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    • 4. 发明申请
    • SYSTEM FOR DETACHING A MAGNETIC STRUCTURE FROM A FERROMAGNETIC MATERIAL
    • 从铁磁材料中取出磁性结构的系统
    • WO2013130667A2
    • 2013-09-06
    • PCT/US2013/028095
    • 2013-02-27
    • CORRELATED MAGNETICS RESEARCH, LLC.
    • FULLERTON, Larry, W.ROBERTS, Mark, D.SWIFT, WesleyZIMMERMAN, Jacob, S.EVANS, R., Scott
    • H01F7/02
    • H01F7/0257H01F7/04
    • A detachment system includes a first piece of ferromagnetic material, a shunt plate, and at least one simple machine. The first piece of ferromagnetic material has a first side and a second side opposite the first side and has magnetically printed field sources that extend from the first side to the second side. The magnetically printed field sources have a first multi-polarity pattern. The first side of the first piece of ferromagnetic material is magnetically attached to a second piece of ferromagnetic material. The shunt plate is disposed on the second side of the first piece of ferromagnetic material. The shunt plate routes magnetic flux through the first piece of ferromagnetic material from the second side to the first side of the first ferromagnetic material. The at least one simple machine is configured to amplify an applied force into a detachment force to create an angled spacing between the first piece of ferromagnetic material and the second piece of ferromagnetic material.
    • 分离系统包括第一块铁磁材料,分流板和至少一个简单机器。 第一块铁磁材料具有第一侧和与第一侧相对的第二侧,并且具有从第一侧延伸到第二侧的磁性印刷场源。 磁性印刷场源具有第一多极性图案。 第一块铁磁材料的第一侧磁性连接到第二块铁磁材料。 分流板布置在第一铁磁材料的第二侧上。 分流板将磁通量从第一铁磁材料的第二侧路由到第一铁磁材料的第一侧。 该至少一个简单机器被构造成将施加的力放大成分离力以在第一铁磁材料块和第二铁磁材料块之间形成成角度的间距。
    • 5. 发明授权
    • Electrical adapter system
    • US10008817B2
    • 2018-06-26
    • US15095970
    • 2016-04-11
    • Correlated Magnetics Research, LLC
    • Larry W. FullertonMark D. Roberts
    • H01R31/06H01R33/22H01R13/62H01R13/66
    • H01R31/065H01R13/6205H01R13/6675H01R33/22
    • An electrical system includes an electrical adapter and a stackable electrical adapter. The electrical adapter includes at least one of an electrical plug or an Edison screw base configured to receive a primary voltage, a voltage converter circuit configured to convert the primary voltage to the secondary voltage, and a first electrical connector part configured to be detachably coupled to a second electrical connector part of an electrical fixture configured to be powered by the secondary voltage. The stackable electrical adapter is configured to be powered by the secondary voltage, the first stackable electrical adapter having a first side and a second side opposite the first side. The electrical adapter is configured to be electrically connected to the first side of the first stackable electrical adapter or to an electrical fixture using a two part electrical connector to provide the secondary voltage and a ground, the electrical fixture is configured to be powered by the secondary voltage, where the second side of the stackable electrical adapter is configured to be electrically connected to the electrical fixture or to be daisy-chained to a second stackable electrical adapter using the two part electrical connector to provide the secondary voltage and a ground, the second stackable electrical adapter being configured to be electrically connected to the electrical adapter and the electrical fixture and to be daisy-chained to the first stackable electrical adapter using the two part electrical connector to provide the secondary voltage and a ground.
    • 7. 发明申请
    • SYSTEM AND METHOD FOR MOVING AN OBJECT
    • 用于移动对象的系统和方法
    • US20150357108A1
    • 2015-12-10
    • US14829384
    • 2015-08-18
    • Correlated Magnetics Research, LLC.
