Novel neck lamp

By simplifying the internal structure of the neck light and using inclined light-transmitting holes and transparent covers, combined with a detachable shell and LED light panel, multi-angle lighting effects and economic benefits are achieved, solving the problems of complex structure and high cost of existing neck lights.

CN224261573UActive Publication Date: 2026-05-19NINGBO SHENGTU ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO SHENGTU ELECTRONIC TECHNOLOGY CO LTD
Filing Date
2025-05-30
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing neck lights have complex structural designs, are difficult to manufacture, and have high costs.

Method used

The lamp features a simple internal structure, utilizing the light-transmitting holes and transparent cover arranged at an angle on the mounting base, combined with an LED light panel and a detachable housing assembly to achieve multi-angle lighting effects, and is equipped with an adjustable hanging rope assembly.

Benefits of technology

It reduces manufacturing difficulty, has multiple light-emitting modes, is economical, has low energy consumption, and features charging functionality and overcharge/over-discharge protection.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224261573U_ABST
Patent Text Reader

Abstract

The utility model discloses a novel neck hanging lamp, which belongs to the technical field of lighting lamps and comprises a lamp body component, the lamp body component comprises a first shell, a mounting seat is obliquely arranged in the first shell and on the side wall of the first shell, and a light hole penetrating through the first shell is formed in the mounting seat. A lamp source is arranged on the side, facing the interior of the first shell, of the mounting base, and a transparent cover matched with the exterior of the first shell is arranged on the side, facing the exterior of the first shell, of the mounting base. According to the scheme, the mounting base is used for arranging the lamp source, the lamp source can be obliquely arranged by obliquely arranging the mounting base, and therefore the inclined plane position of the first shell also has the light emitting effect; the first shell can also transmit light, so that the multi-angle light emitting effect is achieved; a light source can be put into one side of the transparent cover through the light hole in the mounting seat, and light rays are more concentrated and brighter through the light hole; and the lamp body is simple in internal structural design and low in manufacturing difficulty, and has more economic benefits.
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Description

Technical Field

[0001] This utility model relates to a lighting fixture, and more specifically, to a novel neck lamp. Background Technology

[0002] As a wearable device combining ergonomics and intelligent lighting, the technological evolution of neck lamps reflects the modern consumer electronics industry's dual pursuit of portability and a healthy lighting environment. Neck lamps were initially developed from traditional reading lamps, employing a neck-hanging design to address the inconvenience of holding them with both hands. Existing neck lamps are mostly double-arm structures, with complex designs and high costs.

[0003] For example, Chinese Patent Publication No. CN214037911U, published on August 24, 2021, entitled "Neck Lamp," includes: a connecting part, which is bendable and deformable; a neck part connected to the connecting part, which is a rigid neck part; a lamp head, which has a lighting lamp head; the connecting part connected to the lamp head; a first rigid member, which is provided at the connection between the connecting part and the neck part; and / or a second rigid member, which is provided at the connection between the connecting part and the lamp head. This solution avoids gaps at the soft and rigid joints of the neck lamp, preventing foreign objects from entering the interior of the neck lamp through the gaps and affecting its use, and also improves the aesthetics of the neck lamp. However, this solution makes the structural design of the neck part too complex, significantly increasing the difficulty of lamp body installation design and increasing various technical costs. Utility Model Content

[0004] This invention overcomes the problems of complex structure, high production difficulty, and high cost of existing neck lights, and provides a new type of neck light. The internal structure of the lamp body of this solution is simple and the manufacturing difficulty is low. While retaining the basic functions of a neck light, it is more economical.

[0005] To solve the above-mentioned technical problems, this utility model adopts the following technical solution: a novel neck lamp, including a lamp body assembly, the lamp body assembly including a first housing, a mounting base arranged obliquely inside the first housing and on the side wall of the first housing, the mounting base having a light-transmitting hole penetrating the first housing, a light source being provided on the side of the mounting base facing inward of the first housing, and a transparent cover adapted to the outside of the first housing being provided on the side of the mounting base facing outward of the first housing. In this solution, the mounting base is used to arrange the light source, and the oblique arrangement of the mounting base allows the light source to be arranged obliquely, thereby enabling the oblique surface of the first housing to also have a light-emitting effect; the first housing itself can also transmit light, thus having a multi-angle light-emitting effect; the light-transmitting hole on the mounting base can project the light source onto the side of the transparent cover, making the light more concentrated and brighter, while the light transmission of the first housing itself is softer, thus the neck lamp has multiple lighting effects and multi-angle lighting effects. While retaining the basic functions of a neck lamp, the internal structure design of the lamp body is simple, the manufacturing difficulty is reduced, and it is more economical.

