Shoebox lamp
By designing the light source and switch components for the shoebox light, the problems of limited LED power and color temperature, and non-adjustable beam angle were solved, enabling diversified adjustment of the lamp and improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZOPOISE TECH
- Filing Date
- 2025-07-22
- Publication Date
- 2026-07-21
Smart Images

Figure CN224534153U_ABST
Abstract
Description
Technical Field
[0001] This utility model embodiment belongs to the field of LED lighting technology, specifically, it relates to a shoebox lamp. Background Technology
[0002] Currently, LED lights are widely used in the lighting field, but existing LED light designs have limitations, mainly due to their limited power and color temperature, and fixed lens positions, which prevent flexible adjustment of the light emission angle according to the usage environment, resulting in limited light distribution. With technological advancements and the rise of internet technology, people's demands are shifting towards technological and intelligent solutions, making it imperative to improve the structure of LED lights to meet diverse lighting needs. Utility Model Content
[0003] In view of this, the present invention provides a shoebox light to solve at least one technical problem existing in current LED lights.
[0004] This utility model embodiment provides a shoebox lamp, which includes:
[0005] The lamp body is shaped like a shoebox and has a receiving slot;
[0006] The light source assembly includes a PCBA board and multiple LED units. The PCBA board is disposed at the bottom of the receiving groove, and the multiple LED units are arranged in rows on the side of the PCBA board facing away from the bottom of the groove. The odd-numbered rows of LED units include a first LED and a second LED with a first color temperature, and the even-numbered rows of LED units include a third LED and a fourth LED with a second color temperature.
[0007] A lens is disposed on the side of the PCBA board opposite to the bottom of the slot, and includes multiple lens units corresponding to the lamp bead units;
[0008] A switch assembly, disposed on the lamp body and electrically connected to the light source assembly, is used to control one or more of the first LED bead, the second LED bead, the third LED bead, and the fourth LED bead to be turned off or on.
[0009] Furthermore, the switch assembly includes a three-position color temperature switch and a three-position angle switch. The three-position color temperature switch includes a first switch base and a first dial lever that can be tossed on the first switch base. The three-position angle switch includes a second switch base and a second dial lever that can be tossed on the second switch base.
[0010] Furthermore, when both the first and second DIP switches are moved to the first position, the first LED light is illuminated, while the second, third, and fourth LED lights are all turned off; or,
[0011] When the first DIP switch is moved to the first position and the second DIP switch is moved to the second position, the first and second LED beads are lit, and the third and fourth LED beads are turned off; or...
[0012] When the first DIP switch is moved to the first position and the second DIP switch is moved to the third position, the second LED light is turned on, and the first, third, and fourth LED lights are all turned off; or...
[0013] When the first DIP switch is moved to the second position and the second DIP switch is moved to the first position, the first LED and the third LED are lit, and the second LED and the fourth LED are turned off; or...
[0014] When both the first and second DIP switches are moved to the second position, the first, second, third, and fourth LED beads are all illuminated; or...
[0015] When the first DIP switch is moved to the second position and the second DIP switch is moved to the third position, the first and third LED beads are turned off, and the second and fourth LED beads are turned on; or...
[0016] When the first DIP switch is moved to the third position and the second DIP switch is moved to the first position, the third LED light is turned on, and the first, second, and fourth LED lights are all turned off; or...
[0017] When the first DIP switch is moved to the third position and the second DIP switch is moved to the second position, the first LED and the third LED are turned off, and the third LED and the fourth LED are turned on; or...
[0018] When both the first and second dial switches are moved to the third position, the fourth LED light is turned on, and the first, second, and third LED lights are all turned off.
[0019] Furthermore, the switching assembly also includes a three-position power switch, comprising a third switch base and a third DIP lever that can be tossed on the third switch base. When the third DIP lever is tossed to the first position, the second position, and the third position, it corresponds to low power, medium power, and high power, respectively.
[0020] Furthermore, the first switch base, the second switch base, and the third switch base are respectively disposed in the receiving groove, and the groove wall of the receiving groove is provided with dial holes opposite to the first dial lever, the second dial lever, and the third dial lever.
[0021] Furthermore, a plug is provided inside the dial hole, and the plug is threadedly connected to the wall of the receiving groove.
