CN221172006U - Human body induction cabinet lamp - Google Patents

Human body induction cabinet lamp Download PDF

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Publication number
CN221172006U
CN221172006U CN202323366958.6U CN202323366958U CN221172006U CN 221172006 U CN221172006 U CN 221172006U CN 202323366958 U CN202323366958 U CN 202323366958U CN 221172006 U CN221172006 U CN 221172006U
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China
Prior art keywords
lamp
housing
shell
lamps
lanterns
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Active
Application number
CN202323366958.6U
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Chinese (zh)
Inventor
郑坚发
胡肇彬
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Zhongshan Mingzhi Lighting Co ltd
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Zhongshan Mingzhi Lighting Co ltd
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Priority to CN202323366958.6U priority Critical patent/CN221172006U/en
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Abstract

The application discloses a human body induction cabinet lamp, relates to the field of lighting equipment, and can solve the problem that in the prior art, a user is difficult to adjust the lighting range of the human body induction cabinet lamp according to the needs. The human response cupboard lamps and lanterns include connect in the lamp stand of holding surface and connect in the lamps and lanterns of lamp stand, the lamp stand has been seted up and is used for inlaying to establish the arc wall of lamps and lanterns, the lateral wall of lamps and lanterns is formed with the cooperation the cambered surface of arc wall, the lamp stand with be connected with between the lamps and lanterns and inhale the subassembly magnetically, so that the lateral wall of lamps and lanterns paste in the cell wall of arc wall.