[0006] Preferably, the mounting base has first positioning holes symmetrically arranged on both sides of the light-transmitting hole, and the transparent cover has a first positioning block adapted to the positioning holes. The transparent cover is fixedly connected to the first positioning block and the first positioning hole on the mounting base, thereby fixing the transparent cover, and the transparent cover faces the light-transmitting hole.

[0007] Preferably, the light source is an LED light panel, which has a second positioning hole, and the mounting base has a second positioning block that matches the second positioning hole. The LED light panel is fixed by the second positioning hole and the second positioning block on the mounting base, which can effectively fix the position of the light source inside the first housing and ensure the lighting effect.

[0008] Preferably, the device also includes a power supply assembly comprising a PCB board and a lithium battery, the PCB board being electrically connected to the lithium battery. The power supply assembly provides energy to the neck lamp, and the lithium battery allows for cyclic charging, enhancing the neck lamp's continuous usability.

[0009] Preferably, the PCB board is provided with a charging female connector, and the first housing is provided with a first slot adapted to the charging female connector. The first slot is used to install the charging female connector structure. One end of the charging female connector is connected to the PCB board inside the first housing, and the other end of the charging female connector extends out of the first slot to facilitate user charging of the battery.

[0010] Preferably, the PCB board is provided with a button, and the first housing is provided with a second slot adapted to the button. The second slot is used to install the button structure, with one end of the button connected to the PCB board inside the first housing, and the other end of the button extending out of the second slot, making it convenient for the user to adjust the neck light by the button.

[0011] Preferably, the PCB board has mounting holes, and the first housing has a positioning part inside that matches the mounting holes. The mounting holes and the positioning part are connected by screws. The mounting holes on the PCB board are fixedly connected to the positioning part of the first housing by screws, thus fixing the PCB board in place.

[0012] Preferably, the device also includes a second housing, which is adapted to and detachably connected to the first housing. When the second and first housings are combined, they house and protect the power supply components and light source, while also enhancing the aesthetics of the neck light. The detachable connection between the first and second housings facilitates disassembly and maintenance of the neck light.

[0013] Preferably, the first housing and the second housing are connected by a snap-fit ​​mechanism. This snap-fit ​​connection between the first and second housings is simple in its fixing method and easy to disassemble.

[0014] Preferably, the first housing is milky white. As a milky white housing, the first housing can transmit light generated by the light source and makes the light softer.

[0015] Preferably, the device also includes a lanyard assembly, which comprises a lanyard and an outer casing integrally connected to the lanyard, with the lamp body assembly disposed inside the outer casing. The lanyard allows the neck lamp to be hung around the neck, freeing the user's hands. The length of the lanyard is adjustable, thereby changing the position of the neck lamp in front of the body. The outer casing is used to house and protect the lamp body assembly.

[0016] Compared with the prior art, the beneficial effects of this utility model are: (1) The internal structure of the lamp body is simple and the manufacturing difficulty is low. While retaining the basic functions of the neck lamp, it is more economical; (2) The neck lamp has multiple light-emitting modes and light-emitting effects; (3) The energy consumption is low and it has charging effect and overcharge and over-discharge protection. Attached Figure Description

[0017] Figure 1 This is an isometric view of the present invention.

[0018] Figure 2 This is the front view of the present invention.

[0019] Figure 3 This is an exploded view of the lamp body assembly of this utility model.

[0020] Figure 4 This is a schematic diagram of the structure of the first housing of this utility model.

[0021] Figure 5 This is a schematic diagram of the hanging rope assembly and lamp body assembly before assembly.

[0022] Figure 6 This is a schematic diagram of one side of the lamp body assembly and outer casing after assembly.

[0023] Figure 7 This is a schematic diagram of the other side of the lamp body assembly and outer casing after assembly.

