Combined working lamp

By designing a modular work light, the lamp body is electrically connected to the base, and a socket and USB interface are installed on the base. This solves the problems of messy wiring and safety risks in existing rechargeable lighting under multiple power needs, and enables the lamp body to be charged or powered by other electrical devices at the same time.

CN224175100UActive Publication Date: 2026-04-28SHENZHEN GUANKE TECH
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN GUANKE TECH
Filing Date
2025-04-22
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing rechargeable lights present problems of messy wiring and safety risks when they need to meet other power needs at the same time, such as drilling, screwing, fanning, heating, cutting, or charging other electronic devices.

Method used

A modular work light was designed, including a lamp body and a base. The lamp body contains a battery for independent lighting, and the base has a receiving cavity and an interface to enable electrical connection between the lamp body and the base. The base is also equipped with a socket interface and a USB interface for charging other electrical devices.

Benefits of technology

It enables the lamp body to be charged or powered simultaneously with other electrical equipment, avoiding tangled wiring and safety hazards, and providing a flexible lighting and power solution.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224175100U_ABST
    Figure CN224175100U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of lamps, and discloses a combined working lamp. Therefore, the combined working lamp comprises the lamp body, the lamp body comprises the light-emitting body and the battery, and the battery supplies power to the light-emitting body to form independent illumination; the base is provided with a top and a side wall, at least one first containing cavity is formed in the top, the lamp body is separably limited in the first containing cavity, and the lamp body is electrically connected with the base to form combined illumination; the side wall is provided with at least one socket interface and at least one USB interface. The effect of supplying power to the lamp body and other electric equipment at the same time can be achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of lighting technology, specifically to a combined work lamp. Background Technology

[0002] In daily life, there are many rechargeable lights, and they all come with a corresponding charger when purchased.

[0003] For example, the relevant technology with announcement number CN211556943U can only provide a wireless charging environment for lighting lamps, and only has the function of charging the lighting lamp itself, which is too limited in functionality.

[0004] Therefore, when it is necessary to meet lighting and other power needs at the same time, such as drilling, screwing, fanning, heating, cutting, or charging other electronic devices while lighting is being used, it is necessary to run wires from other locations, which will be inconvenient and the messy wiring will also pose certain safety risks. Utility Model Content

[0005] In view of this, this application provides a combined work light that can simultaneously power the light body and other electrical equipment.

[0006] Specifically, the embodiments of this application include the following technical solutions:

[0007] This application provides a combined work light, including a lamp body, the lamp body including a light-emitting element and a battery, the battery powering the light-emitting element to form independent lighting; a base having a top and side walls, the top having at least one first receiving cavity, the lamp body being detachably confined within the first receiving cavity, the lamp body being electrically connected to the base to form combined lighting; the side walls having at least one socket interface and at least one USB interface.

[0008] Optionally, the lamp body is provided with a first magnetic attractor, and the first receiving cavity is provided with a second magnetic attractor that cooperates with the first magnetic attractor. When the lamp body is restricted within the first receiving cavity, the first magnetic attractor and the second magnetic attractor are attracted together.

[0009] Optionally, the first receiving cavity includes a first sub-receiving cavity and a second sub-receiving cavity, the first sub-receiving cavity and the second sub-receiving cavity being spaced apart; both the first sub-receiving cavity and the second sub-receiving cavity are constructed as polyhedra; or both the first sub-receiving cavity and the second sub-receiving cavity are constructed as cylinders; or the first sub-receiving cavity is constructed as a polyhedron and the second sub-receiving cavity is constructed as a cylinder; at least a portion of the lamp body confined within the first sub-receiving cavity or the second sub-receiving cavity is constructed to adapt to the shape of the first sub-receiving cavity or the second sub-receiving cavity.

[0010] Optionally, the sidewall and the top surface near the sidewall form a second receiving cavity, the second receiving cavity being spaced apart from the first receiving cavity; at least one wireless charging module is provided on the inner wall of the second receiving cavity near the first receiving cavity, the wireless charging module being used to charge the lamp body.

[0011] Optionally, the socket interface includes at least one of a two-hole socket or a three-hole socket; the USB interface includes at least one of a USB Type-A, USB Type-B, USB Type-C, Mini USB, or Micro USB interface.

