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公开(公告)号:US20230386714A1
公开(公告)日:2023-11-30
申请号:US18202693
申请日:2023-05-26
Applicant: Jason N. Morgan , Steven Murray
Inventor: Jason N. Morgan , Steven Murray
CPC classification number: H01F7/0242 , H01F7/0247 , H01F7/04
Abstract: A magnetic switch can be configured to have or provide a variable, user-selectable radial flux pattern. In an example, the switch comprises a magnetized outer structure and a magnetized inner structure provided at least partially inside of the magnetized outer structure. In an example, at least one of the magnetized inner and outer structures is rotatable relative to the other one of the magnetized inner and outer structures about an axis of rotation that is common to the magnetized outer structure and magnetized inner structure. The radial flux pattern can extend away from the common axis of rotation and can vary in strength according to a relative position of the magnetized inner and outer structures. In other examples, the switch can comprise multiple layers of magnetized structures.
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公开(公告)号:US20180207346A1
公开(公告)日:2018-07-26
申请号:US15878385
申请日:2018-01-23
Applicant: Mohammed Ibn khayat Zougari
Inventor: Mohammed Ibn khayat Zougari
CPC classification number: A61M1/3655 , A61M39/227 , A61M2039/226 , A61M2205/0288 , H01F7/02 , H01F7/0242 , H01F7/06
Abstract: An example magnetically activated implantable valve according to the present disclosure includes an implantable valve, the implantable valve including a first set of passive magnets, and an actuator configured to actuate the implantable valve. The actuator includes a second set of passive magnets corresponding to the first set of passive magnets. The first set of passive magnets is configured to interact with the second set of passive magnets to actuate the valve. Another example magnetically activated implantable valve and an implantable valve for controlling flow of an active fluid are also disclosed.
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公开(公告)号:US20180017349A1
公开(公告)日:2018-01-18
申请号:US15649719
申请日:2017-07-14
Applicant: Barnett Outdoors, LLC
Inventor: Dale Perry
CPC classification number: F41A19/10 , F41A17/28 , F41A17/46 , F41A17/56 , F41A19/12 , F41A19/59 , F41B5/1469 , F41B5/1484 , H01F7/0242
Abstract: A trigger assembly includes one or more stationary magnets and a trigger member pivotable relative to the stationary magnets. The trigger member includes a base portion with a pivot point, an actuating portion extending from the base portion in a first direction, and a magnetic trigger portion extending from the base portion in a second direction. The magnetic trigger portion operatively engages the stationary magnets in a first position. The base portion of the trigger member operatively engages a first sear element, which is operatively connected to a sear arm, which in turn operatively engages a second sear element. A spring operatively biases the first sear element. The second sear element retains a bow string in the first position. In a second position, the trigger member rotates to separate the magnetic trigger portion from the magnets, and the second sear element rotates to release the bow string.
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公开(公告)号:US20170265883A1
公开(公告)日:2017-09-21
申请号:US15464434
申请日:2017-03-21
Inventor: Michael O'Connor , John Morici , Michael DeRossi , Steve Gaynes
IPC: A61B17/3211 , H01F7/02
CPC classification number: A61B17/3415 , A61B17/32093 , A61B17/3476 , A61B17/3496 , A61B2017/00876 , A61B2017/320028 , H01F7/0242
Abstract: A device comprises a retractable shaft; a shaft biasing spring; and an actuator button. The retractable shaft is biased away from the actuator button by the shaft biasing spring. A magnetic attracting force is created between the retractable shaft and the actuator button upon actuation of the actuator button. Before actuation, a distance between the actuator button and the retractable shaft is great enough that the magnetic attracting force is less than a biasing force of the shaft biasing spring such that the retractable shaft is biased away from the actuator button. Upon actuation, the actuator button is depressed to make the distance between the actuator button and the retractable shaft sufficiently small such that the magnetic attracting force is greater than the biasing force of the shaft biasing spring to allow the retractable shaft to be biased towards the actuator button.
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公开(公告)号:US09711268B2
公开(公告)日:2017-07-18
申请号:US14808770
申请日:2015-07-24
Applicant: Correlated Magnetics Research, LLC.
Inventor: Larry W. Fullerton , Mark D. Roberts , David P. Machado , Jason N. Morgan
CPC classification number: H01F7/0231 , E05C19/16 , F16C32/0476 , H01F7/021 , H01F7/0242 , H01F7/0252 , H01F7/0263 , H01F7/20
Abstract: A magnetic system described herein includes first and second magnetic structures that simultaneously produce repel forces and attract forces that combine to produce a composite force that can be an attract force, a repel force, or a force that transitions from an attract force to a repel force.
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公开(公告)号:US20170098985A1
公开(公告)日:2017-04-06
申请号:US15208452
申请日:2016-07-12
Applicant: E-Circuit Motors, Inc.