[0022] Furthermore, it also includes a power supply. The receiving slot includes a recessed area where the light source assembly is not located. The power supply is located in the recessed area and is electrically connected to the light source assembly and the switching assembly, respectively.
[0023] Furthermore, the area of the lens facing the power source and not where the lamp bead unit is located is provided with light-shielding paper.
[0024] Furthermore, a light controller is provided on the bottom of the receiving groove, facing away from the light source assembly, and the light controller is electrically connected to the light source assembly.
[0025] Furthermore, it also includes waterproof connectors and mounting brackets;
[0026] The waterproof connector is located on the wall of the receiving groove;
[0027] The mounting bracket has a hollow structure and is connected to the wall of the receiving groove around the waterproof connector.
[0028] According to the embodiment of this utility model, the shoebox lamp has a shoebox-shaped body with a receiving groove; its light source assembly includes a PCBA board and multiple LED units, the PCBA board is disposed at the bottom of the receiving groove, and the multiple LED units are arranged in rows on the side of the PCBA board facing away from the bottom of the groove; wherein, the odd-numbered rows of LED units include a first LED and a second LED with a first color temperature, and the even-numbered rows of LED units include a third LED and a fourth LED with a second color temperature; its lens is disposed on the side of the PCBA board facing away from the bottom of the groove, and includes multiple lens units corresponding to the LED units; its switch assembly is disposed on the lamp body and electrically connected to the light source assembly, for controlling one or more of the first LED, the second LED, the third LED, and the fourth LED to be turned off or on, thereby diversifying the overall color temperature and emission angle of the light source assembly to meet the usage needs of different lighting locations and improve the user experience. Attached Figure Description
[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0030] Figure 1 An exploded three-dimensional structural diagram of a shoebox lamp provided in this embodiment of the present invention;
[0031] Figure 2 A schematic diagram of the planar structure of a shoebox lamp combining a light source assembly and a portion of a lens, provided for an embodiment of this utility model;
[0032] Figure 3 An exploded three-dimensional structural diagram of a shoebox lamp provided for an embodiment of this utility model;
[0033] Figure 4 A three-dimensional structural schematic diagram of a shoebox lamp provided in an embodiment of this utility model;
[0034] Figure 5 This is another three-dimensional structural diagram of a shoebox lamp provided for an embodiment of the present utility model. Detailed Implementation
[0035] The following will describe in detail the implementation of this utility model with reference to the accompanying drawings and embodiments, so that the implementation of this utility model can be fully understood and carried out based on how technical means are used to solve technical problems and achieve technical effects.
[0036] Please refer to Figure 1 This is an exploded three-dimensional structural diagram of a shoebox lamp provided in an embodiment of the present invention. The shoebox lamp includes a lamp body 10, a light source assembly 20, a lens 30, and a switch assembly 40.
[0037] Please combine Figure 2-5 The lamp body 10 is shoebox-shaped and has a receiving groove 110. The light source assembly 20 includes a PCBA board 210 and a plurality of lamp bead units 220. The PCBA board 210 is disposed at the bottom of the receiving groove 110, and the plurality of lamp bead units 220 are arranged in rows on the side of the PCBA board 210 facing away from the bottom of the groove. The odd-numbered rows of lamp bead units 220 include a first LED bead 2201 and a second LED bead 2202 with a first color temperature, and the even-numbered rows of lamp bead units 220 include a second LED bead 2201 with a second color temperature. Three LED beads 2203 and a fourth LED bead 2204; the lens 30 is disposed on the side of the PCBA board 210 away from the bottom of the slot, including a plurality of lens units 310 corresponding to the LED bead units 220; the switch assembly 40 is disposed on the lamp body 10 and electrically connected to the light source assembly 20, for controlling one or more of the first LED bead 2201, the second LED bead 2202, the third LED bead 2203 and the fourth LED bead 2204 to be turned off or lit.
