A color temperature adjustable lamp structure

By incorporating a touch-sensitive adjustment component on the outer surface of the lamp body, the problem of needing to disassemble existing lamps to adjust the color temperature is solved. This achieves convenient color temperature adjustment and a compact lamp structure, improving user experience and circuit stability.

CN224302018UActive Publication Date: 2026-05-29ZHONGSHAN LANGCAI LIGHTING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN LANGCAI LIGHTING CO LTD
Filing Date
2025-07-02
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing lighting fixtures require disassembly to adjust color temperature, resulting in inconvenience and a non-compact structure.

Method used

A touch adjustment component is installed on the outer surface of the lamp body, allowing the color temperature to be adjusted directly through the touch operation area without disassembling the lamp. The touch adjustment component is integrated with the lighting assembly inside the lamp and includes a touch control circuit board, a sensing module, and a processing module.

Benefits of technology

The color temperature adjustment process has been simplified, improving ease of operation and the compactness of the lamp structure. External components have been reduced, enhancing user experience and circuit stability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224302018U_ABST
    Figure CN224302018U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of lamp body surface touch temperature control of adjusting color, propose a kind of color temperature adjustable lamp structure, including setting in the lamp installation position lamp body, lamp body is equipped with light assembly, and the touch adjusting component for adjusting the color temperature of light assembly, light assembly is electrically connected with touch adjusting component;Lamp body outer surface is equipped with the touch operating area corresponding with touch adjusting component. Touch adjusting component includes touch control circuit board, the drive component for connecting power supply is equipped on the outside of lamp body, touch control circuit board is electrically connected with the electric control part in drive component, touch control circuit board is arranged in lamp body or arranged in drive component;Drive component is power adapter. The touch operating area corresponding with touch adjusting component is directly arranged on the outer surface of lamp body, without disassembling operation to lamp, simplify the procedure of lamp color temperature adjustment.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of color temperature control by touch adjustment on the surface of a lamp body, and specifically to a lamp structure with adjustable color temperature. Background Technology

[0002] Current solutions for adjusting the color temperature of panel lights, downlights, and spotlights involve placing a button on the upper part (back) of the fixture's casing for color temperature adjustment. The lower casing is used for illumination. Therefore, when adjusting the color temperature of panel lights, downlights, and spotlights, they must be disassembled before pressing the button. Alternatively, the power adapter for these lights may have a button for color temperature adjustment. Utility Model Content

[0003] This utility model proposes a lamp structure with adjustable color temperature. The outer surface of the lamp body is directly provided with a touch operation area corresponding to the touch adjustment component, eliminating the need to disassemble the lamp and simplifying the process of adjusting the color temperature of the lamp.

[0004] A color temperature adjustable lamp structure designed for this purpose includes a lamp body located at the lamp mounting position. The lamp body contains a lamp assembly and a touch adjustment component for adjusting the color temperature of the lamp assembly. The lamp assembly is electrically connected to the touch adjustment component. The outer surface of the lamp body is provided with a touch operation area corresponding to the touch adjustment component.

[0005] The touch control component includes a touch control circuit board, and a drive component for connecting to a power source is provided on the outside of the lamp body. The touch control circuit board is electrically connected to the electronic control part in the drive component. The touch control circuit board is located inside the lamp body or inside the drive component. The drive component is a power adapter.

[0006] The main body of the lamp is exposed at the lamp installation location and can be directly accessed without disassembling the lamp body; this part constitutes the outer surface of the lamp body.

[0007] The touch adjustment component includes a touch sensing module, which is electrically connected to the touch control circuit board. The touch sensing module is located inside the lamp body, or the touch sensing module and the touch control circuit board are jointly located in the drive component. The touch sensing module is a touch chip used to detect touch electrical signals.

[0008] The touch adjustment component includes a processing module, which is electrically connected to the touch control circuit board. The processing module is located inside the lamp body, or the processing module and the touch control circuit board are jointly located in the drive component. The processing module is a processing chip used to receive touch signals and output electrical signals to adjust the color temperature of the lighting assembly.

