Blood pump with micromotor

US12546320B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12546320-B2
Application numberUS-202318239771-A
CountryUS
Kind codeB2
Filing dateAug 30, 2023
Priority dateMar 24, 2007
Publication dateFeb 10, 2026
Grant dateFeb 10, 2026

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  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

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  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The invention relates to a micromotor ( 10 ), the stator of which contains a back iron jacket ( 18 ). Said back iron jacket consists of a continuous unslotted sleeve consisting of a metal alloy that contains ferritic iron as the main constituent, up to 30% chromium and preferably aluminium and yttrium oxide. Electric conductivity is reduced by the oxidation of the aluminium. The yttrium oxide performs the same function. The reduced electric conductivity suppresses eddy currents to a great extent. The back iron jacket ( 18 ) has a high magnetic conductivity with a small wall thickness, thus increasing the electrical output for a motor with a small diameter.

First claim

Opening claim text (preview).

The invention claimed is: 1 . A blood pump sized for intravascular insertion, the blood pump comprising: a micromotor comprising a stator and a rotor surrounded by the stator; and a pump portion axially following the micromotor, wherein the pump portion comprises an impeller fastened to a shaft, and wherein the impeller is arranged for rotation within a housing of the blood pump, wherein the stator comprises: a shell containing an exciter coil; and a magnetic-reflux jacket surrounding the shell continuously, wherein the magnetic-reflux jacket is unslotted and is made of a magnetically conductive material, wherein the magnetically conductive material is a ferritic alloy, wherein the ferritic alloy comprises iron as the main component and further comprises 17 wt. % to 30 wt. % of chromium and 3 wt. % to 8 wt. % of aluminum. 2 . The blood pump of claim 1 , wherein the ferritic alloy further comprises 0.3 wt. % to 2 wt. % of yttrium oxide. 3 . The blood pump of claim 1 , wherein the ferritic alloy further comprises up to 0.2 wt. % of copper. 4 . The blood pump of claim 1 , wherein the ferritic alloy comprises no copper. 5 . The blood pump of claim 1 , wherein the ferritic alloy has a crystalline structure. 6 . The blood pump of claim 1 , wherein the magnetic-reflux jacket reduces electric conductivity of the blood pump compared to a magnetic-reflux jacket having one or more slot. 7 . The blood pump of claim 1 , wherein the magnetic-reflux jacket has an outer diameter of up to 4.6 mm and an inner diameter of at least 3.3 mm. 8 . The blood pump of claim 1 , wherein the magnetic-reflux jacket has a length of about 12 mm. 9 . The blood pump of claim 1 , wherein the magnetic-reflux jacket has windows on its proximal end. 10 . The blood pump of claim 1 , wherein the magnetic-reflux jacket is connected to the housing of the blood pump by a welding seam. 11 . The blood pump of claim 1 , wherein the impeller has a rotational speed of from 30,000 rpm to 60,000 rpm during operation of the blood pump. 12 . A blood pump sized for intravascular insertion, the blood pump comprising: a micromotor comprising a stator and a rotor surrounded by the stator; and a pump portion axially following the micromotor, wherein the pump portion comprises an impeller fastened to a shaft, and wherein the impeller is arranged for rotation within a housing of the blood pump, wherein the stator comprises: a shell containing an exciter coil; and a magnetic-reflux jacket surrounding the shell continuously, wherein the magnetic-reflux jacket is unslotted and is made of a magnetically conductive material, wherein the magnetically conductive material is a ferritic alloy, wherein the ferritic alloy comprises iron as the main component and further comprises the following components: chromium 18.5%-21.50% aluminum 3.75%-5.75% titanium 0.20%-0.60% yttrium oxide 0.30%-0.70% carbon up to 0.10 wt. % copper up to 0.15 wt. % manganese up to 0.30 wt. % cobalt up to 0.30 wt. % nickel up to 0.50 wt. % phosphorous up to 0.02 wt. %.

Assignees

Inventors

Classifications

  • Contact bearings, e.g. ball-and-cup or pivot bearings · CPC title

  • the blood flow through the rotating member having mainly axial components, e.g. axial flow pumps · CPC title

  • High-frequency driving · CPC title

  • the force acting on the blood contacting member being electromagnetic, e.g. using canned motor pumps · CPC title

  • using a jet, venturi or entrainment effect for pumping the blood · CPC title

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What does patent US12546320B2 cover?
The invention relates to a micromotor ( 10 ), the stator of which contains a back iron jacket ( 18 ). Said back iron jacket consists of a continuous unslotted sleeve consisting of a metal alloy that contains ferritic iron as the main constituent, up to 30% chromium and preferably aluminium and yttrium oxide. Electric conductivity is reduced by the oxidation of the aluminium. The yttrium oxide p…
Who is the assignee on this patent?
Abiomed Europe Gmbh
What technology area does this patent fall under?
Primary CPC classification F04D13/064. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Feb 10 2026 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).