Skateboard equipped with a circuit breaker device

A circuit breaker device with an actuator on the power cable of skateboards prevents electrical damage from accidental disconnection, ensuring safe operation by switching to an open position upon force application.

FR3159104A1Active Publication Date: 2025-08-15SQ MOTORS
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Patent Information

Application Number
FR2024001326
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-02-12
Publication Date
2025-08-15
Estimated Expiration
2044-02-12

AI Technical Summary

Technical Problem

Existing skateboards with electric propulsion face risks of electrical damage due to accidental disconnection of the power cable, leading to potential electric arcs or power surges during use.

Method used

Incorporation of a circuit breaker device with an actuator on the power cable that automatically switches to an open position upon force application, preventing disconnection-induced electrical damage.

Benefits of technology

Ensures electrical safety by preventing overvoltage and electric arcs during cable disconnection, facilitating safe operation by requiring two-step connection and disconnection processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

Skateboard (1) comprising: - a platform (2) on which is fixed at least one electric propulsion motor (M) and at least one electrical power supply circuit (4), and - at least one battery (31) electrically connected to the at least one electrical power supply circuit (4) by means of at least one power cable (33), characterized in that the skateboard (1) comprises: - at least one circuit breaker device (6) configured to take an open position, and a closed position, and - an actuator (5) of the at least one circuit breaker device (6), the actuator (5) being fixed on the at least one power cable (33), the actuator (5) being configured to put the at least one circuit breaker device (6) in the open position when a force is applied to the at least one power cable (33). Figure 1
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Description

Title of the invention: Skateboard equipped with a circuit breaker device Technical field

[0001] The invention relates to the field of skateboards and in particular to a skateboard, a connection method and a disconnection method. State of the prior art

[0002] A skateboard, also known as a skateboard, is a platform on which a user positions himself to move.

[0003] Generally, a skateboard includes at least one wheel.

[0004] Skateboards are known which are equipped with an electric propulsion device comprising at least one electric propulsion motor and at least one electrical power supply circuit. The electric propulsion device makes it possible to rotate the at least one wheel.

[0005] A power supply for such a skateboard comprises at least one battery which is positioned on the platform or in a bag carried by the user, for example a backpack. The battery may be in a connected position or in a disconnected position from the electrical power supply circuit.

[0006] When the battery is carried by the user and in the connected position, the battery is electrically and physically connected to the electric propulsion motor by means of a power cable. In the disconnected position, the battery is not electrically or physically connected to the electrical power circuit.

[0007] It sometimes happens that the power cable is disconnected while the skateboard is in motion, for example when the user falls. This leads to a risk of creating an electric arc or a power surge which could damage the electrical power circuit.

[0008] There is therefore a need for a skateboard with better electrical safety in the event of accidental disconnection. Statement of the invention

[0009] One embodiment relates to a skateboard comprising:

[0010] - a platform on which at least one electric propulsion motor is fixed and at least one electrical power supply circuit for said at least one propulsion motor, the at least one electrical power supply circuit being provided with a first part of a power connector, and

[0011] - at least one battery electrically connected to the at least one electrical circuit power supply by means of at least one power cable, said at least one cable power supply being attached to the first part of the power connector by a second part of the power connector,

[0012] characterized in that the skateboard (1) comprises:

[0013] - at least one circuit breaker device configured to take an open position wherein the first portion of the power connector is electrically separated from the at least one propulsion motor, and a closed position wherein the first portion of the power connector is electrically connected to the at least one propulsion motor, and

[0014] - an actuator of the at least one circuit breaker device, the actuator being fixed on the at least one power cable, the actuator being configured to place the at least one circuit breaker device in the open position when a force is applied to the at least one power cable.

[0015] The platform is an element having, on a first face, at least one flat surface configured to allow a user to position themselves on it, preferably configured to allow a user to position their feet on it.

[0016] The platform comprises, on a second face opposite the first face, at least one wheel and preferably at least three wheels.

[0017] The platform comprises an electric propulsion motor configured to rotate the at least one wheel.

