Clamping groove type assembled LED line lamp with inductor and switch

By adding sensors and switch components to the linear lights, combined with a snap-fit ​​structure, the challenges of intelligent linear light assembly and control have been solved, reducing costs and improving intelligent control performance while minimizing the use of fasteners.

CN223470150UActive Publication Date: 2025-10-24SHENZHEN LEMING PHOTOELECTRIC LIGHTING CO LTD
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Patent Information

Application Number
CN202423024179.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-10-24
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Existing linear lights have a simple structure, making it difficult to meet users' needs for intelligent lighting. They are also difficult to turn off in open environments, leading to energy waste. In addition, they require many fasteners for fixation, increasing costs and making them easy to lose, which makes assembly difficult.

Method used

Design a slot-type assembled LED linear light with sensors and switches. The sensor and switch components enable intelligent control, and the assembly is achieved through a snap-fit ​​structure, reducing or eliminating the reliance on fasteners.

Benefits of technology

It enables intelligent control of linear lights, reduces production costs and assembly difficulty, avoids assembly problems caused by missing fasteners, and reduces energy waste.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223470150U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of line lamps, in particular to a clamping groove type assembled LED line lamp with an inductor and a switch, which comprises a lamp body 100, a light source module, a lower light emitting cover 200, the inductor 300 and a driving component 400. The light source module is arranged in the lamp body 100; the lower light emitting cover 200 is connected with the lamp body 100 in a clamping manner and is arranged on an illumination path of the light source module; the inductor 300 is arranged in the lamp body 100, and the induction end of the inductor 300 protrudes out of the lamp body 100. The driving assembly 400 is arranged in the lamp body 100, and the driving assembly 400 is electrically connected with the inductor 300. According to the line lamp, the inductor and the switch assembly are additionally arranged on the line lamp, the intelligent degree of the line lamp is effectively improved, meanwhile, by optimizing the structure of the line lamp, various clamping structures are assembled to form the line lamp, introduction of excessive external fasteners is avoided, the production cost can be greatly reduced, and the production efficiency is improved. And meanwhile, the situation that the line lamp cannot be assembled due to part loss is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to line lamp technical field, especially line slot type assembly LED line lamp with inductor and switch. BACKGROUND

[0002] LED is the abbreviation of light emitting diode, its basic structure is the chip of electroluminescent semiconductor material, is fixed to the support with silver glue or white glue, then the chip and circuit board are connected with silver wire or gold wire, then the periphery is sealed with epoxy resin, the inside core wire is protected, finally the shell is installed, so the anti-shock performance of LED lamp is good. The application field relates to mobile phones, table lamps, household appliances and mechanical production. According to shape, it can be divided into line lamp, square lamp and irregular shape lamp.

[0003] The existing line lamp structure is relatively simple, usually only realizes the effect of power-on lighting and power-off extinguishing, but the structure and principle are difficult to meet the intelligent needs of users at present, and in an open environment, it is difficult to turn off conveniently and timely, which can easily cause energy waste. At the same time, the existing line lamp structure needs more fasteners for fixing, which increases the cost, and if the fastener is lost, the line lamp structure is difficult to assemble.

[0004] The utility model provides a line slot type assembly LED line lamp with inductor and switch. UTILITY MODEL CONTENTS

[0005] The utility model contents of the utility model provide a line slot type assembly LED line lamp with inductor and switch, mainly solve the effect that the existing line lamp only realizes power-on lighting and power-off extinguishing, and the problem that it is difficult to meet the intelligent needs of users at present. At the same time, the existing line lamp structure needs more fasteners for fixing, which increases the cost, and if the fastener is lost, the line lamp structure is difficult to assemble.

[0006] The utility model provides a line slot type assembly LED line lamp with inductor and switch, comprising:

[0007] The lamp body is provided with a light source module, an inductor and a switch.

[0008] The light source module is built-in in the lamp body.

[0009] The lower light shield is connected with the lamp body and is arranged on the light path of the light source module.

[0010] The inductor is built-in in the lamp body, and the sensing end of the inductor protrudes from the lamp body.

