CN218379323U - Support module and multifunctional lamp - Google Patents

Support module and multifunctional lamp Download PDF

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Publication number
CN218379323U
CN218379323U CN202222619244.0U CN202222619244U CN218379323U CN 218379323 U CN218379323 U CN 218379323U CN 202222619244 U CN202222619244 U CN 202222619244U CN 218379323 U CN218379323 U CN 218379323U
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Prior art keywords
assembly
rod
led
lamp
lamp holder
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CN202222619244.0U
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Chinese (zh)
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刘明剑
李小亮
朱更生
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Dongguan Opcso Optoelectronics Technology Co ltd
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Dongguan Opcso Optoelectronics Technology Co ltd
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Abstract

The embodiment of the utility model provides a support module and multi-functional lamps and lanterns belongs to LED technical field. The support module comprises a telescopic rod assembly, an LED assembly, a lamp holder assembly, a fixed seat assembly and an elastic lead assembly, and the telescopic rod assembly is provided with an accommodating cavity; the LED assembly extends along the extension direction of the telescopic rod assembly and is connected with the telescopic rod assembly; the lamp holder assembly is used for mounting an illuminating lamp; the fixed seat assembly and the lamp holder assembly are respectively arranged at two opposite ends of the telescopic rod assembly; the elastic conducting wire assembly penetrates through the accommodating cavity and is electrically connected with the LED assembly and the lamp holder assembly respectively, so that the LED assembly and the lamp holder assembly are powered, and a control signal is transmitted to the LED assembly. The embodiment of the utility model provides a support module and multifunctional lamp utensil have compact structure, walk the line and simplify, the function is abundant manifold characteristics.

Description

Support module and multifunctional lamp
Technical Field
The utility model relates to a LED technical field especially relates to a support module and multi-functional lamps and lanterns of using.
Background
With the improvement of living standard and the progress of science and technology, people have diversified lives, and the modes of showing oneself, bringing goods, publicizing and the like through live broadcast become fashionable and working modes. The existing live broadcast mode can be indoors or outdoors, and can be used in the daytime or at night. In order to meet the requirement of live broadcasting, light supplement devices such as an LED photography light supplement lamp and the like also appear. But current light filling equipment function singleness only can realize the light filling and can not adjust the light atmosphere of live broadcast environment according to applied scene or live process, and current light filling equipment has the wire complicacy and walks that mixed and disorderly and pull even tear the wire when adjusting LED lamp height moreover, finally can't realize the light filling.
SUMMERY OF THE UTILITY MODEL
The utility model discloses main aim at provides a support module aims at solving current live light filling equipment and has the problem that the function is single, walk the line complicacy and pull apart easily in a jumble.
Specifically, in order to achieve the above object, the embodiment of the present invention adopts the following technical means:
a rack module, comprising:
the telescopic rod component is provided with an accommodating cavity;
the LED assembly extends along the extension direction of the telescopic rod assembly and is connected with the telescopic rod assembly;
a lamp holder assembly for mounting a lighting lamp;
the fixing seat assembly and the lamp holder assembly are respectively arranged at two opposite ends of the telescopic rod assembly;
the elastic conducting wire assembly penetrates through the accommodating cavity and is electrically connected with the LED assembly and the lamp holder assembly respectively, so that power is supplied to the LED assembly and the lamp holder assembly, and a control signal is transmitted to the LED assembly.
In some embodiments, the telescoping wand assembly comprises a first wand body and a second wand body; the lamp holder comprises a first rod body, a second rod body, a lamp holder assembly and an elastic lead assembly, wherein the first rod body is provided with a first hollow cavity, the second rod body is accommodated in the first hollow cavity and can extend out of the first hollow cavity relative to the first rod body along the axial direction of the first rod body, the lamp holder assembly is arranged at the end part, far away from the first rod body, of the second rod body, and the elastic lead assembly penetrates through the first hollow cavity and is connected with the lamp holder assembly.