[0024] In the diagram: 1. Lamp body assembly, 2. First housing, 3. Second housing, 4. Mounting base, 5. Light-transmitting hole, 6. LED light board, 7. Transparent cover, 8. First positioning hole, 9. First positioning block, 10. Second positioning hole, 11. Second positioning block, 12. PCB board, 13. Lithium battery, 14. Charging female connector, 15. First slot, 16. Button, 17. Second slot, 18. Mounting hole, 19. Positioning part, 20. Screw, 21. Hanging rope, 22. Adjustment hole, 23. Positioning slot, 24. Positioning block, 25. Outer cover. Detailed Implementation

[0025] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0026] Example 1: As Figures 1 to 6 The novel neck lamp shown includes a lamp body assembly 1, which includes a first housing 2 and a second housing 3. The first housing 2 is the front cover of the neck lamp, and the second housing 3 is the rear cover of the neck lamp. Both the first housing 2 and the second housing 3 are elliptical housings, and the first housing 2 and the second housing 3 cooperate to form a cavity inside.

[0027] A mounting base 4 is provided in the first housing 2. The mounting base 4 is arranged inside the first housing 2 and at the inner edge of the first housing 2. One side of the mounting base 4 is located at the bottom of the first housing 2, and the other side is located at the edge of the assembly position of the first housing 2, thus forming an inclined arrangement inside the first housing 2. A groove is formed between the mounting base 4 and the outside of the first housing 2. A transparent cover 7 is provided on the outside of the first housing 2 at the position corresponding to the groove. The transparent cover 7 can be fitted into the groove and is flush with the outer surface of the first housing 2, so that the transparent cover 7 and the outside of the first housing 2 are flat and beautiful, and have a decorative effect.

[0028] Specifically, a first positioning hole 8 is arranged on the mounting base 4, and a first positioning block 9 is arranged on the transparent cover 7. There are two sets of first positioning holes 8. The first positioning hole 8 is a rectangular through hole that passes through the mounting base 4. The first positioning block 9 is a mounting block that is adapted to the first positioning hole 8. An inverted snap-fit ​​structure is provided on the first positioning block 9. The transparent cover 7 is an arc-shaped cover structure. The first positioning block 9 is arranged on the concave side of the transparent cover 7. When the transparent cover 7 is assembled with the first housing 2, the first positioning block 9 on the transparent cover 7 will pass through the mounting base 4 from the outside of the first housing 2 to the inside of the first housing 2, and then snap onto the inclined surface of the mounting base 4 through the inverted snap-fit ​​structure, thereby realizing the assembly of the transparent cover 7 and the first housing 2.

[0029] A light-transmitting hole 5 is provided on the mounting base 4, located in the middle of the mounting base 4. The light-transmitting hole 5 penetrates the mounting base 4 and connects the inner and outer sides of the first housing 2. The position of the light-transmitting hole 5 also corresponds to the position of the transparent cover 7. A light source structure is provided on the side of the mounting base 4 facing the inside of the first housing 2. The light source is attached to the surface of the mounting base 4 and fixed. Specifically, the light source is an LED light board 6 structure. The upper surface of the mounting base 4 is an inclined surface to accommodate the installation of the LED light board 6. An LED light is provided on one side of the LED light board 6, and the LED light is arranged facing the outside of the first housing 2. In other words, the LED light is arranged at the position of the light-transmitting hole 5 and facing the side where the transparent cover 7 is located.

[0030] Specifically, a second positioning block 11 is provided on the mounting base 4, and a second positioning hole 10 is provided on the LED light board 6 structure. The second positioning block 11 is arranged on the inclined surface of the mounting base 4 facing the interior of the first housing 2. The second positioning block 11 is a positioning post structure that is vertically or perpendicularly arranged on the inclined surface of the mounting base 4. One end of the second positioning block 11 is fixed on the mounting base 4, and the other end is a wedge-shaped structure, which facilitates the insertion of the second positioning hole 10 on the LED light board 6 into the second positioning block 11. After the second positioning hole 10 and the second positioning block 11 are assembled, a stable fit can be formed to prevent the position of the LED light board 6 from moving.

