Electronic components and electronic devices

By introducing a stabilizing unit into the flashlight, the circuit board and housing are supported by the upper and lower stabilizing parts, which solves the problems of inconvenient operation and poor waterproof performance caused by the switch or charging port sinking into the housing, and achieves stable assembly and good waterproof effect.

CN115523434BActive Publication Date: 2026-07-17YUYAO YUCHANG ELECTRICAL APPLIANCE

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
YUYAO YUCHANG ELECTRICAL APPLIANCE
Filing Date
2021-06-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing flashlights, the switches or charging ports integrated on the circuit board are recessed into the assembly space of the casing, resulting in a poor user experience, easy misalignment, and affecting waterproof performance.

Method used

The system employs a stabilizing unit, including upper and lower stabilizing parts, which support the circuit board and the housing respectively, preventing the circuit board from shifting under stress. The protrusion of the upper stabilizing part is embedded into the control channel of the housing to ensure a stable assembly, and anti-slip elements are provided on the lower stabilizing part to increase friction.

Benefits of technology

It improves the stable assembly relationship and waterproof performance of electronic components, avoids the sinking or misalignment of switches or charging ports, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115523434B_ABST
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Abstract

This invention discloses an electronic component and an electronic device, wherein the electronic component includes a circuit board, at least one controlled unit, a housing, and at least one stabilizing unit. The controlled unit is disposed on the circuit board. The housing has an assembly space and at least one operating channel communicating with the assembly space. The circuit board is mounted in the assembly space of the housing, and the controlled unit corresponds to the operating channel of the housing. The stabilizing unit is disposed between the circuit board and the housing, and opposite sides of the stabilizing unit support the circuit board and the housing respectively to prevent the circuit board from shifting relative to the housing when subjected to force.
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Description

Technical Field

[0001] This invention relates to an electronic device, and more particularly to an electronic component and an electronic device. Background Technology

[0002] Electronic devices, such as flashlights, are limited by the size of their housings, resulting in a small assembly space. Circuit boards that integrate switches or charging ports are typically assembled into the housing using an insert-type assembly method. That is, the circuit board is inserted into the assembly space of the housing from one end, and the switch or charging port integrated into the circuit board corresponds to the switch opening or charging port opening of the housing in the assembly space. In this way, the user can operate the flashlight by the switch or charge the flashlight battery through the charging port from outside the housing. In existing flashlights, the switches or charging ports integrated on the circuit board are recessed into the housing's assembly space. This design leads to several drawbacks: First, the recessed location of the switches or charging ports results in a poor user experience when using them from outside the housing. Second, this recessed location causes the switches or charging ports to wobble when used from outside the housing, potentially leading to misalignment and rendering the flashlight unusable. Third, gaps easily form between the switches or charging ports and the housing, directly connecting to the switch or charging port openings, which severely compromises the flashlight's waterproof performance. Summary of the Invention

[0003] One object of the present invention is to provide an electronic component and an electronic device, wherein the electronic component has a robust assembly relationship.

[0004] One object of the present invention is to provide an electronic component and an electronic device, wherein the electronic component has good waterproof performance.

[0005] One object of the present invention is to provide an electronic component and an electronic device, wherein the controlled elements of the electronic component do not sink or misalign relative to the housing when operated, so as to provide the electronic component with a stable assembly relationship.

[0006] One object of the present invention is to provide an electronic component and an electronic device, wherein the electronic component provides a circuit board and at least one stabilizing unit, the circuit board being mounted in the assembly space of the housing, the controlled element integrated in the circuit board corresponding to the control channel of the housing, and the opposite sides of the stabilizing unit supporting the circuit board and the inner wall of the housing respectively to prevent the circuit board from shifting relative to the housing when subjected to force.

[0007] One object of the present invention is to provide an electronic component and an electronic device, wherein the stabilizing unit includes an upper stabilizing portion and a lower stabilizing portion, the upper stabilizing portion and the lower stabilizing portion respectively supporting the circuit board and the housing on opposite sides of the circuit board, so as to further ensure that the electronic component has a stable assembly relationship.

[0008] According to one aspect of the present invention, an electronic component is provided, comprising:

[0009] A circuit board;

[0010] At least one controlled unit, wherein the controlled unit is disposed on the circuit board;

[0011] A housing having an assembly space and at least one operating channel communicating with the assembly space, wherein a circuit board is mounted in the assembly space of the housing, and the controlled unit corresponds to the operating channel of the housing; and

[0012] At least one stabilizing unit is provided, wherein the stabilizing unit is disposed between the circuit board and the housing, and the opposite sides of the stabilizing unit support the circuit board and the housing respectively to prevent the circuit board from shifting relative to the housing when subjected to force.

[0013] According to one embodiment of the present invention, the stabilizing unit includes an upper stabilizing portion and a lower stabilizing portion, the upper stabilizing portion and the lower stabilizing portion being respectively disposed on opposite sides of the circuit board.

[0014] According to one embodiment of the present invention, the upper stabilizing portion includes an upper stabilizing body having a first plate side and a first wall side corresponding to the first plate side. The first plate side of the upper stabilizing body is attached to one side of the circuit board and the first wall side is attached to the inner wall of the housing. Correspondingly, the lower stabilizing portion includes a lower stabilizing body having a second plate side and a second wall side corresponding to the second plate side. The second plate side of the lower stabilizing body is attached to the other side of the circuit board and the second wall side is attached to the inner wall of the housing.

[0015] According to one embodiment of the present invention, the upper stabilizing body has a controlled channel extending from the first plate side to the first wall side, wherein the controlled unit corresponds to the controlled channel of the upper stabilizing body.

[0016] According to one embodiment of the present invention, the upper stabilizing portion includes a protrusion that extends integrally outward from the first wall side of the upper stabilizing body, and the controlled channel of the upper stabilizing body extends to the protrusion and forms a through channel in the protrusion, wherein the protrusion of the upper stabilizing portion is embedded in the operating channel of the housing.

[0017] According to one embodiment of the present invention, the lower stabilizing portion includes at least one anti-slip element formed on the second wall side of the lower stabilizing body.

[0018] According to one embodiment of the present invention, the upper stabilizing body has at least one first clearance space, which extends from the first plate side to the first wall side to a suitable position to avoid circuit elements integrated on the circuit board.

[0019] According to one embodiment of the present invention, the lower stabilizing body has at least one second clearance space, which extends from the second plate side to the second wall side to a suitable position to avoid circuit elements integrated on the circuit board.

[0020] According to another aspect of the invention, the invention further provides an electronic device comprising a control section and a power supply section and a working section respectively disposed in the control section, wherein the control section further comprises:

[0021] A front-end circuit board;

[0022] A front-end controlled unit, wherein the front-end controlled unit is disposed on the front-end circuit board;

[0023] A front-end housing, wherein the front-end housing has a front-end mounting space and at least one front-end operation channel communicating with the front-end mounting space, wherein a front-end circuit board is mounted in the front-end mounting space of the front-end housing, and a front-end controlled unit corresponds to the front-end operation channel of the front-end housing; and

[0024] At least one front-end stabilizing unit is provided, wherein the front-end stabilizing unit is disposed between the front-end circuit board and the front-end housing, and the opposite sides of the front-end stabilizing unit support the front-end circuit board and the front-end housing respectively, so as to prevent the front-end circuit board from shifting relative to the front-end housing when subjected to force.

