Intelligent mining lamp

By designing a simplified installation structure on intelligent industrial and mining lamps, including the fastener connection of the lamp body, installation module and induction module, the complex installation problem of existing industrial and mining lamp induction modules is solved, and an efficient and reliable installation process is achieved.

CN222911555UActive Publication Date: 2025-05-27深圳市领克科技有限公司
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Patent Information

Application Number
CN202421738976.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-05-27
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The installation structure of the induction module of existing industrial and mining lamps is complicated, resulting in low installation efficiency.

Method used

An intelligent industrial and mining lamp is designed, which includes a lamp body, an installation module and an induction module. The installation process is simplified by setting up installation holes and connecting holes on the lamp body and using fasteners and threaded structures, the installation module and the induction module are installed on the lamp body respectively.

Benefits of technology

It realizes the simplicity and convenience of installation operations, improves installation efficiency, and reduces costs through a simplified structure, while enhancing the reliability of connections, avoiding the random fall of the induction module.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The intelligent mining lamp comprises a lamp body, the lamp body is provided with a mounting hole and a first connecting hole, the mounting hole vertically penetrates through the lamp body, the first connecting hole is formed in the top of the lamp body, and the first connecting hole is located in the side close to the mounting hole; the mounting module is arranged in the mounting hole in a penetrating mode, the mounting module is provided with a second connecting hole and an inner threaded hole, and the second connecting hole is connected with the first connecting hole through a fastener so that the mounting module and the lamp body can be connected together; the induction module is located at the bottom of the lamp body, the induction module is provided with an external thread part, and the external thread part is inserted into the internal thread hole and matched with the internal thread hole so that the induction module and the installation module can be connected together. The installation structure composed of the first connecting hole, the installation hole, the installation module and the external thread part is simple and practical, installation operation is easy and convenient, installation efficiency is high, connection reliability is high, cost can be reduced, and meanwhile the induction module can be reliably installed on the lamp body.
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Description

Technical Field

[0001] This application relates to the technical field of lamps, and particularly to an intelligent industrial and mining lamp. Background Art

[0002] Industrial and mining lamps refer to the general term for lamps used in the production operation areas of factories, mines, warehouses, and high bays.

[0003] Industrial and mining lamps are usually evenly arranged above or on the side walls of the working site to illuminate the entire working surface. In order to extend the service life of industrial and mining lamps and reduce energy consumption, an induction module is generally installed on the industrial and mining lamp, and the brightness and on / off of the industrial and mining lamp are controlled through the induction module. However, the installation structure of the induction module of the above-mentioned industrial and mining lamp is relatively complex, and the installation efficiency is relatively low. Utility Model Content

[0004] The embodiments of this application provide an intelligent industrial and mining lamp to solve the problems existing in the related technologies. The technical solutions are as follows:

[0005] The embodiments of this application provide an intelligent industrial and mining lamp, including:

[0006] A lamp body, which has a mounting hole and a first connection hole. The mounting hole penetrates through the lamp body vertically. The first connection hole is provided on the top of the lamp body and is located on one side close to the mounting hole;

[0007] An installation module, which passes through the mounting hole. The installation module has a second connection hole and an internal thread hole. The second connection hole and the first connection hole are connected by a fastener to connect the installation module and the lamp body together;

[0008] An induction module, which is electrically connected to the lamp body. The induction module is located at the bottom of the lamp body. The induction module is provided with an external thread portion, and the external thread portion is inserted into the internal thread hole and cooperates with the internal thread hole to connect the induction module and the installation module together.

[0009] In one embodiment, the induction module is provided with a limiting portion, which is located below the external thread portion, and the outer diameter of the limiting portion is greater than the outer diameter of the external thread portion;

[0010] The installation module includes:

[0011] An installation bracket, which has the second connection hole and a third connection hole. The third connection hole is for the external thread portion to pass through, and the installation bracket abuts against the limiting portion;

[0012] Locking nut, the locking nut has the internal threaded hole, and the locking nut abuts against the mounting bracket to press the mounting bracket against the limiting portion.

[0013] In one embodiment, the mounting bracket is provided with a connecting plate and a connecting arm. The connecting plate has the third connecting hole. The connecting plate is in clearance fit with the mounting hole. The connecting arm is connected to the connecting plate, and the connecting arm has the second connecting hole.