[0038] Specifically, the lamp body 10 is made of metal and has a shoebox-shaped structure with an internal receiving groove 110. The PCBA board 210 is fixedly connected to the bottom of the receiving groove 110 by screws. Multiple lamp bead units 220 are arranged in rows on the side of the PCBA board 210 facing away from the bottom of the groove. Each lamp bead unit 220 consists of two LED beads. Odd-numbered rows of lamp bead units 220 include a first LED bead 2201 and a second LED bead 2202, while even-numbered rows include a third LED bead 2203 and a fourth LED bead 2204. The first LED bead 2201 and the second LED bead 2202 are both LED beads with the first color temperature, while the third LED bead 2203 and the fourth LED bead 2204 are both LED beads with the second color temperature. Here, the second color temperature and the first color temperature are not equal. The color temperature is set as follows: for example, the first color temperature is 3000K and the second color temperature is 5000K. The lens 30 is disposed inside the lamp body 10 and covers the PCBA board 210. It includes multiple lens units 310, each lens unit 310 corresponding to one LED bead unit 220. The lens unit 310 has a groove facing the PCBA board 210 for housing the LED bead unit 220. The switch assembly 40 is fixedly connected to the lamp body 10 and electrically connected to the light source assembly 20. The switch assembly 40 is used to control one or more of the first LED bead 2201, the second LED bead 2202, the third LED bead 2203, and the fourth LED bead 2204 to turn off or on, so as to diversify the overall light emission angle and color temperature of the light source assembly 20 to meet the usage needs of different lighting places and improve the user experience.
[0039] Furthermore, in a preferred embodiment of the present invention, the switch assembly 40 includes a three-position color temperature switch 410 and a three-position angle switch 420. The three-position color temperature switch 410 includes a first switch base 4101 and a first dial lever 4102 that can be tossed on the first switch base 4101. The three-position angle switch 420 includes a second switch base 4201 and a second dial lever 4202 that can be tossed on the second switch base 4201.
[0040] Specifically, the first switch base 4101 is fixedly connected to the lamp body 10, while the first dial lever 4102 is movably connected to the first switch base 4101 and can be toggled on the first switch base 4101 to present three positions; similarly, the second switch base 4201 is fixedly connected to the lamp body 10, while the second dial lever 4202 is movably connected to the second switch base 4201 and can be toggled on the second switch base 4201 to present three positions.
[0041] Furthermore, in other preferred embodiments of this utility model, the overall color temperature and angle of the lamp can be adjusted and controlled by the three-level color temperature switch 410 and the three-level angle switch 420. Taking the first LED bead 2201 and the second LED bead 2202 as 3000K color temperature beads, and the third LED bead 2203 and the fourth LED bead 2204 as 5000K color temperature beads, various modes of color temperature and angle control adjustment of the lamp will be described below. The color temperature of the lamp is 4000K when the 3000K and 5000K color temperature beads are mixed.
[0042] In one feasible embodiment of this utility model, when the first dial lever 4102 is moved to the first position and the second dial lever 4202 is moved to the first position, the first LED bead 2201 is lit, and the second LED bead 2202, the third LED bead 2203 and the fourth LED bead 2204 are all turned off. At this time, the overall color temperature of the lamp is 3000K and the angle is TYPE III.
[0043] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the first position and the second dial lever 4202 is moved to the second position, the first LED bead 2201 and the second LED bead 2202 are lit, and the third LED bead 2203 and the fourth LED bead 2204 are turned off. At this time, the overall color temperature of the lamp is 3000K and the angle is TYPE IV.
[0044] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the first position and the second dial lever 4202 is moved to the third position, the second LED bead 2202 is lit, and the first LED bead 2201, the third LED bead 2203 and the fourth LED bead 2204 are all turned off. At this time, the overall color temperature of the lamp is 3000K and the angle is TYPE V.
[0045] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the second position and the second dial lever 4202 is moved to the first position, the first LED bead 2201 and the third LED bead 2203 are lit, and the second LED bead 2202 and the fourth LED bead 2204 are turned off. At this time, the overall color temperature of the lamp is 4000K and the angle is TYPE III.
[0046] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the second position and the second dial lever 4202 is moved to the second position, the first LED bead 2201, the second LED bead 2202, the third LED bead 2203 and the fourth LED bead 2204 are all lit. At this time, the overall color temperature of the lamp is 4000K and the angle is TYPE IV.
[0047] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the second position and the second dial lever 4202 is moved to the third position, the first LED bead 2201 and the third LED bead 2203 are turned off, and the second LED bead 2202 and the fourth LED bead 2204 are lit. At this time, the overall color temperature of the lamp is 4000K and the angle is TYPE V.