[0011] A driving assembly is built in the lamp body and electrically connected with the inductor.

[0012] Preferably, further comprising:

[0013] A switch assembly is hingedly connected with the lamp body, and a control structure of the switch assembly is exposed on the lamp body; the switch assembly is electrically connected with the driving assembly.

[0014] Preferably, the light source module comprises an upper light emitting assembly and a lower light emitting LED light source.

[0015] The lamp body is a strip-shaped frame structure; the upper light emitting assembly is hingedly fixed on the upper end surface of the lamp body and closes the upper end opening of the lamp body; the lower light emitting LED light source is built in the lamp body; the upper light emitting assembly and the lower light emitting LED light source are respectively arranged in opposite directions along the vertical direction; the lower light emitting cover is hingedly fixed on the lower end surface of the lamp body and closes the lower end opening of the lamp body; the lower light emitting cover is arranged on the light path of the lower light emitting LED light source.

[0016] Preferably, further comprising a fixing plate which is spliced with the lower light emitting cover, and a through hole is formed on the fixing plate for the inductor to protrude; the switch assembly and the upper light emitting assembly are spliced on the top end of the lamp body.

[0017] The fixing plate and the lower light emitting cover are provided with a first hinging structure which is hingedly fixed with the bottom end of the lamp body; the switch assembly and the upper light emitting assembly are provided with a second hinging structure which is hingedly fixed with the top end of the lamp body.

[0018] Preferably, the first hinging structure comprises a first groove which is protruded from the end edge of the fixing plate and the lower light emitting cover, and a first buckle which is protruded from the inner side wall of the lower end edge of the lamp body.

[0019] The second hinging structure comprises a second groove which is protruded from the edge of the switch assembly and the upper light emitting assembly, and a second buckle which is protruded from the inner side wall of the upper end edge of the lamp body.

[0020] The first buckle and the second buckle are arranged along the length direction of the lamp body.

[0021] Preferably, end caps are interference-fitted on both ends of the lamp body.

[0022] Preferably, further comprising:

[0023] A lifting buckle is hingedly fixed on the upper end surface of the lamp body.

[0024] A lifting rope is hingedly fixed with the lifting buckle.

[0025] Preferably, the upper end of the lamp body is protruded to form a third groove with the same length direction as the lamp body; the third groove has two parts and is symmetrically distributed along the central axis of the lamp body; the two third grooves are arranged between the two side edges of the lamp body;

[0026] The two ends of the lifting buckle are protruded upward to form a third buckle;

[0027] The third groove and the third buckle are matched and fixed.

[0028] Preferably, the utility model also comprises:

[0029] The ceiling suction spring is fixed with the third groove of the lamp body, and a fixing hole is formed on the ceiling suction spring for external fasteners;

[0030] The upper light-emitting component of the light source module is arranged between the third grooves, and the ceiling suction spring is arranged on the surface of the upper light-emitting component;

[0031] The two ends of the ceiling suction spring are formed with a fourth buckle for fixing the third groove.

[0032] Preferably, the upper light-emitting component comprises the following components arranged in parallel from top to bottom:

[0033] An upper light-emitting cover;

[0034] An upper light-emitting LED light source;

[0035] An upper light-emitting bottom cover fixed with the upper light-emitting cover through a fourth buckle structure; the upper light-emitting LED light source is arranged on the inner bottom surface of the upper light-emitting bottom cover;

[0036] A side cover is arranged on the two ends of the upper light-emitting bottom cover and the upper light-emitting cover through interference fit.