Description

Human body induction cabinet lamp
Technical Field
The application relates to the field of lighting equipment, in particular to a human body induction cabinet lamp.
Background
In modern home design, body sensing cabinet lights are an important accessory to kitchen cabinets. Human sensing cabinet lamps generally include a lamp body with a lighting wick and a lamp socket attached to the cabinet. In order to facilitate the installation and maintenance of users, the lamp body and the lamp holder are often connected in a magnetic attraction mode. The connection mode not only improves the flexibility of installation, but also facilitates the daily use of the lamp. When a user opens the cabinet or moves around the cabinet, the pyroelectric infrared sensor can detect infrared radiation emitted by a human body, so that illumination is automatically started, and a convenient and comfortable illumination experience is provided for the user.
In the prior art, most cabinet lamp designs have a relatively fixed relative position between the lamp and the lamp holder, which means that the illumination range is limited by the specific location where the lamp is mounted. In addition, the design of the magnetic connection is mostly plane contact, which further limits the adjustability of the illumination angle, so that a user cannot adjust the illumination range according to the needs, and the practicability of the cabinet lamp is limited to a certain extent. Meanwhile, the pyroelectric infrared sensor integrated on the lighting lamp is difficult to adjust the induction range due to the fixed installation mode, so that the sensor is inflexible for occasions requiring specific lighting or induction requirements.
Disclosure of utility model
Therefore, the application provides a human body induction cabinet lamp, which solves the problem that in the prior art, a user is difficult to adjust the illumination range of the human body induction cabinet lamp according to the needs.
In order to achieve the above object, the present application provides the following technical solutions:
The utility model provides a human response cupboard lamps and lanterns, includes connect in the lamp stand of holding surface and connect in the lamps and lanterns of lamp stand, the arc wall that is used for inlaying to establish the lamps and lanterns is seted up to the lamp stand, the lateral wall of lamps and lanterns is formed with the cooperation the cambered surface of arc wall, the lamp stand with be connected with between the lamps and lanterns and inhale the subassembly, so that the lateral wall of lamps and lanterns paste and lean on in the cell wall of arc wall.
Optionally, the lamps and lanterns are the cylinder, the axis of arc wall with the axis of cylinder is collinear, the holding tank has been seted up to the tank bottom of arc wall, the magnetism is inhaled the subassembly and is including inlaying and locate the first magnetism of holding tank is inhaled the piece and set up in the cylinder just cooperate the second magnetism that the piece was inhaled to first magnetism.
Optionally, the first magnetic attraction piece is an iron sheet, the second magnetic attraction piece is a permanent magnet, and the lamp holder is connected with a glue patch for attaching to the supporting surface.
Optionally, the cylinder includes lamp source portion and connect in the control portion of the one end of lamp source portion, lamp source portion including connect in the first casing of lamp stand, connect in the first casing is kept away from the second casing of lamp stand, first casing with the second casing encloses into the first chamber that holds that is used for holding light board and battery, the piece is located to the second magnetism is inhaled in first chamber that holds, the second casing is used for making the light of the lamp source on the light board is permeating the second casing, the control portion is including being used for controlling the control assembly of light board.
Optionally, the first casing with the second casing is followed the axis symmetry of cylinder arranges, the second casing includes the first section and the second section that is located that are used for permeating the light of the lamp source on the light board the first section is kept away from one side of control portion, the both ends of first casing link up, just the inner wall of first casing is connected with two first locating parts of relative setting along self length extension direction, first draw-in groove has been seted up to first locating part along self length direction, the both sides of first section are all buckled and are formed with the first draw-in strip of cooperation first draw-in groove, the both sides of second section are buckled and are formed with the second draw-in strip of cooperation first draw-in groove, the second section is kept away from one end of first section still is connected with the shielding plate that is used for the end opening of first casing kept away from the control portion; the inner wall of first casing is connected with two second locating parts of relative setting along self length extension direction, the second draw-in groove has been seted up along self length direction to the second locating part, the both sides of light board are embedded respectively two in the second draw-in groove of second locating part.
Optionally, the control portion connect in through the connecting piece the second casing, the control portion including connect in the third casing of connecting piece with connect in the fourth casing of connecting piece, the third casing with the fourth casing encloses into the second that is used for holding control assembly and holds the chamber, control assembly include the control panel with connect in the controller of control panel, electricity connect in the controller and be used for detecting infrared radiation horizontally pyroelectric infrared sensor, electricity connect in the display screen of controller and a plurality of electricity connect in the button of controller, the light board the battery electricity connect in the controller, the display screen is used for showing the residual capacity of battery.
