Lamp with function of regulating and controlling different color temperatures

Through the N-MOS tube driving technology and specific control structure based on microprocessor, the adjustment of lighting brightness and working power is achieved, solving the problem of single color temperature of traditional lamps, meeting diversified market demands, and reducing stockpiling.

CN223271203UActive Publication Date: 2025-08-26NINGBO OUTLUX ELECTRICAL CO LTD
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Patent Information

Application Number
CN202422159452.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-08-26
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

Traditional lamps have a single color temperature, which cannot meet the diversified market demand, resulting in an increase in stockpiling.

Method used

The N-MOS tube driving technology based on microprocessor is adopted to regulate the lighting circuit through a specific control structure to adjust the lighting brightness and working power. The combination of ring members, compression control members and control turntables is used to achieve free switching of three color temperatures.

Benefits of technology

It realizes flexible adjustment of lighting brightness and working power, has a simple structure and convenient operation, meets diverse usage needs, and reduces the number of stockpiling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lamp with different color temperature regulation and control functions, and relates to the technical field of lamps, and the lamp with different color temperature regulation and control functions comprises an annular component arranged on a bottom plate structure; the three elastic pressure control components are arranged in the area, surrounded by the annular component, of the bottom plate structure, and the elastic pressure control components can be switched between a disconnection state and a connection state; one side, facing the bottom plate structure, of the regulation and control rotary table is provided with a protruding extrusion piece; the elastic pressure control components are connected with the light circuit in a matched mode. The light circuit is regulated and controlled through a specific control structure, so that the light brightness and the working power are adjusted, the overall structure is simple, operation is convenient, and the actual use requirement can be met.
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Description

Technical Field

[0001] The present application relates to the technical field of lamps, and in particular to a lamp with different color temperature control functions. Background Art

[0002] Traditional lamps are mostly single color temperature, but with the improvement of living standards in recent years, market demand has also changed. To reduce the number of lamps with different color temperatures, it is necessary to provide a lamp with three color temperatures that can switch freely. This can meet the current demand for long-term use without stocking up.

[0003] Therefore, in order to meet actual needs, a microprocessor-based N-MOS tube driving technology is now provided. Summary of the Invention

[0004] In response to the defects in the existing technology, the purpose of this application is to provide a lamp with different color temperature control functions, which controls the lighting circuit through a specific control structure to achieve the adjustment of light brightness and working power. The overall structure is simple, the operation is convenient, and it can meet actual usage needs.

[0005] In order to achieve the above objectives, the technical solution adopted by this application is:

[0006] The present application provides a lamp with different color temperature control functions, the lamp comprising:

[0007] an annular member, the annular member being arranged on the base plate structure;

[0008] Three spring-loaded control members are provided on the bottom plate structure in an area surrounded by the annular member, and the spring-loaded control members can be switched between a disconnected state and a connected state;

[0009] A regulating dial rotatably disposed on the annular member, wherein a protruding extrusion piece is disposed on a side of the regulating dial facing the base structure;

[0010] Lighting circuit, each of the spring-loaded control components is respectively connected to the lighting circuit; wherein,

[0011] The protruding pressing member is configured so that when the regulating dial is rotated on the regulating dial and when the protruding pressing member is located above any of the biasing control members, the protruding pressing member can press the corresponding biasing control member into a connected state;

[0012] The three spring-loaded control members are all in the shape of long strips and are symmetrically distributed in the area surrounded by the annular member on the base structure;

[0013] The three pressure control members are configured so that when any one of the pressure control members is in a connected state, the other two pressure control members are in a disconnected state;

[0014] The three spring-loaded control members are configured to be in an off-circuit state at the same time.

[0015] On the basis of the above technical solution, the lighting circuit includes a first LED, a second LED, a third LED, a fourth LED, a fifth LED and a sixth LED; wherein,

[0016] The three pressure control components are marked as pressure control component No. 1, pressure control component No. 2 and pressure control component No. 3 respectively;

[0017] When the first pressure control member is in the connected state, the first LED, the second LED, and the third LED are in the lit state, and the fourth LED, the fifth LED, and the sixth LED are in the extinguished state;

[0018] When the second spring control member is in the connected state, the first LED, the second LED, the third LED, the fourth LED, the fifth LED, and the sixth LED are all in the illuminated state;

[0019] When the third pressure control member is in the connected state, the first LED, the second LED, and the third LED are in the off state, and the fourth LED, the fifth LED, and the sixth LED are in the on state.