[0009] The touch adjustment component includes an elastic touch sensor, which is electrically connected to the touch sensing module and is correspondingly set to the touch operation area. When the elastic touch sensor is pressed, it works with the touch sensing module to generate a touch electrical signal.

[0010] The lamp body includes an upper shell, which has a groove for mounting and accommodating a touch adjustment component. The touch adjustment component includes a touch control circuit board mounted on the groove, and a touch sensing module, a processing module, and an elastic touch sensor fixedly mounted on the touch control circuit board. The elastic touch sensor, the touch sensing module, the processing module, and the touch control circuit board are electrically connected in sequence.

[0011] The upper shell is provided with a through hole for leading out the first wire. One end of the first wire is electrically connected to the touch control circuit board, and the other end of the first wire passes through the through hole and is electrically connected to the drive assembly.

[0012] The lighting assembly includes a lamp bracket and a light-emitting module mounted on the lamp bracket. The light-emitting module is a light strip or a number of LED beads connected in series. The lamp bracket has a touch avoidance area corresponding to the touch adjustment component. The lamp bracket has a through hole for leading out a second wire. One end of the second wire is electrically connected to the light-emitting module, and the other end of the second wire passes through the through hole and is electrically connected to the touch adjustment component.

[0013] The lamp is installed on the ceiling. The lamp body is installed on the ceiling. The lamp body is exposed on the ceiling and can be directly contacted without disassembling the lamp body. This part constitutes the outer surface of the lamp body.

[0014] The main body of the lamp includes a light-transmitting component, which is correspondingly arranged with the elastic touch sensor of the touch adjustment component. The outer surface of the light-transmitting component forms a touch operation area for acting on the elastic touch sensor.

[0015] The main body of the lamp includes an upper shell and a lower shell connected to the upper shell, and a light-transmitting element, a refraction element and a reflective element are provided between the upper shell and the lower shell;

[0016] The lighting assembly includes a lamp bracket and a light-emitting module. The lamp bracket has an upwardly extending rim. The light-emitting module is fixed on the inner side of the rim. The rim and the inner bottom wall of the lamp bracket form a mounting cavity for mounting reflectors, refractors and light-transmitting components. The refractor is located between the reflectors and the light-transmitting components.

[0017] The upper shell has a cavity for mounting the lighting assembly and a groove communicating with the cavity. The groove communicates with the cavity and is used to mount the touch adjustment component.

[0018] A snap-fit ​​assembly is provided between the upper shell and the lower shell, and the upper shell and the lower shell are fixedly connected by the snap-fit ​​assembly so that the lighting assembly, reflector, refraction and light transmission are relatively fixed between the upper shell and the lower shell;

[0019] The lower shell is provided with an opening relief groove corresponding to the light-transmitting component, and the lower shell is provided with a limiting edge corresponding to the opening relief groove to prevent the light-transmitting component from detaching outward.

[0020] The beneficial technical effects of this utility model are as follows:

[0021] The touch control area corresponding to the touch adjustment component is directly located on the outer surface of the lamp body, eliminating the need for disassembly and simplifying the color temperature adjustment process. Users can adjust the color temperature of the lighting assembly simply by touching the touch control area on the outer surface of the lamp body. Furthermore, integrating the touch adjustment component with the lighting assembly within the lamp body results in a more compact and rational structure, reducing the number of external components. Attached Figure Description

[0022] Figure 1 This is a three-dimensional structural diagram of a lamp fixture according to an embodiment of the present invention.

[0023] Figure 2 This is a three-dimensional structural diagram of the upper shell according to an embodiment of the present invention.

[0024] Figure 3 This is an exploded view of the assembly structure of the lamp body according to an embodiment of the present invention.

[0025] Figure 4 This is a three-dimensional structural diagram of the lower shell according to an embodiment of the present invention.

[0026] Figure 5 This is a schematic diagram of the circuit structure for adjusting color temperature according to an embodiment of the present invention.

