Compact security lamp
By setting the human body detection part inside the lamp body and utilizing the cooperation of the pivot part and the damping part, the problem of the security lamp being too large is solved, the multi-directional adjustment and reliability of the compact security lamp are achieved, and the installation flexibility and user experience are improved.
Patent Information
- Application Number
- CN202422797179.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-15
AI Technical Summary
Existing security lights have a large size because the human detection component and the lighting lamp are installed separately. This makes it difficult to install in a small area, which reduces the user experience.
The human body detection component is set in the lamp body, and the multi-directional adjustment and fixation of the lighting lamp are achieved through the cooperation of the pivot component and the damping component, thereby reducing the number of parts and optimizing the lamp body structure.
Compact security lights can be installed in areas with limited space, improving the user experience and enhancing working reliability and lighting flexibility.
Smart Images

Figure CN223345332U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of security lighting equipment, and in particular to a compact security lamp. Background Art
[0002] In related technologies, security lights use a human body detector to detect people. When a person passes through the detection area of the human body detector, the security light's illumination lamp turns on. Both the human body detector and the illumination lamp are independently mounted on the outside of the security light. This arrangement results in a large security light, making it inconvenient to install in small areas and reducing the user experience. Utility Model Content
[0003] In order to reduce the size of security lights, meet the user's multi-scenario application of wall mounting and ceiling mounting, and improve the user experience of security lights, this application provides a compact security light.
[0004] The present application provides a compact security lamp adopting the following technical solution:
[0005] A compact security lamp comprises: a mounting base, the mounting base being suitable for being mounted on a mounting wall; a lamp body, the lamp body being arranged on the mounting base, the lamp body being universally rotatably matched with the mounting base, the lamp body defining an installation space; and a lighting lamp, the lighting lamp being arranged on the lamp body, the lighting lamp being universally rotatably matched with the lamp body.
[0006] A human body detection component and a controller, wherein the human body detection component is arranged in the main body of the lamp, the human body detection component is used to detect the human body, the human body detection component and the lighting lamp are both communicatively connected to the controller, and the controller is used to control the lighting of the lighting lamp according to the detection signal of the human body detection component.
[0007] By adopting the above technical solution and placing the human detection element within the lamp body, the number of parts on the outer wall of the lamp body can be reduced, thereby reducing the size of the compact security light. Compared with the existing technology, the compact security light can be installed in smaller areas, thereby improving the user experience of the compact security light.
[0008] Preferably, a first pivot member is pivotally connected between the lighting lamp and the lamp body, the lighting lamp is suitable for rotating around a pivot axis between the lighting lamp and the first pivot member, the first pivot member is suitable for rotating around a pivot axis between the first pivot member and the lamp body, and the pivot axis between the lighting lamp and the first pivot member and the pivot axis between the lamp body and the first pivot member are arranged perpendicular to each other.
[0009] By adopting the above technical solution, by driving the first pivot member to rotate around the pivot axis between the first pivot member and the lamp body, the first pivot member drives the lighting lamp to rotate upward or downward, and by driving the lighting lamp to rotate around the pivot axis between the lighting lamp and the first pivot member, so that the lighting lamp rotates forward or backward, the technical effect of adjusting the lighting area of the lighting lamp can be achieved.
[0010] Preferably, a first accommodating groove is provided on the outer peripheral wall of the end portion of the first pivot member close to the lamp body, a first avoidance hole is provided on the side wall of the lamp body, the end portion of the first pivot member close to the lamp body extends into the first avoidance hole and pivotally cooperates with the first avoidance hole, and a first damping member is provided between the first accommodating groove and the inner peripheral wall of the first avoidance hole.
[0011] The first pivot member is provided with a first connecting portion on the side wall of the end portion close to the lighting lamp, a second accommodating groove is provided on the outer peripheral wall ring of the first connecting portion, a first avoidance groove is provided on the side wall of the lighting lamp, a first connecting hole is provided on the inner side wall of the first avoidance groove, the end portion of the first pivot member close to the lighting lamp extends into the first avoidance groove and is limitedly engaged with the first avoidance groove, the first connecting portion passes through the first connecting hole and is pivotally engaged with the first connecting hole, and a second damping member is provided between the second accommodating groove and the first connecting hole.
[0012] By adopting the above technical solution, during the process of the first pivoting member rotating about the pivot axis between the first pivoting member and the first avoidance hole, the first damping member can fix the first pivoting member in a preset position, thereby preventing the first pivoting member from deviating from the preset position and causing the lamp to fail to illuminate the preset area, thereby improving the operating reliability of the compact security light. Furthermore, during the process of the lamp rotating about the pivot axis between the lamp and the first pivoting member, the second damping member can fix the lamp in the preset position, thereby preventing the lamp from deviating from the preset position and causing the lamp to fail to illuminate the preset area, thereby improving the operating reliability of the compact security light.
[0013] Preferably, a first snap-fitting protrusion is provided on the outer peripheral wall of the end portion of the first pivot member close to the lamp body, and a first snap-fitting recess is provided on the inner peripheral wall of the first avoidance hole, and the first snap-fitting protrusion and the first snap-fitting recess are snap-fitted.
