Omnidirectional lamp
By introducing reflective components and driving components into the circumferential lamp, the problem of insufficient circumferential lamp light is solved, and the lighting effect is improved and the irradiation range is expanded.
Patent Information
- Application Number
- CN202211127497.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-16
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2042-09-16
AI Technical Summary
The existing circumferential lights have a fixed illumination angle that cannot meet the needs of users. There are areas with insufficient lighting intensity and poor lighting effects.
A circumferential lamp is designed, including a housing, a light source assembly and a reflective assembly. The reflective assembly adjusts the light output direction of the light source assembly through the driving assembly to achieve flexible adjustment of light.
By adjusting the light output direction of the light source component, the problem of insufficient light intensity is eliminated, the lighting effect is improved, and the illumination range is expanded, meeting the requirements of circumferential light distribution.
Smart Images

Figure CN115468145B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of lamps, and in particular to an all-around lamp. Background Art
[0002] Ambient lighting refers to a lamp that uses an all-around light distribution design to achieve omnidirectional illumination. However, existing ambient lighting generally has a fixed illumination angle, which cannot meet user needs. The lamps lack corresponding reflective or refracting components, which restricts the entire illumination range, leaving areas with insufficient light intensity and poor lighting effects. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide an all-around light.
[0004] The technical solution adopted by the present invention to solve the technical problem is to construct an all-around light, including
[0005] shell;
[0006] a light source assembly, mounted on the housing, for emitting light;
[0007] The reflective component is arranged on the housing and is used to adjust the light emitting direction of the light source component.
[0008] In some embodiments, the reflective assembly includes a reflective element and a driving assembly, the reflective element is located on one side of the light source assembly, and the driving assembly is connected to the reflective element to adjust the light output direction of the light source assembly.
[0009] In some embodiments, the ambient light further includes a lampshade detachably mounted on the housing, and the lampshade is disposed on the periphery of the light source assembly.
[0010] In some embodiments, a mounting portion is provided in the housing, and the mounting portion defines a first space and a second space in the inner cavity of the housing;
[0011] The light source assembly is disposed in the first space, and includes a light source and a lens covering the periphery of the light source.
[0012] In some embodiments, the light source assembly includes a heat sink, and the light source is disposed on the heat sink;
[0013] The heat sink comprises a heat dissipation plate having a first surface and a second surface, the light source is provided on the first surface, and the second surface is provided with a plurality of heat dissipation fins, the plurality of heat dissipation fins being arranged at intervals;
[0014] The heat dissipation plate further includes a plurality of heat dissipation holes passing through the first surface and the second surface.
[0015] In some embodiments, the housing is provided with a plurality of air inlet holes, and the lampshade is provided with a plurality of air outlet holes;
[0016] The air inlet, the heat dissipation plate and the air outlet cooperate to form a heat dissipation channel.
[0017] In some embodiments, the reflector is a semicircular concave structure, and a side thereof facing the light source assembly forms a reflective surface;
[0018] The reflective element rotates circumferentially under the driving of the driving assembly.
[0019] In some embodiments, the drive assembly includes a first transmission rod and a second transmission rod;
[0020] The first transmission rod is provided with a first gear portion, the second transmission rod is provided with a second gear portion, the first gear portion and the second gear portion are meshed with each other, and the second transmission rod is connected to the reflective element.
[0021] In some embodiments, the driving assembly further includes an operating portion, and the first end of the first transmission rod extends out of the housing to be connected to the operating portion.
[0022] In some embodiments, the drive assembly further includes a reset structure;
[0023] The reset structure includes a sleeve portion sleeved on the second end of the first transmission rod, and an elastic member connecting the sleeve portion and the mounting portion.
[0024] In some embodiments, the driving assembly further includes a protective shell sleeved around the first gear portion and the second gear portion.
[0025] In some embodiments, the ambient light further includes a power supply assembly disposed in the second space to provide power to the light source assembly.