[0027] Figure 6 This is a schematic diagram of the circuit structure within a drive component according to an embodiment of the present invention. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. In order to make the above-mentioned objects, features and advantages of the present application more apparent and understandable, many specific details are set forth in the following description in order to provide a full understanding of the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.

[0029] See Figures 1-6 A color temperature adjustable lamp structure includes a lamp body 1 disposed at the lamp installation position. The lamp body 1 is provided with a light assembly 2 and a touch adjustment component 3 for adjusting the color temperature of the light assembly 2. The light assembly 2 is electrically connected to the touch adjustment component 3. The outer surface of the lamp body 1 is provided with a touch operation area corresponding to the touch adjustment component 3.

[0030] This technical solution directly sets a touch operation area corresponding to the touch adjustment component 3 on the outer surface of the lamp body 1, eliminating the need for disassembly of the lamp and simplifying the process of adjusting the lamp's color temperature. Users only need to touch the touch operation area on the outer surface of the lamp body 1 to adjust the color temperature of the lighting assembly 2 via the touch adjustment component 3. Furthermore, integrating the touch adjustment component 3 and the lighting assembly 2 within the lamp body 1 makes the lamp structure more compact and rational, reducing the number of external components.

[0031] In this technical solution, if the lamp is installed at a high position, the outer surface (light-transmitting element 14) of the lamp body 1 can be gently touched with a long rod, and then the color temperature of the light assembly 2 can be adjusted through the touch adjustment component 3. It is not necessary to disassemble the lamp body, and the physical switch on the back of the lamp body 1 to control the color temperature is eliminated. The color temperature adjustment is achieved by setting a touch adjustment area on the surface of the lamp body 1 that cooperates with the touch adjustment component 3.

[0032] The touch adjustment component 3 includes a touch control circuit board 7. A drive component 8 for connecting to a power source is provided on the outside of the lamp body 1. The touch control circuit board 7 is electrically connected to the electronic control part in the drive component 8. The touch control circuit board 7 is located inside the lamp body 1 or inside the drive component 8. The drive component 8 is a power adapter.

[0033] The lamp body 1 is partially exposed at the lamp installation location and can be directly contacted without disassembling the lamp body 1; this part constitutes the outer surface of the lamp body 1.

[0034] The touch control circuit board 7 in the touch adjustment assembly 3 is electrically connected to the electronic control part in the drive assembly 8, realizing effective coordination between power supply and touch control. The touch control circuit board 7 can be flexibly set in the lamp body 1 or in the drive assembly 8. This setting method increases the flexibility of the lamp structure design and can be reasonably arranged according to different lamp design requirements and spatial layout.

[0035] The touch adjustment component 3 includes a touch sensing module 4, which is electrically connected to the touch control circuit board 7. The touch sensing module 4 is disposed inside the lamp body 1, or the touch sensing module 4 and the touch control circuit board 7 are disposed together in the drive component 8. The touch sensing module 4 is a touch chip used to detect touch electrical signals.

[0036] The touch sensing module 4, as a touch control chip used to detect touch electrical signals, is electrically connected to the touch control circuit board 7 and constitutes the core sensing part of the touch adjustment component 3. The touch sensing module 4 can be set inside the lamp body 1, or it can be set together with the touch control circuit board 7 in the drive component 8. This diverse setting method can adapt to the internal structure and functional requirements of different lamps.

[0037] The touch adjustment component 3 includes a processing module 6, which is electrically connected to the touch control circuit board 7. The processing module 6 is disposed inside the lamp body 1, or the processing module 6 and the touch control circuit board 7 are disposed together in the drive component 8. The processing module 6 is a processing chip used to receive touch signals and output an electrical signal to adjust the color temperature of the lighting assembly 2.