[0020] On the basis of the above technical solution, the lighting circuit includes:

[0021] A control branch, wherein the control branch includes a control main branch and three control sub-branches connected thereto, wherein the three control sub-branches are marked as control sub-branch No. 1, control sub-branch No. 2, and control sub-branch No. 3 respectively;

[0022] A lighting branch, the lighting branch comprising:

[0023] A first control terminal, a first LED, a second LED, and a third LED connected in sequence;

[0024] a third control terminal, a fourth LED, a fifth LED, and a sixth LED connected in sequence;

[0025] a second control end connected to the input end of the first diode and the input end of the second diode respectively;

[0026] The output end of the first diode is connected to the first control end;

[0027] The output end of the second diode is connected to the third control end;

[0028] The output ends of the third LED and the sixth LED are connected to serve as the output ends of the lighting branch.

[0029] On the basis of the above technical solution, the No. 1 spring pressure control member corresponds to the first control end and the No. 1 control sub-branch;

[0030] The second pressure control member corresponds to the second control end and the second control auxiliary branch;

[0031] The No. 3 spring-pressure control component corresponds to the third control end and the No. 3 regulation sub-branch.

[0032] On the basis of the above technical solution, the spring pressure control component includes a pressing spring piece structure, a spring pressure control first connection end and a spring pressure control second connection end;

[0033] The first spring-controlled connection end and the second spring-controlled connection end are spaced apart, and the pressing spring structure is located above the space between the first spring-controlled connection end and the second spring-controlled connection end;

[0034] The protruding extrusion member is configured so that when the regulating dial rotates on the regulating dial and when the protruding extrusion member is above any of the spring-pressing control components, the protruding extrusion member squeezes the pressing spring structure of the corresponding spring-pressing control component, so that the pressing spring structure connects the spring-pressing control first connection end and the spring-pressing control second connection end.

[0035] On the basis of the above technical solution, the first spring pressure control connection end of the No. 1 spring pressure control member is connected to the first control end, and the second spring pressure control connection end of the No. 1 spring pressure control member is connected to the No. 1 control auxiliary branch;

[0036] The first spring control connection end of the second spring control member is connected to the second control end, and the second spring control connection end of the second spring control member is connected to the second control auxiliary branch;

[0037] The first connection end of the spring pressure control component No. 3 is connected to the third control end, and the second connection end of the spring pressure control component No. 3 is connected to the No. 3 regulation sub-branch.

[0038] On the basis of the above technical solution, the lighting circuit includes:

[0039] A control branch, wherein the control branch includes a control main branch and three control sub-branches connected thereto, wherein the three control sub-branches are marked as control sub-branch No. 1, control sub-branch No. 2, and control sub-branch No. 3 respectively;

[0040] A lighting branch, the lighting branch comprising:

[0041] A first control terminal, a first LED, a second LED, and a third LED connected in sequence;

[0042] a third control terminal, a fourth LED, a fifth LED, and a sixth LED connected in sequence;

[0043] a second control end connected to the input end of the first diode and the input end of the second diode respectively;

[0044] The output end of the first diode is connected to the first control end;

[0045] The output end of the second diode is connected to the third control end;

[0046] The output ends of the third LED and the sixth LED are connected to serve as the output ends of the lighting branch.

[0047] On the basis of the above technical solution, the spring pressure control component includes a pressing spring piece structure, a spring pressure control first connection end and a spring pressure control second connection end;

[0048] The first spring-controlled connection end and the second spring-controlled connection end are spaced apart, and the pressing spring structure is located above the space between the first spring-controlled connection end and the second spring-controlled connection end;

[0049] The protruding extrusion member is configured so that when the regulating dial rotates on the regulating dial and is located above any of the spring-pressing control components, the protruding extrusion member squeezes the pressing spring sheet structure so that the pressing spring sheet structure connects the spring-pressing control first connection end and the spring-pressing control second connection end.

[0050] On the basis of the above technical solution, the annular component is a circular ring structure;

[0051] The bottom plate structure is a disc structure;

[0052] The protruding extrusion piece is a hemispherical protrusion structure.

[0053] On the basis of the above technical solution, the length direction of each of the elastic pressure control members coincides with the diameter direction of the bottom plate structure, and the angle between the length directions of the three elastic pressure control members is 120°.