[0014] In one embodiment, the number of the first connecting holes is at least two;

[0015] The number of the connecting arms is at least two. At least two connecting arms are arranged at intervals around the connecting plate. Each connecting arm is provided with the second connecting hole. Each second connecting hole is respectively connected to the corresponding first connecting hole through a fastener.

[0016] In one embodiment, the induction module includes:

[0017] Mounting base body, the top of the mounting base body has a mounting groove;

[0018] Control circuit board, the control circuit board is arranged in the mounting groove. The control circuit board has an electrical connection structure, and the electrical connection structure is electrically connected to the lamp body;

[0019] Connecting base body, the upper part of the connecting base body is provided with the external threaded portion. The lower part of the connecting base body is arranged in the mounting groove. The lower part of the connecting base body covers the control circuit board, and the lower part of the connecting base body is clamped with the mounting base body. The connecting base body has an avoidance hole, and the avoidance hole penetrates through the connecting base body up and down. The avoidance hole is for the electrical connection structure to pass through;

[0020] Induction module, the induction module is arranged on the bottom of the mounting base body, and the induction module is electrically connected to the control circuit board;

[0021] Outer cover, the outer cover is sleeved outside the mounting base body in a clamping manner. The outer cover has a receiving cavity. The receiving cavity receives the induction module, and the top opening of the receiving cavity is covered by the mounting base body. In one embodiment, the bottom of the lower part of the connecting base body has a positioning protrusion;

[0022] The control circuit board is provided with a positioning hole, and the positioning hole cooperates with the positioning protrusion.

[0023] In one embodiment, the induction module includes a human body induction module, and the control circuit board is used to control the brightness and / or switch of the lamp body according to the feedback information of the human body induction module.

[0024] In one embodiment, the intelligent industrial and mining lamp further comprises:

[0025] A power supply module, which is arranged on the top of the lamp body, and the power supply module is electrically connected to the lamp body and the induction module.

[0026] In one embodiment, the intelligent industrial and mining lamp further comprises:

[0027] A hook, the hook body of the hook is connected to the top of the power supply module, and the hook mouth of the hook is used for connecting with an external load-bearing object;

[0028] A limiting member, which is screwed on the hook mouth, the limiting member is used for adjusting the size of the inlet and outlet of the hook mouth, and the limiting member is used for restricting the hook mouth on the external load-bearing object.

[0029] In one embodiment, the lamp body comprises:

[0030] A heat dissipation base body, which has the installation hole, the first connection hole and an installation cavity, the installation cavity is located at the bottom of the heat dissipation base body, the top of the heat dissipation base body has a plurality of heat dissipation fins, the plurality of heat dissipation fins are arranged at intervals around the vertical center line of the installation hole, the plurality of heat dissipation fins are located above the installation cavity, and the height of the heat dissipation fins gradually increases from inside to outside;

[0031] A lamp board module, which is arranged in the installation cavity;

[0032] A lens, which is arranged on the heat dissipation base body, the lens covers the bottom opening of the installation cavity, and the lens is arranged opposite to the lamp beads on the lamp board module;

[0033] A sealing member, which is clamped between the lens and the heat dissipation base body, and the sealing member is arranged around the lamp board module to seal the gap between the lens and the heat dissipation base body.

[0034] The advantages or beneficial effects in the above technical solutions at least include:

[0035] For the intelligent industrial and mining lamp of the present utility model, during installation, first, the installation module can be inserted through the installation hole from top to bottom, and at the same time, the second connection hole is aligned with the first connection hole, and then the second connection hole and the first connection hole are connected by fasteners to install the installation module on the lamp body. Then, the induction module can be inserted through the installation hole from bottom to top, and at the same time, the external thread part is matched with the internal thread hole to install the induction module on the installation module, and finally, the induction module is installed on the lamp body. The installation operation is simple, convenient, and has high installation efficiency;

[0036] In addition, the installation structure composed of the first connection hole, the installation hole, the installation module, and the external thread part is simple and practical, with high connection reliability. It can reduce costs while reliably installing the induction module on the lamp body.

