Connection devices and lighting fixtures
Patent Information
- Application Number
- CN202522140874.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2025-09-25
- Filing Date
- 2025-10-09
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-10-09
AI Technical Summary
[0002]灯具如灯串包括用于发光的发光体及用于接入市电的接线端子,灯具的接线端子与发光体的一端连接,以及灯具的接线端子和灯具的灯罩连接,一些情况下不方便操作
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Figure CN224706863U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of lighting fixtures for mains power (alternating current), and more particularly to a connection device and a lighting fixture. Background Technology
[0002] Lighting fixtures, such as string lights, include a light-emitting element for emitting light and a terminal block for connecting to mains power. The terminal block of the lighting fixture is connected to one end of the light-emitting element, and the terminal block of the lighting fixture is connected to the lampshade of the lighting fixture, which is inconvenient to operate in some cases. Utility Model Content
[0003] This application provides a connecting device and a lamp. In this application embodiment, one connecting component of the connecting device is connected to a light-emitting body, and another connecting component of the connecting device is connected to a lampshade, which facilitates user operation in some cases.
[0004] In a first aspect, the connecting device provided in the embodiments of this application includes: a first connecting component, a second connecting component, and an electrical connecting terminal, wherein the first connecting component, the second connecting component, and the electrical connecting terminal are rotatable around the same axis; The first connecting component includes a first connecting body, a first outer connecting structure, and a first inner connecting structure. The first connecting body is hollow, the first outer connecting structure is disposed on the outer side of the first connecting body, and the first inner connecting structure is disposed on the inner side of the first connecting body. The second connecting component includes a second connecting body and a second external connecting structure. The second external connecting structure is disposed on the outer side of the second connecting body. The second connecting component includes a mounting groove disposed on the second connecting body. A portion of the second connecting body and the second external connecting structure can be disposed within the first connecting body, and another portion of the second connecting body can be disposed outside the first connecting body, with the first internal connecting structure and the second external connecting structure connected together. At least a portion of the electrical connection terminal is disposed within the mounting groove of the second connection body, and the electrical connection terminal includes at least two electrodes with different polarities.
[0005] In one optional embodiment of the connection device of this application, the electrodes of the electrical connection terminals are arranged coaxially; or, the electrodes of the electrical connection terminals are arranged non-coaxially.
[0006] In one optional embodiment of the present application, a connecting device is provided, wherein a first inner connecting structure includes a connecting thread, a second outer connecting structure includes a connecting thread, and the first connecting component and the second connecting component are threadedly connected and disassembled. The inner side of the first connecting body and the outer side of the second connecting body are spaced apart, and the inner side of the first connecting body and the outer side of the second connecting body together define a plugging space, and the first external connecting structure is arranged around the plugging space.
[0007] In one optional embodiment of the connection device of this application, the first connection component further includes a first blocking structure, and the second connection component further includes a second blocking structure; The first blocking structure is disposed on the inner side of the first connecting body, and the first inner connecting structure is disposed on the first blocking structure; the second blocking structure is disposed on the outer side of the second connecting body, and the second outer connecting structure and the second blocking structure are disposed adjacent to each other, the first connecting component and the second connecting component are in a connected state, and the first blocking structure and the second blocking structure are adjacent to or attached to each other.
[0008] In one optional embodiment of the present application, a connection device is provided in which a first external connection structure is disposed near one end of the first connection body; The first connecting component and the second connecting component are in a connected state, and a part of the second connecting body extends from the end of the first connecting component where the first external connecting structure is provided; The first connecting component further includes a sealing structure, which is disposed on the outer side of the first connecting body. The sealing structure and the first external connecting structure are disposed adjacent to each other, and the sealing structure is disposed near the middle position of the first connecting body.
[0009] Secondly, the lighting fixture according to the embodiments of this application includes one or more light-emitting elements, one or more lampshades, and one or more connecting devices; One or more lampshades include an opening and a receiving space communicating with the opening, and one or more lampshades also include a connecting structure disposed at the opening; One or more light-emitting bodies include a rigid circuit board, one or more light-emitting elements electrically connected to the rigid circuit board, and an electrical connection terminal physically and electrically connected to the rigid circuit board. The electrical connection terminal of the light-emitting body includes at least two electrode components. The connecting device is the aforementioned connecting device, wherein an electrical connection terminal of the connecting device and an electrical connection terminal of a light-emitting body are capable of being plugged in and separated, and a first external connection structure of the connecting device is connected to a connection structure at the opening of the lampshade. When the electrical connection terminal of the connecting device and the electrical connection terminal of the light-emitting body are in a plugged-in state, at least two electrodes of the electrical connection terminal of the connecting device and at least two electrodes of the electrical connection terminal of the light-emitting body are correspondingly electrically connected. The first connecting component, the second connecting component, and the electrical connecting terminal of the connecting device can rotate together about the same axis relative to the lampshade, and the connecting device and the light-emitting body can rotate together about the same axis relative to the lampshade, or the connecting device can rotate relative to the lampshade and the light-emitting body.
[0010] In one optional embodiment of the lamp, the first external connection structure includes a connecting thread, and the connection structure at the opening of the lampshade includes a connecting thread. The first external connection structure and the connection structure at the opening of the lampshade can be threadedly connected and disassembled. The electrodes of the electrical connection terminals of the connecting device are arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are arranged coaxially; or, the electrodes of the electrical connection terminals of the connecting device are not arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are not arranged coaxially.
[0011] Thirdly, the lamp in the embodiment of this application includes a plurality of light-emitting elements, a plurality of lamp covers, and a plurality of connecting devices, wherein the connecting devices are the aforementioned connecting devices; One or more lampshades include a first opening, a second opening, and a receiving space communicating with the first opening and the second opening. One or more lampshades also include a second inner connection structure disposed at the first opening and a third inner connection structure disposed at the second opening. The second inner connection structure at the first opening of the lampshade is connected to the first outer connection structure of a connecting device, and the third inner connection structure at the second opening of the lampshade is connected to the first outer connection structure of another connecting device. One or more light-emitting bodies include a rigid circuit board, one or more light-emitting elements electrically connected to the rigid circuit board, and two electrical connection terminals physically and electrically connected to the rigid circuit board. The electrical connection terminals of the light-emitting body include at least two electrode elements. An electrical connection terminal of a light-emitting body and an electrical connection terminal of a connecting device are capable of being plugged in and detached. When the electrical connection terminals of the connecting device and the electrical connection terminals of the light-emitting body are in a plugged-in state, at least two electrode elements of the electrical connection terminals of the connecting device and at least two electrode elements of the electrical connection terminals of the light-emitting body are correspondingly electrically connected. There are two connecting devices between two adjacent lampshades, and the two connecting devices located between the two lampshades can be directly or indirectly connected. The first connecting component, the second connecting component, and the electrical connecting terminal of the connecting device can rotate together about the same axis relative to the lampshade, and the connecting device and the light-emitting body can rotate together about the same axis relative to the lampshade, or the connecting device can rotate relative to the lampshade and the light-emitting body.
[0012] In one optional embodiment of the lamp, the first external connection structure includes a connecting thread, and the connection structure at the opening of the lampshade includes a connecting thread. The first external connection structure and the connection structure at the opening of the lampshade can be threadedly connected and disassembled. The electrodes of the electrical connection terminals of the connecting device are arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are arranged coaxially; or, the electrodes of the electrical connection terminals of the connecting device are not arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are not arranged coaxially.
[0013] The lamp in one optional embodiment of this application further includes a third connecting component, which includes at least two connecting portions, and one connecting portion of the third connecting component is connected to a first connecting component of a connecting device. Attached Figure Description
[0014] Figure 1A , 1B 1C, 1D, 1E, 1F, 2A, 2B, 3A, 3B, 3C, 3D, 4A, 4B and 4C are structural diagrams of electrical connection terminals in embodiments of this application.
[0015] Figure 1G , 1H Figure 1I is a structural diagram of the female connector in the electrical connection terminal of some embodiments of this application.
[0016] Figure 2C This is a structural diagram of the first electrode in the electrical connection terminal of some embodiments of this application.
[0017] Figure 3E and 3F This is a structural diagram of the male connector in the electrical connection terminal of some embodiments of this application.
[0018] Figure 4D This is a structural diagram of the second electrode in the electrical connection terminal of some embodiments of this application.
[0019] Figure 5A , 5B Figures 6A, 6B, 6C, 7A, 7B, 7C, 8A, 8B, and 8C are structural diagrams of the electrical connection devices in embodiments of this application.
[0020] Figure 9A , 9B Figures 9C, 9D, 9E, 9F, 9G, 9H, 9I, 9J, 9K, 9L, 10, 11 and 12 are structural diagrams of terminal assemblies in embodiments of this application.
[0021] Figure 13 and 14 This is a structural diagram of the electrical plug-in according to an embodiment of this application.
[0022] Figure 15A , 15B 16, 17, 18A, 18B, 18C, 18D, 19, 20, 21A, 21B, 22, 23, 24A, 24B, 24C, 24D, 25, 26, and 27 are structural diagrams of the light-emitting body in the embodiments of this application.
[0023] Figure 28A , 28BFigures 28C, 28D, 28E, 28F, 28G, 28H, 28I, 28J, 28K, 32, 33, 34 and 35 are structural diagrams of the lamps in the embodiments of this application.
[0024] Figure 29A and 29B This is a structural diagram of the lampshade in the lamp fixture of this application embodiment.
[0025] Figure 30A , 30B 30C, 30D and 30E are structural diagrams of the connecting device in some embodiments of this application.
[0026] Figure 31A and Figure 31B This is a diagram showing the connection and separation states of the first connecting component and the third connecting component of this application. Detailed Implementation
[0027] like Figure 1A , 1B The embodiments of this application provide electrical connection terminals (100A, 100B, 200A, 200B) for mains power. Mains power can be understood as alternating current (AC), with an effective voltage between 100V and 240V, such as 100V, 110V, 120V, 220V, and 230V. The electrical connection terminals (100A, 100B, 200A, 200B) for mains power will be referred to as electrical connection terminals (100A, 100B, 200A, 200B) below. These electrical connection terminals (100A, 100B, 200A, 200B) can be used in electrical appliances, such as lamps.
[0028] In some embodiments, the electrical connection terminals (100A, 100B) can be female terminals (100A, 100B), and the electrical connection terminals (200A, 200B) can be male terminals (200A, 200B). In some embodiments, combined with Figure 9A , Figure 9B , Figure 9C The electrical connection terminals (200A, 200B) and electrical connection terminals (100A, 100B) can be plugged in and detached. In other embodiments, combined with Figure 10 Electrical connection terminals (200A, 200B) and electrical connection terminals (100A, 100B) are connected by wires. In other embodiments, combined with Figure 11 Electrical connection terminals (200A, 200B) and electrical connection terminals (100A, 100B) are directly connected.
[0029] For example, the electrical connection terminals (100A, 100B) have a structure that accommodates at least a portion of other terminals, such as male terminals (200A, 200B), in combination with Figure 9A , Figure 9B , Figure 9C When at least a portion of the structure of the electrical connection terminals (200A, 200B) is accommodated within the accommodating space of the electrical connection terminals (100A, 100B), that is, when at least a portion of the electrical connection terminals (200A, 200B) is inserted into the electrical connection terminals (100A, 100B), the electrical connection terminals (200A, 200B) and the electrical connection terminals (100A, 100B) achieve both physical and electrical connection. Figure 9A , Figure 9B , Figure 9C This diagram illustrates the physical and electrical connections between electrical connection terminals (200A, 200B) and electrical connection terminals (100A, 100B). It should be noted that these electrical connection terminals (200A, 200B) and electrical connection terminals (100A, 100B) can be separated after being physically and electrically connected. Figure 9D , Figure 9D The diagram illustrates the separated state of electrical connection terminals (200A, 200B) and electrical connection terminals (100A, 100B). In this embodiment, the electrical connection terminals (200A, 200B) and electrical connection terminals (100A, 100B) can rotate relative to each other during and after insertion.
[0030] like Figure 1A , 1B 1C, 1D, 1E, 1F, 1G, 1H, 1I, the electrical connection terminal 100A includes a first electrode 110A, a second electrode 120, and a female connector 130. For example... Figure 2A , 2B 2C, Electrical connection terminal 100B includes a first electrode 110B, a second electrode 120, and a female connector 130. The second electrode 120 and female connector 130 of electrical connection terminal 100A have the same structure as the second electrode 120 and female connector 130 of electrical connection terminal 100B. In other optional embodiments, the second electrode 120 and female connector 130 of electrical connection terminal 100A have different structures than the second electrode 120 and female connector 130 of electrical connection terminal 100B. Electrical connection terminals (100A, 100B) have a first axis P1, and the first electrode 110A, second electrode 120, and female connector 130 of electrical connection terminals (100A, 100B) can rotate together around the first axis P1.
[0031] For example, both the first electrode (110A, 110B) and the second electrode 120 are made of conductive material. When the electrical connection terminals (100A, 100B) are energized, the first electrode (110A, 110B) can act as one electrode, and the second electrode 120 can act as another electrode, for example, the first electrode (110A, 110B) can act as the negative electrode, and the second electrode 120 can act as the positive electrode.
[0032] For example, the female connector 130 serves as a carrier for the first electrode (110A, 110B) and the second electrode 120, and the female connector 130 is made of insulating material.
[0033] like Figure 1C , 1D 1E, 1F, 1G, 1H, the female connector 130 includes a carrier 132 and a spacer 131 disposed at one end of the carrier 132. Exemplarily, the carrier 132 and the spacer 131 are integrally formed, for example, by plastic injection molding. In other optional embodiments, the carrier 132 and the spacer 131 are fixedly connected together, for example, by a physical connection, including but not limited to adhesive connection and threaded connection.