In some embodiments, a first accommodating groove is formed in an outer wall of the first rod body, the first accommodating groove extends along an extending direction of the first rod body, a notch of the first accommodating groove is arranged opposite to the first hollow cavity, and the LED assembly is embedded in the first accommodating groove;
and/or, the outer wall of the second rod body is provided with a second accommodating groove, the second accommodating groove extends along the extending direction of the second rod body, the notch of the second accommodating groove is back to the central shaft of the second rod body, and the LED assembly is embedded in the second accommodating groove.
In some embodiments, the LED assembly is connected to the elastic wire assembly at an end of the first rod near the mount assembly;
or, the LED subassembly in keep away from of first body of rod the one end of fixing base subassembly with the elastic wire subassembly is connected, the second body of rod is equipped with cavity in the second and dodges the portion, the second body of rod extends to when first cavity outside, by cavity in the first cavity with the cavity encloses to close and forms in the second hold the chamber, dodge the portion and locate the wall body of the second body of rod is in order to supply when the second body of rod is flexible dodge the elastic wire subassembly.
In some embodiments, the holder assembly includes a base and a fastener, the telescopic rod assembly being coupled to the base, the fastener being configured to secure the base.
In some embodiments, the base includes a first clamping portion, a second clamping portion and a connecting portion, the first clamping portion and the second clamping portion are disposed opposite to each other, the connecting portion is connected to the first clamping portion and the second clamping portion, a clamping space is defined by the first clamping portion, the second clamping portion and the connecting portion, a part of the fastener penetrates through the clamping space from the first clamping portion, and the telescopic rod assembly is installed at a position of the second clamping portion opposite to the first clamping portion.
In some embodiments, the fastener includes a handle portion, a stud and a pressing portion, the stud is disposed through the first clamping portion from an end of the first clamping portion opposite to the second clamping portion and extends to the clamping space, and the handle portion and the pressing portion are respectively connected to opposite ends of the stud.
In some embodiments, the lamp holder assembly comprises a universal joint and a lamp holder, the lamp holder being fixedly connected to the universal joint;
and/or the LED assembly comprises an LED lamp strip and a cover plate, and the cover plate covers the LED lamp strip so as to scatter light generated by the LED lamp strip.
In some embodiments, the LED strip comprises a plurality of LED beads, each of the LED beads comprises a red chip, a blue chip, and a green chip;
or the LED lamp strip comprises a plurality of LED lamp beads, and each LED lamp bead comprises a red light chip, a blue light chip, a green light chip and an integrated control circuit chip.
In some embodiments, the elastic lead assembly includes an elastic lead and a lead connector, one end of the elastic lead is electrically connected to the LED assembly and the lamp holder assembly respectively, and the other end of the elastic lead is connected to the lead connector, and the lead connector is used for connecting to a power source and a controller respectively.
In some embodiments, the wire connector is disposed at an end of the telescoping rod assembly distal from the fixed base assembly;
or the wire connector is arranged close to one side of the fixed seat component.
Compared with the prior art, the embodiment of the utility model provides a support module, including telescopic rod subassembly, lamp stand subassembly, LED subassembly and elastic wire subassembly, the elastic wire subassembly is acceptd in the holding chamber of telescopic rod subassembly, can effectively avoid walking the complicated and mixed and disorderly problem of line, has simplified the structure of support module and has improved the structural compactness of support module, adopts elastic wire moreover, can be when telescopic rod subassembly is flexible the elastic deformation of taking place of adaptability and be difficult for tearing the wire; meanwhile, the lamp holder assembly can be used for installing the illuminating lamp to realize light supplement, the LED assembly can generate a required light effect according to set control conditions, the light atmosphere is adjusted, and the support module which is abundant effectively improves the light supplement effect as the functions of light supplement equipment such as live broadcast.
The second aspect of the utility model provides a multifunctional lamp, the technical scheme of its adoption as follows:
a multi-function light fixture, comprising:
the bracket module;
a lamp mounted to the socket assembly;
and the controller is electrically connected with the lead assembly and is used for respectively controlling the LED assembly and the illuminating lamp.
