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Type PI
        Brevet 50
        Marque 2
Juridiction
        International 37
        États-Unis 13
        Canada 2
Date
2025 janvier 2
2025 (AACJ) 2
2024 1
2023 2
2022 2
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Classe IPC
A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules 8
G01T 1/20 - Mesure de l'intensité de radiation avec des détecteurs à scintillation 5
G01T 1/185 - Mesure de l'intensité de radiation avec des aménagements de chambre d'ionisation 4
G01T 1/29 - Mesure effectuée sur des faisceaux de radiations, p. ex. sur la position ou la section du faisceauMesure de la distribution spatiale de radiations 4
G01T 1/208 - Circuits spécialement adaptés aux détecteurs à scintillation, p. ex. à l'élément photomultiplicateur 3
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Classe NICE
09 - Appareils et instruments scientifiques et électriques 2
41 - Éducation, divertissements, activités sportives et culturelles 2
38 - Services de télécommunications 1
42 - Services scientifiques, technologiques et industriels, recherche et conception 1
Statut
En Instance 6
Enregistré / En vigueur 46

1.

CRYOGENIC LINK

      
Numéro d'application 18355347
Statut En instance
Date de dépôt 2023-07-19
Date de la première publication 2025-01-23
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) Ballarino, Amalia

Abrégé

There is provided a cryogenic link and a method of installing a cryogenic link. The cryogenic link comprises: a core and a cryostat. The cryostat comprises a flexible sleeve around the core and is configured to maintain a temperature of the core at a cryogenic temperature. The cryostat further comprises spacing means configured to maintain a spacing between the core and the flexible sleeve during expansion and contraction of the core. The flexible sleeve is suitable for fixing to an external structure at a plurality of fixed points, where each of the plurality of fixed points is separated by a distance, and a length of the cryogenic link between at least one pair of fixed points is greater than the distance between that pair of fixed points.

Classes IPC  ?

  • H01B 12/16 - Conducteurs, câbles ou lignes de transmission supraconducteurs ou hyperconducteurs caractérisés par le refroidissement
  • F17C 13/00 - Détails des récipients ou bien du remplissage ou du vidage des récipients

2.

RADIATION-DETECTED ZERO- TO ULTRALOW- FIELD NUCLEAR MAGNETIC RESONANCE

      
Numéro d'application 18712676
Statut En instance
Date de dépôt 2021-11-26
Date de la première publication 2025-01-16
Propriétaire
  • Johannes Gutenberg-Universität Mainz (Allemagne)
  • CERN - European Organization for Nuclear Research (Suisse)
  • GSI Helmholtzzentrum für Schwerionenforschung GmbH (Allemagne)
Inventeur(s)
  • Budker, Dmitry
  • Eills, James
  • Kowalska, Magdalena
  • Kulesz, Karolina
  • Blanchard, John

Abrégé

The present invention relates to a method and an apparatus (100) for investigating an object (10) by using nuclear magnetic resonance, the apparatus (100) comprising: —a magnetically shielded chamber (20) for magnetically shielding the object (10) from external static magnetic fields when being investigated: —a spin-manipulation unit (30), which is arranged, at least in parts, in the magnetically shielded chamber (20) and configured to manipulate spins of radioactive nuclei that are present in the object (10); and —at least one particle detector (40) which is configured to detect nuclear radiation emitted from the radioactive nuclei that are present in the object (10).

Classes IPC  ?

  • G01N 24/08 - Recherche ou analyse des matériaux par l'utilisation de la résonance magnétique nucléaire, de la résonance paramagnétique électronique ou d'autres effets de spin en utilisant la résonance magnétique nucléaire
  • G01R 33/28 - Détails des appareils prévus dans les groupes
  • G01R 33/44 - Dispositions ou appareils pour la mesure des grandeurs magnétiques faisant intervenir la résonance magnétique utilisant la résonance magnétique nucléaire [RMN]
  • G01T 1/20 - Mesure de l'intensité de radiation avec des détecteurs à scintillation
  • G01T 1/202 - Mesure de l'intensité de radiation avec des détecteurs à scintillation le détecteur étant du cristal

3.

DEVICE, SYSTEM AND METHOD FOR PRODUCING A SINGLE LONGITUDINAL MODE LASER OUTPUT

      
Numéro d'application 18258140
Statut En instance
Date de dépôt 2021-12-17
Date de la première publication 2024-02-15
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Granados Mateo, Eduardo
  • Fedosseev, Valentin N.
  • Chrysalidis, Katerina
  • Mildren, Richard P.

Abrégé

A Raman laser conversion device for generating a single longitudinal mode, SLM, laser output is disclosed. The device comprises a Raman medium that exhibits a Stokes emission when subject to pumping by a laser pump input, the laser pump input having a pump linewidth and the Raman medium having a Raman linewidth; wherein the Raman medium is configured to define feedback interfaces of a resonator such that the Stokes emission resonates within the Raman medium; and further wherein the free spectral range, FSR, of the resonator with respect to the pump linewidth and/or the Raman linewidth or a function thereof is such that only one longitudinal mode of the Stokes emission is able to resonate within the Raman medium; whereby the laser conversion device generates a SLM laser output that is frequency shifted with respect to the laser pump input.

Classes IPC  ?

  • H01S 3/08031 - Émission monomode
  • H01S 3/06 - Structure ou forme du milieu actif
  • H01S 3/094 - Procédés ou appareils pour l'excitation, p. ex. pompage utilisant le pompage optique par de la lumière cohérente
  • H01S 3/102 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation par commande du milieu actif, p. ex. par commande des procédés ou des appareils pour l'excitation
  • H01S 3/30 - Lasers, c.-à-d. dispositifs utilisant l'émission stimulée de rayonnement électromagnétique dans la gamme de l’infrarouge, du visible ou de l’ultraviolet utilisant des effets de diffusion, p. ex. l'effet Brillouin ou Raman stimulé

4.

DEVICE FOR PROVIDING A RADIATION TREATMENT

      
Numéro d'application 18002601
Statut En instance
Date de dépôt 2021-06-23
Date de la première publication 2023-07-20
Propriétaire
  • CENTRE HOSPITALIER UNIVERSI-TAIRE VAUDOIS (C.H.U.V.) (Suisse)
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Bourhis, Jean François Marie
  • Germond, Jean-François
  • Moeckli, Raphaël
  • Wuensch, Walter
  • Gerbershagen, Alexander

Abrégé

The present relates to a device for providing a radiation treatment to a patient comprising:—an electron source for providing a beam of electrons, and—a linear accelerator for accelerating said beam until a predetermined energy, and—a beam delivery module for delivering the accelerated beam from said linear accelerator toward the patient to treat a target volume with a radiation dose, The device further comprises intensity modulation means configured to modulate the distribution of the radiation dose in the target volume according to a predetermined pattern. The pattern is determined to match the dimensions of a target volume of at least about 50 cm3, and/or a target volume located at least about 5 cm deep in the tissue of the patient with said radiation dose, The radiation dose distributed is up to about 20 Gy delivered during an overall treatment time less than about 50 ms.

Classes IPC  ?

  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules
  • H05H 9/00 - Accélérateurs linéaires
  • H05H 7/02 - Circuits ou systèmes d'alimentation en énergie haute fréquence
  • H05H 7/12 - Dispositions pour faire varier l'énergie finale d'un faisceau

5.

RADIATION-DETECTED ZERO- TO ULTRALOW- FIELD NUCLEAR MAGNETIC RESONANCE

      
Numéro d'application EP2021083136
Numéro de publication 2023/093993
Statut Délivré - en vigueur
Date de dépôt 2021-11-26
Date de publication 2023-06-01
Propriétaire
  • JOHANNES GUTENBERG-UNIVERSITÄT MAINZ (Allemagne)
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • GSI HELMHOLTZZENTRUM FÜR SCHWERIONENFORSCHUNG GMBH (Allemagne)
Inventeur(s)
  • Budker, Dmitry
  • Eills, James
  • Kowalska, Magdalena
  • Kulesz, Karolina
  • Blanchard, John

Abrégé

The present invention relates to a method and an apparatus (100) for investigating an object (10) by using nuclear magnetic resonance, the apparatus (100) comprising: - a magnetically shielded chamber (20) for magnetically shielding the object (10) from external static magnetic fields when being investigated; - a spin-manipulation unit (30), which is arranged, at least in parts, in the magnetically shielded chamber (20) and configured to manipulate spins of radioactive nuclei that are present in the object (10); and - at least one particle detector (40) which is configured to detect nuclear radiation emitted from the radioactive nuclei that are present in the object (10).

Classes IPC  ?