[0014] By adopting the above technical solution, the first snap-fitting protrusion and the first snap-fitting recess are snapped together, so as to achieve the technical effect of fixedly connecting the first pivot member and the lamp body, and when the first pivot member rotates around the pivot axis between the first pivot member and the lamp body, the first pivot member and the lamp body can be prevented from separating, thereby improving the working reliability of the compact security lamp.
[0015] Preferably, a second pivot member is pivotally connected between the lamp body and the mounting seat, the lamp body is suitable for rotating around the pivot axis between the lamp body and the second pivot member, the second pivot member is suitable for rotating around the pivot axis between the second pivot member and the mounting seat, and the pivot axis between the lamp body and the second pivot member and the pivot axis between the mounting seat and the second pivot member are arranged perpendicular to each other.
[0016] By adopting the above technical solution, by driving the lamp body to rotate around the pivot axis between the second pivot member and the lamp body, the lamp body drives the lighting lamp to rotate upward or downward, and by driving the second pivot member to rotate around the pivot axis between the second pivot member and the mounting seat, the second pivot member drives the lamp body to drive the lighting lamp to rotate around the second direction of the compact security lamp, thereby achieving the technical effect of further adjusting the lighting area of the lighting lamp.
[0017] Preferably, a third accommodating groove is provided on the outer peripheral wall of the end of the second pivot member close to the mounting seat, and the mounting seat is provided with a second avoidance hole. The end of the second pivot member close to the mounting seat extends into the second avoidance hole and pivotally cooperates with the second avoidance hole, and a third damping member is provided between the third accommodating groove and the inner peripheral wall of the second avoidance hole.
[0018] The second pivot member is provided with a second connecting portion on the side wall of the end portion close to the lamp body, and a second avoidance groove is provided on the side wall of the lamp body. The inner side wall of the second avoidance groove is provided with a second connecting hole. The end portion of the second pivot member close to the lamp body extends into the second avoidance groove and is limitedly engaged with the second avoidance groove. The second connecting portion passes through the second connecting hole and is pivotally engaged with the second connecting hole. A fourth damping member is provided between the second avoidance groove and the second connecting portion.
[0019] By adopting the above technical solution, during the rotation of the second pivot member about the pivot axis between the second pivot member and the second avoidance hole, the third damping member can secure the second pivot member in a preset position, thereby preventing the second pivot member from deviating from the preset position and causing the lamp to fail to illuminate the preset area, thereby improving the operating reliability of the compact security light. Furthermore, during the rotation of the lamp body about the pivot axis between the lamp body and the second pivot member, the fourth damping member can secure the lamp body in a preset position, thereby preventing the lamp from deviating from the preset position and causing the lamp to fail to illuminate the preset area, thereby improving the operating reliability of the compact security light.
[0020] Preferably, a second snap-fitting protrusion is provided on the outer peripheral wall of the end portion of the second pivot member close to the mounting seat, and a second snap-fitting recess is provided on the inner peripheral wall of the second avoidance hole, and the second snap-fitting protrusion and the second snap-fitting recess are snap-fitted.
[0021] By adopting the above technical solution, the second snap-fitting protrusion and the second snap-fitting recess are snap-fitted together, so as to achieve the technical effect of fixedly connecting the second pivot member and the mounting seat, and when the second pivot member rotates around the pivot axis between the second pivot member and the mounting seat, the second pivot member and the mounting seat can be prevented from separating, thereby improving the working reliability of the compact security lamp.
[0022] Preferably, the installation space forms a detection hole on the bottom wall of the lamp body, the human body detection member is opposite to the detection hole, and the detection hole is provided with a Fresnel lens.
[0023] By adopting the above technical solution, the Fresnel lens can expand the detection range of the human body detection element, thereby reducing the number of human body detection elements, thereby reducing the manufacturing cost of the compact security light and improving the user experience of the compact security light.
[0024] Preferably, the compact security lamp further comprises: a time adjustment knob, the time adjustment knob being arranged on the outer peripheral wall of the lamp body, the time adjustment knob being communicatively connected with the controller, and the controller adjusting the lighting delay off time of the lamp when the time adjustment knob is twisted.
[0025] By adopting the above technical solution, the user can adjust the delayed lighting off time of the lighting lamp by turning the time adjustment knob, which can prevent the lighting time of the lighting lamp from being too short, resulting in the inability to effectively illuminate the preset area, and can prevent the lighting time of the lighting lamp from being too long, resulting in a waste of energy. The user can adjust the delayed lighting off time of the lighting lamp according to the lighting time requirements, thereby improving the user experience of the compact security lamp.
[0026] Preferably, the compact security lamp further comprises: a start-control illumination knob, the start-control illumination knob being arranged on the outer peripheral wall of the lamp body, the start-control illumination knob being electrically connected to the controller, and the controller adjusting the photosensitive start-control illumination value of the lamp when the start-control illumination knob is twisted.
