Full-spectrum lighting diode
The design of the mounting base and limiting mechanism solves the problem of inconvenient assembly of traditional diodes, realizes tool-free assembly and disassembly, reduces frictional resistance, and improves the ease of operation.
Patent Information
- Application Number
- CN202520382362.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-03-06
AI Technical Summary
Traditional diodes are inconvenient to assemble because the leads are soldered onto the carrier, requiring tools and making installation and removal difficult.
The design incorporates a mounting base, a limiting mechanism, and a slider structure. Through the cooperation of the slider and the extrusion block, the pin is limited and deformed, simplifying the assembly and disassembly process.
Diodes can be easily assembled and disassembled without tools, reducing structural frictional resistance and making operation simple and convenient.
Smart Images

Figure CN223782748U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting equipment technology, and in particular to a full-spectrum lighting diode. Background Technology
[0002] A full-spectrum lighting diode, or full-spectrum LED, is a light-emitting diode with a wide range of emission spectra. The reason full-spectrum LEDs can achieve such broad-spectrum emission is due to the use of different designs and materials. These designs may include the use of different semiconductor materials (such as gallium nitride (GaN) and indium gallium phosphide (InGaP)) and multilayer structures to control the wavelength range of the emitted light.
[0003] Traditional diodes are typically assembled by soldering their leads to a carrier, which makes installation and removal inconvenient and requires specific tools, making them rather cumbersome to use.
[0004] Therefore, we propose a full-spectrum illumination diode. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing diodes, which typically have their pins soldered onto a carrier during assembly, making installation and disassembly inconvenient and requiring specialized tools. Therefore, this invention proposes a full-spectrum lighting diode.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A full-spectrum illumination diode, comprising:
[0008] The mounting base has a first mounting groove and two second mounting grooves on its inner side. The two second mounting grooves are symmetrically arranged on both sides of the first mounting groove and are connected to the first mounting groove. A first slider, a second slider and a third slider are slidably connected in each of the two second mounting grooves. The second slider cooperates with the first slider and the third slider respectively. A tension spring is fixed between the third slider and the second mounting groove.
[0009] It also includes a diode body, the bottom of which is fixed with two pins. The pins pass through the first mounting groove and extend into the second mounting groove. An electrode plate is fixed on the inner wall of one side of the second mounting groove. The electrode plate and the pins cooperate with each other. Two lead holes are opened on one side of the mounting base. The lead holes are connected to the second mounting groove and are located on one side of the electrode plate.
[0010] A limiting mechanism is provided on one side of the mounting base and is used to limit the pin.
[0011] In one possible design, the limiting mechanism includes a rotating shaft and multiple limiting grooves. The rotating shaft rotatably passes through one side of the mounting base. One end of the rotating shaft extends into the first mounting groove and is fixed with an elliptical pressing block. The pressing block is located between two pins. The other end of the rotating shaft is fixed with an adjusting block. One side of the adjusting block is threaded through a limiting bolt. Multiple limiting grooves are opened on one side of the mounting base, and one end of the limiting bolt is located in one of the limiting grooves.
[0012] In one possible design, the inner wall of the second mounting groove is integrally formed with two protrusions, and two grooves are formed on one side of the first slider, with the protrusions and grooves cooperating.
[0013] In one possible design, two spherical grooves are formed on one side of the second slider, and each spherical groove contains a ball bearing.
[0014] In one possible design, the surface of the mounting base has a circular groove that communicates with the first mounting groove and mates with the diode body.
[0015] In one possible design, mounting holes are provided at both ends of the mounting base.