[0037] As can be seen from the above, the technical scheme provided by the utility model can achieve the following beneficial effects:

[0038] First, the LED line lamp provided by the utility model is provided with a sensor and a switch assembly, so that the sensor can intelligently control the light, and the switch assembly can control the on-off and color temperature of the line lamp, so that the color temperature range of the line lamp can adapt to the needs of different users and different application environments;

[0039] Second, the line lamp provided by the utility model is assembled without fasteners through a plurality of buckle structures, which greatly reduces the cost of the lamp, and reduces the assembly difficulty and time;

[0040] Third, the end cap of the line lamp is fastened to the end of the lamp body through the interference fit of the boss structure on the end cap, so that the assembled line lamp forms a closed shape, and no external fastener is needed for fixing. BRIEF DESCRIPTION OF DRAWINGS

[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0042] Figure 1 It is an exploded view of the LED line lamp in the embodiment of the present application;

[0043] Figure 2 It is an exploded view of the switch assembly of the LED line lamp in the embodiment of the present application;

[0044] Figure 3 It is an exploded view of the upper light emitting assembly of the LED line lamp in the embodiment of the present application and a partial enlarged view thereof;

[0045] Figure 4 It is an assembled state cross-sectional view of the upper light emitting assembly of the LED line lamp in the embodiment of the present application;

[0046] Figure 5 It is a partial structure schematic view of the first clamping structure and the second clamping structure on the lamp body of the LED line lamp in the embodiment of the present application and an assembled state cross-sectional view thereof;

[0047] Figure 6 It is a partial structure schematic view of the first clamping structure and the second clamping structure on the lamp body of the LED line lamp in the embodiment of the present application and an assembled state cross-sectional view thereof;

[0048] Figure 7 It is a structure schematic view of the lamp body and the hoisting buckle of the LED line lamp in the embodiment of the present application and an assembled state cross-sectional view thereof;

[0049] Figure 8 It is an end cap structure schematic view of the two ends of the LED line lamp in the embodiment of the present application. DETAILED DESCRIPTION

[0050] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative effort belong to the scope of the present application.

[0051] The existing line lamp only realizes the effect of lighting when powered on and extinguishing when powered off, and it is difficult to meet the intelligent needs of users at the present stage. Meanwhile, the existing line lamp structure needs more fasteners for fixing, resulting in increased cost, and if the fasteners are lost, the line lamp structure is difficult to assemble.

[0052] As shown in Figures 1-8 To solve the above problems, the embodiment provides a card slot type assembled LED line lamp with a sensor and a switch, which comprises a lamp body 100, a light source module, a lower light outlet cover 200, a sensor 300, and a driving assembly 400. The light source module is built into the lamp body 100. The lower light outlet cover 200 is connected with the lamp body 100 in a clamping manner and is arranged on the light path of the light source module. The sensor 300 is built into the lamp body 100, and the sensing end of the sensor 300 protrudes out of the lamp body 100. The driving assembly 400 is built into the lamp body 100, and the driving assembly 400 is electrically connected with the sensor 300.

[0053] More specifically, the switch assembly 500 is further included. The switch assembly 500 is connected with the lamp body 100 in a clamping manner, and the control structure of the switch assembly 500 is exposed and arranged outside the lamp body 100. The switch assembly 500 is electrically connected with the driving assembly 400.

[0054] Preferably, the embodiment further comprises a fixing plate 310, the fixing plate 310 is spliced with the lower light outlet cover 200 to form the bottom end of the line lamp, and the fixing plate 310 is arranged at the edge of the bottom end of the line lamp. The fixing plate 310 is formed with a through hole for the sensing end of the sensor 300 to pass through.

[0055] Preferably, the sensor 300 in the embodiment comprises one or more functions of infrared sensing, sunlight sensing, and Bluetooth remote control. The sensing end of the corresponding sensor 300 protruding from the fixing plate 310 comprises the corresponding sensing end of the above-mentioned sensing.

[0056] Preferably, the light source module, the lower light outlet cover 200, and the lamp body 100 all have a strip-shaped structure in the embodiment, and the light source module assembles to form the top end face of the line lamp, and the lower light outlet cover 200 forms the bottom end face of the line lamp. Preferably but not limitedly, the lamp body 100, the light source module, and the lower light outlet cover 200 form a quadrangular prism structure.

[0057] Preferably, the driving assembly 400 in the embodiment is arranged below the light source module, and a flat plate layer is formed on the lamp body 100 for mounting the driving assembly 400. After the driving assembly 400 is mounted on the flat plate layer, the light source module can be stacked on the top end of the lamp body 100. Preferably but not limitedly, the top end of the flat plate layer in the embodiment is formed with corresponding sliding rails for slidingly arranging the driving assembly 400.