[0026] In some embodiments, the power supply assembly includes a power supply rack, a battery pack disposed in the power supply rack, and a power supply board connected to the battery pack.
[0027] In some embodiments, the ambient light further includes a switch button and an adjustment button provided on the housing, and a circuit board provided on the inner side of the housing and connected to the switch button and the adjustment button, wherein the circuit board is connected to the power board.
[0028] In some embodiments, the ambient light further includes a charging port disposed on the housing and connected to the power supply assembly.
[0029] In some embodiments, the ambient light further includes a remote controller in control connection with the power supply assembly.
[0030] In some embodiments, a mounting bracket for mounting the remote control is provided on the housing.
[0031] In some embodiments, a hook is further provided on the lower surface of the housing.
[0032] In some embodiments, the surround light further includes a handle connected to the housing.
[0033] In some embodiments, the housing includes a detachably connected shell and a cover.
[0034] The present invention has the following beneficial effects: The all-around light comprises a housing, a light source assembly, and a reflector assembly. The light source assembly is mounted within the housing to emit light, and the reflector assembly is disposed within the housing to adjust the light output direction of the light source assembly. The all-around light has a simple structure and incorporates a reflector assembly that adjusts the light output direction of the light source assembly, thereby eliminating the problem of insufficient light intensity in certain areas. The all-around light is easy to operate, meets all-around lighting requirements, and improves lighting quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] In order to more clearly illustrate the technical solution of the present invention, the present invention will be further described below with reference to the accompanying drawings and embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and should not be considered as limiting the scope. A person of ordinary skill in the art can derive other relevant drawings based on these drawings without inventive effort. In the drawings:
[0036] Figure 1 is a schematic diagram of the three-dimensional structure of an all-around light in some embodiments of the present invention;
[0037] Figure 2 is a schematic diagram of the structure of the first space of the all-around light in some embodiments of the present invention;
[0038] Figure 3 is an exploded schematic diagram of components of an all-around light in some embodiments of the present invention;
[0039] Figure 4 is a schematic diagram of the structure of the reflector of the all-around light after being flipped over in some embodiments of the present invention;
[0040] Figure 5 is a schematic structural diagram of a housing in some embodiments of the present invention;
[0041] Figure 6 is a schematic structural diagram of a radiator in some embodiments of the present invention;
[0042] Figure 7 is a schematic structural diagram of a reflective assembly in some embodiments of the present invention;
[0043] Figure 8 is a schematic diagram of the internal structure of a reflective assembly in some embodiments of the present invention;
[0044] Figure 9 is a schematic structural diagram of a reflective member in some embodiments of the present invention;
[0045] Figure 10 is a schematic structural diagram of a first transmission rod in some embodiments of the present invention;
[0046] Figure 11 is a schematic structural diagram of a second transmission rod in some embodiments of the present invention;
[0047] Figure 12 is a schematic structural diagram of a driving unit in some embodiments of the present invention;
[0048] Figure 13 is a schematic structural diagram of a reset structure in some embodiments of the present invention;
[0049] Figure 14 is a cross-sectional view of a reflective assembly in some embodiments of the present invention;
[0050] Figure 15 is a schematic diagram of the structure in the second space in some embodiments of the present invention;
[0051] Figure 16 is a schematic diagram of the structure of a power supply assembly in some embodiments of the present invention;
[0052] Figure 17 Schematic diagram of the structure of the cover body in some embodiments of the present invention. DETAILED DESCRIPTION
[0053] In order to have a clearer understanding of the technical features, purposes and effects of the present invention, the specific embodiments of the present invention are now described in detail with reference to the accompanying drawings. In the following description, it should be understood that the directions or positional relationships indicated by "front", "back", "up", "down", "left", "right", "longitudinal", "horizontal", "vertical", "horizontal", "top", "bottom", "inside", "outside", "head", "tail", etc. are based on the directions or positional relationships shown in the accompanying drawings and are constructed and operated in specific directions. They are only for the convenience of describing the technical solution and do not indicate that the devices or components referred to must have specific directions. Therefore, they should not be understood as limiting the present invention.