[0027] By adopting the above technical solution, the user can adjust the light-sensitive start-control illuminance value of the lighting lamp by turning the start-control illuminance knob, thereby preventing the brightness of the lighting lamp from being too low, resulting in the lighting lamp being unable to illuminate the preset area. The user can also adjust the light-sensitive start-control illuminance value of the lighting lamp according to the lighting brightness requirements, thereby improving the user experience of the compact security lamp.
[0028] In summary, this application includes at least one of the following beneficial technical effects:
[0029] 1. By placing the human detection element inside the lamp body, the number of parts on the outer wall of the lamp body can be reduced, which can reduce the size of the compact security light. Compared with existing technologies, the compact security light can be installed in smaller areas, thereby improving the user experience of the compact security light;
[0030] 2. The second engaging protrusion and the second engaging recess engage with each other to achieve the technical effect of fixedly connecting the second pivot member and the mounting base. This prevents the second pivot member and the mounting base from separating when the second pivot member rotates about the pivot axis between the second pivot member and the mounting base, thereby improving the operating reliability of the compact security light.
[0031] 3. By turning the start-control illumination knob to adjust the light's photosensitive start-control illumination value, users can prevent the light's brightness from being too low, causing the light to fail to illuminate the preset area. Users can also adjust the light's photosensitive start-control illumination value according to lighting brightness requirements, thereby improving the user experience of the compact security light. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 is a schematic diagram of a compact security light according to an embodiment of the present application;
[0033] Figure 2 is a cross-sectional view of a compact security light according to an embodiment of the present application;
[0034] Figure 3 yes Figure 2 A magnified schematic diagram of point A in the middle;
[0035] Figure 4 is a schematic diagram of a lighting lamp according to an embodiment of the present application;
[0036] Figure 5 is a cross-sectional view of a compact security light according to an embodiment of the present application from another angle;
[0037] Figure 6 yes Figure 5 A magnified schematic diagram of point B in the middle;
[0038] Figure 7 is a cross-sectional view of a compact security light according to an embodiment of the present application from another angle;
[0039] Figure 8 yes Figure 7 Enlarged schematic diagram of point C in the middle;
[0040] Figure 9 It is a schematic diagram of the lamp body according to an embodiment of the present application.
[0041] Description of reference numerals:
[0042] 100. Compact security lights;
[0043] 1. Mounting seat; 11. Second avoidance hole; 111. Second clamping recess;
[0044] 2. Lamp body; 21. Installation space; 22. First avoidance hole; 221. First snap-in recess; 23. Second avoidance groove; 231. Second connection hole; 24. Detection hole; 241. Fresnel lens;
[0045] 3. Lighting lamp; 31. First avoidance groove; 311. First connecting hole;
[0046] 4. Human body detection parts;
[0047] 5. First pivoting member; 51. First receiving groove; 52. First damping member; 53. First connecting portion; 531. Second receiving groove; 54. Second damping member; 55. First engaging protrusion;
[0048] 6. Second pivoting member; 61. Third receiving groove; 62. Third damping member; 63. Second connecting portion; 64. Fourth damping member; 65. Second engaging protrusion;
[0049] 7. Time adjustment knob; 8. Start control illumination knob. DETAILED DESCRIPTION
[0050] The following is combined with Figures 1-9 This application is described in further detail.
[0051] The embodiment of the present application discloses a compact security light 100 .
[0052] Reference Figure 1 and Figure 2 According to an embodiment of the present application, a compact security light 100 includes a mounting base 1, a light body 2, a lighting fixture 3, a human detection element 4, and a controller. The mounting base 1 is suitable for mounting on a mounting surface. In some specific embodiments, the mounting surface may be a wall, but the present application is not limited thereto. The mounting surface may also be a security door, etc.
[0053] The lamp body 2 is arranged on the mounting base 1, and the lamp body 2 and the mounting base 1 are universally rotatable. The lighting lamp 3 is arranged on the lamp body 2, and the lighting lamp 3 and the lamp body 2 are universally rotatable. Through the universal rotation cooperation between the lamp body 2 and the mounting base 1, and the universal rotation cooperation between the lighting lamp 3 and the lamp body 2, the lighting lamp 3 can be rotated to any angle, and the lighting lamp 3 can illuminate any area, thereby improving the user experience of the compact security lamp 100.
[0054] In addition, the lamp body 2 defines an installation space 21, and the human body detection component 4 is arranged in the lamp body 2. The human body detection component 4 is used to detect the human body. The human body detection component 4 and the lighting lamp 3 are both communicated with the controller, and the controller is used to control the lighting of the lighting lamp 3 according to the detection signal of the human body detection component 4.
[0055] Specifically, when a human body enters the detection area of the human body detection component 4, the human body detection component 4 is triggered, and the controller controls the lighting lamp 3 to illuminate, thereby achieving the technical effect of the compact security lamp 100 lighting according to the human body. When the lighting lamp 3 is on for a preset time, the lighting lamp 3 goes out and stops working.
[0056] In some specific embodiments, the human body detection component 4 may be an infrared sensor, but the present application is not limited thereto. The human body detection component 4 may also be a microwave radar sensor, etc.
