Electric connector, connecting assembly of lamp and lamp
By using conductive parts and elastic parts to clamp the cable core in the electrical connector, and using the pressing parts to drive the elastic parts to deform, the cumbersome problem of traditional electrical connectors is solved, and the cable is quickly disassembled and assembled and used conveniently.
Patent Information
- Application Number
- CN202422107704.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Traditional electrical connectors need to disassemble the shell during the disassembly and assembly of external cables, which is cumbersome to operate and inconvenient to use.
An electrical connector is designed, using conductive parts and the first elastic member to clamp the cable core wire, and the elastic member is driven to undergo elastic deformation through the pressing member to realize the disassembly and assembly of the cable without disassembly and assemble the shell.
It realizes rapid disassembly and assembly of external cables, simplifies the operation process, and improves the convenience of use of electrical connectors.
Smart Images

Figure CN223039265U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of electrical connection related devices, and particularly relates to an electrical connector, a connection component of a lamp, and a lamp. Background Art
[0002] Electrical connectors, such as plugs or sockets, etc., are widely used in various electrical appliances. They are used to transmit electrical energy and are an important part of electrical appliances. At present, with the progress of technology, the requirement for the convenience of using electrical connectors is getting higher and higher.
[0003] However, traditional electrical connectors usually include a housing and a conductive member. The housing includes a detachable upper cover and a lower shell. The upper cover and the lower shell form at least part of the cavity wall of the inner cavity of the housing. The conductive member is arranged in the inner cavity of the housing. The housing is provided with a wire passing hole through which an external cable can enter and exit the inner cavity of the housing. And the core wire of the external cable is generally conductively connected to the conductive member by screws. In this design, when the external cable penetrates into the inner cavity of the housing, it is necessary to disassemble the upper cover and the lower shell before the core wire of the external cable can be conductively connected to the conductive member by screws or the connection between the core wire and the conductive member can be released. In other words, it is necessary to disassemble the housing and then use tools to disassemble and assemble the above-mentioned screws to achieve the disassembly and assembly of the external cable. This makes the disassembly and assembly of the external cable relatively cumbersome, resulting in inconvenient use of the electrical connector. Utility Model Content
[0004] The purpose of the embodiments of this application is to provide an electrical connector, a connection component of a lamp, and a lamp, which can solve the problem of inconvenient use of electrical connectors in related technologies.
[0005] In a first aspect, the embodiments of this application provide an electrical connector, which includes:
[0006] A housing, the housing is provided with a wire passing hole and an output port. The wire passing hole allows an external cable to enter and exit the inner cavity of the housing, and the output port allows a conductive terminal of an electrical device to enter and exit the inner cavity of the housing;
[0007] A conductive member and a first elastic member. The conductive member and the first elastic member are both arranged in the inner cavity of the housing. The conductive member has an input end and an output end. The input end of the conductive member is arranged opposite to the first elastic member to jointly clamp the core wire of the cable. The output end of the conductive member is used for conductive contact with the conductive terminal;
[0008] A pressing member, the pressing member is slidably matched with the housing along a first direction. The first direction intersects with the axis of the wire passing hole. One end of the pressing member can penetrate into the inner cavity of the housing and can abut against the first elastic member. And the pressing member can drive the first elastic member to elastically deform in a direction away from the conductive member, so that the first elastic member can be separated from the core wire.
[0009] In a second aspect, an embodiment of the present application provides a connection component for a lighting fixture, which includes: a hanging member, a mounting member, an electrical connection structure, and the electrical connector described above. The mounting member is configured to be provided on the lamp body of the lighting fixture. The electrical connection structure is provided on the mounting member. The electrical connection structure has conductive terminals. The electrical connector is provided on the hanging member. The output end of the conductive member of the electrical connector is configured to be in conductive contact with the conductive terminals.
[0010] In a third aspect, an embodiment of the present application provides a lighting fixture, which includes: a lamp body and the connection component described above. The mounting member of the connection component is provided on the lamp body.
[0011] In the embodiment of the present application, the input end of the conductive member and the first elastic member are oppositely arranged to jointly clamp the core wire of the cable, and the pressing member can drive the first elastic member to elastically deform in a direction away from the conductive member, so that the first elastic member can be separated from the core wire. With such a setting, in the specific use process, when the input end of the conductive member and the first elastic member jointly clamp the core wire of the cable, moving the pressing member to make the first elastic member elastically deform in a direction away from the conductive member can separate the first elastic member from the core wire, so that the external cable can be pulled out from the wire passing hole. Similarly, in this state, the core wire of the external cable can be inserted between the conductive member and the first elastic member. Then, the pressing member moves in the reverse direction. At this time, the first elastic member can automatically elastically deform in a direction close to the conductive member under the action of its own elastic force, so that the core wire can be pressed against the input end of the conductive member again. When the core wire is pressed against the input end of the conductive member, the core wire is in conductive contact with the input end of the conductive member, thereby realizing the conductive connection between the two.
