Høiberg P/S
Über die Kanzlei
Høiberg wurde 1995 in Kopenhagen von Susanne Høiberg gegründet, die zuvor als Ärztin und Krebsforscherin gearbeitet hatte, bevor sie sich der Patentwelt zuwandte. Nach der Eröffnung von Büros in Aarhus (2003), Lund (2015), Stockholm (2020) und zuletzt Reykjavik (2025) ist die Kanzlei heute mit sechs Standorten in Dänemark, Schweden und Island vertreten. Ihr Selbstverständnis reicht über das klassische Patentgeschäft hinaus zu Designschutz, Markenrecht, IP-Strategie, Lizenzvereinbarungen sowie Litigation-, Nichtigkeits- und Due-Diligence-Verfahren, mit besonderem Branchenfokus auf Biotech, Pharma, Medizintechnik und Softwareentwicklung. Die Kanzlei ist Mitglied der dänischen ADIPA und der schwedischen SEPAF.
Kontaktdaten
1304 Copenhagen K
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Standorte
6Aktuelle Patente
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29.07.2026 · OneTwo Analytics AB
Dynamisches Mehrdimensionales Gesundheitsüberwachungssystem für Personalisiertes Diabetesmanagement
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Zusammenfassung
The invention relates to a system for managing diabetes care for a patient. The system includes a data acquisition module configured to collect diabetes health data, such as glucose monitoring data, electronic health records, patient-reported diabetes data, and fitness data. A score-target interval mapping module calculates health dimension scores for glucose control, cardiovascular health, and diabetes resilience and maps each score to a corresponding health target interval using dimension-specific mapping functions. An appointment management module calculates target dates based on the elapsed time since the most recent appointment and the health target intervals. The module determines appointment parameters, including a primary target date based on the triggering health dimension with the earliest target date and assigns a healthcare provider role for the follow-up care appointment. |
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15.07.2026 · Lotus Microsystems ApS
Geregelte Mehrstufige Stromrichterarchitektur
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Zusammenfassung
The present disclosure relates to a power converter comprising a first stage regulated DC-DC converter configured to convert an input DC voltage to an intermediate DC voltage; a second stage open-loop DC-DC converter configured to convert the intermediate DC voltage to an output DC voltage or an output DC current to a load; and a controller configured to control the regulated DC-DC converter to regulate the output DC voltage or the output DC current by adjusting the intermediate DC voltage, based on measurements of the output DC voltage or the output DC current and a target output DC voltage or a target output DC current. The disclosure further relates to the method of converting an input DC voltage to an output DC voltage or current using the two-stage DC-DC power converter architecture. |
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24.06.2026 · Cisma Solutions ApS
Verfahren zur Herstellung Dreidimensionaler Automobilbauteile mittels Thermoplastischem Formpressen
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Zusammenfassung
A method of production of three-dimensional components for transportation vehicles is disclosed. The method comprises the steps of: creating a base material, cutting the base material into a desired shape, heating the cut base material, and forming the heated base material into the desired three-dimensional shape by compression moulding, wherein the base material is a sandwich structure comprising a core made of a synthetic foam material arranged between two outer layers, which are made from the same synthetic material, wherein the base material is made from at least 90% by weight, such as at least 95% by weight, preferably at least 98%, most preferably 100% by weight of the same polymer material. |
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24.06.2026 · VKR Holding A/S
Verfahren zur Herstellung eines Verstärkten Fensterprofils und zur Herstellung eines Fensterrahmens
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Zusammenfassung
Herein is disclosed a method of manufacturing a profile (4), in particular a reinforced window profile (4), such as for a roof window (42), the method comprising the steps of feeding a continuous flow of a melted thermoplastic material to an extrusion die (2), feeding elongated reinforcement inserts (3) into a plurality of insertion positions of the extrusion die (2), so that a reinforced profile (4) is manufactured with the reinforcement inserts (3) extending in a longitudinal direction of the manufactured profile (4) and the reinforcement inserts (3) being partly or entirely embedded in the thermoplastic material of the manufactured profile (4), wherein the feeding of the reinforcement inserts (3) is conducted intermittently at a plurality of insertion positions of the extrusion die (2), so that consecutive reinforcement inserts (3) at