[0057] It should be noted that the lamp body 2 is provided with a detection hole 24, which is connected to the installation space 21 and faces the human body detection member 4. The human body detection member 4 detects the human body through the detection hole 24. In addition, the illumination area of the lighting lamp 3 can be different from the human body detection area of the human body detection member 4.
[0058] Furthermore, there may be a plurality of lighting lamps 3 , which are spaced apart along the circumferential direction of the lamp body 2 , thereby improving the lighting range of the compact security lamp 100 .
[0059] Furthermore, there are multiple human body detection components 4, and the multiple human body detection components 4 are arranged in sequence along the radial direction of the lamp body 2. Such an arrangement can improve the human body detection range of the compact security lamp 100.
[0060] Thus, by disposing the human body detection element 4 within the lamp body 2, the number of parts on the outer peripheral wall of the lamp body 2 can be reduced, and the size of the compact security light 100 can be reduced. Compared with the prior art, the compact security light 100 can be installed in smaller areas, thereby improving the user experience of the compact security light 100.
[0061] Reference Figure 2 and Figure 3 In some embodiments of the present application, a first pivot member 5 is pivotally connected between the lighting lamp 3 and the lamp body 2, the lighting lamp 3 is suitable for rotating around the pivot axis between the lighting lamp 3 and the first pivot member 5, the first pivot member 5 is suitable for rotating around the pivot axis between the first pivot member 5 and the lamp body 2, and the pivot axis between the lighting lamp 3 and the first pivot member 5 and the pivot axis between the lamp body 2 and the first pivot member 5 are arranged perpendicular to each other.
[0062] Specifically, along the first direction of the compact security lamp 100, the pivot axis between the lamp body 2 and the first pivot member 5 is parallel to the first direction of the compact security lamp 100, and along the height direction of the compact security lamp 100, the pivot axis between the illuminating lamp 3 and the first pivot member 5 is parallel to the height direction of the compact security lamp 100. The first direction of the compact security lamp 100 can refer to Figure 2 The left and right directions in the figure, the height direction of the compact security light 100 can refer to Figure 2 The up and down directions in .
[0063] A coordinate system is established along the first direction of the compact security light 100, the second direction of the compact security light 100, and the height direction of the compact security light 100. The first direction of the compact security light 100 is the X axis, the second direction of the compact security light 100 is the Y axis, and the height direction of the compact security light 100 is the Z axis. The lighting lamp 3 can rotate around the X axis and can rotate around the Z axis. The second direction of the compact security light 100 can refer to Figure 5 The front-to-back direction.
[0064] By driving the first pivot member 5 to rotate around the pivot axis between the first pivot member 5 and the lamp body 2, the first pivot member 5 drives the lighting lamp 3 to rotate upward or downward. By driving the lighting lamp 3 to rotate around the pivot axis between the lighting lamp 3 and the first pivot member 5, the lighting lamp 3 is rotated forward or backward, thereby achieving the technical effect of adjusting the lighting area of the lighting lamp 3.
[0065] Reference Figure 2-Figure 4 In some embodiments of the present application, a first accommodating groove 51 is provided on the outer peripheral wall of the end of the first pivot member 5 close to the lamp body 2, and a first avoidance hole 22 is provided on the side wall of the lamp body 2 close to the lighting lamp 3. The end of the first pivot member 5 close to the lamp body 2 extends into the first avoidance hole 22 and pivotally cooperates with the first avoidance hole 22. A first damping member 52 is provided between the first accommodating groove 51 and the inner peripheral wall of the first avoidance hole 22.
[0066] By pivotally cooperating with the first avoidance hole 22 at the end of the first pivot member 5 close to the lamp body 2, when the first pivot member 5 is driven, the first pivot member 5 rotates around the pivot axis between the first pivot member 5 and the first avoidance hole 22, thereby achieving the technical effect of the first pivot member 5 driving the lighting lamp 3 to rotate upward or downward.
[0067] Moreover, during the process of the first pivot member 5 rotating around the pivot axis between the first pivot member 5 and the first avoidance hole 22, the first damping member 52 can fix the first pivot member 5 at a preset position, thereby preventing the first pivot member 5 from deviating from the preset position and causing the lighting lamp 3 to be unable to illuminate the preset area, thereby improving the working reliability of the compact security lamp 100.
[0068] Furthermore, a first connecting portion 53 is provided on the side wall of the end of the first pivoting member 5 close to the illuminating lamp 3. Specifically, Figure 3 In the embodiment shown, along the height direction of the compact security lamp 100, the first connecting portion 53 is located on the upper end wall or the lower end wall of the end of the first pivot member 5 close to the illuminating lamp 3, the outer peripheral wall of the first connecting portion 53 is provided with a second accommodating groove 531, the side wall of the illuminating lamp 3 close to the lamp body 2 is provided with a first avoidance groove 31, the inner side wall of the first avoidance groove 31 is provided with a first connecting hole 311, and the first connecting hole 311 is configured as a through hole. Figure 3 In the illustrated embodiment, a first connecting hole 311 is provided on the upper end wall or the lower end wall of the first avoiding groove 31 .