[0025] According to one embodiment of the present invention, the front-end stabilizing unit includes an upper front-end stabilizing part and a lower front-end stabilizing part, the upper front-end stabilizing part and the lower front-end stabilizing part being respectively disposed on opposite sides of the front-end circuit board.

[0026] According to one embodiment of the present invention, the upper front end stabilizing part includes an upper front end stabilizing body, the upper front end stabilizing body having a first front end plate side and a first front end wall side corresponding to the first front end plate side, the first front end plate side of the upper front end stabilizing body being attached to one side of the front end circuit board and the first front end wall side being attached to the inner wall of the front end housing. Correspondingly, the lower front end stabilizing part includes a lower front end stabilizing body, the lower front end stabilizing body having a second front end plate side and a second front end wall side corresponding to the second front end plate side, the second front end plate side of the lower front end stabilizing body being attached to the other side of the front end circuit board and the second front end wall side being attached to the inner wall of the front end housing.

[0027] According to one embodiment of the present invention, the upper front end stabilizing body has a front end controlled channel, the front end controlled channel extending from the first front end plate side to the first front end wall side, wherein the front end controlled unit corresponds to the front end controlled channel of the upper front end stabilizing body.

[0028] According to one embodiment of the present invention, the upper front end stabilizing portion includes a front end protrusion that extends integrally outward from the first front end wall side of the upper front end stabilizing body, and the front end controlled channel of the upper front end stabilizing body extends to the front end protrusion and forms a through channel in the front end protrusion. The control portion further includes a deformable switch cap, the switch cap including a cap body and an actuator integrally extending downward from the cap body, and having a retaining groove formed between the cap body and the actuator. The switch cap is mounted on the upper front end stabilizing portion such that the actuator extends towards the front end controlled unit via the front end controlled channel of the upper front end stabilizing body and the front end protrusion is retained in the retaining groove. The cap body of the switch cap extends to the outside of the front end housing via the front end control channel of the front end housing.

[0029] According to one embodiment of the present invention, the lower front end stabilizing portion includes at least one front anti-slip element, which is formed on the second front end wall side of the lower front end stabilizing body.

[0030] According to one embodiment of the present invention, the upper front end stabilizing body has at least one first front end clearance space, which extends from the first front end plate side to the first front end wall side to a suitable position to avoid circuit elements integrated on the front end circuit board.

[0031] According to one embodiment of the present invention, the lower front end stabilizing body has at least one second front end clearance space, which extends from the second front end plate side to the second front end wall side to a suitable position to avoid circuit elements integrated on the front end circuit board.

[0032] According to one embodiment of the present invention, the electronic device further includes a charging section, wherein the charging section is disposed on the power supply section, and wherein the charging section further includes:

[0033] A rear-end circuit board;

[0034] A back-end controlled unit, wherein the back-end controlled unit is disposed on the back-end circuit board;

[0035] A rear-end housing, wherein the rear-end housing has a rear-end mounting space and at least one rear-end operation channel communicating with the rear-end mounting space, wherein a rear-end circuit board is mounted in the rear-end mounting space of the rear-end housing, and a rear-end controlled unit corresponds to the rear-end operation channel of the rear-end housing; and

[0036] At least one rear-end stabilizing unit is provided, wherein the rear-end stabilizing unit is disposed between the rear-end circuit board and the rear-end housing, and the opposite sides of the rear-end stabilizing unit support the rear-end circuit board and the rear-end housing respectively, so as to prevent the rear-end circuit board from shifting relative to the rear-end housing when subjected to force.

[0037] According to one embodiment of the present invention, the rear end stabilizing unit includes an upper rear end stabilizing part and a lower rear end stabilizing part, the upper rear end stabilizing part and the lower rear end stabilizing part being respectively disposed on opposite sides of the rear end circuit board.

[0038] According to one embodiment of the present invention, the upper rear end stabilizing portion includes an upper rear end stabilizing body, the upper rear end stabilizing body having a first rear end plate side and a first rear end wall side corresponding to the first rear end plate side, the first rear end plate side of the upper rear end stabilizing body being attached to one side of the rear circuit board and the first rear end wall side being attached to the inner wall of the rear housing. Correspondingly, the lower rear end stabilizing portion includes a lower rear end stabilizing body, the lower rear end stabilizing body having a second rear end plate side and a second rear end wall side corresponding to the second rear end plate side, the second rear end plate side of the lower rear end stabilizing body being attached to the other side of the rear circuit board and the second rear end wall side being attached to the inner wall of the rear housing.

[0039] According to one embodiment of the present invention, the upper rear end stabilizing body has a rear end controlled channel extending from the first rear end plate side to the first rear end wall side, wherein the rear end controlled unit corresponds to the rear end controlled channel of the upper rear end stabilizing body.

[0040] According to one embodiment of the present invention, the upper rear end stabilizing portion includes a rear end protrusion, the rear end protrusion extending integrally outward from the first rear end wall side of the upper rear end stabilizing body, and the rear end controlled channel of the upper rear end stabilizing body extending to the rear end protrusion and forming a through channel in the rear end protrusion, wherein the rear end protrusion of the upper rear end stabilizing portion is embedded in the rear end control channel of the rear end housing.

[0041] According to one embodiment of the present invention, the lower rear end stabilizing portion includes at least one rear end anti-slip element, which is formed on the second rear end wall side of the lower rear end stabilizing body.

[0042] According to one embodiment of the present invention, the upper rear end stabilizing body has at least one first rear end clearance space, which extends from the first rear end plate side to the first rear end wall side to a suitable position to avoid circuit elements integrated on the rear end circuit board.

[0043] According to one embodiment of the present invention, the lower rear end stabilizing body has at least one second rear end clearance space, which extends from the second rear end plate side to the second rear end wall side to a suitable position to avoid circuit elements integrated on the rear end circuit board. Attached Figure Description

[0044] Figure 1 This is a perspective view of an electronic component according to a preferred embodiment of the present invention.

[0045] Figure 2 This is an exploded view of the electronic component according to the above-described preferred embodiment of the present invention.

[0046] Figure 3 This is a cross-sectional schematic diagram of the electronic component according to the above-described preferred embodiment of the present invention.

[0047] Figure 4 This is a perspective view of an electronic device according to a preferred embodiment of the present invention.

[0048] Figure 5 This is an exploded view of the electronic device according to the above-described preferred embodiment of the present invention.

[0049] Figure 6AThis is an exploded view of a control section of the electronic device according to the above-described preferred embodiment of the present invention.

[0050] Figure 6B This is an exploded view of a charging section of the electronic device according to the above-described preferred embodiment of the present invention.

[0051] Figure 7 This is a cross-sectional schematic diagram of the electronic device according to the above-described preferred embodiment of the present invention.

[0052] Figure 8A yes Figure 7 An enlarged diagram of position A.

