Pocket type car lamp

By designing bag-type headlights, the elastic deformation of the bag-mounted position and flexible connection of the housing, the problem of inconvenient placement and portability of existing headlights when used alone is solved, achieving better portability and convenience of use.

CN222892099UActive Publication Date: 2025-05-23DONGGUAN LEGION ELECTRONIC TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422051449.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-05-23
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

When used alone, existing bicycle LED lights are inconvenient to place and carry, resulting in inconvenient use.

Method used

A bag-type car light is designed, and its shell is divided into a first shell part and a second shell part, forming a bag-insert position at the bag opening of the bag-insert position, and a charging port cover is provided at the bag opening of the bag-insert position, and the gap of the bag-insert opening is expanded or reduced by the elastic deformation of the flexible connection part, so that the car light can be inserted into the pocket of the clothes or other positions.

Benefits of technology

It realizes convenient placement and carrying of the headlights, making the headlights less likely to fall off the clothes, and improves the convenience and portability of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222892099U_ABST
    Figure CN222892099U_ABST
Patent Text Reader

Abstract

The utility model provides a side pocket type vehicle lamp which comprises a shell, the shell is provided with a first shell part and a second shell part, a side pocket position is formed between the first shell part and the second shell part in a spaced mode, and one end, in the length direction, of the side pocket position is opened to form a side pocket opening; the charging port cover body comprises a flexible connecting part and a cover shell, one end of the flexible connecting part is arranged in the side pocket position, and the other end of the flexible connecting part extends towards the side pocket opening and is connected with the cover shell; the flexible connecting part is located in the side pocket opening, and the gap of the side pocket opening is enlarged or reduced through elastic deformation of the flexible connecting part. The problem that in the prior art, when an automobile lamp is independently used, the automobile lamp is inconvenient to place and carry, and use is inconvenient is solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the technical field of lamp equipment, and in particular to a pocket-type vehicle lamp. Background Art

[0002] With the development of LED lamp technology, the structure of the lamp has been miniaturized and applied to various lighting environments, such as bicycle lamps, which can be installed on the frame to provide lighting for users when riding at night.

[0003] However, in the conventional structure of existing bicycle LED lights, when the light is removed and used alone, for example, when the light is needed when not riding, the user usually needs to hold the light. In some cases where both hands are required to work, such as when repairing a bicycle, the light is inconvenient to place and carry, causing inconvenience in use.

[0004] Therefore, the prior art still needs to be improved and developed. Utility Model Content

[0005] In view of the above-mentioned deficiencies of the prior art, the purpose of the present application is to provide a pocket-type vehicle lamp, which solves the problem in the prior art that the vehicle lamp is inconvenient to place and carry when used alone, causing inconvenience in use.

[0006] The present application provides a pocket-insertion type vehicle lamp, comprising: a housing, the housing having a first housing portion and a second housing portion, the first housing portion and the second housing portion being spaced apart to form a pocket-insertion position, the pocket-insertion position being open at one end in the length direction to form a pocket-insertion opening;

[0007] The charging port cover body includes a flexible connection part and a cover shell, one end of the flexible connection part is arranged in the pocket insertion position, and the other end extends toward the pocket insertion opening and is connected to the cover shell;

[0008] The flexible connection part is located in the pocket insertion opening, and the gap of the pocket insertion opening is expanded or reduced through elastic deformation of the flexible connection part.

[0009] Optionally, the flexible connection portion is connected to the first shell portion, and a surface of the flexible connection portion facing the second shell portion forms an extrusion surface.

[0010] Optionally, the extrusion surface includes inclined sections at both ends in the length direction, so that a closing section is formed in the middle of the extrusion surface in the length direction, and the closing section protrudes toward the second shell portion.

[0011] Optionally, a guide rib is provided on the side wall of the first shell portion at the side of the pocket insertion position, and the guide rib is arranged at intervals in the width direction to form a positioning groove, and the flexible connecting part is embedded in the positioning groove.

