Induction lamp

By introducing a switchable brightness light-emitting component and a solar charging system into the sensor light, the safety hazards and energy waste problems when the sensor light is outside the detection range of people are solved, and a safe, energy-saving and environmentally friendly lighting effect is achieved.

CN223814634UActive Publication Date: 2026-01-20FOSHAN JIUZHOU TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520321908.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-20
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

Existing sensor lights cause the area to be dark when people are not within the detection range, posing a safety hazard. Moreover, most of them use non-rechargeable batteries, which increases maintenance costs and environmental burden.

Method used

Design a sensor light comprising a switchable brightness light-emitting component, a rechargeable battery, a solar panel, and a detection device. It is charged by solar energy and switches its light-emitting mode according to whether there are people or no people within the detection range, providing safe lighting and saving energy.

Benefits of technology

It provides brighter lighting when someone is detected, and reduces brightness but does not turn off the light source when no one is detected, improving safety and saving energy and being environmentally friendly. The solar panels provide continuous power and are suitable for scenarios such as courtyard fences.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223814634U_ABST
Patent Text Reader

Abstract

The utility model provides an induction lamp. The induction lamp comprises a mounting shell; the light-emitting assembly can be switched between a first light-emitting mode and a second light-emitting mode, and the brightness of the first light-emitting mode is larger than that of the second light-emitting mode; the battery is electrically connected with the light-emitting assembly; the solar module is connected with the mounting shell, the solar module is electrically connected with the battery, and the solar module is used for charging the battery; the first detection device is used for detecting whether a person exists in the detection range or not; the control mainboard is electrically connected with the first detection device and the light-emitting assembly; when the first detection device detects that a person exists in the detection range, the control mainboard controls the light-emitting assembly to be switched to a first light-emitting mode; and when the first detection device detects that no person is in the detection range, the control mainboard controls the light-emitting assembly to be switched to the second light-emitting mode.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a lamp field especially relates to an inductive lamp. BACKGROUND

[0002] Early lamps rely on physical switches, need manual operation, inconvenient to use at night and have safety hazards. Public areas (such as corridors, staircases) often cause energy waste due to forgetting to turn off the light. Therefore, there are some inductive lamps on the market, which turn on when someone is detected and turn off when no one is detected, but such inductive lamps cause the entire area to be completely dark when a person is close to the inductive lamp but not within the detection range of the inductive lamp, which poses a safety hazard. And most of the inductive lamps on the market use non-rechargeable batteries, increasing maintenance costs and environmental burden. Therefore, there is an urgent need in the market to provide an inductive lamp with high safety, energy saving and environmental protection to improve user experience. SUMMARY

[0003] In order to overcome the shortcomings of the prior art, the utility model provides an inductive lamp, which comprises:

[0004] a mounting shell;

[0005] a light emitting assembly, the light emitting assembly being switchable between a first light emitting mode and a second light emitting mode, the brightness of the first light emitting mode being greater than the brightness of the second light emitting mode;

[0006] a rechargeable battery, the battery being electrically connected to the light emitting assembly;

[0007] a solar energy assembly, the solar energy assembly being connected to the mounting shell, the solar energy assembly being electrically connected to the battery, and the solar energy assembly being used to charge the battery;

[0008] a first detection device, the first detection device being used to detect whether there is a person within a detection range;

[0009] a control mainboard, the control mainboard being electrically connected to the first detection device and the light emitting assembly; when the first detection device detects a person within the detection range, the control mainboard controls the light emitting assembly to switch to the first light emitting mode; when the first detection device detects no one within the detection range, the control mainboard controls the light emitting assembly to switch to the second light emitting mode.

[0010] As an improvement of the utility model, the mounting shell has a front side wall, a rear side wall and a circumferential side wall connecting the front side wall and the rear side wall, the light emitting assembly is arranged on the front side wall, the solar energy assembly is connected to the rear side wall, and the first detection device is arranged on the circumferential side wall.

[0011] As the improvement of the utility model, the mounting shell includes a front side wall, and the light-emitting assembly is arranged on the front side wall; the light-emitting assembly includes first light-emitting lamp beads, second light-emitting lamp beads and third light-emitting lamp beads; the front side wall includes a first side wall unit, a second side wall unit and a third side wall unit; the first side wall unit, the second side wall unit and the third side wall unit are connected with each other; the second side wall unit is located between the first side wall unit and the third side wall unit; the first side wall unit and the second side wall unit are arranged at an inclined angle; the third side wall unit and the second side wall unit are arranged at an inclined angle; the first light-emitting lamp beads are arranged on the first side wall unit; the second light-emitting lamp beads are arranged on the second side wall unit; and the third light-emitting lamp beads are arranged on the third side wall unit.