[0053] Figure 8B yes Figure 7 An enlarged diagram of position B. Detailed Implementation

[0054] The following description is intended to disclose the present invention and enable those skilled in the art to implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art. The basic principles of the invention defined in the following description can be applied to other embodiments, modifications, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the invention.

[0055] Those skilled in the art should understand that, in the disclosure of this invention, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limiting this invention.

[0056] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.

[0057] Refer to the appendix to the specification of this invention. Figures 1 to 3 An electronic component according to a preferred embodiment of the present invention will be disclosed and described in the following description, wherein the electronic component includes a housing 10, a circuit board 20, at least one controlled unit 30 and at least one stabilizing unit 40.

[0058] The housing 10 has an assembly space 11 and at least one control channel 12 communicating with the assembly space 11. The controlled unit 30 is disposed on the circuit board 20 such that the controlled unit 30 is integrated into the circuit board 20, for example, the controlled unit 30 is disposed on the circuit board 20 in a surface mount manner such that the controlled unit 30 is integrated into the circuit board 20. The circuit board 20 is mounted on the assembly space 11 of the housing 10, and the controlled unit 30 in the assembly space 11 of the housing 10 corresponds to the control channel 12 of the housing 10. The stabilizing unit 40 is disposed between the circuit board 20 and the housing 10, and the opposite sides of the stabilizing unit 40 support the circuit board 20 and the housing 10 respectively. Thus, when the controlled unit 30 is operated and the circuit board 20 is subjected to force, the stabilizing unit 40 can prevent the circuit board 20 from shifting relative to the housing 10, thereby further preventing the controlled unit 30 from sinking or misaligning, which helps to ensure a stable assembly relationship of the electronic components.

[0059] It is understood that both the circuit board 20 and the stabilizing unit 40 are mounted in the mounting space 11 of the housing 10 to allow the housing 10 to surround the circuit board 20 and the stabilizing unit 40, thereby forming the general appearance of the electronic component and protecting the circuit board 20 and the stabilizing unit 40.

[0060] Further, please refer to the appendix. Figures 1 to 3 The stabilizing unit 40 includes an upper stabilizing part 41 and a lower stabilizing part 42, wherein the upper stabilizing part 41 and the lower stabilizing part 42 support the circuit board 20 and the housing 10 on opposite sides of the circuit board 20, respectively, to further ensure that the electronic components have a stable assembly relationship.

[0061] Specifically, the upper stabilizing part 41 includes an upper stabilizing body 411, the upper stabilizing body 411 having a first plate side 4111, a first wall side 4112 corresponding to the first plate side 4111, and a controlled channel 4110 extending from the first plate side 4111 to the first wall side 4112. When the upper stabilizing part 41 is installed between the circuit board 20 and the housing 10, the controlled channel 4110 of the upper stabilizing body 411 corresponds to and communicates with the control channel 12 of the housing 10. The first plate side 4111 of the upper stabilizing body 411 is attached to the surface of the circuit board 20, and the controlled unit 30 integrated into the circuit board 20 corresponds to the controlled channel 4110 of the upper stabilizing body 411. The first wall side 4112 of the upper stabilizing body 411 is attached to an inner wall 13 of the housing 10 that defines the assembly space 11. Thus, the opposite sides of the upper stabilizing part 41 support the circuit board 20 and the housing 10, respectively. Correspondingly, the lower stabilizing part 42 includes a lower stabilizing body 421, which has a second plate side 4211 and a second wall side 4212 corresponding to the second plate side 4211. When the lower stabilizing part 42 is installed between the circuit board 20 and the housing 10, the second plate side 4211 of the lower stabilizing body 421 is attached to the surface of the circuit board 20, and the second wall side 4212 of the lower stabilizing body 421 is attached to the inner wall 13 of the housing 10. Thus, the opposite sides of the lower stabilizing part 42 support the circuit board 20 and the housing 10 respectively. In this way, the upper stabilizing part 41 and the lower stabilizing part 42 support the circuit board 20 and the housing 10 on opposite sides of the circuit board 20, effectively ensuring a stable assembly relationship for the electronic components.

[0062] Preferably, the shape and size of the first wall side 4112 of the upper stabilizing body 411 of the upper stabilizing portion 41 are arranged to match the shape and size of the inner wall 13 of the housing 10. Correspondingly, the shape and size of the second wall side 4212 of the lower stabilizing body 421 of the lower stabilizing portion 42 are arranged to match the shape and size of the inner wall 13 of the housing 10. Thus, when the upper stabilizing portion 41 and the lower stabilizing portion 42 are respectively installed between the opposite sides of the circuit board 20 and the housing 10, the first wall side 4112 of the upper stabilizing body 411 of the upper stabilizing portion 41 can reliably fit against the inner wall of the housing 10, and the second wall side 4212 of the lower stabilizing body 421 of the lower stabilizing portion 42 can reliably fit against the inner wall of the housing 10. For example, in the attached Figures 1 to 3In this specific example of the electronic component shown, the housing 10 is a cylindrical housing, and the inner wall 13 of the housing 10 is a circular inner wall. Correspondingly, the first wall side 4112 of the upper stabilizing body 411 of the upper stabilizing portion 41 is arc-shaped so that the first wall side 4112 of the upper stabilizing body 411 of the upper stabilizing portion 41 can reliably fit against the inner wall 13 of the housing 10. The second wall side 4212 of the lower stabilizing body 421 of the lower stabilizing portion 42 is arc-shaped so that the second wall side 4212 of the lower stabilizing body 421 of the lower stabilizing portion 42 can reliably fit against the inner wall 13 of the housing 10.

[0063] Continue to refer to the appendix Figures 1 to 3 The upper stabilizing body 411 of the upper stabilizing portion 41 further has at least one first clearance space 4113, which extends from the first plate side 4111 toward the first wall side 4112 to a suitable position to avoid circuit elements (e.g., but not limited to resistors and capacitors) integrated on the surface of the circuit board 20. Specifically, when the first plate side 4111 of the upper stabilizing body 411 of the upper stabilizing portion 41 is attached to the surface of the circuit board 20, the circuit elements integrated on the circuit board 20 are accommodated in the first clearance space 4113, thus allowing the upper stabilizing body 411 to avoid the circuit elements and prevent the circuit elements from being compressed. Correspondingly, the lower stabilizing body 421 of the lower stabilizing portion 42 further has at least one second clearance space 4213, which extends from the second plate side 4211 toward the second wall side 4212 to a suitable position to avoid circuit elements integrated on the surface of the circuit board 20. Specifically, when the second plate side 4211 of the lower stabilizing body 421 of the lower stabilizing portion 42 is attached to the surface of the circuit board 20, the circuit elements integrated into the circuit board 20 are accommodated in the second clearance space 4213, thereby allowing the lower stabilizing body 421 to avoid the circuit elements and prevent the circuit elements from being compressed.