[0037] In addition, since the first connection hole is located on the top of the lamp body, the part of the installation module with the second connection hole (i.e., the connecting arm) extends to the top of the lamp body. In the case where the fastener becomes loose, the part of the installation module with the second connection hole (i.e., the connecting arm) abuts against the top of the lamp body, which can limit the installation module from detaching from the lamp body, thereby restricting the induction module from detaching from the lamp body and preventing the induction module from falling off randomly, with higher connection reliability.

[0038] The above summary is only for the purpose of the specification and is not intended to be limiting in any way. In addition to the above-described illustrative aspects, embodiments, and features, further aspects, embodiments, and features of the present application will become apparent by reference to the drawings and the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] In the drawings, unless otherwise specified, the same reference numerals throughout the several views denote the same or similar components or elements. These drawings are not necessarily drawn to scale. It should be understood that these drawings only depict some embodiments disclosed in the present application and should not be regarded as limiting the scope of the present application.

[0040] Figure 1 is a three-dimensional structural schematic diagram of the intelligent industrial and mining lamp of the present utility model;

[0041] Figure 2 is a three-dimensional structural schematic diagram of the intelligent industrial and mining lamp of the present utility model;

[0042] Figure 3 is an exploded view of the intelligent industrial and mining lamp of the present utility model;

[0043] Figure 4 is a three-dimensional structural schematic diagram of the induction module in the present utility model;

[0044] Figure 5 is an exploded view of the induction module in the present utility model;

[0045] Figure 6 is a three-dimensional structural schematic diagram of the connection base in the induction module of the present utility model.

[0046] REFERENCE NUMERALS

[0047] 1. Lamp body; 11. Heat dissipation base; 111. Mounting hole; 112. First connection hole; 113. Heat dissipation fins; 12. Lamp board module; 13. Lens; 14. Seal; 2. Mounting module; 21. Mounting bracket; 211. Connecting plate; 2111. Third connection hole; 212. Connecting arm; 2121. Second connection hole; 22. Locking nut; 221. Internal thread hole; 3. Induction module; 31. Mounting base; 311. Mounting groove; 32. Control circuit board; 321. Electrical connection structure; 322. Positioning hole; 33. Connecting base; 331. External thread portion; 332. Limiting portion; 333. Avoidance hole; 334. Positioning protrusion; 34. Induction module; 35. Outer cover; 351. Accommodating cavity; 4. Fastener; 5. Power supply module; 6. Hook; 61. Hook body; 62. Hook mouth; 7. Limiting member; 8. Power cord. Detailed implementation manners

[0048] In the following text, only some exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than restrictive.

[0049] Refer to Figures 1-6 , which shows an intelligent industrial and mining lamp in a preferred embodiment of the present invention, including:

[0050] The lamp body 1 has a mounting hole 111 and a first connection hole 112. The mounting hole 111 penetrates through the lamp body 1 both vertically. The first connection hole 112 is provided on the top of the lamp body 1 and is located on one side close to the mounting hole 111.

[0051] The mounting module 2 passes through the mounting hole 111. The mounting module 2 has a second connection hole 2121 and an internal thread hole 221. The second connection hole 2121 is connected to the first connection hole 112 through a fastener 4 to connect the mounting module 2 and the lamp body 1 together.

[0052] The induction module 3 is electrically connected to the lamp body 1. The induction module 3 is located at the bottom of the lamp body 1. The induction module 3 is provided with an external thread portion 331. The external thread portion 331 is inserted into the internal thread hole 221 and cooperates with the internal thread hole 221 to connect the induction module 3 and the mounting module 2 together.