Compared with the prior art, the multifunctional lamp provided by the embodiment of the utility model comprises the bracket module, the illuminating lamp and the controller, so that not only can illumination be realized, but also the light effect of the LED component can be controlled according to the controller, and a proper and good light atmosphere can be created; in addition, the wiring of the multifunctional lamp can be simplified, the structure of the multifunctional lamp is effectively simplified and more compact, and the reliability of the multifunctional lamp is improved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
Fig. 1 is a schematic perspective view of a bracket module according to an embodiment of the present invention;
fig. 2 is an exploded schematic view of a rack module according to an embodiment of the present invention;
fig. 3 is a first schematic cross-sectional view of a bracket module according to an embodiment of the present invention;
fig. 4 is a second schematic cross-sectional view of a bracket module according to an embodiment of the present invention;
fig. 5 is a schematic perspective view of a first rod according to an embodiment of the present invention;
fig. 6 is a schematic perspective view of a lamp holder assembly according to an embodiment of the present invention;
fig. 7 is a schematic perspective view of a fixing base assembly according to an embodiment of the present invention;
fig. 8 is a schematic view of a three-dimensional structure of the multifunctional lamp provided by the embodiment of the present invention installed on a desktop;
fig. 9 is a simplified schematic diagram of a control relationship of the multifunctional lamp according to an embodiment of the present invention.
The reference numbers illustrate:
10. a bracket module;
11. a telescopic rod assembly; 110. an accommodating chamber; 111. a first rod body; 1110. a first hollow cavity; 1111. a first accommodating groove; 1112. a slot structure; 112. a second rod body; 1120. a second hollow cavity; 1121. an avoidance groove;
12. an LED assembly; 121. an LED light strip; 122. a cover plate;
13. a lamp socket assembly; 131. a universal joint; 132. a lamp socket;
14. a fixed seat assembly; 141. a base; 1411. a first clamping portion; 1412. a second clamping portion; 1413. a connecting portion; 142. a fastener; 1421. a handle portion; 1422. a stud; 1423. a pressing part;
15. an elastic wire assembly; 151. an elastic wire; 152. a wire connection;
20. a multifunctional lamp; 21. an illuminating lamp; 22. a controller; 30. a desktop.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, not all, of the embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
It is to be understood that the terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used in the specification and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise.
The embodiment of the present invention provides a rack module 10 and its components as shown in fig. 1 to 7.
Referring to fig. 1, fig. 2 and fig. 8, a rack module 10 provided in the present embodiment includes a telescopic rod assembly 11, an LED assembly 12, a lamp socket assembly 13, a fixing base assembly 14 and an elastic wire assembly 15. Wherein, the telescopic rod component 11 is provided with an accommodating cavity 110; the LED assembly 12 extends along the extension direction of the telescopic rod assembly 11 and is connected with the telescopic rod assembly 11; the lamp holder assembly 13 is used for mounting the illuminating lamp 21; the fixing seat assembly 14 and the lamp holder assembly 13 are respectively arranged at two opposite ends of the telescopic rod assembly 11, and the fixing seat assembly 14 is used for fixing the telescopic rod assembly 11; the elastic wire assembly 15 penetrates through the accommodating cavity 110 and is electrically connected with the LED assembly 12 and the lamp holder assembly 13 respectively, so as to supply power to the LED assembly 12 and the lamp holder assembly 13 respectively, and transmit a control signal to the LED assembly 12. The support module 10 that this embodiment provided, because including telescopic rod subassembly 11 and install LED subassembly 12 and the lamp stand subassembly 13 on telescopic rod subassembly 11, installation light 21 on lamp stand subassembly 13, and LED subassembly 12 and lamp stand subassembly 13 and power electric connection, when LED subassembly 12 and controller 22 switch-on simultaneously, not only can realize the illumination, but also can produce the light efficiency of different colour combinations, make support module 10 when using, can build special light efficiency atmosphere in support module 10's surrounding environment. In addition, because the elastic wire assembly 15 is accommodated in the accommodating cavity 110, the neatness of the wiring is effectively improved, so that the wiring is not complicated and disordered, and the structure of the rack module 10 can be more compact.