a given insertion position of the extrusion die (2) are fed to the extrusion die (2) with a mutual longitudinal distance (6), wherein the mutual longitudinal distances (6) between consecutive reinforcement inserts (3) corresponding to each of said plurality of insert positions are arranged to form cutting zones (13) in the manufactured profile (4), wherein at least some of the insert positions are mutually displaced in a transversal direction (15) of the manufactured profile (4), and wherein end surfaces (16) of neighbouring reinforcement inserts (3) in said transversal direction (15) of the manufactured profile (4) are staggered in the longitudinal direction of the manufactured profile (4) so that the cutting zones (13) allow straight separating cuts (14) to be made across the manufactured profile (4) passing through the mutual longitudinal distances (6) between consecutive reinforcement inserts (3) of the manufactured profile (4) corresponding to each of said plurality of insert positions. |
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24.06.2026 · Syddansk Universitet
Magnetisches Snubber-Verfahren und System in Hochgeschwindigkeitswandlern
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Zusammenfassung
The present disclosure relates to a switching converter assembly comprising: a circuit structure; a voltage conversion portion comprising at least one high-speed switch and a power loop configured for converting an input voltage to an output voltage, wherein the power loop is arranged on a first side of the circuit structure; a magnetic snubber portion configured to suppress a voltage overshoot and a ringing time caused by distributed stray inductance in the power loop and the turning off of the high speed switch, the magnetic snubber portion comprising: a magnetic loop possessing a planar inductance connected in series to a resistive element, wherein the magnetic loop is arranged on a second side of the circuit structure or in a secondary circuit structure isolated from the circuit structure. The present disclosure further relates to methods for suppressing a voltage overshoot and a ringing time in a switching converter. |
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24.06.2026 · VKR Holding A/S
Fensterrahmen aus Verstärkten Extrudierten Profilen
Hochbau & Gebäudetechnik
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Zusammenfassung
Herein is disclosed a window frame (34, 35), such as for a roof window (42), comprising at least a top bar (19) and two side bars (17), wherein the top bar (19) is manufactured by extrusion of a profile (4) of one or more thermoplastic materials and the two side bars (17) are manufactured by extrusion of a profile (4) of one or more thermoplastic materials, wherein one or more reinforcement inserts (3) have been embedded in the thermoplastic material during the extrusion process, wherein a cross-section of the extruded profile (4)s of the two side bars (17) comprise one or more discretely arranged extruded elongated reinforcement structures (25), which each comprises a reinforcement enclosure (23) connected to an interior side (33) of an external wall (26) of the side bar (17), the external wall (26) having an interior side (33) and an exterior side (28), wherein the reinforcement enclosures (23) of the side bars (17) each partly or fully encloses a reinforcement insert (3), wherein a corner joint (21, 22) is provided between each end of the top bar (19) and one of the top ends of the two side bars (17) to form a U-shaped frame part. |
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24.06.2026 · VKR Holding A/S
Verfahren zur Herstellung eines Verstärkten Fensterprofils und zur Herstellung eines Fensterrahmens
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Zusammenfassung
Herein is disclosed a method of manufacturing a profile (4), in particular a reinforced window profile (4), such as for a roof window (42), the method comprising the steps of feeding a continuous flow of a melted thermoplastic material to an extrusion die (2), feeding elongated reinforcement inserts (3) into one or more insertion positions of the extrusion die (2), so that a reinforced profile (4) is manufactured with the reinforcement inserts (3) extending in a longitudinal direction of the manufactured profile (4) and the reinforcement inserts (3) being partly or entirely embedded in the thermoplastic material of the manufactured profile (4), wherein the feeding of the reinforcement inserts (3) is conducted intermittently, so that consecutive reinforcement inserts (3) at a given insertion position of the extrusion die (2) are fed to the extrusion die (2) with a mutual longitudinal distance (6). Furthermore is disclosed a method of producing a window frame (34, 35) using such reinforced profiles (4). |
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10.06.2026 · VKR Holding A/S
Rahmenanordnung mit einer Vakuumisolierten Glaseinheit, die mittels eines Strukturklebstoffs an einem Rahmen Befestigt Ist
Hochbau & Gebäudetechnik