[0012] Optionally, the height of the base is set to 10cm-40cm.

[0013] Optionally, the lamp body further includes a handheld portion and a rotating portion, the rotating portion being connected between the handheld portion and the light-emitting body; the light-emitting body is configured to be rotatably connected to the handheld portion via the rotating portion; when the light-emitting body rotates to a position nearly parallel to the handheld portion and the light-emitting side is close to the handheld portion, the lamp body is in a first state; when the light-emitting body rotates to form an angle with the handheld portion, the lamp body is in a second state; when the light-emitting body rotates to a position nearly parallel to the handheld portion and the light-emitting side is away from the handheld portion, the lamp body is in a third state.

[0014] Optionally, the rotating part includes a first rotating part, a connecting part, and a second rotating part, wherein the first rotating part is larger than the second rotating part, and the second rotating part is connected to the first rotating part through the connecting part; the first rotating part is rotatably connected to the handheld part, and the second rotating part is connected to the light-emitting element.

[0015] Optionally, a connector is provided at the end of the hand-held part away from the rotating part.

[0016] Optionally, the light source includes a floodlight low beam panel and a high beam panel, wherein the low beam panel and the high beam panel are embedded together.

[0017] The beneficial effects of the technical solutions provided in this application include at least the following:

[0018] This application provides a combined work light, including a lamp body and a base. The lamp body has a battery inside, which enables the lamp body to provide independent lighting when not charging. The top of the base has a cavity for charging the lamp body. When the lamp body is connected to the cavity, it can be electrically connected to the base to form combined lighting. The side wall of the base has at least one socket interface and at least one USB interface, which can charge the lamp body while supplying power to other electrical devices, achieving the effect of multiple electrical devices using power at the same time. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This illustration shows a structural schematic diagram of a combined work light provided in an embodiment of this application;

[0021] Figure 2 It shows Figure 1 A schematic diagram of the combined work light from another perspective;

[0022] Figure 3 This invention provides a schematic diagram of another combined work light according to an embodiment of the present application.

[0023] Figure 4 It shows Figure 3 A cross-sectional schematic diagram of the combined work light from another angle;

[0024] Figure 5 It shows Figure 3 The exploded view of the combined work light shown.

[0025] Figure 6 A schematic diagram of the structure of the base provided in an embodiment of this application is shown;

[0026] Figure 7 A schematic diagram of the structure of the lamp body provided in an embodiment of this application is shown.

[0027] Figure label:

[0028] 1. Base; 11. Top; 111. First receiving cavity; 1111. First sub-receiving cavity; 1112. Second sub-receiving cavity; 12. Side wall; 121. Second receiving cavity; 122. First side; 123. Second side; 124. Third side; 125. Fourth side; 13. Power cord; 14. Socket interface; 141. Two-hole socket; 142. Three-hole socket; 15. USB interface; 151. USB Type-A; 152. USB Type-B; 153. USB Type-C; 154. Mini USB; 155. Micro USB; 16. Second magnetic component; 17. Wireless charging module; 18. First control switch; 19. Bottom;

[0029] 2. Lamp body; 21. Light-emitting element; 211. Low beam panel; 212. High beam panel; 22. Battery; 23. First magnetic attachment; 24. Handheld part; 25. Rotating part; 251. First rotating part; 252. Connecting part; 253. Second rotating part; 2531. Sub-connecting part; 26. Connecting piece; 27. Control switch; 28. Second control switch;

[0030] 100. Combination work light. Detailed Implementation

[0031] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application. To make the technical solutions and advantages of this application clearer, the combined work light will be described in detail below with reference to the accompanying drawings.

[0032] In related technologies, some vehicle models use an extra-large in-vehicle display screen, and the display of the instrument panel and the control of the operation buttons are all based on this in-vehicle display screen, which reduces the structural complexity of the center console.

[0033] To solve the above-mentioned technical problems, this application provides a combined work light that can simultaneously power the light body and other electrical equipment.

[0034] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the combined work lamp 100 provided in this embodiment includes a lamp body 2 and a base 1. The lamp body 2 includes a light-emitting element 21 and a battery 22, and the battery 22 supplies power to the light-emitting element 21 to form independent lighting.