[0048] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the third position and the second dial lever 4202 is moved to the first position, the third LED bead 2203 is lit, and the first LED bead 2201, the second LED bead 2202 and the fourth LED bead 2204 are all turned off. At this time, the overall color temperature of the lamp is 5000K and the angle is TYPE III.
[0049] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the third position and the second dial lever 4202 is moved to the second position, the first LED bead 2201 and the third LED bead 2203 are turned off, and the third LED bead 2203 and the fourth LED bead 2204 are lit. At this time, the overall color temperature of the lamp is 5000K and the angle is TYPE IV.
[0050] In another feasible embodiment of this utility model, when the first dial lever 4102 is moved to the third position and the second dial lever 4202 is moved to the third position, the fourth LED bead 2204 is lit, and the first LED bead 2201, the second LED bead 2202 and the third LED bead 2203 are all turned off. At this time, the overall color temperature of the lamp is 5000K and the angle is TYPE V.
[0051] In addition, in other preferred embodiments of the present invention, the switch assembly 40 further includes a three-position power switch 430, including a third switch base 4301 and a third dial lever 4302 that can be tossed on the third switch base 4301. When the third dial lever 4302 is tossed to the first position, the second position and the third position, they correspond to low power, medium power and high power, respectively.
[0052] Specifically, the third switch base 4301 is fixedly connected to the lamp body 10, while the third dial lever 4302 is movably connected to the third switch base 4301 and can be tossed on the third switch base 4301 to present three levels. The first level, the second level, and the third level correspond to low power, medium power, and high power, respectively, so as to adjust the brightness of the light source component 20.
[0053] Furthermore, in other preferred embodiments of the present invention, the first switch base 4101, the second switch base 4201 and the third switch base 4301 are respectively disposed in the receiving groove 110, and the groove wall of the receiving groove 110 is provided with dial holes 1101 opposite to the first dial lever 4102, the second dial lever 4202 and the second dial lever 4202.
[0054] Specifically, the first switch base 4101, the second switch base 4201, and the third switch base 4301 have circuit boards on the side opposite to their dial levers, and are fixedly connected together to the bottom of the groove in the receiving groove 110, so that the dial lever faces the groove wall. The groove wall of the receiving groove 110 has dial holes 1101 opposite to the first dial lever 4102, the second dial lever 4202, and the third dial lever 4202. The dial levers can be toggled through the dial holes 1101 to achieve three-level adjustment.
[0055] It should be noted here that the first switch base 4101, the second switch base 4201 and the third switch base 4301 may each have an independent circuit board, or two of them may have a shared circuit board. For example, in this embodiment of the present invention, the first switch base 4101 and the third switch base 4301 share a circuit board, while the second switch base 4201 is connected to an independent circuit board.
[0056] Furthermore, in other preferred embodiments of this utility model, a plug 50 is provided in the dial hole 1101, and the plug 50 is threadedly connected to the groove wall of the receiving groove 110.
[0057] Specifically, the plug 50 is detachably connected to the wall of the receiving groove 110. The connection method can be a threaded connection. The plug 50 can seal the lamp body 10 to ensure that the light source assembly 20 is in a relatively closed environment, thereby improving the safety of the lamp. When it is necessary to adjust the lighting properties of the light source assembly 20, the plug 50 can be unscrewed to adjust the different dial levers.
[0058] In other preferred embodiments of the present invention, the shoebox light further includes a power supply 60, the receiving groove 110 includes a recessed area 1102 where the light source assembly 20 is not located, the power supply 60 is located in the recessed area 1102 and is electrically connected to the light source assembly 20 and the switch assembly 40 respectively.
[0059] Specifically, the receiving slot 110 includes a standard area where the light source assembly 20 is installed and a recessed area 1102 where the light source assembly 20 is not installed. The power supply 60 is located in the recessed area 1102 and is electrically connected to the light source assembly 20 and the switch assembly 40 respectively.
[0060] Furthermore, in other preferred embodiments of this utility model, the area of the lens 30 facing the power supply 60 and not where the lamp bead unit 220 is located is provided with a light-shielding paper 70.