Referring to fig. 2, fig. 3, fig. 4, fig. 5 and fig. 8, in some embodiments, the telescopic rod assembly 11 includes a first rod 111 and a second rod 112, wherein one end of the first rod 111 is connected to the fixing base assembly 14, the first rod 111 is provided with a first hollow cavity 1110, and the second rod 112 is accommodated in the first hollow cavity 1110 and can extend out of the first hollow cavity 1110 relative to the first rod 111 along an axial direction of the first rod 111. The lamp holder assembly 13 is disposed at an end of the second rod 112 away from the first rod 111, so that the lamp holder assembly 13 can be used for illuminating at a higher position after the illuminating lamp 21 is installed on the lamp holder assembly 13, and the range covered by the light irradiation is larger. The elastic wire assembly 15 is inserted into the first hollow cavity 1110 and connected to the lamp socket assembly 13. When the second rod 112 extends out of the first hollow cavity 1110 relative to the first rod 111 along the axial direction of the first rod 111, the elastic wire assembly 15 is elastically deformed, so that the disconnection of the elastic wire assembly 15 for electrical connection due to the stretching and pulling of the telescopic rod assembly 11 can be effectively reduced.
In some embodiments, the first receiving groove 1111 is disposed on the outer wall of the first rod 111, the first receiving groove 1111 extends along the extending direction of the first rod 111, the notch of the first receiving groove 1111 is disposed opposite to the first hollow cavity 1110, and the LED assembly 12 is embedded in the first receiving groove 1111. In some embodiments, the first receiving groove 1111 is disposed parallel to a central axis of the first rod 111, and a bottom wall of the first receiving groove 1111 protrudes toward the central axis of the first rod 111, that is, the first receiving groove 1111 is recessed from a wall of the first rod 111 toward the central axis of the first rod 111, so as to facilitate receiving of the LED assembly 12. In some embodiments, after the LED assembly 12 is embedded in the first receiving groove 1111, a distance from a surface of the LED assembly 12 facing the outside of the first rod 111 to a central axis of the first rod 111 is the same as a radius of the first rod 111, such that an outer surface of the first rod 111 is a circumferential surface, and the first rod 111 has a better aesthetic effect. In some embodiments, the number of the first receiving grooves 1111 is one. Of course, in some alternative embodiments, the number of the first receiving grooves 1111 is plural, and two adjacent first receiving grooves 1111 are disposed at an interval, so that the light emitted from the LED assembly 12 received by each first receiving groove 1111 can be irradiated to a corresponding range, and the light emitted from the LED assemblies 12 in two adjacent first receiving grooves 1111 is prevented from being mixed. In some embodiments, the plurality of first receiving grooves 1111 are uniformly distributed along the outer circumference of the first rod 111. In some embodiments, the first receiving groove 1111 is spirally disposed around the central axis of the first rod 111 along the outer circumference of the first rod 111, i.e. the first receiving groove spirally extends from one end of the first rod 111 to the other end of the first rod 111 around the central axis of the first rod 111, and with such a structure, only one LED assembly 12 is required to emit light in 360 ° from the first rod 111.