[0012] As the improvement of the utility model, the light-emitting assembly includes first light-emitting lamp beads, and the first light-emitting lamp beads include a first light guide lens and a first LED lamp; the mounting shell has a first mounting hole; one end of the first light guide lens is exposed to the mounting shell through the first mounting hole; the other end of the first light guide lens is provided with a first stop protrusion; the first stop protrusion stops the other end of the first light guide lens in the mounting shell; a gland is further arranged; the gland is connected with the mounting shell; the first stop protrusion is located between the mounting shell and the gland; and the gland and the mounting shell clamp the first stop protrusion.

[0013] As the improvement of the utility model, the gland has a first hollow hole; the first light guide lens, the gland and the first LED lamp are arranged in sequence from top to bottom; and the light-emitting surface of the first LED lamp faces the first hollow hole and the first light guide lens.

[0014] As the improvement of the utility model, an aluminum substrate is further arranged; the aluminum substrate is located in the mounting shell; and the first LED lamp is connected with the aluminum substrate.

[0015] As the improvement of the utility model, a first connecting piece is further arranged; the mounting shell includes an upper shell and a lower shell; the upper shell has a first connecting hole; the lower shell has a first mounting groove; an inner wall of the first mounting groove is provided with a second connecting hole; the first connecting piece sequentially passes through the second connecting hole and the first connecting hole through the first mounting groove to connect the upper shell and the lower shell; and a sealing adhesive layer is arranged between the first connecting piece and the inner walls of the first connecting hole and / or the second connecting hole.

[0016] As the improvement of the utility model, a first sealing plug is further arranged; and the first sealing plug is used to cover the first mounting groove.

[0017] As an improvement of the utility model, the second detection device is used to detect sunset and sunrise, the control mainboard controls the light emitting assembly to open when the second detection device detects sunset, and the control mainboard controls the light emitting assembly to close when the second detection device detects sunrise.

[0018] As an improvement of the utility model, the mounting shell further has a first hanging opening and a second hanging opening, a recessed sticking part is further arranged between the first hanging opening and the second hanging opening, the first hanging opening and the second hanging opening are used for hanging the induction lamp, and the sticking part is used for sticking the induction lamp.

[0019] As an improvement of the utility model, the circumferential side wall comprises an upper side wall, a lower side wall, a left side wall and a right side wall, the upper side wall is connected to the upper side of the front side wall, the lower side wall is connected to the lower side of the front side wall, the left side wall is connected to the left side of the front side wall, the right side wall is connected to the right side of the front side wall, the upper side wall and the front side wall are arranged at an obtuse angle or an acute angle, and the left side wall and the right side wall are arranged at an obtuse angle or an acute angle with the front side wall.

[0020] As an improvement of the utility model, the first detection device is arranged on the upper side wall, and the first hanging opening, the second hanging opening and the sticking part are arranged on the lower side wall.

[0021] As an improvement of the utility model, the second detection device is arranged on the circumferential side wall, and the second detection device is arranged on one side of the first detection device.

[0022] As an improvement of the utility model, the rear side wall comprises a fourth side wall unit and a fifth side wall unit connected with the fourth side wall unit, the fifth side wall unit and the fourth side wall unit are arranged at an inclined included angle, the fifth side wall unit is connected with the upper side wall, and the fourth side wall unit is connected with the left side wall, the right side wall and the lower side wall.

[0023] As an improvement of the utility model, the mounting shell further has a charging port, and the charging port is electrically connected with the battery.

[0024] As an improvement of the utility model, the length of the mounting shell ranges from 60mm to 180mm, the width of the mounting shell ranges from 30mm to 120mm, and the height of the mounting shell ranges from 15mm to 70mm.

[0025] As the improvement of the utility model, the length range of the gland is 60mm-150mm; the width range of the gland is 20mm-60mm; the length range of the first light guide lens is 10mm-25mm; the width range of the first light guide lens is 10mm-25mm; the height range of the first light guide lens is 4mm-12mm.

[0026] As the improvement of the utility model, the length range of the first sealing plug is 3mm-15mm; the width range of the first sealing plug is 2mm-15mm; the height range of the first sealing plug is 3mm-15mm.

[0027] As the improvement of the utility model, still include second connecting piece, the installation shell includes upper shell and lower shell, the upper shell has third connecting hole, the lower shell has second installation slot, the inner wall of second installation slot is provided with fourth connecting hole, second connecting piece passes through fourth connecting hole and third connecting hole in sequence through second installation slot and connects upper shell and lower shell, the second connecting piece and the inner wall of third connecting hole and / or the inner wall of fourth connecting hole are equipped with sealing adhesive layer.

[0028] As the improvement of the utility model, still include second sealing plug, the second sealing plug is used to cover second installation slot, the depth of first installation slot is greater than the depth of second installation slot, the height of first sealing plug is greater than the height of second sealing plug.

[0029] As the improvement of the utility model, first installation slot is located in fifth side wall unit, second installation slot is located in fourth side wall unit.