  • G01R 33/32 - Systèmes d'excitation ou de détection, p. ex. utilisant des signaux radiofréquence
  • G01R 33/44 - Dispositions ou appareils pour la mesure des grandeurs magnétiques faisant intervenir la résonance magnétique utilisant la résonance magnétique nucléaire [RMN]
  • G01R 33/28 - Détails des appareils prévus dans les groupes
  • G01R 33/30 - Dispositions pour le traitement des échantillons, p. ex. cellules d'essai, mécanismes rotationnels
  • G01R 33/42 - Blindage
  • G01R 33/46 - Spectroscopie RMN

6.

Device For Ultra-High Dose Rate Radiation Treatment

      
Numéro d'application 17761800
Statut En instance
Date de dépôt 2020-09-24
Date de la première publication 2022-12-08
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • CENTRE HOSPITALIER UNIVERSITAIRE VAUDOIS (C.H.U.V.) (Suisse)
Inventeur(s)
  • Bourhis, Jean Francois Marie
  • Vozenin, Marie-Catherine Sophine
  • Germond, Jean-Francois
  • Wuensch, Walter
  • Stapnes, Steinar
  • Grudiev, Alexej

Abrégé

The present relates to device for ultra-high dose rate radiation treatment to a patient, comprising: —a radiation source for providing a radiation beam, and —a linear accelerator for accelerating said radiation beam until a predetermined energy, and —a beam delivery module for delivery the accelerated radiation beam. The device is arranged for generating an accelerated radiation beam having a predetermined energy between about 50 MeV and about 250 MeV, to deliver rate radiation dose of at least 10 Gy, during an overall time less than about 200 ms in order to generate a radiation field for treating a target volume of at least about 30 cm3, with said ultra-high dose rate radiation dose and/or a target volume located at least about 5 cm deep in the tissue of the patient with said ultra-high dose rate radiation dose.

Classes IPC  ?

  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules

7.

DEVICE, SYSTEM AND METHOD FOR PRODUCING A SINGLE LONGITUDINAL MODE LASER OUTPUT

      
Numéro d'application EP2021086640
Numéro de publication 2022/129604
Statut Délivré - en vigueur
Date de dépôt 2021-12-17
Date de publication 2022-06-23
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Granados Mateo, Eduardo
  • Fedosseev, Valentin N.
  • Chrysalidis, Katerina
  • Mildren, Richard P.

Abrégé

A Raman laser conversion device for generating a single longitudinal mode, SLM, laser output is disclosed. The device comprises a Raman medium that exhibits a Stokes emission when subject to pumping by a laser pump input, the laser pump input having a pump linewidth and the Raman medium having a Raman linewidth; wherein the Raman medium is configured to define feedback interfaces of a resonator such that the Stokes emission resonates within the Raman medium; and further wherein the free spectral range, FSR, of the resonator with respect to the pump linewidth and/or the Raman linewidth or a function thereof is such that only one longitudinal mode of the Stokes emission is able to resonate within the Raman medium; whereby the laser conversion device generates a SLM laser output that is frequency shifted with respect to the laser pump input.

Classes IPC  ?

  • H01S 3/30 - Lasers, c.-à-d. dispositifs utilisant l'émission stimulée de rayonnement électromagnétique dans la gamme de l’infrarouge, du visible ou de l’ultraviolet utilisant des effets de diffusion, p. ex. l'effet Brillouin ou Raman stimulé
  • H01S 3/06 - Structure ou forme du milieu actif
  • H01S 3/08 - Structure ou forme des résonateurs optiques ou de leurs composants
  • H01S 3/094 - Procédés ou appareils pour l'excitation, p. ex. pompage utilisant le pompage optique par de la lumière cohérente
  • H01S 3/07 - Structure ou forme du milieu actif consistant en une pluralité de parties, p. ex. segments
  • H01S 3/082 - Structure ou forme des résonateurs optiques ou de leurs composants comprenant trois réflecteurs ou plus définissant une pluralité de résonateurs, p. ex. pour la sélection ou la suppression de modes
  • H01S 3/083 - Lasers en anneau
  • H01S 3/0947 - Procédés ou appareils pour l'excitation, p. ex. pompage utilisant le pompage optique par de la lumière cohérente produite par un laser à colorant organique
  • H01S 3/102 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation par commande du milieu actif, p. ex. par commande des procédés ou des appareils pour l'excitation

8.

DEVICE FOR PROVIDING A RADIATION TREATMENT

      
Numéro de document 03183879
Statut En instance
Date de dépôt 2021-06-23
Date de disponibilité au public 2021-12-30
Propriétaire
  • CENTRE HOSPITALIER UNIVERSITAIRE VAUDOIS (C.H.U.V) (Suisse)
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Bourhis, Jean Francois Marie
  • Germond, Jean-Francois
  • Moeckli, Raphael
  • Wuensch, Walter
  • Gerbershagen, Alexander

Abrégé

The present relates to a device for providing a radiation treatment to a patient comprising :- an electron source for providing a beam of electrons, and- a linear accelerator for accelerating said beam until a predetermined energy, and - a beam delivery module for delivering the accelerated beam from said linear accelerator toward the patient to treat a target volume with a radiation dose, The device further comprises intensity modulation means configured to modulate the distribution of the radiation dose in the target volume according to a predetermined pattern.The pattern is determined to match the dimensions of a target volume of at least about 50 cm3, and/or a target volume located at least about 5 cm deep in the tissue of the patient with said radiation dose,The radiation dose distributed is up to about 20 Gy delivered during an overall treatment time less than about 50 ms.

Classes IPC  ?

  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules

9.

DEVICE FOR PROVIDING A RADIATION TREATMENT

      
Numéro d'application EP2021067189
Numéro de publication 2021/260028
Statut Délivré - en vigueur
Date de dépôt 2021-06-23
Date de publication 2021-12-30
Propriétaire
  • CENTRE HOSPITALIER UNIVERSITAIRE VAUDOIS (C.H.U.V.) (Suisse)
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Bourhis, Jean François Marie
  • Germond, Jean-François
  • Moeckli, Raphaël
  • Wuensch, Walter
  • Gerbershagen, Alexander

Abrégé

The present relates to a device for providing a radiation treatment to a patient comprising :- an electron source for providing a beam of electrons, and- a linear accelerator for accelerating said beam until a predetermined energy, and - a beam delivery module for delivering the accelerated beam from said linear accelerator toward the patient to treat a target volume with a radiation dose, The device further comprises intensity modulation means configured to modulate the distribution of the radiation dose in the target volume according to a predetermined pattern.The pattern is determined to match the dimensions of a target volume of at least about 50 cm3, and/or a target volume located at least about 5 cm deep in the tissue of the patient with said radiation dose,The radiation dose distributed is up to about 20 Gy delivered during an overall treatment time less than about 50 ms.

Classes IPC  ?

  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules

10.

Gantry and apparatus for focussing beams of charged particles

      
Numéro d'application 17056234
Numéro de brevet 12059581
Statut Délivré - en vigueur
Date de dépôt 2019-05-21
Date de la première publication 2021-06-24
Date d'octroi 2024-08-13
Propriétaire CERN—European Organization For Nuclear Research (Suisse)
Inventeur(s) Bottura, Luca

Abrégé

A gantry is provided for focusing beams of charged particles having differing momentum to charge ratios to a substantially common point. The gantry comprises at least one toroidal magnet having a central bore and a primary axis extending along the central bore and configured to receive beams of charged particles at different radial locations dependent on the momentum to charge ratio of the beam. The toroidal magnet comprises a plurality of discrete, substantially planar coils spaced apart and extending radially from the primary axis and configured to produce a magnetic field that is periodically symmetric about the primary axis.

Classes IPC  ?

  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules
  • G21K 1/093 - Déviation, concentration ou focalisation du faisceau par des moyens électriques ou magnétiques par des moyens magnétiques
  • G21K 5/04 - Dispositifs d'irradiation avec des moyens de formation du faisceau

11.

DEVICE FOR ULTRA-HIGH DOSE RATE RADIATION TREATMENT

      
Numéro d'application EP2020076662
Numéro de publication 2021/058624
Statut Délivré - en vigueur
Date de dépôt 2020-09-24
Date de publication 2021-04-01
Propriétaire
  • CENTRE HOSPITALIER UNIVERSITAIRE VAUDOIS (C.H.U.V.) (Suisse)
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Bourhis, Jean François Marie
  • Vozenin, Marie-Catherine Sophine
  • Germond, Jean-François
  • Wuensch, Walter
  • Stapnes, Steinar
  • Grudiev, Alexej

Abrégé

The present relates to device for ultra-high dose rate radiation treatment to a patient, comprising : - a radiation source for providing a radiation beam, and - a linear accelerator for accelerating said radiation beam until a predetermined energy, and - a beam delivery module for delivery the accelerated radiation beam, The device is arranged for generating an accelerated radiation beam having a predetermined energy between about 50 MeV and about 250 MeV, to deliver rate radiation dose of at least 10 Gy, during an overall time less than about 200 ms in order to generate a radiation field for treating a target volume of at least about 30 cm3, with said ultra-high dose rate radiation dose and/or a target volume located at least about 5 cm deep in the tissue of the patient with said ultra-high dose rate radiation dose.