[0034] The spacer 131 and the support 132 together define a groove 133. The support 132 has a through hole 1321 that penetrates the support 132 along the first axis P1. The through hole 1321 communicates with the groove 133, and the spacer 1321 surrounds the through hole 131, with the hole wall of the through hole 1321 spaced apart from the spacer 131. The edges of the spacer 131 and the support 132 are spaced apart.
[0035] like Figure 1A , 1B 1C, 1D, 1E, 1F, 1G, 1H, 1I, the first electrode (110A, 100B) includes a first part (111A, 111B). The first part (111A, 111B) of the first electrode (110A, 100B) is disposed on the outside of the spacer 131 and surrounds the spacer 131. The outer surface of the spacer 131 and the first electrode (110A, 100B) including the first part (111A, 111B) are spaced apart to define a first spacer space 101. The first part of the first electrode (110A, 100B) can undergo elastic deformation to change the size of the first spacer space 101. Figure 1D and Figure 2C The diagram illustrates the state of the first part (111A, 111B) before it undergoes elastic deformation, which is called the initial state. Figure 1EThe diagram illustrates the state of the first part 111A after elastic deformation, referred to as the deformation state; wherein, the first part 111A is in the second position X2 after elastic deformation from the first position X1. The first position X1 can be understood as the initial position, and the second position X2 can be understood as the deformation position.
[0036] like Figure 1A , 1B 1C, 1D, 1E, 1F, 1G, 1H, 1I, 2A, 2B, 2C, the second electrode 120 includes a first part 121, the first part 121 of the second electrode 120 is disposed inside the spacer 131, and the first part 121 of the second electrode 120 is located in the groove 133, the spacer 131 is disposed around the first part 121 of the second electrode 120, the spacer 131 completely confines the first part 121 of the second electrode 120 within the spacer 131, the inner surface of the spacer 131 is spaced apart from the first part 121 of the second electrode 120 to define the second spacer space 102.
[0037] The spacer 131 separates the first electrode (110A, 100B), including the first portion (111A, 111B), from the first portion 121 of the second electrode 120.
[0038] Among them, the female seat 130, the first electrode (110A, 110B) and the second electrode 120 can rotate together around the same axis, namely the first axis P1.
[0039] The first electrode (110A, 110B) also includes a second part (112A, 112B) and a third part (113A, 113B). The first part (111A, 111B), the second part (112A, 112B) and the third part (113A, 113B) of the first electrode (110A, 110B) are connected in sequence. The second electrode 120 also includes a second part 122 and a third part 123. The first part 121, the second part 122 and the third part 123 of the second electrode 120 are connected in sequence. The second portions (112A, 112B) of the first electrode elements (110A, 110B) are disposed on the carrier 132, and the second portion 122 of the second electrode element 120 is disposed on the carrier 132, wherein the second portions (112A, 112B) of the first electrode elements (110A, 110B) and the second portion 122 of the second electrode element 120 are insulated from each other on the carrier 132. The third portions (113A, 113B) of the first electrode elements (110A, 110B) are disposed outside the carrier 132, and the third portion 123 of the second electrode element 120 is disposed outside the carrier 132, wherein the third portions (113A, 113B) of the first electrode elements (110A, 110B) and the third portion 123 of the second electrode element 120 are insulated from each other.
[0040] For example, the second portions (112A, 112B) of the first electrode members (110A, 110B) are disposed on the outer surface of the carrier 132. For example, the outer surface of the carrier 132 is provided with at least one platform 1322, and the second portions (112A, 112B) of the first electrode members (110A, 110B) are disposed on the platform 1322. For example, the second portion 122 of the second electrode member 120 is disposed within the through hole 1321.
[0041] For example, the electrical connection terminals (100A, 100B) further include a limiting member 140, which includes a first limiting body 141 and a second limiting body 142, which are integrally disposed. The first limiting body 141 is connected to the carrier 132 and is disposed outside the first portion (111A, 111B) of the first electrode (110A, 110B). The first limiting body 141 can limit the radial movement of the first portion (111A, 111B) of the first electrode (110A, 110B) along the electrical connection terminals (100A, 100B). A portion of the first limiting body 141 is disposed on the outer side of the carrier 132, and the first limiting body 141 covers the second part (112A, 112B) of the first electrode (110A, 110B), and the first limiting body 141 and the second part (112A, 112B) of the first electrode (110A, 110B) abut against each other.
[0042] For example, the second limiting body 142 is disposed at the end of the first limiting body 141 away from the carrier 132. The first portion (111A, 111B) of the first electrode (110A, 110B) away from the carrier 132 is restricted within the second limiting body 142. The second limiting body 142 can restrict the first portion (111A, 111B) of the first electrode (110A, 110B) from moving axially along the electrical connection terminals (100A, 100B). The axial direction of the electrical connection terminals (100A, 100B) can be understood as the direction of the first axis P1 of the electrical connection terminals (100A, 100B). The second limiting body 142 is disposed radially from the spacer 131 along the electrical connection terminals (100A, 100B). The limiting member 140 in this embodiment can limit the range of motion of the first part (111A, 111B) of the first electrode (110A, 110B), while the limiting member 140 can increase the strength of the first part (111A, 111B) of the first electrode (110A, 110B).
[0043] In one optional embodiment, the limiting member 140 is made of a conductive material, and a portion of the first limiting body 141 is sleeved on the outer surface of the carrier 132 and connected to the carrier 132. In another optional embodiment, the limiting member 140 is made of an insulating material, and a portion of the first limiting body 141 is connected to the outer surface of the carrier 132, or the first limiting body 141 and the spacer 131 are disposed at the same end of the carrier 132. When the limiting member 140 is also made of an insulating material, the limiting member 140 and the carrier 132 can be integrally formed, for example, by plastic injection molding. It should be noted that it is also feasible for the limiting member 140 and the carrier 132 to be non-integral, for example, by using threaded connection, adhesive layer connection, etc.
[0044] For example, in the initial state, the first portion (111A, 111B) of the first electrode (110A, 110B) and the spacer 131 are spaced apart by a distance L1 along the radial direction of the electrical connection terminals (100A, 100B). In other words, in the initial state, the first portion (111A, 111B) of the first electrode (110A, 110B) is spaced apart by a distance L1 along the radial direction of the electrical connection terminals (100A, 100B). The width of the second space 102 along the radial direction of the electrical connection terminals (100A, 100B) is L2, the distance between the second limiting body 142 and the spacer 131 along the radial direction of the electrical connection terminals (100A, 100B) is L3, and the thickness of the spacer 131 along the radial direction of the electrical connection terminals (100A, 100B) is H1.
[0045] For example, H1 ≥ 0.5 mm.
[0046] For example, L2 ≥ 1 mm.
[0047] For example, L2≥L1≥H1.
[0048] For example, L3 > L1. This ensures that other terminals, such as male terminals (200A, 200B), can be inserted into the first spacer space 101 and the second spacer space 102 through the opening 103 of the electrical connection terminals (100A, 100B). It should be noted that the opening 103 of the electrical connection terminals (100A, 100B) can be understood as the opening 103 of the first spacer space 101 and the second spacer space 102.
[0049] For example, the first portion 121 of the second electrical connector 120 has a cylindrical structure.
[0050] For example, the female base 130, the first electrode (110A, 110B), the second electrode 120 and the limiting member 140 can rotate together around the same axis, namely the first axis P1.
[0051] For example, the first portion 111A of the first electrode 110A includes an abutment portion 115A and a mounting portion 114A connected to each other. The abutment portion 115A is capable of elastic deformation. In the initial state, at least a portion of the abutment portion 115A is closer to the spacer 131 than the mounting portion 114A. Similarly, the initial state of the abutment portion 115A can be understood as the initial state of the first portion 111A, which will not be described further here.
[0052] In one alternative embodiment, both ends of the abutment portion 115A are connected to the mounting portion 114A. Exemplarily, the abutment portion 115A is arched.
[0053] In another alternative embodiment, one end of the abutment portion 115B is connected to the mounting portion 114B, while the other end of the abutment portion 115B is separated from the mounting portion 114B. For example, the other end of the abutment portion 115B is located away from the opening 103 of the electrical connection terminal 100B. For example, the abutment portion 115B includes a first deformable structure 1151, a second deformable structure 1152, and a third deformable structure 1153 connected in sequence. All three structures are capable of deformation, and the first and third deformable structures are bent relative to the second deformable structure 1152. The second deformable structure 1152 is closer to the spacer 131 than both the first and third deformable structures 1151 and 1153. During the process of inserting other terminals, such as male terminals (200A, 200B), into electrical connection terminal 100B, one of the electrical connectors of male terminals (200A, 200B) will preferentially abut against the second deformation structure 1152, and continue to connect male terminals (200A, 200B) and electrical connection terminal 100B. The male terminals (200A, 200B) drive the second deformation structure 1152 to deform preferentially, thereby driving the first deformation structure 1151 and the third deformation structure 1153 to deform, thereby changing the space of the first gap space 101.
[0054] The first electrode members (110A, 110B) also include a plurality of through holes (1141A, 1141B) formed on the mounting portions (114A, 114B), with the plurality of through holes (1141A, 1141B) spaced apart. In one optional embodiment, a through hole 1141A is formed between two adjacent abutment portions 115A. The hole wall 1142A forming the through hole 1141A can be part of the abutment portion 115A. In another optional embodiment, the two ends of the abutment portion 115A are directly connected to the inner surface 1143A of the mounting portion 114A.
[0055] In one alternative embodiment, the abutment portion 115B and the through hole 1141B are positioned correspondingly, and the abutment portion 115B is connected to the hole wall 1142B forming the through hole 1141B. One or both ends of the abutment portion 115B are connected to the hole wall 1142B. In another alternative embodiment, one end of the abutment portion 115B is connected to the inner surface 1143B of the mounting portion 114B.
[0056] In one alternative embodiment, the mounting portion 114A is disposed around the spacer 131. In another alternative embodiment, the mounting portion 114B includes an opening 1144B formed on its side, which saves material on the mounting portion 114B.
[0057] In actual testing, it was found that if the first electrode (110A, 110B) and the second electrode 120 are not separated by the spacer 131, the second electrode 120 will be directly surrounded by the first electrode (110A, 110B). That is, the second electrode 120 is located on the inner wall of the first electrode (110A, 110B), with no physical isolation between them, only air between them, posing a risk of mutual contact. On the other hand, since the first part (111A, 111B) of the first electrode (110A, 110B) can undergo elastic deformation, and this part of the elastically deformable part is designed to bulge inward toward the second electrode 120, the first part (111A, 111B) is at risk of falling off or loosening due to deformation, which could lead to contact between the first electrode (110A, 110B) and the second electrode 120, resulting in a short circuit. Based on this, the embodiments of this application design at least one spacer, such as spacer 131, between the two electrode components to separate them, thus physically isolating the two electrode components. This directly prevents contact between the two electrode components due to deformation, loosening, or detachment, thereby avoiding short circuits. Furthermore, in the embodiments of this application, the first portion (111A, 111B) of the first electrode component (110A, 110B) is enclosed by the limiting member 140, and the first portion 121 of the second electrode component 120 is completely located within the spacer 131. This ensures that the first portion (111A, 111B) of the first electrode component (110A, 110B) and the first portion 121 of the second electrode component 120 are not exposed. Gold fingers cannot touch the first electrode component (110A, 110B) and the second electrode component 120 from the opening 103 of the electrical connection terminals (100A, 100B), making it applicable to AC mains power and complying with electrical safety regulations. It should be noted that when the limiting member 140 is made of a conductive material such as metal, an insulating connector is also provided on the outside of the electrical connection terminals (100A, 100B). The component including the connector and the electrical connection terminals (100A, 100B) is called an electrical connection device, which will be described exemplarily below with reference to other accompanying drawings.
[0058] like Figure 5A , 5B Types 6A, 6B, 6C, 7A, 7B, 7C, 8A, 8B, and 8C, and electrical connection devices (1000A, 1000B, 1000C, 1000D) include electrical connection terminals 100 and connectors 1100. Connectors 1100 are made of insulating material, such as plastic. Connectors 1100 cover the outer surface of the electrical connection terminal 100 and one end face of the electrical connection terminal 100, allowing the open end of the electrical connection terminal 100 to be exposed. The electrical connection terminal 100 can be either electrical connection terminal 100A or electrical connection terminal 100B.
[0059] The connector 1100 may include a connector body 1110 and a sleeve 1120. The sleeve 1120 is disposed on the first end face 1111 of the connector body 1110, for example, the sleeve 1120 and the first end face 1111 of the connector body 1110 are integrally disposed. The outer surface 1113 of the connector body 1110 is provided with an external thread 1114, which is used to connect with the internal thread at the opening of the lampshade. The female connector 130, the first electrode (110A, 110B) and the second electrode 120 of the electrical connector terminal 100 are all disposed on the connector body 1110 and protrude from the first end face 1111. The sleeve 1120 is disposed around the female connector 130, the first electrode (110A, 110B) and the second electrode 120 of the electrical connector terminal 100, and the first electrode (110A, 110B) and the second electrode 120 are confined within the sleeve 1120. Thus, a portion of the electrical connection terminal 100 is disposed within the connection body 1110, and one end of the electrical connection terminal 100 is wrapped by the connection body 1110. The outer side of the portion of the electrical connection terminal 100 not disposed within the connection body 1110 is wrapped by the sleeve 1120. Other terminals, such as male terminals (200A, 200B), can be inserted into the electrical connection terminal 100 from the end of the sleeve 1120 away from the connection body 1110.