[0069] The end of the first pivot member 5 close to the lighting lamp 3 extends into the first avoidance groove 31 and is limitedly engaged with the first avoidance groove 31. The first connecting portion 53 passes through the first connecting hole 311 and pivotally engages with the first connecting hole 311. A second damping member 54 is provided between the second accommodating groove 531 and the first connecting hole 311.
[0070] exist Figure 3 In the illustrated embodiment, the end of the first pivot member 5 close to the lighting lamp 3 is limitedly engaged with the upper end wall of the first avoidance groove 31 and the lower end wall of the first avoidance groove 31, that is, the end of the first pivot member 5 close to the lighting lamp 3 is clamped in the first avoidance groove 31, thereby preventing the lighting lamp 3 from separating from the first pivot member 5 along the height direction of the compact security lamp 100, and the first connecting portion 53 passes through the first connecting hole 311, and the first connecting portion 53 is limitedly engaged with the first connecting hole 311, thereby preventing the lighting lamp 3 from separating from the first pivot member 5 along the first direction of the compact security lamp 100, and thus the first pivot member 5 and the lighting lamp 3 can be fixedly connected.
[0071] By pivotally cooperating with the first connecting portion 53 and the first connecting hole 311, when the lighting lamp 3 is driven, the lighting lamp 3 rotates around the pivot axis between the lighting lamp 3 and the first pivot member 5, thereby achieving the technical effect of the first pivot member 5 driving the lighting lamp 3 to rotate forward or backward.
[0072] Moreover, during the process of the lighting lamp 3 rotating around the pivot axis between the lighting lamp 3 and the first pivot member 5, the second damping member 54 can fix the lighting lamp 3 at a preset position, thereby preventing the lighting lamp 3 from deviating from the preset position and causing the lighting lamp 3 to be unable to illuminate the preset area, thereby improving the working reliability of the compact security lamp 100.
[0073] In some specific embodiments, the first damping member 52 and the second damping member 54 may both be rubber ring damping members, but the present application is not limited thereto. The first damping member 52 and the second damping member 54 may also be viscoelastic material dampers, etc.
[0074] It should be noted that the pivot axis between the first pivot member 5 and the lamp body 2 is the pivot axis between the first pivot member 5 and the first avoidance hole 22, and the pivot axis between the lighting lamp 3 and the first pivot member 5 is the pivot axis between the first connecting portion 53 and the first connecting hole 311.
[0075] Furthermore, in some specific embodiments, there can be two first connection parts 53 and two first connection holes 311, one of the two first connection parts 53 is located on the upper end wall of the end of the first pivot member 5 close to the lighting lamp 3, and the other of the two first connection parts 53 is located on the lower end wall of the end of the first pivot member 5 close to the lighting lamp 3, the upper end wall of the first avoidance groove 31 and the lower end wall of the first avoidance groove 31 are both provided with first connection holes 311, and the two first connection parts 53 and the two first connection holes 311 are arranged in a one-to-one correspondence. Such an arrangement can improve the connection reliability between the first pivot member 5 and the lighting lamp 3.
[0076] Reference Figure 3 In some embodiments of the present application, a first snap-fitting protrusion 55 is provided on the outer peripheral wall of the end of the first pivot member 5 close to the lamp body 2, and a first snap-fitting recess 221 is provided on the inner peripheral wall of the first avoidance hole 22. The first snap-fitting protrusion 55 and the first snap-fitting recess 221 are snap-fitted.
[0077] By snapping together the first snapping protrusion 55 and the first snapping recess 221, the technical effect of fixedly connecting the first pivot member 5 and the lamp body 2 can be achieved, and when the first pivot member 5 rotates around the pivot axis between the first pivot member 5 and the lamp body 2, the first pivot member 5 and the lamp body 2 can be prevented from separating, thereby improving the working reliability of the compact security lamp 100.
[0078] In some specific embodiments, a first engaging protrusion 55 is formed around the end wall of the first pivoting member 5 close to the lamp body 2 , and a first engaging recess 221 is formed on the bottom wall of the first avoiding hole 22 .
[0079] Reference Figure 5 In some embodiments of the present application, a second pivot member 6 is pivotally connected between the lamp body 2 and the mounting base 1, the lamp body 2 is suitable for rotating around the pivot axis between the lamp body 2 and the second pivot member 6, and the second pivot member 6 is suitable for rotating around the pivot axis between the second pivot member 6 and the mounting base 1, and the pivot axis between the lamp body 2 and the second pivot member 6 and the pivot axis between the mounting base 1 and the second pivot member 6 are arranged perpendicular to each other.
[0080] Specifically, along the first direction of the compact security light 100, the pivot axis between the lamp body 2 and the second pivot member 6 is parallel to the first direction of the compact security light 100, and along the second direction of the compact security light 100, the pivot axis between the mounting base 1 and the second pivot member 6 is parallel to the second direction of the compact security light 100.