Classes IPC  ?

  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules
  • H05H 9/04 - Accélérateurs linéaires à ondes stationnaires

12.

A GANTRY AND APPARATUS FOR FOCUSSING BEAMS OF CHARGED PARTICLES

      
Numéro de document 03100404
Statut Délivré - en vigueur
Date de dépôt 2019-05-21
Date de disponibilité au public 2019-11-28
Date d'octroi 2024-06-18
Propriétaire CERN-EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) Bottura, Luca

Abrégé

An apparatus for use in charged particle therapy, including a gantry for focussing beams of charged particles having differing momentum to charge ratios to a common point. A toroidal magnet having a central bore is configured to receive beams of charged particles at different radial locations dependent on the momentum to charge ratio of the beam. The toroidal magnet has a plurality of discrete, planar coils configured to produce a magnetic field such that a first beam of charged particles is directed towards a first point on the primary axis, and a second beam of charged particles is directed towards said first point on the primary axis. The planar coils are further configured to produce a magnetic field that is periodically symmetric about the primary axis, and the toroidal magnet is stationary in use.

Classes IPC  ?

  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules
  • G21K 1/093 - Déviation, concentration ou focalisation du faisceau par des moyens électriques ou magnétiques par des moyens magnétiques
  • G21K 5/04 - Dispositifs d'irradiation avec des moyens de formation du faisceau

13.

A GANTRY AND APPARATUS FOR FOCUSSING BEAMS OF CHARGED PARTICLES

      
Numéro d'application EP2019063152
Numéro de publication 2019/224215
Statut Délivré - en vigueur
Date de dépôt 2019-05-21
Date de publication 2019-11-28
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) Bottura, Luca

Abrégé

A gantry (100) is provided for focussing beams of charged particles having differing momentum to charge ratios to a substantially common point. The gantry comprises: at least one toroidal magnet (10) having a central bore, a primary axis of the toroidal magnet extending along the central bore, the toroidal magnet configured to receive beams of charged particles at different radial locations dependent on the momentum to charge ratio of the beam; wherein the toroidal magnet comprises a plurality of discrete, substantially planar coils (1a, 1b...1p) spaced apart and extending radially from the primary axis (z axis) and configured to produce a magnetic field such that, in use, a first beam of charged particles (30) having a component of motion along the primary axis and entering the toroidal magnet at a first radial location, is directed towards a first point on the primary axis, and; a second beam of charged particles having a different momentum to charge ratio to the first beam, and having a component of motion along the primary axis and entering the toroidal magnet at a second radial location, is directed towards said first point on the primary axis, and wherein; the planar coils are configured to produce a magnetic field that is periodically symmetric about the primary axis, and; the at least one toroidal magnet is substantially stationary in use.

Classes IPC  ?

  • G21K 1/093 - Déviation, concentration ou focalisation du faisceau par des moyens électriques ou magnétiques par des moyens magnétiques
  • G21K 5/04 - Dispositifs d'irradiation avec des moyens de formation du faisceau
  • A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules

14.

AN OPTICAL SYSTEM FOR PRODUCING A STRUCTURED BEAM

      
Numéro d'application EP2019061279
Numéro de publication 2019/211391
Statut Délivré - en vigueur
Date de dépôt 2019-05-02
Date de publication 2019-11-07
Propriétaire
  • CERN (Suisse)
  • ÚSTAV FYZIKY PLAZMATU AV CR, V.V.I. (République tchèque)
Inventeur(s)
  • Šulc, Miroslav
  • Gayde, Jean-Christophe

Abrégé

An optical system (100) for producing a structured optical beam (140), the system comprising: a convex lens (110) having a spherical or cylindrical entry surface (111), the lens comprising a material having a refractive index of at least 1.8; an electromagnetic radiation source (120) configured to provide a substantially coherent beam of electromagnetic radiation (130) and a focussing element (150) arranged along the optical axis of the optical system. The electromagnetic radiation source (120) is arranged to produce an illuminating beam (130) which illuminates the convex lens (110) over a selected illumination fraction of the spherical or cylindrical entry surface (111) and with a corresponding selected focus of the illuminating beam (130) such that the beam traverses a sufficient refractive volume of the convex lens (110) to produce aberrations in the beam emerging from the convex lens (110) such that it comprises a structured optical beam (140). The system and method allows for generating a structured beam which can propagate over the large distances while maintaining a well-defined cross-section intensity distribution.

Classes IPC  ?

  • G02B 27/09 - Mise en forme du faisceau, p. ex. changement de la section transversale, non prévue ailleurs
  • G02B 19/00 - Condenseurs

15.

METHOD OF MANUFACTURING A TAPE FOR A CONTINUOUSLY TRANSPOSED CONDUCTING CABLE AND CABLE PRODUCED BY THAT METHOD

      
Numéro d'application EP2017083144
Numéro de publication 2018/109205
Statut Délivré - en vigueur
Date de dépôt 2017-12-15
Date de publication 2018-06-21
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • BRUKER HTS GMBH (Allemagne)
Inventeur(s)
  • Rossi, Lucio
  • Usoskin, Alexander
  • Ballarino, Amalia
  • Bottura, Luca

Abrégé

A method for manufacturing a high temperature superconducting (HTS) tape for use in a continuously transposed conducting cable is provided. The method comprises the steps of: deposition of an HTS superconducting layer onto a buffered metallic tape; performing a metallization of the tape; and forming a meander shape in the tape; wherein the metallization is performed to provide a metallization thickness that enables a structural uniformity over the tape surface; a deposition of a metallic sheath exhibiting a tight, voidless bonding to the tape surface, performed after the forming of the meander shape; and a heat treatment in an neutral atmosphere is provided after the deposition of the metallic sheath.

Classes IPC  ?

  • H01B 7/30 - Conducteurs ou câbles isolés caractérisés par la forme avec dispositions pour réduire les pertes dans les conducteurs transmettant du courant alternatif, p. ex. dues à l'effet pelliculaire
  • H01L 39/14 - Dispositifs à supraconductivité permanente
  • H01L 39/24 - Procédés ou appareils spécialement adaptés à la fabrication ou au traitement des dispositifs couverts par  ou de leurs parties constitutives
  • H01B 12/02 - Conducteurs, câbles ou lignes de transmission supraconducteurs ou hyperconducteurs caractérisés par leurs formes
  • H01F 41/04 - 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 la fabrication de noyaux, bobines ou aimants pour la fabrication de bobines

16.

High frequency compact low-energy linear accelerator design

      
Numéro d'application 15503895
Numéro de brevet 10051721
Statut Délivré - en vigueur
Date de dépôt 2014-08-15
Date de la première publication 2017-08-17
Date d'octroi 2018-08-14
Propriétaire CERN—EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Lombardi, Alessandra
  • Vretenar, Maurizio
  • Mathot, Serge
  • Grudiev, Alexej

Abrégé

A compact radio-frequency quadrupole ‘RFQ’ accelerator for accelerating charged particles, the RFQ accelerator comprising: a bunching section configured to have a narrow radio-frequency ‘rf’ acceptance such that only a portion of a particle beam incident on the bunching section is captured, and wherein the bunching section bunches the portion of the particle beam; an accelerating section for accelerating the bunched portion of the particle beam to an output energy; and, a means for supplying radio-frequency power.

Classes IPC  ?

  • H05H 7/04 - Systèmes à aimantsLeur excitation
  • H05H 9/04 - Accélérateurs linéaires à ondes stationnaires
  • H05H 7/18 - CavitésRésonateurs

17.

Portable radiation detection device for operation in intense magnetic fields

      
Numéro d'application 15313496
Numéro de brevet 09977134
Statut Délivré - en vigueur
Date de dépôt 2015-05-11
Date de la première publication 2017-07-13
Date d'octroi 2018-05-22
Propriétaire
  • CERN—EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • POLITECNICO DI MILANO (Italie)
Inventeur(s)
  • Silari, Marco
  • Fazzi, Alberto
  • Varoli, Vincenzo Antonio

Abrégé

A portable radiation detection device with a detector unit comprising a scintillator with an array of avalanche photodiodes allows to reliably detect incident ionizing radiation or radiation contamination in the presence of intense magnetic fields of 0.1 Tesla and above.

Classes IPC  ?

  • G01T 1/208 - Circuits spécialement adaptés aux détecteurs à scintillation, p. ex. à l'élément photomultiplicateur
  • G01T 1/20 - Mesure de l'intensité de radiation avec des détecteurs à scintillation

18.