[0064] Continue to refer to the appendix Figures 1 to 3The upper stabilizing portion 41 further includes a protrusion 412, which extends integrally outward from the first wall side 4112 of the upper stabilizing body 411, and the controlled channel 4110 of the upper stabilizing body 411 further extends to the protrusion 412 and forms a through channel in the protrusion 412. After the upper stabilizing body 411 of the upper stabilizing portion 41 is held between the circuit board 20 and the housing 10, the protrusion 412 of the upper stabilizing portion 41 is embedded in the control channel 12 of the housing 10, thus ensuring a stable assembly relationship between the upper stabilizing portion 41 and the housing 10.

[0065] Preferably, the shape and size of the protrusion 412 of the upper stabilizing portion 41 are arranged to match the shape and size of the control channel 12 of the housing 10, so that after the protrusion 412 of the upper stabilizing portion 41 is embedded in the control channel 12 of the housing 10, a gap can be avoided between the protrusion 412 and the housing 10, thereby giving the electronic component good waterproof performance.

[0066] Continue to refer to the appendix Figures 1 to 3 The lower stabilizing portion 42 includes at least one anti-slip element 422, which is formed on the second wall side 4212 of the lower stabilizing body 421 to increase the friction between the lower stabilizing portion 42 and the outer casing 10, thereby preventing the lower stabilizing portion 42 from rotating relative to the outer casing 10. Simultaneously, the anti-slip element 422 serves to guide the lower stabilizing portion 42 to be easily inserted into the assembly space 11 of the outer casing 10. Preferably, the end of the anti-slip element 422 is beveled to form a chamfer, thus facilitating the guidance of the lower stabilizing portion 42 into the assembly space 11 of the outer casing 10 during assembly.

[0067] See the accompanying drawings of the specification of this invention. Figures 4 to 8BAn electronic device according to a preferred embodiment of the present invention will be disclosed and described in the following description, wherein the electronic device includes a control section 100', a power supply section 200', and a working section 300', the control section 100' being mounted on the power supply section 200', the working section 300' being disposed on the control section 100', and the control section 100' controlling the power supply state of the power supply section 200' to the working section 300'. When the control section 100' allows the power supply section 200' to supply power to the working section 300', the working section 300' is in a powered state; correspondingly, when the control section 100' refuses the power supply section 200' to supply power to the working section 300', the working section 300' is in a non-working state.

[0068] It is worth mentioning that, in the appendix Figures 4 to 8B In this specific example of the illustrated electronic device, the electronic device is embodied as a handheld lamp, wherein the working part 300' is configured to generate light. Alternatively, in other specific examples of the electronic device, the electronic device may be, but is not limited to, an electric toothbrush or a curling iron, and correspondingly, the working part 300' is configured to generate vibration or heat.

[0069] Continue to refer to the appendix Figures 4 to 8BThe control unit 100' includes a front housing 10', a front circuit board 20', a front controlled unit 30', and a front stabilizing unit 40'. The front housing 10' has a front mounting space 11' and a front operating channel 12' communicating with the front mounting space 11'. The front controlled unit 30' is disposed on the front circuit board 20', thus integrating the front controlled unit 30' into the front circuit board 20', for example, the front controlled unit 30' is disposed on the front circuit board 20' in a surface mount manner, thus integrating the front controlled unit 30' into the front circuit board 20'. The front circuit board 20' is mounted in the front mounting space 11' of the front housing 10', and the front controlled unit 30' in the front mounting space 11' of the front housing 10' corresponds to the front operating channel 12' of the front housing 10'. The front-end stabilizing unit 40' is disposed between the front-end circuit board 20' and the front-end housing 10', and the front-end stabilizing unit 40' supports the front-end circuit board 20' and the front-end housing 10' on opposite sides respectively. In this way, when the front-end controlled unit 30' is operated and the front-end circuit board 20' is subjected to force, the front-end stabilizing unit 40' can prevent the front-end circuit board 20' from shifting relative to the front-end housing 10', thereby further preventing the front-end controlled unit 30' from sinking or misaligning, so as to help ensure that the electronic device has a stable assembly relationship.

[0070] Specifically, the front-end controlled unit 30' is a switch, such as a push-button switch. That is, the user can switch the working state of the front-end controlled unit 30' between a conducting state and a disconnected state by pressing the front-end controlled unit 30'. When the front-end controlled unit 30' is pressed and switched from the disconnected state to the conducting state, the front-end controlled unit 30' allows the power supply part 200' to supply power to the working part 300', so that the working part 300' is in a working state. Correspondingly, when the front-end controlled unit 30' is pressed and switched from the conducting state to the disconnected state, the front-end controlled unit 30' prevents the power supply part 200' from supplying power to the working part 300', so that the working part 300' is in a non-working state.

[0071] Further, please refer to the appendix. Figures 4 to 8B The front-end stabilizing unit 40' includes an upper front-end stabilizing part 41' and a lower front-end stabilizing part 42', wherein the upper front-end stabilizing part 41' and the lower front-end stabilizing part 42' respectively support the front-end circuit board 20' and the front-end housing 10' on opposite sides of the front-end circuit board 20', so as to further include the control part 100' of the electronic device having a stable assembly relationship.

[0072] Specifically, the upper front end stabilizing part 41' includes an upper front end stabilizing body 411', the upper front end stabilizing body 411' having a first front end plate side 4111', a first front end wall side 4112' corresponding to the first front end plate side 4111', and a front end controlled channel 4110' extending from the first front end plate side 4111' to the first front end wall side 4112'. When the upper front end stabilizing part 41' is installed between the front circuit board 20' and the front housing 10', the front control channel 4110' of the upper front end stabilizing body 411' corresponds to and communicates with the front operation channel 12' of the front housing 10'. The first front plate side 4111' of the upper front end stabilizing body 411' is attached to the surface of the front circuit board 20', and the front control unit 30' integrated into the front circuit board 20' corresponds to the front control channel 4110' of the upper front end stabilizing body 411'. The first front wall side 4112' of the upper front end stabilizing body 411' is attached to a front inner wall 13' of the front housing 10' that defines the front assembly space 11'. Thus, the opposite sides of the upper front end stabilizing part 41' support the front circuit board 20' and the front housing 10' respectively.

[0073] Accordingly, the lower front end stabilizing portion 42' includes a lower front end stabilizing body 421', which has a second front end plate side 4211' and a second front end wall side 4212' corresponding to the second front end plate side 4211'. When the lower front end stabilizing portion 42' is installed between the front end circuit board 20' and the front end housing 10', the second front end plate side 4211' of the lower front end stabilizing body 421' is attached to the surface of the front end circuit board 20', and the second front end wall side 4212' of the lower front end stabilizing body 421' is attached to the front end inner wall 13' of the front end housing 10', thus the opposite sides of the lower front end stabilizing portion 42' respectively support the front end circuit board 20' and the front end housing 10'. Thus, the upper front end stabilizing part 41' and the lower front end stabilizing part 42' respectively support the front end circuit board 20' and the front end housing 10' on opposite sides of the front end circuit board 20', so as to effectively ensure that the control part 100' of the electronic device has a stable assembly relationship.

