A MAGNETICALLY PERMEABLE CORE FOR USE IN WIRELESS POWER TRANSFER SYSTEMS
The invention relates to a contactless connector (100, 300), a system including the contactless connector and a corresponding mating connector (200), and a manufacturing method for the contactless connector. In order to enable the contactless connector to transmit/receive power to/from the correspon...
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creator | DELA CRUZ, LAWRENCE BERNARDO HUANG, REX PIUS ABDOLKHANI, ALI REN, SAINING |
description | The invention relates to a contactless connector (100, 300), a system including the contactless connector and a corresponding mating connector (200), and a manufacturing method for the contactless connector. In order to enable the contactless connector to transmit/receive power to/from the corresponding mating connector, the invention suggest providing at the contactless connector an inner ferrite element (103, 203) and a coil (115, 215) arranged to at least partially surround the inner ferrite element. An outer ferrite element (107, 207) of the contactless connector is arranged to at least partially surround the coil, wherein a front end (108, 208) of the outer ferrite element facing the mating end (101, 201) of the contactless connector is recessed in an axial direction of the contactless connector with respect to a front end (103, 203) of the inner ferrite element facing the mating end. A rear end (109, 209) of the outer ferrite element is magnetically connected to a rear end (104, 204) of the inner ferrite element. |
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In order to enable the contactless connector to transmit/receive power to/from the corresponding mating connector, the invention suggest providing at the contactless connector an inner ferrite element (103, 203) and a coil (115, 215) arranged to at least partially surround the inner ferrite element. An outer ferrite element (107, 207) of the contactless connector is arranged to at least partially surround the coil, wherein a front end (108, 208) of the outer ferrite element facing the mating end (101, 201) of the contactless connector is recessed in an axial direction of the contactless connector with respect to a front end (103, 203) of the inner ferrite element facing the mating end. 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In order to enable the contactless connector to transmit/receive power to/from the corresponding mating connector, the invention suggest providing at the contactless connector an inner ferrite element (103, 203) and a coil (115, 215) arranged to at least partially surround the inner ferrite element. An outer ferrite element (107, 207) of the contactless connector is arranged to at least partially surround the coil, wherein a front end (108, 208) of the outer ferrite element facing the mating end (101, 201) of the contactless connector is recessed in an axial direction of the contactless connector with respect to a front end (103, 203) of the inner ferrite element facing the mating end. 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In order to enable the contactless connector to transmit/receive power to/from the corresponding mating connector, the invention suggest providing at the contactless connector an inner ferrite element (103, 203) and a coil (115, 215) arranged to at least partially surround the inner ferrite element. An outer ferrite element (107, 207) of the contactless connector is arranged to at least partially surround the coil, wherein a front end (108, 208) of the outer ferrite element facing the mating end (101, 201) of the contactless connector is recessed in an axial direction of the contactless connector with respect to a front end (103, 203) of the inner ferrite element facing the mating end. A rear end (109, 209) of the outer ferrite element is magnetically connected to a rear end (104, 204) of the inner ferrite element.</abstract><oa>free_for_read</oa></addata></record> |
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language | eng ; fre ; ger |
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subjects | BASIC ELECTRIC ELEMENTS ELECTRIC COMMUNICATION TECHNIQUE ELECTRICITY INDUCTANCES MAGNETS SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES TRANSFORMERS TRANSMISSION |
title | A MAGNETICALLY PERMEABLE CORE FOR USE IN WIRELESS POWER TRANSFER SYSTEMS |
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