[0018] The platform comprises at least one electrical power supply circuit for the propulsion motor, said electrical power supply circuit being provided with a first part of a power connector. For example, the first part of the power connector comprises at least two female, or alternatively male, electrical terminals.

[0019] The propulsion motor is electrically powered by a battery which is electrically connected to the at least one electrical power supply circuit by means of a power cable. The power cable is provided with a second part of the power connector. For example, the second part of the power connector comprises at least two female, or alternatively male, electrical terminals.

[0020] The second part and the first part of the power connector are configured to cooperate with each other such that the second part can be inserted into the first part, or respectively the first part into the second part, in order to create an electrical connection between them.

[0021] The battery is configured to be carried by a user, for example in a bag. In other words, the battery is not fixed to the platform during operation of the skateboard. The battery may be in a connected position or in a disconnected position from the electrical power circuit.

[0022] In the connected position, the second part of the power connector cooperates with the first part of the power connector so that the battery is electrically and physically connected to the platform by the power cable.

[0023] In the disconnected position, the second part of the power connector is independent of the first part of the power connector such that the battery is electrically and physically disconnected from the platform.

[0024] The skateboard is innovative in that it includes a circuit breaker device that cooperates with an actuator.

[0025] The circuit breaker device can take an open position in which the first part of the power connector is electrically separated from the at least one propulsion motor. In this position, the battery can no longer electrically power the propulsion motor.

[0026] The circuit breaker device can also take a closed position in which the first part of the power connector is electrically connected to the at least one propulsion motor. In this position, the battery in the connected position can electrically power the propulsion motor.

[0027] The circuit breaker device is therefore a switch for interrupting or allowing the passage of an electric current. For example, the circuit breaker device comprises a switch.

[0028] The actuator is configured to modify the position of the circuit breaker device. More specifically, the actuator is configured to put the circuit breaker device in the open position when a force, for example a tensile force, is applied to the power cable, in particular when the battery is in the connected position. For this, the actuator is directly fixed to the power cable.

[0029] Indeed, a force on the power cable can cause a disconnection of the two parts of the power connector. The invention allows an opening of the electrical circuit, that is to say a placing in the open position of the circuit breaker device, so that said disconnection of the two parts of the power connector does not cause a degradation of the electrical power circuit by an overvoltage or an electric arc for example.

[0030] The subject matter of the present disclosure may also have one or more of the following characteristics taken alone or in combination.

[0031] In some embodiments, the actuator is configured to place the at least one circuit breaker device in the open position before disconnection of the two parts of the power connector.

[0032] In some embodiments, the actuator includes a connecting member integrally attached to the power cable, and a contact member configured to assume an engaged position in which the circuit breaker device is in the closed position, and a withdrawn position in which the circuit breaker device is in open position.

[0033] Thus, the contact element therefore controls the position taken by the circuit breaker device.

[0034] In some embodiments, the connecting element is a flexible element.

[0035] Thus a certain force, for example a force greater than a force threshold, must be applied to the power cable in order to modify the position of the actuator. It is therefore possible that when using the skateboard a small force, for example a force less than the force threshold, is exerted without causing an electrical disconnection of the propulsion motor.

[0036] The use of the skateboard is therefore facilitated.

[0037] In some embodiments, a point of attachment of the connecting element to the power cable is fixed.

[0038] In some embodiments, a length of the connecting element is less than a length of the power cable measured between an attachment point of the connecting element on the power cable and the second portion of the power connector.

[0039] Thus, when a force is exerted on the power cable, the contact element will be disconnected, that is to say, move into the withdrawn position, before disconnecting the two parts of the power connector. In other words, the circuit breaker device will move into the open position before the battery moves into the disconnected position. The electrical safety of the skateboard is therefore ensured.

[0040] In some embodiments, the contact element in the engaged position is configured to be removably attached to the at least one circuit breaker device.

[0041] In the engaged position, the contact element is fixed, i.e. in contact, with the circuit breaker device, and in the withdrawn position the contact element is no longer in contact, i.e. independent, of the circuit breaker device.

[0042] In some embodiments, the contact element in the engaged position is configured to be secured by a clip, or by an insert.

