Computer dynamic lighting equipment with multiple overload protection

By introducing multiple anti-overload protection structures into computer dynamic lighting equipment, the problems of equipment length adjustment and safety are solved, the combination of length adjustment and circuit protection is achieved, and the safety and stability of the equipment are improved.

CN223375719UActive Publication Date: 2025-09-23DONGGUAN JINGYUE ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422903612.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-09-23
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

Existing computer dynamic lighting equipment cannot adjust the length and size, and lacks effective overload protection, which can easily cause the circuit to burn out and affect safe use.

Method used

A computer dynamic lighting device with multiple overload protections was designed, which includes a control terminal, an overload protection mechanism, a resettable fuse, a light strip, and a docking assembly. Length adjustment and circuit protection are achieved through the combination of the fixed structure of the docking assembly and the overload protection module.

Benefits of technology

The length adjustment function of dynamic lighting equipment is realized, while the safety of use is improved. Multiple protection mechanisms are used to prevent circuit overload and ensure the stable operation of the equipment.

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Abstract

The utility model discloses computer dynamic lighting equipment with multiple overload protection, and belongs to the technical field of computer dynamic lighting. The computer dynamic lighting equipment with the multiple overload protection functions comprises a control terminal, the output end of the control terminal is electrically connected with an overload protection mechanism, a resettable fuse is installed in the overload protection mechanism, one end of the resettable fuse is electrically connected with a lamp strip, a plurality of lamp beads are installed on the outer wall of the lamp strip, and the lamp beads are electrically connected with the control terminal. The lamp strip comprises a first strip body, a second strip body, a first inner strip, a second inner strip, electrode plates and penetrating holes, the first inner strip is installed in the first strip body, the second inner strip is installed in the second strip body, the electrode plates are installed on the sides, adjacent to the first inner strip, of the second inner strip in an embedded mode, every two electrode plates are attached to each other, and the penetrating holes are formed in the first strip body and the second strip body. A butt joint assembly is arranged at the joint of the first inner strip and the second inner strip.
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Description

Technical Field

[0001] The utility model relates to the technical field of computer dynamic lighting, in particular to a computer dynamic lighting device with multiple anti-overload protections. Background Art

[0002] With the continuous development of computer technology, people's requirements for computer peripherals are getting higher and higher. As an important part of computer peripherals, lighting equipment can not only provide lighting functions, but also add atmosphere to the computer working environment.

[0003] At present, the existing computer dynamic lighting equipment is limited in length when assembled and used. Once the length is too long or too short, it will not be able to adapt to the computer equipment. In addition, the lack of corresponding overload protection structure may easily cause the circuit to burn out, which is not conducive to safe use. Utility Model Content

[0004] In order to solve the problem that the existing dynamic lighting equipment cannot adjust the length and size and is not conducive to safe use, the utility model provides a computer dynamic lighting equipment with multiple anti-overload protections.

[0005] In view of the above problems, the technical solution proposed by the present invention is:

[0006] A computer dynamic lighting device with multiple overload protections includes a control terminal, the output end of the control terminal is electrically connected to an overload protection mechanism, a self-resetting fuse is installed inside the overload protection mechanism, one end of the self-resetting fuse is electrically connected to a light strip, a plurality of lamp beads are installed on the outer wall of the light strip, the light strip includes a first strip body, a second strip body, a first inner strip, a second inner strip, an electrode sheet and a perforation, the first strip body is installed inside the first strip body, the second strip body is installed inside the second strip body, the second inner strip and the adjacent side of the first inner strip are respectively embedded with electrode sheets, each two electrode sheets are in contact with each other, and a docking component is provided at the connection between the first inner strip and the second inner strip.

[0007] Furthermore, the docking assembly includes an insulating leather cover, holes, a sub-buckle and a female buckle. The insulating leather cover is mounted on the outside of the first inner strip and the second inner strip. Holes are respectively provided on both sides of the insulating leather cover. The sub-buckle and the female buckle are respectively installed inside the two holes, and the sub-buckle and the female buckle are engaged with each other.