[0061] Here, the lens 30 also serves to seal the lamp body 10, that is, by covering the top opening of the receiving groove 110, the light source assembly 20 is in a relatively closed environment, improving the safety of the lamp. However, because of the presence of the power supply 60, the lamp bead unit 220 does not completely cover the bottom of the receiving groove 110. Similarly, the lens unit 310 does not cover the entire lens 30. The light-shielding paper 70 is placed in the area of the lens 30 facing the power supply 60 where the lamp bead unit 220 is not located, i.e., the area where the lens unit 310 is not located, to block light and prevent light leakage to improve the lighting effect.
[0062] Furthermore, in other preferred embodiments of the present invention, a light controller 80 is provided on the bottom of the receiving groove 110 facing away from the light source assembly 20, and the light controller 80 is electrically connected to the light source assembly 20.
[0063] Specifically, the light controller 80 is located on the back of the lamp body 10, with one end passing through the bottom of the receiving groove 110 and electrically connected to the light source assembly 20. The light controller 80 can automatically turn off the lamp during the day and turn it on at night, and automatically turn it off to achieve energy saving.
[0064] Furthermore, in other preferred embodiments of this utility model, the shoebox light further includes a waterproof connector 90 and a mounting bracket 910;
[0065] The waterproof connector 90 is provided on the wall of the receiving groove 110;
[0066] The mounting bracket 910 has a hollow structure and is connected to the groove wall of the receiving groove 110 around the waterproof connector 90.
[0067] Specifically, the waterproof connector 90 is installed on the wall of the receiving groove 110, and its interior is used to house the conductive wire connecting the inside and outside of the lamp body to improve the overall waterproof performance of the lamp. In addition, a hollow mounting bracket 910 is provided on the wall of the receiving groove 110 around the waterproof connector 90. The hollow structure is used for the conductive wire to pass through. The mounting bracket 910 is used to connect the lamp to the external structure and to adjust the projection angle of the lamp.
[0068] It should be understood that the terminology used in the embodiments of this utility model is for the purpose of describing particular embodiments only and is not intended to limit the utility model. The singular forms "a," "the," and "the" used in the embodiments of this utility model and the appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise, and "multiple" generally includes at least two, but does not exclude the inclusion of at least one.
[0069] It should be understood that the term "and / or" used in this document is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, "first component and / or second component" can represent: the first component existing alone, the first component and the second component existing simultaneously, or the second component existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.
[0070] It should be understood that although terms such as first, second, third, etc., may be used to describe certain components in the embodiments of this utility model, these components should not be limited to these terms alone. These terms are only used to distinguish the components from each other. For example, without departing from the scope of the embodiments of this utility model, a first component may also be referred to as a second component, and similarly, a second component may also be referred to as a first component.
[0071] Depending on the context, the words “if” or “suppose” as used here can be interpreted as “when” or “in response to determination” or “in response to monitoring.” Similarly, depending on the context, the phrases “if determination” or “if monitoring (the stated condition or event)” can be interpreted as “when determination” or “in response to determination” or “when monitoring (the stated condition or event)” or “in response to monitoring (the stated condition or event).”
[0072] In the embodiments of this utility model, terms such as "generally equal to," "generally perpendicular to," and "generally symmetrical" mean that the macroscopic size or relative positional relationship between the two features is very close to the stated relationship. However, those skilled in the art will understand that due to the existence of objective factors such as errors and tolerances, the positional relationship of objects is difficult to be precisely constrained at a small scale or even a microscopic angle. Therefore, even if there are slight errors in the size and positional relationship between the two, it will not have a significant impact on the realization of the technical effect of this utility model.
[0073] It should also be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a product or system comprising a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a product or system. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the product or system that includes said element.
[0074] In the various embodiments described above, although the methods are illustrated and described as a series of actions for the sake of simplicity, those skilled in the art should understand and appreciate that these methods are not limited by the order of the actions, because according to one or more embodiments, some actions may occur in a different order and / or concurrently with other actions from those illustrated and described herein or not illustrated and described herein but which may be understood by those skilled in the art.
[0075] It should also be noted that those skilled in the art will understand that many technical details have been presented in the embodiments of this utility model to enable readers to better understand it. However, even without these technical details and various changes and modifications based on the above embodiments, the technical solutions claimed in the claims of this utility model can be basically achieved. Therefore, in practical applications, various changes can be made to the above embodiments in form and detail without departing from the spirit and scope of this utility model.