[0054] Compared with the prior art, the advantages of this application are:

[0055] This application regulates the lighting circuit through a specific control structure, thereby achieving the adjustment of lighting brightness and working power. The overall structure is simple, the operation is convenient, and it can meet actual usage needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0056] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0057] Figure 1 This is a structural diagram of a ring component and a control dial in a lamp with different color temperature control functions according to an embodiment of the present application;

[0058] Figure 2 This is a structural diagram of a ring component, a bottom plate structure, and a spring-loaded control component in a lamp with different color temperature control functions according to an embodiment of the present application;

[0059] Figure 3 Schematic diagram of the internal structure of a spring-loaded control component in a lamp with different color temperature control functions according to an embodiment of the present application;

[0060] Figure 4 This is a schematic diagram of the structure of a control dial in a lamp with different color temperature control functions according to an embodiment of the present application;

[0061] Figure 5 A side view of a control dial in a lamp with different color temperature control functions according to an embodiment of the present application;

[0062] Figure 6 This is a schematic diagram of the circuit structure of the control branch in the lamp with different color temperature control functions according to an embodiment of the present application;

[0063] Figure 7 This is a schematic diagram of the circuit structure of a lighting circuit with different color temperature control functions according to an embodiment of the present application;

[0064] In the picture:

[0065] 1. Annular member; 2. Bottom plate structure; 3. Spring-pressure control member; 30. Pressing spring sheet structure; 31. Spring-pressure control first connection end; 32. Spring-pressure control second connection end; 4. Control dial; 40. Protruding extrusion member; 5. Lighting circuit; 50. Control branch; 500. Control main branch; 501. Control sub-branch; 51. Lighting branch; 510. First control end; 511. First LED; 512. Second LED; 513. Third LED; 514. Third control end; 515. Fourth LED; 516. Fifth LED; 517. Sixth LED; 518. Second control end; 519. First diode; 520. Second diode. DETAILED DESCRIPTION

[0066] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0067] The embodiments of the present application are further described in detail below with reference to the accompanying drawings.

[0068] The embodiment of the present application provides a lamp with different color temperature control functions, which regulates the lighting circuit through a specific control structure to achieve the adjustment of light brightness and working power. The overall structure is simple, the operation is convenient, and it can meet actual usage needs.

[0069] To achieve the above technical effects, the overall idea of ​​this application is as follows:

[0070] A lamp with different color temperature control functions, the lamp comprising:

[0071] an annular member 1, the annular member 1 being arranged on a base plate structure 2;

[0072] Three spring-loaded control members 3 are provided on the bottom plate structure 2 in an area surrounded by the annular member 1, and the spring-loaded control members 3 can be switched between a disconnected state and a connected state;

[0073] A control dial 4 rotatably disposed on the annular member 1 , wherein a protruding extrusion member 40 is disposed on a side of the control dial 4 facing the base structure 2 ;

[0074] The lighting circuit 5, each of the spring-loaded control components 3 is respectively connected to the lighting circuit 5; wherein,

[0075] The protruding pressing member 40 is configured so that when the control dial 4 is rotated and when the protruding pressing member 40 is located above any of the biasing control members 3 , the protruding pressing member 40 can press the corresponding biasing control member 3 into a connected state;

[0076] The three spring-loaded control members 3 are all long strips and symmetrically distributed in the area surrounded by the annular member 1 on the base structure 2;

[0077] The three pressure control members 3 are configured such that when any one of the pressure control members 3 is in a connected state, the other two pressure control members 3 are in a disconnected state;

[0078] The three spring-loaded control members 3 are configured to be in an off-circuit state at the same time.

[0079] The embodiments of the present application are further described in detail below with reference to the accompanying drawings.

[0080] See also Figures 1 to 7 As shown, the embodiment of the present application provides a lamp with different color temperature control functions, the lamp comprising:

[0081] an annular member 1, the annular member 1 being arranged on a base plate structure 2;

[0082] Three spring-loaded control members 3 are provided on the bottom plate structure 2 in an area surrounded by the annular member 1, and the spring-loaded control members 3 can be switched between a disconnected state and a connected state;

[0083] A control dial 4 rotatably disposed on the annular member 1 , wherein a protruding extrusion member 40 is disposed on a side of the control dial 4 facing the base structure 2 ;

[0084] The lighting circuit 5, each of the spring-loaded control components 3 is respectively connected to the lighting circuit 5; wherein,

[0085] The protruding pressing member 40 is configured so that when the regulating dial 4 is rotated on the regulating dial 4 and is located above any of the spring-pressing control members 3 , the spring-pressing control member 3 can be pressed into a connected state;

[0086] The three spring-loaded control members 3 are all long strips and symmetrically distributed in the area surrounded by the annular member 1 on the base structure 2;

[0087] The three pressure control members 3 are configured such that when any one of the pressure control members 3 is in a connected state, the other two pressure control members 3 are in a disconnected state;

[0088] The three spring-loaded control members 3 are configured to be in an off-circuit state at the same time.