[0008] The beneficial effect of adopting the above further solution is that, by setting the holes, it provides space for the installation of the sub-button and the mother buckle, and by the mutual engagement of the sub-button and the mother buckle, the first inner strip and the second inner strip can be fixed.

[0009] Furthermore, the outer walls of the first inner strip and the second inner strip are respectively provided with perforations, the two perforations match each other, and one end of the buckle passes through the inside of the two perforations respectively.

[0010] The beneficial effect of adopting the above further solution is that, through the setting of the perforations, space is provided for the insertion of the sub-buttons, which is conducive to fixing the first inner strip and the second inner strip.

[0011] Furthermore, a system body is provided inside the control terminal, and a lighting body, a control module and an overload protection module are provided inside the system body.

[0012] Furthermore, the lighting body includes a light strip and a plurality of light beads.

[0013] The beneficial effect of adopting the above further solution is that, through the coordinated use of the lamp beads and the light strip, a light source facility is provided for the device.

[0014] Furthermore, an overcurrent protector, an overvoltage protector and an overheating protector are respectively provided inside the overload protection module, and the overcurrent protector, overvoltage protector and overheating protector are respectively arranged inside the overload protection mechanism.

[0015] The beneficial effect of adopting the above further solution is that, through the coordinated use of the overcurrent protector, the overvoltage protector and the overheating protector, the overload protection module has the protection functions of current, voltage and temperature respectively.

[0016] Furthermore, the overcurrent protector, overvoltage protector and overheat protector are all electrically connected to the resettable fuse.

[0017] The beneficial effect of adopting the above further solution is that, by connecting and using the self-resetting fuse, the on and off of the overcurrent protector, the overvoltage protector and the overheating protector circuits can be controlled separately.

[0018] Furthermore, the through hole is located between the two electrode sheets.

[0019] The beneficial effect of adopting the above further solution is that, through the positional relationship between the perforation and the two electrode sheets, the sub-button is prevented from obstructing the electrode sheets.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] The computer dynamic lighting device with multiple overload protections has improved safety in use while having the function of adjusting the length size through the mutual cooperation of the overload protection mechanism, the self-resetting fuse, the light strip, the lamp beads and the docking assembly. Among them, the first inner strip and the second inner strip are extended to form a mutually overlapping structure between the first strip body and the second strip body, and the segmented structure of the light strips is combined together through the mutually fitting structure of the electrode sheets. The two groups of light strips are kept tightly connected by the fixing effect of the docking assembly. The self-resetting fuse and the overload protection mechanism are used in combination to ensure that the circuit between the light strip and the lamp beads is always protected against overload, thereby effectively improving safety in use. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 A three-dimensional diagram of a computer dynamic lighting device with multiple anti-overload protections provided by the utility model;

[0023] Figure 2 A schematic diagram of the unfolding of a light strip of a computer dynamic lighting device with multiple overload protections provided by the present invention;

[0024] Figure 3 A schematic diagram of a control terminal for a computer-controlled dynamic lighting device with multiple overload protections provided by the present invention;

[0025] Figure 4 A schematic diagram of the expansion of the docking components of a computer dynamic lighting device with multiple overload protections provided by the present invention;

[0026] Figure 5 This is a system module block diagram of a computer dynamic lighting device with multiple anti-overload protections provided by the utility model.

[0027] In the figure: 100, control terminal; 200, overload protection mechanism; 300, light strip; 3001, first strip body; 3002, second strip body; 3003, first inner strip; 3004, second inner strip; 3005, electrode sheet; 3006, perforation; 400, lamp bead; 500, docking assembly; 5001, insulating leather cover; 5002, hole; 5003, male buckle; 5004, female buckle; 600, resettable fuse; 101, system body; 10101, lighting body; 10102, control module; 10103, overload protection module; 101031, overcurrent protector; 101032, overvoltage protector; 101033, overheating protector. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] Example 1