[0038] The processing module 6, as a processing chip for receiving touch signals and outputting electrical signals to adjust the color temperature of the lighting assembly 2, is electrically connected to the touch control circuit board 7. It plays a crucial role in signal processing and control throughout the entire touch-based color temperature adjustment process. The processing module 6 can be located within the lamp body 1, or it can be housed together with the touch control circuit board 7 within the drive assembly 8. This flexible arrangement helps optimize the internal circuit layout and signal transmission path of the lamp. When the processing module 6 is located within the lamp body 1, it can quickly receive touch signals transmitted by the touch sensing module 4, process and analyze them promptly, and quickly output the corresponding electrical signals to adjust the color temperature of the lighting assembly 2, reducing signal processing delays and achieving rapid color temperature adjustment response. If it is housed together with the touch control circuit board 7 within the drive assembly 8, signal processing and power control functions can be integrated, facilitating unified management and debugging of the entire circuit system and improving circuit stability and reliability.

[0039] The touch adjustment component 3 includes an elastic touch sensor 5, which is electrically connected to the touch sensing module 4. The elastic touch sensor 5 is correspondingly set to the touch operation area. When pressed, the elastic touch sensor 5 cooperates with the touch sensing module 4 to generate a touch electrical signal.

[0040] The elastic touch sensor 5 provides a more intuitive and tactile touch operation experience for the touch adjustment component 3. The elastic touch sensor 5 is electrically connected to the touch sensing module 4 and corresponds to the touch operation area. When the user presses on the touch operation area, the elastic touch sensor 5 undergoes elastic deformation under pressure, generating a touch electrical signal in conjunction with the touch sensing module 4. This combination of physical contact and electrical signal generation, compared to simple touch sensing, allows the user to feel clear operational feedback through their fingers, enhancing the accuracy and reliability of the operation. Simultaneously, the elasticity of the elastic touch sensor 5 effectively cushions the user's pressing force. The elastic touch sensor 5 is a conductive spring, and the conductive spring is electrically connected to the pins of the touch sensing module 4.

[0041] The lamp body 1 includes an upper shell 9, which has a groove 10 for mounting and accommodating a touch adjustment component 3. The touch adjustment component 3 includes a touch control circuit board 7 mounted on the groove 10, and a touch sensing module 4, a processing module 6, and an elastic touch sensing element 5 fixedly mounted on the touch control circuit board 7. The elastic touch sensing element 5, the touch sensing module 4, the processing module 6, and the touch control circuit board 7 are electrically connected in sequence.

[0042] The upper shell 9 of the lamp body 1 is provided with a recess 10 for mounting and accommodating the touch adjustment component 3, providing a stable and reasonable installation space for the touch adjustment component 3, so that the various components of the touch adjustment component 3 can be integrated in an orderly manner within the lamp body 1. The touch control circuit board 7 is fixedly mounted on the recess 10 by screws or adhesive.

[0043] The upper shell 9 is provided with a through hole 11 for leading out the first wire 12. One end of the first wire 12 is electrically connected to the touch control circuit board 7, and the other end of the first wire 12 passes through the through hole 11 and is electrically connected to the drive assembly 8.

[0044] The lighting assembly 2 includes a lamp bracket 15 and a light-emitting module 16 disposed on the lamp bracket 15. The light-emitting module 16 is a light strip or a number of LED beads connected in series. The lamp bracket 15 is provided with a touch avoidance area 17 corresponding to the touch adjustment component 3. The lamp bracket 15 is provided with a through hole 19 for leading out a second wire 18. One end of the second wire 18 is electrically connected to the light-emitting module 16, and the other end of the second wire 18 passes through the through hole 19 and is electrically connected to the touch adjustment component 3.

[0045] The lamp bracket 15 of the lighting assembly 2 is provided with a touch avoidance area 17 corresponding to the touch adjustment component 3, so that when the user presses the light-transmitting component 14, the light-transmitting component 14 indirectly acts on the elastic touch sensor 5 of the touch adjustment component 3, ensuring that the touch sensing module 4 can accurately sense the touch electrical signal after the elastic touch sensor 5 of the touch adjustment component 3 is pressed, and then transmit the touch electrical signal to the processing module 6 to adjust the color temperature of the lighting assembly 2.

[0046] The lamp is installed on the ceiling. The lamp body 1 is used to install on the ceiling. Part of the lamp body 1 is exposed on the ceiling and can be directly contacted without disassembling the lamp body 1. This part constitutes the outer surface of the lamp body 1.