[0089] On the basis of the above technical solution, the lighting circuit 5 includes a first LED 511, a second LED 512, a third LED 513, a fourth LED 515, a fifth LED 516 and a sixth LED 517; wherein,

[0090] The three pressure control members 3 are respectively marked as pressure control member No. 1, pressure control member No. 2 and pressure control member No. 3;

[0091] When the first pressure control member is in the connected state, the first LED 511, the second LED 512, and the third LED 513 are in the lit state, and the fourth LED 515, the fifth LED 516, and the sixth LED 517 are in the extinguished state;

[0092] When the second pressure control member is in the connected state, the first LED 511, the second LED 512, the third LED 513, the fourth LED 515, the fifth LED 516 and the sixth LED 517 are all in the lighted state;

[0093] When the No. 3 spring control member is in the connected state, the first LED 511 , the second LED 512 , and the third LED 513 are in the off state, and the fourth LED 515 , the fifth LED 516 , and the sixth LED 517 are in the on state.

[0094] In the embodiment of the present application, the lighting circuit is regulated by a specific control structure to achieve the adjustment of the lighting brightness and working power. The overall structure is simple and easy to operate, which can meet actual usage needs.

[0095] It should be noted that in order to ensure different color temperatures,

[0096] When the first pressure control member is in the connected state, the first LED 511, the second LED 512, and the third LED 513 are in the lighted state, and the fourth LED 515, the fifth LED 516, and the sixth LED 517 are in the dark state. The color temperature at this time is recorded as the first color temperature.

[0097] When the second pressure control member is in the connected state, the first LED 511, the second LED 512, the third LED 513, the fourth LED 515, the fifth LED 516, and the sixth LED 517 are all in the illuminated state, and the color temperature at this time is recorded as the second color temperature;

[0098] When the third spring control member is in the connected state, the first LED 511, the second LED 512, and the third LED 513 are off, and the fourth LED 515, the fifth LED 516, and the sixth LED 517 are on. The color temperature at this time is recorded as the third color temperature.

[0099] The first color temperature, the second color temperature, and the third color temperature are all different.

[0100] Furthermore, the lighting circuit 5 includes:

[0101] The control branch 50 includes a control main branch 500 and three control sub-branches 501 connected thereto, wherein the three control sub-branches 501 are respectively marked as control sub-branch No. 1, control sub-branch No. 2, and control sub-branch No. 3;

[0102] The lighting branch 51 includes:

[0103] A first control terminal 510, a first LED 511, a second LED 512, and a third LED 513 connected in sequence;

[0104] The third control terminal 514, the fourth LED 515, the fifth LED 516 and the sixth LED 517 are connected in sequence;

[0105] a second control terminal 518 connected to the input terminals of the first diode 519 and the second diode 520 respectively;

[0106] The output end of the first diode 519 is connected to the first control end 510;

[0107] The output end of the second diode 520 is connected to the third control end 514;

[0108] The output end of the third LED 513 is connected to the output end of the sixth LED 517 , serving as the output end of the lighting branch 51 .

[0109] Furthermore, the No. 1 spring control member corresponds to the first control terminal 510 and the No. 1 control sub-branch;

[0110] The second pressure control member corresponds to the second control terminal 518 and the second control sub-branch;

[0111] The No. 3 spring-loaded control component corresponds to the third control terminal 514 and the No. 3 regulation sub-branch.

[0112] Furthermore, the spring pressure control member 3 includes a spring-pressing structure 30, a spring pressure control first connection end 31 and a spring pressure control second connection end 32;

[0113] The first spring-loaded control connection end 31 and the second spring-loaded control connection end 32 are spaced apart, and the pressing spring structure 30 is located above the space between the first spring-loaded control connection end 31 and the second spring-loaded control connection end 32;

[0114] The protruding extrusion member 40 is configured such that when the regulating dial 4 rotates and when the protruding extrusion member 40 is above any of the spring-pressing control components 3, the protruding extrusion member 40 squeezes the pressing spring structure 30 of the corresponding spring-pressing control component 3, so that the pressing spring structure 30 connects the spring-pressing control first connection end 31 and the spring-pressing control second connection end 32.