[0030] As the improvement of the utility model, the length range of the second sealing plug is 3mm-15mm; the width range of the second sealing plug is 2mm-15mm; the height range of the second sealing plug is 1mm-10mm.

[0031] As the improvement of the utility model, second detection device is located in the upper side wall.

[0032] As the improvement of the utility model, still include switching device, switching device with the light emitting assembly electricity is connected, switching device is used for switching the light emitting assembly to first working mode or second working mode or third working mode or fourth working mode, switching device switches the light emitting assembly to first working mode, the light emitting assembly emits white light, when switching device switches the light emitting assembly to second working mode, the light emitting assembly emits warm light, when switching device switches the light emitting assembly to third working mode, and when the first detection device detects someone in the detection range, the control mainboard controls the light emitting assembly switches to first light emitting mode, when the first detection device detects no one in the detection range, the control mainboard controls the light emitting assembly switches to second light emitting mode, when switching device switches the light emitting assembly to fourth working mode, the light emitting assembly stops working.

[0033] As the improvement of the utility model, the switching device is switching switch, when the switching switch is triggered first time, the switching switch switches the light emitting assembly to first working mode, when the switching switch is triggered second time, the switching switch switches the light emitting assembly to second working mode, when the switching switch is triggered third time, the switching switch switches the light emitting assembly to third working mode, when the switching switch is triggered fourth time, the switching switch switches the light emitting assembly to fourth working mode.

[0034] The beneficial effects of this utility model are as follows: This utility model provides a sensor light, comprising: a mounting housing; a light-emitting component, which can switch between a first light-emitting mode and a second light-emitting mode, wherein the brightness of the first light-emitting mode is greater than that of the second light-emitting mode; a battery, which is electrically connected to the light-emitting component; a solar panel, which is connected to the mounting housing and electrically connected to the battery, and is used to charge the battery; a first detection device, which is used to detect whether there is a person within the detection range; and a control motherboard, which is electrically connected to the first detection device and the light-emitting component; when the first detection device detects a person within the detection range, the control motherboard controls the light-emitting component to switch to the first light-emitting mode ... When no one is detected, the control board switches the light-emitting component to a second lighting mode. This means that when the first detection device detects someone within its range, the control board switches the light-emitting component to the first lighting mode, emitting a brighter light to illuminate the user. When the first detection device detects no one within its range, the control board switches the light-emitting component to the second lighting mode, reducing the brightness to save energy. Since the second lighting mode only reduces the brightness and does not turn off the light-emitting component, the light emitted can still guide the user to its location, making it safer than a completely dark environment. Furthermore, the solar panel can convert light energy into electrical energy to charge the power supply, making it more energy-efficient and environmentally friendly. Further, the sensor light is used for yard fences. When the sensor light detects a user near the fence, the control board switches the light-emitting component to the first lighting mode, increasing the brightness to illuminate the user. When the user is farther from the fence, the control board switches the light-emitting component to the second lighting mode. In the second lighting mode, the light-emitting component only reduces the brightness and does not turn off the light, ensuring that the light emitted can still guide the user to the fence and yard. Attached Figure Description

[0035] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the following description of the embodiments will be briefly introduced. The drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0036] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0037] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0038] Figure 2 This is a schematic diagram of the overall structure of this utility model;

[0039] Figure 3 is an exploded view of the utility model;

[0040] Figure 4 is Figure 3 the enlarged view of A;

[0041] Figure 5 is Figure 3 the enlarged view of B;

[0042] Figure 6 is another exploded view of the utility model;

[0043] Figure 7 is a sectional view along the light-emitting assembly;

[0044] Figure 8 is Figure 7 the enlarged view of C;

[0045] Figure 9 is Figure 7 the enlarged view of D;

[0046] Figure 10 is a sectional view of the first sealing plug;

[0047] Figure 11 is Figure 10 the enlarged view of E;

[0048] Figure 12 is a sectional view of the second sealing plug;

[0049] Figure 13 is Figure 12 the enlarged view of F; DETAILED DESCRIPTION

[0050] Referring to Figures 1-13 , an induction lamp comprises:

[0051] a mounting housing 1;

[0052] a light-emitting assembly 2, the light-emitting assembly 2 being switchable between a first light-emitting mode and a second light-emitting mode, the first light-emitting mode having a higher brightness than the second light-emitting mode;

[0053] a rechargeable battery 3, the battery 3 being electrically connected to the light-emitting assembly 2;

[0054] a solar assembly 4, the solar assembly 4 being connected to the mounting housing 1, the solar assembly 4 being electrically connected to the battery 3, the solar assembly 4 being configured to charge the battery 3;

[0055] a first detection device 5, the first detection device 5 being configured to detect whether a person is within a detection range;

[0056] The control mainboard 6 is electrically connected with the first detection device 5 and the light-emitting assembly 2; when the first detection device 5 detects a person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the first light-emitting mode; when the first detection device 5 detects no person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the second light-emitting mode.