Optionally, the third casing with the fourth casing is followed the axis symmetry of cylinder arranges, the third casing is located and is close to one side of lamp stand, the inner wall of third casing is connected with a plurality of supports that are used for supporting the control panel, a plurality of the button stretches out to the outer wall of control portion, the fourth casing is connected with and is used for protecting the printing opacity shell of display screen, the control panel still is connected with and stretches out the protective housing of fourth casing, pyroelectric infrared sensor is located in the protective housing.
Optionally, the two sides of the connecting piece are bent to form third clamping strips matched with the first clamping grooves, the connecting piece is provided with a round hole penetrating through the connecting piece, the control part is connected with a cylindrical shaft matched with the round hole, and the end part, away from the control part, of the cylindrical shaft is connected with a limiting ring for limiting the cylindrical shaft from falling out of the round hole; the cylindrical shaft comprises two semicircular shafts which are respectively connected with the third shell and the fourth shell, and deformation grooves are formed in the semicircular shafts at the limiting rings and face the third shell or the fourth shell.
Optionally, the middle part of cylinder axle is seted up along self axis extending direction and is crossed the line hole, the connecting piece keep away from the terminal surface of second casing is connected with the backstop piece, the third casing is close to the terminal surface of connecting piece is connected with the cooperation the stopper of backstop piece.
Compared with the prior art, the application has at least the following beneficial effects:
Compared with the cabinet lamp in the prior art, the application sets the contact surface of the lamp and the lamp holder as the cambered surface, so that compared with the plane contact of the magnetic connection in the prior art, the lamp can realize angle autorotation along the cambered surface, thus the lamp can be easily rotated, the adjustment of the illumination angle is realized, the personalized illumination requirement is met, and the application is particularly suitable for the situation that the illumination direction or position needs to be frequently adjusted.
Drawings
In order to more intuitively illustrate the prior art and the application, several exemplary drawings are presented below. It should be understood that the specific shape and configuration shown in the drawings are not generally considered limiting conditions in carrying out the application; for example, those skilled in the art will be able to make routine adjustments or further optimizations for the addition/subtraction/attribution division, specific shapes, positional relationships, connection modes, dimensional proportion relationships, and the like of certain units (components) based on the technical concepts and the exemplary drawings disclosed in the present application.
Fig. 1 is a schematic diagram of the overall structure of a human body induction cabinet lamp according to an embodiment of the application;
Fig. 2 is an exploded view of a lamp socket of a human body induction cabinet lamp according to an embodiment of the present application;
FIG. 3 is a schematic view of a portion of the structure of FIG. 2;
fig. 4 is an exploded view of a part of a structure of a lamp of a human body induction cabinet lamp according to an embodiment of the present application;
fig. 5 is a schematic structural diagram of a first section of a human body induction cabinet lamp according to an embodiment of the present application;
fig. 6 is a schematic structural diagram of a second section of a human body induction cabinet lamp according to an embodiment of the present application;
Fig. 7 is a schematic structural diagram of a first housing of a body sensing cabinet lamp according to an embodiment of the present application;
FIG. 8 is an enlarged view at A of FIG. 7;
Fig. 9 is a schematic view of a part of a structure of a human body induction cabinet lamp according to an embodiment of the application;
Fig. 10 is a schematic structural diagram of a control part and a connector of a human body induction cabinet lamp according to an embodiment of the present application;
FIG. 11 is an exploded view of FIG. 10;
FIG. 12 is a schematic view of a structure of a connector;
FIG. 13 is an exploded view of the control section;
FIG. 14 is an enlarged view at B of FIG. 13;
Fig. 15 is a schematic structural view of the third housing and the control assembly.
Reference numerals illustrate:
1. A lamp holder; 11. sticking; 12. an arc-shaped groove; 13. a first magnetic attraction member; 2. a lamp; 21. a first housing; 211. a first limiting member; 2111. a first clamping groove; 212. a second limiting piece; 2121. a second clamping groove; 22. a second housing; 221. a first section; 2211. the first clamping strip; 222. a second section; 2221. a second clamping strip; 2222. a shielding plate; 3. a lamp panel; 4. a storage battery; 5. a control unit; 51. a third housing; 511. a limiting block; 52. a fourth housing; 53. a cylindrical shaft; 531. a limiting ring; 532. a semicircular shaft; 533. a deformation groove; 6. a connecting piece; 61. a round hole; 62. a third clamping strip; 63. a stop block; 7. a control assembly; 71. a control board; 72. a button; 73. a protective shell; 74. a display screen; 75. and a light-transmitting shell.
Detailed Description
The present application will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present application more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the application.