[0012] It can be seen that in the solution adopted in the embodiment of the present application, there is no need to disassemble and assemble the housing. Only by moving the pressing member, the disassembly and assembly of the external cable can be realized. In this way, the disassembly and assembly of the external cable are relatively convenient, thus making the use of the electrical connector relatively convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a perspective view of the lighting fixture disclosed in the embodiment of the present application;
[0014] Figure 2 is one of the exploded views of the lighting fixture disclosed in the embodiment of the present application;
[0015] Figure 3 is another exploded view of the lighting fixture disclosed in the embodiment of the present application;
[0016] Figure 4 is a cross-sectional view of the lighting fixture disclosed in the embodiment of the present application;
[0017] Figure 5 is Figure 4Enlarged schematic view at position I in China;
[0018] Figure 6 Exploded view of the electrical connector disclosed in the embodiment of the present application;
[0019] Figure 7 Schematic structural diagram of the first elastic member, the second elastic member, and the third elastic member disclosed in the embodiment of the present application;
[0020] Figure 8 Schematic structural diagram of the conductive member disclosed in the embodiment of the present application;
[0021] Figure 9 Schematic diagram of the cooperation mode of the first elastic member and the conductive member with the core wire of the cable in the embodiment of the present application;
[0022] Figure 10 Exploded view of the electrical connection structure disclosed in the embodiment of the present application;
[0023] Figure 11 Stereogram of the hanging member disclosed in the embodiment of the present application;
[0024] Figure 12 Schematic structural diagram of the hanging member from the first perspective in the embodiment of the present application;
[0025] Figure 13 Schematic structural diagram of the mounting member disclosed in the embodiment of the present application;
[0026] Figure 14 Schematic structural diagram of the electrical connector disclosed in the embodiment of the present application;
[0027] Figure 15 Schematic structural diagram of the electrical connection structure disclosed in the embodiment of the present application;
[0028] Figure 16 Schematic structural diagram of the electrical connector from another perspective in the embodiment of the present application.
[0029] Explanation of reference numerals:
[0030] 100 - housing, 110 - wire passing hole, 120 - first cover, 130 - second cover, 140 - first side wall, 150 - output port;
[0031] 200 - conductive member, 210 - conductive part, 220 - limiting part, 221 - opening, 230 - guiding part, 240 - slot, 250 - pressing part, 260 - input end;
[0032] 310 - first elastic member, 311 - first elastic section, 312 - second elastic section, 313 - third elastic section, 320 - second elastic member, 321 - bending part, 330 - third elastic member;
[0033] 400 - Pressing member, 410 - Blocking portion, 420 - Avoidance opening;
[0034] 510 - Hanging member, 511 - Slot, 5111 - First end, 5112 - Second end, 512 - First reinforcing rib, 513 - Second reinforcing rib, 514 - Mounting hole, 515 - Wire passing opening, 520 - Mounting member, 521 - Connecting post, 5211 - Protruding portion, 522 - Third reinforcing rib, 523 - Fourth reinforcing rib;
[0035] 600 - Lamp body, 610 - Circuit board, 620 - Light source module, 630 - Translucent mask, 640 - First frame, 650 - Second frame, 660 - Pressing frame;
[0036] 700 - Electrical connection structure, 710 - Conductive terminal, 720 - Third cover, 730 - Fourth cover;
[0037] 800 - Cable, 810 - Core wire. Detailed implementation manners
[0038] Next, the technical solutions in the embodiments of the present application will be clearly described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art belong to the scope of protection of the present application.
[0039] The terms "first", "second", etc. in the description and claims of the present application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. generally belong to the same category, and the number of objects is not limited. For example, the first object can be one or multiple. In addition, "and / or" in the description and claims means at least one of the connected objects, and the character " / " generally represents an "or" relationship between the associated objects before and after.
[0040] Next, in conjunction with the accompanying drawings, the electrical connector, the connection component of the lamp, and the lamp provided by the embodiments of the present application will be described in detail through specific embodiments and their application scenarios.
[0041] Please refer to Figures 1 to 16 As shown, an electrical connector is provided in an embodiment of the present application, including: a housing 100, a conductive member 200, a first elastic member 310, and a pressing member 400.
[0042] Specifically, the housing 100 is provided with a wire passing hole 110 and an output port 150. The wire passing hole 110 allows an external cable 800 to enter and exit the inner cavity of the housing 100. The cable 800 is, for example, a mains cable. The output port 150 allows a conductive terminal 710 of an electrical device to enter and exit the inner cavity of the housing 100. The electrical device is, for example, a lamp.
[0043] The conductive member 200 and the first elastic member 310 are both arranged in the inner cavity of the housing 100. The conductive member 200 has an input end 260 and an output end. The input end 260 of the conductive member 200 is arranged opposite to the first elastic member 310 to jointly clamp the core wire 810 of the cable 800. The output end of the conductive member 200 is used for making conductive contact with the conductive terminal 710.
[0044] The pressing member 400 is slidably engaged with the housing 100 in a first direction. The first direction intersects with the axis of the wire passing hole 110. The first direction is, for example, Figure 9 the direction indicated by the arrow line A in the figure. One end of the pressing member 400 can penetrate into the inner cavity of the housing 100 and can abut against the first elastic member 310. Moreover, the pressing member 400 can drive the first elastic member 310 to elastically deform in a direction away from the conductive member 200, so that the first elastic member 310 can be separated from the core wire 810.