[0081] A coordinate system is established along the first direction of the compact security light 100, the second direction of the compact security light 100 and the height direction of the compact security light 100. The first direction of the compact security light 100 is the X-axis, the second direction of the compact security light 100 is the Y-axis, and the height direction of the compact security light 100 is the Z-axis. The lamp body 2 can rotate around the X-axis, and the second pivot member 6 can rotate around the Y-axis.
[0082] By driving the lamp body 2 to rotate around the pivot axis between the second pivot member 6 and the lamp body 2, the lamp body 2 drives the lighting lamp 3 to rotate upward or downward. By driving the second pivot member 6 to rotate around the pivot axis between the second pivot member 6 and the mounting base 1, the second pivot member 6 drives the lamp body 2 to drive the lighting lamp 3 to rotate around the second direction of the compact security lamp 100, thereby achieving the technical effect of further adjusting the lighting area of the lighting lamp 3.
[0083] Reference Figure 5-Figure 8 and Figure 9 In some embodiments of the present application, a third accommodating groove 61 is provided on the outer peripheral wall of the end of the second pivot member 6 near the mounting seat 1, and a second avoidance hole 11 is provided on the end wall of the mounting seat 1 near the second pivot member 6. The end of the second pivot member 6 near the mounting seat 1 extends into the second avoidance hole 11 and pivotally cooperates with the second avoidance hole 11. A third damping member 62 is provided between the third accommodating groove 61 and the inner peripheral wall of the second avoidance hole 11.
[0084] By pivotally cooperating with the second avoidance hole 11 at the end of the second pivot member 6 close to the mounting base 1, when the second pivot member 6 is driven, the second pivot member 6 rotates around the pivot axis between the second pivot member 6 and the second avoidance hole 11, thereby achieving the technical effect that the second pivot member 6 drives the lamp body 2 to drive the lighting lamp 3 to rotate around the second direction of the compact security lamp 100.
[0085] Moreover, during the process of the second pivot member 6 rotating around the pivot axis between the second pivot member 6 and the second avoidance hole 11, the third damping member 62 can fix the second pivot member 6 at a preset position, thereby preventing the second pivot member 6 from deviating from the preset position and causing the lighting lamp 3 to be unable to illuminate the preset area, thereby improving the working reliability of the compact security lamp 100.
[0086] Furthermore, the second pivoting member 6 is provided with a second connecting portion 63 on the side wall of the end portion close to the lamp body 2. Figure 8In the embodiment shown, a second connecting portion 63 is provided on the left side wall or the right side wall of the end portion of the second pivot member 6 close to the lamp body 2, a second avoidance groove 23 is provided on the side wall of the lamp body 2 close to the second pivot member 6, and a second connecting hole 231 is provided on the inner side wall of the second avoidance groove 23, and the second connecting hole 231 is configured as a through hole. Figure 8 In the illustrated embodiment, a second connecting hole 231 is defined on the left side wall or the right side wall of the second avoiding groove 23 .
[0087] The end of the second pivot member 6 close to the lamp body 2 extends into the second avoidance groove 23 and is limitedly engaged with the second avoidance groove 23. The second connecting portion 63 passes through the second connecting hole 231 and pivotally engages with the second connecting hole 231. A fourth damping member 64 is provided between the second avoidance groove 23 and the second connecting portion 63.
[0088] exist Figure 8 In the illustrated embodiment, the end of the second pivot member 6 close to the lamp body 2 is limitedly engaged with the left side wall of the second avoidance groove 23 and the right side wall of the second avoidance groove 23, that is, the end of the second pivot member 6 close to the lamp body 2 is clamped in the second avoidance groove 23, thereby preventing the lamp body 2 from separating from the second pivot member 6 along the first direction of the compact security lamp 100, and the second connecting portion 63 passes through the second connecting hole 231, and the second connecting portion 63 is limitedly engaged with the second connecting hole 231, thereby preventing the lamp body 2 from separating from the second pivot member 6 along the second direction of the compact security lamp 100, and thus the second pivot member 6 and the lamp body 2 can be fixedly connected.
[0089] Through the pivotal cooperation between the second connecting portion 63 and the second connecting hole 231, when the lamp body 2 is driven, the lamp body 2 rotates around the pivot axis between the lamp body 2 and the second pivot member 6, thereby achieving the technical effect of the lamp body 2 driving the lighting lamp 3 to rotate upward or downward.
[0090] Moreover, during the rotation of the lamp body 2 around the pivot axis between the lamp body 2 and the second pivot member 6, the fourth damping member 64 can fix the lamp body 2 at a preset position, thereby preventing the lighting lamp 3 from deviating from the preset position and causing the lighting lamp 3 to be unable to illuminate the preset area, thereby improving the working reliability of the compact security lamp 100.
[0091] In some specific embodiments, the third damping member 62 and the fourth damping member 64 may both be rubber ring damping members, but the present application is not limited thereto. The third damping member 62 and the fourth damping member 64 may also be viscoelastic material dampers, etc.
[0092] It should be noted that the pivot axis between the second pivot member 6 and the mounting seat 1 is the pivot axis between the second pivot member 6 and the second avoidance hole 11, and the pivot axis between the lamp body 2 and the second pivot member 6 is the pivot axis between the second connecting portion 63 and the second connecting hole 231.