[0057] Through the above structure, since the installation housing 1 is included; the light-emitting assembly 2, the light-emitting assembly 2 can switch between the first light-emitting mode and the second light-emitting mode, the brightness of the first light-emitting mode is greater than the brightness of the second light-emitting mode; the battery 3, the battery 3 is electrically connected with the light-emitting assembly 2; the solar assembly 4, the solar assembly 4 is connected with the installation housing 1, the solar assembly 4 is electrically connected with the battery 3, and the solar assembly 4 is used to charge the battery 3; the first detection device 5, the first detection device 5 is used to detect whether there is a person in the detection range; the control mainboard 6 is electrically connected with the first detection device 5 and the light-emitting assembly 2; when the first detection device 5 detects a person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the first light-emitting mode; when the first detection device 5 detects no person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the second light-emitting mode, so that when the first detection device 5 detects a person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the first light-emitting mode to emit brighter light, so as to provide illumination for the user by the light-emitting assembly 2; when the first detection device 5 detects no person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the second light-emitting mode to reduce the brightness, so as to save the electric energy, and since the second light-emitting mode only reduces the brightness of the light-emitting assembly 2 and does not turn off the light-emitting assembly 2, the light emitted by the light-emitting assembly 2 can still guide the user to reach the position where the light-emitting assembly 2 is located, which is safer compared with a completely dark environment; further, the solar assembly 4 can convert light energy into electric energy to charge the power supply, which is more energy-saving and environmentally friendly. Furthermore, the induction lamp is used for the fence of the courtyard, so that when the induction lamp senses that the user is near the fence, the control mainboard 6 controls the light-emitting assembly 2 to switch to the first light-emitting mode to increase the brightness of the light-emitting assembly 2 to provide illumination for the user; when the user is far away from the fence, the control mainboard 6 controls the light-emitting assembly 2 to switch to the second light-emitting mode, and the light-emitting assembly 2 in the second light-emitting mode only reduces the brightness and does not turn off the light-emitting assembly 2, so that the light emitted by the light-emitting assembly 2 can still guide the user to reach the fence and the courtyard.

[0058] The first detection device 5 is an infrared sensor, which can also be a sound-controlled sensor or an ultrasonic sensor or other detection devices.

[0059] In the embodiment, the mounting shell 1 has a front side wall 11, a rear side wall 12 and a circumferential side wall 13 connecting the front side wall 11 and the rear side wall 12, the light emitting assembly 2 is arranged on the front side wall 11, the solar assembly 4 is connected with the rear side wall 12, and the first detection device 5 is arranged on the circumferential side wall 13. Through the above structure, the structure design is reasonable, the solar assembly 4 of the rear side wall 12 can better receive light, the charging efficiency is high, the light emitting assembly 2 of the front side wall 11 can provide illumination, and the range of detection of the first detection device 5 arranged on the circumferential side wall 13 is wider.