[0016] In this application, during assembly, the diode is placed in the mounting base, with the upper middle part of the pin located in the first mounting groove and the bottom end of the pin located in the second mounting groove. Then, the limiting bolt is rotated to disengage from the limiting groove. Then, the adjusting block is rotated to drive the rotating shaft and the pressing block to rotate, so that the pressing block rotates nearly 90 degrees. Under the pressure of the pressing block, the pin undergoes local deformation, thereby limiting the diode and making it difficult to pull out directly. At the same time, the deformed part pushes the first slider to move, the first slider pushes the second slider to move, and the second slider pushes the third slider to move. The third slider contacts the bottom end of the pin and pushes the pin and the electrode plate to fit tightly. Then, the limiting bolt is aligned with the corresponding limiting groove. During disassembly, the limiting bolt is rotated to disengage from the limiting groove, and then the adjusting block is rotated to reset, so that the pressing block resets and disengages from the pin. Under the action of the tension spring, the tension spring pulls the third slider to reset and no longer applies pressure to the pin. Since the diode pin has the ability to deform, the diode can be pulled out directly to complete the disassembly.
[0017] Beneficial effects: The full-spectrum lighting diode described in this utility model, through the setting of multiple structures such as the mounting base, the first mounting groove and the extrusion block, can facilitate the assembly and disassembly of the diode without the need for tools, and is simple and convenient to operate and use.
[0018] In this utility model, the full-spectrum illumination diode, through the arrangement of multiple structures such as a first slider, a second slider, and a ball bearing, can reduce the frictional resistance between the first slider and the second slider, and between the second slider and the third slider, making it convenient for people to adjust the structure;
[0019] This invention allows for easy assembly and disassembly of diodes without the need for tools, and is simple and convenient to operate and use. It also reduces frictional resistance between structures, making it easier to adjust the structure. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural schematic diagram of a full-spectrum lighting diode proposed in this utility model;
[0021] Figure 2 This is a schematic diagram of the cross-sectional structure of a full-spectrum lighting diode proposed in this utility model;
[0022] Figure 3 This is a cross-sectional view of a full-spectrum lighting diode proposed in this utility model.
[0023] In the diagram: 1. Mounting base; 2. Mounting hole; 3. Rotating shaft; 4. Adjusting block; 5. Limiting bolt; 6. Limiting groove; 7. Diode body; 8. Pin; 9. First mounting groove; 10. Second mounting groove; 11. First slider; 12. Second slider; 13. Third slider; 14. Tension spring; 15. Electrode plate; 16. Lead hole; 17. Extrusion block; 18. Protrusion; 19. Groove; 20. Ball bearing; 21. Circular groove. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0025] Example 1: Refer to Figures 1-3 A diode, comprising:
[0026] Mounting base 1 has a first mounting groove 9 and two second mounting grooves 10 on its inner side. The two second mounting grooves 10 are symmetrically arranged on both sides of the first mounting groove 9 and are connected to the first mounting groove 9. A first slider 11, a second slider 12, and a third slider 13 are slidably connected in each of the two second mounting grooves 10. The second slider 12 cooperates with the first slider 11 and the third slider 13 respectively. A tension spring 14 is fixed between the third slider 13 and the second mounting groove 10. This design allows the first slider 11, the second slider 12, and the third slider 13 to slide relative to each other, and can be used in conjunction with subsequent structures.
[0027] The device also includes a diode body 7, with two pins 8 fixed to its bottom. The pins 8 pass through a first mounting groove 9 and extend into a second mounting groove 10. An electrode plate 15 is fixed to the inner wall of one side of the second mounting groove 10. The electrode plate 15 and the pins 8 cooperate to achieve electrical connection. Two lead holes 16 are formed on one side of the mounting base 1, communicating with the second mounting groove 10 and located on one side of the electrode plate 15. This design allows the pins 8 to be connected to an external circuit through the electrode plate 15 and the lead holes 16.
[0028] A limiting mechanism is provided on one side of the mounting base 1 to limit the pins 8. The limiting mechanism includes a rotating shaft 3 and multiple limiting grooves 6. The rotating shaft 3 rotatably passes through one side of the mounting base 1. One end of the rotating shaft 3 extends into the first mounting groove 9 and is fixed with an elliptical pressing block 17. The pressing block 17 is located between two pins 8 and is used to press and limit the pins 8 by rotation. The other end of the rotating shaft 3 is fixed with an adjusting block 4. One side of the adjusting block 4 is threaded through a limiting bolt 5. Multiple limiting grooves 6 are all opened on one side of the mounting base 1. One end of the limiting bolt 5 is located in one of the limiting grooves 6, thereby realizing the fixing and limiting of the rotating shaft 3.