[0012] Optionally, a surface of the closing section facing the second shell portion protrudes out of the positioning groove.

[0013] Optionally, a charging cover connecting hole is opened on the first shell portion, and a charging cover mounting portion is provided at one end of the flexible connecting portion away from the cover shell, and the charging cover mounting portion is connected to the charging cover connecting hole.

[0014] Optionally, the charging cover mounting portion includes: a connecting platform connected to the flexible connecting portion;

[0015] The extrusion head is connected to the connection platform, a matching groove is formed between the extrusion head and the flexible connection part, the extrusion head enters the charging cover connection hole by being deformed by pressure, and the wall of the first shell part is stuck in the matching groove.

[0016] Optionally, a protrusion is provided in the pocket insertion position, and the protrusion is located on a side of the flexible connection portion away from the pocket insertion opening.

[0017] Optionally, the protrusion has an arc-shaped convex surface, and the protrusion passes through the top of the arc-shaped convex surface to reduce the spacing distance between the first shell portion and the second shell portion.

[0018] Optionally, a material reduction groove is provided on one side of the cover shell connected to the flexible connection part, and the connection between the flexible connection part and the cover shell is located on the side of the material reduction groove away from the pocket insertion opening.

[0019] Beneficial effect: A pocket-inserting headlight in the present application is formed by dividing the shell into a first shell part and a second shell part, so that a pocket-inserting position is formed between the two, and the charging port cover is arranged at the pocket-inserting opening of the pocket-inserting position. After the headlight is removed from the frame, when it is used alone, the shell can be inserted into the edge of a clothes pocket, a collar, the cuff of pants, a strap or a belt, etc. During the insertion into the pocket, the edge of the pocket is first located at the pocket opening, and then the flexible connection part is elastically deformed by squeezing the flexible connection part, thereby expanding the gap of the pocket opening, so that the edge of the pocket can smoothly enter the pocket insertion position, and the flexible connection part is elastically deformed to squeeze the outer layer of the pocket, thereby achieving a clamping effect, so that the pocket-inserting headlight is not easy to fall off from the clothes. It makes the headlight more convenient to place, more portable, and more practical. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 A right side view of the structure of a pocket-type vehicle lamp according to an embodiment of the present application;

[0021] Figure 2 A cross-sectional view of the structure of a pocket-type vehicle lamp according to an embodiment of the present application;

[0022] Figure 3 A partial cross-sectional view of a housing and a charging port cover of a pocket-type vehicle lamp according to an embodiment of the present application after being disassembled;

[0023] Figure 4 This is a partial cross-sectional view from another perspective of a pocket-type vehicle lamp after the shell and charging port cover of the embodiment of the present application are disassembled.

[0024] In the figure: 100, shell; 110, first shell part; 111, guide rib plate; 112, positioning groove; 113, charging cover connection hole; 120, second shell part; 130, pocket insertion position; 131, pocket insertion opening; 140, charging connection port; 141, charging connector; 150, raised portion; 151, arc-shaped convex surface; 200, charging port cover; 210, flexible connection part; 211, extrusion surface; 212, inclined section; 213, closing section; 220, cover shell; 221, protective cavity; 222, material reduction groove; 230, charging cover installation part; 231, connecting platform; 232, extrusion head; 233, chamfer; 240, matching groove. DETAILED DESCRIPTION

[0025] In order to make the purpose, technical solution and advantages of the present application clearer and more specific, the present application is further described in detail with reference to the accompanying drawings and examples. It should be understood that the specific examples described here are only used to explain the present application and are not used to limit the present application.