[0060] In the embodiment, the mounting shell 1 comprises a front side wall 11, and the light-emitting assembly 2 is arranged on the front side wall 11. The light-emitting assembly 2 comprises a first light-emitting lamp bead 21, a second light-emitting lamp bead 22 and a third light-emitting lamp bead 23. The front side wall 11 comprises a first side wall unit 111, a second side wall unit 112 and a third side wall unit 113. The first side wall unit 111, the second side wall unit 112 and the third side wall unit 113 are connected with each other. The second side wall unit 112 is located between the first side wall unit 111 and the third side wall unit 113. The first side wall unit 111 and the second side wall unit 112 are arranged at an inclined angle. The third side wall unit 113 and the second side wall unit 112 are arranged at an inclined angle. The first light-emitting lamp bead 21 is arranged on the first side wall unit 111. The second light-emitting lamp bead 22 is arranged on the second side wall unit 112. The third light-emitting lamp bead 23 is arranged on the third side wall unit 113. The light-emitting assembly 2 comprises the first light-emitting lamp bead 21. The first light-emitting lamp bead 21 comprises a first light guide lens 211 and a first LED lamp 212. The mounting shell 1 has a first mounting hole 14. One end of the first light guide lens 211 is exposed to the mounting shell 1 through the first mounting hole 14. The other end of the first light guide lens 211 is provided with a first stop protrusion 2111. The first stop protrusion 2111 stops the other end of the first light guide lens 211 in the mounting shell 1. The mounting shell 1 is connected with a gland 7. The first stop protrusion 2111 is located between the mounting shell 1 and the gland 7. The gland 7 and the mounting shell 1 clamp the first stop protrusion 2111. Specifically, the gland 7 has a first hollow hole 71. The first light guide lens 211, the gland 7 and the first LED lamp 212 are arranged in sequence from top to bottom. The light-emitting surface of the first LED lamp 212 is arranged towards the first hollow hole 71 and the first light guide lens 211. Further, an aluminum substrate 72 is arranged in the mounting shell 1. The first LED lamp 212 is connected with the aluminum substrate 72. Through the above structure, since the first side wall unit 111 and the second side wall unit 112 are arranged at an inclined angle. The third side wall unit 113 and the second side wall unit 112 are arranged at an inclined angle. The first light-emitting lamp bead 21 is arranged on the first side wall unit 111. The second light-emitting lamp bead 22 is arranged on the second side wall unit 112. The third light-emitting lamp bead 23 is arranged on the third side wall unit 113. The first light-emitting lamp bead 21, the second light-emitting lamp bead 22 and the third light-emitting lamp bead 23 can emit irradiation light at three different angles, effectively improving the irradiation range of the light-emitting assembly 2. Moreover, since the first light guide lens 211 is arranged, the light emitted by the first LED lamp 212 can be collected and emitted, so as to improve the brightness of the irradiation light.The second light-emitting lamp bead 22 comprises a second light guide lens 221 and a second LED lamp 222, the mounting shell 1 has a second mounting hole 1411, one end of the second light guide lens 221 is exposed to the mounting shell 1 through the second mounting hole 1411, the other end of the second light guide lens 221 is provided with a second stop protrusion 2211, and the other end of the second light guide lens 221 is stopped in the mounting shell 1 by the second stop protrusion 2211; the third light-emitting lamp bead 23 comprises a third light guide lens 231 and a third LED lamp 232, the mounting shell 1 has a third mounting hole 1412, one end of the third light guide lens 231 is exposed to the mounting shell 1 through the third mounting hole 1412, the other end of the third light guide lens 231 is provided with a third stop protrusion 2311, and the other end of the third light guide lens 231 is stopped in the mounting shell 1 by the third stop protrusion 2311; further, the gland 7 comprises a first cover unit 77, a second cover unit 78 and a third cover unit 79, the first cover unit, the second cover unit and the third cover unit are connected with each other, the second cover unit is located between the first cover unit and the third cover unit, the first cover unit and the second cover unit are arranged at an inclined angle, the third cover unit and the second cover unit are arranged at an inclined angle, the first cover unit is connected with the mounting shell, the first cover unit and the mounting shell clamp the first stop protrusion of the first light guide lens, the second cover unit is connected with the mounting shell, the second cover unit and the mounting shell clamp the second stop protrusion of the second light guide lens, the third cover unit is connected with the mounting shell, and the third cover unit and the mounting shell clamp the third stop protrusion of the third light guide lens. The height of the second cover unit is greater than the height of the first cover unit and the second cover unit. The first elastic gap 771 is arranged between the first cover unit and the second cover unit, and the second elastic gap 791 is arranged between the third cover unit and the second cover unit. The gland 7 has a second hollow hole 711, the second light guide lens, the gland 7 and the second LED lamp are arranged in sequence from top to bottom, and the light-emitting surface of the second LED lamp faces the second hollow hole and the second light guide lens; the gland 7 has a third hollow hole 712, the third light guide lens, the gland 7 and the third LED lamp are arranged in sequence from top to bottom, and the light-emitting surface of the third LED lamp faces the third hollow hole and the third light guide lens. The right side and the left side of the first hollow hole are provided with first gland mounting holes 713, the upper side and the lower side of the second hollow hole are provided with second gland mounting holes 714, and the left side and the right side of the third hollow hole are provided with third gland mounting holes 715.

[0061] In the embodiment, the mounting shell 1 comprises an upper shell 15 and a lower shell 16, the upper shell 15 is provided with a first connecting hole 151, the lower shell 16 is provided with a first mounting groove 161, an inner wall of the first mounting groove 161 is provided with a second connecting hole 1611, the first connecting member 73 passes through the second connecting hole 1611 and the first connecting hole 151 in sequence through the first mounting groove 161 to connect the upper shell 15 and the lower shell 16, and a sealing glue layer 1612 is arranged between the first connecting member 73 and the inner walls of the first connecting hole 151 and / or the second connecting hole 1611. A first sealing plug 74 is further arranged to cover the first mounting groove 161. Through the above structure, the sealing glue layer 1612 can seal the gap between the first connecting member 73 and the inner walls of the first connecting hole 151 and / or the second connecting hole 1611, so as to achieve the effect of dustproof and waterproof and form the first level of protection; the first sealing plug 74 covers the first mounting groove 161 to prevent water from entering the mounting shell 1 through the first mounting groove 161, the second connecting hole 1611 and the first connecting hole 151, thereby forming the second level of protection.