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Zusammenfassung
Herein is disclosed a vacuum insulated glass (VIG) unit frame assembly (10) comprising:a rectangular VIG unit (1) comprising two glass sheets (2a, 2b) separated by a sealed gap (11) and a frame (20) comprising elongated frame profiles (20a-20d, 70) providing a frame opening (21) extending in a frame opening plane (P2),wherein a plurality of edges (8a-8d) of said VIG unit (1) overlap a frame profile (20a-20d, 70), andwherein an inwardly directed, major surface (4a, 4b, 15, 35a) of a glass sheet (2a, 35a, 15) of the VIG unit (1) is bonded to the overlapped profile (20a-20d, 70) by means of a structural adhesive (45a), which is discretely arranged along the length of one or more edges (8a-8d) of the VIG unit, and has a thickness (Th) between 3 mm and 30 mm at a temperature difference (AT=T1-T2) between the two glass sheets (2a, 2b) of 0° C,wherein said overlapping edges (8a-8d) of the VIG unit (1) are allowed to thermally deflect (DIS4) relative to said profiles (20a-20d, 70) in a deflection direction (D1, D2) perpendicular to said frame opening plane (P2) due to a temperature difference (ΔT = T1 - T2) between the two glass sheets (2a, 2b), wherein said thermal deflection of the overlapping edges (8a-8d) is allowed to have a varying magnitude along the edge (8a-8d) between the corners (9) where the respective edge (8a-8d) terminates. |
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27.05.2026 · VKR Holding A/S
Spaltabdichtung mittels Abdeckung mit Erstarrtem Dichtmaterial
Hochbau & Gebäudetechnik
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Zusammenfassung
The present disclosure relates to a method of manufacturing a vacuum insulated glass unit. The method comprises providing a vacuum insulated glass unit assembly (1) comprising a first glass sheet (2) and a second glass sheet (3), a plurality of support structures (5) distributed in a gap (6) between a first major surface (2a) of the first glass sheet (2) and first major surface (3a) of the second glass sheet (3), a peripheral edge seal (4) which is configured to seal the gap (6), wherein the first glass sheet (2) comprises a through hole (10), wherein the through hole (10) extends between the first major surface (2a) and a second, oppositely directed, major surface (2b) of the first glass sheet (2). A cover (20) is provided. The cover comprises a covering body (21) and a solidified seal material (22), The solidified seal material may comprise glass solder material. The solidified seal material is attached to the covering body (21, 21a) and encompasses the through hole (10) in an uninterrupted manner. The cover is arranged so that the solidified seal material (22) is placed between a surface part (2sp, 10s) of the first glass sheet (2) and the covering body (21), and so that the covering body (21) covers at least a part (10a) of the through hole (10). The gap (6) is evacuated by means of a pump (30), so that gas (GA), such as air, in the gap (6) is evacuated through the through hole (10). The solidified seal material (22) is heated by means of a heater (7) so as to soften the solidified seal material, thereby providing that the softened seal material (22) adhere to the surface part (2sp, 10s) of the first glass sheet (2) around the through hole (10). The softened seal material (22) is cooled so as to harden the softened seal material, thereby sealing the evacuated gap (6). The evacuation of the gap (6) by means of the pump (30) may comprise that the gas (GA) is evacuated from the gap (6) through one or more gas passages (25), wherein the one or more gas passages (25) is/are arranged between said surface part (2sp, 10s) of the first glass sheet (2) and a surface (22a) of the solidified seal material (22) which faces said surface part (2sp, 10s) of the first glass sheet (2). |
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27.05.2026 · VKR Holding A/S
Abdeckung mit Erstarrtem Dichtmaterial
Hochbau & Gebäudetechnik
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Zusammenfassung
The present disclosure regards a method of manufacturing of covers (20) for use during sealing of an evacuated gap (6) of a vacuum insulated glass unit (1). The method comprises providing a plurality of covering body workpieces (21), wherein said plurality of covering body workpieces comprises a seal material (22) comprising a glass solder material, wherein the seal material is arranged at a surface of each of the provided plurality of covering body workpieces. Said plurality of covering body workpieces (21) are arranged in a working space. The seal material (22) is heated in the working space to a target temperature (Tar21) by means of a heater (60). The heating may be provided so as to provide an outgassing of the glass solder material. The heated covering body workpiece and outgassed glass solder material is thereafter cooled so as to solidify the seal material. A method of manufacturing a vacuum insulated glass unit is also disclosed. |
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