[0053] For the intelligent industrial and mining lamp of the present utility model, during installation, first, the installation module 2 can be passed through the installation hole 111 from top to bottom. At the same time, align the second connection hole 2121 with the first connection hole 112, and then connect the second connection hole 2121 and the first connection hole 112 through the fastener 4 to install the installation module 2 on the lamp body 1. Then, the induction module 3 can be passed through the installation hole 111 from bottom to top. At the same time, make the external thread portion 331 cooperate with the internal thread hole 221 to install the induction module 3 on the installation module 2, and finally install the induction module 3 on the lamp body 1. The installation operation is simple, convenient, and has high installation efficiency. In addition, the installation structure composed of the first connection hole 112, the installation hole 111, the installation module 2, and the external thread portion 331 is simple and practical, with high connection reliability. It can reduce costs while reliably installing the induction module 3 on the lamp body 1. In addition, since the first connection hole 112 is located on the top of the lamp body 1, the part of the installation module 2 with the second connection hole 2121 (i.e., the connecting arm 212) extends to the top of the lamp body 1. In the case where the fastener 4 becomes loose, the part of the installation module 2 with the second connection hole 2121 (i.e., the connecting arm 212) abuts against the top of the lamp body 1 and can limit the installation module 2 from detaching from the lamp body 1, thereby restricting the induction module 3 from detaching from the lamp body 1 and avoiding the random detachment of the induction module 3, with higher connection reliability.

[0054] See Figure 5 , in an embodiment, the induction module 3 is provided with a limiting portion 332. The limiting portion 332 is located below the external thread portion 331, and the outer diameter of the limiting portion 332 is larger than the outer diameter of the external thread portion 331.

[0055] The installation module 2 includes:

[0056] An installation bracket 21. The installation bracket 21 has a second connection hole 2121 and a third connection hole 2111. The third connection hole 2111 is for the external thread portion 331 to pass through, and the installation bracket 21 abuts against the limiting portion 332.

[0057] A locking nut 22. The locking nut 22 has an internal thread hole 221. The locking nut 22 abuts against the installation bracket 21 to press the installation bracket 21 against the limiting portion 332. In this way, when installing the installation module 2, the installation bracket 21 can be first installed on the lamp body 1, then the external thread portion 331 is passed through the third connection hole 2111, and finally the locking nut 22 is screwed onto the external thread portion 331 until the locking nut 22 abuts against the installation bracket 21, realizing pressing the installation bracket 21 against the limiting portion 332 of the induction module 3. The limiting portion 332 and the locking nut 22 can be used to vertically limit the induction module 3, thereby reliably installing the induction module 3 on the lamp body 1. The installation operation is simpler and more convenient, and at the same time, the connection reliability is higher.

[0058] SeeFigures 2-5 In one embodiment, the mounting bracket 21 is provided with a connecting plate 211 and a connecting arm 212. The connecting plate 211 has a third connecting hole 2111. The connecting plate 211 is in clearance fit with the mounting hole 111, so as to facilitate the smooth passing of the mounting bracket 21 through the mounting hole 111. The connecting arm 212 is connected to the connecting plate 211, and the connecting arm 212 has a second connecting hole 2121. The overall thickness of the mounting bracket 21 composed of the connecting plate 211 and the connecting arm 212 is thin, with less material consumption. While being able to reduce costs, it can also reduce the weight and will not excessively increase the overall weight of the intelligent industrial and mining lamp, making the intelligent industrial and mining lamp more convenient to install.

[0059] See Figures 2-5 In one embodiment, the number of the first connecting holes 112 is at least two;

[0060] The number of the connecting arms 212 is at least two. At least two connecting arms 212 are arranged at intervals around the connecting plate 211. Each connecting arm 212 is provided with a second connecting hole 2121. Each second connecting hole 2121 is respectively connected to the corresponding first connecting hole 112 through a fastener 4. While being able to further improve the connection stability between the mounting module 2 and the lamp body 1, based on the spaced arrangement of at least two connecting arms 212, the material usage of the mounting bracket 21 can be reduced, which helps to further reduce costs and weight.

[0061] In other embodiments, the connecting arm 212 can also be an integral structure continuously arranged around the connecting plate 211.

[0062] See Figures 4-5 In one embodiment, the induction module 3 includes:

[0063] A mounting base 31, the top of the mounting base 31 has a mounting groove 311;

[0064] A control circuit board 32, the control circuit board 32 is arranged in the mounting groove 311. The control circuit board 32 has an electrical connection structure 321, and the electrical connection structure 321 is connected to the lamp body 1;

[0065] A connecting base 33, the upper part of the connecting base 33 is provided with an external thread portion 331. The lower part of the connecting base 33 is arranged in the mounting groove 311. The lower part of the connecting base 33 covers the control circuit board 32, and the lower part of the connecting base 33 is snap - connected to the mounting base 31. The connecting base 33 has an avoidance hole 333, and the avoidance hole 333 penetrates through the connecting base 33 up and down. The avoidance hole 333 is for the electrical connection structure 321 to pass through;