[0074] Preferably, the shape and size of the first front wall side 4112' of the upper front stabilizing body 411' of the upper front stabilizing portion 41' are arranged to match the shape and size of the front inner wall 13' of the front housing 10'. Correspondingly, the shape and size of the second front wall side 4212' of the lower front stabilizing body 421' of the lower front stabilizing portion 42' are arranged to match the shape and size of the front inner wall 13' of the front housing 10'. Thus, in the upper front stabilizing portion... When the upper front end stabilizer 41' and the lower front end stabilizer 42' are respectively installed between the opposite sides of the front circuit board 20' and the front housing 10', the first front wall side 4112' of the upper front end stabilizer 41' can reliably fit against the inner wall of the front housing 10', and the second front wall side 4212' of the lower front end stabilizer 42' can reliably fit against the inner wall of the front housing 10'. For example, in the attached... Figures 4 to 8B In this specific example of the illustrated electronic device, the front housing 10' is a cylindrical housing, and the front inner wall 13' of the front housing 10' is a circular inner wall. Correspondingly, the first front wall side 4112' of the upper front stabilizing body 411' of the upper front stabilizing portion 41' is arc-shaped so that the first front wall side 4112' of the upper front stabilizing body 411' of the upper front stabilizing portion 41' can reliably fit against the front inner wall 13' of the front housing 10'. The second front wall side 4212' of the lower front stabilizing body 421' of the lower front stabilizing portion 42' is arc-shaped so that the second front wall side 4212' of the lower front stabilizing body 421' of the lower front stabilizing portion 42' can reliably fit against the front inner wall 13' of the front housing 10'.

[0075] Continue to refer to the appendix Figures 4 to 8BThe upper front-end stabilizing body 411' of the upper front-end stabilizing portion 41' further has at least one first front-end clearance space 4113'. The first front-end clearance space 4113' extends from the first front-end plate side 4111' toward the first front-end wall side 4112' to a suitable position to avoid circuit elements (e.g., but not limited to resistors and capacitors) integrated on the surface of the front-end circuit board 20'. Specifically, when the first front-end plate side 4111' of the upper front-end stabilizing body 411' of the upper front-end stabilizing portion 41' is attached to the surface of the front-end circuit board 20', the circuit elements integrated on the front-end circuit board 20' are accommodated in the first front-end clearance space 4113', thus allowing the upper front-end stabilizing body 411' to avoid the circuit elements and prevent the circuit elements from being compressed. Accordingly, the lower front-end stabilizing body 421' of the lower front-end stabilizing portion 42' further has at least one second front-end clearance space 4213', which extends from the second front-end plate side 4211' toward the second front-end wall side 4212' to a suitable position to avoid circuit elements integrated on the surface of the front-end circuit board 20'. Specifically, when the second front-end plate side 4211' of the lower front-end stabilizing body 421' of the lower front-end stabilizing portion 42' is attached to the surface of the front-end circuit board 20', the circuit elements integrated on the front-end circuit board 20' are accommodated in the second front-end clearance space 4213', thus allowing the lower front-end stabilizing body 421' to avoid the circuit elements and prevent the circuit elements from being compressed.

[0076] Continue to refer to the appendix Figures 4 to 8B The lower front end stabilizing portion 42' includes at least one front anti-slip element 422', which is formed on the second front wall side 4212' of the lower front end stabilizing body 421' to increase the friction between the lower front end stabilizing portion 42' and the front housing 10', thereby preventing the lower front end stabilizing portion 42' from rotating relative to the front housing 10'. Simultaneously, the front anti-slip element 422' guides the lower front end stabilizing portion 42' to be easily inserted into the front mounting space 11' of the front housing 10'. Preferably, the end of the front anti-slip element 422' is beveled to form a chamfer, thus facilitating the guidance of the lower front end stabilizing portion 42' into the front mounting space 11' of the front housing 10' during assembly.

[0077] Continue to refer to the appendix Figures 4 to 8BThe upper front end stabilizing portion 41' further includes a front end protrusion 412', which extends integrally outward from the first front end wall side 4112' of the upper front end stabilizing body 411', and the front end controlled channel 4110' of the upper front end stabilizing body 411' further extends to the front end protrusion 412' and forms a through channel in the front end protrusion 412'. The control portion 100' further includes a deformable switch cap 50', which includes a cap body 51' and an actuator 52' ​​integrally extending downward from the cap body 51', and the switch cap 50' has a retaining groove 53' formed between the cap body 51' and the actuator 52', wherein the switch cap 50' is controlled by the actuator 52' ​​through the front end controlled channel 4110' of the upper front end stabilizing body 411'. The unit 30' is mounted on the upper front end stabilizing part 41' by extending the front end protrusion 412' to the retaining groove 53' of the switch cap 50', and the cap body 51' of the switch cap 50' extends to the outside of the front end housing 10' via the front end operation channel 12' of the front end housing 10', so that the user can operate the front end controlled unit 30' by pressing the cap body 51' of the switch cap 50' through the actuator 52' ​​of the switch cap 50'.

[0078] Preferably, the shape and size of the cap body 51' of the switch cap 50' match the shape and size of the front operating channel 12' of the front housing 10', so that the cap body 51' of the switch cap 50' is configured to be able to fit into the front operating channel 12' of the front housing 10', and to prevent the formation of gaps between the cap body 51' of the switch cap 50' and the front housing 10', thereby improving the waterproof performance of the control part 100' of the electronic device.

[0079] Furthermore, the switch cap 50' includes at least one positioning element 54', which is integrally disposed on the side of the cap body 51'. Correspondingly, the upper front end stabilizing body 411' has at least one positioning hole 4114', wherein the positioning element 54' of the switch cap 50' can be positioned in the positioning hole 4114' of the upper front end stabilizing body 411', which is beneficial for determining the installation direction of the switch cap 50'.

[0080] In the appendix Figures 4 to 8BIn this specific example of the illustrated electronic device, the working part 300' includes a first light-emitting part 310', which is disposed at the free end of the front housing 10' of the control part 100' and is controllably connected to the control part 100'. When the control part 100' allows the power supply part 200' to supply power to the first light-emitting part 310' of the working part 300', the first light-emitting part 310' of the working part 300' can generate light and allow the light to radiate to the outside of the free end of the front housing 10'.

[0081] Further, the working part 300' includes a second light-emitting part 320', which is disposed on the side of the front end housing 10' and is controllably connected to the control part 100'. When the control part 100' allows the power supply part 200' to supply power to the second light-emitting part 320' of the working part 300', the second light-emitting part 320' of the working part 300' can generate light and allow the light to radiate toward the side of the front end housing 10'. Specifically, the side of the front end housing 10' is provided with a light channel 14', which connects to the front end assembly space 11'. The second light-emitting part 320' corresponds to the light channel 14' of the front end housing 10', so that the light generated by the second light-emitting part 320' can radiate toward the side of the front end housing 10' through the light channel 14'. More specifically, the control portion 100' further includes a light-transmitting waterproof portion 60', wherein the waterproof portion 60' is embedded in the light channel 14' of the front housing 10', and the second light-emitting portion 320' corresponds to the waterproof portion 60'. Thus, the waterproof portion 60' allows light generated by the second light-emitting portion 320' to pass through and prevents moisture from entering the front assembly space 11' from the light channel 14' of the front housing 10', thereby improving the waterproof performance of the control portion 100'. Preferably, a waterproof gasket, such as a rubber gasket, may be provided between the waterproof portion 60' and the front housing 10' to further improve the waterproof performance of the control portion 100'. Preferably, the waterproof part 60' and the upper front end stabilizing part 41' are an integral structure, that is, the waterproof part 60' extends outward integrally from the first front end wall side 4112' of the upper front end stabilizing body 411' of the upper front end stabilizing part 41', so that when the first front end wall side 4112' of the upper front end stabilizing body 411' is attached to the front end inner wall 13' of the front end housing 10', the waterproof part 60' is embedded in the light channel 14' of the front end housing 10'.