[0054] It should also be noted that, unless otherwise clearly specified and limited, terms such as "installed", "connected", "connected", "fixed", and "set" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integrated connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal connection of two elements or the interaction relationship between two elements. When an element is referred to as being "on" or "under" another element, the element can be "directly" or "indirectly" located on the other element, or there may be one or more intervening elements. The terms "first", "second", "third", etc. are only for the convenience of describing the present technical solution, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second", "third", etc. may explicitly or implicitly include one or more of such features. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to the specific circumstances.
[0055] See also Figures 1 to 4 , a surround light in some embodiments of the present invention, comprises a housing 1, a light source assembly 2, and a reflector assembly 3. The light source assembly 2 is mounted on the housing 1 to emit light, and the reflector assembly 3 is provided on the housing to adjust the light output direction of the light source assembly 2. This surround light has a simple structure and incorporates a reflector assembly that adjusts the light output direction of the light source assembly, thereby eliminating the problem of insufficient light intensity in certain areas. It is easy to operate and meets the requirements of surround light distribution, improving the lighting effect and expanding the illumination range, illuminating dark areas that are not normally illuminated by the surround light.
[0056] Recombination Figure 5As shown, in some embodiments, the housing 1 is provided with a mounting portion 11, which defines a first space 12 and a second space 13 within the inner cavity of the housing 1. The light source assembly 2 is disposed within the first space 12 and includes a light source 21 and a lens 22 disposed around the outer periphery of the light source 21. Preferably, the housing 1 is made of PVC, which has excellent hardness and rigidity, is corrosion-resistant, easy to process, and has a long service life. In other embodiments, the housing 1 may also be made of PP, ABS, or other plastic materials, without specific limitations. The light source 21 may be a COM light source, which has high color rendering and uniform light emission. COM light sources emit light in a surface-emitting manner, resulting in soft light output and diverse optical designs. This solves the problem of color difference between bright and dark areas of the lamp, and the COM light source is soft, has good heat dissipation, and is easy to assemble. In other embodiments, the light source 21 may also be an incandescent light source, a high-pressure sodium light source, a fluorescent light source, or other light sources, without specific limitations. The lens 22 is used to change the propagation direction of light through its own characteristics, so that the light from the top of the light source 21 is refracted to the surroundings, thereby enhancing the brightness of the surroundings.
[0057] Furthermore, the light source assembly 2 includes a heat sink 23, and the light source 21 is disposed on the heat sink 23. It is understood that the heat sink 23 is detachably connected to the light source 21 and is used to protect the light source 21, help dissipate the heat generated by the light source 21 during operation, prevent the light source 21 from being damaged due to overheating, and ensure that the light source 21 operates within an appropriate temperature range.
[0058] like Figure 6As shown, the heat sink 23 includes a heat sink 231 having a first surface 2311 and a second surface 2312. The light source 21 is disposed on the first surface 2311. The second surface 2312 is provided with a plurality of heat sink fins 232, which are arranged at intervals. The heat sink 231 also includes a plurality of heat dissipation holes 2313 extending through the first surface 2311 and the second surface 2312. It is understood that the heat sink 231 has a plate-like structure. The light source 21 is disposed on the first surface 2311 and bolted to the heat sink 231. The heat sink fins 232 arranged at intervals on the second surface 2312 are integrally formed with the heat sink 231. The heat sink fins 232 have a high density, which increases the heat dissipation area per unit area and enhances the heat dissipation function of the heat sink 23. The heat dissipation holes 2313 further enhance the heat dissipation performance of the heat sink 23. Furthermore, the heat sink 23 is provided with a plurality of cylindrical countersunk holes 2314, which are used to facilitate bolt connection between the heat sink 23 and the mounting portion 11. Preferably, the heat sink 23 can be made of an aluminum alloy, which has low production costs and a high cost-effectiveness ratio. Aluminum alloy also has good thermal conductivity, strong heat dissipation performance, and good oxidation and corrosion resistance. In other embodiments, the heat sink 23 can also be made of stainless steel, copper alloy, or other materials with strong heat dissipation performance, which are not specifically limited here.