[0035] The base 1 includes a top 11 and a side wall 12, wherein the top 11 has at least one first receiving cavity 111, the lamp body 2 is detachably confined within the first receiving cavity 111, and the lamp body 2 is electrically connected to the base 1 to form combined lighting.

[0036] Once the lamp body 2 is fully charged within the first receiving cavity 111 of the base 1, it can be detached from the first receiving cavity 111 to achieve independent lighting. The lamp body 2 is also lightweight and easy to carry. When the light emission of the lamp body 2 dims, that is, when the battery 22 of the lamp body 2 is nearly depleted, the lamp body 2 can be recharged by confining it within the first receiving cavity 111.

[0037] When the lamp body 2 is confined within the base 1 for charging, it can also be activated for lighting. When the lamp body 2 is on the base 1, it has a higher illumination point and a wider illumination range compared to when the lamp body 2 is illuminating independently in a fixed position.

[0038] The base 1 also includes a power cord 13, which is used to connect to an external power source so that the base 1 can be powered. The socket connector of the power cord 13 can be configured as a two-prong plug or a three-prong plug.

[0039] The side wall 12 is provided with at least one socket interface 14 and at least one USB interface 15. Therefore, when the lamp body 2 is confined inside the first receiving cavity 111 for charging, the socket interface 14 or USB interface 15 on the side wall 12 can also be used by other electrical devices for charging. This achieves the effect of charging or using electricity at the same time as the lamp body 2 and other electrical devices. It can avoid the situation where other electrical devices need to run cables to other charging interfaces to charge when the lamp body 2 is using electricity, and also avoid the safety hazards caused by multiple wires being intertwined.

[0040] Optionally, the base 1 also includes a bottom 19, which is located at the end of the side wall 12 away from the top 11. The bottom 19 has an extension along the end of the side wall 12 away from the top 11, so that the contact area between the base 1 and the ground or the platform can be larger, thus making it more stable during use.

[0041] Optionally, the height of base 1 can be set from 10cm to 40cm, for example, the height of base 1 can be 10cm, 20cm, 30cm, or 40cm, etc.; the height of lamp body 2 can be set from 5cm to 30cm, for example, the height of lamp body 2 can be 5cm, 15cm, 20cm, or 30cm, etc. For example, the height of base 1 can be set to 30cm, and when the light-emitting body 21 of lamp body 2 rotates to its highest point, the height of lamp body 2 is 20cm. Therefore, when lamp body 2 is connected to base 1 to form combined lighting, it is equivalent to a desk lamp with a lighting height of approximately 50cm, providing a good illumination range. This combined lighting can be used in office or other work scenarios requiring fixed light source illumination. The height of base 1 refers to the distance between the ends of the top 11 and bottom 19 that are furthest apart.

[0042] Optionally, such as Figure 5 As shown, a first magnetic suction member 23 may be provided on the lamp body 2, and a second magnetic suction member 16 that cooperates with the first magnetic suction member 23 may be provided in the first receiving cavity 111. When the lamp body 2 is restricted in the receiving cavity, the first magnetic suction member 23 and the second magnetic suction member 16 are attracted together, thereby fixing the lamp body 2 inside the first receiving cavity 111 for charging.

[0043] Furthermore, the cooperation of the first magnetic clasp 23 and the second magnetic clasp 16 can, to a certain extent, calibrate the matching position between the lamp body 2 and the first receiving cavity 111, so that the lamp body 2 and the first receiving cavity 111 can be precisely matched to achieve electrical connection, thereby facilitating the charging of the lamp body 2.

[0044] In some embodiments, the first magnetic member 23 and the second magnetic member 16 may both be magnets; in other embodiments, one of the first magnetic member 23 and the second magnetic member 16 may be a magnet, and the other may be an iron block.

[0045] Optionally, such as Figure 5 and Figure 6 As shown, the top 11 of the base 1 can have one or more charging cavities. When the top 11 has one charging cavity, the base 1 can charge one lamp body 2 at a time. When the top 11 has multiple charging cavities, the base 1 can charge multiple lamp bodies 2 simultaneously.