[0082] In other words, the first light-emitting part 310' and the second light-emitting part 320' of the working part 300' have different light radiation directions, so as to allow the electronic device to have different usage modes.

[0083] Continue to refer to the appendix Figures 4 to 8B The power supply section 200' includes a power supply housing 210' and a power supply battery 220' installed inside the power supply housing 210'. One end of the power supply housing 210' is installed to the connection end of the front housing 10' of the control section 100', thus the control section 100' and the power supply section 200' are mounted to each other, and the power supply battery 220' is controllably connected to the control section 100', so the control section 100' can control the power supply state of the power supply battery 220' to the first light-emitting part 310' and the second light-emitting part 320' of the working section 300'. For example, the end of the power supply housing 210' and the connection end of the front housing 10' can be mounted to each other by screwing.

[0084] Alternatively, in other examples of the electronic device of the present invention, the power supply section 200' may not have the power supply battery 220', which allows dry cell batteries to be installed inside the power supply housing 210', and the dry cell batteries installed inside the power supply housing 210' can be controllably connected to the control section 100'.

[0085] Continue to refer to the appendix Figures 4 to 8B The electronic device further includes a charging section 400", wherein the charging section 400" is mounted on the end of the power supply housing 210' of the power supply section 200' relative to the control section 100', and the power supply battery 220' of the power supply section 200' is electrically connected to the charging section 400", such that external power can be replenished to the power supply battery 220' of the power supply section 200' through the charging section 400". In other words, the control section 100' and the charging section 400" are respectively disposed at opposite ends of the power supply section 200'.

[0086] For details, please refer to the appendix. Figures 4 to 8BThe charging section 400” includes a rear housing 10”, a rear circuit board 20”, a rear controlled unit 30”, and a rear stabilizing unit 40”. The rear housing 10” has a rear mounting space 11” and a rear operating channel 12 communicating with the rear mounting space 11”. The rear controlled unit 30” is disposed on the rear circuit board 20” such that the rear controlled unit 30” is integrated into the rear circuit board 20”, for example, the rear controlled unit 30” is disposed on the rear circuit board 20” in a surface mount manner such that the rear controlled unit 30” is integrated into the rear circuit board 20”. The rear circuit board 20” is mounted on the rear mounting space 11” of the rear housing 10”, and the rear controlled unit 30” is mounted on the rear housing 10” such that the rear controlled unit 30” is integrated into the rear circuit board 20”. The rear assembly space 11” of the rear housing 10” corresponds to the rear operation channel 12” of the rear housing 10”. The rear stabilizing unit 40” is disposed between the rear circuit board 20” and the rear housing 10”, and the opposite sides of the rear stabilizing unit 40” support the rear circuit board 20” and the rear housing 10” respectively. Thus, when the rear controlled unit 30” is operated and the rear circuit board 20” is subjected to force, the rear stabilizing unit 40” can prevent the rear circuit board 20” from shifting relative to the rear housing 10”, thereby further preventing the rear controlled unit 30” from sinking or misaligning, which helps to ensure that the charging part 400” of the electronic device has a stable assembly relationship. The rear housing 10” of the charging part 400” is installed on the power supply housing 210’ of the power supply part 200’, and the power supply battery 220’ of the power supply part 200’ is electrically connected to the rear circuit board 20 of the charging part 400”.

[0087] The back-end controlled unit 30” is a charging port, the type of which is not limited in the electronic device of the present invention. For example, the back-end controlled unit 30” can be, but is not limited to, Micro USB, Type-C, etc.

[0088] Further, please refer to the appendix. Figures 4 to 8B The rear stabilizing unit 40” includes an upper rear stabilizing part 41” and a lower rear stabilizing part 42”, wherein the upper rear stabilizing part 41” and the lower rear stabilizing part 42” respectively support the rear circuit board 20” and the rear housing 10” on opposite sides of the rear circuit board 20”, so as to further include the charging part 400” of the electronic device having a stable assembly relationship.

[0089] Specifically, the upper rear end stabilizing part 41” includes an upper rear end stabilizing body 411”, the upper rear end stabilizing body 411” having a first rear end plate side 4111”, a first rear end wall side 4112” corresponding to the first rear end plate side 4111”, and a rear end controlled channel 4110 extending from the first rear end plate side 4111” to the first rear end wall side 4112”. When the upper rear end stabilizing part 41” is installed between the rear end circuit board 20” and the rear end housing 10”, the rear end controlled channel 4110” of the upper rear end stabilizing body 411” corresponds to and communicates with the rear end housing 10”. The rear operating channel 12”, the first rear plate side 4111” of the upper rear stabilizing body 411” is attached to the surface of the rear circuit board 20”, and the rear controlled unit 30” integrated in the rear circuit board 20” corresponds to the rear controlled channel 4110 of the upper rear stabilizing body 411”, the first rear wall side 4112” of the upper rear stabilizing body 411” is attached to a rear inner wall 13 of the rear housing 10” for defining the rear assembly space 11”, so that the opposite sides of the upper rear stabilizing part 41” support the rear circuit board 20” and the rear housing 10 respectively.

[0090] Accordingly, the lower rear end stabilizing part 42” includes a lower rear end stabilizing body 421”, the lower rear end stabilizing body 421” has a second rear end plate side 4211” and a second rear end wall side 4212 corresponding to the second rear end plate side 4211”. When the lower rear end stabilizing part 42” is installed between the rear end circuit board 20” and the rear end housing 10”, the second rear end plate side 4211” of the lower rear end stabilizing body 421” is attached to the surface of the rear end circuit board 20”, and the second rear end wall side 4212” of the lower rear end stabilizing body 421” is attached to the rear end inner wall 13” of the rear end housing 10”. Thus, the opposite sides of the lower rear end stabilizing part 42” support the rear end circuit board 20” and the rear end housing 10” respectively. In this way, the upper rear end stabilizing part 41” and the lower rear end stabilizing part 42” support the rear end circuit board 20” and the rear end housing 10” respectively on the opposite sides of the rear end circuit board 20”, so as to effectively ensure that the electronic device has a stable assembly relationship.