[0060] Electrical connection terminal 100 and connector 1100 can rotate together around the same axis, namely the third axis P3. That is, female connector 130, first electrode (110A, 110B), second electrode 120 and connector 1100 can rotate together around the same axis, namely the third axis P3. The third axis P3 and the first axis P1 are coaxial.
[0061] In practical applications, before the female terminals (100A, 100B) and male terminals (200A, 200B) of this embodiment are plugged in, the female terminals (100A, 100B) are first electrically connected to the electrical plug. The connector 1100 of this embodiment ensures that the electrical connection terminals 100 do not come into contact with the first electrical connector (110A, 110B) during the gold finger detection process, thus meeting the requirements for devices using AC mains power, such as lighting fixtures. In some cases, the male terminals (200A, 200B) do not need to be covered by connectors like connector 1100, which facilitates the insertion of the male terminals (200A, 200B) into the female terminals (100A, 100B).
[0062] For example, such as Figure 1A , 1B 1C, 1D, 1E and Figure 2BAs shown, a groove 143 is provided on the outer side of the first limiting body 141. The outer side of the first limiting body 141 can be surrounded and connected by the connecting body 1110. A part of the connecting body 1110 can be placed in the groove 143, thereby increasing the connection strength between the first limiting body 141 and the connecting body 1110.
[0063] like Figure 6A , 6B The electrical connection devices (1000B, 1000C, 1000D) also include mounting bodies (1130B, 1130C, 1130D), which are directly or indirectly connected to the second end face 1112 of the connecting body 1110. The mounting bodies (1130B, 1130C, 1130D) are used to install the electrical connection devices (1000B, 1000C, 1000D) at a predetermined location, which may be a wall, ceiling, or similar location. This application embodiment does not limit the predetermined location for installing the electrical connection devices (1000B, 1000C, 1000D).
[0064] For example, the mounting bodies (1130B, 1130C, 1130D) are made of insulating material and can be integrally formed with the connecting body 1110, such as by integral molding of plastic.
[0065] For example, the mounting bodies (1130B, 1130C, 1130D) are connected to the center of the connecting body 1110.
[0066] In one alternative embodiment, the mounting body 1130B includes a hook 1131B and an mounting space 1132B and an opening 1133B defined by the hook 1131B.
[0067] In another alternative embodiment, the mounting body 1130D includes a mounting ring 1131D and a mounting space 1132D defined by the mounting ring 1131D.
[0068] In another optional embodiment, the mounting body 1130C includes a mounting structure 1134C, a first mounting portion 1131C, a second mounting portion 1132C, and a third mounting portion 1133C. The first mounting portion 1131C and the second mounting portion 1132C are arranged along a first direction F1, and the third mounting portion 1133C is arranged along a second direction F2 with the first mounting portion 1131C and / or the second mounting portion 1132C. The first direction F1 and the second direction F2 are perpendicular. One end of the third mounting portion 1133C away from the first mounting portion 1131C and / or the second mounting portion 1132C is directly or indirectly connected to the second end face 1112. The mounting structure 1134C is arranged along the second direction F2 with the first mounting portion 1131C and / or the second mounting portion 1132C, and the mounting structure 1134C and the third mounting portion 1133C are disposed opposite to each other. The mounting structure 1134C, together with the first mounting portion 1131C and / or the second mounting portion 1132C, defines a mounting hole; or the mounting structure 1134C, together with the first mounting portion 1131C and / or the second mounting portion 1132C, defines a mounting space and an opening; or the mounting structure 1134C defines a mounting hole 1135C on its own; or the mounting structure 1134C defines a mounting space and an opening on its own.
[0069] For example, the mounting body 1130C includes at least one inclined surface 1136C located on the third mounting portion 1133C, such that the size of the portion of the third mounting portion 1133C with the inclined surface 1136C is varied, for example, the size of the third mounting portion 1133C gradually increases from the end away from the first mounting portion 1131C and / or the second mounting portion 1132C toward the end closer to the first mounting portion 1131C and / or the second mounting portion 1132C.
[0070] For example, the third portion (113A, 113B) of the first electrode (110A, 110B) and the third portion 123 of the second electrode 120 in the electrical connection terminal 100 are electrically connected to the wire 1200. For example, the wire 1200 passes through the connecting body 1110 and is electrically connected to the third portion (113A, 113B) of the first electrode (110A, 110B) and the third portion 123 of the second electrode 120. The wire 1200 extends from the second end face 1112 of the connecting body 1110. It is understood that the wire 1200 may include at least two metal wires and an insulating sleeve wrapped around the metal wires. The other end of the wire 1200 can be electrically connected to an electrical plug. The second end face 1112 of the connecting body 1110 is opposite to the first end face 1111.
[0071] The number of wires 1200 can be one or at least two. For example, Figure 5A and5B The diagram shows a wire with a diameter of 1200.
[0072] For example, Figure 6A , 6B Figures 6C, 8A, 8B, and 8C illustrate two wires 1200, namely a first wire 1210 and a second wire 1220. In one scenario, one of the first wire 1210 and the second wire 1220 can be connected to an electrical plug, while the other can be connected to the electrical connection terminal of another electrical connection device. In another scenario, both the first wire 1210 and the second wire 1220 can be connected to the electrical connection terminal of another electrical connection device. For example, the first wire 1210 and the second wire 1220 are located on opposite sides of the mounting body (1130B, 1130D).
[0073] For example, Figure 7A , 7B Figure 7C illustrates three wires 1200: a first wire 1210, a second wire 1220, and a third wire 1230. The third wire 1230 is directly electrically connected to the electrical connection terminal 100, and a portion of the third wire 1230 is located between the connecting body 1110 and the third mounting portion 1133C. The first wire 1210 is electrically connected to both the second wire 1220 and the third wire 1230. The second wire 1220 can be electrically connected to the electrical connection terminals of other electrical connection devices, and the first wire 1210 can be electrically connected to an electrical plug. The connection points of the first wire 1210 with the second wire 1220 and the third wire 1230 are enclosed by the mounting body 1130C. The first wire 1210 is located outside the first mounting portion 1131C, and the second wire 1220 is located outside the second mounting portion 1132C. Exemplarily, the third wire 1230 is located at the center of the connecting body 1110.
[0074] like Figure 3A , 3B 3C, 3D, 3E, 3F, the electrical connection terminal 200A includes a third electrode 210, a fourth electrode 220A, and a male connector 230. For example... Figure 4A , 4B4C and 4D, electrical connection terminal 200B includes a third electrode 210, a fourth electrode 220B, and a male connector 230. The third electrode 210 and male connector 230 of electrical connection terminal 200A have the same structure as the third electrode 210 and male connector 230 of electrical connection terminal 200B. In other alternative embodiments, the third electrode 210 and male connector 230 of electrical connection terminal 200A have different structures than the third electrode 210 and male connector 230 of electrical connection terminal 200B. The electrical connection terminals (200A, 200B) have a second axis P2, and the third electrode 210, fourth electrode (220A, 220B), and male connector 230 of the electrical connection terminals (200A, 200B) can rotate together about the second axis P2.
[0075] For example, both the third electrode 210 and the fourth electrode (220A, 220B) are made of conductive material. When the electrical connection terminals (200A, 200B) are energized, the third electrode 210 can act as one electrode and the fourth electrode (220A, 220B) can act as another electrode, for example, the third electrode 210 as the negative electrode and the fourth electrode (220A, 220B) as the positive electrode.
[0076] For example, the male connector 230 serves as a carrier for the third electrode 210 and the fourth electrode (220A, 220B), and the male connector 230 is made of insulating material.
[0077] like Figure 3C , 3DThe male seat component 230 includes an outer spacer 231 and an inner spacer 233. The outer spacer 231 surrounds the inner spacer 233, and the outer spacer 231 and the inner spacer 233 are spaced apart to define a first groove 234. The male seat component 230 also includes a support body 232, with the outer spacer 231 and the inner spacer 233 located at the same end of the support body 232. For example, the support body 232, the outer spacer 231, and the inner spacer 233 are integrally formed, such as by plastic injection molding. It should be noted that the first groove 234 is jointly defined by the support body 232, the outer spacer 231, and the inner spacer 233. The inner spacer 233 and the support body 232 together define a second groove 235. When the male terminals (200A, 200B) and female terminals (100A, 100B) are connected, the third electrode 210 of the male terminals (200A, 200B) is inserted into the first spacer space 101, the fourth electrode (220A, 220B) is inserted into the second spacer space 102, the spacer body 131 of the female terminals (100A, 100B) is inserted into the first groove 234, and the second electrode 120 of the female terminals (100A, 100B) is inserted into the second groove 235. For example, the dimensions of the first groove 234 and the spacer body 131 are adapted to each other.
[0078] like Figure 3A , 3B The third electrode component 210 includes a first part 211, which is disposed on the outer spacer 131 and connected to it. The third electrode component 210 also includes a second part 212 and a third part 213. The second part 212 is disposed on the carrier 232 and connected to it. The third part 213 is disposed on the outside of the carrier 232. The first part 211, the second part 212, and the third part 213 are connected sequentially, for example, as a single unit.
[0079] like Figure 3A , 3BThe male seat components (200A, 200B) also include a third groove 236, which is disposed on the outer side of the support body 232 and the outer side of the outer spacer 231. The male seat components (200A, 200B) also include a first limiting structure 2311 and a second limiting structure 2324. The first limiting structure 2311 is located on the outer side of the outer spacer 231 away from the support body 232, and the second limiting structure 2324 is located on the outer side of the support body 232 away from the outer spacer 231. The third groove 236 is located between the first limiting structure 2311 and the second limiting structure 2324. A portion of the first part 211 and a portion of the second part 212 of the third electrode component 210 are disposed within the third groove 236, and both ends are limited by the first limiting structure 2311 and the second limiting structure 2324. In one optional embodiment, the outer surface of the portion of the third electrode 210 disposed within the third groove 236 is flush with the outer surfaces of the first limiting structure 2311 and the second limiting structure 2324. In other optional embodiments, the outer surface of the portion of the third electrode 210 disposed within the third groove 236 may be concave or convex compared to the outer surfaces of the first limiting structure 2311 and the second limiting structure 2324.
[0080] For example, the male seat components (200A, 200B) further include a fourth groove 2323, which is formed on the outer side of the support body 232 and is located near the second limiting structure 2324. The fourth groove 2323 communicates with the third groove 236. The third electrode component 210 also includes a protrusion 214, which is disposed on the inner side of the second portion 212 of the third electrode component 210. The protrusion 214 is disposed in the fourth groove 2323 and can connect with the groove wall forming the fourth groove 2323 to increase the stability of the third electrode component 210 connected to the support body 231 and the outer spacer 231.
[0081] For example, the outer side of the carrier 232 is provided with at least one platform 2322, and a portion of the second part 212 of the third electrode 210 is disposed on the platform 2322.
[0082] For example, the fourth electrode (220A, 220B) includes a first portion (221A, 221B) disposed within the inner spacer 233. The fourth electrode (220A, 220B) defines a insertion space (2214A, 2214B) for accommodating a second electrode 120 of other terminals such as female terminals (100A, 100B). The first portion (221A, 221B) of the fourth electrode (220A, 220B) is capable of elastic deformation within the inner spacer 233 to change the size of the insertion space (2214A, 2214B). Figure 3D and Figure 4B The diagram illustrates the state of the first part (221A, 221B) before it undergoes elastic deformation, which is called the initial state. Figure 4C The diagram illustrates the state of the first part 221B after elastic deformation, referred to as the deformation state; wherein, the first part 211B, after undergoing elastic deformation from the first position Y1, is at the second position Y2. The first position Y1 can be understood as the initial position, and the second position Y2 can be understood as the deformation position.
[0083] For example, the fourth electrode (220A, 220B) further includes a second part (222A, 222B) and a third part (223A, 223B). The first part (221A, 221B), the second part (222A, 222B) and the third part (223A, 223B) of the fourth electrode (220A, 220B) are connected in sequence. The second part (222A, 222B) of the fourth electrode (220A, 220B) is disposed inside the carrier 232, and the third part (223A, 223B) of the fourth electrode (220A, 220B) is disposed outside the carrier 232. For example, the carrier 232 is provided with a through hole 2321, which penetrates the carrier 232 along the second axis P2 direction. The through hole 2321 is connected to the second groove 235. The through hole 2321 is surrounded by an inner spacer 233, and the hole wall forming the through hole 2321 is spaced apart from or connected to the inner spacer 233.
[0084] For example, the first portion 211A of the fourth electrode 220A includes at least two electrode pieces, such as a first electrode piece 2211A and a second electrode piece 2212A, which are spaced apart by a insertion space 2214A. For example, the first electrode piece 2211A and the second electrode piece 2212A are arranged opposite to each other. The distance between the first electrode piece 2211A and the second electrode piece 2212A is variable. For example, the distance between the first electrode piece 2211A and the second electrode piece 2212A gradually increases and then gradually decreases from one end of the opening 203 of the electrical connection terminal 200A toward the other end, so as to facilitate the insertion of the second electrode 120 in other electrical connection terminals such as female terminals (100A, 100B) into the insertion space 2214. In this embodiment, the inner spacer 233 also has at least two fifth grooves 237, which are connected to the second groove 235. The number of fifth grooves 237 is the same as the number of electrode pieces (2211A, 2212A). For example, there are two fifth grooves 237, and one fifth groove 237 can accommodate one electrode piece (2211A, 2212A). The first electrode piece 2211A and the second electrode piece 2212A can undergo elastic deformation in the second groove 235 and the fifth groove 237. Specifically, during the mutual insertion of other terminals such as female terminals (100A, 100B) and male terminals (200A, 200B), the second electrode 120 is inserted into the insertion space 2214A, driving the electrode pieces (2211A, 2212A) to undergo elastic deformation. The opening 203 can be understood as the opening of the first groove 234 and the opening of the second groove 235.