[0045] In the embodiment of the present application, the input end 260 of the conductive member 200 and the first elastic member 310 are arranged opposite to each other to jointly clamp the core wire 810 of the cable 800. And the pressing member 400 can drive the first elastic member 310 to elastically deform in a direction away from the conductive member 200, so that the first elastic member 310 can be separated from the core wire 810. With such a setting, in the specific use process, when the input end 260 of the conductive member 200 and the first elastic member 310 jointly clamp the core wire 810 of the cable 800, move the pressing member 400 to make the first elastic member 310 elastically deform in a direction away from the conductive member 200, the first elastic member 310 can be separated from the core wire 810, so that the external cable 800 can be pulled out from the wire passing hole 110. Similarly, in this state, the core wire 810 of the external cable 800 can be inserted between the conductive member 200 and the first elastic member 310. Then, the pressing member 400 moves in the reverse direction. At this time, under the action of its own elastic force, the first elastic member 310 can automatically elastically deform in a direction close to the conductive member 200, so that the core wire 810 can be pressed against the input end 260 of the conductive member 200 again. When the core wire 810 is pressed against the input end 260 of the conductive member 200, the core wire 810 makes conductive contact with the input end 260 of the conductive member 200, thereby realizing the conductive connection between the two.
[0046] It can be seen that in the solution adopted in the embodiment of the present application, without disassembling and assembling the housing 100, only by moving the pressing member 400, the disassembly and assembly of the external cable 800 can be realized. In this way, the disassembly and assembly of the external cable 800 are relatively convenient, thus making the use of the electrical connector relatively convenient.
[0047] In another embodiment, referring to Figure 5 , Figure 9 and Figure 14 as shown, the housing 100 includes a first side wall 140. The first side wall 140 is provided with a wire passing hole 110. The first elastic member 310 is configured as a first elastic sheet. The fixed end of the first elastic member 310 abuts against the housing 100, and the free end of the first elastic member 310 abuts against the input end 260 of the conductive member 200. The free end and the fixed end of the first elastic member 310 are two ends of the first elastic member 310 that are opposite to each other in its own extending direction. The extending direction of the first elastic member 310 is inclined with respect to the axis of the wire passing hole 110, and the distance between the free end of the first elastic member 310 and the first side wall 140 is greater than the distance between the fixed end of the first elastic member 310 and the first side wall 140. With such a setting, when the core wire 810 of the cable 800 is clamped between the conductive member 200 and the first elastic member 310, the acting force exerted by the first elastic member 310 on the core wire 810 of the cable 800 can be decomposed into a first component force in the first direction and a second component force in the axial direction of the core wire 810. This second component force can limit the movement of the core wire 810 towards the direction close to the first side wall 140, so that the core wire 810 can be clamped relatively stably between the input end 260 of the conductive member 200 and the first elastic member 310.
[0048] In other alternative embodiments, the extending direction of the first elastic member 310 can also be perpendicular or parallel to the wire passing hole 110. It should be noted that whether the extending direction of the first elastic member 310 is perpendicular or parallel to the wire passing hole 110, the direction of the acting force exerted by the first elastic member 310 on the core wire 810 coincides with the first direction.
[0049] In another embodiment, referring to Figure 5 and Figure 8 as shown, the conductive member 200 includes a conductive portion 210. The extending direction of the conductive portion 210 is parallel to the axis direction of the wire passing hole 110. In the extending direction of the conductive portion 210, the end of the conductive portion 210 close to the wire passing hole 110 is the input end 260 of the conductive member 200. The extending direction of the core wire 810 of the cable 800 is substantially parallel to the axis direction of the wire passing hole 110. By making the extending direction of the conductive portion 210 parallel to the axis direction of the wire passing hole 110, the conductive portion 210 and the core wire 810 of the cable 800 have a relatively large contact area, so that the stability of the core wire 810 is relatively good.
[0050] In other alternative embodiments, the extending direction of the conductive part 210 may also intersect or be skew to the axial direction of the wire passing hole 110.
[0051] In a further embodiment, referring to Figure 5 As shown, the electrical connector further includes a second elastic member 320 and a third elastic member 330. The second elastic member 320 is connected to the first elastic member 310 through the third elastic member 330, and the first elastic member 310 and the second elastic member 320 are disposed opposite to each other. The conductive member 200 further has a limiting portion 220. The limiting portion 220 intersects with the second elastic member 320. The limiting portion 220 is provided with an opening 221. One end of the second elastic member 320 passes through the opening 221 and is in limiting cooperation with the limiting portion 220 in the extending direction of the limiting portion 220. The extending direction of the limiting portion 220 is, for example, Figure 8 the direction indicated by the arrow line B in
[0052] In this embodiment, the second elastic member 320 and the limiting portion 220 are in limiting cooperation in the extending direction of the limiting portion 220, so that the overall movement of the first elastic member 310, the second elastic member 320, and the third elastic member 330 in the extending direction of the limiting portion 220 is restricted, and further the overall stability of the first elastic member 310, the second elastic member 320, and the third elastic member 330 is relatively good.