[0043] Thus, the transition from the engaged position to the withdrawn position is facilitated.

[0044] In some embodiments, the second portion of the power connector is removably attached to the first portion.

[0045] A force exerted on a part of the power connector makes it possible to separate said two parts.

[0046] Thus, the transition from the connected position of the battery to the disconnected position is facilitated.

[0047] The invention also relates to a method of connecting at least one battery of a skateboard according to any one of the preceding claims, including: - A fixing step in which the second part of the power connector is connected to the first part of the power connector, - A power stage in which the actuator is positioned to place the circuit breaker device in the closed position.

[0048] The electrical supply of the propulsion motor therefore requires two independent steps which can be carried out in any order.

[0049] In some embodiments, in the securing step, the second portion of the power connector is inserted into the first portion of the power connector.

[0050] In some embodiments, in the securing step, the battery is positioned in connected mode.

[0051] In some embodiments, in the powering step, the contact element is positioned in the engaged position.

[0052] The invention also relates to a method of disconnecting at least one battery from a skateboard according to any one of claims 1 to 7, comprising: - A cut-off step in which the actuator is positioned to put the circuit breaker device in the open position, - A disconnection step, subsequent to the cutting step, in which the second part of the power connector is removed from the first part of the power connector.

[0053] The electrical disconnection of the propulsion motor requires two successive steps so as not to create an overvoltage or an electric arc which could damage the electrical supply circuit.

[0054] In some embodiments, in the cutting step, the contact element is positioned in the withdrawn position.

[0055] In some embodiments, in the disconnecting step, the battery is positioned in disconnected mode. Brief description of the drawings

[0056] The invention will be better understood, thanks to the following description, which relates to an embodiment according to the present invention, given by way of non-limiting example and explained with reference to the appended schematic drawing, in which:

[0057] [Fig-1] is a schematic representation of a skateboard according to the invention. Description of the embodiments

[0058] Only the elements necessary for understanding the invention have been represented.

[0059] The invention relates to a skateboard comprising a platform 2.

[0060] The platform 2 is an element having, on a first face, at least one flat surface configured to allow a user to position themselves on it, preferably configured to allow a user to position their feet on it.

[0061] The platform 2 comprises, on a second face opposite the first face, at least one wheel and preferably at least three wheels. The wheels are configured to be placed in contact with the ground.

[0062] The platform 2 also comprises an electric propulsion motor M configured to rotate the wheels.

[0063] The platform 2 comprises at least one electrical power supply circuit 4 for the propulsion motor M. The electrical power supply circuit 4 is provided with a first part 411 of a power supply connector 4L. For example, the first part 411 of the power supply connector 41 comprises at least two female, or alternatively male, electrical terminals.

[0064] The electrical power supply circuit 4 finally comprises two fans and a lamp.

[0065] The electrical power supply circuit 4 also comprises a cut-off device circuit 6 configured to take an open position in which the first part 411 of the power connector 41 is electrically separated from the at least one propulsion motor M, and a closed position in which the first part 411 of the power connector 41 is electrically connected to the at least one propulsion motor M.

[0066] In the open position, no power supply can electrically power the propulsion motor M by being connected to the power connector 4L

[0067] In the closed position, a power supply connected to the power connector 41 can electrically supply the propulsion motor M.

[0068] The circuit breaker device 6 is therefore a switch for interrupting or allowing the passage of an electric current. For example, the circuit breaker device 6 comprises a switch.

[0069] The skateboard 1 also comprises at least one battery 31.

[0070] The battery 31 is configured to be carried by a user, for example in a bag 3. In other words, the battery 31 is not fixed on the platform 2 during operation of the skateboard 1. The battery comprises a connection connector 32 allowing the battery 31 to be electrically and physically connected to a power cable 33.

[0071] The power cable 33 comprises a second part 412 of the connector power connector 41. For example, the second part 412 of the power connector 41 comprises at least two female, or alternatively male, electrical terminals.

[0072] The second part 412 and the first part 411 of the power connector 41 are configured to cooperate with each other so that the second part 412 can be inserted into the first part 411, or respectively the first part 411 into the second part 412, in order to create an electrical connection between them.