Referring to fig. 2, 3, 4, 5 and 8, in some embodiments, an avoiding groove 1121 is formed in an outer wall of the second rod 112, and the avoiding groove 1121 extends along an extending direction of the second rod 112, so that when the second rod 112 is retracted into the first hollow cavity 1110, the avoiding groove 1121 is used for avoiding the first receiving groove 1111, and the second rod 112 is prevented from interfering with a bottom wall of the first receiving groove 1111 in a stretching process. In some embodiments, the outer wall of the second rod 112 is further provided with a second receiving groove (not shown), the second receiving groove extends along the extending direction of the second rod 112, and a notch of the second receiving groove is disposed opposite to the second hollow cavity 1120, and the LED assembly 12 is embedded in the second receiving groove. In some embodiments, the second receiving groove is parallel to the central axis of the second rod 112, and the bottom wall of the second receiving groove protrudes toward the central axis of the second rod 112, i.e., the second receiving groove is recessed from the wall of the second rod 112 toward the central axis of the second rod 112, so as to facilitate receiving of the LED assembly 12. In some embodiments, after the LED assembly 12 is embedded in the second receiving groove, a distance from a surface of the LED assembly 12 facing the outside of the second rod 112 to a central axis of the second rod 112 is the same as a radius of the second rod 112, such that an outer surface of the second rod 112 is a circumferential surface, the second rod 112 has a better aesthetic effect, and the second rod 112 is conveniently retracted into the first rod 111 or extended out of the first rod 111. In some embodiments, the number of the second receiving grooves is one. Of course, in some alternative embodiments, the number of the second receiving grooves is multiple, and two adjacent second receiving grooves are spaced apart from each other, so that the light emitted from the LED assembly 12 received by each second receiving groove can be irradiated to a corresponding range, and the light emitted from the LED assembly 12 in two adjacent second receiving grooves is prevented from being mixed with each other. In some embodiments, the plurality of second receiving grooves are uniformly distributed along the outer circumference of the second rod 112. In some embodiments, the second receiving groove is spirally disposed around the central axis of the second rod 112 along the outer circumference of the second rod 112, i.e. the second receiving groove spirally extends from one end of the second rod 112 to the other end of the second rod 112 around the central axis of the second rod 112, and with such a structure design, only one LED assembly 12 is needed to emit light in the circumferential direction of 360 ° of the second rod 112.
In some embodiments, the outer wall of the first rod 111 is provided with a first receiving groove 1111, the outer wall of the second rod 112 is provided with a second receiving groove, each first receiving groove 1111 is provided with a LED assembly 12 in front, each second receiving groove is embedded with a LED assembly 12, and the LED assembly 12 in the first receiving groove 1111 and the LED assembly 12 in the second receiving groove are electrically connected to the elastic wire assembly 15, so as to supply power and transmit signals to the LED assembly 12 in the first receiving groove 1111 and the LED assembly 12 in the second receiving groove, respectively control is realized, and thus, a special lighting effect can be emitted on both the first rod 111 and the second rod 112.
In some embodiments, when the second rod 112 extends out of the first rod 111 and extends to the highest point, the first hollow cavity 1110 and the second hollow cavity 1120 enclose the accommodating cavity 110, and the elastic wire assembly 15 is in an extended state in the accommodating cavity 110. When the second rod 112 is completely retracted into the first rod 111, the second rod 112 is received in the first hollow cavity 1110, and the elastic wire assembly 15 is in a natural contraction state and is received in the second hollow cavity 1120. In some embodiments, the first shaft 111 and the second shaft 112 are both selected from aluminum, such as aluminum tube.
Referring to fig. 2 and 3, in some embodiments, the LED assembly 12 includes an LED strip 121 and a cover plate 122, and the cover plate 122 covers the LED strip 121, so that light generated by the LED strip 121 is scattered, and thus a better light emitting effect can be achieved. In some embodiments, each LED strip 121 includes a plurality of LED beads, and each LED bead includes a red light chip (R-LED), a blue light chip (B-LED), and a green light chip (G-LED), so that a mixed light emitting effect of three colors of RGB can be achieved. In some embodiments, each LED lamp bead further includes an Integrated Circuit (IC) chip, and the IC chip is used for respectively controlling the red light chip, the blue light chip, and the green light chip to emit different color lights. In some embodiments, each LED bead further comprises a white light chip (W-LED). The structural design of LED lamp area 121 can obtain multiple light-emitting effect, builds suitable and good light atmosphere for the environment around support module 10, has improved user's use effectively and has experienced. In some embodiments, a plurality of LED beads on the same LED strip 121 are connected in series or in parallel or in a combination of series and parallel.
Referring to fig. 6 and 8, in some embodiments, the lamp socket assembly 13 includes a universal joint 131 and a lamp socket 132, and the lamp socket 132 is fixedly connected to the universal joint 131, so that when the universal joint 131 rotates, the lamp socket 132 rotates, and thus 360 ° illumination can be achieved when the lamp 21 is installed on the lamp socket 132.