[0026] like Figure 1 , Figure 2As shown, this embodiment proposes that this application provides a pocket-type headlight, which can be installed on the frame for use and can also be disassembled and used separately. Since this pocket-type headlight has its own plug-in structure, it can be inserted at the edge of clothing for use, such as the edge of a clothing pocket, the collar position, the cuff of a trouser, a strap or a belt. For the convenience of description, this embodiment takes the insertion into a pocket as an example for structural description. The pocket-type headlight of this embodiment mainly includes: a housing 100 and a charging port cover 200. The outer contour of the entire housing 100 is rectangular. For the convenience of structural description, the thickness direction of the housing 100 is the up-down direction, the direction of the long side of the rectangular housing 100 is the length direction, which is also the front-back direction; the direction of the short side is the width direction, which is also the left-right direction. A light board and related control circuits are arranged in the housing 100 to realize the lighting function of the headlight. The housing 100 has a first housing 110 and a second housing 120, with the direction of the first housing 110 being the top and the direction of the second housing 120 being the bottom. The first shell 110 and the second shell 120 are spaced apart in the vertical direction to form a pocket insertion position 130, and the pocket insertion position 130 is open at the front end to form a pocket insertion opening 131; the first shell 110 and the second shell 120 are connected at the rear end. In the length direction, the length of the first shell 110 is greater than the length of the second shell 120. A charging connection port 140 is provided at the front end of the first shell 110 or the front end of the second shell 120, and the charging connection port 140 is used to install a charging connector 141, and the charging connector 141 can protrude from the charging connection port 140 toward the front side. The charging port cover 200 mainly includes a flexible connection part 210 and a cover shell 220. One end of the flexible connection part 210 is arranged in the pocket insertion position 130, and the other end extends toward the pocket insertion opening 131 and connects to the cover shell 220. In the specific structure, the flexible connection part 210 is extended in the front-to-back direction, the rear end of the flexible connection part 210 is installed on the first shell part 110 or the second shell part 120 (arranged corresponding to the charging connector 141), and the front end is connected to the cover shell 220, so that the shell cover is located outside the pocket insertion opening 131. The cover shell 220 can be folded and pulled forward through the flexible deformation of the flexible connection part 210. It is also a soft rubber that can be deformed, so that the cover shell 220 can be sleeved on the charging connector 141 to seal the charging connection port 140. The flexible connection part 210 is located in the pocket insertion opening 131, and the gap of the pocket insertion opening 131 is expanded or reduced through the elastic deformation of the flexible connection part 210. Therefore, the entire charging port cover 200 structure not only seals the charging connection port 140 and effectively protects the charging connector 141, but also serves as an elastic stopper structure of the pocket opening 131 to press the clothes.

[0027] The present embodiment proposes a pocket-insertion lamp, which is formed by dividing the housing 100 into a first housing part 110 and a second housing part 120, so that a pocket-insertion position 130 is formed between the two, and the charging port cover 200 is arranged at the pocket-insertion opening 131 of the pocket-insertion position 130. After the lamp is removed from the frame, the housing 100 can be inserted into the edge of the pocket of clothes when it is used alone. During the insertion into the pocket, the edge of the pocket is first located at the pocket-insertion opening 131, and then the flexible connection part 210 is squeezed to make the flexible connection part 210 elastically deformed, thereby expanding the gap of the pocket-insertion opening 131, so that the edge of the pocket smoothly enters the pocket-insertion position 130, and the flexible connection part 210 is elastically deformed to squeeze the outer layer of the pocket, thereby achieving a clamping effect, so that the pocket-insertion lamp is not easy to fall off from the clothes. In particular, when repairing a car, the pocket-insertion position 130 can be inserted into the collar position, and the flexible connection part 210 clamps the clothes, thereby providing stable lighting, and the user does not need to use his hands to take the lamp, so that both hands can be used for car repair work, which is more convenient to use. The entire charging port cover 200 structure not only seals the charging connection port 140 , but also serves as an elastic stopper structure for the pocket opening 131 to press clothing, thereby optimizing the vehicle light structure and enhancing practicality.

[0028] like Figure 2 , Figure 3 As shown, further, the flexible connection part 210 in this embodiment is connected to the first shell part 110, and the surface of the flexible connection part 210 facing the second shell part 120 forms an extrusion surface 211. In the specific structure, the lower surface of the flexible connection part 210 is the extrusion surface 211. In the process of inserting the headlight into the edge of the pocket, the clothes are pressed by the elastic deformation of the flexible connection part 210, so that the first shell part 110 is located outside the pocket and the second shell part 120 is located inside the pocket, so that the headlight is hung in the pocket. Through the pressing of the extrusion surface 211, a clamping structure can be formed, so that the headlight is not easy to slip out of the pocket.