[0073] In certain embodiments, the second part 412 of the power connector 41 is removably attached to the first part 411. A force exerted on a part 412, 411 of the power connector 41 makes it possible to separate said two parts 412, 411.

[0074] The battery 31 may be in a connected position or in a disconnected position from the electrical power supply circuit 4. In the connected position, the second part 412 of the power supply connector 41 cooperates with the first part 411 of the power supply connector so that the battery 31 is electrically and physically connected to the platform 2 by the power supply cable 33. In the connected position, the propulsion motor M is therefore electrically powered by the battery 31. In the disconnected position, the second part 412 of the power supply connector 41 is independent of the first part 411 of the power supply connector 41 so that the battery 31 is electrically and physically disconnected from the platform 2.

[0075] The skateboard 1 also comprises an actuator 5 of the at least one circuit breaker device 6.

[0076] The actuator 5 is configured to modify the position of the circuit breaker device 6. More precisely, the actuator 5 is configured to put the circuit breaker device 6 in the open position when a force, for example a tensile force, is applied to the power cable 33, in particular when the battery 31 is in the connected position. For this, the actuator 5 is fixed, in a fixed manner, to the power cable 33, at a fixing point 35.

[0077] In certain embodiments, the actuator 5 is configured to place the circuit breaker device 6 in the open position before a disconnection of the two parts 412, 411 of the power connector 4L.

[0078] As illustrated in [Fig.l], the actuator 5 comprises on the one hand a flexible connecting element 51, fixed integrally at the level of the fixing point 35 of the power cable 33, and on the other hand a contact element 52.

[0079] The attachment point 35 of the connecting element 51 on the power cable 33 is fixed.

[0080] More particularly, a length of the connecting element 51 is less than a length of the power cable 33 measured between a fixing point 35 of the connecting element 51 on the power cable 33 and the second part 412 of the connector. power supply 41.

[0081] The contact element 52 is configured to assume an engaged position in which the circuit breaker device 6 is in the closed position, and a withdrawn position in which the circuit breaker device 6 is in the open position.

[0082] In the engaged position, the contact element 52 is fixed, i.e. in contact, with the circuit breaker device 6, and in the withdrawn position the contact element 52 is no longer in contact, i.e. independent, of the circuit breaker device 6.

[0083] In some embodiments, the contact element 52 in the engaged position is configured to be removably attached to the circuit breaker device 6.

[0084] In some embodiments, the contact element 52 in the engaged position is configured to be secured by a clip, or by an insert.

[0085] The contact element 52 therefore controls the position taken by the circuit breaker device 6.

[0086] When a force is exerted on the power cable 33, the contact element 5 will be disconnected, that is to say, move into the withdrawn position, before disconnecting the two parts 411, 412 of the power connector 4L. In other words, the circuit breaker device 6 will move into the open position before the battery 31 moves into the disconnected position. The electrical safety of the skateboard is therefore ensured.

[0087] More precisely, and in order to facilitate use of the skateboard, the force exerted on the power cable 33 to disconnect the contact element 5 must be greater than a force threshold. Thus, it is possible that during use of the skateboard 1 a force less than the force threshold is exerted without causing an electrical disconnection of the propulsion motor M.

[0088] The invention allows opening of the electrical circuit, that is to say placing the circuit breaker device 6 in the open position, so that disconnection of the two parts 411, 412 of the power connector 41 does not cause damage to the electrical power circuit by an overvoltage or an electric arc for example.

[0089] A method of connecting the battery 31 of the skateboard 1 implements a fixing step in which the second part 412 of the power connector 41 is connected, for example inserted, to the first part 411 of the power connector 4L. In other words, in the fixing step, the battery 31 is positioned in connected mode.

[0090] The connection method also comprises a powering step in which the actuator 5 is positioned to put the circuit breaker device 6 in the closed position. In other words, in the powering step, the contact element 52 is positioned in the engaged position.

[0091] The electrical supply of the propulsion motor M therefore requires two independent steps which can be carried out in any order.