[0085] For example, the first portion 221B of the fourth electrode 220B includes a mounting portion 225B and an abutting portion 224B. The abutting portion 224B is capable of elastic deformation. In its initial state, at least a portion of the abutting portion 224B is spaced apart from the inner surface of the inner spacer 233. Similarly, the initial state of the abutting portion 224B can be understood as the initial state of the first portion 221B, which will not be described further here.
[0086] In one optional embodiment, the abutment portion 224B and the mounting portion 225B are connected. Exemplarily, the abutment portion 224B is arched. In another optional embodiment, one end of the abutment portion 224B is connected to the mounting portion 225B, and the other end of the abutment portion 224B is separately disposed from the mounting portion 225B. For a more detailed structure, please refer to [reference needed]. Figure 2A , Figure 2B and Figure 2C This will not be elaborated upon here.
[0087] For example, the fourth electrode 220B further includes a plurality of through holes 2241B, which are spaced apart. In one optional embodiment, a through hole 2241B is formed between two adjacent abutment portions 224B. The hole wall 2242B forming the through hole 2241B can be part of the abutment portion 224B. In another optional embodiment, the two ends of the abutment portion 224B are directly connected to the inner surface 2243B of the mounting portion 225B; the specific structure can be found in [reference needed]. Figure 2A , Figure 2B and Figure 2C This will not be elaborated upon here.
[0088] Among them, the male seat 230, the third electrode 210 and the fourth electrode (220A, 220B) can rotate around the same axis, namely the second axis P2.
[0089] In this embodiment, the inner spacer 233 and the outer spacer 231 can completely separate the first part 211 of the third electrode 210 and the first part (221A, 221B) of the fourth electrode (220A, 220B). Furthermore, the first groove 234 formed between the inner spacer 233 and the outer spacer 231 can accommodate the spacer in the female terminals (100A, 100B). Therefore, after the male terminals (200A, 200B) and the female terminals (100A, 100B) are plugged into each other, the first electrode (110A, 110B) and the third electrode 210 are electrically connected, and the second electrode 120 and the fourth electrode (220A, 220B) are electrically connected. Moreover, the first electrode (110A, 110B) and the third electrode 210 are at least separated from the second electrode 120 and the fourth electrode (220A, 220B) by spacer 131, inner spacer 233 and outer spacer 231, thereby ensuring that there is sufficient physical isolation between the different electrodes after the male terminals (200A, 200B) and the female terminals (100A, 100B) are plugged in, ensuring safety performance.
[0090] like Figure 9A , 9BThe present application provides a terminal assembly (300A, 300B, 300C, 300D) for mains power, denoted as 9C, 9D, 9E, 9F, 9G, 9H, 9I, 9J, 9K, 9L, 10, 11, and 12. This terminal assembly (300A, 300B, 300C, 300D) can be used in electrical appliances, such as lighting fixtures. The terminal assembly (300A, 300B, 300C, 300D) includes a female terminal 100 and a male terminal 200. The female terminal 100 can refer to either the female terminal 100A or 100B mentioned above, and the male terminal 200 can refer to either the male terminal 200A or male terminal 200B mentioned above. For example, Figure 9E and 9F The schematic terminal assembly includes a female terminal 100A and a male terminal 100B; Figure 9G and Figure 9H The schematic terminal assembly includes a female terminal 100A and a male terminal 200B; Figure 9I and Figure 9J The schematic terminal assembly includes a female terminal 100B and a male terminal 200A; Figure 9K and Figure 9L The schematic terminal assembly includes a female terminal 100B and a male terminal 200B. The specific structures of the female terminal 100B and the male terminal 200B will not be described in detail in this embodiment.
[0091] Some embodiments, such as Figure 9A , 9B For terminals 9C, 9D, 9E, 9F, 9G, 9H, 9I, 9J, 9K, and 9L, the male terminal 200 and female terminal 100 of terminal assembly 300A can be plugged in and disconnected. Figure 9A , 9B The symbols 9C, 9E, 9F, 9G, 9H, 9I, 9J, 9K, and 9L indicate the connection status of male terminal 200 and female terminal 100. Figure 9D This illustrates the state where the male terminal 200 and the female terminal 100 are separated.
[0092] After the male terminal 200 and the female terminal 100 are plugged in, the first part 211 of the third electrode 210 and the outer spacer 231 are located in the first space 101, and the first part 211 of the third electrode 210 is in contact with the abutting part (115A, 115B) of the first electrode (100A, 100B). The first part (221A, 221B) of the fourth electrode (220A, 220B) and the inner spacer 233 are located in the second space 102. The first part 121 of the second electrode 120 is located in the plugging space (2214A, 2214B) of the fourth electrode (220A, 220B), and the first part 121 of the second electrode 120 is in contact with the first part (221A, 221B) of the fourth electrode (220A, 220B), thus realizing the electrical connection between the male terminal 200 and the female terminal 100.
[0093] During or after the insertion of the male terminal 200 and the female terminal 100, the male terminal 200 and the female terminal 100 can rotate relative to each other, for example, the male terminal 200 and the female terminal 100 can rotate around the fourth axis P4. Furthermore, at least an inner spacer 233, an outer spacer 231, and a spacer 131 of the female connector 130 are spaced apart from the first part 211 of the third electrode 210 and the first part (110A, 110B) of the first electrode (100A, 100B) and the first part 121 of the second electrode 120 and the first part (221A, 221B) of the fourth electrode (220A, 220B).
[0094] During or after the male terminal 200 and female terminal 100 are connected, the first part 211 of the third electrode 210 will press the first part (110A, 110B) of the first electrode (100A, 100B) to cause elastic deformation of the first part (110A, 110B) of the first electrode (100A, 100B), thereby ensuring that the two are in close contact; and the first part 121 of the second electrode 120 will press the first part (221A, 221B) of the fourth electrode (220A, 220B) to cause elastic deformation of the first part (221A, 221B) of the fourth electrode (220A, 220B), thereby ensuring that the two are in close contact.
[0095] For example, the outer surface of the outer electrode of the female terminal 100 is discontinuous, while the outer surface of the outer electrode of the male terminal 200 is continuous, for example, the outer surface of the outer electrode of the male terminal 200 has a smooth transition. It should be noted that the female terminal 100 is electrically connected to the plug before the male terminal. To ensure the user's electrical safety, an insulating connector 1100 is provided on the outer side of the female terminal 100. The outer surface of the outer electrode of the female terminal 100, such as the first electrode (110A, 110B), is discontinuous, which facilitates connection with the connector 1100.
[0096] Other embodiments, such as Figure 10 The male terminal 200 and female terminal 100 of the terminal assembly 300B are connected by a wire 340, which separates the male terminal 200 and female terminal 100. The male terminal 200, female terminal 100, and wire 340 can rotate together around a fifth axis P5. The terminal assembly 300B may also include a first connecting body 310A, a second terminal body 310B, a first external thread 330A, a second external thread 330B, a first sleeve 320A, and a second sleeve 320B. The female terminal 100 is disposed within the first sleeve 320A and the first connecting body 310A, and the first external thread 330A is disposed on the outer surface of the first connecting body 310A. The male terminal 200 is disposed within the second sleeve 320B and the second connecting body 310B, and the second external thread 330B is disposed on the outer surface of the second connecting body 310B. Figure 10 The male terminal 200 shown is used for mating with other female terminals, and Figure 10 The female terminal shown is used for mating with other male terminals. It should be noted that there is a gap between the second sleeve 320B and the male terminal 200, and the second sleeve 320B can be fitted onto the other female terminal during the mating process of the male terminal 200 with other female terminals.
[0097] Other embodiments, such as Figure 11 The male terminal 200 and female terminal 100 of the terminal assembly 300C are directly connected, and the male terminal 200 and female terminal 100 can rotate together around the sixth axis P6. The terminal assembly 300C may further include a first connecting body 310C, a second terminal body 310D, a first external thread 330C, a second external thread 330D, a first sleeve 320C, and a second sleeve 320D. The female terminal 100 is disposed within the first sleeve 320C and the first connecting body 310C, and the first external thread 330C is disposed on the outer surface of the first connecting body 310C. The male terminal 200 is disposed within the second sleeve 320D and the second connecting body 310D, and the second external thread 330D is disposed on the outer surface of the second connecting body 310D. Figure 11 The male terminal 200 shown is used for mating with other female terminals, and Figure 11The female terminal shown is used for mating with other male terminals. It should be noted that there is a gap between the second sleeve 320D and the male terminal 200, and the second sleeve 320D can be fitted onto the other female terminal during the mating process of the male terminal 200 with other female terminals.
[0098] Other embodiments, such as Figure 12 , Figure 12 The terminal assembly 300D shown is... Figure 10 The difference in the terminal assembly 300B shown is that the male terminal 200 is directly connected to the second connecting body 310B, and its outer side is not covered by a second body. Similarly, Figure 12 The male terminal 200 and female terminal 100 shown can rotate together around the seventh axis P7.
[0099] like Figure 13 and Figure 14 This application also provides an electrical connector (600A, 600B), which includes an electrical plug (640A, 640B), a wire (650A, 650B), and a female terminal 100. The female terminal 100 can refer to either female terminal 100A or female terminal 100B, and will not be described in detail here. The electrical plug 640A is physically and electrically connected to the female terminal 100 through the wire 650A, and the electrical plug 640B is physically and electrically connected to the female terminal 100 through the wire 650B. The structures of the electrical plug 640A and the electrical plug 640B are different. For example, the pins of the electrical plug 640A are roughly cylindrical, while the pins of the electrical plug 640B are roughly cuboid. For example, the electrical connectors (600A, 600B) may further include a connecting body (610A, 610B), a sleeve (620A, 620B), and an external thread (630A, 630B). A female terminal 100 is disposed within the connecting body (610A, 610B) and the sleeve (620A, 620B), and the external thread (630A, 630B) is disposed on the outer surface of the connecting body (610A, 610B). The connecting body (610A, 610B), the sleeve (620A, 620B), and the external thread (630A, 630B) can be referenced from the above description and will not be repeated here.
[0100] Figure 15A , 15B16, 17, 18A, 18B, 18C, 18D, 19, 20, 21A, 21B, 22, 23, 24A, 24B, 24C, 24D, 25, 26 and 27. This application also provides a light-emitting body (400A, 400B, 400C, 400D, 400E, 400F, 400G, 400H, 400I, 400J, 400K, 400L, 400M, abbreviated as 400A-M) for mains power. The light-emitting body (400A-M) will be referred to as light-emitting body (400A-M) in the following text. The light-emitting body (400A-M) can be applied to light-emitting electrical appliances, such as lamps.
[0101] An alternative embodiment, such as Figure 15A , 15B 16, 17, 18A, 18B, 18C, 18D, 19, 20, and 27, the light-emitting elements (400A, 400B, 400C, 400D, 400E, 400F, 400M) include one or more light-emitting elements 440, a male terminal 410, and a rigid circuit board (430A, 430B, 430C, 430D, 430E, 430F, 430M). The rigid circuit board (430A, 430B, 430C, 430M) is electrically connected to one or more light-emitting elements 440 to control the one or more light-emitting elements 440 to emit light, and the one or more light-emitting elements 440 can be LED light-emitting elements. Male terminal 410 is rigidly fixed to the rigid circuit board (430A, 430B, 430C, 430M) and electrically connected to it. This male terminal 410 can be referenced to male terminal 200A or male terminal 200B as described above; the specific structure of male terminal 410 will not be repeated here. After male terminal 410 and the rigid circuit board (430A, 430B, 430C, 430M) are fixedly connected, both male terminal 410 and the rigid circuit board (430A, 430B, 430C, 430M) can rotate together around the eighth axis P8. This male terminal 410 can be plugged into any of the above female terminals, such as female terminal 100A or female terminal 100B.
[0102] Another alternative embodiment, such as Figure 21A , 21BItems 22, 23, 24A, 24B, 24C, 24D, 25, and 26, and light-emitting elements (400G, 400H, 400I, 400J, 400K, 400L), include one or more light-emitting elements 440, a male terminal 410, a female terminal 420, and a rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L). The rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L) is electrically connected to one or more light-emitting elements 440 to control the light emission of one or more light-emitting elements 440, which can be LED light-emitting elements. The male terminal 410 and the female terminal are fixed to the rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L) as if rigidly fixed, and the male terminal 410 and the female terminal are electrically connected to the rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L). The male terminal 410 can refer to the male terminal 200A or male terminal 200B as described above, and the female terminal 100 can refer to the female terminal 100A or female terminal 100B as described above. The specific structure of the male terminal 410 and the female terminal 420 will not be described in detail here. After the male terminal 410 and female terminal 420 are fixedly connected to the rigid circuit boards (430G, 430H, 430I, 430J, 430K, 430L), the male terminal 410, female terminal 420, and rigid circuit boards (430G, 430H, 430I, 430J, 430K, 430L) can rotate together around the ninth axis P9. The male terminal 410 can be plugged into other female terminals such as female terminal 100A or female terminal 100B, and the female terminal 420 can be plugged into other male terminals such as male terminal 200A or male terminal 200B.
[0103] For example, the male terminal 410 is disposed at one end of the rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L), and the female terminal 420 is disposed at the other end of the rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L), with the male terminal 410 and the female terminal 420 positioned opposite each other. It should be noted that the positional relationship between the male terminal 410, the female terminal 420, and the rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L) is not limited to this. In other optional embodiments, the male terminal 410 and the female terminal 420 form an angle greater than 0 degrees and less than 180 degrees with respect to the rigid circuit board (430G, 430H, 430I, 430J, 430K, 430L).
