Balloon lamp power quick-release structure

By designing a quick-removal structure of balloon lamp power supply with removable battery module and movable grip, the problems of easy damage to traditional lamp switches and cumbersome battery replacement are solved, convenient replacement of batteries and flexible brightness adjustment are achieved, and durable and reliable mechanical control is provided.

WO2025138412A1PCT designated stage expired Publication Date: 2025-07-03DONGGUAN SENSE LIGHTING TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/078214
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-29
Filing Date
2024-02-23
Publication Date
2025-07-03

AI Technical Summary

Technical Problem

The switch structure of traditional lamps is easily damaged and unstable to use, and battery replacement is cumbersome and difficult to maintain.

Method used

A balloon lamp power quick-removal structure is designed, including a detachable battery module and movable grip, which mechanically controls the battery's closure and output power, and combines Hall switches and induction pole parts to achieve precise control.

Benefits of technology

It realizes convenient replacement and maintenance of batteries, and the mechanical control switch structure is more durable and reliable, adapts to different environmental conditions, and provides flexible brightness and closing adjustment.

✦ Generated by Eureka AI based on patent content.

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Abstract

A balloon lamp power quick-release structure, comprising: a lamp base (100) supported on the ground; a battery module (200) sliding in a direction perpendicular to the ground and detachably connected to the lamp base (100), wherein the battery module (200) comprises a pole (201) and a plurality of batteries provided in the pole (201); and a locking assembly (300) fixing the pole (201) on the lamp base (100). By means of the motion of a handle (450), the apparatus can control the closure and output power magnitude of the batteries, which means that a user can regulate the degree of closure and brightness level of a light bulb by means of a simple mechanical mode, that is, the movement of the handle (450). A mechanical control switch structure is more durable and reliable, and easier to maintain, and may be more durable in some environments.
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Description

A balloon light power supply quick-release structure Technical Field

[0001] This patent relates to the field of lighting technology, specifically a balloon lamp power supply quick-release structure. Background Art

[0002] Lamps are widely used in homes, businesses or outdoor environments. People often use various types of lamps to provide lighting. The design of lamps is not only related to the lighting effect, but also involves the convenience of installation, adjustment and maintenance.

[0003] Traditional switch structures are controlled by electronic buttons, involving complex electronic components such as circuit boards and sensors. However, switches controlled by electronic components are easily affected by the environment, and are prone to damage, unstable use, and difficult to maintain. In addition, the battery of the lamp is usually fixed, and replacing the battery may require replacing the entire lamp or involve complex disassembly steps. Technical issues

[0004] This patent addresses the technical problems existing in the prior art and provides a balloon lamp power quick-release structure to solve the problems of electronic buttons being easily damaged, unstable to use, difficult to maintain, and cumbersome battery replacement. Technical Solutions

[0005] The technical solution of this patent to solve the above technical problems is as follows: a balloon light power supply quick-disassembly structure, comprising:

[0006] Ground-mounted lamp brackets;

[0007] A battery module slidably connected to the lamp bracket in a direction perpendicular to the ground and detachably connected, wherein the battery module includes a vertical tube and a plurality of batteries arranged in the vertical tube;

[0008] A locking assembly that secures the riser to the fixture bracket;

[0009] The power control unit is detachable from the top of the standpipe and includes a movable handle. When the handle is controlled to move, it is used to control the closure of the battery and the output power of the battery.

[0010] Based on the above technical solution, the following improvements can be made.

[0011] Furthermore, the power control unit also includes an inner tube, a limiter, and a sensing component. The handle is sleeved on the outside of the inner tube. The limiter limits the handle so that it can be displaced along the axis of the vertical tube and rotated in the circumferential direction on the outside of the inner tube to trigger the sensing component.

[0012] Furthermore, the limiting member includes a T-shaped limiting groove formed on the outer side of the inner tube and a limiting rod passing through the handle and extending into the limiting groove.

[0013] Furthermore, the sensing component includes three Hall switches arranged in a "T" shape and an induction magnetic pole piece adapted to the Hall switch. The three Hall switches are located on one side of the limit slot and are arranged in the inner tube. The induction magnetic pole piece is located below the limit rod and is arranged in the handle.

[0014] Furthermore, a reset member is provided between the inner tube and the handle, and the reset member includes two arc-shaped magnetic blocks, one and two. The magnetic block one is provided on the outside of the inner tube, and the magnetic block two is attached to one side of the magnetic block one and fixed to the inner wall of the handle.

[0015] Furthermore, the magnetic poles on the contacting surfaces of the first magnetic block and the second magnetic block are of opposite polarities.