[0031] After the light source is installed, the LEDs on the LED light panel 6 are positioned within the light-transmitting holes 5 and aligned with the transparent cover 7. When the LEDs emit light, the light passes through the transparent cover 7 to achieve the illumination effect. Furthermore, the light emitted by the LEDs is more concentrated through the light-transmitting holes 5, producing a brighter lighting effect at the transparent cover 7. Additionally, the first housing 2 is a milky-white housing, which also allows for some light transmission. The light emitted by the LED light panel 6, after passing through the first housing 2, displays a softer lighting effect. Therefore, this neck light can achieve illumination or warning through the transparent cover 7, and can also achieve nighttime reading through the soft light generated by the first housing 1.

[0032] The second housing 3 is an elliptical housing, and the second housing 3 and the first housing 2 are detachably connected. Specifically, a plurality of positioning slots 23 are provided on the inner edge of the first housing 2, and the same number of positioning blocks 24 as the positioning slots 23 are provided on the inner edge of the second housing 3. The positioning blocks 24 and the positioning slots 23 can be fitted together. Specifically, in this embodiment, the number of positioning slots 23 and positioning blocks 24 is set to four sets. A snap-fit ​​structure is provided inside the positioning slots 23, and a barb structure is also provided on the positioning blocks 24. When the first housing 2 and the second housing 3 are assembled, the barbs on the positioning blocks 24 snap into the snap-fit ​​slots of the positioning slots 23, thereby fixing the first housing 2 and the second housing 3.

[0033] The neck lamp also includes a hanging cord assembly, which consists of a hanging cord and an outer casing. The hanging cord and outer casing are integrally molded and both are made of silicone rubber. The hanging cord 21 has a split design, meaning there are two cords 21. One end of each cord 21 is connected to the outer casing 25, and the other ends can be joined together to form a loop. Specifically, one cord 21 has two sets of adjustment holes 22, through which the other cord 21 can pass, allowing the overall length of the two cords 21 to be adjusted. This means the circumference of the cords when they form a loop can be adjusted to suit different usage scenarios or users. The outer casing 25 has an internal cavity that fits the lamp body assembly 1. An insertion port is provided on one side of the outer casing 25, through which the lamp body assembly 1 can be embedded. The first housing 2 of the lamp body assembly 1, away from the second housing 3, and the transparent cover 7 are both located on the side of the insertion port, ensuring the luminous effect of the first housing 2 and the transparent cover 7.

[0034] Example 2: As Figures 1 to 6 The novel neck lamp shown includes a lamp body assembly 1, which includes a first housing 2 and a second housing 3. The first housing 2 is the front cover of the neck lamp, and the second housing 3 is the rear cover of the neck lamp. Both the first housing 2 and the second housing 3 are elliptical housings, and the first housing 2 and the second housing 3 cooperate to form a cavity inside.

[0035] A mounting base 4 is provided in the first housing 2. The mounting base 4 is arranged inside the first housing 2 and at the inner edge of the first housing 2. One side of the mounting base 4 is located at the bottom of the first housing 2, and the other side is located at the edge of the assembly position of the first housing 2, thus forming an inclined arrangement inside the first housing 2. A groove is formed between the mounting base 4 and the outside of the first housing 2. A transparent cover 7 is provided on the outside of the first housing 2 at the position corresponding to the groove. The transparent cover 7 can be fitted into the groove and is flush with the outer surface of the first housing 2, so that the transparent cover 7 and the outside of the first housing 2 are flat and beautiful, and have a decorative effect.

[0036] Specifically, a first positioning hole 8 is arranged on the mounting base 4, and a first positioning block 9 is arranged on the transparent cover 7. There are two sets of first positioning holes 8. The first positioning hole 8 is a rectangular through hole that passes through the mounting base 4. The first positioning block 9 is a mounting block that is adapted to the first positioning hole 8. An inverted snap-fit ​​structure is provided on the first positioning block 9. The transparent cover 7 is an arc-shaped cover structure. The first positioning block 9 is arranged on the concave side of the transparent cover 7. When the transparent cover 7 is assembled with the first housing 2, the first positioning block 9 on the transparent cover 7 will pass through the mounting base 4 from the outside of the first housing 2 to the inside of the first housing 2, and then snap onto the inclined surface of the mounting base 4 through the inverted snap-fit ​​structure, thereby realizing the assembly of the transparent cover 7 and the first housing 2.