In the description of the present application: unless otherwise indicated, the meaning of "a plurality" is two or more. The terms "first," "second," "third," and the like in this disclosure are intended to distinguish between the referenced objects without a special meaning in terms of technical connotation (e.g., should not be construed as emphasis on the degree of importance or order, etc.). The expressions "comprising", "including", "having", etc. also mean "not limited to" (certain units, components, materials, steps, etc.).
Referring to fig. 1-3, the application discloses a human body induction cabinet lamp, which comprises a lamp holder 1 connected to a supporting surface and a lamp 2 connected to the lamp holder 1, wherein the lamp holder 1 is provided with an arc-shaped groove 12 for embedding the lamp 2, the side wall of the lamp 2 is provided with an arc surface matched with the arc-shaped groove 12, and a magnetic component is connected between the lamp holder 1 and the lamp 2 so as to enable the side wall of the lamp 2 to be clung to the groove wall of the arc-shaped groove 12.
Compared with the cabinet lamp in the prior art, the application sets the contact surface of the lamp 2 and the lamp holder 1 as the cambered surface, so that compared with the plane contact of the magnetic connection in the prior art, the lamp 2 can realize angle autorotation along the cambered surface, thus the lamp 2 can be easily rotated, the adjustment of the illumination angle is realized, the personalized illumination requirement is met, and the application is particularly suitable for the situation that the illumination direction or position needs to be frequently adjusted.
The support surface may be somewhere within the cabinet, or in other locations.
The lamp 2 is a cylinder, the central axis of the arc-shaped groove 12 is collinear with the central axis of the cylinder, the bottom of the arc-shaped groove 12 is provided with a containing groove, and the magnetic component comprises a first magnetic component 13 embedded in the containing groove and a second magnetic component (not shown in the figure) arranged in the cylinder and matched with the first magnetic component 13.
Through the magnetic attraction connection between the lamp 2 and the arc-shaped groove 12, the lamp 2 can rotate in a certain range along the track in the arc-shaped groove 12, and the adjustment of the illumination angle is realized. The user can flexibly adjust the illumination angle according to actual needs so as to obtain the optimal illumination effect.
The first magnetic attraction piece 13 is an iron sheet, the second magnetic attraction piece is a permanent magnet, and the lamp holder 1 is connected with a glue paste 11 for being attached to a supporting surface.
The arrangement of the glue stick 11 enables the whole device to be simply and firmly mounted on various supporting surfaces; the adhesive 11 may be a nano adhesive.
In some embodiments, both the first magnetic attraction member 13 and the second magnetic attraction member may be permanent magnets.
In some embodiments, the lamp socket 1 may be attached to the support surface by fasteners (bolts, etc.).
Referring to fig. 1 to 4, the cylinder includes a light source part including a first housing 21 connected to the lamp socket 1, a second housing 22 connected to the first housing 21 away from the lamp socket 1, the first housing 21 and the second housing 22 enclosing a first receiving chamber for receiving the lamp panel 3 and the battery 4 (for supplying power to the light source on the lamp panel 3), a second magnetic member located in the first receiving chamber, and a control part 5 connected to one end of the light source part, the second housing 22 for allowing light of the light source on the lamp panel 3 to pass through the second housing 22, and the control part 5 includes a control assembly 7 for controlling the lamp panel 3.
The control assembly 7 of the control part 5 is mainly used for intelligently managing the working state of the lighting lamp panel 3, wherein the second magnetic attraction piece can be adhered to the bottom of the lighting lamp panel 3 through glue. The light source (not shown) may be an LED lamp.
Referring to fig. 1 to 8, the first housing 21 and the second housing 22 are symmetrically arranged along the central axis of the cylinder, the second housing 22 includes a first section 221 for transmitting light of the light source on the lighting lamp panel 3 and a second section 222 located at one side of the first section 221 away from the control part 5, two ends of the first housing 21 are penetrated, two first limiting pieces 211 which are oppositely arranged are connected to the inner wall of the first housing 21 along the self length extending direction, a first clamping groove 2111 is formed in the first limiting piece 211 along the self length direction, a first clamping strip 2211 matched with the first clamping groove 2111 is formed at two sides of the first section 221 in a bending mode, a second clamping strip 2221 matched with the first clamping groove 2111 is formed at two sides of the second section 222 in a bending mode, and a blocking plate 2222 for blocking an end opening of the first housing 21 away from the control part 5 is also connected to one end of the second section 222 away from the first section 221; the inner wall of the first housing 21 is connected with two second limiting members 212 which are oppositely arranged along the length extending direction of the first housing, the second limiting members 212 are provided with second clamping grooves 2121 along the length direction of the second limiting members 212, and two sides of the illuminating lamp plate 3 are respectively embedded into the second clamping grooves 2121 of the two second limiting members 212.
The first section 221 may be connected to the first housing 21 by sliding the first clip 2211 into the first clip groove 2111, which is convenient, and the second section 222 may be connected to the first housing 21 in a similar manner, with the shielding plate 2222 shielding an end opening of the first housing 21, and the shielding plate 2222 may be connected to the first housing 21 by a fastener.