[0047] The main body of the lamp includes a light-transmitting element 14, which is correspondingly disposed with the elastic touch sensor 5 of the touch adjustment component 3. The outer surface of the light-transmitting element 14 forms a touch operation area for acting on the elastic touch sensor 5.

[0048] The main body of the lamp 1 is equipped with a light-transmitting element 14 corresponding to the elastic touch sensor 5 of the touch adjustment assembly 3, and the outer surface of the light-transmitting element 14 forms a touch operation area. This design not only realizes the lighting function of the lamp, but also organically combines the light-transmitting element 14 with the touch adjustment function. The light-transmitting element 14 enables the light emitted by the lamp assembly 2 to pass through evenly, providing a good lighting effect. At the same time, its outer surface serves as a touch operation area, facilitating touch operation by the user. When the user performs operations such as pressing in the touch operation area, the light-transmitting element 14 indirectly acts on the elastic touch sensor 5.

[0049] The lamp body 1 includes an upper shell 9 and a lower shell 13 connected to the upper shell 9. A light-transmitting element 14, a refractive element 20 and a reflective element 21 are provided between the upper shell 9 and the lower shell 13.

[0050] The lighting assembly 2 includes a lamp bracket 15 and a light-emitting module 16. The lamp bracket 15 has an upwardly extending perimeter 15.1. The light-emitting module 16 is fixed on the inner side of the perimeter 15.1. The perimeter 15.1 and the inner bottom wall of the lamp bracket 15 form a mounting cavity 15.2 for mounting a reflector 21, a refractor 20 and a light-transmitting element 14. The refractor 20 is located between the reflector 21 and the light-transmitting element 14.

[0051] The upper shell 9 is provided with a cavity 9.1 for mounting the light assembly 2 and a groove 10 communicating with the cavity 9.1. The groove 10 communicates with the cavity 9.1 and is used to mount the touch adjustment component 3.

[0052] A snap-fit ​​assembly is provided between the upper shell 9 and the lower shell 13. The upper shell 9 and the lower shell 13 are fixedly connected by the snap-fit ​​assembly so that the light assembly 2, the reflector 21, the refractor 20 and the light-transmitting element 14 are relatively fixed between the upper shell 9 and the lower shell 13.

[0053] The lower shell 13 is provided with an opening relief groove 13.1 corresponding to the light-transmitting element 14, and the lower shell 13 is provided with a limiting edge 13.2 corresponding to the opening relief groove 13.1 to prevent the light-transmitting element 14 from detaching outward.

[0054] The main body 1 of the lamp adopts an upper shell 9 and a lower shell 13 connected by a snap-fit ​​assembly, which facilitates the assembly and disassembly of the lamp and reduces production and maintenance costs. The cavity 9.1 of the upper shell 9 is used to install the lighting assembly 2, and the groove 10 connects to the cavity 9.1 and is used to install the touch adjustment component 3. This structural design makes the internal components of the lamp rationally arranged, fully utilizes the internal space of the lamp, and ensures the stable installation of the lighting assembly 2 and the touch adjustment component 3. The perimeter 15.1 of the lamp bracket 15 forms a mounting groove 15.2 with the inner bottom wall, used to install the reflector 21, the refractive element 20, and the light-transmitting element 14. The refractive element 20 is located between the reflector 21 and the light-transmitting element 14. This arrangement can effectively reflect, refract, and transmit the light emitted by the light-emitting module 16, making the light more uniform and softer, improving the lighting effect and light quality of the lamp. The lower shell 13 has an opening clearance groove 13.1 corresponding to the light-transmitting element 14 to ensure that the light can pass through smoothly.