[0046] Optionally, such as Figure 5 and Figure 6 As shown, when the top 11 has two charging accommodating cavities, the first accommodating cavity 111 may include a first sub-accommodating cavity 1111 and a second sub-accommodating cavity 1112. The first sub-accommodating cavity 1111 and the second sub-accommodating cavity 1112 are spaced apart. The first sub-accommodating cavity 1111 and the second accommodating cavity 1112 may charge the same two lamp bodies 2 respectively, or charge two different lamp bodies 2 simultaneously.

[0047] That is, the shapes of the first sub-receiving cavity 1111 and the second sub-receiving cavity 1112 can be the same or different depending on the shape of the lamp body 2.

[0048] For example, both the first sub-receiving cavity 1111 and the second sub-receiving cavity 1112 can be constructed as cylinders or polyhedra. In this case, the shape of the portion of the lamp body 2 confined within the first sub-receiving cavity 1111 or the second sub-receiving cavity 1112 is also constructed as a cylinder or polyhedron, adapting to the shape of the first sub-receiving cavity 1111 and the second sub-receiving cavity 1112. For example, the shapes of the first sub-receiving cavity 1111 and the second sub-receiving cavity 1112 can be constructed as cylinders, triangular prisms, cubes, cuboids, regular polyhedra, or irregular polyhedra. Simultaneously, the shape of the portion of the lamp body 2 confined within the first sub-receiving cavity 1111 or the second sub-receiving cavity 1112 is also constructed to adapt to the shape of the first sub-receiving cavity 1111 and the second sub-receiving cavity 1112. When the shapes of the first sub-receiving cavity 1111 and the second sub-receiving cavity 1112 are constructed to be the same (e.g., both are constructed as irregular decahedrons), the base 1 can simultaneously charge two identical lamp bodies 2.

[0049] For example, the first sub-receiving cavity 1111 can be constructed as a polyhedron, and the second sub-receiving cavity 1112 can be constructed as a cylinder; at least a portion of the lamp body 2 confined within the first sub-receiving cavity 1111 or the second sub-receiving cavity 1112 is configured to adapt to the shape of the first sub-receiving cavity 1111 or the second sub-receiving cavity 1112. When the shapes of the first sub-receiving cavity 1111 and the second sub-receiving cavity 1112 are respectively constructed as a polyhedron and a cylinder, the base 1 can simultaneously charge the lamp body 2 confined within the first sub-receiving cavity 1111 (which is partially polyhedral) and the lamp body 2 confined within the second sub-receiving cavity 1112 (which is partially cylindrical); that is, the base 1 can charge two different lamp bodies 2.

[0050] In some other embodiments, the top 11 may also have multiple first receiving cavities 111 of different shapes, so that the base 1 can charge multiple lamp bodies 2 of different shapes at the same time.

[0051] Optionally, such as Figure 3 and Figure 4As shown, the sidewall 12 and the top 11 near the sidewall 12 form a second receiving cavity 121, which is spaced apart from the first receiving cavity 111. At least one wireless charging module 17 is provided on the inner wall of the second receiving cavity 121 near the first receiving cavity 111. The wireless charging module 17 is used to charge the lamp body 2. The number of wireless charging modules 17 corresponds to the number of first receiving cavities 111 opened in the top 11. For example, when the top 11 has two accommodating cavities, a first sub-accommodating cavity 1111 and a second sub-accommodating cavity 1112, a wireless charging module 17 is respectively provided inside the second accommodating cavity 121 at the positions corresponding to the first sub-accommodating cavity 1111 and the second sub-accommodating cavity 1112. When a lamp body 2 is connected to the first accommodating cavity 111 or the second accommodating cavity 121, the wireless charging module 17 at the corresponding position can be activated to charge the lamp body 2 in the first accommodating cavity 111 or the second accommodating cavity 121. When a lamp body 2 is connected to both the first accommodating cavity 111 and the second accommodating cavity 121, the two wireless charging modules 17 at the corresponding positions can be in working state at the same time to charge the lamp bodies 2 in the first accommodating cavity 111 and the second accommodating cavity 121 respectively.

