Electric shielding structures
Abstract
Wireless power transmitting devices according to embodiments of the present technology may include a contact surface configured to support one or more wireless power receiving devices. The wireless power transmitting devices may include a plurality of coils. The wireless power transmitting devices may also include a shield positioned between the plurality of coils and the contact surface. The shield may include one or more shield members, each shield member axially aligned with a separate coil of the plurality of coils, and may include a multilayer structure exhibiting various conductivities.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A wireless power transmitting device, comprising:
a contact surface configured to support one or more wireless power receiving devices; one or more coils; and a shield positioned between the one or more coils and the contact surface, wherein the shield comprises one or more shield members, each shield member axially aligned with a separate coil of the one or more coils.
2 . The wireless power transmitting device of claim 1 , wherein the shield comprises a conductive chassis extending about a perimeter of the shield.
3 . The wireless power transmitting device of claim 2 , wherein the shield comprises a conductive sheet spanning an internal area defined by the conductive chassis.
4 . The wireless power transmitting device of claim 3 , wherein the conductive sheet comprises a first material, wherein the one or more shield members comprise a second material, and wherein the conductive sheet is characterized by a higher sheet resistance than the shield members.
5 . The wireless power transmitting device of claim 2 , wherein the shield comprises a conductive drain extending from at least one shield member of the one or more shield members to the conductive chassis.
6 . The wireless power transmitting device of claim 5 , wherein the shield comprises a plurality of shield members, and wherein each shield member is electrically coupled with another shield member with a bridge or is electrically coupled with the conductive chassis with a conductive drain.
7 . The wireless power transmitting device of claim 5 , wherein the conductive drain is characterized by an arcuate shape, wherein the conductive drain is positioned between the at least one shield member and the conductive chassis, and wherein the conductive drain is shaped and positioned to limit overlap with an underlying coil relative to a straight-member conductive drain.
8 . The wireless power transmitting device of claim 1 , wherein each coil of the one or more is characterized by a substantially annular shape, and wherein each shield member of the one or more shield members comprises a body characterized by a substantially annular shape.
9 . The wireless power transmitting device of claim 8 , wherein each shield member of the one or more shield members defines a gap extending from an inner annular edge of the body to an outer annular edge of the body, and wherein the gap forms a discontinuity about a circumference of each shield member.
10 . The wireless power transmitting device of claim 9 , wherein each shield member further defines a plurality of slots extending from the inner annular edge of the body towards the outer annular edge of the body.
11 . The wireless power transmitting device of claim 8 , wherein each shield member of the one or more shield members comprises a grounding pin extending from an inner annular edge of the body and electrically coupling the shield member with a ground of the wireless power transmitting device.
12 . A wireless power transmitting device, comprising:
a contact surface configured to support one or more wireless power receiving devices; an induction coil; and a shield positioned between the induction coil and the contact surface, wherein the shield comprises a shield member overlying and aligned with the induction coil.
13 . The wireless power transmitting device of claim 12 , wherein the shield comprises a conductive chassis extending about a perimeter of the shield, and wherein the shield comprises a conductive sheet spanning an internal area defined by the conductive chassis.
14 . The wireless power transmitting device of claim 13 , wherein the conductive sheet comprises silver, and wherein the shield member comprises copper.
15 . The wireless power transmitting device of claim 13 , wherein the shield comprises a plurality of shield members, and wherein each shield member is electrically coupled with another shield member with a bridge or is electrically coupled with the conductive chassis with a conductive drain.
16 . A wireless power transmitting device, comprising:
a contact surface configured to support one or more wireless power receiving devices; one or more coils; and a shield positioned between the one or more coils and the contact surface, wherein the shield comprises:
a conductive chassis,
a conductive sheet extending across an internal area defined by the conductive chassis, and
a shield member positioned on the conductive sheet and overlying a coil of the one or more coils.
17 . The wireless power transmitting device of claim 16 , wherein the conductive sheet comprises a first material, wherein the shield member comprises a second material, and wherein the conductive sheet is characterized by a higher sheet resistance than the shield member.
18 . The wireless power transmitting device of claim 16 , wherein the shield comprises a plurality of shield members, and wherein each shield member is electrically coupled with another shield member with a bridge or is electrically coupled with the conductive chassis with a conductive drain.
19 . The wireless power transmitting device of claim 18 , wherein each coil of the one or more coils is characterized by a substantially annular shape, and wherein each shield member of the plurality of shield members comprises a body characterized by a substantially annular shape.
20 . The wireless power transmitting device of claim 19 , wherein each shield member of the plurality of shield members defines a gap extending from an inner annular edge of the body to an outer annular edge of the body, and wherein the gap forms a discontinuity about a circumference of each shield member body.Join the waitlist — get patent alerts
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