[0053] As a specific implementation manner, the free end of the first elastic member 310 is disposed in the opening 221 and can move relative to the limiting portion 220 in the extending direction of the limiting portion 220 and in the thickness direction of the limiting portion 220 to prevent interference between the first elastic member 310 and the limiting portion 220.
[0054] During the specific use process, when the first elastic member 310 elastically deforms in the direction away from the conductive member 200, the first elastic member 310 moves relative to the limiting portion 220 both in the extending direction of the limiting portion 220 and in the thickness direction of the limiting portion 220.
[0055] As a specific implementation manner, referring to Figure 8 As shown, the first elastic member 310, the second elastic member 320, and the third elastic member 330 are, for example, an integral structure and are, for example, formed by sequentially bending the same metal sheet. With such a setting, the step of connecting the third elastic member 330 to the first elastic member 310 and the second elastic member 320 is omitted, so that the assembly of the connecting component is relatively convenient. With such a setting, the overall strength of the first elastic member 310, the second elastic member 320, and the third elastic member 330 is relatively good, and they can better resist external force impacts.
[0056] In other alternative embodiments, the second elastic member 320 and the limiting portion 220 may not have a limiting cooperation relationship in the extending direction of the limiting portion 220.
[0057] In a further embodiment, referring to Figure 5 , Figure 7 and Figure 8 as shown, one end of the second elastic member 320 passing through the opening 221 is provided with a bent portion 321, and the bent portion 321 is in limiting cooperation with the limiting portion 220 in the thickness direction of the limiting portion 220. The thickness direction of the limiting portion 220 is, for example, perpendicular to the extending direction of the limiting portion 220, and the opening 221 penetrates through the limiting portion 220 along the thickness direction of the limiting portion 220, for example.
[0058] In this embodiment, the bent portion 321 is in limiting cooperation with the limiting portion 220 in the thickness direction of the limiting portion 220. In this way, the movement of the first elastic member 310, the second elastic member 320 and the third elastic member 330 as a whole in the thickness direction of the limiting portion 220 is restricted, so that the stability of the first elastic member 310, the second elastic member 320 and the third elastic member 330 as a whole is further improved.
[0059] In other alternative embodiments, there may be no limiting cooperation relationship between the bent portion 321 and the limiting portion 220 in the thickness direction of the limiting portion 220.
[0060] In a further embodiment, referring to Figure 5 as shown, at least one of the first elastic member 310 and the second elastic member 320 may also be in limiting cooperation with the housing 100 in a second direction, and the second direction is perpendicular to the extending direction of the second elastic member 320. The second direction is, for example, parallel to the thickness direction of the limiting portion 220 in the foregoing text. With such a setting, the housing 100 can restrict the movement of the first elastic member 310, the second elastic member 320 and the third elastic member 330 as a whole in the second direction, so that the stability of the first elastic member 310, the second elastic member 320 and the third elastic member 330 as a whole is better.
[0061] In other alternative embodiments, there may be no limiting cooperation relationship between the first elastic member 310 and the second elastic member 320 and the housing 100 in the second direction.
[0062] As a specific implementation manner, referring to Figure 6 , Figure 14 and Figure 16As shown, the housing 100 includes, for example, a first cover 120 and a second cover 130 that are detachably connected. The first cover 120 and the second cover 130 are oppositely arranged in a first direction. A first accommodation cavity is formed between the first cover 120 and the second cover 130. The conductive member 200 is entirely disposed in the first accommodation cavity. The wire passing hole 110 is provided in the second cover 130, for example, and is in communication with the first accommodation cavity. A part of the output port 150 is provided in the first cover 120, for example, and another part is provided in the second cover 130. The output port 150 is also in communication with the first accommodation cavity.
[0063] In another embodiment, referring to Figure 6 As shown, the pressing member 400 is provided with an avoidance opening 420. The avoidance opening 420 is opposite to and in communication with the wire passing hole 110. The avoidance opening 420 allows the core wire 810 to pass through. With such a setting, the core wire 810 can directly pass through the avoidance opening 420 without detouring to reach the input end 260 of the conductive member 200, thus making the connection between the core wire 810 and the conductive member 200 more convenient.
[0064] In other alternative embodiments, the pressing member 400 may not be provided with the avoidance opening 420.
[0065] In another embodiment, referring to Figure 8 As shown, the conductive member 200 further has a guiding portion 230. The guiding portion 230 is connected to the input end 260 of the conductive member 200. A part of the guiding portion 230 is disposed in the avoidance opening 420 and is in sliding fit with the avoidance opening 420 in the first direction. The guiding portion 230 is located below the axis of the wire passing hole 110 and is inclined with respect to the axis of the wire passing hole 110. And along the direction in which the guiding portion 230 extends from a position close to the conductive member 200 to a position away from the conductive member 200 along the axis of the wire passing hole 110, the distance between the guiding portion 230 and the axis of the wire passing hole 110 gradually increases. With such a setting, the guiding portion 230 can guide the movement of the core wire 810, so that the core wire 810 can move more smoothly to the input end 260 of the conductive member 200.