Referring to fig. 7, 8 and 2, in some embodiments, the fixing base assembly 14 includes a base 141 and a fastener 142, the telescopic rod assembly 11 is connected to the base 141, and the fastener 142 is used for fixing the base 141, so that the rack module 10 can be fixed. In some embodiments, the base 141 includes a first clamping portion 1411, a second clamping portion 1412 and a connecting portion 1413, the first clamping portion 1411 and the second clamping portion 1412 are disposed opposite to each other, and a space is formed between the first clamping portion 1411 and the second clamping portion 1412, the connecting portion 1413 is connected to the first clamping portion 1411 and the second clamping portion 1412, a clamping space is formed by the first clamping portion 1411, the second clamping portion 1412 and the connecting portion 1413, that is, the first clamping portion 1411, the second clamping portion 1412 and the connecting portion 1413 form a "C" type structure or a "Contraband" type structure, so as to clamp in the table top 30 or the object to achieve fixation. A part of the fastening member 142 is inserted into the clamping space from the first clamping portion 1411, and the fastening member 142 is movable with respect to the base 141. The telescopic rod assembly 11 is installed at a position of the second clamping portion 1412 facing away from the first clamping portion 1411, so that the telescopic rod assembly 11 can be connected with the fixed seat assembly 14. In some embodiments, the first clamping portion 1411, the second clamping portion 1412 and the connecting portion 1413 are integrally formed, or may be separately formed. The first clamping portion 1411 and the connecting portion 1413 may be connected by screws or bolts, and the second clamping portion 1412 and the connecting portion 1413 may be connected by screws or bolts. The fastener 142 includes a handle portion 1421, a stud 1422 and a pressing portion 1423, wherein the stud 1422 penetrates through the first clamping portion 1411 from one end of the first clamping portion 1411 facing away from the second clamping portion 1412 and extends to the clamping space, and the handle portion 1421 and the pressing portion 1423 are respectively connected to two opposite ends of the stud 1422. Specifically, the handle part 1421 is disposed at an end of the stud 1422 located outside the clamping space, and the pressing part 1423 is disposed at an end of the stud 1422 located outside the clamping space, so that the handle part 1421 can be held to rotate the stud 1422, so that the pressing part 1423 moves toward the second clamping part 1412 to achieve fixing, or the pressing part 1423 moves away from the second clamping part 1412 to achieve detaching the rack module 10 from the fixed tabletop 30 or object.
Referring to fig. 2, in some embodiments, the elastic wire assembly 15 includes an elastic wire 151 and a wire connector 152, one end of the elastic wire 151 is electrically connected to the LED assembly 12 and the lamp socket assembly 13, respectively, and the other end is connected to the wire connector 152, and the wire connector 152 is used for being connected to the power supply and controller 22, respectively, to supply power to the LED assembly 12 and the lamp socket assembly 13 and transmit signals to the LED assembly 12. In some embodiments, the wire connector 152 may be disposed at an end of the telescopic rod assembly 11 away from the fixed-seat assembly 14, or may be disposed near an end of the fixed-seat assembly 14. When the wire connector 152 is disposed at an end of the telescopic rod assembly 11 away from the fixed seat assembly 14, the second rod 112 is provided with a position-limiting member (not shown) for limiting a wire connected between the wire connector 152 and the power source, so that the wire connected to the power source extends along the second rod 112 and is connected to the wire connector 152, thereby preventing the wire from being hooked on an object around the bracket module 10. In some embodiments, the first rod 111 and the second rod 112 are further provided with a groove structure 1112 for embedding a wire, so that the wire connected between the wire connector 152 and the power source is embedded in the first rod 111 and the second rod 112, the aesthetic effect of the bracket module 10 is improved, and the wire is effectively prevented from being hung on objects around the bracket module 10. In some embodiments, when the LED assembly 12 is embedded in only the first rod 111, the LED assembly 12 is connected to the elastic wire 151 at an end of the first rod 111 close to the fixing base assembly 14, so as to effectively prevent the elastic wire 151 from interfering with the extending process of the telescopic rod assembly 11. Certainly, the LED assembly 12 may also be connected to the elastic wire 151 at an end of the first rod 111 away from the fixing base assembly 14, at this time, the second rod 112 is provided with an avoiding portion (not shown) on the wall body besides the second hollow cavity 1120, and the avoiding portion is used for avoiding the elastic wire 151 when the second rod 112 extends and contracts, so as to prevent the elastic wire 151 from interfering with the extension and contraction of the second rod 112. When the LED assembly 12 is also embedded in the second rod 112, a portion of the elastic wire 151 is connected to the LED assembly 12 on the second rod 112 at the end of the second rod 112 close to the fixing base assembly 14, or connected to the LED assembly 12 on the second rod 112 at the end of the second rod 112 far from the fixing base assembly 14.