[0104] like Figure 24A , 24BIn order to ensure the safety performance of the light-emitting elements (400J, 400K, 400L) during actual installation and application, embodiments of this application further include at least one outer casing (470J, 470K, 470L). The outer casing (470J, 470K, 470L) is arranged around the rigid circuit board (430J, 430K, 430L) to cover at least one light-emitting element 440. The outer casing (470J, 470K, 470L) is light-transmitting, and the light emitted by the light-emitting element 440 covered by the outer casing (470J, 470K, 470L) can pass through the outer casing (470J, 470K, 470L). The outer casing (470J, 470K, 470L) is also arranged around the female terminal 420, and the female terminal 420 is confined within the outer casing (470J, 470K, 470L). Therefore, during the gold finger detection process, the electrode components inside the female terminal 420 cannot be touched.
[0105] For example, the outer casing (470J, 470K, 470L) of the light emitter (400J, 400K, 400L) includes a first casing (471J, 471K, 471L) and a second casing (472J, 472K, 472L), which can be nested together. The second set of bodies (472J, 472K, 472L) covers the female terminal 420, and the inner side of the second set of bodies (472J, 472K, 472L) is spaced apart from the outer side of the female terminal 420; the first set of bodies (471J, 471K, 471L) covers the male terminal 410, and the inner side of the first set of bodies (471J, 471K, 471L) is spaced apart from the outer side of the male terminal 410; during the process of connecting the male terminal 410 and the female terminal 420 to other terminals, at least a portion of the other terminals can be inserted into the first set of bodies (471J, 471K, 471L) and the second set of bodies (472J, 472K, 472L). The first set (471J, 471K, 471L) and the second set (472J, 472K, 472L) together cover the rigid circuit board (430J, 430K, 430L).
[0106] The structure of the first set of bodies (471K, 471L) can be the same as that of the first set of bodies 471J, and the structure of the second set of bodies (472K, 472L) can be the same as that of the second set of bodies 472J. The embodiments of this application are described using the structures of the first set of bodies 471J and the second set of bodies 472J as examples.
[0107] For example, the first housing 471J includes a first housing portion 4711J, a second housing portion 4712J, and a first blocking portion 4713J. The first housing portion 4711J and the second housing portion 4712J are connected and arranged along the ninth axis P9. The first blocking portion 4713J is disposed at the connection position of the first housing portion 4711J and the second housing portion 4712J, and is disposed inside the first housing portion 4711J and the second housing portion 4712J. The second housing portion 4712J is used to housing the male terminal 410. The second housing 472J includes a third housing portion 4721J, a fourth housing portion 4722J, and a second blocking portion 4723J. The third housing portion 4721J and the fourth housing portion 4722J are connected and arranged along the ninth axis P9. The second blocking part 4723J is disposed at the connection position between the third sleeve part 4721J and the fourth sleeve part 4722J, and the second blocking part 4723J is disposed inside the third sleeve part 4721J and the fourth sleeve part 4722J. The fourth sleeve part 4722J is used to sleeve the female terminal 420. The first sleeve part 4711J and the third sleeve part 4721J are both used to sleeve the rigid circuit board 430J.
[0108] The first set of fixtures 4711J defines a first subspace 4731J, and the third set of fixtures 4721J defines a second subspace 4732J. The first subspace 4731J and the second subspace 4732J are connected to form a first space 473J. The first space 473J is used to accommodate a rigid circuit board 430J and one or more light-emitting elements 440. In some optional embodiments, the first space 473J may also accommodate other components such as a flexible circuit board 450 and a support 460. In this embodiment, one or more light-emitting elements 440 are directly disposed on the flexible circuit board 450, the flexible circuit board 450 is mounted on the support 460, and the flexible circuit board 450 and the rigid circuit board 430J are electrically connected. The support 460 can be disposed around the rigid circuit board 430J.
[0109] The second sleeve 4712J defines the connected second space 474J and the first opening 475J. The fourth sleeve 4722J defines the connected third space 477J and the second opening 478J. The first blocking part 4713J defines the first through hole 476J, and the second blocking part 4723J defines the second through hole 479J. The first through hole 476J connects the second space 474J and the first space 473J, and the second through hole 479J connects the third space 477J and the first space 473J. The male terminal 410 is accommodated in the second space 474J and the first through hole 476J. The female terminal is accommodated in the third space 477J and the second space 479J. In actual installation, the male terminal 410 is first inserted from the first sub-space 4731J into the first through hole 476J, and then further inserted into the second space 474J. The first blocking part 4713J is used to prevent the rigid circuit board 430J from entering the second space 474J. Then, the female terminal is inserted from the second sub-space 4732J into the second space 479J, and continues into the third space 477J. The second blocking part 4723J is used to prevent the rigid circuit board 430J from entering the third space 477J. Finally, the first sleeve part 4711J and the third sleeve part 4721J are connected together. It should be noted that it is also feasible to install the female terminal first and then the male terminal. For example, the first sleeve part 4711J is provided with a first connecting structure 4714J, and the third sleeve part 4721J is provided with a second connecting structure 4724J, which are fixedly connected. For example, the connection between the first connecting structure 4714J and the second connecting structure 4724J is smoothly transitioned. The connection methods of the first connecting structure 4714J and the second connecting structure 4724J include, but are not limited to: threaded connection, adhesive layer connection, snap-fit connection, and hot melt connection.
[0110] For example, the diameter of the first sleeve 4711J is larger than the diameter of the second sleeve 4712J.
[0111] For example, the diameter of the third sleeve 4721J is larger than the diameter of the fourth sleeve 4722J.
[0112] For example, the diameter of the first sleeve 4711J is equal to the diameter of the third sleeve 4721J.
[0113] For example, the diameter of the second sleeve 4712J is equal to the diameter of the fourth sleeve 4722J.
[0114] For example, the diameter of the first spacer 4713J is equal to the diameter of the second spacer 4723J.
[0115] In this embodiment, one or more light-emitting elements 440 and the rigid circuit board can be physically connected directly or indirectly.
[0116] One situation, such as Figure 15A , 15B One or more light-emitting elements 440 of the light-emitting bodies (400A, 400D, 400G, 400J) and the rigid circuit board (430A, 430D, 430G, 430J) are indirectly physically connected. One or more light-emitting elements 440 are physically and electrically connected to the rigid circuit board (430A, 430D, 430G, 430J) through the flexible circuit board 450. Specifically, one or more light-emitting elements 440 are disposed on one side of the flexible circuit board 450, and the other side of the flexible circuit board 450 is disposed around the rigid circuit board (430A, 430D, 430G, 430J). The flexible circuit board 450 can be disposed around the peripheral side of the rigid circuit board (430A, 430D, 430G, 430J) to expose at least one end face of the rigid circuit board (430A, 430D, 430G, 430J), which facilitates the electrical connection between the end face of the rigid circuit board (430A, 430D, 430G, 430J) and the male terminal 410. Alternatively, the flexible circuit board 450 may be positioned at least around the peripheral side of the rigid circuit board (430A, 430D, 430G, 430J) without covering at least one end face of the rigid circuit board 430A, to ensure that the male terminal 410 can be electrically connected to the rigid circuit board (430A, 430D, 430G, 430J). The flexible circuit board 450 and the rigid circuit board (430A, 430D, 430G, 430J) can be electrically connected via wires, or the flexible circuit board 450 and the rigid circuit board (430A, 430D, 430G, 430J) can be directly soldered to achieve electrical connection.
[0117] Another situation, such as Figure 16 , 17 As shown in 19, 20, 22, 23, 25, 26 and 27, one or more light-emitting elements 440 of the light-emitting body (400B, 400C, 400E, 400F, 400H, 400I, 400K, 400L, 400M) and the rigid circuit board (430B, 430C, 430E, 430F, 430H, 430I, 430K, 430L, 430M) are directly physically and electrically connected. One or more light-emitting elements 440 are directly disposed on at least one side of the rigid circuit board (430B, 430C, 430E, 430F, 430H, 430I, 430K, 430L, 430M) and are not disposed on the flexible circuit board.
[0118] In one alternative embodiment, such as Figure 27 The rigid circuit board 430M has two sides arranged opposite to each other, and one or more light-emitting elements 440 are disposed on one of the sides of the rigid circuit board 430M.
[0119] In one alternative embodiment, such as Figure 16 , 19 22, 25, The rigid circuit board (430B, 430E, 430H, 430K) has two oppositely arranged sides, and one or more light-emitting elements 440 are disposed on one side of the rigid circuit board (430B, 430E, 430H, 430K), or multiple light-emitting elements 440 are disposed on both sides of the rigid circuit board (430B, 430E, 430H, 430K).
[0120] In one alternative embodiment, such as Figure 17 , 20 23, 26, Rigid circuit boards (430C, 430F, 430I, 430L) have at least two bodies, each body defining two opposite sides. Figure 17 The light-emitting element 400C shown is used as an example for illustrative description. The rigid circuit board 430C includes a first board body 430C1 and a second board body 430C2. The first board body 430C1 has two opposing surfaces, and at least one surface of the first board body 430C1 is provided with one or more light-emitting elements 440. The second board body 430C2 has two opposing surfaces, and at least one surface of the second board body 430C2 is provided with one or more light-emitting elements 440. The first board body 430C1 and the second board body 430C2 are fixedly connected. For example, the first board body 430C1 has a slot structure for inserting the second board body 430C2.
[0121] For example, such as Figure 15A , 15B Models 18A, 18B, 18C, 21A, 21B, 24A, 24B, and 24C, and light emitters (400A, 400D, 400G, 400J), also include a support body 460. A flexible circuit board 450 is mounted on the support body 460, which serves as a carrier for the flexible circuit board 450. The flexible circuit board 450 and the rigid circuit boards (430A, 430D, 430G, 430J) are electrically connected. The support body 460 can be positioned around the rigid circuit board 430J.
[0122] For example, such as Figure 15A and Figure 15BAs shown, the first end 431 and the second end 432 of the rigid circuit board 430A are disposed opposite to each other. The rigid circuit board 430A also includes a first connection structure 433 disposed at the second end 432, and the first connection structure 433 is physically and electrically connected to the male terminal 410. It should be noted that when the second end 432 of the rigid circuit board 430A is connected to the female terminal, the second end 432 of the rigid circuit board 430A can be provided with a second connection structure for physical and electrical connection with the female terminal. Figure 21B As shown, the rigid circuit board 430G includes a first connection structure 431G disposed at one end thereof and a second connection structure 432G disposed at the other end thereof. The first connection structure 431G is physically and electrically connected to the male terminal, and the second connection structure 432G is physically and electrically connected to the female terminal 420.
[0123] For example, such as Figure 15A and Figure 15B As shown, the rigid circuit board 430A also includes a second limiting structure 436 disposed at the first end 431 and a first limiting structure 435 disposed at the second end 432. The first limiting structure 435 and the second limiting structure 436 define a limiting groove 437 on the side of the rigid circuit board 430A. The support body 460 and a part of the flexible circuit board 450 are placed in the limiting groove 437, thereby limiting the support body 460 and the flexible circuit board 450 between the first limiting structure 435 and the second limiting structure 436.
[0124] For example, such as Figure 15A , 15B The male terminals 410 of the light-emitting elements (400A, 400B, 400C, 400D, 400E, 400F, 400G, 400H, 400I, 400J, 400K, 400L) are disposed at the ends of the rigid circuit boards (430A, 430B, 430C, 430D, 430E, 430F, 430G, 430H, 430I, 430J, 430K, 430L). In this embodiment, the rigid circuit board (430A, 430B, 430C, 430D, 430E, 430F, 430G, 430H, 430I, 430J, 430K, 430L) can be connected to one terminal, namely the male terminal 410, or to two terminals, namely the male terminal 410 and the female terminal 420.
[0125] For example, such as Figure 27The male terminal 410 of the light-emitting element 400M is disposed on one side of the rigid circuit board 430M, and one or more light-emitting elements 440 are disposed on the other side of the rigid circuit board 430M. In this embodiment, the rigid circuit board 430M is connected to only one terminal, namely the male terminal 410, and is not connected to the female terminal.
[0126] Other alternative embodiments, such as Figure 18A , 18B In cases where the light-emitting elements (400D, 400E, 400F) include only the male terminal 410 and not the female terminal, the light-emitting elements (400D, 400E, 400F) also include a jacket (470D, 470E, 470F). The jacket (470D, 470E, 470F) is disposed around the rigid circuit board (430D, 430E, 430F) to cover at least one light-emitting element 440. The jacket (470D, 470E, 470F) is light-transmitting, and the light emitted by the light-emitting element 440 covered by the jacket (430D, 430E, 430F) can pass through the jacket (470D, 470E, 470F). The outer casing (470D, 470E, 470F) is also arranged around the male terminal 410, which is confined within the outer casing (470D, 470E, 470F).
[0127] For example, the outer casing (470D, 470E, 470F) of the light emitter (400D, 400E, 400F) includes a first casing (471D, 471E, 471F) and a second casing (472D, 472E, 472F), which can be nested together. The first casing (471D, 471E, 471F) covers the male terminal 410, and the inner surface of the first casing (471D, 471E, 471F) is spaced apart from the outer surface of the male terminal 410; during the insertion process of the male terminal 410 and the female terminal, at least a portion of the female terminal can be inserted into the first casing (471D, 471E, 471F). The first set (471D, 471E, 471F) and the second set (472D, 472E, 472F) together cover the rigid circuit board (430D, 430E, 430F).
[0128] The structure of the first set of bodies (471E, 471F) can be the same as that of the first set of bodies 471D, and the structure of the second set of bodies (472E, 472F) can be the same as that of the second set of bodies 472D. The embodiments of this application are described using the structures of the first set of bodies 471D and the second set of bodies 472D as examples.