[0058] Preferably, the switch assembly 500 includes a switch plate 510, a PCBA plate 520, and a switch tab 530. The switch plate 510 is provided with a square hole 511 for the switch tab 530 to pass through. The switch tab 530 is arranged on the switch plate 510 from bottom to top, and a buckle 531 on the switch tab 530 is exposed through the square hole 511. The PCBA plate 520 is stacked on the switch plate 510, and the buckle 531 is fixedly connected with a dial switch 521 on the bottom end surface of the PCBA plate 520. In the embodiment, the switch tab 530, i.e., the control structure of the switch assembly 500, is exposed on the lamp body 100.

[0059] Preferably, two control structures, i.e., two switch tabs 530, are arranged on the switch assembly 500 in the embodiment, corresponding to the switches and the color temperature adjustment of the light source module.

[0060] In the embodiment, the line lamp is provided with the sensor 300 and the switch assembly 500. The switch assembly 500 can be used to control the opening and closing of the line lamp, and the color temperature adjustment in the opened state, and the automatic identification and control process of the sensor 300, thereby improving the intelligence of the line lamp and effectively reducing the energy consumption in the open environment.

[0061] More specifically, the light source module includes an upper light emitting assembly 600 and a lower light emitting LED light source 610. The lamp body 100 is a strip-shaped frame structure. The upper light emitting assembly 600 is fixedly connected to the upper end surface of the lamp body 100 and closes the upper end opening of the lamp body 100. The lower light emitting LED light source 610 is arranged in the lamp body 100, and the upper light emitting assembly 600 and the lower light emitting LED light source 610 are arranged in opposite directions in the vertical direction, respectively. The lower light cover 200 is fixedly connected to the lower end surface of the lamp body 100 and closes the lower end opening of the lamp body 100. The lower light cover 200 is arranged on the light path of the lower light emitting LED light source 610.

[0062] Preferably, the flat plate layer stacked with the driving assembly 400 in the embodiment is the lower light emitting LED light source 610. Preferably but not limitedly, the lower light emitting LED light source 610 in the embodiment is fixedly arranged in the inner center of the lamp body 100, and the length of the lower light emitting LED light source 610 is equal to the length of the lamp body 100.

[0063] Preferably, the lower light-emitting LED light source 610 in the embodiment emits light vertically downward, and the upper light-emitting assembly 600 emits light vertically upward. Preferably but not limitedly, the lamp body 100 in the embodiment is made of light-proof material, the lower light-emitting cover 200 transmits light of the lower light-emitting LED light source 610, and the upper light-emitting assembly 600 includes light sources and corresponding sheet-shaped light-transmitting structures with soft and frosted light.

[0064] Preferably, the lower light-emitting cover 200 in the embodiment is in sheet-shaped structure, and the thickness thereof is equal to that of the fixed plate 310.

[0065] More specifically, the upper light-emitting assembly 600 includes the upper light-emitting cover 620, the upper light-emitting LED light source 630, the upper light-emitting bottom cover 640, and the side cover 650 arranged in parallel from top to bottom, the upper light-emitting bottom cover 640 is clamped and fixed with the upper light-emitting cover 620, the upper light-emitting LED light source 630 is clamped and arranged on the inner bottom surface of the upper light-emitting bottom cover 640, and the side cover 650 is arranged in interference fit on both ends of the upper light-emitting bottom cover 640 and the upper light-emitting cover 620.

[0066] Preferably, the inner bottom surface of the upper light-emitting bottom cover 640 in the embodiment is provided with a sliding groove for sliding of the upper light-emitting LED light source 630, and the height of the sliding groove is equal to the thickness of the upper light-emitting LED light source 630, and the length thereof is equal to the length of the upper light-emitting LED light source 630. Preferably but not limitedly, the LED assembly on the upper light-emitting LED light source 630 in the embodiment is arranged on the upper end surface thereof, and thus the upper light-emitting LED light source 630 is arranged by abutting the bottom surface against the inner bottom surface of the upper light-emitting bottom cover 640.