[0016] Furthermore, the lamp bracket includes a vertical tube, and the vertical tube slides inside the vertical tube.

[0017] Furthermore, the locking assembly includes a clamp sleeve 1 and a clamp sleeve 2, wherein the clamp sleeve 1 is arranged on the outside of the vertical pipe, and the clamp sleeve 2 is arranged on the outside of the vertical pipe, and the clamp sleeve 1 and the clamp sleeve 2 are fixedly connected.

[0018] Furthermore, the locking assembly also includes an adjusting bolt 1 and an adjusting bolt 2, wherein the adjusting bolt 1 is connected to the clamp sleeve 1 through a threaded engagement, and the adjusting bolt 2 is connected to the clamp sleeve 2 through a threaded engagement. Beneficial effects

[0019] (1) The balloon lamp structure is connected to the lamp bracket in a detachable manner through the battery module that slides in the vertical direction, which makes replacement and maintenance convenient. Users can easily remove the battery module, replace the battery or perform maintenance operations without the intervention of professionals. Since the battery module slides in the vertical direction of the lamp bracket, users can adjust the height of the bulb by adjusting the position of the battery module, allowing users to adjust the height of the lamp according to their needs to adapt to different environments or usage scenarios.

[0020] (2) In addition, the power control unit includes a movable handle, through the movement of the handle, the closure of the battery and the output power of the battery can be controlled, which means that the user can adjust the closure degree of the bulb and the brightness level of the bulb by a simple mechanical method, that is, the movement of the handle. Compared with the traditional electronic control switch, this mechanical control switch structure is more durable and reliable, easier to maintain, and may be more durable under certain environmental conditions.

[0021] (3) By setting a "T"-shaped limit groove on the outer side of the inner tube, the limit rod of the handle makes a "T"-shaped movement in the limit groove, thereby realizing that the handle can be displaced along the axis of the vertical tube and rotated in the circumferential direction on the outer side of the inner tube. This structural design ensures that the handle can be accurately limited during displacement and rotation, avoiding unnecessary swinging or misalignment, and helping to improve the stability and reliability of the handle movement.

[0022] (4) Three Hall switches arranged in a "T" shape form a multi-point sensing structure, which provides multiple sensing points for the handle, thereby achieving flexibility and diversity in operation. At the same time, the inductive magnetic pole piece is cleverly set in the handle and adapted to the Hall switch, providing precise control for the operation of the balloon light. In the displacement direction of the handle axis, when the handle is located outside the inner tube and moves along the axis of the vertical tube, the inductive magnetic pole piece will trigger the Hall switch in the middle position, causing the Hall switch in the middle position to receive an electrical signal and control the opening and closing state of the battery. If the handle is away from the middle position, the corresponding Hall switch will be closed. This design can accurately sense the position of the handle and achieve precise control of the battery status.

[0023] (5) When the handle rotates in the circumferential direction, the inductive magnetic pole piece will be located on one of the sides of the left and right Hall switches. When the inductive magnetic pole piece is on the side of the left Hall switch, the output power of the battery will be increased (or reduced), and when the inductive magnetic pole piece is on the side of the right Hall switch, the output power of the battery will be reduced (or increased). The intelligent adjustment design enables the system to flexibly adjust the battery output under different operating conditions to meet user needs.

[0024] (6) After completing the control of the brightness and closing state of the balloon light, the reset member works together to restore the handle to its initial state. When the handle moves downward, due to the mutual attraction between magnet block 1 and magnet block 2, the reset member generates a return force to return the handle to its starting position. When the handle rotates clockwise, the reset member generates a return force to drive the handle to rotate counterclockwise to restore to its initial position; and when the handle rotates counterclockwise, the reset member generates a return force to drive the handle to rotate clockwise to restore to its initial position. This design ensures the stability and reliability of the structure while providing users with a friendly control experience.

[0025] (7) The lamp bracket adopts a vertical tube and a vertical tube design, in which the vertical tube can slide inside the vertical tube. In order to ensure the stability and safety of the lamp bracket, a locking component is introduced. The component consists of a clamp sleeve 1 and a clamp sleeve 2. The clamp sleeve 1 is arranged on the outside of the vertical tube, and the clamp sleeve 2 is arranged on the outside of the vertical tube. The two are fixedly connected to ensure a solid support structure.