[0062] In the embodiment, the second detection device 8 is further arranged to detect sunset and sunrise, the control mainboard 6 controls the light emitting assembly 2 to be turned on when the second detection device 8 detects sunset, and the control mainboard 6 controls the light emitting assembly 2 to be turned off when the second detection device 8 detects sunrise. Through the above structure, the control mainboard 6 controls the light emitting assembly 2 to be turned off when the sun rises, so as to save electric energy and charge the battery 3 by using the solar assembly 4, and the control mainboard 6 controls the light emitting assembly 2 to be turned on when the sun sets, so as to provide illumination. The second detection device 8 is a photosensitive sensor, which can determine whether it is sunset or sunrise by the intensity of light.

[0063] In the embodiment, the mounting shell 1 further has a first hanging opening 17 and a second hanging opening 18, and a recessed sticking position 19 is further arranged between the first hanging opening 17 and the second hanging opening 18. The first hanging opening 17 and the second hanging opening 18 are used for hanging the induction lamp, and the sticking position 19 is used for sticking the induction lamp. The circumferential side wall 13 includes an upper side wall 131, a lower side wall 132, a left side wall 133, and a right side wall 134. The upper side wall 131 is connected to the upper side of the front side wall 11, the lower side wall 132 is connected to the lower side of the front side wall 11, the left side wall 133 is connected to the left side of the front side wall 11, and the right side wall 134 is connected to the right side of the front side wall 11. The upper side wall 131 is arranged at an obtuse angle or an acute angle with the front side wall 11, and the left side wall 133 and the right side wall 134 are both arranged at an obtuse angle or an acute angle with the front side wall 11. Specifically, the first detection device 5 is arranged on the upper side wall 131, and the first hanging opening 17, the second hanging opening 18, and the sticking position 19 are arranged on the lower side wall 132. Further, the second detection device 8 is arranged on the circumferential side wall 13, and the second detection device 8 is arranged on one side of the first detection device 5. Still further, the rear side wall 12 includes a fourth side wall unit 121 and a fifth side wall unit 122 connected to the fourth side wall unit 121. The fifth side wall unit 122 is arranged at an inclined angle with the fourth side wall unit 121, the fifth side wall unit 122 is connected to the upper side wall 131, and the fourth side wall unit 121 is connected to the left side wall 133, the right side wall 134, and the lower side wall 132. Through the above structure, the user can not only hang the induction lamp outside through the first hanging opening 17 and the second hanging opening 18, such as hanging the induction lamp on the fence of the courtyard, but also can stick the induction lamp outside through the sticking position 19, such as sticking the induction lamp on the fence of the courtyard. In addition, since the fifth side wall unit 122 is connected to the upper side wall 131, and the first detection device 5 is arranged on the upper side wall 131, the detection range of the first detection device 5 is wider. The second detection device 8 is arranged on the upper side wall 131.

[0064] In the embodiment, the mounting shell 1 further has a charging port 10, and the charging port 10 is electrically connected to the battery 3. Through the above structure, the user can not only charge the induction lamp through the solar assembly 4, but also can charge the induction lamp through the charging port 10, so that the induction lamp can still work normally on a cloudy day without light.

[0065] In the embodiment, the length of the mounting shell 1 ranges from 60 mm to 180 mm, the width of the mounting shell 1 ranges from 30 mm to 120 mm, and the height of the mounting shell 1 ranges from 15 mm to 70 mm. Specifically, the length of the gland 7 ranges from 60 mm to 150 mm, the width of the gland 7 ranges from 20 mm to 60 mm, the length of the first light guide lens 211 ranges from 10 mm to 25 mm, the width of the first light guide lens 211 ranges from 10 mm to 25 mm, and the height of the first light guide lens 211 ranges from 4 mm to 12 mm. Specifically, the length of the first sealing plug 74 ranges from 3 mm to 15 mm, the width of the first sealing plug 74 ranges from 2 mm to 15 mm, and the height of the first sealing plug 74 ranges from 3 mm to 15 mm. Further, the length of the second sealing plug 76 ranges from 3 mm to 15 mm, the width of the second sealing plug 76 ranges from 2 mm to 15 mm, and the height of the second sealing plug 76 ranges from 1 mm to 10 mm. Through the above structure, the size is reasonable, and the actual use requirements of users in different scenes can be met.