[0052] Optionally, such as Figure 1 and Figure 2 As shown, the socket interface 14 includes at least one of a two-hole socket or a three-hole socket; the USB interface 15 includes at least one of a USB Type-A interface 151, a USB Type-B interface 152, a USB Type-C interface 153, a Mini USB interface 154, or a Micro USB interface 155. The socket interface 14 and USB interface 15 provided on the side wall 12 of the base 1 can be used to charge other electrical devices, such as punching machines, screwdrivers, blowers, heaters, cutting machines, or electronic devices such as mobile phones, cameras, and computers. In some embodiments, the socket interface 14 and USB interface 15 on the base 1 can be adapted to a 220V voltage; in other embodiments, the socket interface 14 and USB interface 15 on the base 1 can be adapted to a 110V voltage.

[0053] Exemplarily, the base 1 includes eight sides. Three spaced-apart three-hole sockets are respectively formed on the opposing first side 122 and second side 123 of the sidewall 12 of the base 1. These three-hole sockets allow electrical devices with three-hole plugs to be plugged in and charged, such as charging a computer with a three-hole plug. Two of the holes in the three-hole sockets are parallel strip-shaped holes, and the third hole is located on the extension line of the midline of the parallel directions of the two strip-shaped holes. These two strip-shaped holes allow electrical devices with two-hole sockets to be plugged in and charged, such as charging a mobile phone. In some embodiments, three protrusions are sequentially spaced on the first side 122 and second side 123, each protrusion having a three-hole socket. The protrusions increase the local thickness of the first side 122 and second side 123, thereby extending the service life of the base 1.

[0054] Additionally, multiple USB ports 15 can be provided on the third side 124 and the fourth side 125, which are perpendicular to the extended surfaces of the first side 122 and the second side 123 where the three-prong socket is located. For example, the third side 124 may have one USB Type-A port 151 and two USB Type-C ports 153 arranged in sequence, which can be used to charge a computer or mobile phone. For example, the fourth side 125 may have one USB Type-B port 152, one Mini USB port 154, and one Micro USB port 155 arranged in sequence; the USB Type-B port 152 can be used to charge devices such as printers or monitors, the Mini USB port 154 can be used to charge devices such as players or digital cameras, and the Micro USB port 155 can be used to charge devices such as mobile phones.

[0055] Optionally, the lamp body 2 may be equipped with a USB Type-C interface 153, a Mini USB interface 154, or a MicroUSB interface 155. The lamp body 2 can be charged via the wireless charging module 17 inside the base 1, connected to the first receiving cavity 111, or via a connecting cable using the USB Type-C interface 153, Mini USB interface 154, or Micro USB interface 155 on the base 1. For example, both ends of the connecting cable can be configured as USB Type-C 153 plugs, with one end plugged into the USB Type-C interface 153 on the base and the other end plugged into the USB Type-C 153 on the lamp body 2, thereby enabling wired charging of the lamp body via the base 1.

[0056] Optionally, such as Figure 1As shown, a first control switch 18 is also provided on the base 1. The first control switch 18 is used to adjust the working state of the charging base. When the first control switch 18 is switched to one side, the base 1 is in the working state and can charge electrical equipment such as the lamp body 2; when the first control switch 18 is switched to the other side, the base 1 is in the non-working state and cannot charge electrical equipment such as the lamp body 2.

[0057] Optionally, such as Figure 7 As shown, the lamp body 2 also includes a handheld part 24 and a rotating part 25. The rotating part 25 is connected between the handheld part 24 and the light-emitting body 21. The light-emitting body 21 is configured to be rotatably connected to the handheld part 24 via the rotating part 25. When the light-emitting body 21 rotates to a position nearly parallel to the handheld part 24 with the light-emitting side close to the handheld part 24, the lamp body 2 is in a first state. When the light-emitting body 21 rotates to form an angle with the handheld part 24, the lamp body 2 is in a second state. When the light-emitting body 21 rotates to a position nearly parallel to the handheld part 24 with the light-emitting side away from the handheld part 24, the lamp body 2 is in a third state. The rotating part 25 allows the light-emitting body 21 to rotate relative to the handheld part 24 to various angles and directions, making the illumination angle and direction of the lamp body 2 flexible and adaptable to different lighting needs. When it is necessary to turn off the lamp body 2, it can be adjusted to the first state. During use, the lamp body 2 can be adjusted to the second or third state according to the lighting needs of different environments. When the lamp body 2 is in the first state, its height can be 5cm-15cm. At this time, the height of the lamp body 2 is the height of the handheld part 24 plus the height of the rotating part 25, which can be set to 10cm. When the lamp body 2 is in the second state and the angle between the light-emitting body 21 and the handheld part 24 is 180 degrees, the height of the lamp body 2 is the highest, which can be 10cm-30cm, which can be set to 20cm.