[0066] An induction module 34, the induction module 34 is arranged on the bottom of the mounting base 31, and the induction module 34 is electrically connected to the control circuit board 32;

[0067] The outer cover 35 is sleeved outside the mounting base 31 in a snap - connection manner. The outer cover 35 has a receiving cavity 351. The receiving cavity 351 houses the sensing module 34, and the top opening of the receiving cavity 351 is covered by the mounting base 31. In this way, when assembling the sensing module 3, the control circuit board 32 can be first placed in the mounting groove 311, then the sensing module 34 is installed at the bottom of the mounting base 31 and electrically connected to the control circuit board 32. Next, the lower part of the connecting base 33 is placed in the mounting groove 311, and the lower part of the connecting base 33 is snap - connected to the mounting base 31, so as to limit the control circuit board 32 in the mounting groove 311. Finally, the outer cover 35 is sleeved on the mounting base 31 in a snap - connection manner, and the mounting base 31 is used to cover the top opening of the receiving cavity 351, thereby realizing the placement of the sensing module 34 inside the outer cover 35, playing a role in protecting the sensing module 34. Among them, based on the snap - connection between the connecting base 33 and the mounting base 31, the connecting base 33 and the mounting base 31 are free of screw connections, which simplifies the structure and can improve the assembly efficiency. Similarly, based on the snap - connection between the outer cover 35 and the mounting base 31, the outer cover 35 and the mounting base 31 are free of screw connections, which simplifies the structure and can improve the assembly efficiency.

[0068] Among them, it can be understood that the above - mentioned snap - connection is specifically a connection method through a snap - fastener structure.

[0069] See Figure 6 , in an embodiment, the bottom of the lower part of the connecting base 33 has a positioning protrusion 334;

[0070] The control circuit board 32 is provided with a positioning hole 322. The positioning hole 322 cooperates with the positioning protrusion 334 to play a role in installing and positioning and limiting the control circuit board 32, enabling the rapid installation of the control circuit board 32. At the same time, it ensures that the control circuit board 32 is reliably installed at the set position.

[0071] In an embodiment, the sensing module 34 includes a human body sensing module 34. The control circuit board 32 is used to control the brightness and / or switch of the lamp body 1 according to the feedback information of the human body sensing module 34. That is, when the human body sensing module 34 detects that someone passes by the intelligent industrial and mining lamp, the control circuit board 32 receives the feedback information of the sensing module 34, and the control circuit board 32 controls to turn on the lamp body 1 or brighten the brightness of the lamp body 1; when the human body sensing module 34 detects that there is no human body under the intelligent industrial and mining lamp, the control circuit board 32 receives the feedback information of the sensing module 34, and the control circuit board 32 controls to turn off the lamp body 1 or dim the brightness of the lamp body 1, realizing the intelligent control of the lamp body 1, which can reduce energy consumption and thus reduce the use cost.

[0072] In one embodiment, the induction module 34 may further include a Bluetooth receiving module, which is electrically connected to the control circuit board 32. The Bluetooth receiving module is used to receive the information output by the Bluetooth to control the turning on, turning off and brightness of the lamp body 1.

[0073] In one embodiment, the induction module 34 may further include a remote control receiving module, which is electrically connected to the control circuit board 32. The remote control receiving module is used to receive the information output by the remote control to control the turning on, turning off and brightness of the lamp body 1.

[0074] See Figure 1 , in one embodiment, the intelligent industrial and mining lamp further includes:

[0075] A power supply module 5, which is arranged on the top of the lamp body 1. The power supply module 5 is electrically connected to the lamp body 1 and the induction module 3 to supply power to the lamp body 1 and the induction module 3.