[0066] In the embodiment, the mounting shell 1 includes an upper shell 15 and a lower shell 16. The upper shell 15 has a third connecting hole 152, and the lower shell 16 has a second mounting groove 162. An inner wall of the second mounting groove 162 is provided with a fourth connecting hole 1621. The second connecting member 75 passes through the fourth connecting hole 1621 and the third connecting hole 152 in sequence through the second mounting groove 162 to connect the upper shell 15 and the lower shell 16. A sealing glue layer 1612 is arranged between the second connecting member 75 and the inner wall of the third connecting hole 152 and / or the inner wall of the fourth connecting hole 1621. The second sealing plug 76 is used to cover the second mounting groove 162. The depth of the first mounting groove 161 is greater than the depth of the second mounting groove 162, and the height of the first sealing plug 74 is greater than the height of the second sealing plug 76. Specifically, the first mounting groove 161 is arranged on the fifth side wall unit 122, and the second mounting groove 162 is arranged on the fourth side wall unit 121. Through the above structure, the sealing glue layer 1612 can seal the gap between the second connecting member 75 and the inner wall of the third connecting hole 152 and / or the inner wall of the fourth connecting hole 1621, so as to achieve the effect of dustproof and waterproof and form the first level of protection. The second sealing plug 76 covers the second mounting groove 162, so as to prevent water from entering the mounting shell 1 through the second mounting groove 162, the fourth connecting hole 1621, and the third connecting hole 152, thereby forming the second level of protection. The first connecting member and the second connecting member are screws or bolts.

[0067] In the embodiment, the switching device 9 is electrically connected with the light-emitting assembly, and is used to switch the light-emitting assembly to the first working mode, the second working mode, the third working mode or the fourth working mode. When the switching device switches the light-emitting assembly to the first working mode, the light-emitting assembly emits white light. When the switching device switches the light-emitting assembly to the second working mode, the light-emitting assembly emits warm light. When the switching device switches the light-emitting assembly to the third working mode, and when the first detection device 5 detects a person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the first light-emitting mode. When the first detection device 5 detects no person in the detection range, the control mainboard 6 controls the light-emitting assembly 2 to switch to the second light-emitting mode. When the switching device switches the light-emitting assembly to the fourth working mode, the light-emitting assembly stops working. The switching device is a switching switch. When the switching switch is triggered for the first time, the switching switch switches the light-emitting assembly to the first working mode. When the switching switch is triggered for the second time, the switching switch switches the light-emitting assembly to the second working mode. When the switching switch is triggered for the third time, the switching switch switches the light-emitting assembly to the third working mode. When the switching switch is triggered for the fourth time, the switching switch switches the light-emitting assembly to the fourth working mode.

[0068] The above is one or more embodiments provided in combination with specific contents, and does not mean that the specific implementation of the utility model is limited to these descriptions. Any approximation, similarity or replacement of the method and structure of the utility model, or any technical deduction or replacement under the concept of the utility model, should be regarded as the protection range of the utility model.

Claims

1. An induction lamp, characterized by The utility model relates to a solar energy street lamp, which comprises the following components: a mounting shell (1); a light-emitting assembly (2) which can be switched between a first light-emitting mode and a second light-emitting mode, the first light-emitting mode having a higher brightness than the second light-emitting mode; a rechargeable battery (3) which is electrically connected to the light-emitting assembly (2); a solar energy assembly (4) which is connected to the mounting shell (1) and is electrically connected to the battery (3), the solar energy assembly (4) being used to charge the battery (3); a first detection device (5) which is used to detect whether there is a person within a detection range; a control mainboard (6) which is electrically connected to the first detection device (5) and the light-emitting assembly (2); when the first detection device (5) detects a person within the detection range, the control mainboard (6) controls the light-emitting assembly (2) to switch to the first light-emitting mode; when the first detection device (5) detects no person within the detection range, the control mainboard (6) controls the light-emitting assembly (2) to switch to the second light-emitting mode.

2. An induction lamp as claimed in claim 1, characterized in that The mounting shell (1) has a front side wall (11), a rear side wall (12), and a circumferential side wall (13) connecting the front side wall (11) and the rear side wall (12), the light-emitting assembly (2) is arranged on the front side wall (11), the solar energy assembly (4) is connected to the rear side wall (12), and the first detection device (5) is arranged on the circumferential side wall (13).

3. An induction lamp as claimed in claim 1, characterized in that The mounting shell (1) comprises a front side wall (11), and the light-emitting assembly (2) is arranged on the front side wall (11); the light-emitting assembly (2) comprises first light-emitting lamp beads (21), second light-emitting lamp beads (22), and third light-emitting lamp beads (23); the front side wall (11) comprises a first side wall unit (111), a second side wall unit (112), and a third side wall unit (113); the first side wall unit (111), the second side wall unit (112), and the third side wall unit (113) are connected to each other; the second side wall unit (112) is located between the first side wall unit (111) and the third side wall unit (113); the first side wall unit (111) and the second side wall unit (112) are arranged at an inclined angle; the third side wall unit (113) and the second side wall unit (112) are arranged at an inclined angle; the first light-emitting lamp beads (21) are arranged on the first side wall unit (111); the second light-emitting lamp beads (22) are arranged on the second side wall unit (112); and the third light-emitting lamp beads (23) are arranged on the third side wall unit (113).