[0026] (8) In order to further adjust and fix the position of the lamp bracket, adjusting bolt 1 and adjusting bolt 2 are introduced. Adjusting bolt 1 is connected to clamp sleeve 1 by threaded engagement, while adjusting bolt 2 is connected to clamp sleeve 2 by threaded engagement, so that users can make fine adjustments according to their needs to adapt to different lamp heights or position requirements, and can also completely detach the riser from the vertical pipe to replace the battery in the riser or perform maintenance operations. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a schematic diagram of the overall structure of this patent;

[0028] Figure 2 is a schematic diagram of the partial structure of this patent from another perspective;

[0029] Figure 3 is an exploded view of the power control unit of this patent;

[0030] FIG4 is a cross-sectional view of a power supply control unit according to an embodiment of the present invention;

[0031] Figure 5 is a schematic diagram of the structure of the inner tube in the embodiment of this patent.

[0032] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0033] 100. Lamp bracket, 101. Vertical pipe, 200. Battery module, 201. Vertical pipe, 300. Locking assembly, 310. Clamp sleeve 1, 320. Clamp sleeve 2, 330. Adjusting bolt 1, 340. Adjusting bolt 2, 400. Power control unit, 410. Inner tube, 420. Limiting piece, 421. Limiting groove, 422. Limiting rod, 430. Sensing assembly, 431. Hall switch, 432. Sensing magnetic pole piece, 440. Reset piece, 441. Magnet block 1, 442. Magnet block 2, 450. Handle. Best Mode for Carrying Out the Invention

[0034] As shown in Figures 1 to 5, a balloon light power supply quick-release structure includes:

[0035] A ground-supporting lamp bracket 100;

[0036] A battery module 200 slidably connected to the lamp bracket 100 in a direction perpendicular to the ground, wherein the battery assembly includes a vertical tube 201 and a plurality of batteries disposed in the vertical tube 201;

[0037] A locking assembly 300 for fixing the riser 201 to the lamp bracket 100;

[0038] A power control unit 400 is detachable from the top of the standpipe 201 and includes a movable handle 450. When the handle 450 is moved, it controls the battery closure and the battery output power.

[0039] The balloon lamp structure is connected to the lamp bracket 100 in a detachable manner by the battery module 200 sliding in the vertical direction, which makes replacement and maintenance convenient. The user can easily remove the battery module 200 to replace the battery or perform maintenance operations without the intervention of professionals. Since the battery module 200 slides vertically along the lamp bracket 100, the user can adjust the height of the bulb by adjusting the position of the battery module 200, allowing the user to adjust the height of the lamp as needed to adapt to different environments or usage scenarios.

[0040] In addition, the power control unit 400 includes a movable handle 450. The movement of the handle 450 can control the closure of the battery and the output power of the battery, which means that the user can adjust the closure degree and brightness level of the bulb through a simple mechanical method, that is, the movement of the handle 450. Compared with the traditional electronic control switch, this mechanical control switch structure is more durable and reliable, easier to maintain, and may be more durable in certain environments (such as humid, outdoor, rainy, etc.). Modes for Carrying Out the Invention

[0041] In this embodiment, as shown in Figures 1 to 5, the power control unit 400 further includes an inner tube 410 (the inner tube 410 is screwed onto the vertical tube 201 through a thread, and electrode springs are provided between the inner tube 410 and the vertical tube 201. When the inner tube 410 is rotated and tightened, the electrode springs contact each other to achieve electrical communication between the power control unit 400 and the battery), a limiter 420, and a sensing component 430. The handle 450 is sleeved on the outside of the inner tube 410. The limiter 420 limits the handle 450 so that it can be displaced along the axis of the vertical tube 201 and rotated in the circumferential direction on the outside of the inner tube 410, so as to trigger the sensing component 430. The limiter Component 420 includes a "T"-shaped limiting groove 421 provided on the outer side of the inner tube 410 and a limiting rod 422 passing through the handle 450 and extending into the limiting groove 421. By providing the "T"-shaped limiting groove 421 on the outer side of the inner tube 410, the limiting rod 422 of the handle 450 can make a "T"-shaped movement in the limiting groove 421, thereby enabling the handle 450 to be displaced along the axis of the vertical tube 201 and rotated in the circumferential direction on the outer side of the inner tube 410. This structural design ensures that the handle 450 can be precisely limited during displacement and rotation, avoiding unnecessary swinging or misalignment, and helping to improve the stability and reliability of the movement of the handle 450.