[0076] See Figures 1-3 , in one embodiment, the intelligent industrial and mining lamp further includes:

[0077] A hook 6, the hook body 61 of the hook 6 is connected to the top of the power supply module 5, and the hook mouth 62 of the hook 6 is used to connect to an external load-bearing object;

[0078] A limiting member 7, which is screwed onto the hook mouth 62. The limiting member 7 is located in the inlet and outlet of the hook mouth 62. The limiting member 7 is used to adjust the size of the inlet and outlet of the hook mouth 62, and the limiting member 7 is used to limit the hook mouth 62 to the external load-bearing object. In this way, when the intelligent industrial and mining lamp needs to be installed on an external load-bearing object, by screwing the limiting member 7, the limiting member 7 moves away from the hook body 61 to enlarge the inlet and outlet, so that the inlet and outlet can allow the suspension part of the load-bearing object to pass through, thereby realizing hanging the intelligent industrial and mining lamp on the load-bearing object. Finally, by screwing the limiting member 7, the limiting member 7 moves towards the hook body 61 to reduce the inlet and outlet, thereby limiting the hook mouth 62 to the external load-bearing object, preventing the hook 6 from randomly detaching from the load-bearing object, improving the installation stability and safety of the intelligent industrial and mining lamp, and the installation operation is simple, convenient and has high installation efficiency.

[0079] In one embodiment, the power supply module 5 is provided with a power cord 8. One end of the power cord 8 extends into the power supply module 5 and is electrically connected to the power supply module. The other end of the power cord 8 is exposed outside the power supply module 5 and is provided with a plug, and the plug is used to be electrically connected to an external power supply to supply power to the power supply module 5 without additional wiring.

[0080] In one embodiment, the intelligent industrial and mining lamp further includes:

[0081] A control module (not shown in the figure), which is located on the top of the lamp body 1. The control module is electrically connected to the lamp body 1, the induction module 3 and the power supply module 5.

[0082] See Figures 1-3 , in one embodiment, the lamp body 1 includes:

[0083] A heat dissipation base body 11, the heat dissipation base body 11 has a mounting hole 111, a first connection hole 112 and a mounting cavity. The mounting cavity is located on the bottom of the heat dissipation base body 11. The top of the heat dissipation base body 11 has a plurality of heat dissipation fins 113. The plurality of heat dissipation fins 113 are arranged at intervals around the vertical center line of the mounting hole 111. The plurality of heat dissipation fins 113 are located above the mounting cavity, and the height of the heat dissipation fins 113 gradually increases from inside to outside;

[0084] A lamp board module 12, the lamp board module 12 is arranged in the mounting cavity;

[0085] A lens 13, the lens 13 is arranged on the heat dissipation base body 11. The lens 13 covers the bottom opening of the mounting cavity, and the lens 13 is arranged opposite to the lamp beads on the lamp board module 12;

[0086] A seal 14, the seal 14 is clamped between the lens 13 and the heat dissipation base body 11. The seal 14 is arranged around the lamp board module 12 to seal the gap between the lens 13 and the heat dissipation base body 11. Based on the fact that the heat dissipation base body 11 is provided with a plurality of heat dissipation fins 113, the plurality of heat dissipation fins 113 are arranged at intervals around the vertical center line of the mounting hole 111, the plurality of heat dissipation fins 113 are located above the mounting cavity, and the height of the heat dissipation fins 113 gradually increases from inside to outside, the heat generated when the lamp board module 12 works can be efficiently dissipated by using the heat dissipation fins 113, and the heat dissipation efficiency is greatly improved.

[0087] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0088] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" can explicitly or implicitly include at least one of the features. In the description of the present application, "a plurality of" means two or more unless otherwise specifically defined.

[0089] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of various changes or substitutions thereof, and these should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims

1. Intelligent mining lamp, characterized by: include: A lamp body, the lamp body having a mounting hole and a first connecting hole, the mounting hole passing through the lamp body from top to bottom, the first connecting hole being arranged on the top of the lamp body, and the first connecting hole being located on a side close to the mounting hole; A mounting module, the mounting module is inserted into the mounting hole, the mounting module has a second connecting hole and an internal threaded hole, the second connecting hole is connected to the first connecting hole through a fastener, so as to connect the mounting module to the lamp body; The sensing module is electrically connected to the lamp body, the sensing module is located at the bottom of the lamp body, and the sensing module is provided with an external threaded portion, the external threaded portion is inserted into the internal threaded hole and cooperates with the internal threaded hole to connect the sensing module and the mounting module together.