[0092] A method of disconnecting the battery 31 from the skateboard 1 comprises a cutting step in which the actuator 5 is positioned to put the circuit breaker device 6 in the open position. In other words, in the cutting step, the contact element 52 is positioned in the removed position.

[0093] The disconnection method also comprises a disconnection step, following the disconnection step, in which the second part 412 of the power connector 41 is removed from the first part 411 of the power connector 41. In other words, in the disconnection step, the battery 31 is positioned in disconnected mode.

[0094] The electrical disconnection of the propulsion motor M requires the two successive steps above so as not to create an overvoltage or an electric arc which could damage the electrical supply circuit.

[0095] Although the present invention has been described with reference to specific embodiments, it is obvious that modifications and changes may be made to these examples without departing from the general scope of the invention as defined by the claims. In particular, individual features of the various illustrated / mentioned embodiments may be combined in additional embodiments. Therefore, the description and drawings should be considered in an illustrative rather than restrictive sense.

[0096] It is also obvious that all the characteristics described with reference to a method are transposable, alone or in combination, to a device, and conversely, all the characteristics described with reference to a device are transposable, alone or in combination, to a method.

Claims

Claims

1. Skateboard (1) comprising: - a platform (2) on which is fixed at least one electric propulsion motor (M) and at least one electrical power supply circuit (4) of said at least one propulsion motor (M), the at least one electrical power supply circuit (4) being provided with a first part (411) of a power connector (41), and - at least one battery (31) electrically connected to the at least one electrical power supply circuit (4) by means of at least one power cable (33), said at least one power cable (33) being fixed to the first part (411) of the power connector (41) by a second part (412) of the power connector (41),characterized in that the skateboard (1) comprises: - at least one circuit breaker device (6) configured to take an open position in which the first part (411) of the power connector (41) is electrically separated from the at least one propulsion motor (M), and a closed position in which the first part (411) of the power connector (41) is electrically connected to the at least one propulsion motor (M), and - an actuator (5) of the at least one circuit breaker device (6), the actuator (5) being fixed on the at least one power cable (33), the actuator (5) being configured to put the at least one circuit breaker device (6) in the open position when a force is applied to the at least one power cable (33).,

2. A skateboard (1) according to claim 1, wherein the actuator (5) comprises a connecting element (51) integrally attached to the power cable (33), and a contact element (52) configured to assume an engaged position in which the circuit breaker device (6) is in the closed position, and a withdrawn position in which the circuit breaker device (6) is in the open position.

3. A skateboard (1) according to claim 2, wherein the connecting member (51) is a flexible member.

4. A skateboard (1) according to claim 2 or 3, wherein a length of the connecting member (51) is less than a length of the power cable (33) measured between an attachment point (35) of the connecting member (51) on the power cable (33) and the second part (412) of the power connector (41).

5. A skateboard (1) according to any one of claims 2 to 4, wherein the contact element (5) in the engaged position is configured to be removably attached to the at least one circuit breaker device (6).

6. A skateboard (1) according to claim 5, wherein the contact element (5) in the engaged position is configured to be secured by a clip, or by an insert.

7. A skateboard (1) according to any preceding claim, wherein the second portion (412) of the power connector (41) is removably attached to the first portion (411).

8. A method of connecting at least one battery (31) of a skateboard (1) according to any one of the preceding claims, comprising: - A fixing step in which the second part (412) of the power connector (41) is connected to the first part (411) of the power connector (41), - A powering step in which the actuator (5) is positioned to put the circuit breaker device (6) in the closed position.

9. Method for disconnecting at least one battery (31) from a skateboard (1) according to any one of claims 1 to 7, comprising: - A cutting step in which the actuator (5) is positioned to put the circuit breaker device (6) in the open position, - A disconnection step, subsequent to the cutting step, in which the second part (412) of the power connector (41) is removed from the first part (411) of the power connector (41).

Citation Information

Patent Citations

  • Electromagnetic shoe holder for sporting equipment has electromagnetic holding device where shoe's sole contacts sporting equipment and electrical contacting device between shoe and sporting device

    DE10237254A1

  • skateboard

    DE8914839U1

  • Electric skateboard

    US20140027192A1