[0115] Furthermore, the first pressure control connection end 31 of the No. 1 pressure control member is connected to the first control end 510, and the second pressure control connection end 32 of the No. 1 pressure control member is connected to the No. 1 control auxiliary branch;

[0116] The first spring control connection end 31 of the second spring control member is connected to the second control end 518, and the second spring control connection end 32 of the second spring control member is connected to the second control auxiliary branch;

[0117] The first spring-pressure control connection end 31 of the No. 3 spring-pressure control member is connected to the third control end 514 , and the second spring-pressure control connection end 32 of the No. 3 spring-pressure control member is connected to the No. 3 regulation sub-branch.

[0118] Furthermore, the lighting circuit 5 includes:

[0119] The control branch 50 includes a control main branch 500 and three control sub-branches 501 connected thereto, wherein the three control sub-branches 501 are respectively marked as control sub-branch No. 1, control sub-branch No. 2, and control sub-branch No. 3;

[0120] The lighting branch 51 includes:

[0121] A first control terminal 510, a first LED 511, a second LED 512, and a third LED 513 connected in sequence;

[0122] The third control terminal 514, the fourth LED 515, the fifth LED 516 and the sixth LED 517 are connected in sequence;

[0123] a second control terminal 518 connected to the input terminals of the first diode 519 and the second diode 520 respectively;

[0124] The output end of the first diode 519 is connected to the first control end 510;

[0125] The output end of the second diode 520 is connected to the third control end 514;

[0126] The output end of the third LED 513 is connected to the output end of the sixth LED 517 , serving as the output end of the lighting branch 51 .

[0127] Furthermore, the spring pressure control member 3 includes a spring-pressing structure 30, a spring pressure control first connection end 31 and a spring pressure control second connection end 32;

[0128] The first spring-loaded control connection end 31 and the second spring-loaded control connection end 32 are spaced apart, and the pressing spring structure 30 is located above the space between the first spring-loaded control connection end 31 and the second spring-loaded control connection end 32;

[0129] The protruding extrusion member 40 is configured so that when the regulating dial 4 rotates on the regulating dial 4 and is located above any of the spring-pressing control components 3, the protruding extrusion member 40 squeezes the pressing spring sheet structure 30 so that the pressing spring sheet structure 30 connects the spring-pressing control first connection end 31 and the spring-pressing control second connection end 32.

[0130] Furthermore, the annular member 1 is a circular ring structure;

[0131] The bottom plate structure 2 is a disc structure;

[0132] The protruding extrusion piece 40 is a hemispherical protrusion structure.

[0133] Furthermore, the length direction of each of the elastic pressure control members 3 coincides with the diameter direction of the bottom plate structure 2 , and the angle between the length directions of the three elastic pressure control members 3 is 120°.

[0134] In the description of this application, it should be noted that the terms "upper" and "lower" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application. Unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or an indirect connection through an intermediate medium, or it can be internal communication between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to the specific circumstances.

[0135] It should be noted that, in this application, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprising a ..." does not exclude the presence of other identical elements in the process, method, article or device comprising the element.

[0136] The foregoing is merely a list of specific embodiments of the present application, intended to enable those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application is not limited to the embodiments shown herein, but is intended to conform to the broadest scope consistent with the principles and novel features of the present application.

Claims

1. A lamp with different color temperature control functions, characterized in that: The lamp comprises: An annular component (1), the annular component (1) being arranged on a base plate structure (2); Three spring-loaded control members (3) are arranged on the bottom plate structure (2) in an area surrounded by the annular member (1), and the spring-loaded control members (3) can be switched between a disconnected state and a connected state; a regulating dial (4) rotatably arranged on the annular component (1), wherein a protruding extrusion piece (40) is provided on a side of the regulating dial (4) facing the bottom plate structure (2); A lighting circuit (5), wherein each of the spring-loaded control components (3) is respectively connected to the lighting circuit (5); The protruding extrusion member (40) is configured such that when the regulating dial (4) rotates and when the protruding extrusion member (40) is located above any of the elastic pressure control members (3), the protruding extrusion member (40) can press the corresponding elastic pressure control member (3) into a connected state; The three spring-loaded control components (3) are all in the shape of long strips and are symmetrically distributed within the area surrounded by the annular component (1) on the bottom plate structure (2); The three spring pressure control members (3) are configured such that when any one of the spring pressure control members (3) is in a connected state, the other two spring pressure control members (3) are in a disconnected state; The three spring-loaded control components (3) are configured to be in an off-circuit state at the same time; The lighting circuit (5) comprises a first LED, a second LED, a third LED, a fourth LED, a fifth LED and a sixth LED; wherein, The three spring-loaded control members (3) are respectively marked as spring-loaded control member No. 1, spring-loaded control member No. 2, and spring-loaded control member No. 3; When the No. 1 spring control member is in a connected state, the first LED (511), the second LED (512), and the third LED (513) are in a lit state, and the fourth LED (515), the fifth LED (516), and the sixth LED (517) are in an extinguished state; When the second spring control member is in a connected state, the first LED (511), the second LED (512), the third LED (513), the fourth LED (515), the fifth LED (516) and the sixth LED (517) are all in a lit state; When the No. 3 spring control member is in a connected state, the first LED (511), the second LED (512) and the third LED (513) are in an off state, and the fourth LED (515), the fifth LED (516) and the sixth LED (517) are in a lit state.