[0066] It should be noted that the "down" in this embodiment refers to the direction when the electrical connector is installed Figure 9 in the manner shown.
[0067] In other alternative embodiments, the conductive member 200 may not include the guiding portion 230.
[0068] In another embodiment, referring to Figure 7As shown, the first elastic member 310 includes a first elastic section 311, a second elastic section 312, and a third elastic section 313 that are connected in sequence. Both the first elastic section 311 and the third elastic section 313 are flat structures, and the second elastic section 312 is an arc-shaped structure. The first elastic section 311 is disposed opposite to the input end 260 of the conductive member 200. In other words, the first elastic section 311 serves as the free end of the first elastic member 310. The convex surface of the second elastic section 312 faces the pressing member 400 and can abut against the pressing member 400. The third elastic section 313 is used to abut against the housing 100. That is to say, the third elastic section 313 serves as the fixed end of the first elastic member 310.
[0069] In this embodiment, the convex surface of the second elastic section 312 is closer to the pressing member 400 than the first elastic section 311 and the second elastic section 312. By abutting the convex surface of the second elastic section 312 against the pressing member 400, the pressing member 400 can move a short distance to abut against the first elastic member 310, so that the pressing member 400 can more conveniently and quickly drive the first elastic member 310 to elastically deform in a direction away from the conductive member 200.
[0070] In other alternative embodiments, the second elastic section 312 can also be a flat structure. In this case, the first elastic section 311, the second elastic section 312, and the third elastic section 313 are, for example, in the same plane.
[0071] In another embodiment, referring to Figure 5 and Figure 6 As shown, a blocking portion 410 is provided, for example, on the part of the pressing member 400 disposed in the inner cavity of the housing 100. The blocking portion 410 protrudes from the pressing member 400 in a direction away from the axis of the pressing member 400. The axial direction of the pressing member 400 coincides with the first direction, for example. The blocking portion 410 and the inner wall of the housing 100 can be in limit fit in the first direction.
[0072] In this embodiment, the inner wall of the housing 100 can limit the blocking portion 410 from disengaging from the inner cavity of the housing 100, so as to prevent the part of the pressing member 400 disposed in the inner cavity of the housing 100 from disengaging from the inner cavity of the housing 100 in the first direction, and further prevent the pressing member 400 from being lost.
[0073] In another embodiment, referring to Figure 8 As shown, the conductive member 200 includes a conductive portion 210 and a pressing portion 250. The pressing portion 250 is connected to the conductive portion 210, and a slot 240 is formed therebetween. The slot 240 is configured as the output end of the conductive member 200 and is used for plugging and mating with the conductive terminal 710. The plugging and mating method can make the contact between the conductive terminal 710 and the conductive member 200 relatively tight and stable, so that the connection between the conductive terminal 710 and the conductive member 200 is relatively reliable.
[0074] As a specific implementation, the conductive part 210, the pressing part 250, the aforementioned limiting part 220, and the aforementioned guiding part 230 are integrally formed, for example, by bending a same metal sheet. With such a setting, the conductive member 200 is an integral structure as a whole, so that the overall strength of the conductive member 200 is better, and it can better resist external force impacts. Moreover, with such a setting, the steps of assembling the conductive part 210, the pressing part 250, the aforementioned limiting part 220, and the aforementioned guiding part 230 are omitted, thus making the assembly of the connection component more convenient.
[0075] In other alternative embodiments, the conductive member 200 may not include the pressing part 250. At this time, for example, one end of the conductive part 210 away from the wire passing hole 110 in its own extending direction is configured as the output end of the conductive member 200. During specific use, the end of the conductive part 210 away from the wire passing hole 110 in its own extending direction is directly in contact with the conductive terminal 710, so as to realize the conductive contact between the output end of the conductive member 200 and the conductive terminal 710.
[0076] Refer to Figures 1 to 4 As shown, in the embodiment of the present application, a connection component of a lamp is further provided, including: a hanging part 510, a mounting part 520, an electrical connection structure 700, and the aforementioned electrical connector. The mounting part 520 is used to be arranged on the lamp body 600 of the lamp, and the hanging part 510 is used to be arranged on a mounting base, and the mounting base is, for example, the ceiling of a building. The electrical connection structure 700 is arranged on the mounting part 520. The electrical connection structure 700 has a conductive terminal 710. The electrical connector is arranged on the hanging part 510, and the output end of the conductive member 200 of the electrical connector is used to be in conductive contact with the conductive terminal 710. The disassembly and assembly between the aforementioned electrical connector and the external cable 800 are relatively convenient. The connection component of the lamp provided in the embodiment of the present application includes the aforementioned electrical connector, so the disassembly and assembly between the connection component of the lamp provided in the embodiment of the present application and the external cable 800 are also relatively convenient.
