Charging station, charging system and a method for automatically charging a device
11241133 ยท 2022-02-08
Assignee
Inventors
Cpc classification
B60L53/16
PERFORMING OPERATIONS; TRANSPORTING
A47L9/2884
HUMAN NECESSITIES
Y02T90/14
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
Y02T10/70
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
B60L53/35
PERFORMING OPERATIONS; TRANSPORTING
H02J7/0044
ELECTRICITY
Y02T90/12
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
Y02T10/7072
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
International classification
H02J7/00
ELECTRICITY
A47L9/28
HUMAN NECESSITIES
B60L53/35
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A charging station configured to be attached to a wall includes a main body, a rotatable arm, a restoring member, a charging port and a magnetic member. The main body is configured to be attached to the wall. The rotatable arm is rotatably connected to the main body. The restoring member is connected between the main body and the rotatable arm. The charging port and the magnetic member are disposed on a surface of the rotatable arm.
Claims
1. A charging station configured to be electrically connected to an electrical power socket on a wall, and configured to charge an automatic device, the charging station comprising: a main body configured to be electrically connected to the electrical power socket on the wall; a rotatable arm rotatably connected to the main body; a restoring member connected between the main body and the rotatable arm; a station-side charging port disposed on a bottom surface of the rotatable arm; and a station-side magnetic member disposed on the bottom surface of the rotatable arm, wherein an entirety of the charging station is disposed on the wall and located higher than the automatic device to allow the automatic device to move freely in an area beneath the charging station.
2. The charging station of claim 1, further comprising: a protective cover connected to the main body and covering the rotatable arm, the protective cover having an opening, wherein the station-side charging port is exposed through the opening when the rotatable arm is rotated relative to the main body to a charging position.
3. The charging station of claim 1, wherein the station-side magnetic member comprises a permanent magnet or an electromagnet.
4. The charging station of claim 1, wherein the main body has a recessed portion, and the rotatable arm is rotatably connected to a side wall of the recessed portion.
5. The charging station of claim 1, wherein the restoring member comprises a tension spring.
6. A charging system, comprising: a charging station configured to be electrically connected to an electrical power socket on a wall, the charging station having a station-side charging port and a station-side magnetic member that are disposed on a bottom surface of a rotatable arm; and a battery-powered automatic device configured to move on a floor, and comprising: a chassis; a device-side charging port disposed on the chassis and configured to electrically couple with the station-side charging port; and a device-side magnetic member disposed on the chassis and configured to attract and attach to the station-side magnetic member, wherein an entirety of the charging station is disposed on the wall and located higher than the battery-powered automatic device.
7. The charging system of claim 6, wherein the chassis has a top surface, the device-side charging port and the device-side magnetic member are exposed on the top surface.
8. A charging method configured to charge a battery-powered automatic device moving on a floor with a charging station electrically connected to an electrical power socket on a wall, the charging station comprising a main body, a rotatable arm rotatably connected to the main body, and a station-side charging port and a station-side magnetic member both disposed on a bottom surface of the rotatable arm, the automatic device comprising a device-side charging port and a device-side magnetic member, the charging method comprising: disposing the charging station on the wall, wherein an entirety of the charging station is disposed on the wall and located higher than the automatic device; moving the automatic device to an underside and below the charging station; and magnetically attracting the station-side magnetic member with the device-side magnetic member, such that the rotatable arm is rotated towards the automatic device, and that the station-side charging port electrically couples with the device-side charging port.
9. The charging method of claim 8, wherein the charging station further comprises a restoring member connected between the main body and the rotatable arm, and the charging method further comprises: after battery charging process is completed, decoupling the station-side magnetic member and the device-side magnetic member, such that the rotatable arm is rotated away from the automatic device by the restoring member, and that the station-side charging port detaches from the device-side charging port.
10. The charging method of claim 8, wherein the station-side magnetic member is a permanent magnet, the device-side magnetic member is an electromagnet, and magnetically attracting the station-side magnetic member with the device-side magnetic member comprises: providing electric power to the electromagnet to magnetically attract the permanent magnet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) To make the objectives, features, advantages, and embodiments of the present disclosure, including those mentioned above and others, more comprehensible, descriptions of the accompanying drawings are provided as follows.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) For the sake of the completeness of the description of the present disclosure, reference is made to the accompanying drawings and the various embodiments described below. Various features in the drawings are not drawn to scale and are provided for illustration purposes only. To provide full understanding of the present disclosure, various practical details will be explained in the following descriptions. However, a person with an ordinary skill in relevant art should realize that the present disclosure can be implemented without one or more of the practical details. Therefore, the present disclosure is not to be limited by these details.