[0129] For example, the first housing 471D includes a first housing portion 4711D, a second housing portion 4712D, and a blocking portion 4713D. The first housing portion 4711D and the second housing portion 4712D are connected and arranged along the eighth axis P8. The blocking portion 4713D is disposed at the connection position of the first housing portion 4711D and the second housing portion 4712D, and the first blocking portion 4713D is disposed inside the first housing portion 4711D and the second housing portion 4712D. The second housing portion 4712D is used to housing the male terminal 410. The second housing 472D and the first housing portion 4711D are used together to housing the rigid circuit board 430D.
[0130] The first assembly 4711D and the second assembly 472D together define a first space 473D, which is used to accommodate a rigid circuit board 430D and one or more light-emitting elements 440. In some alternative embodiments, the first space 473D may also accommodate other components such as a flexible circuit board 450 and a support 460. In this embodiment, one or more light-emitting elements 440 are directly disposed on the flexible circuit board 450, which is mounted on the support 460, and the flexible circuit board 450 and the rigid circuit board 430D are electrically connected. The support 460 can be disposed around the rigid circuit board 430D.
[0131] The second sleeve portion 4712D defines a connected second space 474D and an opening 475D. The blocking portion 4713D defines a first through hole 476D. The second sleeve body 472D defines a second through hole 477D. The first through hole 476D connects the second space 474D and the first space 473D, and the second through hole 477D connects the first space 473D. The male terminal 410 is accommodated in the second space 474D and the first through hole 476D. In actual installation, the male terminal 410 is first inserted from the first sleeve portion 4711D into the first through hole 476D, and then further inserted into the second space 474D. The blocking portion 4713D is used to prevent the rigid circuit board 430D from entering the second space 474D. Then, the first sleeve portion 4711D and the second sleeve body 472D are connected together. For example, the first sleeve portion 4711D is provided with a first connecting structure 4714D, and the second sleeve body 472D is provided with a second connecting structure 4724D. The first connecting structure 4714D and the second connecting structure 4724D are fixedly connected. For example, the connection between the first connecting structure 4714D and the second connecting structure 4724D is smoothly transitioned. The connection methods between the first connecting structure 4714D and the second connecting structure 4724D include, but are not limited to: threaded connection, adhesive layer connection, snap-fit connection, and heat fusion connection. During the insertion process between the male terminal 410 and the female terminal, at least a portion of the female terminal can be inserted into the second sleeve portion 4712D through the opening 475D.
[0132] For example, the diameter of the first sleeve portion 4711D is larger than the diameter of the second sleeve portion 4712D.
[0133] For example, the diameter of the second body 472D is equal to the diameter of the first sleeve part 4711D.
[0134] like Figure 28A , 28B The present application provides a lamp (10A, 10B, 10C, 10D, 10E, 10F, 10G, 10H, 10I, 10J, 10K, hereinafter referred to as 10A-K) for use with mains power. The lamp (10A-K) will be referred to as lamp (10A-K) in the following text. The lamp (10A-K) includes at least one lampshade (500A, 500B), at least one light-emitting element 400, at least one electrical connection device (1000A, 1000C, 1000D), and one electrical plug (640A, 640B).
[0135] Combination Figure 29A and 29B The lampshade (500A, 500B) includes a receiving space 530 and at least one opening (510, 520) communicating with the receiving space 530. Exemplarily, the lampshade 500A includes a receiving space 530 and an opening 510 communicating with the receiving space 530; in this embodiment, the opening 510 is defined as a first opening 510. The lampshade 500A also includes an internal thread 540 provided at the first opening 510; in this embodiment, the internal thread 540 is defined as a first internal thread 540. The lampshade 500A also includes a mounting groove 560 provided at the first opening 510, the mounting groove 560 being located outside the first opening 510. Figure 15A and Figure 15B The connector 1100 in the electrical connection device 1000A also includes a mounting structure 1115 disposed on the outer side 1112, with the mounting structure 1115 arranged around the outer side 1112. After the external thread 1114 and the first internal thread 340 of the lampshade (500A, 500B) are connected, the mounting structure 1115 is fitted onto the surface of the lampshade (500A, 500B). To increase the connection stability between the electrical connection device 1000A and the lampshade (500A, 500B), after the external thread 1114 and the first internal thread 340 of the lampshade (500A, 500B) are connected, the mounting structure 1115 is placed in the mounting groove 560, and the surface at the connection position between the mounting structure 1115 and the lampshade (500A, 500B) is smoothly transitioned, so that the connection position between the mounting structure 1115 and the lampshade (500A, 500B) is smooth.
[0136] The lampshade 500B includes a receiving space 530 and a first opening 510 and a second opening 520 communicating with the receiving space 530. For example, the first opening 510 and the second opening 520 are disposed opposite to each other. The lampshade 500B also includes a first internal thread 540 disposed at the first opening 510 and a second internal thread 550 disposed at the second opening 520. The lampshade 500A also includes a mounting groove 560 disposed at the first opening 510 and a mounting groove 560 disposed at the second opening 520, and the mounting grooves 560 are located outside the first opening 510 and the second opening 520. For example, the mounting structures 1115 of the two electrical connection devices 1000A are respectively installed into the mounting grooves 560.
[0137] Any light emitter 400 includes a rigid circuit board and a light-emitting element electrically connected to the rigid circuit board. The rigid circuit board is connected to a male terminal, the structure of which can be referenced to male terminal 200A or male terminal 200B, and will not be described further here. In one optional embodiment, the structure of the light emitter 400 can be referenced to light emitters (400A, 400B, 400C, 400D, 400E, 400F, 400M), and will not be described further here. In another optional embodiment, the light emitter 400 may further include a female terminal. The structure of the light emitter 400 including the female terminal can be referenced to light emitters (400G, 400H, 400I, 400J, 400K, 400L), and will not be described further here.
[0138] The light source 400 can be inserted into the receiving space 530 of the lampshade 500 through any opening (510, 520), and the light source 400 can be removed from the receiving space 530 through any opening (510, 520).
[0139] The electrical connection devices (1000A, 1000C, 1000D) can be referenced above and will not be repeated here. It should be noted that it is also feasible to replace electrical connection device 1000C or 1000D in some lamps with electrical connection device 1000B.
[0140] The female terminal 100 of the electrical connection device (1000A, 1000C, 1000D) can be inserted into and separated from the male terminal 410 of the light-emitting element 400. At least a portion of the female terminal 100 of the electrical connection device (1000A, 1000C, 1000D) can be inserted together with the light-emitting element 400 into the receiving space 530 of the lampshade (500A, 500B) through any opening (510, 520). The connector 1100 of the electrical connection device (1000A, 1000C, 1000D) is detachably connected to the lampshade (500A, 500B). For example, the external thread 1124 of the connector 1100 can be connected to and separated from the first internal thread 540 or the second internal thread 550 of the lampshade (500A, 500B).
[0141] For example, during or after the insertion of the male terminal 410 of the light emitter 400 and the female terminal 100 of the electrical connection device (1000A, 1000C, 1000D), the male terminal 410 of the light emitter 400 and the female terminal 100 of the electrical connection device (1000A, 1000C, 1000D) can rotate relative to each other. This allows the electrical connection device (1000A, 1000C, 1000D) and the lampshade (500A, 500B) to be screwed together.
[0142] During or after the insertion of the male terminal 410 of the light emitter 400 and the female terminal 100 of the electrical connection device (1000A, 1000C, 1000D), the first part 211 of the third electrode 210 will squeeze the first part (110A, 110B) of the first electrode (100A, 100B) to cause elastic deformation of the first part (110A, 110B) of the first electrode (100A, 100B), thereby ensuring that the two are in close contact; and the first part 121 of the second electrode 120 will squeeze the first part (221A, 221B) of the fourth electrode (220A, 220B) to cause elastic deformation of the first part (221A, 221B) of the fourth electrode (220A, 220B), thereby ensuring that the two are in close contact.
[0143] After the male terminal 410 of the light emitter 400 and the female terminal 100 of the electrical connection device (1000A, 1000C, 1000D) are connected, the first part 211 of the third electrode 210 and the outer spacer 231 are located within the first spacer space 101, and the first part 211 of the third electrode 210 and the contacting parts (115A, 115B) of the first electrode (100A, 100B) are in contact. The first part (221A, 221B) of the fourth electrode (220A, 220B) and the inner spacer... The spacer 233 is located in the second space 102. The first part 121 of the second electrode 120 is located in the insertion space (2214A, 2214B) of the fourth electrode (220A, 220B). The first part 121 of the second electrode 120 and the first part (221A, 221B) of the fourth electrode (220A, 220B) are in contact, so as to realize the electrical connection between the male terminal 410 of the light emitter 400 and the female terminal 100 of the electrical connection device (1000A, 1000C, 1000D). The first part 211 of the third electrode 210 and the first part (110A, 110B) of the first electrode (100A, 100B) are separated from the first part 121 of the second electrode 120 and the first part (221A, 221B) of the fourth electrode (220A, 220B) by at least an inner spacer 233, an outer spacer 231 and a spacer 131 of the female seat 130.
[0144] The connection and disconnection states of the male terminal 410 of the light emitter 400 and the female terminal 100 of the electrical connection devices (1000A, 1000C, 1000D) can be referenced. Figure 9A , 9B The terminal assemblies 300A shown in 9C, 9D, 9E, 9F, 9G, 9H, 9I, 9J, 9K, and 9L will not be described in detail here.
[0145] The plugs (640A, 640B) are electrically connected to the female terminal 100 of an electrical connection device (1000A, 1000C, 1000D). The plugs (640A, 640B) are used to connect to mains power. For example, the plugs (640A, 640B) are inserted into a socket connected to mains power.
[0146] An alternative embodiment, such as Figure 28A , 28B28C, Lighting fixtures (10A, 10B, 10C) include a lampshade 500A, a light-emitting element 400, and an electrical connection device 1000A. The female terminal 100 of the electrical connection device 1000A of lighting fixture 10A is electrically connected to an electrical plug 640A via a wire 650A. The female terminal 100 of the electrical connection device 1000A of lighting fixture 10B is electrically connected to an electrical plug 640B via a wire 650B. The female terminal 100 of the electrical connection device 1000A of lighting fixture 10C is electrically connected to an electrical plug via a wire, and the connector 1100 of the electrical connection device 1000A of lighting fixture 10C is connected to a support base 11. The support base 11 can support the lampshade 500A, the electrical connection device 1000A, and the light-emitting element 400. The support base 11 can be placed in a predetermined position, such as on the ground or a table. It should be noted that support base 11 can also be replaced with a ground plug, for example, support base 11 can be replaced with... Figure 28H One of the plugins in it, number 12.
[0147] An alternative embodiment, such as Figure 28D , 28E The luminaires (10D, 10E, 10F, 10G) include multiple lampshades 500A, multiple light-emitting elements 400, and multiple electrical connection devices (1000C, 1000D). For example, the number of lampshades 500A, multiple light-emitting elements 400, and multiple electrical connection devices (1000C, 1000D) is the same. It should be noted that the multiple electrical connection devices (1000C, 1000D) in the luminaires (10D, 10E, 10F, 10G) of this application embodiment can also be replaced with electrical connection devices 1000B. The female terminals 100 of two adjacent electrical connection devices (1000C, 1000D) are connected by wires. In this design, the external thread 1114 of an electrical connector (1000C, 1000D) is connected to the first internal thread 540 at the first opening 510 of a lampshade 500A, and the female terminal 100 of the electrical connector (1000C, 1000D) is inserted into the male terminal 410 of a light-emitting element 400. The luminaires (10D, 10E, 10F, 10G) can be referred to as a string of lights. Figure 28D and Figure 28F This diagram illustrates a 640A electrical plug. Figure 28E and 28G Another type of plug 640B is shown. The plugs 640A and 640B have different structures.
[0148] An alternative embodiment, such as Figure 28HThe luminaire 10H includes multiple lampshades 500A, multiple light-emitting elements, and multiple electrical connection devices 1000A. For example, the number of lampshades 500A, light-emitting elements, and electrical connection devices 1000A is the same. Each electrical connection device 1000A is physically connected to a grounding plug 12, and the female terminal 100 of each electrical connection device 1000A is electrically connected to a wire 13.
[0149] An alternative embodiment, such as Figure 28I and 28J The luminaires (10I, 10J) include multiple lampshades 500B, multiple light-emitting elements 400, and multiple electrical connection devices (1000A). For example, the number of lampshades 500A and the number of light-emitting elements 400 are the same. The luminaires (10I, 10J) may include one electrical connection device 1000A or two electrical connection devices 1000A. This embodiment of the application uses two electrical connection devices 1000A as an example. Specifically, one electrical connection device 1000... A is connected to the electrical plugs (640A, 640B), and another electrical connection device 1000A is connected to the closed end of the lamps (10I, 10J). The closed end of the lamps (10I, 10J) and the electrical plugs (640A, 640B) are located at opposite ends of the lamps (10I, 10J). When there is only one electrical connection device 1000A, the lampshade at the end of the lamps (10I, 10J) furthest from the electrical plugs (640A, 640B) adopts the structure of lampshade 500A, while the other lampshades adopt the structure of lampshade 500B.