[0059] In some embodiments, the all-around light further includes a lampshade 4 that is removably mounted on the housing 1 and disposed around the periphery of the light source assembly 2. It will be appreciated that the lampshade 4 is generally cylindrical in shape and is preferably made of acrylic, a material that exhibits high light transmittance, good hardness and rigidity, good corrosion resistance, stable physical properties, resistance to oxidation, and environmental friendliness. It also provides more uniform light and high color rendering from the light source 21. In other embodiments, the lampshade 4 may be made of PVC, glass, or other transparent materials, not specifically limited herein. The lampshade 4 may be connected to the housing 1 via fasteners or snap-fit connections, making it easy to remove and replace.
[0060] The housing 1 is provided with a plurality of air inlet holes 14, and the lampshade 4 is provided with a plurality of air outlet holes 41. The air inlet holes 14, the heat sink 231, and the air outlet holes 41 cooperate to form a heat dissipation channel. It is understood that the housing 1 has a housing sidewall 17, which can be divided into a first sidewall 171, a second sidewall 172, a third sidewall 173, and a fourth sidewall 174 connected end to end. The first sidewall 171 is arranged parallel to the third sidewall 173, and the second sidewall 172 is arranged parallel to the fourth sidewall 174. The air inlet holes 14 are provided near the upper end of the first sidewall 171 and the upper end of the third sidewall 173. The air inlet holes 14 are strip-shaped through holes, used to provide an air inlet channel for external air to enter the ambient light. The lampshade 4 has sidewalls 42, and the air outlets 41 are located on the sidewalls 42 corresponding to the first and third sidewalls 171, 173. The air outlets 41 are also strip-shaped through-holes for dispersing and exhausting air. Furthermore, the heat dissipation channel formed by the air inlet 14, the heat sink 231, and the air outlets 41 enhances the heat dissipation of the all-around light, ensuring its operational stability and service life. In other embodiments, the arrangement and number of the air inlet 14 and air outlet 41 are not limited to the above-described arrangement and the arrangement shown in the accompanying drawings, and can be adjusted based on actual circumstances. This is not a specific limitation here.
[0061] Preferably, a fastening ring 7 may be provided between the lampshade 4 and the housing 1. The fastening ring 7 is an annular structure and may be connected to the housing 1 by fasteners or snap-fitted to the housing 1. The fastening ring 7 is used to seal the ambient light to prevent external moisture and dust from entering the ambient light.
[0062] In some embodiments, the reflective assembly 3 includes a reflector 31 and a drive assembly 32. The reflector 31 is located on one side of the light source assembly 2. The drive assembly 32 is connected to the reflector 31 to adjust the light output direction of the light source assembly 2. It can be understood that the reflector 31 refracts the light emitted by the light source assembly 2 to the opposite side of the reflector 31 to adjust the illumination brightness of the opposite side of the reflector 31, thereby eliminating the problem of insufficient illumination brightness in certain ranges and making the illumination brighter.
[0063] Recombination Figures 7 to 15As shown, the reflector 31 preferably has a semicircular concave structure, with the side facing the light source assembly 2 forming a reflective surface. Driven by the drive assembly 32, the reflector 31 rotates circumferentially. As can be appreciated, the semicircular concave structure of the reflector 31 enhances the reflective effect and increases the brightness of the reflected light. Furthermore, the mounting portion 11 includes a receiving groove 111 near the second sidewall 172. This groove 111 accommodates the reflector 31 when the all-around light is illuminated, concealing it beneath the light source 21 and not affecting the all-around illumination. When single-sided illumination is required, the drive assembly 32 flips the reflector upward, shifting the illuminated surface from 360° to 180°, enhancing the brightness of the single side. The reflector 31 is preferably made of mirrored aluminum, which is economical and practical, exhibits mirror-like properties, offers strong reflective properties, is relatively hard and rigid, and is corrosion- and oxidation-resistant. In some other embodiments, the reflective element 31 may also be made of glass, stainless steel or other materials, which are not specifically limited here.