[0093] Furthermore, in some specific embodiments, there can be two second connecting parts 63 and two second connecting holes 231, and the left and right walls of the end of the second pivot member 6 close to the lamp body 2 are both provided with second connecting parts 63, and the left and right walls of the second avoidance groove 23 are both provided with second connecting holes 231. The two second connecting parts 63 and the two second connecting holes 231 are arranged in a one-to-one correspondence. Such an arrangement can improve the connection reliability between the second pivot member 6 and the lamp body 2.
[0094] Reference Figure 6 In some embodiments of the present application, a second snap-fitting protrusion 65 is provided on the outer peripheral wall of the end of the second pivot member 6 close to the mounting base 1, and a second snap-fitting recess 111 is provided on the inner peripheral wall of the second avoidance hole 11, and the second snap-fitting protrusion 65 and the second snap-fitting recess 111 are snap-fitted.
[0095] By engaging with the second engaging protrusion 65 and the second engaging recess 111, the technical effect of fixedly connecting the second pivot member 6 and the mounting base 1 can be achieved, and when the second pivot member 6 rotates around the pivot axis between the second pivot member 6 and the mounting base 1, the second pivot member 6 and the mounting base 1 can be prevented from separating, thereby improving the working reliability of the compact security lamp 100.
[0096] In some specific embodiments, a first engaging protrusion 55 is formed around the end wall of the second pivoting member 6 close to the mounting base 1 , and a second engaging recess 111 is formed on the bottom wall of the second avoidance hole 11 .
[0097] Reference Figure 2 In some embodiments of the present application, the installation space 21 forms a detection hole 24 on the bottom wall of the lamp body 2, and the human body detection component 4 is opposite to the detection hole 24. The detection hole 24 is provided with a Fresnel lens 241. The Fresnel lens 241 can expand the detection range of the human body detection component 4, thereby reducing the number of human body detection components 4, and further reducing the manufacturing cost of the compact security lamp 100, and improving the user experience of the compact security lamp 100.
[0098] Reference Figure 1 In some embodiments of the present application, the compact security lamp 100 may further include: a time adjustment knob 7, the time adjustment knob 7 is arranged on the outer peripheral wall of the lamp body 2, specifically, the time adjustment knob 7 is arranged on the bottom wall of the lamp body 2, the time adjustment knob 7 is communicated with the controller, and when the time adjustment knob 7 is twisted, the controller adjusts the lighting delay off time of the lighting lamp 3.
[0099] By turning the time adjustment knob 7 to adjust the delayed lighting off time of the lighting lamp 3, the user can prevent the lighting time of the lighting lamp 3 from being too short, resulting in the inability to effectively illuminate the preset area, and can prevent the lighting time of the lighting lamp 3 from being too long, resulting in the lighting lamp 3 wasting energy. The user can adjust the delayed lighting off time of the lighting lamp 3 according to the lighting time requirements, thereby improving the user experience of the compact security lamp 100.
[0100] Reference Figure 1 In some embodiments of the present application, the compact security lamp 100 may further include: a start-control illumination knob 8, the start-control illumination knob 8 is arranged on the outer peripheral wall of the lamp body 2, specifically, the start-control illumination knob 8 is arranged on the bottom wall of the lamp body 2, the start-control illumination knob 8 is electrically connected to the controller, and when the start-control illumination knob 8 is twisted, the controller adjusts the photosensitive start-control illumination value of the lighting lamp 3.
[0101] By turning the start-control illumination knob 8 to adjust the photosensitive start-control illumination value of the lighting lamp 3, the user can prevent the brightness of the lighting lamp 3 from being too low, resulting in the lighting lamp 3 being unable to illuminate the preset area. The user can also adjust the photosensitive start-control illumination value of the lighting lamp 3 according to the lighting brightness requirements, thereby improving the user experience of the compact security lamp 100.
[0102] It should be noted that the controller is provided with a photoresistor, and the start-control illumination knob 8 adjusts the brightness of the lighting lamp 3 by adjusting the resistance value of the photoresistor. The resistance value of the photoresistor is the photosensitive start-control illumination value.
[0103] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A compact security light, characterized in that: include: A mounting seat (1), wherein the mounting seat (1) is suitable for being mounted on a mounting wall; A lamp body (2), the lamp body (2) being arranged on the mounting seat (1), the lamp body (2) being universally rotatably matched with the mounting seat (1), and the lamp body (2) defining a mounting space (21); A lighting lamp (3), the lighting lamp (3) being arranged on the lamp body (2), the lighting lamp (3) being in universal rotational cooperation with the lamp body (2); A human body detection component (4) and a controller, wherein the human body detection component (4) is arranged in the lamp body (2), the human body detection component (4) is used to detect a human body, the human body detection component (4) and the lighting lamp (3) are both communicatively connected to the controller, and the controller is used to control the lighting of the lighting lamp (3) according to a detection signal from the human body detection component (4).