Referring to fig. 1 to 15, the control part 5 is connected to the second housing 22 through the connection member 6, the control part 5 includes a third housing 51 connected to the connection member 6 and a fourth housing 52 connected to the connection member 6, the third housing 51 and the fourth housing 52 enclose a second accommodating chamber for accommodating the control board 71, the control board 71 is connected with a controller, a pyroelectric infrared sensor electrically connected to the controller and used for detecting an infrared radiation level, a display screen 74 electrically connected to the controller, and a plurality of buttons 72 electrically connected to the controller, the lamp panel 3, the battery 4 are electrically connected to the controller, and the display screen 74 is used for displaying a remaining capacity of the battery 4.
Through the display screen 74 on the control board 71, the user can intuitively monitor the remaining capacity of the storage battery 4, avoiding abrupt light interruption due to the exhaustion of the capacity. The arrangement of the pyroelectric infrared sensor further enhances the level of intellectualization of the luminaire 2, and can automatically adjust the illumination without physical contact.
The pyroelectric infrared sensor, the controller, the lighting lamp panel 3 and the like are all in the prior art, and the application is not repeated.
The third shell 51 and the fourth shell 52 are symmetrically arranged along the central axis of the cylinder, the third shell 51 is located at one side close to the lamp holder 1, the inner wall of the third shell 51 is connected with a plurality of supporting pieces for supporting the control panel 71, a plurality of buttons 72 extend to the outer wall of the control part 5, the fourth shell 52 is connected with a light-transmitting shell 75 for protecting the display screen 74, the control panel 71 is also connected with a protective shell 73 extending out of the fourth shell 52, and a pyroelectric infrared sensor (not shown in the figure) is located in the protective shell 73.
The light-transmitting case 75 and the protective case 73 may protect the display screen 74 and the pyroelectric infrared sensor.
Wherein the protective shell 73 may be a fresnel lens.
The two sides of the connecting piece 6 are bent to form a third clamping strip 62 matched with the first clamping groove 2111, the connecting piece 6 is provided with a round hole 61 penetrating through the connecting piece 6, the control part 5 is connected with a cylindrical shaft 53 matched with the round hole 61, and the end part of the cylindrical shaft 53 away from the control part 5 is connected with a limiting ring 531 for limiting the cylindrical shaft 53 from falling out of the round hole 61; the cylindrical shaft 53 includes two semicircular shafts 532 respectively connected to the third housing 51 and the fourth housing 52, and the semicircular shafts 532 are provided with a deformation groove 533 at the position of the limiting ring 531 towards the third housing 51 or the fourth housing 52.
The matching of the cylindrical shaft 53 and the round hole 61 allows the cylindrical shaft 53 to rotate, so that the control part 5 and the pyroelectric infrared sensor rotate, and the detection range of the pyroelectric infrared sensor can be adjusted accordingly; the limiting ring 531 is clamped on the end face of the connecting piece 6, the cylindrical shaft 53 can be limited to slide out, and the deformation grooves 533 can be formed by extrusion deformation on two sides of the deformation grooves 533, so that the semicircular shaft 532 can be conveniently taken out of the round hole 61. The end surface of the limit ring 531 card can be provided with a guide surface, so that the cylinder shaft 53 can conveniently enter the round hole 61.
The middle part of the cylinder shaft 53 is provided with a wire passing hole along the extending direction of the axis of the cylinder shaft, the end surface of the connecting piece 6 far away from the second shell 22 is connected with a stop block 63, and the end surface of the third shell 51 near the connecting piece 6 is connected with a limiting block 511 matched with the stop block 63.
The wire passing hole allows the control assembly 7 to pass through the connecting wires of the illuminating lamp plate 3 and the storage battery 4, and the limiting block 511 and the limiting block 63 are matched, so that the rotation of the cylindrical shaft 53 can be limited in a certain range, and the connecting wires are prevented from being pinched off under the condition that the cylindrical shaft 53 rotates freely.
In some embodiments, the control board 71 also has a USB connector connected thereto for rewriting the control logic of the controller and charging the battery 4.
In some embodiments, the control board 71 is also connected with an alarm, which sounds an alarm to alert the user to charge when the amount of electricity is too low.
Any combination of the technical features of the above embodiments may be performed (as long as there is no contradiction between the combination of the technical features), and for brevity of description, all of the possible combinations of the technical features of the above embodiments are not described; these examples, which are not explicitly written, should also be considered as being within the scope of the present description.
The application has been described above with particularity and detail in connection with general description and specific embodiments. It should be understood that numerous conventional modifications and further innovations may be made to these specific embodiments, based on the technical concepts of the present application; but these conventional modifications and further innovations may also fall within the scope of the claims of the present application as long as they do not depart from the technical spirit of the present application.