[0055] The opening clearance groove 13.1 is also convenient for pressing the light-transmitting element 14. The light-transmitting element 14 acts on the elastic touch sensor 5 through the reflector 21 and the refraction element 20. One end of the elastic touch sensor 5 acts elastically on the touch control circuit board 7, and the other end of the elastic touch sensor 5 passes through the touch clearance area 17 and corresponds to the reflector 21. When the user presses the light-transmitting element 14, the light-transmitting element 14 drives the refraction element 20 and the reflector 21 to squeeze the elastic touch sensor 5. When the light-transmitting element 14 is in the waiting state, since the gravity refraction element 20 and the reflector 21 are located below the elastic touch sensor 5, they will not come into contact with the elastic touch sensor 5.

[0056] See Figure 5 V3.3 and GND form the power input. The first capacitor and the second capacitor are connected in parallel between VDD and GND for power filtering. The touch point is connected to the IR / IO pin of the touch sensing module 4 through a line. The RS pin of the touch sensing module 4 is grounded through a 1K resistor to form a reset circuit to ensure the initialization of the touch sensing module 4. The IO / PWM6 and IO / PWM7 pins of the touch sensing module 4 output pulse width modulation signals respectively, which are connected to the processing module 6 (i.e., a general microcontroller). After processing by the processing module 6, the brightness of the white light and warm light LEDs is controlled, realizing the electrical connection process of touch signal detection and color temperature adjustment signal output.

[0057] See Figure 6After rectification by the DB1 rectifier bridge, ACV+ and ACV- are filtered by the first capacitor CX1. ACL and ACN are connected to the AC input. F1 fuse, RV1 varistor, and D1 diode are connected in parallel at the input for protection. The HV pin of the driver component 8 (corresponding to U1 and U2 driver chips) is connected to the high-voltage terminal. The DRAIN pin is connected to LED+ via inductors L1 and L2 respectively. The CS pin is grounded through a sampling resistor to detect current. The OVP pin is connected to a voltage detection circuit for overvoltage protection. SR2 and D2 diodes are connected in parallel in the drive circuit, forming a load circuit between LED+ and GND. When the two circuits work together, the driver component 8 supplies power to the touch adjustment component through V3.3. The IO / PWM signal output by the processing module 6 is connected to the control terminal of the driver component to adjust the driving current ratio of white and warm LEDs, thereby realizing the color temperature adjustment function.

[0058] The technical parameters for white light are 6000~6500K; the parameters for warm light are 3000K; and there is also natural light, which is sunlight, referred to as natural light in the industry by those skilled in the art, and the technical parameters for natural light are 4000K.

[0059] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A lamp structure with adjustable color temperature, comprising a lamp body (1) disposed at the lamp mounting position, characterized in that: The lamp body (1) is provided with a light assembly (2) and a touch adjustment component (3) for adjusting the color temperature of the light assembly (2). The light assembly (2) and the touch adjustment component (3) are electrically connected. The outer surface of the lamp body (1) is provided with a touch operation area corresponding to the touch adjustment component (3).

2. The color temperature adjustable lamp structure according to claim 1, characterized in that: The touch adjustment component (3) includes a touch control circuit board (7), and a drive component (8) for connecting to a power supply is provided on the outside of the lamp body (1). The touch control circuit board (7) is electrically connected to the electronic control part in the drive component (8). The touch control circuit board (7) is located in the lamp body (1) or in the drive component (8). The drive component (8) is a power adapter. The lamp body (1) is partially exposed at the lamp installation position and can be directly contacted without disassembling the lamp body (1), and this part constitutes the outer surface of the lamp body (1).

3. The color temperature adjustable lamp structure according to claim 2, characterized in that: The touch adjustment component (3) includes a touch sensing module (4), which is electrically connected to the touch control circuit board (7). The touch sensing module (4) is located inside the lamp body (1), or the touch sensing module (4) and the touch control circuit board (7) are located together in the drive component (8). The touch sensing module (4) is a touch chip used to detect touch electrical signals.

4. The color temperature adjustable lamp structure according to claim 2, characterized in that: The touch adjustment component (3) includes a processing module (6), which is electrically connected to the touch control circuit board (7). The processing module (6) is located inside the lamp body (1), or the processing module (6) and the touch control circuit board (7) are located together in the drive component (8). The processing module (6) is a processing chip used to receive touch signals and output an electrical signal to adjust the color temperature of the lighting assembly (2).