[0091] Preferably, the shape and size of the first rear end wall side 4112” of the upper rear end stabilizing body 411” of the upper rear end stabilizing part 41” are arranged to match the shape and size of the rear end inner wall 13” of the rear end housing 10”. Correspondingly, the shape and size of the second rear end wall side 4212” of the lower rear end stabilizing body 421” of the lower rear end stabilizing part 42” are arranged to match the shape and size of the rear end inner wall 13” of the rear end housing 10”. Thus, in the upper rear end stabilizing part When the upper rear end stabilizing part 41” and the lower rear end stabilizing part 42” are respectively installed between the opposite sides of the rear end circuit board 20” and the rear end housing 10”, the first rear end wall side 4112” of the upper rear end stabilizing part 41” can reliably fit against the inner wall of the rear end housing 10”, and the second rear end wall side 4212” of the lower rear end stabilizing part 42” can reliably fit against the inner wall of the rear end housing 10”. For example, in the attached Figures 4 to 8B In this specific example of the electronic device shown, the rear housing 10” is a cylindrical housing, and the rear inner wall 13” of the rear housing 10” is a circular inner wall. Correspondingly, the first rear wall side 4112” of the upper rear stabilizing body 411” of the upper rear stabilizing part 41” is arc-shaped so that the first rear wall side 4112” of the upper rear stabilizing body 411” of the upper rear stabilizing part 41” can reliably fit against the rear inner wall 13 of the rear housing 10”. The second rear wall side 4212” of the lower rear stabilizing body 421” of the lower rear stabilizing part 42” is arc-shaped so that the second rear wall side 4212” of the lower rear stabilizing body 421” of the lower rear stabilizing part 42” can reliably fit against the rear inner wall 13 of the rear housing 10”.

[0092] Continue to refer to the appendix Figures 4 to 8BThe upper rear end stabilizing body 411” of the upper rear end stabilizing portion 41” further has at least one first rear end clearance space 4113”. The first rear end clearance space 4113” extends from the first rear end plate side 4111” toward the first rear end wall side 4112” to a suitable position to avoid circuit elements (e.g., but not limited to resistors and capacitors) integrated on the surface of the rear end circuit board 20”. Specifically, when the first rear end plate side 4111” of the upper rear end stabilizing body 411” of the upper rear end stabilizing portion 41” is attached to the surface of the rear end circuit board 20”, the circuit elements integrated on the rear end circuit board 20” are accommodated in the first rear end clearance space 4113”, thus allowing the upper rear end stabilizing body 411” to avoid the circuit elements and prevent the circuit elements from being compressed. Accordingly, the lower rear end stabilizing body 421” of the lower rear end stabilizing portion 42” further has at least one second rear end clearance space 4213”, the second rear end clearance space 4213” extending from the second rear end plate side 4211” toward the second rear end wall side 4212” to a suitable position to avoid circuit elements integrated on the surface of the rear end circuit board 20”. Specifically, when the second rear end plate side 4211” of the lower rear end stabilizing body 421” of the lower rear end stabilizing portion 42” is attached to the surface of the rear end circuit board 20”, the circuit elements integrated on the rear end circuit board 20” are accommodated in the second rear end clearance space 4213”, thus allowing the lower rear end stabilizing body 421” to avoid the circuit elements and prevent the circuit elements from being compressed.

[0093] Continue to refer to the appendix Figures 4 to 8B The lower rear end stabilizing portion 42” includes at least one rear end anti-slip element 422”, which is formed on the second rear end wall side 4212” of the lower rear end stabilizing body 421” to increase the friction between the lower rear end stabilizing portion 42” and the rear end housing 10”, thereby preventing the lower rear end stabilizing portion 42” from rotating relative to the rear end housing 10”. Simultaneously, the rear end anti-slip element 422” can guide the lower rear end stabilizing portion 42” to be easily inserted into the rear end assembly space 11” of the rear end housing 10”. Preferably, the end of the rear end anti-slip element 422” is beveled to form a chamfer, thus facilitating the guidance of the lower rear end stabilizing portion 42” into the rear end assembly space 11” of the rear end housing 10” when assembling it.

[0094] Continue to refer to the appendix Figures 4 to 8BThe upper rear end stabilizing part 41” further includes a rear end protrusion 412”, the rear end protrusion 412” extends integrally outward from the first rear end wall side 4112” of the upper rear end stabilizing body 411”, and the rear end controlled channel 4110” of the upper rear end stabilizing body 411” further extends to the rear end protrusion 412” and forms a through channel in the rear end protrusion 412”, wherein the rear end protrusion 412” is embedded in the rear end control channel 12” of the rear end housing 10” to ensure a stable assembly relationship between the upper rear end stabilizing part 41” and the rear end housing 10”.

[0095] Preferably, the shape and size of the rear protrusion 412” of the upper rear end stabilizing portion 41” match the shape and size of the rear control channel 12 of the rear housing 10”, so as to avoid the formation of a gap between the rear protrusion 412” of the upper rear end stabilizing portion 41” and the rear housing 10”, thereby improving the waterproof performance of the charging portion 400” of the electronic device.

[0096] Continue to refer to the appendix Figures 4 to 8B The charging section 400” includes a shielding section 70”, which is slidably fitted onto the rear housing 10” to shield or expose the rear operating channel 12” of the rear housing 10”, thereby shielding or exposing the rear controlled unit 30.

[0097] It will be understood by those skilled in the art that the above embodiments are merely examples, and features of different embodiments can be combined with each other to obtain implementation methods that are readily conceivable according to the content disclosed in the present invention but are not explicitly shown in the accompanying drawings.

[0098] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functions and structural principles of the present invention have been demonstrated and explained in the embodiments, and any variations or modifications may be made to the implementation of the present invention without departing from the stated principles.

Claims

1. An electronic component, characterized in that, include: A circuit board; At least one controlled unit, wherein the controlled unit is disposed on the circuit board; A housing having an assembly space and at least one operating channel communicating with the assembly space, wherein a circuit board is mounted in the assembly space of the housing, and the controlled unit corresponds to the operating channel of the housing. as well as At least one stabilizing unit is provided, wherein the stabilizing unit is disposed between the circuit board and the housing, and the opposite sides of the stabilizing unit support the circuit board and the housing respectively to prevent the circuit board from shifting relative to the housing when subjected to force. The stabilizing unit includes an upper stabilizing part and a lower stabilizing part, which are respectively disposed on opposite sides of the circuit board. The upper stabilizing part includes an upper stabilizing body, which has a first plate side and a first wall side corresponding to the first plate side. The first plate side of the upper stabilizing body is attached to one side of the circuit board and the first wall side is attached to the inner wall of the housing. Correspondingly, the lower stabilizing part includes a lower stabilizing body, which has a second plate side and a second wall side corresponding to the second plate side. The second plate side of the lower stabilizing body is attached to the other side of the circuit board and the second wall side is attached to the inner wall of the housing.

2. The electronic component of claim 1, wherein the upper stabilizing body has a controlled channel extending from the first plate side to the first wall side, wherein the controlled unit corresponds to the controlled channel of the upper stabilizing body.

3. The electronic component of claim 2, wherein the upper stabilizing portion includes a protrusion that extends integrally outward from the first wall side of the upper stabilizing body, and the controlled channel of the upper stabilizing body extends to the protrusion and forms a through channel in the protrusion, wherein the protrusion of the upper stabilizing portion is embedded in the operating channel of the housing.