[0077] As a specific implementation, refer to Figure 10 As shown, the electrical connection structure 700 includes, for example, a third cover body 720 and a fourth cover body 730. The third cover body 720 and the fourth cover body 730 are oppositely arranged in a first direction and are detachably connected, and a second accommodation cavity is formed therebetween. A part of the conductive terminal 710 is arranged in the second accommodation cavity, and this part is used to be electrically connected to the power supply of the lamp.
[0078] In another embodiment, refer to Figure 1 and Figure 11As shown, one of the hanging member 510 and the mounting member 520 is provided with a strip-shaped hole 511, and the other is provided with a connecting post 521. The connecting post 521 can be slidably mated with the strip-shaped hole 511 along the extending direction of the strip-shaped hole 511. The side surface of the connecting post 521 has a protruding portion 5211, and the protruding portion 5211 extends in a direction away from the axis of the connecting post 521. The cross-sectional area of the connecting post 521 at the position where the protruding portion 5211 is located is smaller than the cross-sectional area of the first end 5111 of the strip-shaped hole 511, so that the protruding portion 5211 can pass through the first end 5111 of the strip-shaped hole 511, and the cross-sectional area of the connecting post 521 at the position where the protruding portion 5211 is located is larger than the cross-sectional area of the second end 5112 of the strip-shaped hole 511. The first end 5111 and the second end 5112 of the strip-shaped hole 511 are two opposite ends of the strip-shaped hole 511 in its own extending direction. The output end of the conductive member 200 is configured as a slot 240. When the protruding portion 5211 passes through the first end 5111 of the strip-shaped hole 511, when the connecting post 521 slides from the first end 5111 of the strip-shaped hole 511 to the second end 5112 of the strip-shaped hole 511, the protruding portion 5211 is in limit fit with the second end 5112 of the strip-shaped hole 511 in the axial direction of the strip-shaped hole 511, and the conductive terminal 710 is inserted into the slot 240. When the conductive terminal 710 is inserted into the slot 240, the conductive terminal 710 is electrically connected to the conductive member 200.
[0079] Wherein, the conductive terminal 710 is inserted into the slot 240 along a third direction, and the third direction is parallel or coincident with the extending direction of the strip-shaped hole 511. The third direction is, for example, Figure 12 the direction indicated by the arrow line C in
[0080] In this embodiment, when the connecting post 521 slides from the first end 5111 of the strip-shaped hole 511 to the second end 5112 of the strip-shaped hole 511, the protruding portion 5211 is in limit fit with the second end 5112 of the strip-shaped hole 511 in the axial direction of the strip-shaped hole 511, so as to realize the hanging fit between the hanging member 510 and the mounting member 520, and further the lamp body 600 can be connected to the mounting base. And in this embodiment, during the process that the connecting post 521 slides from the first end 5111 of the strip-shaped hole 511 to the second end 5112 of the strip-shaped hole 511, the conductive terminal 710 gradually moves in a direction close to the slot 240. When the connecting post 521 completely slides to the second end 5112 of the strip-shaped hole 511, the conductive terminal 710 is inserted into the slot 240, so as to realize the electrical connection between the conductive terminal 710 and the conductive member 200, and the conductive member 200 is electrically connected to the external cable 800, and further the electrical connection between the conductive terminal 710 and the external cable 800, such as the mains cable, can be realized.
[0081] It can be seen that the connecting component provided in this embodiment can achieve the electrical connection between the conductive terminal 710 and the utility line while connecting the lamp body 600 to the installation base. In this way, the use of the connecting component is relatively convenient, enabling the user to assemble the lamp more conveniently and quickly.
[0082] As a specific implementation manner, for example, the hanging member 510 is provided with an installation hole 514, and the installation member 520 is connected to the installation base through the installation hole 514.
[0083] As a specific implementation manner, referring to Figure 12 As shown, the hanging member 510 is, for example, provided with a wire passing port 515. The external cable 800 first passes through the wire passing port 515 and then enters the wire passing hole 110.
[0084] In other alternative embodiments, the output end of the conductive member 200 may not be provided with the slot 240. And when the connecting column 521 slides from the first end 5111 of the strip-shaped hole 511 to the second end 5112 of the strip-shaped hole 511, for example, the output end of the conductive member 200 is connected to the conductive terminal 710 through a wire, so as to achieve the electrical connection between the conductive member 200 and the conductive terminal 710.
[0085] In another embodiment, referring to Figures 11 to 13 As shown, the strip-shaped hole 511 is provided in the hanging member 510. The hanging member 510 is provided with a first reinforcing rib 512 along the circumferential direction of the hanging member 510. The edge of the strip-shaped hole 511 is provided with a second reinforcing rib 513 extending along the circumferential direction of the strip-shaped hole 511. The installation member 520 is provided with a third reinforcing rib 522, and the connecting column 521 is connected to the third reinforcing rib 522. With such a setting, due to the existence of the first reinforcing rib 512, the second reinforcing rib 513, and the third reinforcing rib 522, the load-bearing capacity of the hanging member 510 and the installation member 520 is relatively good, so that the hanging member 510 and the installation member 520 can bear a lamp body 600 with a relatively large weight.