(7) Reference is made to
(8) As shown in
(9) Reference is made to
(10) As shown in
(11) As shown in
(12) The station-side charging port 340 and the station-side magnetic members 350a and 350b are arranged in the same way as how the device-side charging port 220 and the device-side magnetic members 230a and 230b are arranged. In an embodiment of the present invention, the first electrode 340a, the second electrode 340b and the station-side magnetic members 350a and 350b are arranged straightly along a direction, and the station-side magnetic members 350a and 350b are positioned beside the first electrode 340a and the second electrode 340b.
(13) As shown in
(14) In some embodiments, as shown in
(15) It is to be understood that although the automatic device 200 and the charging station 300 are illustrated as having two magnetic members respectively, such as the device-side magnetic members 230a and 230b of the automatic device 200 and the station-side magnetic members 350a and 350b of the charging station 300 shown in
(16) Reference is made to
(17) Reference is made to
(18) Reference is made to
(19) Specifically, in the some embodiments, the station-side magnetic members 350a and 350b of the charging station 300 are permanent magnets, and the device-side magnetic members 230a and 230b of the automatic device 200 are electromagnets. When the device-side magnetic members 230a and 230b are not supplied with power, the rotatable arm 320 is at a standby position as shown in
(20) Reference is made to
(21) Specifically, after the battery charging process is completed, the power supply to the device-side magnetic members 230a and 230b is stopped such that the magnetic poles of the device-side magnetic members 230a and 230b no longer exist. At this stage, the station-side magnetic members 350a and 350b are no longer magnetically attracted by the device-side magnetic members 230a and 230b. Consequently, the rotatable arm 320 is rotated upwards from the charging position as shown in
(22) When the automatic device 200 is performing cleaning task in the area beneath the charging station 300, the automatic device 200 can clean the area under the charging station 300 and moves freely. At this stage, the device-side magnetic members 230a and 230b are not supplied with power and the magnetic poles of the device-side magnetic members 230a and 230b do not exist. Therefore, the station-side magnetic members 350a and 350b would not be attracted by the device-side magnetic members 230a and 230b when the automatic device 200 is performing cleaning task, which prevents the automatic device 200 from being impacted by the rotatable arm 320 due to inadvertent or undesired rotation of the rotatable arm 320.
(23) It is to be understood that the configurations of the station-side magnetic members 350a and 350b and the device-side magnetic members 230a and 230b are not limited to the embodiments described above. In some embodiments, the station-side magnetic members 350a and 350b comprise ferromagnetic material. In some embodiments, the station-side magnetic members 350a and 350b may also be electromagnetic material. The station-side magnetic members 350a and 350b may be constantly supplied with power to maintain the magnetism, or the power is supplied to the station-side magnetic members 350a and 350b only when the charging station 300 detects that the automatic device 200 is at the predetermined position for battery charging. Alternatively, the charging system 100 may include a wireless communication component configured to establish wireless communication with the automatic device 200. When the automatic device 200 moves to the predetermined position beneath the charging station 300 and enters into the battery charging mode, the automatic device 200 may send a notification signal to the charging station 300 through the wireless communication. The charging station 300 then supplies power to the station-side magnetic members 350a and 350b upon the receipt of the notification signal, such that the station-side magnetic members 350a and 350b have the magnetisms attracted by the device-side magnetic members 230a and 230b.
(24) In summary, the charging station of the present disclosure has a station-side charging port and a station-side magnetic member disposed on a rotatable arm. With this arrangement, the rotatable arm of the charging station can be rotated by the magnetic force, such that the station-side charging port couples with a device-side charging port of an automatic device and performs the battery charging task. The charging station further includes a restoring member that is connected to the rotatable arm. After the battery charging process is completed, the restoring force provided by the restoring member will separate the station-side charging port of the charging station from the device-side charging port of the automatic device, such that the automatic device can leave the charging station freely. The damage to the charging ports is prevented.
(25) Although the present disclosure has been described by way of the exemplary embodiments above, the present disclosure is not to be limited to those embodiments. Any person skilled in the art can make various changes and modifications without departing from the spirit and the scope of the present disclosure. Therefore, the protective scope of the present disclosure shall be the scope of the claims as attached.