[0029] like Figure 2 , Figure 3As shown, further, the extrusion surface 211 in this embodiment includes inclined sections 212 located at both ends in the length direction, so that a closing section 213 is formed in the middle of the extrusion surface 211 in the length direction. The end of the inclined section 212 along the length direction of the extrusion surface 211 gradually approaches the second shell 120 toward the middle, so that the closing section 213 located in the middle is protruded toward the second shell 120 in the pocket insertion position 130. The opening between the inclined section 212 at the front end of the extrusion surface 211 and the outer wall of the second shell 120 becomes smaller from front to back, and when the car light is hung at the pocket, it can be guided to facilitate insertion into the edge of the pocket. The closing section 213 in the middle makes the pocket insertion opening 131 smaller, so that the pocket edge enters the pocket insertion position 130 and closes. The inclined section 212 at the rear end of the extrusion surface 211 makes the gap of the pocket insertion position 130 larger and larger from front to back, making the flexible connection part 210 smoother and providing enough hanging space for the pocket insertion position 130.

[0030] like Figure 2 , Figure 4 As shown, further, in this embodiment, a guide rib 111 is provided on the side wall of the first shell 110 located on one side of the pocket insertion position 130. The guide ribs 111 are arranged at intervals in the width direction to form a positioning groove 112, and the flexible connection part 210 is embedded in the positioning groove 112. In the specific structure, there are two guide ribs 111, each of which is extended in the front-to-back direction. The two guide ribs 111 are spaced in the left-right direction to form a positioning groove 112 between the two. The flexible connection part 210 is embedded in the positioning groove 112. In the process of pulling or bending the cover shell 220, the deformed flexible connection part 210 is not easily displaced by the limitation of the guide ribs 111 on the left and right sides, which ensures that the flexible connection part 210 can still remain in the original position during the process of returning to its original position after deformation, thereby improving the use stability of the charging port cover 200.

[0031] In addition, the structural strength of the first shell portion 110 is also enhanced by the two guide ribs 111 . Both of the two guide ribs 111 are triangular plate structures, which makes the structural strength of the shell 100 higher and improves the product quality.

[0032] like Figure 2 , Figure 4 As shown, further, the closing section 213 in this embodiment protrudes from the positioning groove 112 on the surface facing the second shell 120. In this way, the middle part of the flexible connection part 210 is higher than the surface of the guide ribs 111 on both sides, so that the closing section 213 of the flexible connection part 210 can be deformed after being squeezed, so as to better realize the function of pressing the clothes.

[0033] like Figure 2 , Figure 3 , Figure 4As shown, further, in this embodiment, a charging cover connection hole 113 is provided on the first shell portion 110, and a charging cover mounting portion 230 is provided at one end of the flexible connection portion 210 away from the cover shell 220, and the charging cover mounting portion 230 is connected to the charging cover connection hole 113. The charging cover mounting portion 230, the flexible connection portion 210 and the cover shell 220 in this embodiment are integrally formed, and the material thereof is made of silicone material, which is relatively soft and easy to deform under pressure. Therefore, the charging cover mounting portion 230 is squeezed and contracted, so as to be embedded in the charging cover connection hole 113 to achieve connection. With this structure, the connection stability of the flexible connection portion 210 is improved.

[0034] like Figure 2 , Figure 3 , Figure 4 As shown, the charging cover connecting hole 113 is arranged in the positioning groove 112. When the flexible connecting part 210 is connected to the charging cover connecting hole 113 through the charging cover mounting part 230, the guide ribs 111 on both sides limit the rear end of the flexible connecting part 210 (the position corresponding to the charging cover mounting part 230). During the deformation process of the flexible connecting part 210, the rear end of the flexible connecting part 210 is not easy to shake in the left and right directions, so it is not easy to shake the charging cover mounting part 230 out of the charging cover connecting hole 113.

