Abstract: Designs for a magnetic mounting system that facilitate wireless charging. The magnetic mounting system generally includes an attachment member engaged with a device that interfaces magnetically with a carrier member. The attachment member may comprise a split ring or discontinuous ring comprising arcuate members that allows inductive coupling between a charge transmitting coil and a charge receiving coil to be achieved as the arcuate members do not interfere with the inductive coupling. Specifically, rather than a solid plate in which the RF energy emitted by the charge transmitting coil generates eddy currents in the plate, the arcuate members are substantially transparent to the RF energy such that inductive coupling may be achieved.
Abstract: Designs for a magnetic mounting system that facilitate wireless charging. The magnetic mounting system generally includes an attachment member engaged with a device that interfaces magnetically with a carrier member. The attachment member may comprise a split ring or discontinuous ring comprising arcuate members that allows inductive coupling between a charge transmitting coil and a charge receiving coil to be achieved as the arcuate members do not interfere with the inductive coupling. Specifically, rather than a solid plate in which the RF energy emitted by the charge transmitting coil generates eddy currents in the plate, the arcuate members are substantially transparent to the RF energy such that inductive coupling may be achieved.
Abstract: Modular mounting systems for supportably engagement of one or more devices. The systems may include corresponding attachment members and carrier members for selective supportive engagement of one or more devices relative to a base. The attachment members and carrier members may be magnetically engageable. Various form factors for devices, base members, carrier members, attachment members, and other portions of the system are described.
Abstract: Designs for a magnetic mounting system that facilitate wireless charging. The magnetic mounting system generally includes an attachment member engaged with a device that interfaces magnetically with a carrier member. The attachment member may comprise a split ring or discontinuous ring comprising arcuate members that allows inductive coupling between a charge transmitting coil and a charge receiving coil to be achieved as the arcuate members do not interfere with the inductive coupling. Specifically, rather than a solid plate in which the RF energy emitted by the charge transmitting coil generates eddy currents in the plate, the arcuate members are substantially transparent to the RF energy such that inductive coupling may be achieved.
Abstract: Modular mounting systems for supportably engagement of one or more devices. The systems may include corresponding attachment members and carrier members for selective supportive engagement of one or more devices relative to a base. The attachment members and carrier members may be magnetically engageable. Various form factors for devices, base members, carrier members, attachment members, and other portions of the system are described.
Abstract: A windshield and a vehicle having a windshield are provided. The windshield includes a right-side bulging portion disposed at a right-side lower portion, a left-side bulging portion disposed at a left-side lower portion, and at least one protrusion disposed at an upper edge.
Type:
Grant
Filed:
November 6, 2018
Date of Patent:
January 5, 2021
Assignee:
Kustom Cycles, Inc.
Inventors:
Brian R. Klock, Daniel R. Cheeseman, Logan S. Homstad, Jennifer N. Bainbridge, Jason P. Hanson, Randall J. Rothlisberger
Abstract: A windshield and a vehicle having a windshield are provided. The windshield includes a right-side bulging portion disposed at a right-side lower portion, a left-side bulging portion disposed at a left-side lower portion, and at least one protrusion disposed at an upper edge.
Type:
Grant
Filed:
June 9, 2017
Date of Patent:
November 6, 2018
Assignee:
Kustom Cycles, Inc.
Inventors:
Brian R. Klock, Daniel R. Cheeseman, Logan S. Homstad, Jennifer N. Bainbridge, Jason P. Hanson, Randall J. Rothlisberger