CONTINUOUSLY TRANSPOSED CONDUCTING CABLE

      
Numéro d'application EP2016068467
Numéro de publication 2017/021423
Statut Délivré - en vigueur
Date de dépôt 2016-08-02
Date de publication 2017-02-09
Propriétaire CERN EUROPEAN ORGANISATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Kirby, Glyn
  • Murtomaki, Jaakko Samuel
  • Van Nugteren, Jeroen

Abrégé

A conducting cable comprises a series of continuously transposed tapes of electrically conductive material and restraining members braided with the tapes. The restraining members are arranged to restrain the tapes in a lateral direction to resist movement between the respective tapes and restrain the position of the respective tapes.

Classes IPC  ?

  • H01B 12/02 - Conducteurs, câbles ou lignes de transmission supraconducteurs ou hyperconducteurs caractérisés par leurs formes

19.

PARTICLE DETECTOR WITH FAST TIMING AND HIGH RATE CAPABILITY

      
Numéro d'application EP2015080873
Numéro de publication 2016/102511
Statut Délivré - en vigueur
Date de dépôt 2015-12-21
Date de publication 2016-06-30
Propriétaire CERN EUROPEAN ORGANISATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Maggi, Marcello
  • Oliveira, Rui De
  • Sharma, Archana

Abrégé

An avalanche particle detector assembly comprises, a cover resistive layer (7), a first readout layer (20) comprising a plurality of readout means and two or more detection layers (8) located between said resistive cover layer and said first readout layer (20). Each detection layer comprises a drift layer (9) and an amplification layer (10). The amplification layer (10) consists of only electrically resistive material and comprises a first dielectric layer (12), wherein the readout layer is capacitively coupled to the amplification layer of the or each detection layers.

Classes IPC  ?

  • G01T 1/185 - Mesure de l'intensité de radiation avec des aménagements de chambre d'ionisation

20.

CLOSED CYCLE CRYOGEN RECIRCULATION SYSTEM AND METHOD

      
Numéro d'application EP2015079195
Numéro de publication 2016/091990
Statut Délivré - en vigueur
Date de dépôt 2015-12-10
Date de publication 2016-06-16
Propriétaire CERN EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Haug, Friedrich
  • Berkowitz, Daniel

Abrégé

There is provided refrigeration system (1) and method for remote cooling of a thermal load having a first portion (27)and a second portion (25). The system comprises a cold source (4) having a first cooling stage (5) and a second cooling stage (6), the temperature of the first cooling stage being higher than the temperature of the second cooling stage. The system also comprises a cryogen circuit for circulation of a cryogen flow in a closed cycle, the closed cycle being thermally coupled to the cold source. The system further comprises a compressor (7) for compressing and circulating the cryogen flow in the cryogen circuit. The cryogen circuit comprises a first conduit for thermally connecting the first cooling stage of the cold source to the first portion of the thermal load so as to cool said first portion towards the temperature of the first cooling stage, and a second conduit for thermally connecting the second cooling stage of the cold source to the second portion of the thermal load so as to cool said second portion towards the temperature of the second cooling stage. The cryogen flow in the system is a sub- cooled or saturated liquid, two phase, saturated or overheated, supercritical gas helium flow.

Classes IPC  ?

  • F25B 9/14 - Machines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé caractérisés par le cycle utilisé, p. ex. cycle de Stirling
  • F25B 9/02 - Machines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé utilisant l'effet Joule-ThompsonMachines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé utilisant l'effet vortex
  • F25B 9/00 - Machines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé
  • F25B 9/10 - Machines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé avec plusieurs étages de refroidissement
  • F25B 41/04 - Disposition des soupapes

21.

AC-current induced quench protection system

      
Numéro d'application 14900856
Numéro de brevet 10069294
Statut Délivré - en vigueur
Date de dépôt 2014-06-26
Date de la première publication 2016-06-02
Date d'octroi 2018-09-04
Propriétaire CERN—EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Kirby, Glyn Alistair
  • Datskov, Vladimir
  • Ravaioli, Emmanuele

Abrégé

An apparatus (100) for quenching at least part (110) of a superconductor in a superconducting state in reply to a quench signal to initiate a transition from the superconducting state into a normal-conducting state comprises: means (120) for providing an alternating (AC) current of a predetermined strength and/or predetermined frequency to the at least part (110) of the superconductor, wherein the means (120) for providing the AC current comprises a control terminal (130) configured to receive the quench signal. The means (120) for providing the AC current is configured to be activated in response of receiving the quench signal at the control terminal (130) so that the AC current flows through the at least part (110) of the superconductor, wherein the predetermined strength and/or the predetermined frequency is selected such that the transition from the superconducting state into a normal-conducting state is triggered.

Classes IPC  ?

  • H02H 7/00 - Circuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail
  • H01F 6/02 - Étouffement de la supraconductivitéDispositions pour la protection lors de la phase de transition vers l'état de conductivité normale

22.

Detector configuration with semiconductor photomultiplier strips and differential readout

      
Numéro d'application 14889309
Numéro de brevet 09778378
Statut Délivré - en vigueur
Date de dépôt 2013-05-07
Date de la première publication 2016-04-07
Date d'octroi 2017-10-03
Propriétaire
  • CERN EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • ISTITUTO NAZIONALE DI FISICA NUCLEARE (Italie)
Inventeur(s) Williams, Crispin

Abrégé

A detector configuration that combines a plurality of elongated semiconductor photo-multiplier sensor strips coupled to a scintillator crystal block with a differential readout that will enhance the time resolution. This is permitted due to a reduction of electronic noise due to reduced cross talk and noise in the ground. In addition, the dead area is minimized and thus the efficiency of the photodetector is enhanced.

Classes IPC  ?

  • G01T 1/20 - Mesure de l'intensité de radiation avec des détecteurs à scintillation
  • G01T 1/202 - Mesure de l'intensité de radiation avec des détecteurs à scintillation le détecteur étant du cristal
  • G01T 1/29 - Mesure effectuée sur des faisceaux de radiations, p. ex. sur la position ou la section du faisceauMesure de la distribution spatiale de radiations
  • G01T 1/24 - Mesure de l'intensité de radiation avec des détecteurs à semi-conducteurs

23.

HIGH FREQUENCY COMPACT LOW-ENERGY LINEAR ACCELERATOR DESIGN

      
Numéro d'application EP2014067512
Numéro de publication 2016/023597
Statut Délivré - en vigueur
Date de dépôt 2014-08-15
Date de publication 2016-02-18
Propriétaire CERN EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Lombardi, Alessandra
  • Vretenar, Maurizio
  • Mathot, Serge
  • Grudiev, Alexej

Abrégé

A compact radio-frequency quadrupole 'RFQ' accelerator for accelerating charged particles, the RFQ accelerator comprising: a bunching section configured to have a narrow radio-frequency 'rf' acceptance such that only a portion of a particle beam incident on the bunching section is captured, and wherein the bunching section bunches the portion of the particle beam; an accelerating section for accelerating the bunched portion of the particle beam to an output energy; and, a means for supplying radio-frequency power.

Classes IPC  ?

  • H05H 7/18 - CavitésRésonateurs
  • H05H 9/04 - Accélérateurs linéaires à ondes stationnaires

24.

PORTABLE RADIATION DETECTION DEVICE FOR OPERATION IN INTENSE MAGNETIC FIELDS

      
Numéro d'application EP2015060371
Numéro de publication 2015/180952
Statut Délivré - en vigueur
Date de dépôt 2015-05-11
Date de publication 2015-12-03
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • POLITECNICO DI MILANO (Italie)
Inventeur(s)
  • Silari, Marco
  • Fazzi, Alberto
  • Varoli, Vincenzo Antonio

Abrégé

A portable radiation detection device with a detector unit comprising a scintillator with an array of avalanche photodiodes allows to reliably detect incident ionizing radiation or radiation contamination in the presence of intense magnetic fields of 0.1 Tesla and above.

Classes IPC  ?

  • G01T 1/20 - Mesure de l'intensité de radiation avec des détecteurs à scintillation
  • G01T 1/208 - Circuits spécialement adaptés aux détecteurs à scintillation, p. ex. à l'élément photomultiplicateur

25.

A MOLYBDENUM CARBIDE / CARBON COMPOSITE AND MANUFACTURING METHOD

      
Numéro d'application EP2013072818
Numéro de publication 2015/062657
Statut Délivré - en vigueur
Date de dépôt 2013-10-31
Date de publication 2015-05-07
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • BREVETTI BIZZ S.R.L. (Italie)
Inventeur(s)
  • Bertarelli, Alessandro
  • Bizzarro, Stefano

Abrégé

A composite material comprising molybdenum carbide, graphite and carbon fibers combines a very high thermal conductivity with a low coefficient of thermal extension, high service temperature, good mechanical properties and high electrical conductivity. These materials may be obtained from high-temperature sintering of variable proportions of molybdenum powders and ceramic materials such as graphite, carbon fibers, silicon, silicon carbide, or tungsten.

Classes IPC  ?