[0029] Example 2: An improved full-spectrum illumination diode based on Example 1;
[0030] In another aspect of this embodiment, the inner wall of the second mounting groove 10 is integrally formed with two protrusions 18, and two grooves 19 are formed on one side of the first slider 11. The protrusions 18 and the grooves 19 cooperate to limit the sliding of the first slider 11, preventing the first slider 11 from extending into the first mounting groove 9, thereby facilitating the installation of the pin 8.
[0031] In another aspect of this embodiment, two spherical grooves are provided on one side of the second slider 12, and ball bearings 20 are provided in both spherical grooves. The ball bearings 20 can reduce the frictional resistance of the second slider 12 during the sliding process, making its sliding smoother.
[0032] In another aspect of this embodiment, a circular groove 21 is provided on the surface of the mounting base 1. The circular groove 21 is connected to the first mounting groove 9. The circular groove 21 cooperates with the diode body 7 to position the diode body 7 and improve the stability of the structure.
[0033] In another aspect of this embodiment, mounting holes 2 are provided at both ends of the mounting base 1, which allows people to easily fix the mounting base 1 to the corresponding carrier using bolts.
[0034] However, as is well known to those skilled in the art, the working principle and wiring method of electrode 15 are commonplace and are all conventional methods or common knowledge, so they will not be described in detail here. Those skilled in the art can make any selections according to their needs or convenience.
[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A full-spectrum illumination diode, characterized in that, include: Mounting base (1), the inner side of which is provided with a first mounting groove (9) and two second mounting grooves (10). The two second mounting grooves (10) are symmetrically arranged on both sides of the first mounting groove (9) and are connected to the first mounting groove (9). A first slider (11), a second slider (12) and a third slider (13) are slidably connected in each of the two second mounting grooves (10). The second slider (12) cooperates with the first slider (11) and the third slider (13) respectively. A tension spring (14) is fixed between the third slider (13) and the second mounting groove (10). It also includes a diode body (7), the bottom of which is fixed with two pins (8), the pins (8) pass through the first mounting groove (9) and extend into the second mounting groove (10), an electrode plate (15) is fixed on one side of the inner wall of the second mounting groove (10), the electrode plate (15) and the pins (8) cooperate with each other, and two lead holes (16) are opened on one side of the mounting base (1), the lead holes (16) are connected to the second mounting groove (10) and are located on one side of the electrode plate (15); A limiting mechanism is provided on one side of the mounting base (1) for limiting the pin (8).
2. The full-spectrum illumination diode according to claim 1, characterized in that, The limiting mechanism includes a rotating shaft (3) and multiple limiting grooves (6). The rotating shaft (3) rotates through one side of the mounting base (1). One end of the rotating shaft (3) extends into the first mounting groove (9) and is fixed with an elliptical extrusion block (17). The extrusion block (17) is located between two pins (8). The other end of the rotating shaft (3) is fixed with an adjusting block (4). One side of the adjusting block (4) is threaded through a limiting bolt (5). Multiple limiting grooves (6) are opened on one side of the mounting base (1). One end of the limiting bolt (5) is located in one of the limiting grooves (6).
3. A full-spectrum illumination diode according to claim 2, characterized in that, The inner wall of the second mounting groove (10) is integrally formed with two protrusions (18), and two grooves (19) are opened on one side of the first slider (11), with the protrusions (18) and grooves (19) cooperating.
4. A full-spectrum illumination diode according to claim 3, characterized in that, Two spherical grooves are provided on one side of the second slider (12), and ball bearings (20) are provided in both spherical grooves.
5. A full-spectrum illumination diode according to claim 4, characterized in that, The surface of the mounting base (1) is provided with a circular groove (21), which is connected to the first mounting groove (9). The circular groove (21) and the diode body (7) are matched.
6. A full-spectrum illumination diode according to claim 5, characterized in that, Mounting holes (2) are provided at both ends of the mounting base (1).