[0030] See also Figure 1-Figure 5 The utility model provides a technical solution: a computer dynamic lighting device with multiple overload protections, comprising a control terminal 100, wherein the output end of the control terminal 100 is electrically connected to an overload protection mechanism 200, a resettable fuse 600 is installed inside the overload protection mechanism 200, one end of the resettable fuse 600 is electrically connected to a light strip 300, a plurality of lamp beads 400 are installed on the outer wall of the light strip 300, and the light strip 300 comprises a first strip body 3001, a second strip body 3002, a first inner strip 3003, a second inner strip 3004, an electrode sheet 3005 and a through hole 3006, the first inner strip 3003 is installed inside the first strip body 3001, the second inner strip 3004 is installed inside the second strip body 3002, and the second inner strip 3004 and the first inner strip 3003 are mutually connected. Electrode sheets 3005 are embedded and installed on adjacent sides, and every two electrode sheets 3005 are fitted together. A docking assembly 500 is provided at the connection between the first inner strip 3003 and the second inner strip 3004. Through the extension of the first inner strip 3003 and the second inner strip 3004, the first belt body 3001 and the second belt body 3002 have a mutually overlapping structure, and then through the mutually fitting structure of the electrode sheets 3005, the segmented structure of the light strip 300 is combined together, and then with the fixing effect of the docking assembly 500, the two groups of light strips 300 maintain a tight connection, and then through the use of the self-resetting fuse 600 and the overload protection mechanism 200, the circuit between the light strip 300 and the lamp bead 400 is always protected from overload, thereby effectively improving the safety of use.

[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] Example 2

[0033] See also Figure 1-Figure 5As an embodiment of the present invention, further, the docking assembly 500 includes an insulating leather case 5001, a hole 5002, a sub-button 5003 and a female buckle 5004. The insulating leather case 5001 is set on the outside of the first inner strip 3003 and the second inner strip 3004. Holes 5002 are respectively provided on both sides of the insulating leather case 5001. The sub-button 5003 and the female buckle 5004 are respectively installed inside the two holes 5002. The sub-button 5003 and the female buckle 5004 are engaged with each other. The setting of the hole 5002 provides a position space for the installation of the sub-button 5003 and the female buckle 5004, and the sub-button 5003 and the female buckle 5004 are engaged with each other. The first inner strip 3003 and the second inner strip 3004 are fitted together, so that the first inner strip 3003 and the second inner strip 3004 can be fixed. The outer walls of the first inner strip 3003 and the second inner strip 3004 are respectively provided with perforations 3006, and the two perforations 3006 match each other. One end of the sub-button 5003 passes through the inside of the two perforations 3006 respectively. The setting of the perforations 3006 provides space for the insertion of the sub-button 5003, which is conducive to fixing the first inner strip 3003 and the second inner strip 3004. The control terminal 100 is provided with a system body 101, and the system body 101 is provided with a lighting body 10101, a control module 10102 and an overload protection module 10103.

[0034] Example 3

[0035] See also Figure 1-Figure 5 As an embodiment of the present invention, further, the lighting body 10101 includes a light strip 300 and a plurality of lamp beads 400. The lamp beads 400 cooperate with the light strip 300 to provide a light source facility for the device. The overload protection module 10103 is internally provided with an overcurrent protector 101031, an overvoltage protector 101032 and an overheating protector 101033. The overcurrent protector 101031, the overvoltage protector 101032 and the overheating protector 101033 are respectively arranged inside the overload protection mechanism 200. Through the overcurrent protector 101031, the overvoltage protector 101032 and the overheating protector 1010 The coordinated use of 33 enables the overload protection module 10103 to have the protection functions of current, voltage and temperature respectively. The overcurrent protector 101031, the overvoltage protector 101032 and the overheating protector 101033 are all electrically connected to the resettable fuse 600. Through the connection and use of the resettable fuse 600, the circuit on and off of the overcurrent protector 101031, the overvoltage protector 101032 and the overheating protector 101033 can be controlled respectively. The perforation 3006 is located between the two electrode sheets 3005. The positional relationship between the perforation 3006 and the two electrode sheets 3005 can prevent the sub-button 5003 from obstructing the electrode sheet 3005.