[0035] like Figure 3 , Figure 4 As shown, further, the charging cover mounting portion 230 in this embodiment specifically includes: a connecting platform 231 and an extrusion head 232. The connecting platform 231 is connected to the flexible connecting portion 210, and the outer contour size of the connecting platform 231 matches the inner contour of the charging cover connecting hole 113; the extrusion head 232 is connected to the connecting platform 231, and the outer edge size of the extrusion head 232 is larger than the edge size of the connecting platform 231, so that the extrusion head 232 is larger than the charging cover connecting hole 113 when no force is applied, so a matching groove 240 is formed between the extrusion head 232 and the flexible connecting portion 210, and the extrusion head 232 enters the charging cover connecting hole 113 by being deformed by pressure. After the extrusion head 232 completely enters the charging cover connecting hole 113, it returns to its original state without being pressed, and the connecting platform 231 is located in the charging cover connecting hole 113 and the flexible connecting portion 210 is located outside the connecting hole, so that the wall of the first shell 110 is stuck in the matching groove 240.

[0036] In order to prevent the charging cover mounting portion 230 from being easily dislodged from the charging cover connection hole 113, the extrusion head 232 is in a square shape. A chamfer 233 is provided on the edge of the extrusion head 232 on the side away from the flexible connection portion 210. The chamfer 233 has a guiding function, which facilitates the extrusion head 232 to be squeezed into the charging cover connection hole 113. The side of the extrusion head 232 facing the connection platform 231 is a vertical surface, which serves as a stop surface to prevent the extrusion head 232 from being easily dislodged from the charging cover connection hole 113.

[0037] like Figure 1 , Figure 2 , Figure 4 As shown, further, in this embodiment, a protrusion 150 is provided in the pocket insertion position 130, and the protrusion 150 is located on the side of the flexible connection portion 210 away from the pocket insertion opening 131. The protrusion 150 is provided in the pocket insertion position 130, which has a pressing effect on the clothes. Since the protrusion 150 is not easy to deform, the clothes are compressed and embedded in the position of the protrusion 150 after being pressed, and are inserted into the pocket or hung on the clothes more firmly.

[0038] like Figure 2 , Figure 4 As shown, further, the raised portion 150 in this embodiment has an arcuate convex surface 151, and the raised portion 150 reduces the spacing between the first shell portion 110 and the second shell portion 120 through the top of the arcuate convex surface 151. The spacing between the front and rear ends of the arcuate convex surface 151 and the second shell portion 120 is large, while the spacing between the top and the second shell portion 120 is small, so that the edge of the pocket or the clothes can be inserted into the pocket insertion position 130 along the arcuate convex surface 151, the pocket insertion process of the car light is smoother, and the use of the car light is more convenient.

[0039] like Figure 2 , Figure 3 As shown, further, a material reduction groove 222 is provided on one side of the cover shell 220 connected to the flexible connection part 210 in this embodiment, and the connection between the flexible connection part 210 and the cover shell 220 is located on the side of the material reduction groove 222 away from the pocket opening 131. In the specific structure, a protective cavity 221 is provided on the rear end face of the cover shell 220 for sleeved on the charging connector 141, and the material reduction groove 222 is located at the junction of the rear end face and the lower end face of the cover shell 220, and the material reduction groove 222 is on the outside of the protective cavity 221. The flexible connection part 210 is connected to the lower end face of the cover shell 220. In this way, the flexible connection part 210 extending in the front-to-back direction is located below the material reduction groove 222. The material reduction groove 222 can make way for the deformation of the flexible connection part 210, thereby increasing the deformation amount of the front end of the flexible connection part 210 after being subjected to force, making the deformation amount of this position larger, which not only makes it easier to buckle the cover shell 220 onto the charging connector 141 and also easier to unplug the charging connector 141; and when the edge of the bag opening is relatively thick, the front end of the flexible connection part 210 can produce a greater deformation, making the insertion of the bag opening more convenient.