[0058] In some embodiments, the rotating part 25 may be provided with a universal joint, and the light-emitting body 21 may be rotated in any direction relative to the hand-held part 24 by means of the universal joint, thereby realizing that the lamp body 2 illuminates in any direction.

[0059] Optionally, such as Figure 7As shown, the rotating part 25 includes a first rotating part 251 rotating part 25, a connecting part 252, and a second rotating part 253 rotating part 25. The first rotating part 251 rotating part 25 is larger than the second rotating part 253 rotating part 25. The second rotating part 253 rotating part 25 is connected to the first rotating part 251 rotating part 25 through the connecting part 252. The first rotating part 251 rotating part 25 is rotatably connected to the handheld part 24, and the second rotating part 253 rotating part 25 is connected to the light-emitting body 21. For example, the connecting part 252 can rotate relative to the first rotating part 251 rotating part 25, while the connecting part 252 is fixedly connected to the second rotating part 253 rotating part 25. This allows the second connecting part 252 to rotate relative to the first connecting part 252, while there is relative friction between the connecting part 252 and the first rotating part 251 rotating part 25. When the second rotating part 253 rotating part 25 rotates relative to the first rotating part 251 rotating part 25 to a certain angle, this relative friction can keep the second rotating part 253 rotating part 25 stable with the connecting part 252 and the first rotating part 251 rotating part 25. For example, a sub-connecting portion 2531 connecting portion 252 may be provided between the second rotating portion 253 rotating portion 25 and the light-emitting body 21. The sub-connecting portion 2531 connecting portion 252 can rotate relative to the second rotating portion 253 rotating portion 25 and is fixedly connected to the light-emitting body 21, so that the light-emitting body 21 can rotate relative to the second rotating portion 253 rotating portion 25 through the sub-connecting portion 2531 connecting portion 252. At the same time, there is a relative frictional force between the sub-connecting portion 2531 connecting portion 252 and the second rotating portion 253 rotating portion 25. When the light-emitting body 21 rotates relative to the second rotating portion 253 rotating portion 25 to a certain angle, this relative frictional force can keep the light-emitting body 21 stable with respect to the sub-connecting portion 2531 connecting portion 252 and the second rotating portion 253 rotating portion 25. By configuring the above structure, the cooperation between the light-emitting body 21 and the second rotating part 253 and the first rotating part 251 can be achieved, allowing the light-emitting body 21 to be adjusted relative to the handheld part 24 from 0 degrees to 360 degrees.

[0060] Optionally, such as Figure 7 As shown, a connector 26 is provided on the end of the handheld part 24 away from the rotating part 25. This allows the lamp body 2 to be fixed in place when it is illuminating independently, freeing the user's hands and making it more convenient. For example, the connector 26 may include a hanging hole or a magnetic component. When the connector 26 is a hanging hole, a rope can be threaded through the hole to fix the lamp body 2 in the desired position for illumination. When the connector 26 is a magnetic component, such as a magnet, the lamp body 2 can be fixed to an iron plate or a magnetically attracted object for illumination. Of course, the user can also use the lamp body 2 as a handheld flashlight.

[0061] Optionally, such as Figure 1 and Figure 7 As shown, the light source 21 includes a floodlight low beam panel 211 and a high beam panel 212, which are embedded together. A control switch 27 can be installed on the light source 21 to switch its operating state. For example, the control switch 27 can switch between a single illumination mode for the low beam panel 211, a single illumination mode for the high beam panel 212, and a combined illumination mode for both the low beam panel 211 and the high beam panel 212. Users can adjust the operating mode of the light source 21 according to their needs. In some embodiments, a second control switch 28 can also be installed on the lamp body 2. When the second control switch 28 is turned on, the light source 21 enters the operating mode; when the second control switch 28 is turned off, the light source 21 is turned off. When both the second control switch 28 and the control switch 27 are installed on the lamp body 2, the second control switch 28 must be activated first, and then the control switch 27 must be operated.