[0067] Preferably, the inner surface of the side cover 650 in the embodiment is formed with a reinforcing rib 651 arranged in mutual clearance with the outer edge of the upper light-emitting bottom cover 640, and the side cover 650 is clamped in interference fit with the upper light-emitting bottom cover 640.

[0068] In the embodiment, the light source inside the upper light-emitting assembly 600 performs light softening or condensing effect through the upper light-emitting cover 620, and extends outward, and since the upper light-emitting assembly 600 emits light upward in the vertical direction, it forms bidirectional light-emitting effect with the lower light-emitting LED light source 610.

[0069] More specifically, the fixed plate 310 and the lower light-emitting cover 200 are provided with a first clamping structure for opening and closing fixation with the bottom end of the lamp body 100.

[0070] The first clamping structure includes a first groove 311 / 210 protruding from the end edge of the fixed plate 310 and the lower light-emitting cover 200, and a first buckle 110 protruding from the inner side wall of the lower end edge of the lamp body 100.

[0071] Preferably, the first buckle 110 in the embodiment extends along the length direction of the lamp body 100, and the length of the first buckle 110 is equal to the length of the lamp body 100.

[0072] Preferably, the first groove 311 at the end edge of the fixing plate 310 and the first groove 210 at the end edge of the lower light exit cover 200 have the same shape, and are arranged to avoid each other with the first buckle 110 at the lower end edge of the lamp body 100. Preferably but not limitedly, the first groove 311 / 210 and the first buckle 110 are assembled by sliding in the embodiment, and the sequence is to assemble the lamp body 100 and the lower light exit cover 200 first, and then assemble the lamp body 100 and the fixing plate 310.

[0073] In the embodiment, the first groove 311 / 210 and the first buckle 110 are engaged and fixed, so that the lamp body 100, the lower light exit cover 200 and the fixing plate 310 on the line lamp are conveniently assembled without the help of external fasteners, which reduces the assembly difficulty and time, and avoids the problem of unable to assemble due to missing parts.

[0074] More specifically, the switch assembly 500 is provided with a second clamping structure clamped and fixed with the top end of the lamp body 100.

[0075] The second clamping structure includes a second groove 540 protruding from the edge of the switch assembly 500, and a second buckle 120 protruding from the inner side wall of the upper end edge of the lamp body 100.

[0076] Preferably, the second groove 540 and the second buckle 120 are slidingly matched in the embodiment.

[0077] Preferably, the second buckle 120 in the embodiment can be arranged at the edge of the lamp body 100, and the length of the second buckle 120 is equal to the width of the switch assembly 500; or the second buckle 120 can extend along the length direction of the lamp body 100, and the length of the second buckle 120 is equal to the length of the lamp body 100.

[0078] In the embodiment, the lamp body 100 and the switch assembly 500 are assembled by sliding, which can reduce the assembly difficulty and does not require external fasteners.

[0079] More specifically, the end cover 700 is arranged at both ends of the lamp body 100 by interference fit.

[0080] Preferably, the inner side of the end cover 700 protrudes a boss 710, and the boss 710 is arranged to avoid each other with the edge shape of the internal structure of the lamp body 100. Preferably but not limitedly, the boss 710 in the embodiment includes upper and lower parts corresponding to the upper and lower parts of the lamp body 100 divided by the lower light emitting LED light source 610.

[0081] In the embodiment, the boss 710 inside the end cover 700 is made of a micro-deformation material, so that the boss 710 can be fixed by interference fitting between the edges of the lamp body 100, thereby keeping the end cover 700 and the lamp body 100 fixed.

[0082] More specifically, it further comprises a lifting buckle 810 and a lifting rope 820; the lifting buckle 810 is fixedly buckled to the upper end surface of the lamp body 100; and the lifting rope 820 is fixedly buckled with the lifting buckle 810.