    • Larry W. FullertonMark D. Roberts
    • H01F7/20H01F7/02
    • H01F7/0247H01F7/206H01F2003/103
    • An improved system and method for moving an object includes a first correlated magnetic structure associated with a first object and a second correlated magnetic structure associated with a second object. The first and second correlated magnetic structures are complementary coded to achieve a peak attractive tensile force and a peak shear force when their code modulos are aligned thereby enabling magnetic attachment of the two objects whereby movement of one object causes movement of the other object as if the two objects were one object. Applying an amount of torque to one correlated magnetic structures greater than a torque threshold causes misalignment and decorrelation of the code modulos enabling detachment of the two objects. The number, location, and coding of the correlated magnetic structures can be selected to achieve specific torque characteristics, tensile force characteristics, and shear force characteristics.
    • 用于移动对象的改进的系统和方法包括与第一对象相关联的第一相关磁结构和与第二对象相关联的第二相关磁结构。 第一和第二相关磁结构是互补编码的,以便当它们的编码模块对准时实现峰值有吸引力的拉力和峰值剪切力,从而使得两个对象能够磁性附接,从而一个对象的运动引起另一个对象的运动,如同 两个对象是一个对象。 将一定数量的扭矩应用于大于扭矩阈值的一个相关磁结构会导致代码模块的未对准和去相关,从而使两个对象脱离。 可以选择相关磁性结构的数量,位置和编码以实现特定的扭矩特性,拉力特性和剪切力特性。
    • 8. 发明授权
    • System and method for moving an object
    • 用于移动物体的系统和方法
    • US09111673B2
    • 2015-08-18
    • US14258776
    • 2014-04-22
    • Correlated Magnetics Research, LLC
    • Larry W. FullertonMark D. Roberts
    • H01F7/02
    • H01F7/0247H01F7/206H01F2003/103
    • An improved system and method for moving an object includes a first correlated magnetic structure associated with a first object and a second correlated magnetic structure associated with a second object. The first and second correlated magnetic structures are complementary coded to achieve a peak attractive tensile force and a peak shear force when their code modulos are aligned thereby enabling magnetic attachment of the two objects whereby movement of one object causes movement of the other object as if the two objects were one object. Applying an amount of torque to one correlated magnetic structures greater than a torque threshold causes misalignment and decorrelation of the code modulos enabling detachment of the two objects. The number, location, and coding of the correlated magnetic structures can be selected to achieve specific torque characteristics, tensile force characteristics, and shear force characteristics.
    • 用于移动对象的改进的系统和方法包括与第一对象相关联的第一相关磁结构和与第二对象相关联的第二相关磁结构。 第一和第二相关磁结构是互补编码的,以便当它们的编码模块对准时实现峰值有吸引力的拉力和峰值剪切力,从而使得两个对象能够磁性附接,从而一个对象的运动引起另一个对象的运动,如同 两个对象是一个对象。 将一定数量的扭矩应用于大于扭矩阈值的一个相关磁结构会导致代码模块的未对准和去相关,从而使两个对象脱离。 可以选择相关磁性结构的数量,位置和编码以实现特定的扭矩特性,拉力特性和剪切力特性。
    • 10. 发明授权
    • System for concentrating magnetic flux
    • 磁通集中系统
    • US08917154B2
    • 2014-12-23
    • US14258723
    • 2014-04-22
    • Correlated Magnetics Research, LLC
    • Larry W. FullertonMark D. RobertsWesley R. Swift, Jr.Hamilton G. Moore
    • H01F3/00H01F7/02
    • H01F7/0278
    • An improved system for concentrating magnetic flux of a multi-pole magnetic structure at the surface of a ferromagnetic target uses pole pieces having a magnet-to-pole piece interface with a first area and a pole piece-to-target interface with a second area substantially smaller than the first area, where the target can be a ferromagnetic material or a complementary pole pieces. The multi-pole magnetic structure can be a coded magnetic structure or an alternating polarity structure comprising two polarity directions, or can be a hybrid structure comprising more than two polarity directions. A magnetic structure can be made up of discrete magnets or can be a printed magnetic structure.
    • 用于在铁磁体目标表面聚集多极磁性结构的磁通量的改进的系统使用具有与第一区域和第二区域的极点到界面的磁极与磁体的界面的极片 实质上小于第一区域,其中靶材可以是铁磁材料或互补极片。 多极磁性结构可以是编码磁性结构或包括两个极性方向的交替极性结构,或者可以是包括两个以上极性方向的混合结构。 磁性结构可以由分立磁体构成,也可以是印刷磁性结构。