[0064] In some embodiments, the driving assembly 32 includes a first transmission rod 321 and a second transmission rod 322. The first transmission rod 321 is provided with a first gear portion 323, and the second transmission rod 322 is provided with a second gear portion 324. The first gear portion 323 and the second gear portion 324 are meshed with each other. The second transmission rod 322 is connected to the reflector 31. Figure 8 As shown, it can be understood that the first transmission rod 321 and the second transmission rod 322 are both cylindrical structures. The first gear portion 323 can be connected to the first transmission rod 321 by a flat key, it can also be connected to the first transmission rod 321 by an interference fit, or the first gear portion 323 can be integrally formed with the first transmission rod 321. The second gear portion 324 can be connected to the second transmission rod 322 by a flat key, it can also be connected to the second transmission rod 322 by an interference fit, or the second gear portion 324 can be integrally formed with the second transmission rod 322. The shapes of the first gear portion 323 and the second gear portion 324 can be the same. In some other embodiments, the shapes of the first gear portion 323 and the second gear portion 324 can also be different.
[0065] Furthermore, if Figure 11 As shown, in some embodiments, the second transmission rod 322 may include a second rod body 3221 and a second protrusion 3222 connected to the second rod body 3221, and the second protrusion 3222 is square. Figure 9As shown, in some embodiments, the reflector 31 may include a reflector 311 and a connecting portion 312 connected to the reflector 311. A reinforcing rib 313 is provided between the connecting portion 312 and the reflector 311 to increase the strength and rigidity of the reflector 31. The connecting portion 312 is provided with a retaining groove 3121 and a tapered countersunk hole 3122 that match the shape of the second protrusion 3222. The second protrusion 3222 cooperates with the retaining groove 3121 to facilitate connection of the second transmission rod 322 to the reflector 31. The second transmission rod 322 and the reflector 31 can be connected via bolts. In other embodiments, the shape of the second protrusion 3222 may also be elliptical, wedge-shaped, or other shapes, which are not specifically limited here.
[0066] In some embodiments, the driving assembly 32 further includes an operating portion 325, and the first end of the first transmission rod 321 extends out of the housing 1 to connect with the operating portion 325. Figure 5 As shown, it can be understood that a positioning groove 1721 is provided in the middle of the upper end of the second side wall 172, and a limiting wall 17211 and a rotation hole 17212 are provided on the positioning groove 1721. Figure 12 As shown, in some embodiments, the operating portion 325 may include an operating body 3251, a limiting groove 3252 provided at one end of the operating body, and a guide portion 3253 provided at the other end of the operating body. The limiting groove 3252 is provided at one end of the operating portion connected to the first rod 3211. Figure 10 As shown, in some embodiments, the first transmission rod 321 may include a first rod body 3211, a first protrusion 3212 provided at one end of the first rod body 3211, and a third protrusion 3213 provided at the other end of the first rod body 3211. The first protrusion 3212 is provided at the end connected to the operating portion 325. The first protrusion 3212 is square in shape, and the third protrusion 3213 is also square in shape. The shape of the limiting groove 3252 matches that of the first protrusion 3212. The first protrusion 3212 cooperates with the limiting groove 3252 to make it easier for the first transmission rod 321 to be connected to the operating portion 325. The first transmission rod 321 and the operating portion 325 can be connected by bolts. The operating portion 325 is disposed in the positioning slot 1721 and can be bolted to the first transmission rod 321. The first transmission rod 321 passes through the rotation hole 17212 and is connected to the first gear portion 323. The guide portion 3253 abuts the limiting wall 17211. It will be appreciated that rotating the operating portion 325 can cause the reflector 31 to rotate accordingly, enabling the all-around light to achieve either all-around illumination or single-side illumination. Preferably, the operating portion 325 can be a handle. In other embodiments, the operating portion 325 can also be a drive motor connected to the first transmission rod 321 to drive the reflector 31.