[0076] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.
Claims
1. A shoebox lamp, characterized in that, include: The lamp body is shaped like a shoebox and has a receiving slot; The light source assembly includes a PCBA board and multiple LED units. The PCBA board is disposed at the bottom of the receiving groove, and the multiple LED units are arranged in rows on the side of the PCBA board facing away from the bottom of the groove. The odd-numbered rows of LED units include a first LED and a second LED with a first color temperature, and the even-numbered rows of LED units include a third LED and a fourth LED with a second color temperature. A lens is disposed on the side of the PCBA board opposite to the bottom of the slot, and includes multiple lens units corresponding to the lamp bead units; A switch assembly, disposed on the lamp body and electrically connected to the light source assembly, is used to control one or more of the first LED bead, the second LED bead, the third LED bead, and the fourth LED bead to be turned off or on.
2. The shoebox lamp according to claim 1, characterized in that, The switch assembly includes a three-position color temperature switch and a three-position angle switch. The three-position color temperature switch includes a first switch base and a first dial lever that can be tossed on the first switch base. The three-position angle switch includes a second switch base and a second dial lever that can be tossed on the second switch base.
3. The shoebox lamp according to claim 2, characterized in that, When the first DIP switch is moved to the first position and the second DIP switch is moved to the first position, the first LED bead lights up, and the second LED bead, the third LED bead, and the fourth LED bead are all turned off. or, When the first DIP switch is moved to the first position and the second DIP switch is moved to the second position, the first LED and the second LED are lit, and the third LED and the fourth LED are turned off. or, When the first DIP switch is moved to the first position and the second DIP switch is moved to the third position, the second LED light is turned on, and the first LED light, the third LED light, and the fourth LED light are all turned off. or, When the first DIP switch is moved to the second position and the second DIP switch is moved to the first position, the first LED and the third LED are lit, and the second LED and the fourth LED are turned off. or, When both the first and second dial switches are moved to the second position, the first, second, third, and fourth LED beads are all illuminated; or... When the first DIP switch is moved to the second position and the second DIP switch is moved to the third position, the first and third LED beads are turned off, and the second and fourth LED beads are turned on; or... When the first DIP switch is moved to the third position and the second DIP switch is moved to the first position, the third LED bead lights up, and the first LED bead, the second LED bead, and the fourth LED bead are all turned off. or, When the first DIP switch is moved to the third position and the second DIP switch is moved to the second position, the first LED and the third LED are turned off, and the third LED and the fourth LED are turned on; or... When both the first and second dial switches are moved to the third position, the fourth LED light is turned on, and the first, second, and third LED lights are all turned off.
4. The shoebox lamp according to claim 3, characterized in that, The switching assembly also includes a three-position power switch, comprising a third switch base and a third dial lever that can be tossed on the third switch base. When the third dial lever is tossed to the first position, the second position, and the third position, it corresponds to low power, medium power, and high power, respectively.
5. The shoebox lamp according to claim 4, characterized in that, The first switch base, the second switch base, and the third switch base are respectively disposed in the receiving groove, and the groove wall of the receiving groove is provided with dial holes opposite to the first dial lever, the second dial lever, and the third dial lever.
6. The shoebox lamp according to claim 5, characterized in that, A plug is provided inside the hole, and the plug is threadedly connected to the wall of the receiving groove.
7. The shoebox lamp according to any one of claims 1-6, characterized in that, It also includes a power supply, and the receiving slot includes a recessed area where the light source assembly is not located. The power supply is located in the recessed area and is electrically connected to the light source assembly and the switching assembly, respectively.
8. The shoebox lamp according to any one of claims 1-6, characterized in that, The area of the lens facing the power source and not where the lamp bead unit is located is provided with light-shielding paper.
9. The shoebox lamp according to any one of claims 1-6, characterized in that, A light controller is provided on the bottom of the receiving groove, facing away from the light source assembly, and the light controller is electrically connected to the light source assembly.
10. The shoebox lamp according to any one of claims 1-6, characterized in that, It also includes waterproof connectors and mounting brackets; The waterproof connector is located on the wall of the receiving groove; The mounting bracket has a hollow structure and is connected to the wall of the receiving groove around the waterproof connector.