  • C04B 35/52 - Produits céramiques mis en forme, caractérisés par leur compositionCompositions céramiquesTraitement de poudres de composés inorganiques préalablement à la fabrication de produits céramiques à base de non oxydes à base de carbone, p. ex. graphite
  • C04B 35/56 - Produits céramiques mis en forme, caractérisés par leur compositionCompositions céramiquesTraitement de poudres de composés inorganiques préalablement à la fabrication de produits céramiques à base de non oxydes à base de carbures
  • C04B 35/645 - Frittage sous pression
  • C04B 35/65 - Frittage par réaction de compositions contenant un métal libre ou du silicium libre
  • C04B 35/80 - Fibres, filaments, "whiskers", paillettes ou analogues
  • C04B 35/83 - Fibres de carbone dans une matrice carbonée

26.

A DETECTOR AND METHOD FOR DETECTING ULTRAVIOLET RADIATION

      
Numéro d'application EP2013002274
Numéro de publication 2015/014378
Statut Délivré - en vigueur
Date de dépôt 2013-07-31
Date de publication 2015-02-05
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Breuil, Philippe
  • Peskov, Vladimir
  • Martinengo, Paolo

Abrégé

An electron filtering layer placed on a photocathode of a UV light detector allows to selectively filter out electrons generated from a photoconversion of long wavelengths. The filter may be tuned by selecting the material and the thickness of the electron filtering layer. By means of the filtering layer, background noise due to visible parts of the spectrum may be efficiently suppressed. Applications of the invention include a solar-blind flame and/or smoke detector.

Classes IPC  ?

  • H01J 1/34 - Cathodes photo-émissives
  • G01T 1/185 - Mesure de l'intensité de radiation avec des aménagements de chambre d'ionisation
  • G08B 17/12 - Déclenchement par la présence de rayonnement ou de particules, p. ex. de rayonnement infrarouge ou d'ions
  • H01J 1/78 - Écrans photo-électriquesÉcrans d'accumulation de charges
  • H01J 29/38 - Écrans photo-électriquesÉcrans à accumulation de charge n'utilisant pas l'accumulation de charge, p. ex. écrans photo-émissifs ou photocathodes
  • H01J 31/49 - Tubes capteurs adaptés pour un rayonnement électromagnétique d'entrée autre que la lumière visible et possédant une sortie électrique, p. ex. pour des rayons X ou un rayonnement infrarouge d'entrée
  • H01J 40/16 - Tubes à décharge photo-électrique n'impliquant pas l'ionisation d'un gaz à cathode photo-émissive, p. ex. cellule photo-électrique alcaline
  • H01J 47/02 - Chambres d'ionisation

27.

AC-CURRENT INDUCED QUENCH PROTECTION SYSTEM

      
Numéro d'application EP2014063575
Numéro de publication 2014/207130
Statut Délivré - en vigueur
Date de dépôt 2014-06-26
Date de publication 2014-12-31
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Kirby, Glyn Alistair
  • Datskov, Vladimir
  • Ravaioli, Emmanuele

Abrégé

An apparatus (100) for quenching at least part (110) of a superconductor in a superconducting state in reply to a quench signal to initiate a transition from the superconducting state into a normal-conducting state comprises: means (120) for providing an alternating (AC) current of a predetermined strength and/or predetermined frequency to the at least part (110) of the superconductor, wherein the means (120) for providing the AC current comprises a control terminal (130) configured to receive the quench signal. The means (120) for providing the AC current is configured to be activated in response of receiving the quench signal at the control terminal (130) so that the AC current flows through the at least part (110) of the superconductor, wherein the predetermined strength and/or the predetermined frequency is selected such that the transition from the superconducting state into a normal- conducting state is triggered.

Classes IPC  ?

  • H01F 6/02 - Étouffement de la supraconductivitéDispositions pour la protection lors de la phase de transition vers l'état de conductivité normale

28.

A DETECTOR CONFIGURATION WITH SEMICONDUCTOR PHOTOMULTIPLIER STRIPS AND DIFFERENTIAL READOUT

      
Numéro d'application EP2013001360
Numéro de publication 2014/180487
Statut Délivré - en vigueur
Date de dépôt 2013-05-07
Date de publication 2014-11-13
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • ISTITUTO NAZIONALE DI FISICA NUCLEARE (Italie)
Inventeur(s) Williams, Crispin

Abrégé

A detector configuration that combines a plurality of elongated semiconductor photo- multiplier sensor strips coupled to a scintillator crystal block with a differential readout that will enhance the time resolution. This is permitted due to a reduction of electronic noise due to reduced cross talk and noise in the ground. In addition, the dead area is minimized and thus the efficiency of the photodetector is enhanced.

Classes IPC  ?

  • G01T 1/208 - Circuits spécialement adaptés aux détecteurs à scintillation, p. ex. à l'élément photomultiplicateur

29.

APPARATUS AND METHOD FOR DETERMINING A DOSE OF IONIZING RADIATION

      
Numéro d'application EP2014055783
Numéro de publication 2014/161732
Statut Délivré - en vigueur
Date de dépôt 2014-03-24
Date de publication 2014-10-09
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Vincke, Helmut
  • Trummer, Julia

Abrégé

An apparatus for determining a dose of ionizing radiation absorbed by a dosimeter (105) comprises a holder (110) for holding said dosimeter (105); a first light source (120), a second light source (130) and a measurement unit (140a, 140b). The first light source (120) irradiates a first light (121) on said dosimeter (105) when held by said holder (110). The second light source (130) irradiates a second light (131) on said dosimeter (105) when held by said holder (110) to excite radio photo luminescence centers in said dosimeter (105). The measurement unit (140a, 140b) is configured to measure a photo luminescence light (141) from said excited radio photoluminescence centers and to measure a transmission light (142) related to said first light (121) after passing said dosimeter (105), wherein said measurement unit (140) is further configured to determine said dose based on said measured photoluminescence light (141) and on said measured transmission light (142).

Classes IPC  ?

30.

A WALL-LESS ELECTRON MULTIPLIER ASSEMBLY

      
Numéro d'application EP2013000887
Numéro de publication 2014/146673
Statut Délivré - en vigueur
Date de dépôt 2013-03-22
Date de publication 2014-09-25
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Peskov, Vladimir
  • Di Mauro, Antonio
  • De Oliveira, Rui
  • Breuil, Philippe

Abrégé

An electron multiplier assembly comprises a first electrode plate supported on a second electrode plate by a means of plurality of spacers. Through-holes are formed in the first electrode plate and in the second electrode plate and are carefully aligned so to form amplification channels in the gap between the first electrode plate and the second electrode plate. The amplification channels allow to convert primary electrons into an avalanche of electrons that may be detected with suitable readout means. The detector structure is wall-less in the sense that neighboring amplification channels are not separated by walls, which allows to reduce leakage currents and to provide a detector that can be used with a plurality of detector gases or even in humid ambient air.

Classes IPC  ?

  • H01J 43/24 - Dynodes à gradient de potentiel le long de leurs surfaces

31.

RAPID BELLOWS COMPRESSION AND EXPANSION TOOL AND METHOD

      
Numéro d'application EP2013063519
Numéro de publication 2014/023473
Statut Délivré - en vigueur
Date de dépôt 2013-06-27
Date de publication 2014-02-13
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) Rambeau, Herve

Abrégé

A rapid bellows compression and/or expansion tool (0) comprises a plurality of adjusting means (28) that allow to adjust an axial distance between a first engaging member (14) adapted to engage a bellows at a first portion thereof, and a second engaging member (16) adapted to engage said bellows at a second opposing portion thereof. Transfer means (34) are provided to mechanically coupling the plurality of adjusting means (28), thereby providing for a uniform and synchronous bellows compression and/or expansion.

Classes IPC  ?

  • B25B 27/28 - Outils à main ou outillage d'établi, spécialement conçus pour assembler ou séparer des pièces ou des objets, que cela entraîne ou non une certaine déformation, non prévus ailleurs pour assembler des objets autrement que par ajustage à la presse, ou pour les détacher pour mettre en place ou extraire des douilles élastiques ou des éléments analogues
  • B23Q 5/40 - Avance par transmission mécanique des autres organes supportant les outils ou les pièces, p. ex. avance des traînards, des glissières d'outils à avance continue par un arbre, p. ex. une vis-mère
  • F16L 15/02 - Raccords avec filetageFormes des filetages pour ces raccords permettant un réglage sensiblement longitudinal par emploi d'une partie à long filetage

32.

CRYOGENIC COOLING PUMP AND METHOD

      
Numéro d'application EP2013001303
Numéro de publication 2013/178315
Statut Délivré - en vigueur
Date de dépôt 2013-05-02
Date de publication 2013-12-05
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Haug, Friedrich
  • Schmid, Jonas

Abrégé

A pump (10) for circulating a cryogenic coolant, comprising: a cylinder housing (14); a piston (16) received in said cylinder housing (14) for reciprocating in said cylinder housing (14) between a first death center position (18) and a second death center position (20), said first death center position (18) and said second death center position (20) defining a compression chamber (22) therebetween; an outlet (34) for said compression chamber (22); and an inlet (36) formed in a wall (24) of said cylinder housing (14) at a position between said first death center position (18) and said second death center position (20); wherein said inlet (36) is adapted to establish a fluid connection between said compression chamber (22) and a coolant reservoir (40; 76).