5. The color temperature adjustable lamp structure according to claim 4, characterized in that: The touch adjustment component (3) includes an elastic touch sensor (5), which is electrically connected to the touch sensing module (4). The elastic touch sensor (5) is set in accordance with the touch operation area. When the elastic touch sensor (5) is pressed, it works with the touch sensing module (4) to generate a touch electrical signal.

6. The color temperature adjustable lamp structure according to claim 2, characterized in that: The lamp body (1) includes an upper shell (9), which has a groove (10) for mounting and accommodating a touch adjustment component (3). The touch adjustment component (3) includes a touch control circuit board (7) mounted on the groove (10), and a touch sensing module (4), a processing module (6), and an elastic touch sensing element (5) fixedly mounted on the touch control circuit board (7). The elastic touch sensing element (5), the touch sensing module (4), the processing module (6), and the touch control circuit board (7) are electrically connected in sequence.

7. The color temperature adjustable lamp structure according to claim 6, characterized in that: The upper shell (9) is provided with a through hole (11) for leading out the first wire (12). One end of the first wire (12) is electrically connected to the touch control circuit board (7), and the other end of the first wire (12) passes through the through hole (11) and is electrically connected to the drive assembly (8).

8. The color temperature adjustable lamp structure according to claim 1, characterized in that: The lighting assembly (2) includes a lamp bracket (15) and a light-emitting module (16) disposed on the lamp bracket (15). The light-emitting module (16) is a light strip or a number of LED beads connected in series. The lamp bracket (15) is provided with a touch avoidance area (17) corresponding to the touch adjustment component (3). The lamp bracket (15) is provided with a through hole (19) for leading out a second wire (18). One end of the second wire (18) is electrically connected to the light-emitting module (16), and the other end of the second wire (18) passes through the through hole (19) and is electrically connected to the touch adjustment component (3).

9. The color temperature adjustable lamp structure according to claim 1, characterized in that: The lamp is installed on the ceiling. The lamp body (1) is installed on the ceiling. Part of the lamp body (1) is exposed on the ceiling and can be directly contacted without disassembling the lamp body (1). This part constitutes the outer surface of the lamp body (1). The main body (1) of the lamp includes a light-transmitting element (14), which is correspondingly arranged with the elastic touch sensor (5) of the touch adjustment component (3). The outer surface of the light-transmitting element (14) forms a touch operation area for acting on the elastic touch sensor (5).

10. The color temperature adjustable lamp structure according to claim 1, characterized in that: The lamp body (1) includes an upper shell (9) and a lower shell (13) connected to the upper shell (9). A light-transmitting element (14), a refractive element (20) and a reflective element (21) are provided between the upper shell (9) and the lower shell (13). The lighting assembly (2) includes a lamp bracket (15) and a light-emitting module (16). The lamp bracket (15) has an upwardly extending rim (15.1). The light-emitting module (16) is fixed on the inner side of the rim (15.1). The rim (15.1) and the inner bottom wall of the lamp bracket (15) form a mounting cavity (15.2) for mounting a reflector (21), a refractor (20) and a light-transmitting element (14). The refractor (20) is located between the reflector (21) and the light-transmitting element (14). The upper shell (9) is provided with a cavity (9.1) for mounting the light assembly (2) and a groove (10) communicating with the cavity (9.1). The groove (10) communicates with the cavity (9.1) and is used to mount the touch adjustment component (3). A snap-fit ​​assembly is provided between the upper shell (9) and the lower shell (13). The upper shell (9) and the lower shell (13) are fixedly connected by the snap-fit ​​assembly so that the light assembly (2), reflector (21), refractor (20) and light-transmitting element (14) are relatively fixed between the upper shell (9) and the lower shell (13). The lower shell (13) is provided with an opening relief groove (13.1) corresponding to the light-transmitting element (14), and the lower shell (13) is provided with a limiting edge (13.2) corresponding to the opening relief groove (13.1) to prevent the light-transmitting element (14) from detaching outward.