[0067] Preferably, if Figure 13 As shown, the drive assembly 32 also includes a reset structure 326, which includes a sleeve portion 3261 that is sleeved on the second end of the first transmission rod 321, and an elastic member 3262 that connects the sleeve portion 3261 and the mounting portion 11. Furthermore, the sleeve portion 3261 is provided with a fastening groove 32611 that matches the shape of the third protrusion 3213. The third protrusion 3213 cooperates with the fastening groove 32611 to make the connection between the first transmission rod 321 and the sleeve portion 3261 more secure and reliable, and the sleeve portion 3261 and the first transmission rod 321 can be connected by bolts. In other embodiments, the shape of the third protrusion 3213 can also be elliptical, wedge-shaped, or other shapes, which are not specifically limited here. The elastic member 3262 can be used to reset the drive assembly 32 or play a buffering role. The elastic member 3262 can preferably be a spring, one end of which is snap-connected to the sleeve portion 3261, and the other end is connected to the mounting portion 11 through a fastener.
[0068] Furthermore, if Figure 7 As shown, the drive assembly 32 further includes a protective shell 327 sleeved around the first gear portion 323 and the second gear portion 324. It is understood that the protective shell 327 can be divided into a first protective shell 3271 and a second protective shell 3272. The first protective shell 3271 and the second protective shell 3272 can be connected together by bolts to jointly protect the first gear portion 323 and the second gear portion 324.
[0069] Preferably, the reflective assembly 3 in some embodiments may further include a protective shell 33 that is sleeved on the drive assembly 32. It is understood that the protective shell 33 is disposed in the first space 12 and may be connected to the mounting portion 11 by bolts or by snap-fit connection, and is used to protect the drive assembly 32.
[0070] In some embodiments, as Figure 16As shown, the all-around light may also include a power supply assembly 5 disposed within the second space 13 to provide power to the light source assembly 2. The power supply assembly 5 comprises a power supply rack 51, a battery pack 52 disposed within the rack 51, and a power board 53 connected to the battery pack 52. As will be appreciated, the mounting portion 11, located within the second space 13 near the fourth sidewall 174, is provided with a square fixing slot 112. The power supply rack 51 is disposed within the fixing slot 112 and is bolted to the mounting portion 11. The battery pack 52 includes a plurality of batteries 521, which may be evenly distributed in two rows within the rack 51. The battery pack 52 is used to provide power to the all-around light. In other embodiments, the arrangement of the batteries 521 may be adjusted to suit specific circumstances and is not specifically limited herein. The power board 53 can be connected to the battery pack 52 via a conductive plate, and is used to connect the components in the all-around light that require electricity. The power board 53 can also be provided with a connection terminal 531 and a positioning column 532. The connection terminal 531 is used to facilitate the connection of the power board 53 with other electrical components, and the positioning column 532 is used to position the power board 53.
[0071] Furthermore, the all-around light also includes a switch button 61 and an adjustment button 62 located on the housing 1, as well as a circuit board 63 located inside the housing 1 and connected to the switch button 61 and adjustment button 62. The circuit board 63 is connected to the power board 53. As can be understood, the switch button 61 is used to control the all-around light's on and off state, the adjustment button 62 is used to adjust the luminous intensity of the light source assembly 2, and the circuit board 63 is used to connect to the power board 53 and power-consuming components. Preferably, the switch button 61 can be located near the center of the upper end of the fourth side wall 174, the adjustment button 62 is located below the switch button 61, and the circuit board 63 is located between the battery pack 52 and the fourth side wall 174. In other embodiments, the arrangement of the switch button 61, adjustment button 62, and circuit board 63 can be adjusted according to actual circumstances and is not specifically limited here.
