WIRELESSLY RECHARGEABLE BATTERY AND COMPONENTS THEREOF
20180358815 ยท 2018-12-13
Inventors
Cpc classification
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M50/213
ELECTRICITY
H01F2003/005
ELECTRICITY
H02J50/70
ELECTRICITY
International classification
H02J5/00
ELECTRICITY
H02J50/70
ELECTRICITY
H01M10/46
ELECTRICITY
H02J50/00
ELECTRICITY
Abstract
A receiver coil assembly for a wirelessly rechargeable battery including first and second transverse coils and a third coil encompassing the first and second coils. The receiver coil may be employed in a power receiver of a wirelessly rechargeable battery. Also disclosed is a wirelessly rechargeable battery having a power receiver demountable from an electrochemical cell.
Claims
1. A coil assembly for charging a battery including: a. first and second receiver coils having magnetic axes oriented transverse to one another; b. a third receiver coil having a magnetic axis transverse to the magnetic axes of the first and second receiver coils; and c. a cylindrical casing having a base and a side wall, wherein at least one of the first, second and third receiver coils is configured to couple to a transmitter coil when the side wall is oriented perpendicular to a magnetic axis of the transmitter coil.
2. A coil assembly as claimed in claim 1 wherein the third coil is a substantially annular coil.
3. A coil assembly as claimed in claim 1 wherein the first and second coils are arranged in a cross.
4. A coil assembly as claimed in claim 1 including ferrite core material located within the first, second, and third coils.
5. A coil assembly as claimed in claim 4 wherein the ferrite core material is arranged in the form of a cross with the first and second coils wound about arms of the cross and the third coil wound about the distal ends of the arms of the cross.
6. A coil assembly as claimed in claim 1, wherein one of the coils enables greater power transfer than the other coils.
7. A coil assembly as claimed in claim 6 wherein the power transfer capacity of one of the coils is at least 10% more than that of the other coils.
8. A coil assembly as claimed in claim 7 wherein the power transfer capacitor of one of the coils is at least 20% more than that of the other coils.
9. A coil assembly as claimed in claim 6 wherein the length of the conductor of one of the coils is at least 25% greater than the length of the conductors of the other coils.
10. A coil assembly as claimed in claim 9 wherein the length of the conductor of one of the coils is at least 50% greater than the length of the conductors of the other coils.
11. A coil assembly as claimed in claim 1, further comprising a battery cell electronically coupled with the first, second, or third coils.
12. A coil assembly as claimed in claim 11 wherein the battery cell is magnetically shielded by a metal layer.
13. A coil assembly as claimed in claim 12 wherein the metal layer is of about one skin depth.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] The accompanying drawings which are incorporated in and constitute part of the specification, illustrate embodiments of the invention and, together with the general description of the invention given above, and the detailed description of exemplary embodiments given below, serve to explain the principles of the invention.
[0027]
[0028]
[0029]
DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
[0030]
[0031] The electrochemical cell may be magnetically shielded to avoid overheating when the battery is located in a charging alternating magnetic field. This may be achieved by providing metal shielding about the electrochemical cell. This may take the form of a metal foil applied about the exterior of sub-casing 3. The metal foil may be of about one skin depth with copper being a desirable metal due its desirable shielding properties.
[0032] Referring now to
[0033] The third coil is preferably annular so as to best conform to a cylindrical battery casing. The third coil may be designed have greater power transfer capacity than the other coils. This may be desirable where the battery has a normal or preferred orientation so that the third coil typically supplies power at the fastest rate whereas the first and second coils still allow power transfer in other orientations. The power transfer capacity of the third coil may be at least 10%, preferably 20% more than that of the first and second coils. To achieve this, the length of the conductor of the third coil may be at least 25%, preferably 50% greater than the length of the first and second coil conductors.
[0034] In an exemplary embodiment the mean diameter of the outer coil is 12 mm and has 50 turns whereas the mean diameter of the first and second windings is about 4 mm and each has 80 turns. The windings may all be 0.05 mm gauge insulated copper wire.
[0035]
[0036] The wirelessly rechargeable battery described offers a compact design offering enhanced coupling in a preferred orientation whilst ensuring adequate coupling in all directions. The demountable two part battery construction allows easy reuse of the power receiver avoiding waste and adverse environmental impact. Shielding the electrochemical cell avoids overheating and allows rapid charging.
[0037] While the present invention has been illustrated by the description of the embodiments thereof, and while the embodiments have been described in detail, it is not the intention of the applicant to restrict or in any way limit the scope of the appended claims to such detail. Additional advantages and modifications will readily appear to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details, representative apparatus and method, and illustrative examples shown and described. Accordingly, departures may be made from such details without departure from the spirit or scope of the applicant's general inventive concept.