Claims (9)

1. The utility model provides a human response cupboard lamps and lanterns, its characterized in that, including connect in the lamp stand of holding surface and connect in the lamps and lanterns of lamp stand, the arc wall that is used for inlaying to establish the lamps and lanterns is seted up to the lamp stand, the lateral wall of lamps and lanterns is formed with the cooperation the cambered surface of arc wall, the lamp stand with be connected with between the lamps and lanterns and inhale the subassembly magnetically, so that the lateral wall of lamps and lanterns paste in the cell wall of arc wall.
2. The human body induction cabinet lamp according to claim 1, wherein the lamp is a cylinder, the central axis of the arc-shaped groove is collinear with the central axis of the cylinder, a containing groove is formed in the bottom of the arc-shaped groove, and the magnetic attraction component comprises a first magnetic attraction piece embedded in the containing groove and a second magnetic attraction piece arranged in the cylinder and matched with the first magnetic attraction piece.
3. The body sensing cabinet lamp of claim 2, wherein the first magnetic attraction piece is an iron sheet, the second magnetic attraction piece is a permanent magnet, and the lamp holder is connected with a glue for attaching to a supporting surface.
4. The body sensing cabinet lamp of claim 2, wherein the cylinder comprises a light source portion and a control portion connected to one end of the light source portion, the light source portion comprises a first housing connected to the lamp socket, a second housing connected to the first housing and remote from the lamp socket, the first housing and the second housing enclose a first receiving cavity for receiving a lamp panel and a battery, the second magnetic element is located in the first receiving cavity, the second housing is for allowing light of a light source on the lamp panel to pass through the second housing, and the control portion comprises a control assembly for controlling the lamp panel.
5. The human body induction cabinet lamp according to claim 4, wherein the first shell and the second shell are symmetrically arranged along the central axis of the cylinder, the second shell comprises a first section for transmitting light rays of a lamp source on a lighting lamp plate and a second section positioned on one side of the first section away from the control part, two ends of the first shell are penetrated, two first limiting pieces which are oppositely arranged are connected with the inner wall of the first shell along the length extension direction of the first shell, a first clamping groove is formed in the first limiting piece along the length direction of the first limiting piece, first clamping strips matched with the first clamping groove are formed in two sides of the first section in a bending mode, second clamping strips matched with the first clamping groove are formed in two sides of the second section in a bending mode, and a shielding plate for blocking an end opening of the first shell away from the control part is further connected to one end of the second section away from the first section; the inner wall of first casing is connected with two second locating parts of relative setting along self length extension direction, the second draw-in groove has been seted up along self length direction to the second locating part, the both sides of light board are embedded respectively two in the second draw-in groove of second locating part.
6. The human body induction cabinet lamp according to claim 5, wherein the control part is connected to the second housing through a connecting piece, the control part comprises a third housing connected to the connecting piece and a fourth housing connected to the connecting piece, the third housing and the fourth housing enclose a second accommodating cavity for accommodating a control assembly, the control assembly comprises a control board, a controller connected to the control board, a pyroelectric infrared sensor electrically connected to the controller and used for detecting infrared radiation level, a display screen electrically connected to the controller, and a plurality of buttons electrically connected to the controller, the illuminating lamp panel and the storage battery are electrically connected to the controller, and the display screen is used for displaying residual electric quantity of the storage battery.
7. The body sensing cabinet lamp of claim 6, wherein the third housing and the fourth housing are symmetrically arranged along a central axis of the cylinder, the third housing is positioned at one side close to the lamp socket, a plurality of supporting pieces for supporting the control panel are connected to an inner wall of the third housing, a plurality of buttons are extended to an outer wall of the control portion, the fourth housing is connected with a light-transmitting shell for protecting the display screen, the control panel is further connected with a protective shell extended out of the fourth housing, and the pyroelectric infrared sensor is positioned in the protective shell.
8. The human body induction cabinet lamp according to claim 6, wherein the two sides of the connecting piece are bent to form a third clamping strip matched with the first clamping groove, the connecting piece is provided with a round hole penetrating through the connecting piece, the control part is connected with a cylindrical shaft matched with the round hole, and the end part, away from the control part, of the cylindrical shaft is connected with a limiting ring for limiting the cylindrical shaft from falling out of the round hole; the cylindrical shaft comprises two semicircular shafts which are respectively connected with the third shell and the fourth shell, and deformation grooves are formed in the semicircular shafts at the limiting rings and face the third shell or the fourth shell.
9. The human body induction cabinet lamp according to claim 8, wherein a wire passing hole is formed in the middle of the cylindrical shaft along the extending direction of the axis of the cylindrical shaft, a stop block is connected to the end face, away from the second shell, of the connecting piece, and a limiting block matched with the stop block is connected to the end face, close to the connecting piece, of the third shell.
CN202323366958.6U 2023-12-11 2023-12-11 Human body induction cabinet lamp Active CN221172006U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323366958.6U CN221172006U (en) 2023-12-11 2023-12-11 Human body induction cabinet lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323366958.6U CN221172006U (en) 2023-12-11 2023-12-11 Human body induction cabinet lamp

Publications (1)

Publication Number Publication Date
CN221172006U true CN221172006U (en) 2024-06-18

Family

ID=91530388

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323366958.6U Active CN221172006U (en) 2023-12-11 2023-12-11 Human body induction cabinet lamp

Country Status (1)

Country Link
CN (1) CN221172006U (en)

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