[0037] A light-transmitting hole 5 is provided on the mounting base 4, located in the middle of the mounting base 4. The light-transmitting hole 5 penetrates the mounting base 4 and connects the inner and outer sides of the first housing 2. The position of the light-transmitting hole 5 also corresponds to the position of the transparent cover 7. A light source structure is provided on the side of the mounting base 4 facing the inside of the first housing 2. The light source is attached to the surface of the mounting base 4 and fixed. Specifically, the light source is an LED light board 6 structure. The upper surface of the mounting base 4 is an inclined surface to accommodate the installation of the LED light board 6. An LED light is provided on one side of the LED light board 6, and the LED light is arranged facing the outside of the first housing 2. In other words, the LED light is arranged at the position of the light-transmitting hole 5 and facing the side where the transparent cover 7 is located.

[0038] Specifically, a second positioning block 11 is provided on the mounting base 4, and a second positioning hole 10 is provided on the LED light board 6 structure. The second positioning block 11 is arranged on the inclined surface of the mounting base 4 facing the interior of the first housing 2. The second positioning block 11 is a positioning post structure that is vertically or perpendicularly arranged on the inclined surface of the mounting base 4. One end of the second positioning block 11 is fixed on the mounting base 4, and the other end is a wedge-shaped structure, which facilitates the insertion of the second positioning hole 10 on the LED light board 6 into the second positioning block 11. After the second positioning hole 10 and the second positioning block 11 are assembled, a stable fit can be formed to prevent the position of the LED light board 6 from moving.

[0039] After the light source is installed, the LEDs on the LED light panel 6 are positioned within the light-transmitting holes 5 and aligned with the transparent cover 7. When the LEDs emit light, the light passes through the transparent cover 7 to achieve the illumination effect. Furthermore, the light emitted by the LEDs is more concentrated through the light-transmitting holes 5, producing a brighter lighting effect at the transparent cover 7. Additionally, the first housing 2 is a milky-white housing, which also allows for some light transmission. The light emitted by the LED light panel 6, after passing through the first housing 2, displays a softer lighting effect. Therefore, this neck light can achieve illumination or warning through the transparent cover 7, and can also achieve nighttime reading through the soft light generated by the first housing 1.

[0040] The second housing 3 is an elliptical housing, and the second housing 3 and the first housing 2 are detachably connected. Specifically, a plurality of positioning slots 23 are provided on the inner edge of the first housing 2, and the same number of positioning blocks 24 as the positioning slots 23 are provided on the inner edge of the second housing 3. The positioning blocks 24 and the positioning slots 23 can be fitted together. Specifically, in this embodiment, the number of positioning slots 23 and positioning blocks 24 is set to four sets. A snap-fit ​​structure is provided inside the positioning slots 23, and a barb structure is also provided on the positioning blocks 24. When the first housing 2 and the second housing 3 are assembled, the barbs on the positioning blocks 24 snap into the snap-fit ​​slots of the positioning slots 23, thereby fixing the first housing 2 and the second housing 3.

[0041] A power supply assembly is also provided inside the cavity formed by the first housing 2 and the second housing 3. The power supply assembly includes a PCB board 12 and a polymer lithium battery 13. The PCB board 12 is arranged inside the first housing 2. The lithium battery 13 is fixed to the PCB board 12 with adhesive on one side and is electrically connected to it. The lithium battery 13 is arranged on the side of the PCB board 12 close to the second housing 3, making full use of the space inside the second housing 3.

[0042] Furthermore, a positioning part 19 is provided inside the first housing 2. There are two sets of positioning parts 19, which are evenly arranged circumferentially inside the first housing 2. The positioning part 19 has a threaded hole structure. Two sets of mounting holes 18 are provided on the PCB board 12. The position of the mounting holes 18 corresponds to the position of the positioning part 19. The mounting holes 18 penetrate the PCB board 12. The PCB board 12 and the first housing 2 are connected by screws 20. Specifically, the mounting holes 18 on the PCB board 12 and the positioning parts 19 on the first housing 2 are aligned, and then the mounting holes 18 and the positioning parts 19 are connected together by screws 20, thereby realizing the installation of the PCB board 12 inside the first housing 2.