[0150] The luminaire (10I, 10J) also includes at least one terminal assembly 300, wherein the terminal assembly 300 can be one of terminal assembly 300B, terminal assembly 300C, or terminal assembly 300D. The terminal assembly 300 includes male and female terminals, which are connected via wires or directly. The terminal assembly 300 is physically connected to two adjacent lampshades 500B, and the terminal assembly 300 is detachable from the lampshades 500B. Specifically, the first external thread and the second external thread of the terminal assembly 300 are threadedly connected to the first internal thread and the second internal thread of the lampshade 500B. The male terminal of the terminal assembly 300 is inserted into the female terminal of one of the light-emitting elements 400, and the female terminal of the terminal assembly 300 is inserted into the male terminal of the other light-emitting element 400. The male terminal structure in the terminal assembly 300 and the male terminal in the light emitter 400 can refer to male terminal 200A or male terminal 200B. The female terminal structure in the terminal assembly 300 and the female terminal structure in the light emitter 400 can refer to female terminal 100A or female terminal 100B. They will not be described in detail here.
[0151] For example, the light-emitting element 400 in the luminaire (10I, 10J) is further encased in a jacket. The jacket surrounds the rigid circuit board of the light-emitting element 400 to cover at least one light-emitting element. The jacket is light-transmitting, allowing light emitted by the light-emitting element covered by the jacket to pass through it. The jacket also surrounds the female terminal of the light-emitting element 400 to confine the female terminal of the light-emitting element 400 within the jacket. After the male terminal of the light-emitting element 400 and the female terminal of the terminal assembly 300 are plugged in, a portion of the female terminal of the terminal assembly 300 is surrounded by the jacket. The jacket can be referenced to jacket 470J, which will not be described further here.
[0152] An alternative embodiment, such as Figure 28K The luminaire 10K includes multiple light strings, such as a first light string 10K1 and a second light string K2. Each light string, such as the first light string 10K1 and the second light string K2, can be referenced in luminaires 10I and 10J. Each light string, such as the first light string 10K1 and the second light string K2, includes one or two electrical connection devices, such as electrical connection devices 1000C, at least one terminal assembly 300, and multiple lamp shades 500B. It should be noted that in this embodiment, each light string, such as the first light string 10K1 and the second light string K2, includes a lamp shade 500A, which can also be replaced with a lamp shade 500B. The light strings, such as the first light string 10K1 and the second light string K2, are physically and electrically connected by wires.
[0153] For other alternative embodiments, please refer to Figure 30A , 30B Examples of luminaires (10L, 10M, 10N, 10P) include models 30C, 30D, 30E, 31A, 31B, 32, 33, 34, and 35. This embodiment also provides a connecting device 2000 and a luminaire (10L, 10M, 10N, 10P) having the connecting device 2000. The connecting device 2000 includes a first connecting member 2100, a second connecting member 2200, and an electrical connecting terminal 2300. The first connecting member 2100, the second connecting member 2200, and the electrical connecting terminal 2300 are rotatable about the same axis, such as the eleventh axis P11.
[0154] The first connecting component 2100 includes a first connecting body 2110, a first outer connecting structure 2120, and a first inner connecting structure 2130. The first connecting body 2110 is hollow and includes a channel 2111 that can penetrate through both end faces of the first connecting body 2110 along the eleventh axis P11. The first connecting body 2110 also includes an outer side surface 2112 and an inner side surface 2113 arranged opposite to each other. The first outer connecting structure 2120 is disposed on the outer side surface 2112 of the first connecting body 2110, and the first inner connecting structure 2130 is disposed on the inner side surface 2113 of the first connecting body 2110.
[0155] The second connecting component 2200 includes a second connecting body 2210 and a second external connecting structure 2220. The second external connecting structure 2220 is disposed on the outer side 2102 of the second connecting body 2210. The second connecting component 2200 includes a mounting groove 2211 disposed on the second connecting body 2210.
[0156] A portion of the second connecting body 2210 and the second external connecting structure 2220 can be disposed within the first connecting body 2110, and another portion of the second connecting body 2210 can be disposed outside the first connecting body 2110, and the first internal connecting structure 2130 and the second external connecting structure 2220 are connected.
[0157] At least a portion of the electrical connection terminal 2300 is disposed within the mounting groove 2211 of the second connection body 2210. The electrical connection terminal 2300 includes at least two electrodes with different polarities. For example, the electrical connection terminal 2300 includes a first electrode 2310 and a second electrode 2320 with different polarities, such as the first electrode 2310 being a positive electrode and the second electrode 2320 being a negative electrode. It should be noted that both the first electrode 2310 and the second electrode 2320 of the electrical connection terminal 2300 are electrically connected to a wire, such as a wire 2001. The wire 2001 can be electrically connected to other components, such as an electrical plug 15A, an electrical plug 15B, a solar panel component 16, etc. The second connecting body 2210 is provided with a wire hole 2214, which communicates with the mounting groove 2211. A portion of the wire 2001 is placed in the wire hole 2214, and the wire 2001 can pass through the wire hole 2214 to make an electrical connection with the first electrode 2310 and the second electrode 2320 of the electrical connection terminal 2300.
[0158] In one alternative embodiment, when the first electrode 2310 and the second electrode 2320 of the electrical connection terminal 2300 are coaxially arranged, one of the electrodes of the electrical connection terminal 2300, such as the second electrode 2320, is disposed on the inner side surface 2213 of the second connection body 2210. The inner side surface 2213 surrounds and forms a mounting groove 2211.
[0159] In practical applications, the end of the second connecting component 2200 with the electrical connection terminal 2300 is first inserted into the channel 2111 of the first connecting component 2100 from one end of the first connecting component 2100. Then, the end of the second connecting component 2200 with the electrical connection terminal 2300 extends out from the other end of the first connecting component 2100. The user can hold the first connecting component 2100 with one hand and the second connecting component 2200 with the other hand to connect the first inner connecting structure 2130 and the second outer connecting structure 2220, thereby realizing the connection between the first connecting component 2100 and the second connecting component 2200.
[0160] In some alternative embodiments, the various electrodes (2310, 2320) of the electrical connection terminal 2300 are coaxially arranged, for example... Figure 1A , Figure 1B , Figure 1C and Figure 1D The first electrode 110A and the second electrode 120 are shown. In other alternative embodiments, the electrodes (2310, 2320) of the electrical connection terminal 2300 are not coaxially arranged. It should be noted that when the electrodes (2310, 2320) of the electrical connection terminal 2300 are coaxially arranged, the electrodes (2310, 2320) are separated by at least one insulating layer, which can be referred to as spacer 131, and will not be described again here. In other alternative embodiments, when the electrodes (2310, 2320) of the electrical connection terminal 2300 are coaxially arranged, there is a partial air gap between the electrodes (2310, 2320). When there is an insulating layer between the electrodes (2310, 2320), the connection device 2000 can be applied to AC or DC power; when there is a partial air gap between the electrodes (2310, 2320), the connection device 2000 can be applied to DC power.
[0161] For example, the first inner connecting structure 2130 and the second outer connecting structure 2220 can be connected and detached. This facilitates disassembly and separation of the two structures, making them convenient for transportation and storage.
[0162] For example, the first inner connecting structure 2130 includes a connecting thread, and the second outer connecting structure 2220 includes a connecting thread. The first connecting component 2100 and the second connecting component 2200 can be threadedly connected and disassembled. It should be noted that the threaded connection of the first connecting component 2100 and the second connecting component 2200 facilitates installation and disassembly, and the threaded connection provides waterproofing, enabling their application in outdoor environments. It should also be noted that the first inner connecting structure 2130 and the second outer connecting structure 2220 can be connected using other methods, and additional waterproof structures or components can be designed if waterproofing is required. For example, the first inner connecting structure 2130 and the second outer connecting structure 2220 can be connected using snap-fit or screw connections. The connection state of the first connecting component 2100 and the second connecting component 2200 can be referenced... Figure 30B , Figure 30C and Figure 30D The separation state can be referenced. Figure 30A and 30E .
[0163] For example, the first connecting component 2100 further includes a first blocking structure 2140, and the second connecting component 2200 further includes a second blocking structure 2240; the first blocking structure 2140 is disposed on the inner side 2113 of the first connecting body 2110, and the first inner connecting structure 2130 is disposed on the first blocking structure 2140; the second blocking structure 2240 is disposed on the outer side 2212 of the second connecting body 2210, and the second outer connecting structure 2220 and the second blocking structure 2240 are disposed adjacent to each other, and the first connecting component 2100 and the second connecting component 2200 are in a connected state, with the first blocking structure 2140 and the second blocking structure 2240 adjacent to or in contact with each other. The first blocking structure 2140 and the second blocking structure 2240 are used to limit the position of the second connecting component 2200.
[0164] For example, the inner side 2113 of the first connecting body 2110 and the outer side 2212 of the second connecting body 2210 are spaced apart, and the inner side 2113 of the first connecting body 2110 and the outer side 2212 of the second connecting body 2210 together define a plugging space 2002, and the first external connecting structure 2120 is arranged around the plugging space 2002. The plugging space 2002 can accommodate other components. For example, during the plugging process with the electrical connection terminal 2300, a part of the other component can be sleeved on the outer side 2212 of the second connecting body 2210 and a portion can be inserted into the plugging space 2002.
[0165] For example, the first external connection structure 2120 is disposed near one end of the first connection body 2110; the first connection component 2100 and the second connection component 2200 are both in a connected state, and a part of the second connection body 2210 extends out from the end of the first connection component 2100 where the first external connection structure 2120 is disposed.
[0166] For example, the first connecting component 2100 further includes a sealing structure 2150, which is disposed on the outer side 2112 of the first connecting body 2110. The sealing structure 2150 and the first external connecting structure 2120 are disposed adjacent to each other, and the sealing structure 2150 is disposed near the middle position of the first connecting body 2110.
[0167] For example, the first external connection structure 2120 may include a threaded structure, such as referring to the first external thread. The first external connection structure 2120 is used for connection and disassembly with the connection structure at the opening of the lampshade in the lamp.
[0168] In one alternative embodiment, such as Figure 32 , 33And 34, the luminaire (10L, 10M, 10N) includes one or more light-emitting elements 3100, one or more lampshades 3200, and one or more connecting devices 2000.
[0169] One or more lampshades 3200 include an opening and a receiving space communicating with the opening, and one or more lampshades 3200 also include a connecting structure disposed at the opening. Figure 29A and Figure 29B The lampshade 3200 can be referenced from the lampshade 500A. The opening, accommodating space and connecting structure of the lampshade 3200 can be referenced from the first opening 510, the accommodating space 530 and the first internal thread 540, which will not be described in detail here.
[0170] One or more light-emitting bodies 3100 include a rigid circuit board 3110, one or more light-emitting elements 3120 electrically connected to the rigid circuit board 3110, and an electrical connection terminal 3130 physically and electrically connected to the rigid circuit board 3110. The electrical connection terminal 3130 of the light-emitting body 3100 includes at least two electrodes, such as a third electrode 3131 and a fourth electrode 3132. The third electrode 3131 and the fourth electrode 3132 of the light-emitting body 3100 have different polarities; for example, the third electrode 3131 is a positive electrode and the fourth electrode 3132 is a negative electrode. It is understood that the third electrode 3131 and the fourth electrode 3132 of the light-emitting body 3100 can be coaxially arranged or non-coaxially arranged. When the third electrode 3131 and the fourth electrode 3132 of the light-emitting element 3100 are coaxially arranged, the third electrode 3131 and the fourth electrode 3132 of the light-emitting element 3100 can refer to the third electrode 210 and the fourth electrode 220A or the fourth electrode 220B. It should be noted that when the third electrode 3131 and the fourth electrode 3132 of the light-emitting element 3100 are coaxially arranged, there may be an insulating component between the third electrode 3131 and the fourth electrode 3132 of the light-emitting element 3100, or a portion of them may be air-insulated.
[0171] The luminescent body 3100 can be referenced from luminescent bodies 400A, 400B, 400C, 400D, 400E, 400F and 400M, which will not be described in detail here.
[0172] For example, the electrical connection terminal 2300 of a connecting device 2000 and the electrical connection terminal 3130 of a light-emitting element 3100 can be plugged in and detached, and the connection structure at the opening 510 of the first external connection structure 2120 of the connecting device 2000 and the lampshade 3200 is connected by an internal thread 540. When the electrical connection terminal 2300 of the connecting device 2000 and the electrical connection terminal 3130 of the light-emitting element 3100 are in the plugged-in state, the electrical connection terminal 2300 of the connecting device 2000 to the... At least two electrode components (2310, 2320) and at least two electrode components (3131, 3132) of the electrical connection terminal 3130 of the light-emitting body 3100 are electrically connected to each other. For example, the positive electrode component of the electrical connection terminal 2300 of the connecting device 2000 is electrically connected to the positive electrode component of the electrical connection terminal 3130 of the light-emitting body 3100, and the negative electrode component of the electrical connection terminal 2300 of the connecting device 2000 is electrically connected to the negative electrode component of the electrical connection terminal 3130 of the light-emitting body 3100.
[0173] The first connecting component 2100, the second connecting component 2200, and the electrical connecting terminal 2300 of the connecting device 2000 can rotate together about the same axis, such as the eleventh axis P11, relative to the lamp cover 3200. The connecting device 2000 and the light-emitting body 3100 can rotate together about the same axis, such as the eleventh axis P11, relative to the lamp cover 3200, or the connecting device 2000 can rotate relative to the lamp cover 3200 and the light-emitting body 3100. In practical applications, the electrical connection terminals 3130 of the light-emitting body 3100 and 2300 of the connecting device 2000 can be plugged together to achieve electrical connection. Then, the light-emitting body 3100 and a part of the connecting device 2000 are inserted from the opening 510 of the lampshade 3200 into the receiving space 530 of the lampshade 3200. Then, the connecting device 2000 and the lampshade 3200 are driven to rotate relative to each other, so as to connect the first external connecting structure 2120 of the connecting device 2000 (e.g., external thread) and the connecting structure of the lampshade 3200 (e.g., internal thread 540) together. Thus, in a specific optional embodiment of this application, the first external connecting structure 2120 includes a connecting thread, and the connecting structure at the opening 510 of the lampshade 3200 includes a connecting thread or internal thread 540. The first external connecting structure 2120 and the connecting structure at the opening 510 of the lampshade 3200 can be threadedly connected and disassembled. For example, the lampshade 3200 also includes a mounting groove 560 communicating with the opening 510, and the sealing structure 2150 of the first connecting member 2100 is disposed in the mounting groove 560, with the outer surface of the sealing structure 2150 and the outer surface of the lampshade 3200 smoothly transitioning.