[0072] The all-around light further includes a charging port 64 disposed on the housing 1 and connected to the power supply assembly 5. It is understood that the charging port 64 is used to provide a charging channel for the battery pack 52. The charging port 64 is preferably a USB port or a Type-C port, which is more convenient for users to charge.
[0073] In some embodiments, the surround light also includes a remote control 65 connected to the power supply assembly 5. The housing 1 is provided with a mounting bracket 66 for mounting the remote control 65. It is understood that a remote control slot 1741 may be provided at the upper end of the fourth side wall 174, near the third side wall 173, into which the mounting bracket 66 may be mounted. In other embodiments, the location of the remote control slot 1741 may be adjusted based on actual needs. The remote control 65 can be communicatively connected to the power supply assembly 5 to control the on / off state of the surround light and adjust the luminous intensity of the light source assembly 2. In other embodiments, the on / off state of the surround light and the luminous intensity of the light source assembly 2 can also be controlled by a mobile phone in communication with the power supply assembly 5.
[0074] See Figure 3 、 Figure 15 and Figure 17 As shown, the housing 1 may further include a detachably connected shell 15 and a cover 16. As will be appreciated, the cover 16 is disposed at the lower end of the shell 15 and may be bolted to the shell 15. Furthermore, a sealing ring is provided between the cover 16 and the power supply assembly 5. The sealing ring is an annular structure and is used to prevent external moisture and dust from entering the power supply assembly 5.
[0075] Preferably, if Figure 17 As shown, the lower surface of the housing 1 is further provided with a hook member 67. It is understood that the cover 16 is provided with a hook groove 161, in which the hook member 67 is disposed. The hook member 67 is used to place the surround light in an external area. Furthermore, the cover 16 is further provided with a stop member 69 that is detachably connected to the cover 16 and is used to limit the position of the hook member 67.
[0076] Preferably, the surround light also includes a handle 68 connected to the housing 1. It is understood that the handle 68 may be integrally formed with the housing 1 or connected to the housing 1 via fasteners. Furthermore, the outer surface of the handle 68 is provided with a plurality of patterned portions 681, which serve to increase the surface roughness of the handle 68, thereby preventing the surround light from falling off when a user lifts it.
[0077] It can be understood that the above embodiments only express the preferred implementation methods of the present invention, and the description thereof is relatively specific and detailed, but it cannot be understood as limiting the patent scope of the present invention. It should be pointed out that for ordinary technicians in this field, without departing from the concept of the present invention, the above technical features can be freely combined, and several deformations and improvements can be made, all of which fall within the scope of protection of the present invention. Therefore, all equivalent changes and modifications made to the scope of the claims of the present invention should fall within the scope of coverage of the claims of the present invention.
Claims
1. An all-around light, characterized in that: include Housing (1); A light source assembly (2) is mounted on the housing (1) for emitting light; a mounting portion (11) is provided in the housing (1); the mounting portion (11) defines a first space (12) and a second space (13) in the inner cavity of the housing (1); the light source assembly (2) is disposed in the first space (12); and the mounting portion (11) is provided with a receiving groove (111); A reflective assembly (3) is provided on the housing (1) and is used to adjust the light emitting direction of the light source assembly (2); the reflective assembly (3) comprises a reflective element (31) and a driving assembly (32); the reflective element (31) is located on one side of the light source assembly (2); the reflective element (31) is in a semicircular concave structure; the reflective element (31) forms a reflective surface on a side facing the light source assembly (2); and the driving assembly (32) is connected to the reflective element (31) to adjust the light emitting direction of the light source assembly (2); When the all-around light is illuminating the surrounding area, the accommodating groove (111) accommodates the reflector (31), so that the reflector (31) is hidden under the light source assembly (2); when single-sided illumination is required, the driving assembly (32) is used to flip the reflector (31) upward, thereby enhancing the brightness on the single side.
2. The all-around light according to claim 1, characterized in that: The all-around light also includes a lampshade (4) detachably mounted on the housing (1), and the lampshade (4) is arranged on the periphery of the light source assembly (2).