[0043] A first slot 15 and a second slot 17 are also provided on the first housing 2. The first slot 15 and the second slot 17 are symmetrically arranged in a ring along the edge of the first housing 2. To ensure the aesthetic appearance of the lamp assembly 1, the first slot 15 and the second slot 17 can be simultaneously arranged between the first housing 2 and the second housing 3. That is, after the first housing 2 and the second housing 3 are assembled, they together form the first slot 15 and the second slot 17. A charging socket 14 and a button 16 are provided on the PCB board 12. Both the charging socket 14 and the button 16 are electrically connected to the PCB board 12. The position of the charging socket 14 corresponds to the position of the first slot 15, and the position of the button 16 corresponds to the position of the second slot 17. The charging socket 14 can be installed in the first slot 15, and the button 16 can be installed in the second slot 17. The charging socket 14 enables external power to charge the lithium battery 13, and the button 16 controls the lighting mode of the neck lamp.

[0044] Furthermore, a short press of button 16 for the first time illuminates the LED light inside the first housing 2, with the first housing 2 being the main light source, producing a soft lighting effect. A short press of button 16 for the second time illuminates the LED light on the side corresponding to the transparent cover 7, with the transparent cover being the main light source, achieving an illumination effect. A short press of button 16 for the third time illuminates both sets of LED lights, achieving both illumination and supplementary lighting effects. A short press of button 16 for the fourth time turns off both sets of LED lights, and the neck light is in the off state.

[0045] The neck lamp also includes a hanging cord assembly, which consists of a hanging cord and an outer casing. The hanging cord and outer casing are integrally molded and both are made of silicone rubber. The hanging cord 21 has a split design, meaning there are two cords 21. One end of each cord 21 is connected to the lamp body assembly 1, and the other ends can be joined together to form a loop. Specifically, one cord 21 has two sets of adjustment holes 22, through which the other cord 21 can pass, allowing the overall length of both cords 21 to be adjusted. This means the circumference of the cords when they form a loop can be adjusted to suit different usage scenarios or users. The outer casing 25 has an internal cavity that fits the lamp body assembly 1. An insertion port is provided on one side of the outer casing 25, through which the lamp body assembly 1 can be inserted. The first housing 2 of the lamp body assembly 1, away from the second housing 3, and the transparent cover 7 are both located on the side of the insertion port, ensuring the luminous effect of the first housing 2 and the transparent cover 7.

Claims

1. A novel neck lamp, characterized in that, The device includes a lamp body assembly, which includes a first housing. A mounting seat is obliquely arranged inside the first housing and on the side wall of the first housing. The mounting seat has a light-transmitting hole that penetrates the first housing. A lamp source is provided on the side of the mounting seat facing the inside of the first housing. A transparent cover adapted to the outside of the first housing is provided on the side of the mounting seat facing the outside of the first housing.

2. The novel neck lamp according to claim 1, characterized in that, The mounting base is provided with first positioning holes symmetrically arranged on both sides of the light-transmitting hole, and the transparent cover is provided with a first positioning block that matches the positioning holes.

3. The novel neck lamp according to claim 1, characterized in that, The light source is an LED light board, the LED light board is provided with a second positioning hole, and the mounting base is provided with a second positioning block that is adapted to the second positioning hole.

4. A novel neck lamp according to claim 1, characterized in that, It also includes a power supply assembly, which includes a PCB board and a lithium battery, with the PCB board electrically connected to the lithium battery.

5. A novel neck lamp according to claim 4, characterized in that, The PCB board is provided with a charging female connector, and the first housing is provided with a first slot that is adapted to the charging female connector.

6. A novel neck lamp according to claim 4, characterized in that, The PCB board is provided with a button, and the first housing is provided with a second slot that is adapted to the button.

7. A novel neck lamp according to claim 4, characterized in that, The PCB board is provided with mounting holes, and the first housing is provided with a positioning part that matches the mounting holes. The mounting holes and the positioning part are connected by screws.

8. A novel neck lamp according to any one of claims 1 to 7, characterized in that, It also includes a second housing, which is adapted to and detachably connected to the first housing.

9. A novel neck lamp according to any one of claims 1 to 7, characterized in that, The first housing is milky white.

10. A novel neck lamp according to any one of claims 1 to 7, characterized in that, It also includes a hanging rope assembly, which includes a hanging rope and an outer casing integrally connected to the hanging rope, with the lamp body assembly located inside the outer casing.