[0036] Specifically, the working principle of this computer dynamic lighting device with multiple overload protections is as follows: when in use, first, check whether the structure of the device is intact, and put it into use after ensuring that the structure is intact. The first inner strip 3003 and the second inner strip 3004 are extended to make the first belt body 3001 and the second belt body 3002 have a mutually overlapping structure, and then the electrode sheets 3005 are fitted together to make the segmented structure of the light strip 300 be combined together, and then the hole 5002 is set to provide a position space for the installation of the sub-buckle 5003 and the mother buckle 5004, and the sub-buckle 5003 and the mother buckle 5004 are engaged with each other, so that the first inner strip 3003 and the second inner strip 3004 can be fixed, and the perforation 3006 is set to make it The insertion of the sub-buckle 5003 provides space, which is conducive to fixing the first inner strip 3003 and the second inner strip 3004, so that the two groups of light strips 300 maintain a tight connection, and then through the coordinated use of the self-resetting fuse 600 and the overload protection mechanism 200, the circuit between the light strip 300 and the lamp bead 400 is always protected from overload, thereby effectively improving the safety of use, and through the coordinated use of the overcurrent protector 101031, the overvoltage protector 101032 and the overheating protector 101033, the overload protection module 10103 has the protection functions of current, voltage and temperature respectively. At the same time, through the connection and use of the self-resetting fuse 600, the circuits of the overcurrent protector 101031, the overvoltage protector 101032 and the overheating protector 101033 can be controlled separately.

Claims

1. A computer dynamic lighting device with multiple overload protections, characterized in that: The invention comprises a control terminal (100), wherein the output end of the control terminal (100) is electrically connected to an overload protection mechanism (200), a resettable fuse (600) is installed inside the overload protection mechanism (200), one end of the resettable fuse (600) is electrically connected to a light strip (300), a plurality of lamp beads (400) are installed on the outer wall of the light strip (300), and the light strip (300) comprises a first strip body (3001), a second strip body (3002), a first inner strip (3003), and a second inner strip (3004). , electrode sheets (3005) and perforations (3006), a first inner strip (3003) is installed inside the first strip (3001), a second inner strip (3004) is installed inside the second strip (3002), electrode sheets (3005) are respectively embedded and installed on adjacent sides of the second inner strip (3004) and the first inner strip (3003), every two electrode sheets (3005) are bonded to each other, and a docking assembly (500) is provided at the connection between the first inner strip (3003) and the second inner strip (3004).

2. The computer dynamic lighting device with multiple overload protections according to claim 1, characterized in that: The docking assembly (500) comprises an insulating leather cover (5001), a hole (5002), a sub-button (5003) and a female buckle (5004); the insulating leather cover (5001) is sleeved on the outside of the first inner strip (3003) and the second inner strip (3004); holes (5002) are respectively provided on both sides of the insulating leather cover (5001); the sub-button (5003) and the female buckle (5004) are respectively installed inside the two holes (5002); the sub-button (5003) and the female buckle (5004) are mutually engaged and connected.

3. The computer dynamic lighting device with multiple overload protections according to claim 2, characterized in that: The outer walls of the first inner strip (3003) and the second inner strip (3004) are respectively provided with perforations (3006), the two perforations (3006) are matched with each other, and one end of the sub-button (5003) passes through the inside of the two perforations (3006).

4. The computer dynamic lighting device with multiple overload protections according to claim 1, characterized in that: A system body (101) is provided inside the control terminal (100), and a lighting body (10101), a control module (10102) and an overload protection module (10103) are provided inside the system body (101).

5. The computer dynamic lighting device with multiple overload protections according to claim 4, characterized in that: The lighting body (10101) includes a light strip (300) and a plurality of light beads (400).

6. The computer dynamic lighting device with multiple overload protections according to claim 5, characterized in that: An overcurrent protector (101031), an overvoltage protector (101032) and an overheating protector (101033) are respectively provided inside the overload protection module (10103); the overcurrent protector (101031), the overvoltage protector (101032) and the overheating protector (101033) are respectively arranged inside the overload protection mechanism (200).

7. The computer dynamic lighting device with multiple overload protections according to claim 6, characterized in that: The overcurrent protector (101031), the overvoltage protector (101032) and the overheat protector (101033) are all electrically connected to the resettable fuse (600).

8. The computer dynamic lighting device with multiple overload protections according to claim 7, characterized in that: The through hole (3006) is located between the two electrode sheets (3005).