Classes IPC  ?

  • F04B 15/08 - Pompes adaptées pour travailler avec des fluides particuliers, p. ex. grâce à l'emploi de matériaux spécifiés pour la pompe elle-même ou certaines de ses parties avec des liquides près de leur point d'ébullition, p. ex. à une pression anormalement basse les liquides ayant une température d'ébullition peu élevée
  • F04B 7/04 - "Machines" ou pompes à piston caractérisées par un entraînement desmodromique des organes du mécanisme de distribution dans lesquels le mécanisme de distribution est réalisé par pistons et cylindres agissant en conjugaison pour ouvrir et fermer les orifices d'aspiration ou de refoulement

33.

MICROFABRICATED SCINTILLATION DETECTOR

      
Numéro d'application EP2012001980
Numéro de publication 2013/167151
Statut Délivré - en vigueur
Date de dépôt 2012-05-08
Date de publication 2013-11-14
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Mapelli, Alessandro
  • Maoddi, Pietro
  • Renaud, Philippe

Abrégé

The present invention discloses a microfabricated scintillation detector, comprising a channel structure (26) for containing a liquid scintillator material therein and flowing said liquid scintillator material therethrough. The channel structure (26) comprises first and second sets (30, 36) of adjacent channel portions (32, 38) arranged in first and second layers (34, 40) and in fluid communication with each other. The second set (36) of adjacent channel portions (38) is directed at right angles with respect to the first set (30) of adjacent channel portions (32). The first and second layers (34, 40) are stacked on top of each other with a separation layer (42) in between, integrally connecting said first and second layers (34, 40). The channel structure (26) simultaneously forms a light guiding structure for guiding scintillation light (52) towards a longitudinal end of the corresponding channel portion (32, 38). The scintillation detector (24) further comprises a plurality of photo detectors (54), arranged such as to receive said scintillation light (50).

Classes IPC  ?

  • G01T 5/08 - Chambres de scintillation
  • G01T 1/20 - Mesure de l'intensité de radiation avec des détecteurs à scintillation

34.

INDICO

      
Numéro de série 86053935
Statut Enregistrée
Date de dépôt 2013-09-03
Date d'enregistrement 2016-06-28
Propriétaire CERN - European Organization for Nuclear Research (Suisse)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 41 - Éducation, divertissements, activités sportives et culturelles
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception

Produits et services

Event management computer software for planning, arranging, conducting, and archiving cultural, scientific or educational events, congresses, workshops, conferences, video conferences, trade fairs and exhibitions with regard to management of invitations, registrations, schedule information, and content Entertainment information; organizing community sporting and cultural events; planning, arranging, and conducting cultural events, congresses, conferences, video conferences, trade fairs, and exhibitions for cultural, scientific, and educational purposes; planning, arranging, and conducting workshops in the field of science Design and development of computer software; updating of computer software design; design of custom software packages comprised of a set of computer programs; installation of computer software; all aforementioned services relating to software and computer programs for planning, arranging, conducting, and archiving cultural, scientific or educational events, congresses, workshops, conferences, video conferences, trade fairs, and exhibitions with regard to management of invitations, registrations, schedule information, and content; providing temporary use of on-line non-downloadable software for planning, arranging, conducting, and archiving cultural, scientific or educational events, congresses, workshops, conferences, video conferences, trade fairs, and exhibitions with regard to management of invitations, registrations, schedule information, and content; electronic storage services for archiving electronic data relating to cultural events, congresses, conferences, video conferences, trade fairs, and exhibitions for cultural, scientific, and educational purposes in the field of science

35.

ZENODO

      
Numéro de série 86053957
Statut Enregistrée
Date de dépôt 2013-09-03
Date d'enregistrement 2015-07-28
Propriétaire CERN - European Organization for Nuclear Research (Suisse)
Classes de Nice  ?
  • 38 - Services de télécommunications
  • 09 - Appareils et instruments scientifiques et électriques
  • 41 - Éducation, divertissements, activités sportives et culturelles

Produits et services

Providing access to websites on the Internet; Providing access to data networks, namely, to the Internet, to Internet forums, to the global Internet network and to servers; Electronic transmission of data and documents by computer; Data transmission via the global computer network; Providing access to an Internet portal with commercial content in the fields of science, medicine, history, literature, and linguistics Electronic publications, namely, books, magazines, newsletters, newspapers, brochures, and manuals; electronic publications in the form of e-books and electronic multimedia files containing texts; all aforementioned goods relating to educational and informational topics, namely, science, medicine, history, literature, and linguistics which are downloadable from online databases or from the Internet Educational and entertainment services, namely, publishing electronic publications; providing non-downloadable electronic publications, namely, e-books in the field of science, medicine, history, literature, and linguistics via global computer network or internet; publication of books, printed material and texts; online libraries and in particular providing electronic library services relating to books, magazines, photographs and images via a computerized network; Library services provided by means of a computerized database containing information extracted from books, newspapers, magazines

36.

METHOD AND SYSTEM FOR COMPRESSING A DATA ARRAY WITH PROJECTIONS

      
Numéro d'application EP2011005885
Numéro de publication 2013/075728
Statut Délivré - en vigueur
Date de dépôt 2011-11-22
Date de publication 2013-05-30
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • UNIVERSITÀ DEGLI STUDI DI PADOVA (Italie)
Inventeur(s)
  • Giubilato, Piero
  • Snoeys, Walter

Abrégé

A projective compression scheme for an n-dimensional data array makes use of at least n + 1 compression maps in order to maximize the ability to resolve ambiguities. The invention also relates to hardware implementations of the projective compression scheme, and in particular to front end circuits that allow for a compressive readout.

Classes IPC  ?

  • G06T 11/00 - Génération d'images bidimensionnelles [2D]
  • G06F 3/047 - Numériseurs, p. ex. pour des écrans ou des pavés tactiles, caractérisés par les moyens de transduction utilisant un ensemble de fils conducteurs, p. ex. des fils conducteurs croisés
  • H04N 5/378 - Circuits de lecture, p.ex. circuits d’échantillonnage double corrélé [CDS], amplificateurs de sortie ou convertisseurs A/N
  • H01L 27/146 - Structures de capteurs d'images
  • G01T 1/24 - Mesure de l'intensité de radiation avec des détecteurs à semi-conducteurs

37.

A SINGLE LAYER 3D TRACKING SEMICONDUCTOR DETECTOR

      
Numéro d'application EP2011004733
Numéro de publication 2013/041114
Statut Délivré - en vigueur
Date de dépôt 2011-09-21
Date de publication 2013-03-28
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • FRIEDRICH-ALEXANDER-UNIVERSITÄT ERLANGEN-NUERNBERG (Allemagne)
  • CZECH TECHNICAL UNIVERSITY IN PRAGUE INSTITUTE OF EXPERIMENTAL AND APPLIED PHYSICS (République tchèque)
Inventeur(s)
  • Campbell, Michael
  • Michel, Thilo
  • Jakubek, Jan

Abrégé

The present invention relates to a pixel detector (10), comprising a semiconductor sensor layer (12), in which charges can be generated upon interaction with particles to be detected. The semiconductor layer defines an X-Y-plane and has a thickness extending in Z-direction. The detector further comprises a read-out electronics layer (14) connected to said semiconductor layer (12), said read-out electronics layer (14) comprising an array of read-out circuits (20) for detecting signals indicative of charges generated in a corresponding volume of said semiconductor sensor layer (12). The neighbouring read-out circuits (20) are connected by a relative timing circuit configured to determine time difference information between signals detected at said neighbouring read-out circuits (20). The time difference information is indicative of a difference in the Z-components of the locations of charge generations in the corresponding neighbouring sensor volumes caused by a particle trajectory that is inclined with respect to the X-Y-plane.

Classes IPC  ?

  • G01T 1/24 - Mesure de l'intensité de radiation avec des détecteurs à semi-conducteurs
  • G01T 1/29 - Mesure effectuée sur des faisceaux de radiations, p. ex. sur la position ou la section du faisceauMesure de la distribution spatiale de radiations
  • H01L 27/146 - Structures de capteurs d'images

38.

COMPACT COOLING SYSTEM AND METHOD FOR ACCURATE TEMPERATURE CONTROL

      
Numéro d'application EP2011004557
Numéro de publication 2013/034170
Statut Délivré - en vigueur
Date de dépôt 2011-09-09
Date de publication 2013-03-14
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • NIKHEF (Pays‑Bas)
Inventeur(s) Bart, Verlaat

Abrégé

In an integrated two-phase accumulator controlled loop cooling system, the pumped refrigerant is employed to cool the supply of refrigerant in the accumulator vessel. No external cooling of the accumulator vessel is required, and a standard heater in the accumulator is sufficient to regulate the boiling pressure. This allows to provide a cooling system in which sub-cooling in the pump is guaranteed by the laws of nature, and which is hence more reliable, structurally simpler, better to control and cheaper.