[0174] In one alternative embodiment, such as Figure 35The luminaire 10P includes multiple light-emitting elements (3100A and 3100B), multiple lampshades (3200A and 3200B), and multiple connecting devices 2000.
[0175] A 3200A lampshade can be referenced as a 3200 or 500A lampshade, which will not be elaborated here.
[0176] One or more lampshades 3200B include a first opening, a second opening, and a receiving space communicating with the first opening and the second opening. One or more lampshades also include a second internal connection structure disposed at the first opening and a third internal connection structure disposed at the second opening. One or more lampshades 3200B can refer to lampshade 500B. The first opening, the second opening, and the receiving space of lampshade 3200B can refer to the first opening 510, the second opening 520, and the receiving space 530 of lampshade 500B. The second internal connection structure can refer to the first internal thread 540, and the third internal connection structure can refer to the second internal thread 550. These will not be described in detail here.
[0177] The second inner connection structure at the first opening of the lampshade 3200B is connected to the first outer connection structure 2120 of a connecting device 2000, and the third inner connection structure at the second opening of the lampshade 3200B is connected to the first outer connection structure 2120 of another connecting device 2000.
[0178] A luminescent body 3100A can be referenced from luminescent body 3100, and will not be described in detail here.
[0179] One or more light-emitting elements 3100B include a rigid circuit board, one or more light-emitting elements electrically connected to the rigid circuit board, and two electrical connection terminals physically and electrically connected to the rigid circuit board. Each electrical connection terminal of the light-emitting element 3100B includes at least two electrode elements. The light-emitting element 3100B can be referenced to light-emitting elements 400G, 400H, 400J, 400K, and 400L, which will not be described in detail here.
[0180] An electrical connection terminal of a light-emitting element 3100B and an electrical connection terminal 2300 of a connecting device 2000 can be plugged in and disconnected. When the electrical connection terminal 2300 of the connecting device 2000 and the electrical connection terminal of the light-emitting element 3100B are plugged in, at least two electrodes (2310, 2320) of the electrical connection terminal 2300 of the connecting device 2000 and at least two electrodes of the electrical connection terminal of the light-emitting element 3100B are correspondingly electrically connected.
[0181] Two connecting devices 2000 are connected between two adjacent lampshades 3200B or two adjacent lampshades (3200A and 3200B). The two connecting devices 2000 located between the two lampshades 3200B or two lampshades (3200A and 3200B) can be directly or indirectly connected.
[0182] The first connecting component 2100, the second connecting component 2200, and the electrical connecting terminal 2300 of the connecting device 2000 can rotate together about the same axis relative to the lampshade (3200A and 3200B), and the connecting device 2000 and the light-emitting body 3100A can rotate together about the same axis relative to the lampshade 3200A, or the connecting device 2000 can rotate relative to the lampshade 3200B and the light-emitting body 3100B.
[0183] The luminaire 10P also includes a third connecting member 2400, which includes at least two connecting portions. One connecting portion of the first connecting member is connected to, for example, a first connecting member 2100 of a connecting device 2000 via a sleeve connection. Specifically, the third connecting member 2400 includes a first connecting portion 2410, a second connecting portion 2420, and a blocking portion 2430, which are connected sequentially. The outer diameter of the blocking portion 2430 is larger than the outer diameters of the first connecting portion 2410 and the second connecting portion 2420, and the outer diameters of the first connecting portion 2410 and the second connecting portion 2420 are equal. A portion of the first connecting body 2110 can be sleeved onto the first connecting portion 2410 or the second connecting portion 2420 and terminates at the blocking portion 2430.
[0184] In one embodiment, the electrodes (2310, 2320) of the electrical connection terminals 2300 of the connecting device 2000 are coaxially arranged, and the electrodes (3131, 3132) of the electrical connection terminals 3130 of the light emitter 3100 are coaxially arranged. In another embodiment, the electrodes (2310, 2320) of the electrical connection terminals 2300 of the connecting device 2000 are not coaxially arranged, and the electrodes (3131, 3132) of the electrical connection terminals 3130 of the light emitter 3100 are not coaxially arranged.
[0185] In this embodiment, at least two electrodes (2310, 2320) of the electrical connection terminal 2300 of the connecting device 2000 can be connected to AC or DC power. For example, at least two electrodes (2310, 2320) of the electrical connection terminal 2300 are electrically connected to the wire 14, and the wire 14 is electrically connected to the plug 15A or plug 15B, with plug 15A capable of receiving AC power. In other optional embodiments, a transformer component can be electrically connected between plug 15A or plug 15B and the connecting device 2000, allowing at least two electrodes (2310, 2320) of the electrical connection terminal 2300 of the connecting device 2000 to receive DC power. In other optional embodiments, the connecting device 2000 is electrically connected to the solar panel 16 via the wire 14, and the solar panel 16 can provide DC power to at least two electrodes (2310, 2320) of the electrical connection terminal 2300 of the connecting device 2000.
[0186] At least two electrodes (2310, 2320) of the electrical connection terminal 2300 of the connection device 2000 are directly electrically connected to the electrical plug 15A or the electrical plug 15B; or, at least two electrodes (2310, 2320) of the electrical connection terminal 2300 of the connection device 2000 are electrically connected to the electrical plug 15A or the electrical plug 15B through a transformer component; or, at least two electrodes (2310, 2320) of the electrical connection terminal 2300 of the connection device 2000 are electrically connected to the solar energy component 16.
[0187] The luminaires (10L, 10M, 10N, and 10P) also include a ground plug component 17, which is physically connected directly or indirectly to the first connecting component 2100 of the connecting device 2000. For example, the ground plug component 17 and the first connecting component 2100 are connected by a sleeve 18, which can be nested together. The end of the first connecting component 2100 away from the light-emitting element 3100 is nested with the sleeve 18. There can be one or more sleeves 18. When there are multiple sleeves 18, they can be nested together. It should be noted that the ground plug component 17 and the first connecting component 2100 can also be directly nested together. The ground plug component 17 can be inserted into the ground, and luminaires including the ground plug component 17, such as luminaires (10L, 10M, 10N, and 10P), can be called ground plug luminaires. It should be noted that the first connecting component 2100 of the connecting device 2000 can also be connected to other components, such as a hanging component, a ceiling component, or a base component. A lamp containing a hanging component can be called a pendant lamp, chandelier, or wall lamp; a lamp containing a ceiling component can be called a ceiling lamp; and a lamp containing a base component can be called a table lamp. It should also be noted that lamps with this connecting device 2000 can also be used in other scenarios, such as being placed in liquids, like a river; examples will not be provided here.
[0188] For example, the threads of the first inner connection structure 2130 and the first outer connection structure 2120 are either opposite or the same.
[0189] In this application embodiment, one connecting component of the connecting device 2000 is connected to the light-emitting body, and another connecting component of the connecting device 2000 is connected to the lampshade, which facilitates user operation in some cases.
Claims
1. A connecting device, characterized in that, include: The first connecting component, the second connecting component, and the electrical connecting terminal are all capable of rotating around the same axis. The first connecting component includes a first connecting body, a first outer connecting structure, and a first inner connecting structure. The first connecting body is hollow, the first outer connecting structure is disposed on the outer side of the first connecting body, and the first inner connecting structure is disposed on the inner side of the first connecting body. The second connecting component includes a second connecting body and a second external connecting structure. The second external connecting structure is disposed on the outer side of the second connecting body. The second connecting component includes a mounting groove disposed on the second connecting body. A portion of the second connecting body and the second external connecting structure can be disposed within the first connecting body, and another portion of the second connecting body can be disposed outside the first connecting body, with the first internal connecting structure and the second external connecting structure connected together. At least a portion of the electrical connection terminal is disposed within the mounting groove of the second connection body, and the electrical connection terminal includes at least two electrodes with different polarities.
2. The connecting device according to claim 1, characterized in that, The electrodes of the electrical connection terminal are arranged coaxially; or, the electrodes of the electrical connection terminal are arranged non-coaxially.
3. The connecting device according to claim 1, characterized in that, The first inner connection structure includes a connecting thread, and the second outer connection structure includes a connecting thread. The first and second connecting components can be threadedly connected and disassembled. The inner side of the first connecting body and the outer side of the second connecting body are spaced apart, and the inner side of the first connecting body and the outer side of the second connecting body together define a plugging space, and the first external connecting structure is arranged around the plugging space.
4. The connecting device according to claim 1, characterized in that, The first connecting component further includes a first blocking structure, and the second connecting component further includes a second blocking structure; The first blocking structure is disposed on the inner side of the first connecting body, and the first inner connecting structure is disposed on the first blocking structure. The second blocking structure is disposed on the outer side of the second connecting body. The second external connecting structure and the second blocking structure are disposed adjacent to each other. The first connecting component and the second connecting component are in a connected state, and the first blocking structure and the second blocking structure are adjacent to or attached to each other.
5. The connecting device according to claim 1, characterized in that, The first external connection structure is located at one end close to the first connection body; The first connecting component and the second connecting component are in a connected state, and a part of the second connecting body extends from the end of the first connecting component where the first external connecting structure is provided; The first connecting component further includes a sealing structure, which is disposed on the outer side of the first connecting body. The sealing structure and the first external connecting structure are disposed adjacent to each other, and the sealing structure is disposed near the middle position of the first connecting body.
6. A lamp, characterized in that, Includes one or more light-emitting elements, one or more lampshades, and one or more connecting devices; One or more lampshades include an opening and a receiving space communicating with the opening, and one or more lampshades also include a connecting structure disposed at the opening; One or more light-emitting bodies include a rigid circuit board, one or more light-emitting elements electrically connected to the rigid circuit board, and an electrical connection terminal physically and electrically connected to the rigid circuit board. The electrical connection terminal of the light-emitting body includes at least two electrode components. The connecting device is the connecting device as described in any one of claims 1-5, wherein the electrical connection terminal of the connecting device and the electrical connection terminal of the light-emitting body are capable of being plugged in and separated, and the first external connection structure of the connecting device is connected to the connection structure at the opening of the lampshade, the electrical connection terminal of the connecting device and the electrical connection terminal of the light-emitting body are in the plugged-in state, and at least two electrode members of the electrical connection terminal of the connecting device and at least two electrode members of the electrical connection terminal of the light-emitting body are correspondingly electrically connected. The first connecting component, the second connecting component, and the electrical connecting terminal of the connecting device can rotate together about the same axis relative to the lampshade, and the connecting device and the light-emitting body can rotate together about the same axis relative to the lampshade, or the connecting device can rotate relative to the lampshade and the light-emitting body.
7. The lamp according to claim 6, characterized in that, The first external connection structure includes a connecting thread, and the connection structure at the opening of the lampshade also includes a connecting thread. The first external connection structure and the connection structure at the opening of the lampshade can be threadedly connected and disassembled. The electrodes of the electrical connection terminals of the connecting device are arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are arranged coaxially; or, the electrodes of the electrical connection terminals of the connecting device are not arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are not arranged coaxially.
8. A lamp, characterized in that, It includes multiple light-emitting elements, multiple lamp covers, and multiple connecting devices, wherein the connecting devices are the connecting devices as described in any one of claims 1-5; One or more lampshades include a first opening, a second opening, and a receiving space communicating with the first opening and the second opening. One or more lampshades also include a second inner connection structure disposed at the first opening and a third inner connection structure disposed at the second opening. The second inner connection structure at the first opening of the lampshade is connected to the first outer connection structure of a connecting device, and the third inner connection structure at the second opening of the lampshade is connected to the first outer connection structure of another connecting device. One or more light-emitting bodies include a rigid circuit board, one or more light-emitting elements electrically connected to the rigid circuit board, and two electrical connection terminals physically and electrically connected to the rigid circuit board. The electrical connection terminals of the light-emitting body include at least two electrode elements. An electrical connection terminal of a light-emitting body and an electrical connection terminal of a connecting device are capable of being plugged in and detached. When the electrical connection terminals of the connecting device and the electrical connection terminals of the light-emitting body are in a plugged-in state, at least two electrode elements of the electrical connection terminals of the connecting device and at least two electrode elements of the electrical connection terminals of the light-emitting body are correspondingly electrically connected. There are two connecting devices between two adjacent lampshades, and the two connecting devices located between the two lampshades can be directly or indirectly connected. The first connecting component, the second connecting component, and the electrical connecting terminal of the connecting device can rotate together about the same axis relative to the lampshade, and the connecting device and the light-emitting body can rotate together about the same axis relative to the lampshade, or the connecting device can rotate relative to the lampshade and the light-emitting body.
9. The lamp according to claim 8, characterized in that, The first external connection structure includes a connecting thread, and the connection structure at the opening of the lampshade also includes a connecting thread. The first external connection structure and the connection structure at the opening of the lampshade can be threadedly connected and disassembled. The electrodes of the electrical connection terminals of the connecting device are arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are arranged coaxially; or, the electrodes of the electrical connection terminals of the connecting device are not arranged coaxially, and the electrodes of the electrical connection terminals of the light-emitting body are not arranged coaxially.
10. The lamp according to claim 8, characterized in that, It also includes a third connecting component, which includes at least two connecting portions, one of which is connected to a first connecting component of a connecting device.