2. A compact security light according to claim 1, characterized in that: A first pivoting member (5) is pivotally connected between the lighting lamp (3) and the lamp body (2); the lighting lamp (3) is suitable for rotating around a pivot axis between the lighting lamp (3) and the first pivoting member (5); the first pivoting member (5) is suitable for rotating around a pivot axis between the first pivoting member (5) and the lamp body (2); the pivot axis between the lighting lamp (3) and the first pivoting member (5) and the pivot axis between the lamp body (2) and the first pivoting member (5) are arranged perpendicular to each other.
3. A compact security light according to claim 2, characterized in that: The first pivoting member (5) is provided with a first accommodating groove (51) on the outer peripheral wall of the end portion close to the lamp body (2), and a first avoidance hole (22) is provided on the side wall of the lamp body (2); the first pivoting member (5) is extended into the first avoidance hole (22) at the end portion close to the lamp body (2) and is pivotally engaged with the first avoidance hole (22); and a first damping member (52) is provided between the first accommodating groove (51) and the inner peripheral wall of the first avoidance hole (22); The first pivoting member (5) is provided with a first connecting portion (53) on the side wall of the end portion close to the lighting lamp (3); a second accommodating groove (531) is provided on the outer peripheral wall of the first connecting portion (53); a first avoidance groove (31) is provided on the side wall of the lighting lamp (3); a first connecting hole (311) is provided on the inner side wall of the first avoidance groove (31); the first pivoting member (5) is extended into the first avoidance groove (31) at the end portion close to the lighting lamp (3) and is limitedly engaged with the first avoidance groove (31); the first connecting portion (53) passes through the first connecting hole (311) and is pivotally engaged with the first connecting hole (311); a second damping member (54) is provided between the second accommodating groove (531) and the first connecting hole (311).
4. A compact security light according to claim 3, characterized in that: A first snap-fitting protrusion (55) is provided on the outer peripheral wall of the end portion of the first pivoting member (5) close to the lamp body (2), and a first snap-fitting recess (221) is provided on the inner peripheral wall of the first avoidance hole (22), and the first snap-fitting protrusion (55) and the first snap-fitting recess (221) are snap-fitted.
5. The compact security light according to claim 1, characterized in that: A second pivot member (6) is pivotally connected between the lamp body (2) and the mounting seat (1); the lamp body (2) is suitable for rotating around a pivot axis between the lamp body (2) and the second pivot member (6); the second pivot member (6) is suitable for rotating around a pivot axis between the second pivot member (6) and the mounting seat (1); the pivot axis between the lamp body (2) and the second pivot member (6) and the pivot axis between the mounting seat (1) and the second pivot member (6) are arranged perpendicular to each other.
6. A compact security light according to claim 5, characterized in that: The outer peripheral wall of the end portion of the second pivoting member (6) close to the mounting seat (1) is provided with a third accommodating groove (61), the mounting seat (1) is provided with a second avoidance hole (11), the end portion of the second pivoting member (6) close to the mounting seat (1) extends into the second avoidance hole (11) and is pivotally engaged with the second avoidance hole (11), and a third damping member (62) is provided between the third accommodating groove (61) and the inner peripheral wall of the second avoidance hole (11); The second pivoting member (6) is provided with a second connecting portion (63) on the side wall of the end portion close to the lamp body (2); the side wall of the lamp body (2) is provided with a second avoidance groove (23); the inner side wall of the second avoidance groove (23) is provided with a second connecting hole (231); the second pivoting member (6) is extended into the second avoidance groove (23) close to the end portion of the lamp body (2) and is limitedly engaged with the second avoidance groove (23); the second connecting portion (63) passes through the second connecting hole (231) and is pivotally engaged with the second connecting hole (231); a fourth damping member (64) is provided between the second avoidance groove (23) and the second connecting portion (63).
7. A compact security light according to claim 6, characterized in that: A second engaging protrusion (65) is provided on the outer peripheral wall of the end portion of the second pivoting member (6) close to the mounting seat (1), and a second engaging recess (111) is provided on the inner peripheral wall of the second avoidance hole (11), and the second engaging protrusion (65) and the second engaging recess (111) are engaged with each other.
8. The compact security light according to claim 1, characterized in that: The installation space (21) forms a detection hole (24) on the bottom wall of the lamp body (2); the human body detection component (4) is opposite to the detection hole (24); and the detection hole (24) is provided with a Fresnel lens (241).
9. The compact security light according to claim 1, characterized in that: Also includes: A time adjustment knob (7) is provided on the outer peripheral wall of the lamp body (2), the time adjustment knob (7) is in communication connection with the controller, and when the time adjustment knob (7) is twisted, the controller adjusts the lighting delay off time of the lighting lamp (3).
10. The compact security light according to claim 1, characterized in that: The invention also includes: a start-control illumination knob (8), the start-control illumination knob (8) being arranged on the outer peripheral wall of the lamp body (2), the start-control illumination knob (8) being electrically connected to the controller, and the controller adjusting the photosensitive start-control illumination value of the lighting lamp (3) when the start-control illumination knob (8) is twisted.