2. The intelligent mining lamp according to claim 1, characterized in that: The sensing module is provided with a limiting portion, the limiting portion is located below the external thread portion, and the outer diameter of the limiting portion is greater than the outer diameter of the external thread portion; The installation module comprises: A mounting bracket, wherein the mounting bracket has the second connecting hole and a third connecting hole, the third connecting hole is for the external threaded portion to pass through, and the mounting bracket abuts against the limiting portion; A locking nut having the internal threaded hole, wherein the locking nut abuts against the mounting bracket to press the mounting bracket onto the limiting portion.

3. The intelligent mining lamp according to claim 2, characterized in that: The mounting bracket is provided with a connecting plate and a connecting arm, the connecting plate has the third connecting hole, the connecting plate is clearance-matched with the mounting hole, the connecting arm is connected to the connecting plate, and the connecting arm has the second connecting hole.

4. The intelligent mining lamp according to claim 3, characterized in that: The number of the first connecting holes is at least two; The number of the connecting arms is at least two, and at least two of the connecting arms are spaced apart around the connecting plate. Each of the connecting arms is provided with a second connecting hole, and each of the second connecting holes is connected to the corresponding first connecting hole via a fastener.

5. The intelligent mining lamp according to claim 1, characterized in that: The sensing module comprises: A mounting base, wherein the top of the mounting base has a mounting groove; A control circuit board, the control circuit board is arranged in the mounting groove, the control circuit board has an electrical connection structure, and the electrical connection structure is electrically connected to the lamp body; A connecting base, wherein the upper portion of the connecting base is provided with the external threaded portion, the lower portion of the connecting base is arranged in the mounting groove, the lower portion of the connecting base covers the control circuit board, and the lower portion of the connecting base is snap-connected with the mounting base, the connecting base has an avoidance hole, the avoidance hole penetrates the connecting base both upward and downward, and the avoidance hole is for the electrical connection structure to pass through; A sensing module, the sensing module is arranged on the bottom of the mounting base, and the sensing module is electrically connected to the control circuit board; The outer cover is arranged outside the mounting base in a snap-fitting manner, and the outer cover has a receiving cavity, the receiving cavity receives the sensing module, and the top opening of the receiving cavity is covered by the mounting base.

6. The intelligent mining lamp according to claim 5, characterized in that: The bottom of the lower part of the connecting base has a positioning protrusion; The control circuit board is provided with a positioning hole, and the positioning hole cooperates with the positioning protrusion.

7. The intelligent mining lamp according to claim 5, characterized in that: The sensing module includes a human body sensing module, and the control circuit board is used to control the brightness and / or switching of the lamp body according to feedback information of the human body sensing module.

8. The intelligent mining lamp according to claim 1, characterized in that: The intelligent mining lamp also includes: A power module is arranged on the top of the lamp body, and the power module is electrically connected to the lamp body and the sensing module.

9. The intelligent mining lamp according to claim 8, characterized in that: The intelligent mining lamp also includes: A hook, wherein the hook body of the hook is connected to the top of the power module, and the hook mouth of the hook is used to connect to an external load-bearing object; A limit piece is screwed on the hook mouth, the limit piece is located in the inlet and outlet of the hook mouth, the limit piece is used to adjust the size of the inlet and outlet of the hook mouth, and the limit piece is used to limit the hook mouth to an external load-bearing object.

10. The intelligent mining lamp according to claim 1, characterized in that: The lamp body comprises: A heat dissipation substrate, wherein the heat dissipation substrate has the mounting hole, the first connecting hole and a mounting cavity, the mounting cavity is located on the bottom of the heat dissipation substrate, and the top of the heat dissipation substrate has a plurality of heat dissipation fins, the plurality of heat dissipation fins are arranged at intervals around the vertical center line of the mounting hole, the plurality of heat dissipation fins are located above the mounting cavity, and the height of the heat dissipation fins gradually increases from the inside to the outside; A light board module, wherein the light board module is arranged in the installation cavity; A lens, wherein the lens is disposed on the heat dissipation substrate, the lens covers the bottom opening of the mounting cavity, and the lens is disposed opposite to the lamp beads on the lamp board module; A sealing member is sandwiched between the lens and the heat dissipation substrate, and the sealing member is arranged around the light board module to seal the gap between the lens and the heat dissipation substrate.