WO2025073414 - POSITIONIERUNGSSENSOR UND INDUKTIVE LADEEINRICHTUNG
National phase entry is expected:
Publication Number
WO/2025/073414
Publication Date
10.04.2025
International Application No.
PCT/EP2024/074189
International Filing Date
29.08.2024
Title **
[German]
POSITIONIERUNGSSENSOR UND INDUKTIVE LADEEINRICHTUNG
[English]
POSITIONING SENSOR AND INDUCTIVE CHARGING DEVICE
[French]
CAPTEUR DE POSITIONNEMENT ET DISPOSITIF DE CHARGE INDUCTIVE
Applicants **
MAHLE INTERNATIONAL GMBH
Inventors
BÖTTIGHEIMER, Mike
HALLBERG, Torbjorn
HIRSCH, Stefan
SEWALSKI, Anja
Priority Data
102023127027.3
04.10.2023
DE
Application details
| Total Number of Claims/PCT | * |
| Number of Independent Claims | * |
| Number of Priorities | * |
| Number of Multi-Dependent Claims | * |
| Number of Drawings | * |
| Pages for Publication | * |
| Number of Pages with Drawings | * |
| Pages of Specification | * |
| * | |
| Number of Office Actions | * |
| * | |
International Searching Authority |
EPO
* |
| Recordal of a Change of the Applicant's Name/Address |
Change of Applicant's Name and Address
* |
| Type of Assignment |
The Standard Agent's Assignment
* |
| Applicant's Legal Status |
Legal Entity
* |
| * | |
| * | |
| * | |
| * | |
| * | |
| Entry into National Phase under |
Chapter I
* |
| Patent Delivery |
Send the Letters Patent by Courier
* |
| Translation |
|
* The data is based on automatic recognition. Please verify and amend if necessary.
** IP-Coster compiles data from publicly available sources. If this data includes your personal information, you can contact us to request its removal.
Quotation for National Phase entry
| Country | Stages | Total | |
|---|---|---|---|
| China | Filing, Examination, Granting | 2091 | |
| EPO | Filing, Examination, Granting | 8786 | |
| Japan | Filing, Examination, Granting | 2211 | |
| South Korea | Filing, Examination, Granting | 2079 | |
| USA | Filing, Examination, Granting | 4740 |

Total:
19,907
The term for entry into the National Phase has expired. This quotation is for informational purposes only
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Abstract[German]
Die Erfindung betrifft einen Positionierungssensor (200, 300, 400) zur Erzeugung oder Erfassung eines magnetischen Messfeldes für die Positionierung einer induktiven Ladeeinrichtung oder eines Fahrzeugs mit einer induktiven Ladeeinrichtung relativ zu einer weiteren induktiven Ladeeinrichtung, wobei der Positionierungssensor zumindest ein Flachbandkabel (100; 301; 411, 421) umfasst, das N elektrisch isolierte Einzelleitungen (100-104; 306) umfasst, wobei N eine ganze Zahl ist, mit N>1, und wobei das Flachbandkabel zwei Endbereiche (110, 120) aufweist, an denen jeweils die N Einzelleitungen enden, die elektrisch so miteinander verbunden sind, dass sich eine durchgehende elektrische Verbindung ergibt, um eine Spule mit N Windungen zu bilden.[English]
The invention relates to a positioning sensor (200, 300, 400) for producing or sensing a magnetic measurement field for positioning an inductive charging device or a vehicle having an inductive charging device relative to another inductive charging device, wherein the positioning sensor comprises at least one ribbon cable (100; 301; 411, 421) comprising N electrically isolated individual lines (100-104; 306), wherein N is an integer, where N>1, and wherein the ribbon cable has two end regions (110, 120) at which each of the N individual lines end, said individual lines being electrically interconnected such that a continuous electrical connection is produced in order to form a coil with N turns.[French]
L'invention concerne un capteur de positionnement (200, 300, 400) pour produire ou détecter un champ de mesure magnétique pour positionner un dispositif de charge inductive ou un véhicule ayant un dispositif de charge inductive par rapport à un autre dispositif de charge inductive, le capteur de positionnement comprenant au moins un câble plat (100 ; 301 ; 411, 421) comprenant N lignes individuelles électriquement isolées (100-104 ; 306), N étant un nombre entier, N > 1, et le câble plat ayant deux régions d'extrémité (110, 120) au niveau desquelles chacune des N lignes individuelles se termine, lesdites lignes individuelles étant électriquement interconnectées de telle sorte qu'une connexion électrique continue est produite afin de former une bobine avec N spires.