The embodiment of the utility model provides an above-mentioned support module 10 can use when live, not only can throw light on, can send specific light effect moreover when the special light effect of live needs, builds good light efficiency. In addition, the LED lamp can be used in places such as square dance and the like, so that specific light effects can be generated in specific places, and good light effects can be created.
Referring to fig. 8, 9 and 1 to 7, based on the above-mentioned support module 10, an embodiment of the present invention further provides a multifunctional lamp 20, where the multifunctional lamp 20 includes the above-mentioned support module 10.
Specifically, the multifunctional light fixture 20 includes a rack module 10, an illumination lamp 21, and a controller 22. Wherein, the lighting lamp 21 is mounted on the lamp holder assembly 13; the controller 22 is electrically connected to the wire assembly to control the LED assembly 12 and the illumination lamp 21, respectively, and the controller 22 transmits signals to the LED assembly 12 to control the LED assembly 12 to generate different light effects. The embodiment of the utility model provides a multifunctional lamp 20 can be applied to the live scene, also can be applied to places such as square dance, KTV, outdoor karaoke OK, not only can throw light on, but also can build different light effects as required, for example can adjust the change rate of light and the light efficiency of light according to the speed of music rhythm for people can drop into specific scene more.
The number of the embodiment of the present invention is only for description, and does not represent the advantages or disadvantages of the embodiment. The above description is only for the specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of various equivalent modifications or replacements within the technical scope of the present invention, and these modifications or replacements should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (12)

1. A rack module, comprising:
the telescopic rod assembly is provided with an accommodating cavity;
the LED assembly extends along the extension direction of the telescopic rod assembly and is connected with the telescopic rod assembly;
a lamp holder assembly for mounting a lighting lamp;
the fixing seat assembly and the lamp holder assembly are respectively arranged at two opposite ends of the telescopic rod assembly;
the elastic conducting wire assembly penetrates through the accommodating cavity and is electrically connected with the LED assembly and the lamp holder assembly respectively, so that power is supplied to the LED assembly and the lamp holder assembly, and a control signal is transmitted to the LED assembly.
2. The carrier module of claim 1, wherein the telescoping rod assembly comprises a first rod and a second rod; the lamp holder comprises a first rod body, a second rod body, a lamp holder assembly and an elastic lead assembly, wherein the first rod body is provided with a first hollow cavity, the second rod body is accommodated in the first hollow cavity and can extend out of the first hollow cavity relative to the first rod body along the axial direction of the first rod body, the lamp holder assembly is arranged at the end part, far away from the first rod body, of the second rod body, and the elastic lead assembly penetrates through the first hollow cavity and is connected with the lamp holder assembly.
3. The holder module according to claim 2, wherein a first receiving groove is formed in an outer wall of the first rod, the first receiving groove extends along an extending direction of the first rod, a notch of the first receiving groove is opposite to the first hollow cavity, and the LED assembly is embedded in the first receiving groove;
and/or, the outer wall of the second rod body is provided with a second accommodating groove, the second accommodating groove extends along the extending direction of the second rod body, the notch of the second accommodating groove is back to the central shaft of the second rod body, and the LED assembly is embedded in the second accommodating groove.