[0086] Furthermore, the installation member 520 may also be provided with a fourth reinforcing rib 523. And the number of the connecting columns 521, the strip-shaped holes 511, the second reinforcing ribs 513, and the third reinforcing ribs 522 is at least two. The connecting columns 521 correspond to the strip-shaped holes 511 and the third reinforcing ribs 522 one by one. The strip-shaped holes 511 correspond to the second reinforcing ribs 513 one by one. At least two third reinforcing ribs 522 are connected into one body through the fourth reinforcing rib 523 to further improve the load-bearing capacity of the installation member 520.
[0087] In other alternative embodiments, the hanging member 510 may not be provided with the first reinforcing rib 512, the edge of the strip-shaped hole 511 may not be provided with the second reinforcing rib 513, and at the same time, the installation member 520 may not be provided with the third reinforcing rib 522 and the fourth reinforcing rib 523.
[0088] In an embodiment of the present application, a lighting fixture is further provided, including: a lamp body 600 and the connection component described above. The mounting member 520 of the connection component is provided on the lamp body 600. The disassembly and assembly between the connection component described above and the external cable 800 are relatively convenient. The lighting fixture provided in the embodiment of the present application includes the connection component described above, so that the disassembly and assembly between the lighting fixture provided in the embodiment of the present application and the external cable 800 are relatively convenient.
[0089] In another embodiment, the lamp body 600 includes a circuit board 610, a light source module 620, a light-transmitting mask 630, a first frame 640, a second frame 650, and a pressing frame 660. The mounting member 520, the first frame 640, the second frame 650, and the pressing frame 660 are sequentially arranged along the axial direction of the lamp body 600 and are sequentially detachably connected. The mounting member 520 covers the surface of the first frame 640 facing away from the second frame 650. A positioning groove is provided on the surface of the mounting member 520 facing the first frame 640. The positioning groove is opposite to the internal space of the first frame 640. The circuit board 610 is arranged in the positioning groove. A light source module 620 is provided on the surface of the circuit board 610 facing the first frame 640. The light-transmitting mask 630 covers the surface of the second frame 650 facing away from the first frame 640 and is clamped between the second frame 650 and the pressing frame 660.
[0090] In this embodiment, the circuit board 610 is arranged in the positioning groove. With the help of the positioning groove, the position of the circuit board 610 can be positioned more conveniently and quickly, so that the installation of the circuit board 610 is more convenient.
[0091] In other alternative embodiments, the positioning groove may not be provided on the surface of the mounting member 520 facing the first frame 640.
[0092] The embodiments of the present application have been described above in conjunction with the accompanying drawings. However, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present application, those of ordinary skill in the art can also make many forms without departing from the purpose of the present application and the scope protected by the claims, and all belong to the protection scope of the present application.
Claims
1. An electrical connector, characterized in that: include: A housing (100), the housing (100) being provided with a wire hole (110) and an output port (150), the wire hole (110) being capable of allowing an external cable (800) to enter and exit an inner cavity of the housing (100), and the output port (150) being capable of allowing a conductive terminal (710) of an electrical device to enter and exit the inner cavity of the housing (100); A conductive member (200) and a first elastic member (310), wherein the conductive member (200) and the first elastic member (310) are both arranged in the inner cavity of the housing (100), the conductive member (200) having an input end (260) and an output end, the input end (260) of the conductive member (200) being arranged opposite to the first elastic member (310) so as to jointly clamp the core wire (810) of the cable (800), and the output end of the conductive member (200) being used for conductive contact with the conductive terminal (710); A pressing piece (400), wherein the pressing piece (400) and the shell (100) are slidably matched along a first direction, wherein the first direction intersects with the axis of the wire hole (110), and one end of the pressing piece (400) can be inserted into the inner cavity of the shell (100) and can be abutted against the first elastic piece (310), and the pressing piece (400) can drive the first elastic piece (310) to undergo elastic deformation in a direction away from the conductive piece (200), so that the first elastic piece (310) can be separated from the core wire (810).
2. The electrical connector according to claim 1, characterized in that: The shell (100) comprises a first side wall (140), the first side wall (140) is provided with the wire passing hole (110), the first elastic member (310) is configured as a first elastic sheet, the fixed end of the first elastic member (310) is against the shell (100), the free end of the first elastic member (310) is against the input end (260) of the conductive member (200), the free end of the first elastic member (310) and the fixed end of the first elastic member (310) are two ends of the first elastic member (310) opposite to each other in its own extension direction, the extension direction of the first elastic member (310) is inclined relative to the axis of the wire passing hole (110), and the distance between the free end of the first elastic member (310) and the first side wall (140) is greater than the distance between the fixed end of the first elastic member (310) and the first side wall (140); And / or, the conductive member (200) comprises a conductive portion (210), the extension direction of the conductive portion (210) is parallel to the axial direction of the wire hole (110), and in the extension direction of the conductive portion (210), one end of the conductive portion (210) close to the wire hole (110) is the input end (260) of the conductive member (200).
