Kathrin
  • Schultz, Ludwig
  • Thiele, Christian

Abrégé

The invention relates to ceramics and to a piezoelectric component having a magnetic layer, which can be used, for example, as a resistor component, as a switch element or control or memory elements or as a sensor. The aim of the invention is to provide a piezoelectric component having a magnetic layer which can modify the electric and magnetic properties of the thin layer(s), which are arranged thereon, by means of mechanical extension. Said aim is achieved by virtue of the fact that said piezoelectric component having a magnetic layer, which comprises the piezoelectric compound (1-x)Pb(Mg-1/3Nb2/3)O3- (X)PbTiO3 wherein x = 0,2 - 0,5 or the piezoelectric compound (1- y)Pb(Zn1/3Nb2/3)O3-(y)PbTiO3 wherein y = 0 - 0,2 as a substrate, with at least one thin magnetic layer arranged thereon, is epitaxially grown.

Classes IPC  ?

  • H01F 10/28 - Pellicules magnétiques minces, p. ex. de structure à un domaine caractérisées par le substrat ou par les couches intermédiaires caractérisées par la composition du substrat

62.

PROCESS FOR PRODUCING METAL-CONTAINING CASTINGS, AND ASSOCIATED APPARATUS

      
Numéro d'application EP2006064809
Numéro de publication 2007/014916
Statut Délivré - en vigueur
Date de dépôt 2006-07-28
Date de publication 2007-02-08
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Roth, Stefan
  • Schultz, Ludwig

Abrégé

The invention deals with the field of materials sciences and relates to a process as can be used for example for the production of shaped articles from metallic glasses. The object of the present invention is to provide a process and an apparatus in which in addition to high cooling rates good mould filling during casting is also achieved. The object is achieved by a process in which a metal-containing melt is introduced into an electrically conductive casting mould, wherein during the introduction into a casting mould the metal-containing melt and the mould are electrically conductively connected to the outputs of the same voltage source, so that a preset flow passes through the boundary layer between melt and mould. The object is also achieved by an apparatus in which there is an electrically conductive connection to a voltage source between a metal-containing melt and an electrically conductive casting mould for the melt.

Classes IPC  ?

  • B22D 27/00 - Traitement du métal dans le moule pendant qu'il est liquide ou plastique
  • B22D 17/00 - Coulée sous pression ou moulage par injection, c.-à-d. moulage en introduisant le métal dans le moule sous haute pression

63.

METHOD OF PRODUCING A LAYER-SUBSTRATE COMPOSITE AND LAYER-SUBSTRATE COMPOSITE

      
Numéro d'application EP2006064808
Numéro de publication 2007/012672
Statut Délivré - en vigueur
Date de dépôt 2006-07-28
Date de publication 2007-02-01
Propriétaire LEIBNIZ-INSTITUT FÜR FESTKÖRPER- UND WERKSTOFFFORSCHUNG DRESDEN E.V. (Allemagne)
Inventeur(s)
  • Fähler, Sebastian
  • Leistner, Karin
  • Neu, Volker

Abrégé

The invention concerns the field of physics and relates to a method of producing a layer-substrate composite, such as can be used for example for high-power magnets in magnetic, microstructured components. The object of the present invention is to provide a low-cost method and a layer-substrate composite of a texturing that is largely independent of the substrate. The object is achieved by a method in which a layer to be textured, which contains components for forming a layer with hard-magnetic properties, is applied to a substrate and compressive or tensile stresses are introduced into the layer during the application of the layer or thereafter. The object is further achieved by a layer-substrate composite comprising a substrate and at least one layer to be textured, which contains components for forming a layer with hard-magnetic properties, the layer having a state of stress comprising compressive or tensile stresses.

Classes IPC  ?

  • H01F 41/14 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour appliquer des pellicules magnétiques sur des substrats
  • H01F 41/30 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour appliquer des pellicules magnétiques sur des substrats pour appliquer des structures nanométriques, p. ex. en utilisant l'épitaxie par jets moléculaires [MBE]
  • H01F 10/13 - Alliages métalliques amorphes, p. ex. métaux vitreux
  • C30B 1/12 - Croissance des monocristaux à partir de l'état solide par traitement sous pression pendant la croissance