3. The all-around light according to claim 2, characterized in that: A mounting portion (11) is provided in the housing (1), and the mounting portion (11) defines a first space (12) and a second space (13) in the inner cavity of the housing (1); The light source assembly (2) is arranged in the first space (12), and the light source assembly (2) comprises a light source (21) and a lens (22) arranged around the periphery of the light source (21).
4. The all-around light according to claim 3, characterized in that: The light source assembly (2) includes a heat sink (23), and the light source (21) is arranged on the heat sink (23); The heat sink (23) comprises a heat dissipation plate (231), the heat dissipation plate (231) having a first surface (2311) and a second surface (2312), the light source (21) being arranged on the first surface (2311), the second surface (2312) being provided with a plurality of heat dissipation fins (232), and the plurality of heat dissipation fins (232) being arranged at intervals; The heat dissipation plate (231) further comprises a plurality of heat dissipation holes (2313) passing through the first surface (2311) and the second surface (2312).
5. The all-around light according to claim 4, characterized in that: The housing (1) is provided with a plurality of air inlet holes (14), and the lampshade (4) is provided with a plurality of air outlet holes (41); The air inlet (14), the heat dissipation plate (231) and the air outlet (41) cooperate to form a heat dissipation channel.
6. The all-around light according to claim 4, characterized in that: The reflector (31) is a semicircular concave structure, and the side thereof facing the light source assembly (2) forms a reflective surface; The reflective element (31) rotates circumferentially under the drive of the driving assembly (32).
7. The all-around light according to claim 6, characterized in that: The driving assembly (32) includes a first transmission rod (321) and a second transmission rod (322); The first transmission rod (321) is provided with a first gear portion (323), the second transmission rod (322) is provided with a second gear portion (324), the first gear portion (323) and the second gear portion (324) are meshed with each other, and the second transmission rod (322) is connected to the reflective element (31).
8. The all-around light according to claim 7, characterized in that: The driving assembly (32) further includes an operating portion (325), and the first end of the first transmission rod (321) extends out of the housing (1) to be connected to the operating portion (325).
9. The all-around light according to claim 8, characterized in that: The drive assembly (32) further includes a reset structure (326); The reset structure (326) comprises a sleeve portion (3261) sleeved on the second end of the first transmission rod (321), and an elastic member (3262) connecting the sleeve portion (3261) and the mounting portion (11).
10. The all-around light according to claim 7, characterized in that: The driving assembly (32) further includes a protective shell (327) sleeved on the outer periphery of the first gear portion (323) and the second gear portion (324).
11. The all-around light according to any one of claims 3 to 10, characterized in that: The all-around light also includes a power supply assembly (5) disposed in the second space (13) to provide power to the light source assembly (2).
12. The all-around light according to claim 11, characterized in that The power supply assembly (5) comprises a power supply rack (51), a battery pack (52) arranged in the power supply rack (51), and a power supply board (53) connected to the battery pack (52).
13. The all-around light according to claim 12, characterized in that The all-around light further comprises a switch button (61) and an adjustment button (62) arranged on the housing (1), and a circuit board (63) arranged on the inner side of the housing (1) and connected to the switch button (61) and the adjustment button (62), wherein the circuit board (63) is connected to the power board (53).
14. The all-around light according to claim 12, characterized in that The all-around light also includes a charging interface (64) provided on the housing (1) and connected to the power supply assembly (5).
15. The all-around light according to claim 12, characterized in that The all-around light also includes a remote controller (65) connected to the power supply assembly (5).
16. The all-around light according to claim 15, characterized in that The housing (1) is provided with a mounting bracket (66) for mounting the remote controller (65).
17. The all-around light according to claim 1, characterized in that The lower surface of the housing (1) is further provided with a hook member (67).
18. The all-around light according to claim 1, characterized in that The all-around light also includes a handle portion (68) connected to the housing (1).
19. The all-around light according to claim 1, characterized in that The housing (1) comprises a detachably connected shell (15) and a cover (16).
Citation Information
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