4. The electronic component according to any one of claims 1 to 3, wherein the lower stabilizing portion includes at least one anti-slip element formed on the second wall side of the lower stabilizing body.

5. The electronic component according to any one of claims 1 to 3, wherein the upper stabilizing body has at least one first clearance space, the first clearance space extending from the first plate side toward the first wall side to a suitable position to avoid circuit elements integrated on the circuit board.

6. The electronic component according to any one of claims 1 to 3, wherein the lower stabilizing body has at least one second clearance space extending from the second plate side toward the second wall side to a suitable position to avoid circuit elements integrated on the circuit board.

7. An electronic device, characterized in that, It includes a control section, a power supply section, and a working section respectively disposed in the control section, wherein the control section further includes: A front-end circuit board; A front-end controlled unit, wherein the front-end controlled unit is disposed on the front-end circuit board; A front-end housing, wherein the front-end housing has a front-end mounting space and at least one front-end operation channel communicating with the front-end mounting space, wherein a front-end circuit board is mounted in the front-end mounting space of the front-end housing, and a front-end controlled unit corresponds to the front-end operation channel of the front-end housing; and At least one front-end stabilizing unit is provided, wherein the front-end stabilizing unit is disposed between the front-end circuit board and the front-end housing, and the front-end stabilizing unit supports the front-end circuit board and the front-end housing respectively on opposite sides to prevent the front-end circuit board from shifting relative to the front-end housing when subjected to force. The front-end stabilizing unit includes an upper front-end stabilizing part and a lower front-end stabilizing part, which are respectively disposed on opposite sides of the front-end circuit board. The upper front-end stabilizing part includes an upper front-end stabilizing body, which has a first front-end plate side and a first front-end wall side corresponding to the first front-end plate side. The first front-end plate side of the upper front-end stabilizing body is attached to one side of the front-end circuit board, and the first front-end wall side is attached to the inner wall of the front-end housing. Correspondingly, the lower front-end stabilizing part includes a lower front-end stabilizing body, which has a second front-end plate side and a second front-end wall side corresponding to the second front-end plate side. The second front-end plate side of the lower front-end stabilizing body is attached to the other side of the front-end circuit board, and the second front-end wall side is attached to the inner wall of the front-end housing.

8. The electronic device of claim 7, wherein the upper front end stabilizing body has a front end controlled channel extending from the first front end plate side to the first front end wall side, wherein the front end controlled unit corresponds to the front end controlled channel of the upper front end stabilizing body.

9. The electronic device of claim 8, wherein the upper front end stabilizing portion includes a front end protrusion extending integrally outward from the first front end wall side of the upper front end stabilizing body, and the front end controlled channel of the upper front end stabilizing body extends to the front end protrusion and forms a through channel in the front end protrusion, wherein the control portion further includes a deformable switch cap including a cap body and an actuator integrally extending downward from the cap body and having a retaining groove formed between the cap body and the actuator, wherein the switch cap is mounted on the upper front end stabilizing portion such that the actuator extends to the front end controlled unit via the front end controlled channel of the upper front end stabilizing body and the front end protrusion is retained in the retaining groove, and the cap body of the switch cap extends to the outside of the front end housing via the front end control channel of the front end housing.

10. The electronic device according to any one of claims 7 to 9, wherein the lower front end stabilizing portion includes at least one front end anti-slip element formed on the second front end wall side of the lower front end stabilizing body.

11. The electronic device according to any one of claims 7 to 9, wherein the upper front end stabilizing body has at least one first front end clearance space, the first front end clearance space extending from the first front end plate side toward the first front end wall side to a suitable position to avoid circuit elements integrated on the front end circuit board.

12. The electronic device according to any one of claims 7 to 9, wherein the lower front end stabilizing body has at least one second front end clearance space, the second front end clearance space extending from the second front end plate side toward the second front end wall side to a suitable position to avoid circuit elements integrated on the front end circuit board.

13. The electronic device according to any one of claims 7 to 9, further comprising a charging portion, wherein the charging portion... An electrical component is disposed in the power supply component, wherein the charging component further includes: A rear-end circuit board; A back-end controlled unit, wherein the back-end controlled unit is disposed on the back-end circuit board; A rear-end housing, wherein the rear-end housing has a rear-end mounting space and at least one rear-end operation channel communicating with the rear-end mounting space, wherein a rear-end circuit board is mounted in the rear-end mounting space of the rear-end housing, and a rear-end controlled unit corresponds to the rear-end operation channel of the rear-end housing; and At least one rear-end stabilizing unit is provided, wherein the rear-end stabilizing unit is disposed between the rear-end circuit board and the rear-end housing, and the opposite sides of the rear-end stabilizing unit support the rear-end circuit board and the rear-end housing respectively, so as to prevent the rear-end circuit board from shifting relative to the rear-end housing when subjected to force.

14. The electronic device of claim 13, wherein the rear-end stabilizing unit includes an upper rear-end stabilizing portion and a lower rear-end stabilizing portion, the upper rear-end stabilizing portion and the lower rear-end stabilizing portion being respectively disposed on opposite sides of the rear-end circuit board.

15. The electronic device of claim 14, wherein the upper rear end stabilizing portion comprises an upper rear end stabilizing body having a first rear end plate side and a first rear end wall side corresponding to the first rear end plate side, the first rear end plate side of the upper rear end stabilizing body being attached to one side of the rear circuit board and the first rear end wall side being attached to the inner wall of the rear housing; correspondingly, the lower rear end stabilizing portion comprises a lower rear end stabilizing body having a second rear end plate side and a second rear end wall side corresponding to the second rear end plate side, the second rear end plate side of the lower rear end stabilizing body being attached to the other side of the rear circuit board and the second rear end wall side being attached to the inner wall of the rear housing.

16. The electronic device of claim 15, wherein the upper rear-end stabilizing body has a rear-end controlled channel extending from the first rear-end plate side to the first rear-end wall side, wherein the rear-end controlled unit corresponds to the rear-end controlled channel of the upper rear-end stabilizing body.

17. The electronic device of claim 16, wherein the upper rear end stabilizing portion includes a rear end protrusion extending integrally outward from the first rear end wall side of the upper rear end stabilizing body, and the rear end controlled channel of the upper rear end stabilizing body extends to the rear end protrusion and forms a through channel in the rear end protrusion, wherein the rear end protrusion of the upper rear end stabilizing portion is embedded in the rear end control channel of the rear end housing.

18. The electronic device of claim 15, wherein the lower rear end stabilizing portion includes at least one rear end anti-slip element formed on the second rear end wall side of the lower rear end stabilizing body.

19. The electronic device of claim 15, wherein the upper rear end stabilizing body has at least a first rear end clearance space, the first rear end clearance space extending from the first rear end plate side toward the first rear end wall side to a suitable position to avoid circuit elements integrated into the rear end circuit board.

20. The electronic device of claim 15, wherein the lower rear end stabilizing body has at least one second rear end clearance space, the second rear end clearance space extending from the second rear end plate side toward the second rear end wall side to a suitable position to avoid circuit elements integrated into the rear end circuit board.