Classes IPC  ?

  • F25B 23/00 - Machines, installations ou systèmes ayant un seul principe de fonctionnement non compris dans les groupes , p. ex. utilisant l'effet de radiation sélective

39.

DETECTOR-READOUT INTERFACE FOR AN AVALANCHE PARTICLE DETECTOR

      
Numéro d'application EP2012003429
Numéro de publication 2013/029748
Statut Délivré - en vigueur
Date de dépôt 2012-08-10
Date de publication 2013-03-07
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • CEA (France)
Inventeur(s)
  • De Oliveira, Rui
  • Giomataris, Loannis

Abrégé

A detector-readout interface for an avalanche particle detector comprises a resistive layer formed at a bottom side of a gas chamber and a dielectric layer formed under said resistive layer and is adapted for capacitive coupling to an external readout board. This provides a modular detector configuration in which the readout card and detector core can be combined freely and interchangeably. The readout board can even be removed or replaced without switching off the detector. At the same time, the configuration provides an effective protection against sparks and discharges, and in particular obliviates the need for additional protecting circuits. The configuration may be employed in any avalanche particle detector, such as the MicroMegas or GEM detectors.

Classes IPC  ?

  • G01T 1/29 - Mesure effectuée sur des faisceaux de radiations, p. ex. sur la position ou la section du faisceauMesure de la distribution spatiale de radiations
  • H01J 47/02 - Chambres d'ionisation

40.

HIGH POWER HIGH FREQUENCY LOADS FOR ENERGY RECOVERY

      
Numéro d'application EP2012003613
Numéro de publication 2013/029781
Statut Délivré - en vigueur
Date de dépôt 2012-08-28
Date de publication 2013-03-07
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Federmann, Silke
  • Caspers, Fritz
  • Betz, Michael

Abrégé

A radio frequency load (100) for absorbing a radio frequency wave having a frequency in a predetermined frequency band and a wavelength λ comprises a waveguide (110;210) with a portion having an opening (112) for said radio frequency wave. In addition, the radio frequency load (100) comprises at least one metal rod (120) provided in said waveguide (110; 210), said at least one metal rod (120) having a length of one-half of said wavelength λ to damp said radio frequency wave.

Classes IPC  ?

  • H01P 1/26 - Charges dispersives branchées à l'extrémité de lignes de transmission
  • H01P 1/28 - Pistons de court-circuit
  • H01R 13/00 - Détails de dispositifs de couplage des types couverts par les groupes ou

41.

A SYSTEM AND METHOD FOR POSITIONING AND FIXING OBJECTS RELATIVE TO EACH OTHER

      
Numéro d'application EP2011000761
Numéro de publication 2012/110056
Statut Délivré - en vigueur
Date de dépôt 2011-02-17
Date de publication 2012-08-23
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) Ijspeert, Albert, Jan

Abrégé

Disclosed herein is a system (32) and method for positioning and fixing a number of objects (34, 36) relative to each other. The system (32) comprises a stack of lamellae (38), each lamella having a number of pockets (44, 40) for receiving said objects (34, 36). At least some of the pockets (40, 44) are dimensioned such as to loosely receive the corresponding object (34, 36) without applying a substantive clamping force to the object. The relative position of at least some of the pockets in one subset of lamellae as oriented in the stack deviate from the relative positions of the same pockets in another subset of the lamellae (38), such that the clamping force is generated between the objects (34, 36) and the stack of lamellae (38) when the objects (34, 36) are simultaneously inserted in the corresponding pockets (40, 44) of all lamellae (38) of the stack of lamellae (38).

Classes IPC  ?

  • H02K 1/28 - Moyens de montage ou de fixation des parties magnétiques tournantes sur ou aux structures constituant le rotor
  • H02K 1/27 - Noyaux rotoriques à aimants permanents

42.

Method, apparatus and computer program for measuring the dose, dose rate or composition of radiation

      
Numéro d'application 13113521
Numéro de brevet 08168953
Statut Délivré - en vigueur
Date de dépôt 2011-05-23
Date de la première publication 2012-01-12
Date d'octroi 2012-05-01
Propriétaire
  • CERN-European Organization for Nuclear Research (Suisse)
  • Czech Technical University of Prague (République tchèque)
Inventeur(s)
  • Heijne, Erik Henricus M.
  • Pospisil, Stanislav

Abrégé

A method and an apparatus for measuring the dose, the dose rate and/or the composition of radiation is disclosed. In the method, a detector means is exposed to a radiation environment, the detector means comprising an array of radiation sensing detector elements. The detector means is switched in a sensitive state for the duration of a sensitive time period, and during said sensitive time period, an interaction pattern generated by individual radiation quanta interacting with one or more of the detector elements is recorded. The duration of the sensitive time period can be precisely adapted to the intensity of the radiation that has to be recorded. The interaction pattern is analyzed to distinguish individual radiation quanta received during the sensitive time period, and a radiation category is assigned to each of the distinguished radiation quanta based on its corresponding interaction pattern. A dose, a dose rate and/or a composition of radiation is then computed from the detected and categorized radiation quanta. Weight factors are attributed to each radiation category to take into account the individual degree of damage which the corresponding category can inflict in the irradiated materials.

Classes IPC  ?

43.

MOUNTING MECHANISM

      
Numéro d'application EP2010003031
Numéro de publication 2011/144222
Statut Délivré - en vigueur
Date de dépôt 2010-05-18
Date de publication 2011-11-24
Propriétaire CERN-EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Ramberger, Suitbert
  • Bourquin, Pierre
  • Cuvet, Yves
  • Vretenar, Maurizio

Abrégé

Disclosed herein is a mounting mechanism such as a drift tube mounting mechanism for mounting a drift tube provided in a drift tube accelerator vessel 10 via an elongate holding element 14. The mounting mechanism comprises a biasing mechanism comprising one or more disc spring members 46 for axially biasing the elongate holding element 14 with respect to the vessel towards a mounting position. The mounting mechanism further comprises a screw 58 having a head portion 60 and a shaft portion, said shaft portion comprising a threaded portion 64 for screwing into the elongate holding element 14. The mounting mechanism further comprises a bushing 66 comprising a sleeve portion 68 receiving at least a part of the screw shaft and separating the one or more disc spring members 46 from said screw shaft portion. The screw head portion 60 is configured to receive the axial biasing force generated by the one or more disc spring members 46.

Classes IPC  ?

  • H05H 7/22 - Détails d'accélérateurs linéaires, p. ex. tubes de glissement
  • F16B 5/00 - Jonction de feuilles ou de plaques soit entre elles soit à des bandes ou barres parallèles à elles
  • F16B 31/04 - Assemblages à vis spécialement modifiés en vue de résister à une charge de tractionBoulons de rupture maintenant constante la charge de traction
  • F16B 43/00 - Rondelles ou dispositifs équivalentsAutres dispositifs de support pour têtes de boulons ou d'écrous

44.

CAPACITIVE SPREADING READOUT BOARD

      
Numéro d'application EP2009007945
Numéro de publication 2011/054365
Statut Délivré - en vigueur
Date de dépôt 2009-11-05
Date de publication 2011-05-12
Propriétaire CERN-EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) De Oliveira, Rui

Abrégé

A readout board for use in a micropattern gas detector comprises a plurality of detector pads arranged into a plurality of consecutive layers that are separated by dielectric spacer material. An electron cloud hitting the front side of the readout board will induce a charge on one of the detector pads of the uppermost layer. By capacitive coupling, the signal will propagate downwards through the consecutive layers until it reaches the bottom layer, from which the charges are read out and analyzed. The position of the impact can be determined by comparing the charges that have spread to neighboring readout pads. Since only the bottommost layer of the readout pads needs to be connected to readout electronics, incident particles can be localized at high precision despite the relatively large size of the readout pads in the bottom layer. The invention is effective both in a gas electron multiplier (GEM) and in a MicroMegas detector.

Classes IPC  ?

  • G01T 1/29 - Mesure effectuée sur des faisceaux de radiations, p. ex. sur la position ou la section du faisceauMesure de la distribution spatiale de radiations
  • G01T 1/185 - Mesure de l'intensité de radiation avec des aménagements de chambre d'ionisation

45.