4. The cradle module of claim 3, wherein the LED assembly is connected to the elastic wire assembly at an end of the first rod proximate to the mount assembly;
or, the LED subassembly in keep away from of first body of rod the one end of fixing base subassembly with the elastic wire subassembly is connected, the second body of rod is equipped with cavity in the second and dodges the portion, the second body of rod extends to when first cavity outside, by cavity in the first cavity with the cavity encloses to close and forms in the second hold the chamber, dodge the portion and locate the wall body of the second body of rod is in order to supply when the second body of rod is flexible dodge the elastic wire subassembly.
5. The cradle module according to any one of claims 1 to 4, wherein the fixed-base assembly includes a base to which the telescopic rod assembly is connected and a fastener for fixing the base.
6. The rack module according to claim 5, wherein the base comprises a first clamping portion, a second clamping portion and a connecting portion, the first clamping portion and the second clamping portion are arranged oppositely, the connecting portion is connected to the first clamping portion and the second clamping portion, a clamping space is defined by the first clamping portion, the second clamping portion and the connecting portion, a part of the fastener penetrates from the first clamping portion to the clamping space, and the telescopic rod assembly is installed at a position of the second clamping portion, which is opposite to the first clamping portion.
7. The rack module according to claim 6, wherein the fastener comprises a handle portion, a stud and a pressing portion, the stud is arranged through the first clamping portion from one end of the first clamping portion opposite to the second clamping portion and extends to the clamping space, and the handle portion and the pressing portion are respectively connected to two opposite ends of the stud.
8. The rack module according to any one of claims 1 to 4, wherein the lamp holder assembly comprises a universal joint and a lamp holder, and the lamp holder is fixedly connected with the universal joint;
and/or the LED assembly comprises an LED lamp strip and a cover plate, and the cover plate covers the LED lamp strip so as to scatter light generated by the LED lamp strip.
9. The cradle module of claim 8, wherein the LED strip includes a plurality of LED beads, each of the LED beads including a red chip, a blue chip, and a green chip;
or the LED lamp strip comprises a plurality of LED lamp beads, and each LED lamp bead comprises a red light chip, a blue light chip, a green light chip and an integrated control circuit chip.
10. The cradle module according to any one of claims 1 to 4, wherein the elastic lead assembly comprises an elastic lead and a lead connector, one end of the elastic lead is electrically connected to the LED assembly and the lamp holder assembly respectively, and the other end of the elastic lead is connected to the lead connector, and the lead connector is used for being connected to a power supply and a controller respectively.
11. The cradle module of claim 10, wherein the wire connector is disposed at an end of the telescoping rod assembly remote from the fixed base assembly;
or the wire connector is arranged close to one side of the fixed seat component.
12. A multi-function light fixture, comprising:
the stent module of any one of claims 1 to 11;
an illumination lamp mounted to the lamp socket assembly;
and the controller is electrically connected with the lead assembly and is used for respectively controlling the LED assembly and the illuminating lamp.
CN202222619244.0U 2022-09-29 2022-09-29 Support module and multifunctional lamp Active CN218379323U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222619244.0U CN218379323U (en) 2022-09-29 2022-09-29 Support module and multifunctional lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222619244.0U CN218379323U (en) 2022-09-29 2022-09-29 Support module and multifunctional lamp

Publications (1)

Publication Number Publication Date
CN218379323U true CN218379323U (en) 2023-01-24

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
CN (1) CN218379323U (en)

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Address after: No. 3 Shangmei Road, Qishi Town, Dongguan City, Guangdong Province, 523000

Patentee after: DONGGUAN OPCSO OPTOELECTRONICS TECHNOLOGY Co.,Ltd.

Address before: No.7, Wei'Er Road, Qishi Town, Dongguan City, Guangdong Province, 523000

Patentee before: DONGGUAN OPCSO OPTOELECTRONICS TECHNOLOGY Co.,Ltd.