[0083] In the embodiment, the upper end of the lamp body 100 is protruded to form a third groove 130 with the same length direction as the lamp body 100; the third groove 130 has two and is symmetrically distributed along the central axis of the lamp body 100; the two third grooves 130 are arranged between the two side edges of the lamp body 100; the two ends of the lifting buckle 810 are protruded upward to form a third buckle 811; and the third groove 130 and the third buckle 811 are fixedly buckled with each other.

[0084] Preferably, in the embodiment, the inner side wall of the third groove 130 is fixedly buckled with the upper light emitting assembly 600, so as to realize the sliding fixation of the upper light emitting assembly 600 along the length direction of the third groove 130; and the outer side wall of the third groove 130 is fixedly buckled with the lifting buckle 810, and the lifting buckle 810 is clamped and arranged on the two sides of the upper light emitting assembly 600, so as to limit the arrangement position of the upper light emitting assembly 600 and avoid the random sliding of the upper light emitting assembly 600 along the third groove 130.

[0085] Preferably, in the embodiment, the lifting buckle 810 is made of a micro-elastic material as a whole, so that the fixed buckling of the lifting buckle 810 and the third groove 130 belongs to micro-elastic buckling, that is, after the fixed buckling of the lifting buckle 810 and the third groove 130, it is difficult to slide along the length direction of the third groove 130, thereby effectively maintaining the arrangement relationship between the lifting buckle 810, i.e., the lifting rope 820, and the line lamp.

[0086] Preferably, in the embodiment, the lifting rope 820 and the lifting buckle 810 are screw-connected, so as to effectively ensure the stable connection between the lifting rope 820 and the lifting buckle 810.

[0087] In the embodiment, the line lamp is provided with a ceiling lamp and a lifting buckle 810, so that the lifting rope 820 can bear the overall weight of the line lamp, and the line lamp is fixed in a suspended manner through the lifting rope 820.

[0088] More specifically, it further comprises a ceiling suction spring 900 fixedly buckled with the third groove 130 of the lamp body 100; the ceiling suction spring 900 is formed with a positioning hole 910 for penetrating an external fastener 920; the ceiling suction spring 900 is arranged on the surface of the upper light emitting assembly 600; and the two end edges of the ceiling suction spring 900 are formed with a fourth buckle 930 fixedly buckled with the third groove 130.

[0089] Preferably, the ceiling suction spring 900 in the embodiment is a convex bridge structure, which is arranged on the surface of the upper light emitting component 600. Preferably but not limitedly, the ceiling suction spring 900 in the embodiment is made of a micro-deformation material, so that the ceiling suction spring 900 avoids sliding along the length direction of the third groove 130 when the ceiling suction spring 900 is micro-deformed and clamped and fixed with the third groove 130.

[0090] Preferably, the fourth buckle 930 on the ceiling suction spring 900 in the embodiment is similar in shape to the third buckle 811 on the lifting buckle 810.

[0091] Preferably, two ceiling suction springs 900 are arranged in the embodiment, and are symmetrically distributed on the line lamp.

[0092] In the embodiment, the ceiling suction spring 900 can be arranged in cooperation with the external fastener 920, so that the ceiling suction spring 900 and the external fastener 920 can be fixed to the line lamp by suction fixation, thereby providing another fixing mode for the line lamp in addition to suspension.

[0093] In the embodiment, the lifting buckle 810 and the ceiling suction spring 900 are clamped and fixed, so that the user can select and install the corresponding structure according to the actual needs, and fix the line lamp, and when any structure is selected and installed, the stability of the original structure of the line lamp will not be affected.

[0094] In summary, the embodiment proposes a clamping groove type assembled LED line lamp with an inductor and a switch, which effectively improves the intelligence of the line lamp by adding an inductor and a switch component on the line lamp, and at the same time optimizes the structure of the line lamp, so that various clamping structures are assembled to form the line lamp, avoids introducing too many external fasteners, greatly reduces the production cost, and avoids the situation that the line lamp cannot be assembled due to missing parts.

[0095] The above-described embodiments do not constitute a limitation on the protection scope of the technical solutions. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the above-described embodiments should be included in the protection scope of the technical solutions.