[0040] In summary, a pocket-insertion type headlight in the present application is formed by dividing the shell into a first shell part and a second shell part, so that a pocket-insertion position is formed between the two, and the charging port cover is arranged at the pocket-insertion opening of the pocket-insertion position. After the headlight is removed from the frame, when it is used alone, the shell can be inserted into the edge of a clothes pocket, a collar, the cuff of pants, a strap or a belt, etc. During the insertion into the pocket, the edge of the pocket is first located at the pocket-insertion opening, and then the flexible connection part is elastically deformed by squeezing the flexible connection part, thereby expanding the gap of the pocket-insertion opening, so that the edge of the pocket can smoothly enter the pocket-insertion position, and the flexible connection part is elastically deformed to squeeze the outer layer of the pocket, thereby achieving a clamping effect, so that the pocket-insertion type headlight is not easy to fall off from the clothes. It makes the headlight more convenient to place, more portable, and more practical.

[0041] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A pocket-type vehicle lamp, characterized in that: include: A shell, the shell having a first shell portion and a second shell portion, the first shell portion and the second shell portion are spaced apart to form a pocket insertion position, and the pocket insertion position is open at one end in the length direction to form a pocket insertion opening; A charging port cover, the charging port cover comprising a flexible connection portion and a cover shell, one end of the flexible connection portion being disposed in the pocket insertion position and the other end extending toward the pocket insertion opening and connected to the cover shell; The flexible connection part is located in the pocket insertion opening, and the gap of the pocket insertion opening is expanded or reduced through elastic deformation of the flexible connection part.

2. The pocket-type vehicle lamp according to claim 1, characterized in that: The flexible connection portion is connected to the first shell portion, and a surface of the flexible connection portion facing the second shell portion forms an extrusion surface.

3. The pocket-type vehicle lamp according to claim 2, characterized in that: The extrusion surface includes inclined sections at both ends in the length direction, so that a closing section is formed in the middle of the extrusion surface in the length direction, and the closing section protrudes toward the second shell part.

4. The pocket-type vehicle lamp according to claim 3, characterized in that: A guide rib is provided on the side wall of the first shell portion at one side of the pocket insertion position. The guide ribs are arranged at intervals in the width direction to form a positioning groove, and the flexible connecting portion is embedded in the positioning groove.

5. The pocket-type vehicle lamp according to claim 4, characterized in that: A surface of the closing section facing the second shell portion protrudes from the positioning groove.

6. The pocket-type vehicle lamp according to claim 2, characterized in that: A charging cover connecting hole is provided on the first shell portion, and a charging cover mounting portion is provided at one end of the flexible connecting portion away from the cover shell, and the charging cover mounting portion is connected to the charging cover connecting hole.

7. The pocket-type vehicle lamp according to claim 6, characterized in that: The charging cover mounting portion includes: a connecting platform, the connecting platform is connected to the flexible connecting portion; An extrusion head is connected to the connecting platform, a matching groove is formed between the extrusion head and the flexible connecting part, the extrusion head enters the charging cover connecting hole by being deformed by pressure, and the wall of the first shell part is stuck in the matching groove.

8. The pocket-type vehicle lamp according to claim 1, characterized in that: A convex portion is arranged in the pocket insertion position, and the convex portion is located at a side of the flexible connection portion away from the pocket insertion opening.

9. The pocket-type vehicle lamp according to claim 8, characterized in that: The protrusion has an arc-shaped convex surface, and the protrusion passes through the top of the arc-shaped convex surface to reduce the spacing distance between the first shell part and the second shell part.

10. The pocket-type vehicle lamp according to any one of claims 1 to 9, characterized in that: A material reduction groove is provided on one side of the cover shell connected to the flexible connection part, and the connection between the flexible connection part and the cover shell is located on the side of the material reduction groove away from the pocket insertion opening.