3. The electrical connector according to claim 1, characterized in that: The electrical connector further comprises a second elastic member (320) and a third elastic member (330), wherein the second elastic member (320) is connected to the first elastic member (310) via the third elastic member (330), and the first elastic member (310) and the second elastic member (320) are arranged opposite to each other; The conductive member (200) further comprises a limiting portion (220), wherein the limiting portion (220) intersects with the second elastic member (320), the limiting portion (220) is provided with an opening (221), one end of the second elastic member (320) passes through the opening (221) and cooperates with the limiting portion (220) in an upper limit position in an extension direction of the limiting portion (220), and one end of the second elastic member (320) passing through the opening (221) is provided with a bending portion (321), and the bending portion (321) cooperates with the limiting portion (220) in an upper limit position in a thickness direction of the limiting portion (220); and / or at least one of the first elastic member (310) and the second elastic member (320) cooperates with the housing (100) in an upper limit position in a second direction, and the second direction is perpendicular to the extension direction of the second elastic member (320).
4. The electrical connector according to claim 1, characterized in that: The pressing member (400) is provided with an escape opening (420), the escape opening (420) is opposite to and communicates with the wire passing hole (110), and the escape opening (420) allows the core wire (810) to pass through; And / or, the first elastic member (310) comprises a first elastic section (311), a second elastic section (312) and a third elastic section (313) which are connected in sequence, the first elastic section (311) and the third elastic section (313) are both flat plate structures, the second elastic section (312) is an arc-shaped structure, the first elastic section (311) is arranged opposite to the input end (260) of the conductive member (200), and the convex surface of the second elastic section (312) faces the pressing member (400) and can be against the pressing member (400).
5. The electrical connector according to claim 4, characterized in that: The conductive member (200) further comprises a guide portion (230), the guide portion (230) being connected to an input end (260) of the conductive member (200), and a portion of the guide portion (230) being arranged in the avoidance opening (420) and slidably matched with the avoidance opening (420) in the first direction, the guide portion (230) being located below the axis of the wire-passing hole (110) and being arranged obliquely relative to the axis of the wire-passing hole (110), and in a direction extending from a position close to the conductive member (200) to a position away from the conductive member (200) along the axis of the wire-passing hole (110), the distance between the guide portion (230) and the axis of the wire-passing hole (110) gradually increases.
6. The electrical connector according to claim 1, characterized in that: The conductive member (200) comprises a conductive portion (210) and a pressing portion (250); the pressing portion (250) is connected to the conductive portion (210), and a slot (240) is formed between the two. The slot (240) is configured as an output end of the conductive member (200), and the slot (240) is used for plugging and mating with the conductive terminal (710).
7. A connection assembly for a lamp, characterized in that: include: A hanging part (510), a mounting part (520), an electrical connection structure (700), and an electrical connector as described in any one of claims 1 to 6, wherein the mounting part (520) is used to be arranged on the lamp body (600) of the lamp, the electrical connection structure (700) is arranged on the mounting part (520), the electrical connection structure (700) has a conductive terminal (710), the electrical connector is arranged on the hanging part (510), and the output end of the conductive part (200) of the electrical connector is used to be in conductive contact with the conductive terminal (710).
8. The connection assembly according to claim 7, characterized in that: One of the hanging member (510) and the mounting member (520) is provided with a strip hole (511), and the other is provided with a connecting column (521), the connecting column (521) can be slidably matched with the strip hole (511) along the extension direction of the strip hole (511), the side surface of the connecting column (521) has a protrusion (5211), and the protrusion (5211) extends in a direction away from the axis of the connecting column (521), and the cross-sectional area of the position where the connecting column (521) has the protrusion (5211) is smaller than the cross-sectional area of the first end (5111) of the strip hole (511), so that the protrusion (5211) can pass through the first end (5111) of the strip hole (511), and the cross-sectional area of the position where the connecting column (521) has the protrusion (5211) is larger than the cross-sectional area of the strip hole ( The first end (5111) of the strip hole (511) and the second end (5112) of the strip hole (511) are two opposite ends of the strip hole (511) in its own extension direction, the output end of the conductive member (200) is configured as a slot (240), and in the case where the protrusion (5211) passes through the first end (5111) of the strip hole (511), when the connecting column (521) slides from the first end (5111) of the strip hole (511) to the second end (5112) of the strip hole (511), the protrusion (5211) and the second end (5112) of the strip hole (511) are engaged in an upper limit position in the axial direction of the strip hole (511), and the conductive terminal (710) is inserted into the slot (240); Wherein, the conductive terminal (710) is inserted into the slot (240) along a third direction, and the third direction is parallel to or coincides with the extension direction of the strip-shaped hole (511).
9. The connection assembly according to claim 8, characterized in that: The strip-shaped hole (511) is provided on the hanging member (510), a first reinforcing rib (512) is provided on the hanging member (510) along the circumference of the hanging member (510), a second reinforcing rib (513) extending along the circumference of the strip-shaped hole (511) is provided on the edge of the strip-shaped hole (511), the mounting member (520) is provided with a third reinforcing rib (522), and the connecting column (521) is connected to the third reinforcing rib (522).
10. A lamp, characterized in that: include: A lamp body (600) and a connecting assembly as claimed in any one of claims 7 to 9, wherein the mounting member (520) of the connecting assembly is arranged on the lamp body (600).