Inventor: Steven Robert Shaw
IPC: H02K15/03
CPC classification number: H02K15/03 , H01F7/0242 , H01F7/0247 , H01F7/0252 , H01F7/0263 , H02K1/2793 , H02K41/02
Abstract: An apparatus for forming a magnet assembly may comprise a base, a bearing assembly, and a support structure positioning mechanism. The bearing assembly may be configured to support a magnet and to allow the magnet to rotate about an axis normal to a surface of the base. The support structure positioning mechanism may be configured to position a support structure on the magnet when the magnet is on the base. The base may comprise at least one magnet alignment feature that causes the magnet to rotate about the axis to a preferred angular orientation corresponding to a lower energy configuration as a function of angle about the axis as the magnet moves closer to the base. The bearing assembly may be movable along the axis to allow the magnet to be moved closer to the base and cause the magnet to achieve the preferred angular orientation.
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公开(公告)号:US20160381473A1
公开(公告)日:2016-12-29
申请号:US15161750
申请日:2016-05-23
Applicant: Johan GUSTAFSSON
Inventor: Johan GUSTAFSSON
IPC: H04R25/00
CPC classification number: H04R25/606 , H01F7/0242 , H01F7/04 , H04R2225/67 , H04R2460/13
Abstract: An apparatus, including an external component of a medical device configured to generate a magnetic flux that removably retains, via a resulting magnetic retention force, the external component to a recipient thereof, wherein the external component is configured to enable the adjustment of a path of the generated magnetic flux so as to vary the resulting magnetic retention force.
Abstract translation: 一种装置,包括医疗装置的外部部件,其被配置为产生磁通量,所述磁通量通过所得到的磁力保持力将所述外部部件可移除地保持在其接收者处,其中所述外部部件构造成能够调整 所产生的磁通量以改变所得的磁保持力。
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公开(公告)号:US09478336B2
公开(公告)日:2016-10-25
申请号:US14688740
申请日:2015-04-16
Applicant: OnyxIP, Inc.
Inventor: Harvey S. Henning, III
IPC: H01F7/02
CPC classification number: H01F7/0242
Abstract: An apparatus of the present disclosure has a first magnet coupled to a frame and a position of the first magnet vertically adjustable and a second magnet coupled to the frame and positioned and arranged in vertical alignment with the first magnet along a magnetic axis common to the first and second magnets, such that the first magnet is free to rotate about the magnetic axis. The spinning magnet apparatus demonstrates that the external magnetic field caused by the magnets is not fixed to the material matrix of the magnets.
Abstract translation: 本公开的装置具有耦合到框架的第一磁体和垂直可调节的第一磁体的位置,以及耦合到框架的第二磁体,并且沿着与第一磁体共同的磁轴定位并布置成与第一磁体垂直对准 和第二磁体,使得第一磁体绕磁轴自由旋转。 旋转磁铁装置示出了由磁体引起的外部磁场不固定在磁体的材料基体上。
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公开(公告)号:US09279527B2
公开(公告)日:2016-03-08
申请号:US13931082
申请日:2013-06-28
Applicant: HANA CONSULTING, INC.
Inventor: Mitchell G. Davis
IPC: F16L25/00 , F16L37/00 , B65D43/02 , H01F7/02 , F16L55/115
CPC classification number: F16L37/004 , B65D43/0202 , B65D2313/04 , F16L25/009 , F16L55/115 , H01F7/0242 , H01F7/0252
Abstract: Each of a flange and an end cap have at least two magnets or magnetic pieces arranged in complementary fashion to removably attached the end cap to the flange. The end cap removably seals an orifice of the flange by magnetic attraction between the at least two magnets or magnetic pieces of the end cap and the at least two magnets or magnetic pieces of the flange. This seal between the end cap and flange provides for pressure relief as pressure from within the orifice exceeds the force of magnetic attraction between the magnets or magnetic pieces of the end cap and the magnets or magnetic pieces of the flange.
Abstract translation: 凸缘和端盖中的每一个具有以互补的方式布置的至少两个磁体或磁性片,以将端帽可拆卸地附接到凸缘。 端盖可以通过至少两个磁体或端盖的磁片和凸缘的至少两个磁体或磁性片之间的磁吸引力来可移除地密封凸缘的孔口。 端盖和凸缘之间的这种密封提供压力释放,因为来自孔内的压力超过端盖的磁体或磁片之间的磁吸引力以及凸缘的磁体或磁片。
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公开(公告)号:US20150318088A1
公开(公告)日:2015-11-05
申请号:US14699913
申请日:2015-04-29
Applicant: CORRELATED MAGNETICS RESEARCH, LLC
Inventor: Larry W. Fullerton
CPC classification number: H01F1/01 , G01D18/00 , H01F7/02 , H01F7/021 , H01F7/0242 , H01F7/0247 , H01F7/0252 , H01F7/0284 , H01F13/003 , H02K15/03 , H02K49/10 , Y10T24/32
Abstract: An improved system and method for producing magnetic structures involves a first magnetizing circuit having a first inductor coil used to magnetically print a first magnetic source onto a magnetizable material and a second magnetizing circuit having a second inductor coil used to magnetically print a second magnetic source onto said magnetizable material.
Abstract translation: 一种用于制造磁性结构的改进的系统和方法包括具有用于将第一磁源磁性地印刷到可磁化材料上的第一电感线圈的第一磁化电路和具有用于将第二磁源磁性印刷到第二磁源上的第二电感线圈的第二磁化电路 所述可磁化材料。
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