[0042] In this embodiment, as shown in Figures 1 to 5, the sensing component 430 includes three Hall switches 431 arranged in a "T" shape and an inductive magnetic pole piece 432 adapted to the Hall switch 431. The three Hall switches 431 are located on one side of the limiting groove 421 and are arranged in the inner tube 410 (so that the Hall switch 431 is located in the inner tube 410, so as not to be in direct contact with the external environment, and only the magnetic pole sensing piece 432 of the external handle 450 moves to trigger the Hall switch 431, thereby reducing the impact of the external environment and making the control switch more reliable and durable). The inductive magnetic pole piece 432 is located below the limiting rod 422 and is arranged in the handle 450. The three Hall switches 431 arranged in a "T" shape constitute a multi- The point sensing structure provides the handle 450 with multiple sensing points, thereby achieving operational flexibility and diversity. At the same time, the inductive pole piece 432 is cleverly arranged in the handle 450 and adapted to the Hall switch 431, providing precise control over the operation of the balloon light. During the axial displacement of the handle 450, when the handle 450 is located outside the inner tube 410 and moves along the axis of the vertical tube 201, the inductive pole piece 432 will trigger the Hall switch 431 in the middle position, causing the Hall switch 431 in the middle position to receive an electrical signal and control the on / off state of the battery. If the handle 450 moves away from the middle position, the corresponding Hall switch 431 will close. This design can accurately sense the position of the handle 450 and achieve precise control of the battery status.

[0043] During the circumferential rotation of the handle 450, the inductive magnetic pole piece 432 will be located on one of the sides of the left and right Hall switches 431. When the inductive magnetic pole piece 432 is on the side of the left Hall switch 431, the output power of the battery will be increased (or the output power of the battery will be reduced). When the inductive magnetic pole piece 432 is on the side of the right Hall switch 431, the output power of the battery will be reduced (or the output power of the battery will be increased). The intelligent adjustment design enables the system to flexibly adjust the battery output under different operating conditions to meet user needs.

[0044] In this embodiment, as shown in Figures 1 to 5, a reset member 440 is further provided between the inner tube 410 and the handle 450. The reset member 440 includes two arc-shaped magnetic blocks 1 441 and 442. The magnetic block 1 441 is provided on the outside of the inner tube 410, and the magnetic block 2 442 is attached to one side of the magnetic block 1 441 and fixed to the inner wall of the handle 450. The magnetic poles of the contacting side of the magnetic block 1 441 and the magnetic block 2 442 are of opposite poles. After completing the control of the brightness and closing state of the balloon lamp, the reset member 440 works together to restore the handle 450. To return to the initial state, when the handle 450 moves downward, due to the mutual attraction between the magnet 1 441 and the magnet 2 442, the reset member 440 generates a return force, so that the handle 450 returns to the starting position. When the handle 450 rotates clockwise, the reset member 440 generates a return force, driving the handle 450 to rotate counterclockwise to restore to the initial position; and when the handle 450 rotates counterclockwise, the reset member 440 generates a return force, prompting the handle 450 to rotate clockwise to restore to the initial position. This design ensures the stability and reliability of the structure, while providing users with a user-friendly control experience.

[0045] In this embodiment, as shown in Figures 1 to 5, the lamp bracket 100 includes a vertical tube 101, and the vertical tube 201 slides in the vertical tube 101. The locking assembly 300 includes a clamp sleeve 1 310 and a clamp sleeve 2 320. The clamp sleeve 1 310 is sleeved on the outside of the vertical tube 101, and the clamp sleeve 2 320 is sleeved on the outside of the vertical tube 201. The clamp sleeve 1 310 and the clamp sleeve 2 320 are fixedly connected. The locking assembly 300 also includes an adjusting bolt 1 330 and an adjusting bolt 2 340. The adjusting bolt 1 330 is screwed together on the vertical tube 101 through a thread. The second adjusting bolt 340 is screwed onto the second clamp sleeve 320 via a threaded connection on the first clamp sleeve 310. The lamp bracket 100 adopts a design of a vertical tube 101 and a vertical tube 201, wherein the vertical tube 201 can slide inside the vertical tube 101. To ensure the stability and safety of the lamp bracket 100, a locking assembly 300 is introduced. The assembly consists of the first clamp sleeve 310 and the second clamp sleeve 320. The first clamp sleeve 310 is sleeved on the outside of the vertical tube 101, while the second clamp sleeve 320 is sleeved on the outside of the vertical tube 201. The two are fixedly connected to ensure a solid support structure.

[0046] In addition, in order to further adjust and fix the position of the lamp bracket 100, an adjusting bolt 1 330 and an adjusting bolt 2 340 are introduced. The adjusting bolt 1 330 is connected to the clamp sleeve 1 310 by a threaded engagement, and the adjusting bolt 2 340 is connected to the clamp sleeve 2 320 by a threaded engagement, so that the user can make fine adjustments according to needs to adapt to different lamp height or position requirements, and can also completely detach the riser 201 from the vertical pipe 101 to replace the battery in the riser 201 or perform maintenance operations.