4. An induction lamp as claimed in claim 1, characterized in that The light-emitting assembly (2) comprises a first light-emitting lamp bead (21), the first light-emitting lamp bead (21) comprises a first light guide lens (211) and a first LED lamp (212), the mounting shell (1) has a first mounting hole (14), one end of the first light guide lens (211) is exposed to the mounting shell (1) through the first mounting hole (14), the other end of the first light guide lens (211) is provided with a first stop protrusion (2111), the first stop protrusion (2111) stops the other end of the first light guide lens (211) in the mounting shell (1); further comprising a gland (7), the gland (7) is connected with the mounting shell (1), the first stop protrusion (2111) is located between the mounting shell (1) and the gland (7), the gland (7) and the mounting shell (1) clamp the first stop protrusion (2111).

5. An induction lamp as claimed in claim 4, characterized in that The gland (7) has a first hollow hole (71), the first light guide lens (211), the gland (7), and the first LED lamp (212) are arranged in sequence from top to bottom, the light-emitting surface of the first LED lamp (212) is arranged towards the first hollow hole (71) and the first light guide lens (211); further comprising an aluminum substrate (72), the aluminum substrate (72) is located in the mounting shell (1), the first LED lamp (212) is connected with the aluminum substrate (72).

6. An induction lamp as claimed in claim 1, characterized in that Further comprising a first connecting piece (73), the mounting shell (1) comprises an upper shell (15) and a lower shell (16), the upper shell (15) has a first connecting hole (151), the lower shell (16) has a first mounting groove (161), the inner wall of the first mounting groove (161) is provided with a second connecting hole (1611), the first connecting piece (73) passes through the first mounting groove (161), the second connecting hole (1611) and the first connecting hole (151) in sequence to connect the upper shell (15) and the lower shell (16), a sealing adhesive layer (1612) is arranged between the first connecting piece (73) and the inner wall of the first connecting hole (151) and / or the inner wall of the second connecting hole (1611).

7. An induction lamp as claimed in claim 6, characterized in that Further comprising a first sealing plug (74), the first sealing plug (74) is used to cover the first mounting groove (161).

8. An induction lamp as claimed in claim 2, characterized in that Further comprising a second detection device (8), the second detection device (8) is used to detect sunset and sunrise, when the second detection device (8) detects sunset, the control mainboard (6) controls the light-emitting assembly (2) to open; when the second detection device (8) detects sunrise, the control mainboard (6) controls the light-emitting assembly (2) to close.

9. An induction lamp as claimed in claim 8, characterized in that The mounting shell (1) further has a first hanging opening (17) and a second hanging opening (18), and a recessed sticking part (19) is arranged between the first hanging opening (17) and the second hanging opening (18), the first hanging opening (17) and the second hanging opening (18) are used for hanging the induction lamp, and the sticking part (19) is used for sticking the induction lamp.

10. An induction lamp as claimed in claim 9, characterized in that The circumferential side wall (13) comprises an upper side wall (131), a lower side wall (132), a left side wall (133) and a right side wall (134), the upper side wall (131) is connected with the upper side of the front side wall (11), the lower side wall (132) is connected with the lower side of the front side wall (11), the left side wall (133) is connected with the left side of the front side wall (11), and the right side wall (134) is connected with the right side of the front side wall (11), the upper side wall (131) is arranged at an obtuse angle or an acute angle with the front side wall (11), and the left side wall (133) and the right side wall (134) are each arranged at an obtuse angle or an acute angle with the front side wall (11); the first detection device (5) is arranged on the upper side wall (131); the first hanging opening (17), the second hanging opening (18) and the sticking part (19) are arranged on the lower side wall (132); the second detection device (8) is arranged on the circumferential side wall (13); the second detection device (8) is arranged on one side of the first detection device (5); the rear side wall (12) comprises a fourth side wall unit (121) and a fifth side wall unit (122) connected with the fourth side wall unit (121), the fifth side wall unit (122) and the fourth side wall unit (121) are arranged at an inclined included angle, the fifth side wall unit (122) is connected with the upper side wall (131), and the fourth side wall unit (121) is connected with the left side wall (133), the right side wall (134) and the lower side wall (132); the mounting shell (1) further has a charging port (10) electrically connected with the battery (3); further comprising a switching device (9) electrically connected with the light-emitting assembly, the switching device is used to switch the light-emitting assembly to a first working mode, a second working mode, a third working mode or a fourth working mode, when the switching device switches the light-emitting assembly to the first working mode, the light-emitting assembly emits white light; when the switching device switches the light-emitting assembly to the second working mode, the light-emitting assembly emits warm light; when the switching device switches the light-emitting assembly to the third working mode, and when the first detection device (5) detects a person within a detection range, the control mainboard (6) controls the light-emitting assembly (2) to switch to a first light-emitting mode, when the first detection device (5) detects no person within a detection range, the control mainboard (6) controls the light-emitting assembly (2) to switch to a second light-emitting mode; when the switching device switches the light-emitting assembly to the fourth working mode, the light-emitting assembly stops working.