2. The lamp with different color temperature control functions according to claim 1, characterized in that: The lighting circuit (5) comprises: A control branch (50), the control branch (50) comprising a control main branch (500) and three control sub-branches (501) connected thereto, the three control sub-branches (501) being respectively marked as control sub-branch No. 1, control sub-branch No. 2, and control sub-branch No. 3; A lighting branch (51), the lighting branch (51) comprising: A first control terminal (510), a first LED (511), a second LED (512), and a third LED (513) connected in sequence; a third control terminal (514), a fourth LED (515), a fifth LED (516), and a sixth LED (517) connected in sequence; a second control terminal (518) connected to the input terminals of the first diode (519) and the second diode (520); The output end of the first diode (519) is connected to the first control end (510); The output end of the second diode (520) is connected to the third control end (514); The third LED (513) is connected to the output end of the sixth LED (517) to serve as the output end of the lighting branch (51).

3. The lamp with different color temperature control functions according to claim 2, characterized in that: The No. 1 spring pressure control component corresponds to the first control end (510) and the No. 1 regulating auxiliary branch; The second spring pressure control member corresponds to the second control end (518) and the second regulating auxiliary branch; The No. 3 spring-loaded control component corresponds to the third control terminal (514) and the No. 3 regulating sub-branch.

4. The lamp with different color temperature control functions according to claim 3, characterized in that: The spring-pressure control component (3) comprises a spring-pressing structure (30), a spring-pressure control first connection end (31), and a spring-pressure control second connection end (32); The first spring-loaded control connection end (31) and the second spring-loaded control connection end (32) are spaced apart, and the pressing spring structure (30) is located above the spaced area between the first spring-loaded control connection end (31) and the second spring-loaded control connection end (32); The protruding extrusion member (40) is configured such that when the regulating dial (4) rotates and when the protruding extrusion member (40) is located above any of the spring-pressing control members (3), the protruding extrusion member (40) squeezes the pressing spring structure (30) of the corresponding spring-pressing control member (3), so that the pressing spring structure (30) is connected to the spring-pressing control first connection end (31) and the spring-pressing control second connection end (32).

5. The lamp with different color temperature control functions according to claim 4, characterized in that: The first spring pressure control connection end (31) of the No. 1 spring pressure control member is connected to the first control end (510), and the second spring pressure control connection end (32) of the No. 1 spring pressure control member is connected to the No. 1 control auxiliary branch; The first spring pressure control connection end (31) of the second spring pressure control member is connected to the second control end (518), and the second spring pressure control connection end (32) of the second spring pressure control member is connected to the second control auxiliary branch; The first spring-pressure control connection end (31) of the No. 3 spring-pressure control member is connected to the third control end (514), and the second spring-pressure control connection end (32) of the No. 3 spring-pressure control member is connected to the No. 3 regulation auxiliary branch.

6. The lamp with different color temperature control functions according to claim 1, characterized in that: The lighting circuit (5) comprises: A control branch (50), the control branch (50) comprising a control main branch (500) and three control sub-branches (501) connected thereto, the three control sub-branches (501) being respectively marked as control sub-branch No. 1, control sub-branch No. 2, and control sub-branch No. 3; A lighting branch (51), the lighting branch (51) comprising: A first control terminal (510), a first LED (511), a second LED (512), and a third LED (513) connected in sequence; a third control terminal (514), a fourth LED (515), a fifth LED (516), and a sixth LED (517) connected in sequence; a second control terminal (518) connected to the input terminals of the first diode (519) and the second diode (520); The output end of the first diode (519) is connected to the first control end (510); The output end of the second diode (520) is connected to the third control end (514); The third LED (513) is connected to the output end of the sixth LED (517) to serve as the output end of the lighting branch (51).