METHOD FOR FABRICATING AN AMPLIFICATION GAP OF AN AVALANCHE PARTICLE DETECTOR

      
Numéro d'application EP2010005729
Numéro de publication 2011/050884
Statut Délivré - en vigueur
Date de dépôt 2010-09-17
Date de publication 2011-05-05
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • CEA (France)
Inventeur(s)
  • Giomataris, Ioannis
  • De Oliveira, Rui

Abrégé

The invention relates to an improved method for fabricating the amplification gap of an avalanche particle detector in which two parallel electrodes are spaced apart by dielectric spacer elements. A foil including a bulk layer made of dielectric material sandwiched by two mutually parallel metallic electrodes is provided, and holes are formed in one of the metallic layers by means of photolithography. The amplification gap is then formed in the bulk layer by means of carefully controlled etching of the bulk material through the holes formed in one of the metallic layers. The invention not only provides a simplified fabrication process, but also results in a detector with enhanced spatial and energy resolution.

Classes IPC  ?

46.

PROTECTED READOUT ELECTRODE ASSEMBLY

      
Numéro d'application EP2009000995
Numéro de publication 2010/091695
Statut Délivré - en vigueur
Date de dépôt 2009-02-12
Date de publication 2010-08-19
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) De Oliveira, Rui

Abrégé

The readout electrode assembly of an avalanche particle detector can be effectively protected against sparks and discharges by means of a plurality of resistor pads formed in a dielectric cover layer above the readout pads. The resistor pads may either be connected directly to the readout pads, or may be coupled capacitively by means of a charge spreading pad embedded into the dielectric cover layer and spatially separated from the readout pads. The charge spreading pad allows the distribution of charges to neighboring readout pads, and may hence increase the spatial resolution of the detector device.

Classes IPC  ?

  • G01T 1/185 - Mesure de l'intensité de radiation avec des aménagements de chambre d'ionisation

47.

REDUCTION OF MULTIPACTING BY MEANS OF SPATIALLY VARYING MAGNETIZATION

      
Numéro d'application EP2008008934
Numéro de publication 2010/045955
Statut Délivré - en vigueur
Date de dépôt 2008-10-22
Date de publication 2010-04-29
Propriétaire CERN-EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s) Caspers, Fritz

Abrégé

The present invention discloses an apparatus comprising an enclosure (10) suitable for forming a vacuum therein and means for at least partially suppressing the multipacting effect when a RF or microwave electromagnetic field is generated in said vacuum. In the apparatus, the means for at least partially suppressing the multipacting effect comprises means (12) for passively generating a locally varying magnetic field (16) in the vicinity of at least a portion of the inner surface of said enclosure.

Classes IPC  ?

  • H01J 19/57 - EnceintesRécipientsBlindages associés pourvus de revêtements sur leurs paroisEmploi de matériaux spécifiés pour les revêtements
  • H01J 23/02 - ÉlectrodesMoyens de commande magnétiquesÉcrans
  • H01P 1/201 - Filtres à ondes électromagnétiques transversales

48.

NANOSTRUCTURED TARGET FOR ISOTOPE PRODUCTION

      
Numéro d'application EP2009004406
Numéro de publication 2010/034364
Statut Délivré - en vigueur
Date de dépôt 2009-06-18
Date de publication 2010-04-01
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Stora, Thierry
  • Fernandes Da Visitacao, Sandrina
  • Mathot, Serge
  • Bowen, Paul

Abrégé

Disclosed is a target for isotope production, that comprises a porous, nanostructured material with structure elements having in at least one dimension an average size of 700 run or less, preferably 500 nm or less and most preferably 150 nm or less, said nanostructured material comprising one Of Al2O3, Y2O3 and ZrO2.

Classes IPC  ?

  • H05H 6/00 - Cibles pour la production de réactions nucléaires

49.

A METHOD OF MANUFACTURING A GAS ELECTRON MULTIPLIER

      
Numéro d'application EP2008002944
Numéro de publication 2009/127220
Statut Délivré - en vigueur
Date de dépôt 2008-04-14
Date de publication 2009-10-22
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • De Oliveira, Rui
  • Duarte Pinto, Serge

Abrégé

A method of manufacturing a gas electron multiplier is shown. The method comprises a step of preparing a blank sheet (28) comprised of an insulating sheet (12) with first and second metal layers (14, 16) on its surface, a first metal layer hole forming step in which the first metal layer is patterned by means of photolithography, such as to form holes (18) through the first metal layer, an insulating sheet hole forming step, in which the holes (18) formed in the first metal layer (14) are extended through the insulating layer (12) by etching from the first surface side only, and a second metal layer hole forming step, in which the holes (18) are extended through the second metal layer (16). In one embodiment, the second metal layer hole forming step is performed by electrochemical etching, such that the first metal layer (14) remains unaffected during etching of the second metal layer (16). In another embodiment, in the second metal layer hole forming step, the first and second metal layers (14, 16) are etched from the outside, thereby reducing the initial thicknesses of the first and second metal layers (14, 16) and the second metal layer (16) is simultaneously etched through the holes (18) in the first metal layer (14) and the insulating sheet (12), said etching being maintained until the holes (18) extend through the second metal layer, wherein said initial average thickness of the first and second metal layers (14, 16) is between 6.5 μm and 25 μm, preferably between 7.5 μm and 12 μm.

Classes IPC  ?

  • H01J 43/06 - Dispositions d'électrodes
  • 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

50.

PULSE TUBE CRYOCOOLER WITH COMPACT SIZE AND DECREASED DEAD VOLUME

      
Numéro d'application EP2007003365
Numéro de publication 2008/125139
Statut Délivré - en vigueur
Date de dépôt 2007-04-17
Date de publication 2008-10-23
Propriétaire CERN-EUROPEAN ORGANISATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Haug, Friedrich
  • Dang, Haizheng

Abrégé

The present invention relates to a pulse tube cryocooler (PTC) comprising a regenerator having a cold end (20a) and a hot end, a pulse tube (18) having a cold end (20b) and a hot end, and a reservoir (26). The hot end of the regenerator is connected or connectable with a compressor and the cold end of the regenerator (14) is in fluid communication with the cold end of the pulse tube (18). The PTC (42) comprises a reservoir-flow path (28) connecting the hot end of the pulse tube (18) and the reservoir (26) and a bypass-flow path (30) connecting the hot ends of the regenerator (14) and the pulse tube (18), wherein the reservoir-flow path (28) and the bypass-flow path (30) comprise a first and second flow restriction means (50, 54), respectively. The PTC (42) further comprises a holding structure (44) to which the hot ends of the regenerator (14) and the pulse tube (18) are mounted, wherein the bypass-flow path (30) is formed inside the bulk of the holding structure (44).

Classes IPC  ?

  • F25B 9/14 - Machines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé caractérisés par le cycle utilisé, p. ex. cycle de Stirling

51.

METHOD, APPARATUS AND COMPUTER PROGRAM FOR MEASURING THE DOSE, DOSE RATE OR COMPOSITION OF RADIATION

      
Numéro d'application EP2007002105
Numéro de publication 2008/110182
Statut Délivré - en vigueur
Date de dépôt 2007-03-09
Date de publication 2008-09-18
Propriétaire
  • CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
  • CZECH TECHNICAL UNIVERSITY OF PRAGUE (République tchèque)
Inventeur(s)
  • Heijne, Erik, Henricus, M.
  • Pospisil, Stanislav

Abrégé

A method and an apparatus for measuring the dose, the dose rate and/or the composition of radiation is disclosed. In the method, a detector means (10) is exposed to a radiation environment, the detector means (10) comprising an array of radiation sensing detector elements. The detector means (10) is switched in a sensitive state for the duration of a sensitive time period, and during said sensitive time period, an interaction pattern generated by individual radiation quanta interacting with one or more of the detector elements is recorded. The duration of the sensitive time period can be precisely adapted to the intensity of the radiation that has to be recorded. The interaction pattern is analyzed to distinguish individual radiation quanta received during the sensitive time period, and a radiation category is assigned to each of the distinguished radiation quanta based on its corresponding interaction pattern. A dose, a dose rate and/or a composition of radiation is then computed from the detected and categorized radiation quanta. Weight factors are attributed to each radiation category to take into account the individual degree of damage which the corresponding category can inflict in the irradiated materials.

Classes IPC  ?

52.

READOUT CIRCUIT FOR USE IN A COMBINED PET-CT APPARATUS

      
Numéro d'application EP2006010524
Numéro de publication 2008/040384
Statut Délivré - en vigueur
Date de dépôt 2006-11-02
Date de publication 2008-04-10
Propriétaire CERN - EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH (Suisse)
Inventeur(s)
  • Jarron, Pierre
  • Anghinolfi, Francis
  • Christiansen, Jorgen

Abrégé

The present invention discloses an apparatus for use in medical imaging, said apparatus comprising a readout circuit having an input for receiving a detection signal (80, 82) corresponding to a photon hitting a radiation detector, wherein said readout circuit is adapted to output in response to receiving said detection signal (80, 82) a pulse signal (84, 86) having a leading edge encoding a time-stamp of said photon and a width encoding the energy of said photon. A method of reading out detection signals from a radiation detector of a medical imaging apparatus is also provided.

Classes IPC  ?