[0047] The specific working process of this patent is as follows:

[0048] (1) Control the balloon light to be on

[0049] First, when the handle 450 is located outside the inner tube 410 and moves along the axis of the vertical tube 201 (i.e., moves toward the ground), the induction magnetic pole piece 432 will trigger the Hall switch 431 in the middle position, causing the Hall switch 431 in the middle position to receive an electrical signal and control the on / off state of the battery. If the handle 450 moves away from the middle position (i.e., away from the ground), the corresponding Hall switch 431 will be closed.

[0050] (2) Control the brightness of the balloon light

[0051] During the circumferential rotation of the handle 450, the inductive magnetic pole piece 432 will be located on one of the sides of the left and right Hall switches 431. When the inductive magnetic pole piece 432 is on the side of the left Hall switch 431 (i.e., the handle 450 rotates clockwise), the output power of the battery will be reduced and the brightness of the balloon light will be increased. When the inductive magnetic pole piece 432 is on the side of the right Hall switch 431 (i.e., the handle 450 rotates counterclockwise), the output power of the battery will be increased and the brightness of the balloon light will be reduced. The intelligent adjustment design enables the system to flexibly adjust the battery output under different operating conditions to meet user needs.

[0052] The above description is only a preferred embodiment of this patent and is not intended to limit this patent. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of this patent should be included in the scope of protection of this patent. Industrial Applicability

[0053] This patented device can control the battery module through the movement of the handle, allowing the system to flexibly adjust the battery output under different operating conditions. It can also achieve rapid disassembly and assembly of the power supply to meet user needs and has excellent industrial applicability.

Claims

1. A quick-disassembly structure for the power supply of a balloon lamp, characterized in that, Comprising: A lamp holder that supports on the ground; A battery module that slides in a direction perpendicular to the ground and is detachably connected to the lamp holder, wherein the battery assembly includes a riser pipe and a plurality of batteries arranged in the riser pipe; A locking assembly for fixing the riser pipe to the lamp holder; A power control unit, the power control unit is detachably disposed on the top of the riser pipe, and the power control unit includes a movable handle, when controlling the movement of the handle, it is used to control the closing of the battery and the magnitude of the output power of the battery.

2. The quick-disassembly structure of the power supply of the balloon lamp according to claim 1, wherein, The power control unit further includes an inner pipe, a limiting member, and an induction assembly. The handle is sleeved on the outside of the inner pipe. The limiting member restricts the handle to be able to displace along the axis of the riser pipe and rotate in the circumferential direction on the outside of the inner pipe, for triggering the induction assembly.

3. The quick-disassembly structure of the power supply of the balloon lamp according to claim 2, characterized in that, The limiting member includes a "T"-shaped limiting groove opened on the outside of the inner pipe and a limiting rod passing through the handle and extending into the limiting groove.

4. A quick-disassembly structure for a balloon lamp power supply according to claim 3, characterized in that, The induction assembly includes three Hall switches arranged in a "T" shape and an induction magnetic pole member adapted to the Hall switches. The three Hall switches are located on one side of the limiting groove and are arranged in the inner pipe. The induction magnetic pole member is located below the limiting rod and is arranged in the handle.

5. The quick-release structure of the power supply of the balloon lamp according to claim 4, characterized in that, A reset member is further arranged between the inner pipe and the handle. The reset member includes two arc-shaped magnetic blocks one and two. The magnetic block one is arranged on the outside of the inner pipe. The magnetic block two is attached to one side of the magnetic block one and is fixed to the inner side wall of the handle.

6. The quick-disassembly structure of a balloon lamp power supply according to claim 5, characterized in that, The magnetic poles of the surfaces of the magnetic block one and the magnetic block two in contact with each other are opposite poles.

7. The quick-disassembly structure of the power supply of the balloon lamp according to claim 1, wherein, The lamp holder includes a vertical pipe, and the riser pipe slides in the vertical pipe.

8. The quick-disassembly structure of the power supply of a balloon lamp according to claim 7, characterized in that, The locking assembly includes a first clamp sleeve and a second clamp sleeve. The first clamp sleeve is sleeved on the outside of the vertical pipe. The second clamp sleeve is sleeved on the outside of the riser pipe, and the first clamp sleeve and the second clamp sleeve are fixedly connected.

9. The quick-disassembly structure of the power supply of a balloon lamp according to claim 8, characterized in that, The locking assembly further includes a first adjusting bolt and a second adjusting bolt. The first adjusting bolt is screwed onto the first clamp sleeve through a thread. The second adjusting bolt is screwed onto the second clamp sleeve through a thread.

Citation Information

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