Claims

1. A card slot type assembled LED line lamp with an inductor and a switch, characterized in that, It includes: A lamp body; A light source module built-in the lamp body; A lower light cover, which is connected with the lamp body and is arranged on the light path of the light source module; An inductor built-in the lamp body, and the inductive end of the inductor protrudes out of the lamp body; A driving assembly built-in the lamp body, and the driving assembly is electrically connected with the inductor.

2. The card slot type assembled LED line lamp with an inductor and a switch according to claim 1, characterized in that, It also includes: A switch assembly, which is connected with the lamp body, and the control structure of the switch assembly is exposed outside the lamp body; The switch assembly is electrically connected with the driving assembly.

3. The LED line lamp with inductor and switch according to claim 2, characterized in that: The light source module includes an upper light emitting assembly and a lower light emitting LED light source; The lamp body is a strip-shaped frame structure; the upper light emitting assembly is fixedly connected with the upper end surface of the lamp body and closes the upper end opening of the lamp body; the lower light emitting LED light source is built-in the lamp body; the upper light emitting assembly and the lower light emitting LED light source are arranged in opposite directions along the vertical direction respectively; the lower light cover is fixedly connected with the lower end surface of the lamp body and closes the lower end opening of the lamp body; the lower light cover is arranged on the light path of the lower light emitting LED light source.

4. The LED line lamp with inductor and switch according to claim 3, characterized in that: It further includes a fixed plate spliced with the lower light cover, and a through hole is formed in the fixed plate for the inductor to protrude; the switch assembly and the upper light emitting assembly are spliced and arranged at the top end of the lamp body; The fixed plate and the lower light cover are provided with a first clamping structure for clamping and fixing the bottom end of the lamp body; the switch assembly and the upper light emitting assembly are provided with a second clamping structure for clamping and fixing the top end of the lamp body.

5. The LED line lamp with inductor and switch according to claim 4, characterized in that: The first clamping structure includes a first groove protruding from the end edge of the fixed plate and the lower light cover, and a first buckle protruding from the inner side wall of the lower end edge of the lamp body; The second clamping structure includes a second groove protruding from the edge of the switch assembly and the upper light emitting assembly, and a second buckle protruding from the inner side wall of the upper end edge of the lamp body; The first buckle is arranged along the length direction of the lamp body.

6. The assembled LED line lamp with card slot type, inductor and switch according to any one of claims 1-5, characterized in that, It further includes: End caps, which are arranged at both ends of the lamp body in interference fit.

7. The card slot assembled LED line lamp with inductor and switch according to claim 6, characterized in that, It further includes: A lifting buckle, which is fixedly connected with the upper end surface of the lamp body; A lifting rope, which is fixedly connected with the lifting buckle.

8. The LED line lamp with inductor and switch according to claim 7, characterized in that: A third groove is formed on the upper end of the lamp body, and the length direction of the third groove is the same as the length direction of the lamp body; the third groove has two parts and is symmetrically distributed along the central axis of the lamp body; the two third grooves are arranged between the two side edges of the lamp body; Third buckles are formed on the two ends of the lifting buckle and protrude upward; The third groove and the third buckle are matched and fixedly connected.

9. The card slot assembled LED line lamp with inductor and switch according to claim 8, characterized in that, It further includes: A ceiling suction spring is engaged and fixed with the third groove of the lamp body, and a fixing hole is formed on the ceiling suction spring for penetrating an external fastener; An upper light emitting component of the light source module is arranged between the third grooves, and the ceiling suction spring is arranged on the surface of the upper light emitting component; Two end edges of the ceiling suction spring are formed with a fourth buckle for engaging and fixing with the third groove.

10. The card slot type assembled LED line lamp with an inductor and a switch according to claim 3, characterized in that, The upper light emitting component comprises: An upper light emitting cover; An upper light emitting LED light source; An upper light emitting bottom cover engaged and fixed with the upper light emitting cover through a fourth engaging structure, and the upper light emitting LED light source is arranged on the inner bottom surface of the upper light emitting bottom cover; A side cover is arranged on the two end portions of the upper light emitting bottom cover and the upper light emitting cover through interference fit.