[0062] In some embodiments, the adjustment switch 27 and the second control switch 28 on the lamp body 2 can be combined into one, for example, only the second control switch 28 can be provided. In this case, the second control switch 28 can be set with four adjustment modes, namely, the low beam panel 211 lighting mode alone, the high beam panel 212 lighting mode alone, the low beam panel 211 and the high beam panel 212 lighting mode together, and the off mode. Users can adjust the working mode of the light source 21 according to their own needs.

[0063] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.

[0064] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only.

[0065] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

Claims

1. A combined work light, characterized in that, include: A lamp body, comprising a light-emitting element and a battery, wherein the battery powers the light-emitting element to provide independent illumination; A base having a top and sidewalls, the top having at least one first receiving cavity, the lamp body being detachably confined within the first receiving cavity, the lamp body being electrically connected to the base to form combined lighting; The side wall is provided with at least one socket interface and at least one USB interface.

2. The combined work light according to claim 1, characterized in that, The lamp body is provided with a first magnetic suction member, and the first receiving cavity is provided with a second magnetic suction member that cooperates with the first magnetic suction member. When the lamp body is restricted in the first receiving cavity, the first magnetic suction member and the second magnetic suction member are attracted together.

3. The combined work light according to claim 2, characterized in that, The first receiving cavity includes a first sub-receiving cavity and a second sub-receiving cavity, which are spaced apart from each other. Both the first sub-receiving cavity and the second sub-receiving cavity are constructed as polyhedra; or both the first sub-receiving cavity and the second sub-receiving cavity are constructed as cylinders; or the first sub-receiving cavity is constructed as a polyhedron and the second sub-receiving cavity is constructed as a cylinder. At least a portion of the lamp body confined within the first sub-receiving cavity or the second sub-receiving cavity is configured to adapt to the shape of the first sub-receiving cavity or the second sub-receiving cavity.

4. The combined work light according to claim 1, characterized in that, The sidewall and the top surface near the sidewall form a second receiving cavity, which is spaced apart from the first receiving cavity. At least one wireless charging module is provided on the inner wall of the second receiving cavity near the first receiving cavity, and the wireless charging module is used to charge the lamp body.

5. The combined work light according to claim 1, characterized in that, The socket interface includes at least one of a two-hole socket or a three-hole socket; the USB interface includes at least one of a USB Type-A, USB Type-B, USB Type-C, Mini USB, or Micro USB interface.

6. The combined work light according to claim 1, characterized in that, The height of the base is set to 10cm-40cm.

7. The combined work light according to claim 1, characterized in that, The lamp body also includes a handheld part and a rotating part, wherein the rotating part is connected between the handheld part and the light-emitting body; The light-emitting element is configured to be rotatably connected to the hand-held part via the rotating part. When the light-emitting element rotates to a position that is nearly parallel to the hand-held part and the light-emitting side is close to the hand-held part, the lamp body is in a first state. When the light-emitting element rotates to form an angle with the hand-held part, the lamp body is in a second state. When the light-emitting element rotates to a position that is nearly parallel to the hand-held part and the light-emitting side is away from the hand-held part, the lamp body is in a third state.

8. The combined work light according to claim 7, characterized in that, The rotating part includes a first rotating part, a connecting part, and a second rotating part. The first rotating part is larger than the second rotating part, and the second rotating part is connected to the first rotating part through the connecting part. The first rotating part is rotatably connected to the handheld part, and the second rotating part is connected to the light-emitting body.

9. The combined work light according to claim 7, characterized in that, A connector is provided at the end of the hand-held part away from the rotating part.

10. The combined work light according to claim 1, characterized in that, The light source includes a floodlight panel for close illumination and a beamlight panel for long illumination, with the close illumination panel and the beamlight panel being embedded together.

Citation Information

Patent Citations

  • Socket charging connection structure of working lamp

    CN211556943U